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US20060005503A1 - Reinforced structural member and method for its manufacture - Google Patents

Reinforced structural member and method for its manufacture Download PDF

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Publication number
US20060005503A1
US20060005503A1 US11/175,485 US17548505A US2006005503A1 US 20060005503 A1 US20060005503 A1 US 20060005503A1 US 17548505 A US17548505 A US 17548505A US 2006005503 A1 US2006005503 A1 US 2006005503A1
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US
United States
Prior art keywords
reinforcing insert
support member
cross
section
insert
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US11/175,485
Inventor
Jeffrey Bladow
Jim Zimmerman
Edward Engler
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Noble Advanced Technologies Inc
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US11/175,485 priority Critical patent/US20060005503A1/en
Priority to PCT/US2005/024055 priority patent/WO2006014523A2/en
Assigned to PULLMAN INDUSTRIES, INC. reassignment PULLMAN INDUSTRIES, INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: ZIMMERMAN, JIM, BLADOW, JEFFREY, ENGLER, EDWARD
Publication of US20060005503A1 publication Critical patent/US20060005503A1/en
Assigned to COMERICA BANK, AS AGENT reassignment COMERICA BANK, AS AGENT SECURITY AGREEMENT Assignors: NOBLE ADVANCED TECHNOLOGIES, INC., NOBLE COMPONENTS & SYSTEMS, INC., NOBLE INTERNATIONAL, LTD., NOBLE LAND HOLDINGS, INC., NOBLE LOGISTIC SERVICES, INC., NOBLE MANUFACTURING GROUP, INC., NOBLE METAL PROCESSING, INC., NOBLE METAL PROCESSING-KENTUCKY, G.P., NOBLE METAL PROCESSING-OHIO, LLC, NOBLE SWISS HOLDINGS, LLC, NOBLE TUBE TECHNOLOGIES, LLC, PROTOTECH LASER WELDING INC., PULLMAN INDUSTRIES OF INDIANA, INC., PULLMAN INDUSTRIES, INC., PULLMAN INVESTMENTS LLC
Assigned to NOBLE ADVANCED TECHNOLOGIES, INC. reassignment NOBLE ADVANCED TECHNOLOGIES, INC. CHANGE OF NAME (SEE DOCUMENT FOR DETAILS). Assignors: PULLMAN INDUSTRIES, INC.
Abandoned legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D25/00Superstructure or monocoque structure sub-units; Parts or details thereof not otherwise provided for
    • B62D25/04Door pillars ; windshield pillars
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D21/00Understructures, i.e. chassis frame on which a vehicle body may be mounted
    • B62D21/15Understructures, i.e. chassis frame on which a vehicle body may be mounted having impact absorbing means, e.g. a frame designed to permanently or temporarily change shape or dimension upon impact with another body
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C3/00Structural elongated elements designed for load-supporting
    • E04C3/02Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces
    • E04C3/04Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal
    • E04C3/06Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal with substantially solid, i.e. unapertured, web
    • E04C3/07Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal with substantially solid, i.e. unapertured, web at least partly of bent or otherwise deformed strip- or sheet-like material
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C3/00Structural elongated elements designed for load-supporting
    • E04C3/02Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces
    • E04C3/28Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of materials not covered by groups E04C3/04 - E04C3/20
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C3/00Structural elongated elements designed for load-supporting
    • E04C3/02Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces
    • E04C3/04Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal
    • E04C2003/0404Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects
    • E04C2003/0408Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by assembly or the cross-section
    • E04C2003/0413Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by assembly or the cross-section being built up from several parts
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C3/00Structural elongated elements designed for load-supporting
    • E04C3/02Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces
    • E04C3/04Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal
    • E04C2003/0404Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects
    • E04C2003/0426Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by material distribution in cross section
    • E04C2003/043Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by material distribution in cross section the hollow cross-section comprising at least one enclosed cavity
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C3/00Structural elongated elements designed for load-supporting
    • E04C3/02Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces
    • E04C3/04Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal
    • E04C2003/0404Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects
    • E04C2003/0443Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by substantial shape of the cross-section
    • E04C2003/0465Joists; Girders, trusses, or trusslike structures, e.g. prefabricated; Lintels; Transoms; Braces of metal beams, girders, or joists characterised by cross-sectional aspects characterised by substantial shape of the cross-section square- or rectangular-shaped

