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CN209263939U - Sliding bearing plate flatness detecting device - Google Patents

Sliding bearing plate flatness detecting device Download PDF

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Publication number
CN209263939U
CN209263939U CN201920065844.2U CN201920065844U CN209263939U CN 209263939 U CN209263939 U CN 209263939U CN 201920065844 U CN201920065844 U CN 201920065844U CN 209263939 U CN209263939 U CN 209263939U
Authority
CN
China
Prior art keywords
plate
sliding
measurement pedestal
detecting device
rack
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.)
Expired - Fee Related
Application number
CN201920065844.2U
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Chinese (zh)
Inventor
王静霞
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.)
Jiashan Zhengtong Self-Lubricating Composite Bearing Factory
Original Assignee
Jiashan Zhengtong Self-Lubricating Composite Bearing Factory
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 Jiashan Zhengtong Self-Lubricating Composite Bearing Factory filed Critical Jiashan Zhengtong Self-Lubricating Composite Bearing Factory
Priority to CN201920065844.2U priority Critical patent/CN209263939U/en
Application granted granted Critical
Publication of CN209263939U publication Critical patent/CN209263939U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of sliding bearing plate flatness detecting devices, it is related to Production of bearing process equipment, aim to solve the problem that existing bearing plate flatness detection is inconvenient, the problem of influencing processing efficiency, its key points of the technical solution are that: including measurement pedestal and roughness measuring instrument, bearing is placed on the measurement pedestal with plate, the side of the measurement pedestal connects organic frame, the rack slides along the side of the measurement pedestal of its connection, and laterally bending extends to the top for measuring pedestal for upper end, the upper transverse portion of the rack slides be connected with slide along its length, the roughness measuring instrument is fixed on slide, and the upper surface of test side direction measurement pedestal.The sliding bearing of the utility model plate flatness detecting device, can be relatively rapid and easily does flatness detection to each position of plate, so as to improve production and processing efficiency.

