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JPS63221020A - Preparation of molded item having undercut - Google Patents

Preparation of molded item having undercut

Info

Publication number
JPS63221020A
JPS63221020A JP5581387A JP5581387A JPS63221020A JP S63221020 A JPS63221020 A JP S63221020A JP 5581387 A JP5581387 A JP 5581387A JP 5581387 A JP5581387 A JP 5581387A JP S63221020 A JPS63221020 A JP S63221020A
Authority
JP
Japan
Prior art keywords
mold
expandable
core
undercut
pressure
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.)
Granted
Application number
JP5581387A
Other languages
Japanese (ja)
Other versions
JPH0560408B2 (en
Inventor
Kenji Takatani
高谷 賢二
Manabu Sudo
学 須藤
Tadayuki Aono
忠行 青野
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.)
Zojirushi Corp
Original Assignee
Zojirushi Vacuum Bottle Co Ltd
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 Zojirushi Vacuum Bottle Co Ltd filed Critical Zojirushi Vacuum Bottle Co Ltd
Priority to JP5581387A priority Critical patent/JPS63221020A/en
Publication of JPS63221020A publication Critical patent/JPS63221020A/en
Publication of JPH0560408B2 publication Critical patent/JPH0560408B2/ja
Granted legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C49/00Blow-moulding, i.e. blowing a preform or parison to a desired shape within a mould; Apparatus therefor
    • B29C49/42Component parts, details or accessories; Auxiliary operations
    • B29C49/48Moulds
    • B29C49/54Moulds for undercut articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C49/00Blow-moulding, i.e. blowing a preform or parison to a desired shape within a mould; Apparatus therefor
    • B29C49/42Component parts, details or accessories; Auxiliary operations
    • B29C49/48Moulds
    • B29C49/54Moulds for undercut articles
    • B29C2049/542Moulds for undercut articles having means to facilitate the removal of the blow moulded articles
    • B29C2049/547Moulds for undercut articles having means to facilitate the removal of the blow moulded articles which are self actuated during the removing of the blow moulded articles, e.g. the means are spring loaded or flexible
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C33/00Moulds or cores; Details thereof or accessories therefor
    • B29C33/44Moulds or cores; Details thereof or accessories therefor with means for, or specially constructed to facilitate, the removal of articles, e.g. of undercut articles
    • B29C33/46Moulds or cores; Details thereof or accessories therefor with means for, or specially constructed to facilitate, the removal of articles, e.g. of undercut articles using fluid pressure

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Moulds For Moulding Plastics Or The Like (AREA)

Abstract

PURPOSE:To make it possible to mold a required shape on the surface, by closing a mold where an undercut is formed with a bag-like freely expandable and contractable member, acting a fluid pressure in the expandable and contractable member, removing the fluid pressure after molding, contracting and peeling off the expandable and contractable member, and thereafter opening the mold. CONSTITUTION:A cavity 3 and a core are opened and a pressurized fluid is sent in an expandable and contractable member 5 from a tube 8. The pressure is made higher than the pressure of the resin when being molded. In this condition, according to the usual blow molding operation, a parison is placed between the cavity 3 and a core 4, which are then closed. The parison is expanded by sending a compressed air and is contacted under pressure with the inner face of the mold. At this time, the expandable and contractable member 5 acts as a part of the core of the mold and an undercut part 3 is formed on a molded item 1 in accordance with the shape of the expandable and contractable member 5. Then, the pressurized fluid in the expandable and contractable member 5 is sucked by means of the tube 8. The expandable and contractable member 5 is thereby peeled off from the undercut part 2 of the molded item 1 and the cavity 3 and the core 4 are opened to take out the molded item 1.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は、合成樹脂等の射出成型、ブロー成型等の成型
に際し、その成型品がアンダーカットを有する場合にお
ける成型品の製造方法に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a method for producing a molded product when the molded product has an undercut during injection molding, blow molding, etc. of synthetic resin.

従来の技術 アンダーカットは、成型品の成型型に対する抜き方向に
対して交差する方向の凸部又は凹部であって、かかるア
ンダーカットを有する成型品は、そのままでは成型品と
成型型とが噛み合い、成型型から抜くことができない。
Conventional technology An undercut is a convex part or a concave part in a direction that intersects the drawing direction of a molded product with respect to the mold, and in a molded product having such an undercut, the molded product and the mold will not mesh with each other as it is. It cannot be removed from the mold.