Definitions

  • This invention relates generally to reinforced structures. More particularly, the invention relates to reinforced structures used in motor vehicles. In particular, the invention relates to lightweight reinforced structures which can be used as support pillars, frame members and the like for motor vehicles.
  • Many motor vehicles have a passenger compartment or cargo space which is defined and supported by a framework comprised of a plurality of pillars or other such support members.
  • the support members provide structural integrity to the body of the motor vehicle and serve to protect the occupants or cargo in the event of a crash.
  • the support members are configured so as to deform in a controlled manner and thereby absorb kinetic energy in the event of a crash.
  • Pillars comprising the support framework of a motor vehicle are generally configured as hollow steel bodies.
  • the support members combine high strength and low weight.
  • the pillars should be low in cost with regard to both materials and their process for fabrication.
  • any such support structure should also be amenable to being manufactured by high speed forming processes such as roll forming, cold stamping and the like.
  • pillar structures for motor vehicles were typically comprised of simple, hollow, tubular members.
  • various reinforcing members were included in such structures.
  • reinforcing members are disposed on the outside of a hollow pillar, and one such structure is shown in U.S. Pat. No. 5,833,303.
  • reinforcing members were disposed, at least partially, internally of pillars and other structural members.
  • Some such reinforced structures are shown in U.S. Pat. Nos. 6,341,467; 3,779,595 and 6,883,858.
  • the motor vehicle industry is directed toward increasing safety and fuel efficiency of vehicles while keeping costs at a minimum. Hence, there are concurrent needs for decreasing the weight and increasing the strength of the passenger and/or cargo compartments of motor vehicles.
  • the industry is seeking structural components for motor vehicles which combine light weight and high strength; furthermore, such components should be capable of having their deformation characteristics tuned or controlled so as to maximize the absorption of kinetic energy while maintaining sufficient integrity to prevent injuries to passengers or damage to cargo in the event of a crash.
  • the present invention is directed to reinforced structural members which may be incorporated into bodies of motor vehicles.
  • the structural members of the present invention are light in weight, inexpensive to fabricate, and can be configured to provide controlled deformation properties.
  • a structural member of the type which may comprise a support member for the body of a motor vehicle.
  • the structural member comprises a generally elongated pillar or other such support member which at least partially encloses an interior volume, and a reinforcing insert which is disposed within the interior volume and which extends along at least a portion of the length of the support member.
  • the reinforcing insert has a cross section which defines a closed perimeter that encloses an area.
  • the reinforcing insert is bonded to the interior surface of the support member, such as by means of an adhesive or mechanical interconnection.
  • the reinforcing insert has a cross section which defines two spaced-apart portions which are joined together by a connecting portion.
  • the spaced-apart portions each comprise a lobe, each lobe having a cross section which defines a perimeter that encloses a separate, respective area.
  • the connecting portion may also have a perimeter which defines and encloses a respective area; while in other instances, the connecting portion may be otherwise configured.
  • the support member and/or the reinforcing insert may be made of steel.
  • Also disclosed herein is a method for making the structural member, as well as the use of the structural member in a motor vehicle body.
  • FIG. 1 is a cross-sectional, perspective view of one embodiment of structural member of the present invention
  • FIGS. 2-5 are cross-sectional views of other embodiments of reinforcing inserts which may be utilized in the practice of the present invention.
  • FIG. 6 is a cross-sectional view of another reinforcing insert of the present invention, inserted into a support member.
  • FIG. 7 is a cross-sectional view of the insert of FIG. 6 , which is shown disposed in another configuration of support member.
  • the present invention is directed to structural members which may be used for the fabrication of high strength, lightweight frameworks and other support structures.
  • the present invention has particular utility in a support member for the body of a motor vehicle, and will be explained with particular reference to that utility.
  • the present invention may be employed in connection with other structures such as static building structures, protective cages, intrusion barriers, and other constructions wherein high strength, light weight, and controlled deformation characteristics are required.
  • the structural member of the present invention includes a generally elongated support member which at least partially encloses an interior volume.
  • the support member's structure may comprise a hollow tubular type of member formed from a single body of material or from plural bodies joined together.
  • the support member may be partially open, and as such may have a C-shaped profile.
  • the reinforcing insert is disposed in the interior of the pillar so as to extend along at least a portion of its length. In some instances, the reinforcing insert will extend along the entire length of the pillar, and in other instances it may extend along only a portion of the length of the pillar, while in yet other instances a plurality of separate insert members may be disposed in a support member.
  • the reinforcing insert has a cross-sectional profile which defines at least one closed perimeter bounding an area. As will be explained in detail hereinbelow, in some instances, the insert may bound a plurality of internal areas.
  • the insert increases the strength of the support member, particularly with regard to side loading and/or buckling.
  • the cross-sectional profile of the insert may be controlled so as to control the deformation characteristics of the structural member in which it is incorporated.
  • FIG. 1 there is shown one embodiment of structural member 10 configured in accord with the present invention.
  • the structural member 10 of FIG. 1 comprises a support member 12 which is configured as a hollow, pillar member which encloses an interior volume. As was explained hereinabove, in other embodiments, the support member may only partially enclose an interior volume.
  • the member 12 in this embodiment is comprised of two separate hat-shaped portions 14 , 16 which are joined together along their edges so as to form a pair of flanges 18 , 20 .
  • the two portions 14 , 16 may be joined together by welding, adhesives, or by mechanical means such as rivets, toggles, piercings, tabs or the like.
  • the support member may be fabricated from a single piece of material folded back onto itself or from a tube.
  • the support member in particular instances, is fabricated from a metal such as sheet steel, and may be manufactured by conventional forming processes such as hot stamping, cold stamping, roll forming, drawing, pressing or the like.
  • the support member may be fabricated from polymeric materials or composites utilizing well-known techniques including casting, molding extrusion and the like.
  • the reinforcing insert 22 Disposed within the interior volume of the support member 12 is a reinforcing insert 22 .
  • the reinforcing insert 22 includes a first lobe portion 24 and a second lobe portion 26 joined together by a connecting portion 28 .
  • the two lobe portions 24 , 26 each have a cross section of trapezoidal configuration which encloses a respective interior volume. It has been found, in particular embodiments of the present invention, that a trapezoidal cross section is advantageously employed in at least portions of reinforcing inserts of the present invention.