Description

Sliding bearing plate flatness detecting device
Technical field
The utility model relates to Production of bearing process equipments, more specifically, it relates to which a kind of sliding bearing is flat with plate Whole degree detection device.
Background technique
During the processing of sliding bearing, needs to use composite board and bearing outer ring etc. is made.Composite board It has the following steps in processing: the plate for completing sintering being put into milling train and carries out finish rolling, plate is made to be rolled down to specific thickness size, So as to it is subsequent in punching press, the processing such as cut, roll after bearing is made.
The finish rolling the step for, due to factors such as the operating errors of staff, often make the plate rolled out thick Degree is uneven, and the bearing quality processed is caused to be affected.
To solve the above problems, existing staff would generally be thick everywhere to it using slide calliper rule after the completion of plate rolling Degree measurement, to confirm whether plate is smooth, whether quality is qualified.
Limited by slide calliper rule, many times can only avris position detection to plate, and it is relatively slow to detect speed, influences to give birth to Produce processing efficiency, it is therefore desirable to propose the new scheme of one kind to solve this problem.
Utility model content
In view of the deficienciess of the prior art, the purpose of this utility model is to provide a kind of sliding bearing plate is smooth Spend detection device, can be relatively rapid and flatness detection easily be done to each position of plate, so as to improve production plus Work efficiency rate.
The above-mentioned technical purpose of the utility model has the technical scheme that a kind of sliding bearing plate Material flatness detecting device, including measurement pedestal and roughness measuring instrument, bearing are placed on the measurement pedestal with plate, The side of the measurement pedestal connects organic frame, and the rack slides along the side of the measurement pedestal of its connection, and upper end is lateral Bending extends to the top of measurement pedestal, and the upper transverse portion of the rack slides be connected with slide along its length, described coarse Degree measuring instrument is fixed on slide, and the upper surface of test side direction measurement pedestal.
By using above-mentioned technical proposal, when needing to do flatness detection to plate, staff first places plate In the upper surface of measurement pedestal, roughness measuring instrument is then opened, and then moving frame or moving sliding base, so that it may by thick Rugosity measuring instrument does flatness detection to each position of plate surface, due to need not manually use calliper to measure, so this reality Can be relatively rapid and flatness detection easily be done to each position of plate with novel, so as to improve production and processing effect Rate.
The utility model is further arranged to: the rack is in gantry rack-like, and the lower end of two feet of its portal frame is divided It is not connected with sliding block, the measurement symmetrical two sides of pedestal offer the sliding slot for agreeing with sliding block, the length of the sliding slot respectively Side along measurement pedestal extends, and the sliding block sliding is connected to sliding slot.
By using above-mentioned technical proposal, rack is in gantry rack-like, and is connected to sliding slot by sliding block sliding and realizes relatively Measure pedestal sliding.
The utility model is further arranged to: the slide includes sliding sleeve, and the sliding sleeve is sheathed on the rack of gantry rack-like Beam, and be threaded with positioning bolt, the positioning bolt wears sliding sleeve, and end contacts at rack, and the roughness is surveyed Amount instrument is connected to sliding sleeve.
By using above-mentioned technical proposal, roughness measuring instrument realizes the beam of sliding connection and rack by sliding sleeve, with right Plate is more comprehensively detected;Sliding sleeve can be made it contradict rack and be realized positioning with rotational positioning bolt, unnecessary to prevent Occur mobile when mobile and influences testing result.
The utility model is further arranged to: the slide includes movable mounting blocks, and the upper end of the activity mounting blocks turns Dynamic to be connected with connecting screw, the connecting screw extends straight up, and the upper end is threadedly connected to the lower part of sliding sleeve, described thick Rugosity measuring instrument is fixed on movable mounting blocks.
By using above-mentioned technical proposal, roughness measuring instrument is fixed on movable mounting blocks, movable mounting blocks phase Screw rod can be rotatablely connected by staff to the height of measurement pedestal and realize adjusting, so that the utility model can be to a variety of thickness The plate of degree detects, more adaptable.
The utility model is further arranged to: the roughness measuring instrument is coupled with industrial control computer, and the industry control calculates Machine is coupled with alarm, and controls alarm according to the measured value of roughness measuring instrument feedback.
By using above-mentioned technical proposal, after industrial control computer is arranged, plate is detected in roughness measuring instrument After out-of-flatness exceeds a certain threshold value, industrial control computer can correspond to control alarm and open sending alarm, to facilitate staff It uses, reinforces using effect.
The utility model is further arranged to: the pressing assembly of pressure holding plate is connected on the measurement pedestal.
By using above-mentioned technical proposal, staff can be pressed plate by pressing assembly, avoid its It is moved and interference detection results accidentally in detection process.
The utility model is further arranged to: the pressing assembly includes several mounting plates, and described mounting plate one end is fixed In the side of measurement pedestal, the other end extends upward the upper surface of measurement pedestal, and the mounting plate stretches out the upper of measurement pedestal The one end on surface extends laterally to the top of measurement pedestal, and the threaded one end that the mounting plate is laterally extended is connected with compacting spiral shell Bolt, the compacting bolt wears mounting plate and lower end contradicts on plate.
By using above-mentioned technical proposal, staff changes its position with respect to mounting plate by rotation pressure holding bolt, And makes its conflict there is plate can be realized and plate is fixed.
The utility model is further arranged to: one end that the mounting plate is laterally extended is provided with telescoping cylinder, described flexible The cylinder body of cylinder is fixed on mounting plate, and tailpiece of the piston rod is downward.
By using above-mentioned technical proposal, staff easily can be pressed plate by the way that control telescoping cylinder is flexible Work is held, use is more convenient.