従って従来は、このようなアンダーカットを有する成型
品を成型する場合には、当該アンダーカット部の成型型
に、アンギュラ−ピン、ドッグレッグカム、ラックアン
ドピニオン等の手段を利用して抜き方向に対して交差す
る方向の動きを与えていた。
Therefore, conventionally, when molding a molded product having such an undercut, the undercut part is molded using means such as an angular pin, dogleg cam, rack and pinion, etc. in the drawing direction. It gave a movement in the direction that crosses the object.

発明が解決しようとする問題点 しかしながらこれらの方法では、成型型を複数のブロッ
クで形成しなければならず、またこれらのブロックにそ
れぞれ別個の動きを与えなければならず、しかもこれら
のブロックの動きを通常は成型型の開き方向の動きのみ
で制御するので、成型型の構造として極めて複雑で且つ
巨大なものとなる。特に雌ねじ等のようにコア側にアン
ダーカットを有する場合には、極めて狭い限られたスペ
ースの中でブロックに全ての必要な動きをさせなければ
ならないのであって、成型型の設計が極めて困難である
Problems to be Solved by the Invention However, in these methods, the mold must be formed of a plurality of blocks, and each of these blocks must be given separate movement, and the movement of these blocks must be Since this is usually controlled only by the movement of the mold in the opening direction, the structure of the mold is extremely complex and large. Especially when there is an undercut on the core side, such as with a female thread, the block must make all the necessary movements within an extremely narrow space, making it extremely difficult to design the mold. be.

しかも成型型を構成するブロックが型の開閉の度に互い
に摺動するので、常に潤滑を確保する必要があり、成型
中に潤滑性が低下すると摺動部が摩耗しなり焼付きを生
じ、成型型を破損することが少くない。また成型時の熱
によって成型型が熱膨張することにより各ブロックの組
立てに狂いが生じ、摺動が困難になったり逆にブロック
間にガタが生じることもある。
Moreover, since the blocks that make up the mold slide against each other each time the mold is opened and closed, it is necessary to ensure lubrication at all times. If the lubricity decreases during molding, the sliding parts will wear out and seize, resulting in molding. The mold is often damaged. Furthermore, thermal expansion of the mold due to the heat generated during molding may cause errors in the assembly of each block, making it difficult to slide or conversely causing play between the blocks.

本発明はかかる事情に鑑みなされたものであって、極め
て簡単にアンダーカットを有する成型品を製造するため
の方法を提供することを目的とするものである。
The present invention has been made in view of the above circumstances, and it is an object of the present invention to provide a method for manufacturing a molded product having an undercut in an extremely simple manner.

問題点を解決する手段 而して本発明は、袋状の伸縮部材により成型型のアンダ
ーカット部を形成し、成型型を閉じた状態において前記
伸縮部材内に流体圧力を作用させ、・該伸縮部材の表面
において成型品を成型し、然る後前記伸縮部材内の流体
圧力を除去し、該伸縮部材を収縮させて該伸縮部材を前
記成型品から剥離せしめ、次いで前記成型型を開くこと
を特徴とするものである。
As a means for solving the problems, the present invention forms an undercut portion of a mold with a bag-like elastic member, applies fluid pressure to the elastic member in a closed state of the mold, and forming a molded article on a surface of a member, then removing fluid pressure within the telescoping member, contracting the telescoping member to separate the telescoping member from the molding, and then opening the mold. This is a characteristic feature.

第1図は本発明を適用したブロー成型法により、アンダ
ーカットを有する成型品を製造する方法を示すものであ
る。
FIG. 1 shows a method of manufacturing a molded product having an undercut by a blow molding method to which the present invention is applied.

この方法により成型される成型品1は、第2図に示すよ
うな略船形の中空物品であって、その一端部内側に内方
に食込んだアンダーカット部2が形成されている。
The molded product 1 molded by this method is a hollow article in the shape of a substantially boat as shown in FIG. 2, and an undercut portion 2 that digs inward is formed inside one end thereof.

而して第1図において3及び4は成型型のキャビティー
及びコアであって、キャビティー3は成型品1の該側面
及び底面に適合する成型面を有しており、またコア4は
、成型品1の内面におけるアンダーカット部2を除く部
分に適合した成型面を有している。
In FIG. 1, 3 and 4 are the cavity and core of the mold, and the cavity 3 has a molding surface that fits the side and bottom surfaces of the molded product 1, and the core 4 has a It has a molding surface that matches the inner surface of the molded product 1 except for the undercut portion 2.