  • An insert with a trapezoidal portion provides high strength and good resistance to crushing when subjected to a side impact. This is in contrast to square-sided structures which tend to collapse in a failure mode akin to the collapse of a side-loaded matchbox; hence, this failure mode is referred to in the art as “matchboxing.”
  • the two lobe portions 24 , 26 of the insert 22 are joined together by a connector portion 28 which is a simple straight wall structure.
  • a connector portion 28 which is a simple straight wall structure.
  • a back wall portion 30 of the first lobe 24 , and a back wall portion 32 of the second lobe 26 are corrugated.
  • One function of these corrugations is to hold an adhesive material therein.
  • a heat activatable, foamable adhesive may be disposed in the corrugations of the insert 22 of FIG. 1 .
  • the recessed portions of the corrugation will allow the insert to be stored, handled and subsequently disposed within the support member 12 without causing unwanted transfer of adhesive; however, when the resulting combination is subsequently heated, as for example during painting or further processing steps, the adhesive will foam, expand, and fill the space between the insert 22 and inner surfaces of the support member 12 .
  • the adhesive will assure that the insert remains in place in the support member without shifting or rattling.
  • the feature of the corrugations and/or the adhesive is optional, and it is to be understood that the profiles of the lobes as illustrated in FIG. 1 are to be considered trapezoidal even though there is some corrugation of the surfaces of the lobes
  • Support members such as the pillar shown in FIG. 1 may be fabricated as relatively long members which are subsequently cut to length for use in particular applications, or they may be fabricated to approximate finished dimensions. Also, while the FIG. 1 embodiment shows a generally linearly elongated structural member, it is to be understood that the present invention may be readily adapted to the manufacture of components having a curved or other complex geometry.
  • the support member may be formed to a finished profile and then have the insert placed therein, for example as by threading it through an open end. Or, the support member may be partially fabricated, the insert disposed therein, and the structure then completed so as to enclose the insert.
  • the insert is fabricated from high strength, relatively thin steel, such as a hardenable steel. Both the support member and insert may be fabricated from relatively thin steel stock which can be bent to radii as low as one thickness of the stock material, so as to crowd the profile mass to the outermost tension and compression sides of the structure.
  • the components are made out of a material such as aluminum, steel, or aluminized steel having a strength of over 100 ksi.
  • the thickness of the reinforcing member is between 0.5 mm and 2.0 mm, and in yet other instances, the distribution of material between the first 24 and second 26 lobes is approximately 60% and 40% respectively.
  • the completed structural member may be subjected to further post-fabrication processing and this can involve shaping operations such as roll forming, sweeping, bending, die forming, cutting, drilling, flattening, crushing and the like which change its shape or profile.
  • shaping operations such as roll forming, sweeping, bending, die forming, cutting, drilling, flattening, crushing and the like which change its shape or profile.
  • the individual support member and/or reinforcing insert may be subject to such processing steps prior to assembly.
  • Other operations may comprise heating, quenching, welding, brazing, cutting, piercing and the like.
  • the member may be bent, swept, or twisted to form a component such as bumper bar or side intrusion beam for a motor vehicle.
  • the member may be heat treated so as to increase its hardness.
  • FIG. 2 shows an insert 40 which comprises a body having a closed cross-sectional profile with an upper portion 42 , and a lower portion 44 joined by an intermediate portion 46 . All of the portions are contiguous so as to bound a single internal space.
  • surfaces 48 , 50 are corrugated; although, it is to be understood that flat surfaces, concave surfaces, convex surfaces or the like may be likewise employed. It will be appreciated that by varying the dimensions L and D of the intermediate portion 46 , crushing and bending characteristics of the insert 40 may be adjusted.
  • FIG. 3 illustrates another embodiment of insert 52 .
  • This insert 52 is generally similar to the insert 22 of FIG. 1 insofar as it includes an upper lobe portion 54 and a lower lobe portion 56 , both of which have a generally trapezoidal cross section.
  • the two lobe portions 54 and 56 are joined by a connecting portion 58 ; however, this connecting portion is of an open configuration, and in that regard also bounds an interior space.
  • the open, diamond-shaped configuration of the connecting portion 58 allows for controlled crushing and/or bending of the insert 52 .
  • this intermediate portion 58 may be otherwise configured; for example, it may comprise a member having a circular cross section as well as otherwise configured polygonal cross sections.
  • FIG. 4 shows yet another configuration of insert 60 which is configured to have a simple, trapezoidal cross section.
  • this member includes corrugated surfaces 62 and 64 ; this feature is, as noted above, optional and the surfaces may be otherwise configured.
  • FIG. 5 shows yet another embodiment of insert 70 .
  • This insert 70 is of generally trapezoidal configuration, and in that regard is somewhat similar to the insert 60 of FIG. 4 .
  • an upper lobe 72 and a lower lobe 74 are interconnected by two S-shaped portions 76 and 78 .
  • the S-shaped portions 76 , 78 will plastically deform to allow the sidewalls 80 , 82 of the first lobe portion 72 to collapse in a telescoping manner about the sidewalls 84 , 86 of the second lobe portion 74 .
  • further S-shaped portions may be incorporated.
  • corrugations may be disposed to serve a similar function.
  • selected deformation may be accomplished by cutting, piercing, or otherwise physically interrupting selected wall portions of the insert.
  • polymeric materials including foamed polymeric materials as well as polymer/metal composites, may be employed to form the insert member.
  • the insert 90 has a cross section which defines a closed perimeter that encloses an interior area.
  • the insert 90 further includes projecting flanges 92 and 94 .
  • the insert 90 is formed from a single piece of material folded back on itself; although, it is to be understood that it could be fabricated as a two-part member.
  • the insert 90 is disposed within a support member 96 which comprises a tubular member having a generally square cross section. As shown in FIG.
  • the insert 90 is placed diagonally in the support member 96 so that the flanges 92 and 94 engage corners thereof. It is to be understood that other embodiments of flanged insert having a different cross-sectional profile, such as a trapezoidal profile, a circular profile and the like, could be similarly disposed.
  • the insert 90 as disposed in a support member 98 .
  • the support member 98 includes flange portions 100 , 102 which engage the flanges 92 and 94 of the insert member 90 .
  • the insert and support member may be secured by tack welds, adhesive, mechanical interlocks, crimps or the like. Yet other configurations of support member and insert may likewise be configured.
  • Support members of various other configurations may also be employed in the practice of the present invention. Such members may include fully and partially closed structures, curved structures, straight structures, and structures of complex shapes. Also, while the support members are primarily described herein as being made of steel, it is to be understood that support members of other materials including metals and synthetic polymers may be utilized.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Body Structure For Vehicles (AREA)