In conclusion the utility model has the following beneficial effects: being provided with measurement pedestal places plate, measurement pedestal edge Side edge length slides rack, and rack extends to the top of measurement pedestal, and horizontal sliding;It is connected with roughness measuring instrument, thus The utility model need to only put plate well, and then moving frame or directly mobile roughness measuring instrument can be to each positions of plate For flatness detection, the mode of opposite manual measurement, the utility model can be relatively rapid and easily to each position of plate Flatness detection is done, so as to improve production and processing efficiency.
Detailed description of the invention
Fig. 1 is the structural schematic diagram one of the utility model, overall structure when showing that pressing assembly includes telescoping cylinder;
Fig. 2 is the system block diagram of the utility model, mainly to show the control structure of industrial control computer;
Fig. 3 is the structural schematic diagram two of the utility model, to show that pressing assembly includes whole knot when suppressing bolt Structure.
In figure: 1, measuring pedestal;101, platen;102, stabilizer blade;11, sliding slot;2, roughness measuring instrument;3, rack;31, sliding Block;4, slide;41, sliding sleeve;42, movable mounting blocks;43, connecting screw;5, positioning bolt;6, industrial control computer;61, it alarms Device;7, pressing assembly;71, mounting plate;72, bolt is suppressed;73, telescoping cylinder;731, conflict block.
Specific embodiment
With reference to the accompanying drawings and examples, the utility model is described in detail.
Sliding bearing plate flatness detecting device measures pedestal 1 and roughness measuring instrument 2 referring to Fig.1.Measurement The upright projection of pedestal 1 is rectangle, by platen 101 and uniform 102 structure of multiple stabilizer blades for being fixed on 101 lower part of platen At.
Organic frame 3 is connected on measurement pedestal 1, rack 3 is in gantry frame structure, and two feet of portal frame are located at survey The symmetrical two sides of pedestal 1 are measured, and the lower end of foot has been bolted to connection sliding block 31.In the foot towards rack 3 of platen 101 Side offer sliding slot 11, sliding slot 11 extends along the length side edge length of platen 101, and the sliding of sliding block 31 is connected to sliding slot 11 It is interior, and 11 length direction sliding along the chute, so that 3 horizontal sliding of rack is connected to platen 101.
The top of platen 101 is horizontally placed in the beam of the rack 3 of gantry frame structure, sliding is connected with slide 4 on the beam;Slightly Rugosity measuring instrument 2 is mounted on slide 4, and its test side is downward.
When needing to detect the flatness of plate, plate is placed on platen 101 by staff;If roughness measuring instrument 2 selection contacts, then fall in its probe on plate;If roughness measuring instrument 2 be it is contactless, guarantee its test side and plate Spacing is suitable between material;Staff drives 11 movement along the chute of rack 3 later, or slide 4 is driven to move along the beam of rack 3, Drive 2 movement of roughness measuring instrument that can measure each position of plate.
The measurement method of original pair relatively plate, the utility model can be relatively rapid and easily to each positions of plate Flatness detection is done, to improve production and processing efficiency.
Referring to Fig.1, slide 4 includes sliding sleeve 41 and movable mounting blocks 42.Sliding sleeve 41, which is arranged, to be fixed on rack 3 and is placed in platen The beam of 101 tops, and can slide along its length.Positioning bolt 5 is threaded on sliding sleeve 41, positioning bolt 5 is worn If sliding sleeve 41, and head is placed in outside sliding sleeve 41, screw rod end contacts at the beam of rack 3.It may be implemented by positioning bolt 5 to sliding sleeve 41 positioning.
The lower section positioned at sliding sleeve 41 of movable mounting blocks 42, the upper end are connected with a connection spiral shell around central axis rotation Bar 43, connecting screw 43 extend straight up, and the upper end is threadedly connected to sliding sleeve 41.Roughness measuring instrument 2 is fixed on On movable mounting blocks 42.
Staff can change its length for stretching out sliding sleeve 41 by being rotatablely connected screw rod 43 to adjust movable mounting blocks The position of 42 opposite platens 101, i.e. 2 height of adjusting roughness measuring instrument, to improve the applicability of the utility model.
Referring to Figures 1 and 2, in order to reinforce the using effect of the utility model, roughness measuring instrument 2 selects output type or matches The signal of output interface is set, electric signal connects an industrial control computer 6;Roughness measuring instrument 2 detects and feeds back corresponding data extremely Industrial control computer 6.6 electric signal of industrial control computer is connected with alarm 61.
A maximum irregularity degree is preset in industrial control computer 6 allows threshold value;When roughness measuring instrument 2 feeds back to industry control meter The detected value of calculation machine 6, which exceeds maximum irregularity degree, allows threshold value, then industrial control computer 6 controls the unlatching of alarm 61 and issues alarm signal Breath prompts staff's plate unqualified.
Referring to Fig.1, it is connected with the pressing assembly 7 for pressing plate, on measurement pedestal 1 to prevent plate when detecting It is moved accidentally, influences testing result.
Pressing assembly 7 scheme multiplicity, preferably two kinds of the utility model:
One, referring to Fig. 3, pressing assembly 7 includes several mounting plates 71, and mounting plate 71 is in inverted L shape, and vertical portion is fixed In the side of platen 101, horizontal portion is located at the top of platen 101;Compacting bolt is threaded in the horizontal portion of mounting plate 71 72, compacting bolt 72 penetrates mounting plate 71, and screw rod end contacts on plate, to realize the fixation to plate.
Two, referring to Fig.1, the difference with scheme one is: compacting bolt 72 is replaced with into telescoping cylinder 73, telescoping cylinder 73 Cylinder body is fixed on the horizontal top of mounting plate 71, and tailpiece of the piston rod extends straight down.When needing fixed plate, staff It only needs to control the elongation of telescoping cylinder 73, its tailpiece of the piston rod is made to contact at plate.Cylinder, oil cylinder or electricity may be selected in telescoping cylinder 73 Push away cylinder;The fixed conflict block 731 in the piston rod end of telescoping cylinder 73, conflict block 731 is made of rubber, for buffering, to avoid Telescoping cylinder 73 is accidentally flexible excessively to damage plate.
The above is only the preferred embodiment of the utility model, and the protection scope of the utility model is not limited merely to Above-described embodiment, technical solution belonging to the idea of the present invention belong to the protection scope of the utility model.It should refer to Out, for those skilled in the art, it is without departing from the principle of the utility model it is several improvement and Retouching, these improvements and modifications also should be regarded as the protection scope of the utility model.