5は前記コア4に取付けられた伸縮部材であって、アラ
ミド繊維、ガラス繊維、金属繊維、炭素繊維等の、耐熱
性を有し、強度が大きく且つ伸びの小さい繊維よりなる
織布を、前記成型品1のアンダーカット部2に適合した
形状の袋状に縫製し、その少なくとも内面にゴム状弾性
体よりなる気密層を形成し、さらに外面にはフッ素樹脂
等による粘着防止処理が施されている。
Reference numeral 5 denotes an elastic member attached to the core 4, which is made of a woven fabric made of heat-resistant, high-strength, low-elongation fibers such as aramid fibers, glass fibers, metal fibers, carbon fibers, etc. It is sewn into a bag shape that matches the undercut portion 2 of the molded product 1, and an airtight layer made of a rubber-like elastic material is formed on at least the inner surface of the bag, and an anti-adhesion treatment using fluororesin or the like is applied to the outer surface. There is.

而してこの伸縮部材5をコア4に形成された透孔6に嵌
合し、その先端部を成型面における成型品1のアンダー
カット部2に適合する位置に配置し、開口部はフランジ
金具7によりコア4に固定する。また該フランジ金具7
には、管8が取付けられており、鎖管8は前記伸縮部材
5内に開口している。
Then, this elastic member 5 is fitted into the through hole 6 formed in the core 4, and its tip is placed at a position that fits the undercut portion 2 of the molded product 1 on the molding surface, and the opening is connected to the flange fitting. 7 to fix it to the core 4. Also, the flange fitting 7
A pipe 8 is attached to the pipe 8, and the chain pipe 8 opens into the telescopic member 5.

次にこの成型型を使用して本発明により成型品1を成型
する操作を説明する。先ずキャビティー3とコア4とを
開いた状態で伸縮部材5内に管8から圧力流体を送入し
、伸縮部材5内に流体圧力を作用させる。この圧力流体
としては、空気、水、油等が使用できるが、圧力により
体積を変化させない液体を使用するのが望ましい。また
前記圧力流体の圧力は、成型時の樹脂の圧力より高いも
のとする必要があり、ブロー成型の場合であれば成型時
の吹込み空気圧は約5〜6ksIi程度であるので、約
7穐々程度が適当である。
Next, the operation of molding the molded product 1 according to the present invention using this mold will be explained. First, with the cavity 3 and core 4 open, pressurized fluid is introduced into the expandable member 5 from the pipe 8 to apply fluid pressure to the expandable member 5. Although air, water, oil, etc. can be used as this pressure fluid, it is preferable to use a liquid whose volume does not change due to pressure. In addition, the pressure of the pressure fluid needs to be higher than the pressure of the resin during molding, and in the case of blow molding, the air pressure blown during molding is about 5 to 6 ksIi, so it is necessary to The degree is appropriate.

この状態で、通常のブロー成型の操作に従ってキャビテ
ィー3とコア4との間にパリソンを配置し、キャビティ
ー3とコア4とを閉じてパリソンを挟圧し、さらに当該
パリソン内に圧縮空気を送入してパリソンを膨ませ、成
型型の内面に圧接させる。このとき前記伸縮部材5は、
成型型のコアの一部として作用し、成型品1は伸縮部材
5の表面に圧接され、伸縮部材5の形状に従ってアンダ
ーカット部2が形成される。この状態が第1図に実線で
示されている。
In this state, the parison is placed between the cavity 3 and the core 4 according to normal blow molding operations, the cavity 3 and the core 4 are closed to compress the parison, and compressed air is sent into the parison. The parison is inflated and pressed against the inner surface of the mold. At this time, the elastic member 5 is
Acting as part of the core of the mold, the molded product 1 is pressed against the surface of the elastic member 5, and an undercut portion 2 is formed according to the shape of the elastic member 5. This state is shown by the solid line in FIG.

次に管8で伸縮部材5内の圧力流体を吸引し、伸縮部材
5内に負圧を作用させる。これにより伸縮部材5は体積
を減少して第1図に鎖線で示したように収縮し、成型品
1のアンダーカット部2から剥離して成型品1と成型型
との噛み合い関係を解消する。この状態でキャビティー
3とコア4とを開けば、成型品1をコア4から取外すこ
とができるのである。
Next, the pressure fluid inside the telescopic member 5 is sucked through the pipe 8, and negative pressure is applied within the telescopic member 5. As a result, the expandable member 5 reduces its volume and contracts as shown by the chain line in FIG. 1, and is separated from the undercut portion 2 of the molded product 1, thereby dissolving the interlocking relationship between the molded product 1 and the mold. By opening the cavity 3 and core 4 in this state, the molded product 1 can be removed from the core 4.