Abstract

A structural member for the body of a motor vehicle includes a generally elongated support member which at least partially encloses an interior volume, and a reinforcing insert which is disposed in the interior volume. The reinforcing insert extends along at least a portion of the length of the support member, and has a cross section which defines a closed perimeter that encloses an area. The insert member may be configured so as to control its deformation characteristics thereby providing a structural member which efficiently and safely absorbs kinetic energy in a crash.

Description

    RELATED APPLICATIONS
  • This application claims priority of U.S. Provisional Patent Application Ser. No. 60/588,118 filed Jul. 14, 2004, entitled “Reinforcement for a B-Pillar of an Automotive Vehicle” and U.S. Provisional Patent Application Ser. No. 60/586,009 filed Jul. 7, 2004 and entitled “Method of Inserting Structural Member in a Roll-Formed Part.”
  • FIELD OF THE INVENTION
  • This invention relates generally to reinforced structures. More particularly, the invention relates to reinforced structures used in motor vehicles. In particular, the invention relates to lightweight reinforced structures which can be used as support pillars, frame members and the like for motor vehicles.
  • BACKGROUND OF THE INVENTION
  • Many motor vehicles have a passenger compartment or cargo space which is defined and supported by a framework comprised of a plurality of pillars or other such support members. The support members provide structural integrity to the body of the motor vehicle and serve to protect the occupants or cargo in the event of a crash. In some instances, the support members are configured so as to deform in a controlled manner and thereby absorb kinetic energy in the event of a crash.
  • Pillars comprising the support framework of a motor vehicle are generally configured as hollow steel bodies. Preferably, the support members combine high strength and low weight. Also, the pillars should be low in cost with regard to both materials and their process for fabrication. Ideally, any such support structure should also be amenable to being manufactured by high speed forming processes such as roll forming, cold stamping and the like.
  • In early prior art, pillar structures for motor vehicles were typically comprised of simple, hollow, tubular members. Eventually various reinforcing members were included in such structures. In some instances, reinforcing members are disposed on the outside of a hollow pillar, and one such structure is shown in U.S. Pat. No. 5,833,303. In other instances, reinforcing members were disposed, at least partially, internally of pillars and other structural members. Some such reinforced structures are shown in U.S. Pat. Nos. 6,341,467; 3,779,595 and 6,883,858.
  • The motor vehicle industry is directed toward increasing safety and fuel efficiency of vehicles while keeping costs at a minimum. Hence, there are concurrent needs for decreasing the weight and increasing the strength of the passenger and/or cargo compartments of motor vehicles. Toward that end, the industry is seeking structural components for motor vehicles which combine light weight and high strength; furthermore, such components should be capable of having their deformation characteristics tuned or controlled so as to maximize the absorption of kinetic energy while maintaining sufficient integrity to prevent injuries to passengers or damage to cargo in the event of a crash. As will be explained in detail hereinbelow, the present invention is directed to reinforced structural members which may be incorporated into bodies of motor vehicles. The structural members of the present invention are light in weight, inexpensive to fabricate, and can be configured to provide controlled deformation properties. These and other advantages of the invention will be apparent from the drawings, discussion and description which follow.
  • BRIEF DESCRIPTION OF THE INVENTION
  • Disclosed herein is a structural member of the type which may comprise a support member for the body of a motor vehicle. The structural member comprises a generally elongated pillar or other such support member which at least partially encloses an interior volume, and a reinforcing insert which is disposed within the interior volume and which extends along at least a portion of the length of the support member. The reinforcing insert has a cross section which defines a closed perimeter that encloses an area. In some instances, the reinforcing insert is bonded to the interior surface of the support member, such as by means of an adhesive or mechanical interconnection. In particular embodiments, the reinforcing insert has a cross section which defines two spaced-apart portions which are joined together by a connecting portion. In specific configurations of this embodiment, the spaced-apart portions each comprise a lobe, each lobe having a cross section which defines a perimeter that encloses a separate, respective area. In some instances, the connecting portion may also have a perimeter which defines and encloses a respective area; while in other instances, the connecting portion may be otherwise configured.
  • In some instances, the support member and/or the reinforcing insert may be made of steel.
  • Also disclosed herein is a method for making the structural member, as well as the use of the structural member in a motor vehicle body.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a cross-sectional, perspective view of one embodiment of structural member of the present invention;
  • FIGS. 2-5 are cross-sectional views of other embodiments of reinforcing inserts which may be utilized in the practice of the present invention;
  • FIG. 6 is a cross-sectional view of another reinforcing insert of the present invention, inserted into a support member; and
  • FIG. 7 is a cross-sectional view of the insert of FIG. 6, which is shown disposed in another configuration of support member.
  • DETAILED DESCRIPTION OF THE INVENTION
  • The present invention is directed to structural members which may be used for the fabrication of high strength, lightweight frameworks and other support structures. The present invention has particular utility in a support member for the body of a motor vehicle, and will be explained with particular reference to that utility. However, it is to be understood that the present invention may be employed in connection with other structures such as static building structures, protective cages, intrusion barriers, and other constructions wherein high strength, light weight, and controlled deformation characteristics are required.
  • The structural member of the present invention includes a generally elongated support member which at least partially encloses an interior volume. As such, the support member's structure may comprise a hollow tubular type of member formed from a single body of material or from plural bodies joined together. In other instances, the support member may be partially open, and as such may have a C-shaped profile. The reinforcing insert is disposed in the interior of the pillar so as to extend along at least a portion of its length. In some instances, the reinforcing insert will extend along the entire length of the pillar, and in other instances it may extend along only a portion of the length of the pillar, while in yet other instances a plurality of separate insert members may be disposed in a support member. The reinforcing insert has a cross-sectional profile which defines at least one closed perimeter bounding an area. As will be explained in detail hereinbelow, in some instances, the insert may bound a plurality of internal areas. The insert increases the strength of the support member, particularly with regard to side loading and/or buckling. The cross-sectional profile of the insert may be controlled so as to control the deformation characteristics of the structural member in which it is incorporated.
  • Various configurations and embodiments of the present invention may be implemented. Referring now to FIG. 1, there is shown one embodiment of structural member 10 configured in accord with the present invention. The structural member 10 of FIG. 1 comprises a support member 12 which is configured as a hollow, pillar member which encloses an interior volume. As was explained hereinabove, in other embodiments, the support member may only partially enclose an interior volume. The member 12 in this embodiment is comprised of two separate hat- shaped portions 14, 16 which are joined together along their edges so as to form a pair of flanges 18, 20. The two portions 14, 16 may be joined together by welding, adhesives, or by mechanical means such as rivets, toggles, piercings, tabs or the like. In some instances, the support member may be fabricated from a single piece of material folded back onto itself or from a tube. The support member, in particular instances, is fabricated from a metal such as sheet steel, and may be manufactured by conventional forming processes such as hot stamping, cold stamping, roll forming, drawing, pressing or the like. In other instances, the support member may be fabricated from polymeric materials or composites utilizing well-known techniques including casting, molding extrusion and the like.