Claims (8)

1. a kind of sliding bearing plate flatness detecting device, it is characterised in that: surveyed including measurement pedestal (1) and roughness It measures instrument (2), bearing is placed on the measurement pedestal (1) with plate, and the side of measurement pedestal (1) connects organic frame (3), The rack (3) slides along the side of the measurement pedestal (1) of its connection, and laterally bending extends to measurement pedestal (1) for upper end Top, the upper transverse portion of the rack (3) slides along its length to be connected with slide (4), and the roughness measuring instrument (2) is fixed On slide (4), and the upper surface of test side direction measurement pedestal (1).
2. sliding bearing according to claim 1 plate flatness detecting device, it is characterised in that: the rack (3) It is connected separately with sliding block (31) in the lower end of gantry rack-like, and two feet of its portal frame, the measurement pedestal (1) symmetrical two Side offers the sliding slot (11) for agreeing with sliding block (31) respectively, and the length of the sliding slot (11) is prolonged along the side of measurement pedestal (1) It stretches, sliding block (31) sliding is connected to sliding slot (11).
3. sliding bearing according to claim 2 plate flatness detecting device, it is characterised in that: the slide (4) Including sliding sleeve (41), the sliding sleeve (41) is sheathed on the beam of the rack (3) of gantry rack-like, and is threaded with positioning bolt (5), The positioning bolt (5) wears sliding sleeve (41), and end contacts at rack (3), and the roughness measuring instrument (2) is connected to sliding sleeve (41).
4. sliding bearing according to claim 3 plate flatness detecting device, it is characterised in that: the slide (4) Including movable mounting blocks (42), the upper end of the activity mounting blocks (42) is rotatably connected to connecting screw (43), the connection spiral shell Bar (43) extends straight up, and the upper end is threadedly connected to the lower part of sliding sleeve (41), and the roughness measuring instrument (2) is fixed on Movable mounting blocks (42).
5. sliding bearing according to claim 1 plate flatness detecting device, it is characterised in that: the roughness is surveyed Amount instrument (2) is coupled with industrial control computer (6), and the industrial control computer (6) is coupled with alarm (61), and according to roughness concentration The measured value of instrument (2) feedback controls alarm (61).
6. sliding bearing according to claim 1 plate flatness detecting device, it is characterised in that: the measurement pedestal (1) pressing assembly (7) of pressure holding plate is connected on.
7. sliding bearing according to claim 6 plate flatness detecting device, it is characterised in that: the pressing assembly It (7) include several mounting plates (71), the side of measurement pedestal (1) is fixed in described mounting plate (71) one end, and the other end prolongs upwards The upper surface of measurement pedestal (1) is stretched out, one end that the mounting plate (71) stretches out the upper surface of measurement pedestal (1) extends laterally to The top of pedestal (1) is measured, the threaded one end that the mounting plate (71) is laterally extended is connected with compacting bolt (72), the compacting Bolt (72) wears mounting plate (71) and lower end contradicts on plate.
8. sliding bearing according to claim 7 plate flatness detecting device, it is characterised in that: the mounting plate (71) one end being laterally extended is provided with telescoping cylinder (73), and the cylinder body of the telescoping cylinder (73) is fixed on mounting plate (71), piston Rod end is downward.
CN201920065844.2U 2019-01-16 2019-01-16 Sliding bearing plate flatness detecting device Expired - Fee Related CN209263939U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920065844.2U CN209263939U (en) 2019-01-16 2019-01-16 Sliding bearing plate flatness detecting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920065844.2U CN209263939U (en) 2019-01-16 2019-01-16 Sliding bearing plate flatness detecting device

Publications (1)

Publication Number Publication Date
CN209263939U true CN209263939U (en) 2019-08-16

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920065844.2U Expired - Fee Related CN209263939U (en) 2019-01-16 2019-01-16 Sliding bearing plate flatness detecting device

Country Status (1)

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CN (1) CN209263939U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112697076A (en) * 2020-12-17 2021-04-23 浙江工业大学 Device for detecting surface flatness of high-entropy alloy remelting layer and imaging of remelted layer contour
CN113340184A (en) * 2021-06-02 2021-09-03 上海佘山精密轴承有限公司 Inner ring planeness measuring instrument
CN116214370A (en) * 2023-05-10 2023-06-06 常州海洛轴承制造有限公司 Rocker arm bearing detection device and detection method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112697076A (en) * 2020-12-17 2021-04-23 浙江工业大学 Device for detecting surface flatness of high-entropy alloy remelting layer and imaging of remelted layer contour
CN113340184A (en) * 2021-06-02 2021-09-03 上海佘山精密轴承有限公司 Inner ring planeness measuring instrument
CN113340184B (en) * 2021-06-02 2022-03-11 上海佘山精密轴承有限公司 Inner ring planeness measuring instrument
CN116214370A (en) * 2023-05-10 2023-06-06 常州海洛轴承制造有限公司 Rocker arm bearing detection device and detection method
CN116214370B (en) * 2023-05-10 2023-07-04 常州海洛轴承制造有限公司 Rocker arm bearing detection device and detection method

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Granted publication date: 20190816