なお成型型を開く場合、前述のように伸縮部材5内に負
圧を作用させ、当該伸縮部材5を積極的に収縮させるの
が好ましいが、成型型の形状や構造によっては、単に伸
縮部材5内の流体圧力を除去するだけでもよく、伸縮部
材5が変形しながら成型品1のアンダーカット部から脱
出することができる。
Note that when opening the mold, it is preferable to apply negative pressure to the telescopic member 5 as described above to actively contract the telescopic member 5, but depending on the shape and structure of the mold, the telescopic member 5 may simply be It is sufficient to simply remove the fluid pressure inside, and the elastic member 5 can escape from the undercut portion of the molded product 1 while being deformed.

発明の効果 本発明によれば、コア4の一部を構成する伸縮部材5が
流体圧力により膨張収縮をすることができるので、成型
品1を成型する際には内部に流体圧力を作用させて膨ま
せ、その表面に所望の形状に成型品を成型することがで
きると共に、伸縮部材5内の流体圧力を除去することに
より当該伸縮部材5を変形させてアンダーカットから脱
出させた状態において成型型を開くことができる。従っ
て成型型の構造を簡単なものとすることができると共に
、成型型を抜くために型の各部分に複雑な挙動をさせる
必要がなく、小さい成型型で極めて容易に且つ安価にア
ンダーカットを有する成型品を成型することができる。
Effects of the Invention According to the present invention, the expandable member 5 forming a part of the core 4 can be expanded and contracted by fluid pressure, so when molding the molded product 1, fluid pressure is not applied to the inside. The mold can be inflated and molded into a desired shape on the surface thereof, and the elastic member 5 can be deformed by removing the fluid pressure inside the elastic member 5 to escape from the undercut. can be opened. Therefore, the structure of the mold can be made simple, and there is no need to make each part of the mold make complicated movements in order to pull out the mold, and it is possible to form an undercut very easily and inexpensively with a small mold. Molded products can be molded.

実施例 本発明の方法は、前述のようなブロー成型においてのみ
適用できるものではなく、他の成型方法例えば射出成型
やトランスファー成型、注を成型等においても同様に適
用することができる。ただ射出成型やトランスファー成
型においては、樹脂圧力は極めて高圧であって約100
に3層にも及ぶことがあるので、伸縮部材5の材質や構
造もこの圧力に耐えるものとする必要がある。
Embodiments The method of the present invention is not only applicable to blow molding as described above, but also to other molding methods such as injection molding, transfer molding, and pour molding. However, in injection molding and transfer molding, the resin pressure is extremely high, approximately 100%
Since there may be as many as three layers in the pressure, the material and structure of the expandable member 5 must also be able to withstand this pressure.

また第1図の例においては、―ませた伸縮部材5が直接
成型品1のアンダーカット部2を成型するコア4の一部
を構成しているが、本発明はこれに限定されるものでは
ない。第3図に示すように伸縮部材5の一部に突起9を
突出させ、伸縮部材5をコア4に形成されな凹孔10に
嵌合して、突起9の先端のみをコア4の成型面から突出
させることもできる。
Further, in the example shown in FIG. 1, the bent elastic member 5 constitutes a part of the core 4 that molds the undercut portion 2 of the directly molded product 1, but the present invention is not limited to this. do not have. As shown in FIG. 3, a protrusion 9 is made to protrude from a part of the elastic member 5, and the elastic member 5 is fitted into a recess 10 not formed in the core 4, so that only the tip of the protrusion 9 is inserted into the molded surface of the core 4. It can also be made to protrude from the

特に硬質の合成樹脂を使用した射出成型等においては、
0.5〜1mm程度の微小の凹部でも型抜き不能のアン
ダーカットとなり、これを抜くために前述のような複雑
な型を使用しなければならないケースが少なくない。か
かる微小凹部を形成する場合に第3図の方法を採用する
ことにより、伸縮部材5の耐圧力をそれ程考慮すること
なく伸縮部材5内に射出圧力を超える超高圧の流体圧力
を作用させることができると共に、伸縮部材5の肉厚が
厚くても流体圧力を除去することにより、前記突起9を
前述程度の高さのアンダーカット部から脱出し得る程度
後退させ、容易に型を抜くことができる。
Especially in injection molding using hard synthetic resin,
Even a minute recess of about 0.5 to 1 mm results in an undercut that cannot be removed from the mold, and in many cases it is necessary to use a complicated mold as described above to remove it. By employing the method shown in FIG. 3 when forming such minute recesses, it is possible to apply ultra-high fluid pressure exceeding the injection pressure within the expandable member 5 without giving much consideration to the withstand pressure of the expandable member 5. In addition, even if the elastic member 5 is thick, by removing the fluid pressure, the protrusion 9 can be retreated to the extent that it can escape from the undercut portion of the above-mentioned height, and the mold can be easily removed. .