  • Disposed within the interior volume of the support member 12 is a reinforcing insert 22. In the FIG. 1 embodiment, the reinforcing insert 22 includes a first lobe portion 24 and a second lobe portion 26 joined together by a connecting portion 28. In the illustrated embodiment, the two lobe portions 24, 26 each have a cross section of trapezoidal configuration which encloses a respective interior volume. It has been found, in particular embodiments of the present invention, that a trapezoidal cross section is advantageously employed in at least portions of reinforcing inserts of the present invention. An insert with a trapezoidal portion provides high strength and good resistance to crushing when subjected to a side impact. This is in contrast to square-sided structures which tend to collapse in a failure mode akin to the collapse of a side-loaded matchbox; hence, this failure mode is referred to in the art as “matchboxing.”
  • In the illustrated embodiment, the two lobe portions 24, 26 of the insert 22 are joined together by a connector portion 28 which is a simple straight wall structure. As will be detailed hereinbelow, other configurations of insert may be employed in the practice of the present invention.
  • As shown herein, a back wall portion 30 of the first lobe 24, and a back wall portion 32 of the second lobe 26 are corrugated. One function of these corrugations is to hold an adhesive material therein. For example, a heat activatable, foamable adhesive may be disposed in the corrugations of the insert 22 of FIG. 1. The recessed portions of the corrugation will allow the insert to be stored, handled and subsequently disposed within the support member 12 without causing unwanted transfer of adhesive; however, when the resulting combination is subsequently heated, as for example during painting or further processing steps, the adhesive will foam, expand, and fill the space between the insert 22 and inner surfaces of the support member 12. The adhesive will assure that the insert remains in place in the support member without shifting or rattling. The feature of the corrugations and/or the adhesive is optional, and it is to be understood that the profiles of the lobes as illustrated in FIG. 1 are to be considered trapezoidal even though there is some corrugation of the surfaces of the lobes.
  • Support members such as the pillar shown in FIG. 1 may be fabricated as relatively long members which are subsequently cut to length for use in particular applications, or they may be fabricated to approximate finished dimensions. Also, while the FIG. 1 embodiment shows a generally linearly elongated structural member, it is to be understood that the present invention may be readily adapted to the manufacture of components having a curved or other complex geometry.
  • The support member may be formed to a finished profile and then have the insert placed therein, for example as by threading it through an open end. Or, the support member may be partially fabricated, the insert disposed therein, and the structure then completed so as to enclose the insert. In specific instances, the insert is fabricated from high strength, relatively thin steel, such as a hardenable steel. Both the support member and insert may be fabricated from relatively thin steel stock which can be bent to radii as low as one thickness of the stock material, so as to crowd the profile mass to the outermost tension and compression sides of the structure. In specific embodiments, the components are made out of a material such as aluminum, steel, or aluminized steel having a strength of over 100 ksi. In specific instances, the thickness of the reinforcing member is between 0.5 mm and 2.0 mm, and in yet other instances, the distribution of material between the first 24 and second 26 lobes is approximately 60% and 40% respectively.
  • The completed structural member may be subjected to further post-fabrication processing and this can involve shaping operations such as roll forming, sweeping, bending, die forming, cutting, drilling, flattening, crushing and the like which change its shape or profile. Likewise, the individual support member and/or reinforcing insert may be subject to such processing steps prior to assembly. Other operations may comprise heating, quenching, welding, brazing, cutting, piercing and the like. For example, the member may be bent, swept, or twisted to form a component such as bumper bar or side intrusion beam for a motor vehicle. In that regard, the member may be heat treated so as to increase its hardness.
  • Other configurations of reinforcing insert may be utilized in the present invention. For example, FIG. 2 shows an insert 40 which comprises a body having a closed cross-sectional profile with an upper portion 42, and a lower portion 44 joined by an intermediate portion 46. All of the portions are contiguous so as to bound a single internal space. As in the previous embodiment, surfaces 48, 50 are corrugated; although, it is to be understood that flat surfaces, concave surfaces, convex surfaces or the like may be likewise employed. It will be appreciated that by varying the dimensions L and D of the intermediate portion 46, crushing and bending characteristics of the insert 40 may be adjusted.
  • FIG. 3 illustrates another embodiment of insert 52. This insert 52 is generally similar to the insert 22 of FIG. 1 insofar as it includes an upper lobe portion 54 and a lower lobe portion 56, both of which have a generally trapezoidal cross section. As in the FIG. 1 embodiment, the two lobe portions 54 and 56 are joined by a connecting portion 58; however, this connecting portion is of an open configuration, and in that regard also bounds an interior space. The open, diamond-shaped configuration of the connecting portion 58 allows for controlled crushing and/or bending of the insert 52. It will be appreciated that this intermediate portion 58 may be otherwise configured; for example, it may comprise a member having a circular cross section as well as otherwise configured polygonal cross sections.
  • FIG. 4 shows yet another configuration of insert 60 which is configured to have a simple, trapezoidal cross section. As illustrated, this member includes corrugated surfaces 62 and 64; this feature is, as noted above, optional and the surfaces may be otherwise configured.
  • FIG. 5 shows yet another embodiment of insert 70. This insert 70 is of generally trapezoidal configuration, and in that regard is somewhat similar to the insert 60 of FIG. 4. However, in this embodiment, an upper lobe 72 and a lower lobe 74 are interconnected by two S-shaped portions 76 and 78. Under a predetermined load on the insert 70, the S-shaped portions 76, 78 will plastically deform to allow the sidewalls 80, 82 of the first lobe portion 72 to collapse in a telescoping manner about the sidewalls 84, 86 of the second lobe portion 74. In other versions of this embodiment, further S-shaped portions may be incorporated. Alternatively, corrugations may be disposed to serve a similar function.
  • In yet other embodiments of insert, selected deformation may be accomplished by cutting, piercing, or otherwise physically interrupting selected wall portions of the insert. Also, it is to be understood that while the foregoing has primarily described the inserts as being fabricated from metals, polymeric materials, including foamed polymeric materials as well as polymer/metal composites, may be employed to form the insert member.
  • Referring now to FIGS. 6 and 7, there is shown another embodiment of reinforcing insert 90 structured in accord with the principles of the present invention. In both illustrations, the insert 90 has a cross section which defines a closed perimeter that encloses an interior area. The insert 90 further includes projecting flanges 92 and 94. As illustrated, the insert 90 is formed from a single piece of material folded back on itself; although, it is to be understood that it could be fabricated as a two-part member. In the FIG. 6 embodiment, the insert 90 is disposed within a support member 96 which comprises a tubular member having a generally square cross section. As shown in FIG. 6, the insert 90 is placed diagonally in the support member 96 so that the flanges 92 and 94 engage corners thereof. It is to be understood that other embodiments of flanged insert having a different cross-sectional profile, such as a trapezoidal profile, a circular profile and the like, could be similarly disposed.
  • Referring now to FIG. 7, there is shown the insert 90 as disposed in a support member 98. The support member 98 includes flange portions 100, 102 which engage the flanges 92 and 94 of the insert member 90. In this embodiment, the insert and support member may be secured by tack welds, adhesive, mechanical interlocks, crimps or the like. Yet other configurations of support member and insert may likewise be configured.
  • Support members of various other configurations may also be employed in the practice of the present invention. Such members may include fully and partially closed structures, curved structures, straight structures, and structures of complex shapes. Also, while the support members are primarily described herein as being made of steel, it is to be understood that support members of other materials including metals and synthetic polymers may be utilized.
  • In view of the teaching presented herein, still further modifications, variations and embodiments of the present invention will be apparent to those of skill in the art. The foregoing drawings, discussion and description are illustrative of only specific embodiments, and are not meant to be limitations upon the practice of the invention. It is the following claims, including all equivalents, which define the scope of the invention.

Claims (22)

1. A structural member for a body of a motor vehicle, said structural member comprising:
a generally elongated support member which at least partially encloses an interior volume; and
a reinforcing insert which is disposed within said interior volume and which extends along at least a portion of the length of said support member, said reinforcing insert having a cross section which defines a closed perimeter that encloses an area.
2. The member of claim 1, wherein said cross section of said reinforcing insert is a trapezoidal cross section.
3. The member of claim 1, wherein said reinforcing insert is bonded to an interior surface of said support member.
4. The member of claim 3, wherein said reinforcing insert is adhesively bonded to said interior surface.
5. The member of claim 1, wherein said reinforcing insert has a cross section which defines two spaced-apart portions, said spaced-apart portions being joined together by a connecting portion.
6. The member of claim 5, wherein said spaced-apart portions each comprise a lobe, each lobe having a cross section which defines a perimeter that encloses a separate, respective area.
7. The member of claim 6, wherein at least one of said lobes has a trapezoidal cross section.
8. The member of claim 5, wherein said connecting portion does not have a cross section which defines a perimeter that encloses a respective area.
9. The member of claim 6, wherein said connecting portion has a cross section which defines a perimeter that encloses a separate respective area.
10. The member of claim 1, wherein at least one of said support member and said reinforcing insert are made of steel.
11. The member of claim 1, wherein at least one of said support member and said reinforcing insert are made of roll-formed steel.
12. A method of making a structural member for a body of a motor vehicle, said method comprising the steps of:
providing a generally elongated support member which at least partially encloses an interior volume;
providing a reinforcing insert having a cross section which defines a closed perimeter that encloses an area; and
disposing said reinforcing insert in said interior volume so that said reinforcing insert extends along at least a portion of the length of said support member.
13. The method of claim 12 including the step of carrying out a further processing operation on said support member after said reinforcing insert is disposed therein.
14. The method of claim 13, wherein said further processing operation is selected from the group consisting of: roll forming, sweeping, twisting, bending, die forming, cutting, drilling, flattening, crushing, heating, welding, brazing, quenching, and combinations thereof.
15. The method of claim 12, wherein said reinforcing insert is subjected to a processing operation before being inserted into said support member.
16. The method of claim 12, wherein at least one of said support member and said reinforcing insert are roll formed.
17. The method of claim 12, wherein at least one of said support member and reinforcing insert are made of steel.
18. The method of claim 12, including the further step of bonding said reinforcing insert to said support member.
19. The method of claim 18, wherein said step of bonding comprises adhesively bonding said reinforcing insert to said support member.
20. The method of claim 12, wherein said reinforcing insert has a cross section which defines two spaced-apart lobes, said lobes being joined together by a connecting portion.
21. The method of claim 12, wherein said cross section of said reinforcing insert defines a trapezoidal perimeter.
22. A motor vehicle body which includes the structural member of claim 1.
US11/175,485 2004-07-07 2005-07-06 Reinforced structural member and method for its manufacture Abandoned US20060005503A1 (en)

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Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060255624A1 (en) * 2005-05-10 2006-11-16 Jim Zimmerman One-piece, tubular member with an integrated welded flange and associated method for producing
US20100194147A1 (en) * 2009-02-02 2010-08-05 Vari-Form, Inc. Vehicle roof support pillar assembly
US20110025100A1 (en) * 2009-07-28 2011-02-03 Ferrari S.P.A. Chassis of a vehicle provided with an extruded central pillar
US20120119546A1 (en) * 2010-11-11 2012-05-17 Mazda Motor Corporation Frame structure for vehicle
WO2012148806A1 (en) * 2011-04-29 2012-11-01 Honda Motor Co., Ltd. Serpentine section stabilizer for vehicle pillar
GB2492143A (en) * 2011-06-23 2012-12-26 Parkhouse Country Estates Ltd Deck pole for supporting livestock laden decks and method
WO2012156248A3 (en) * 2011-05-17 2014-01-09 Kirchhoff Automotive Deutschland Gmbh Support used as a chassis component
US20140314471A1 (en) * 2013-04-18 2014-10-23 Magna Steyr Fahrzeugtechnik Ag & Co Kg Hollow profile connection - gusset plate
US20150048654A1 (en) * 2011-12-06 2015-02-19 Daimler Ag Body Component
US20160236715A1 (en) * 2013-11-01 2016-08-18 Toyota Jidosha Kabushiki Kaisha Vehicle frame structure
JP2017030647A (en) * 2015-08-05 2017-02-09 Jfeスチール株式会社 Skeleton component for automobile and method for manufacturing skeleton component for automobile
ITUA20163088A1 (en) * 2016-05-02 2017-11-02 Innovando S R L S SUPPORT SYSTEM FOR COMPOSED METAL STRUCTURES
US20180065677A1 (en) * 2016-09-07 2018-03-08 Thunder Power New Energy Vehicle Development Company Limited Lateral energy absorption system
US9945123B2 (en) * 2016-09-16 2018-04-17 Peikko Group Oy Steel beam
US20180175002A1 (en) * 2016-12-15 2018-06-21 Intel Corporation Package-bottom interposers for land-side configured devices for system-in-package apparatus
US20190152304A1 (en) * 2017-11-22 2019-05-23 Kabushiki Kaisha Kobe Seiko Sho (Kobe Steel, Ltd.) Door beam
US10336373B2 (en) * 2016-09-07 2019-07-02 Thunder Power New Energy Vehicle Development Company Limited Lateral energy absorption system
CN111108036A (en) * 2017-09-20 2020-05-05 耶斯塔姆普硬技术股份公司 Vehicle side structure
WO2020153473A1 (en) * 2019-01-24 2020-07-30 日本製鉄株式会社 Structure member and vehicle body structure
US20200332854A1 (en) * 2017-12-26 2020-10-22 Nippon Steel Corporation Impact absorbing member
US20220111896A1 (en) * 2020-10-09 2022-04-14 Ford Global Technologies, Llc Reinforced rail assembly
WO2023090706A1 (en) * 2021-11-16 2023-05-25 주식회사 포스코 Side sill for vehicle