また本発明は、成型型のコア4に適用する場合に限らず
、キャビティー3についても適用することができること
は言うまでもない。
Furthermore, it goes without saying that the present invention is not limited to application to the core 4 of a mold, but can also be applied to the cavity 3.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明によりブロー成型法で成型品を成型する
状態を示す中央縦断面図であり、第2図は当該方法で成
型される成型品の斜視図である。 第3図は本発明の実施例を示す中央縦断面図である。 1・・・・・・成型品     2・・・・・・アンダ
ーカット部3・・・・・・キャビティー  4・・・・
・・コア5・・・・・・伸縮部材 萬:50 づ
FIG. 1 is a central vertical cross-sectional view showing a state in which a molded product is molded by the blow molding method according to the present invention, and FIG. 2 is a perspective view of the molded product molded by the method. FIG. 3 is a central vertical sectional view showing an embodiment of the present invention. 1... Molded product 2... Undercut portion 3... Cavity 4...
・・Core 5・・・・Extensible member: 50 zu

Claims (1)

【特許請求の範囲】[Claims] 1 袋状の伸縮部材(5)により成型型(3、4)のア
ンダーカット部を形成し、該成型型(3、4)を閉じた
状態において前記伸縮部材(5)内に流体圧力を作用さ
せ、該伸縮部材(5)の表面を型の一部として成型品(
1)を成型し、然る後前記伸縮部材(5)内の流体圧力
を除去し、該伸縮部材(5)を収縮させて該伸縮部材(
5)を前記成型品(1)のアンダーカット部(2)から
剥離せしめ、次いで前記成型型(3、4)を開くことを
特徴とする、アンダーカットを有する成型品の製造方法
1 Forming an undercut part of the mold (3, 4) with a bag-shaped telescopic member (5), and applying fluid pressure within the telescopic member (5) when the mold (3, 4) is closed. The surface of the elastic member (5) is used as part of the mold to form a molded product (
1), after which the fluid pressure in the elastic member (5) is removed and the elastic member (5) is contracted to form the elastic member (5).
5) is peeled from the undercut portion (2) of the molded product (1), and then the molds (3, 4) are opened.
JP5581387A 1987-03-11 1987-03-11 Preparation of molded item having undercut Granted JPS63221020A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP5581387A JPS63221020A (en) 1987-03-11 1987-03-11 Preparation of molded item having undercut

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5581387A JPS63221020A (en) 1987-03-11 1987-03-11 Preparation of molded item having undercut

Publications (2)

Publication Number Publication Date
JPS63221020A true JPS63221020A (en) 1988-09-14
JPH0560408B2 JPH0560408B2 (en) 1993-09-02

Family

ID=13009372

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5581387A Granted JPS63221020A (en) 1987-03-11 1987-03-11 Preparation of molded item having undercut

Country Status (1)

Country Link
JP (1) JPS63221020A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5037289A (en) * 1988-11-30 1991-08-06 Kabushiki Kaisha Placo Blow molding mold for forming hollow double-walled product and blow molding apparatus using such mold
JPH06182835A (en) * 1992-12-18 1994-07-05 Nissei Plastics Ind Co Injection mold
JP2007532344A (en) * 2004-04-07 2007-11-15 クレッシェンド・アクティーゼルスカブ Helmet, helmet liner, and method of manufacturing the same
WO2020113145A1 (en) * 2018-11-28 2020-06-04 Lifetime Products, Inc. Blow-molded plastic structures

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55103357A (en) * 1979-01-31 1980-08-07 Kanegafuchi Chemical Ind Mold and method for molding fabric having undercut by heat

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS55103357A (en) * 1979-01-31 1980-08-07 Kanegafuchi Chemical Ind Mold and method for molding fabric having undercut by heat

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5037289A (en) * 1988-11-30 1991-08-06 Kabushiki Kaisha Placo Blow molding mold for forming hollow double-walled product and blow molding apparatus using such mold
JPH06182835A (en) * 1992-12-18 1994-07-05 Nissei Plastics Ind Co Injection mold
JP2007532344A (en) * 2004-04-07 2007-11-15 クレッシェンド・アクティーゼルスカブ Helmet, helmet liner, and method of manufacturing the same
WO2020113145A1 (en) * 2018-11-28 2020-06-04 Lifetime Products, Inc. Blow-molded plastic structures

Also Published As

Publication number Publication date
JPH0560408B2 (en) 1993-09-02

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