Families Citing this family (2)

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Citations (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4440434A (en) * 1981-12-24 1984-04-03 Aldo Celli Vehicle body construction
US5213386A (en) * 1992-05-11 1993-05-25 Ford Motor Company Space frame construction
US5580120A (en) * 1995-02-23 1996-12-03 Mascotech Tubular Products, Inc. Vehicle door intrusion beam
US5600931A (en) * 1992-09-25 1997-02-11 Plannja Hardtech Ab Structural beam for supporting and reinforcing a structure
US5680886A (en) * 1996-07-15 1997-10-28 Ohtsuka Co., Ltd. Impact energy absorber
US6020039A (en) * 1998-04-21 2000-02-01 Inland Steel Company Automobile door impact beam
US6053564A (en) * 1996-08-21 2000-04-25 Mitsubishi Jidosha Kogyo K.K. Vehicle body side sill reinforcing bulkhead
US6096403A (en) * 1997-07-21 2000-08-01 Henkel Corporation Reinforced structural members
US6199941B1 (en) * 1998-05-08 2001-03-13 Toyota Jidosha Kabushiki Kaisha Impact energy absorbing structure in upper vehicle body portion and impact energy absorbing member
US6341467B1 (en) * 1996-05-10 2002-01-29 Henkel Corporation Internal reinforcement for hollow structural elements
US6455144B1 (en) * 1999-01-25 2002-09-24 Henkel Corporation Oven cured structural foam with designed-in sag positioning
US6482486B1 (en) * 2000-03-14 2002-11-19 L&L Products Heat activated reinforcing sleeve
US6692065B2 (en) * 2001-06-04 2004-02-17 Marujun Co., Ltd. Framing structure around vehicle door opening
US6777049B2 (en) * 2001-03-20 2004-08-17 L&L Products, Inc. Structural foam
US20050017543A1 (en) * 2001-11-14 2005-01-27 L&L Products, Inc. Automotive rail/frame energy management system
US6863338B2 (en) * 2002-08-20 2005-03-08 Dr. Ing. H.C.F. Porsche Ag Body structure for a motor vehicle and method of making same
US20050172486A1 (en) * 2004-02-05 2005-08-11 L&L Products, Inc. Member for sealing, baffling or reinforcing and method of forming same
US20050212326A1 (en) * 2004-06-24 2005-09-29 L&L Products, Inc. Structural reinforcement member and system formed therewith
US20050276970A1 (en) * 2001-05-08 2005-12-15 L&L Products, Inc. Structural reinforcement
US20060090343A1 (en) * 2004-10-28 2006-05-04 L&L Products, Inc. Member for reinforcing, sealing or baffling and reinforcement system formed therewith
US20060097533A1 (en) * 2004-11-08 2006-05-11 Asteer Co., Ltd. Bulkhead for raising strength and rigidity of vehicular frame members
US20060152041A1 (en) * 2002-06-28 2006-07-13 Hayashi-Sika Automotive Ltd. Body reinforcement material arrangement structure
US20070262617A1 (en) * 2003-10-14 2007-11-15 Behr Gmbh & Co., Kg Composite Part, Especially Cross Member

Patent Citations (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4440434A (en) * 1981-12-24 1984-04-03 Aldo Celli Vehicle body construction
US5213386A (en) * 1992-05-11 1993-05-25 Ford Motor Company Space frame construction
US5600931A (en) * 1992-09-25 1997-02-11 Plannja Hardtech Ab Structural beam for supporting and reinforcing a structure
US5580120A (en) * 1995-02-23 1996-12-03 Mascotech Tubular Products, Inc. Vehicle door intrusion beam
US6341467B1 (en) * 1996-05-10 2002-01-29 Henkel Corporation Internal reinforcement for hollow structural elements
US5680886A (en) * 1996-07-15 1997-10-28 Ohtsuka Co., Ltd. Impact energy absorber
US6053564A (en) * 1996-08-21 2000-04-25 Mitsubishi Jidosha Kogyo K.K. Vehicle body side sill reinforcing bulkhead
US6096403A (en) * 1997-07-21 2000-08-01 Henkel Corporation Reinforced structural members
US6020039A (en) * 1998-04-21 2000-02-01 Inland Steel Company Automobile door impact beam
US6199941B1 (en) * 1998-05-08 2001-03-13 Toyota Jidosha Kabushiki Kaisha Impact energy absorbing structure in upper vehicle body portion and impact energy absorbing member
US6455144B1 (en) * 1999-01-25 2002-09-24 Henkel Corporation Oven cured structural foam with designed-in sag positioning
US6482486B1 (en) * 2000-03-14 2002-11-19 L&L Products Heat activated reinforcing sleeve
US6777049B2 (en) * 2001-03-20 2004-08-17 L&L Products, Inc. Structural foam
US20050276970A1 (en) * 2001-05-08 2005-12-15 L&L Products, Inc. Structural reinforcement
US6692065B2 (en) * 2001-06-04 2004-02-17 Marujun Co., Ltd. Framing structure around vehicle door opening
US20050017543A1 (en) * 2001-11-14 2005-01-27 L&L Products, Inc. Automotive rail/frame energy management system
US20060152041A1 (en) * 2002-06-28 2006-07-13 Hayashi-Sika Automotive Ltd. Body reinforcement material arrangement structure
US6863338B2 (en) * 2002-08-20 2005-03-08 Dr. Ing. H.C.F. Porsche Ag Body structure for a motor vehicle and method of making same
US20070262617A1 (en) * 2003-10-14 2007-11-15 Behr Gmbh & Co., Kg Composite Part, Especially Cross Member
US20050172486A1 (en) * 2004-02-05 2005-08-11 L&L Products, Inc. Member for sealing, baffling or reinforcing and method of forming same
US20050212326A1 (en) * 2004-06-24 2005-09-29 L&L Products, Inc. Structural reinforcement member and system formed therewith
US20060090343A1 (en) * 2004-10-28 2006-05-04 L&L Products, Inc. Member for reinforcing, sealing or baffling and reinforcement system formed therewith
US20060097533A1 (en) * 2004-11-08 2006-05-11 Asteer Co., Ltd. Bulkhead for raising strength and rigidity of vehicular frame members

Cited By (40)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10150179B2 (en) * 2003-04-18 2018-12-11 Magna Steyr Fahrzeugtechnik Ag & Co Kg Hollow profile connection-gusset plate
US7585017B2 (en) 2005-05-10 2009-09-08 Noble Advanced Technologies, Inc. One-piece, tubular member with an integrated welded flange and associated method for producing
US20060255624A1 (en) * 2005-05-10 2006-11-16 Jim Zimmerman One-piece, tubular member with an integrated welded flange and associated method for producing
US20100194147A1 (en) * 2009-02-02 2010-08-05 Vari-Form, Inc. Vehicle roof support pillar assembly
EP2213552A3 (en) * 2009-02-02 2010-12-01 Vari-Form Inc. Vehicle roof support pillar assembly
EP2529997A1 (en) * 2009-02-02 2012-12-05 Vari-Form Inc. Vehicle roof support pillar assembly
US8662567B2 (en) 2009-02-02 2014-03-04 Vari-Form, Inc. Vehicle roof support pillar assembly
US20110025100A1 (en) * 2009-07-28 2011-02-03 Ferrari S.P.A. Chassis of a vehicle provided with an extruded central pillar
US8272682B2 (en) * 2009-07-28 2012-09-25 Studio Torta S.p.A. Chassis of a vehicle provided with an extruded central pillar
US8641131B2 (en) * 2010-11-11 2014-02-04 Mazda Motor Corporation Frame structure for vehicle
US20120119546A1 (en) * 2010-11-11 2012-05-17 Mazda Motor Corporation Frame structure for vehicle
US8474903B2 (en) 2011-04-29 2013-07-02 Honda Motor Co., Ltd. Serpentine section stabilizer for vehicle pillar
CN103619693A (en) * 2011-04-29 2014-03-05 本田技研工业株式会社 Serpentine section stabilizer for vehicle pillar
WO2012148806A1 (en) * 2011-04-29 2012-11-01 Honda Motor Co., Ltd. Serpentine section stabilizer for vehicle pillar
WO2012156248A3 (en) * 2011-05-17 2014-01-09 Kirchhoff Automotive Deutschland Gmbh Support used as a chassis component
US9446799B2 (en) 2011-05-17 2016-09-20 Kirchhoff Automotive Deutschland Gmbh Support used as a chassis component
GB2492143A (en) * 2011-06-23 2012-12-26 Parkhouse Country Estates Ltd Deck pole for supporting livestock laden decks and method
US20150048654A1 (en) * 2011-12-06 2015-02-19 Daimler Ag Body Component
US9162707B2 (en) * 2011-12-06 2015-10-20 Daimler Ag Body component
US20140314471A1 (en) * 2013-04-18 2014-10-23 Magna Steyr Fahrzeugtechnik Ag & Co Kg Hollow profile connection - gusset plate
US9868465B2 (en) * 2013-11-01 2018-01-16 Toyota Jidosha Kabushiki Kaisha Vehicle frame structure
US20160236715A1 (en) * 2013-11-01 2016-08-18 Toyota Jidosha Kabushiki Kaisha Vehicle frame structure
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ITUA20163088A1 (en) * 2016-05-02 2017-11-02 Innovando S R L S SUPPORT SYSTEM FOR COMPOSED METAL STRUCTURES
US10766536B2 (en) * 2016-09-07 2020-09-08 Thunder Power New Energy Vehicle Development Company Limited Lateral energy absorption system
US20180065677A1 (en) * 2016-09-07 2018-03-08 Thunder Power New Energy Vehicle Development Company Limited Lateral energy absorption system
US10336373B2 (en) * 2016-09-07 2019-07-02 Thunder Power New Energy Vehicle Development Company Limited Lateral energy absorption system
US9945123B2 (en) * 2016-09-16 2018-04-17 Peikko Group Oy Steel beam
US20180175002A1 (en) * 2016-12-15 2018-06-21 Intel Corporation Package-bottom interposers for land-side configured devices for system-in-package apparatus
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US20190152304A1 (en) * 2017-11-22 2019-05-23 Kabushiki Kaisha Kobe Seiko Sho (Kobe Steel, Ltd.) Door beam
US10843537B2 (en) 2017-11-22 2020-11-24 Kobe Steel, Ltd. Door beam
US20200332854A1 (en) * 2017-12-26 2020-10-22 Nippon Steel Corporation Impact absorbing member
US11530728B2 (en) * 2017-12-26 2022-12-20 Nippon Steel Corporation Impact absorbing member
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