JP4433362B2 - Method and apparatus for welding thermoplastic resin molding material - Google Patents

Method and apparatus for welding thermoplastic resin molding material Download PDF

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Publication number
JP4433362B2
JP4433362B2 JP2001029028A JP2001029028A JP4433362B2 JP 4433362 B2 JP4433362 B2 JP 4433362B2 JP 2001029028 A JP2001029028 A JP 2001029028A JP 2001029028 A JP2001029028 A JP 2001029028A JP 4433362 B2 JP4433362 B2 JP 4433362B2
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Prior art keywords
thermoplastic resin
welding
resin molded
molded body
heating element
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JP2001029028A
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JP2002225141A (en
Inventor
西川和之
牧口直史
土井英揮
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Sintokogio Ltd
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Sintokogio Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、熱可塑性樹脂成形体素材の溶着方法およびその装置に係り、より詳しくは、ABS、PMMA、PS等の熱可塑性樹脂で成形された成形体素材(以下、成形体素材と略称する)を溶着して、例えば、自動車のランプ、インテークマニホールド、バッテリ等の熱可塑性樹脂成形体の完成品を製造する方法およびその装置に関する。
【0002】
【従来の技術】
従来、溶着部を有する成形体素材におけるその溶着部を加熱軟化させる方法の一つとして、前記溶着部に昇温された発熱体を当接させて行なうようにしたものがある。そして、この発熱体としては、金属部材に電気ヒータを内蔵して電気ヒータの発熱によって金属部材を加熱する構造のものが一般に使用されている。
【0003】
【発明が解決しようとする課題】
しかし、このような従来の電気ヒータ内蔵の金属部材による加熱方法では、金属部材の昇温に当たり、長時間を要したりエネルギーロスがあり、しかも、金属部材の形状によっては、前記溶着部との対向部分の温度が不均一であるなどの問題があった。
【0004】
本発明は、上記の事情に鑑みて成されたもので、その目的は、成形体素材の溶着部を適確に加熱することが可能な成形体素材の溶着方法およびその装置を提供することにある。
【0005】
【課題を解決するための手段】
上記の目的を達成するため本発明は、少なくとも1個の熱可塑性樹脂成形体素材に溶着部を有する2個以上の熱可塑性樹脂成形体素材のうち少なくとも一方の熱可塑性樹脂成形体素材における前記溶着部を加熱軟化させたのち前記溶着部と前記熱可塑性樹脂成形体素材または2個以上の前記溶着部同士を当接させて2個以上の前記熱可塑性樹脂成形体素材を溶着させる熱可塑性樹脂成形体素材の溶着方法において、針金状を成していて前記溶着部に対向して三次元的に延びる形状を成しかつ通電によって発熱する通電発熱体を、または、前記熱可塑性樹脂成形体素材を移動させ、これにより、前記通電発熱体を前記溶着部に接近または当接させてこの溶着部を加熱することを特徴とする。
【0006】
なお、本発明における通電発熱体は、ニッケル・クロム合金や鉄・クロム合金を材料にした発熱体であり、しかも、直径2〜6mmの針金材から成っている。
本発明の通電発熱体は、 針金材であるために三次元的に延びることができる。
【0007】
【発明の実施の形態】
以下、本発明を適用した成形体素材の溶着装置の実施例について図1〜図4に基づき詳細に説明する。図1に示すように、本成形体素材の溶着装置においては、定盤状の下テーブル1が昇降可能に配設してあり、下テーブル1上には、背面である上面にリブ状の溶着部Sを突設した下成形体素材を保持する下受型2が取り付けてある。また、下受型2の上方には加熱装置3が下受型2の真上位置に入出可能にして配設してあり、加熱装置3は、定盤状の支持部材4と、支持部材4の下面に複数の上下調節棒5・5を介して装着した前記下成形体素材用の下加熱機構6と、前記支持部材4の上面に複数の上下調節棒7・7を介して装着した上成形体素材用の上加熱機構8と、で構成してある。そして、上成形体素材は背面である下面にリブ状の溶着部Sが突設してある。
【0008】
これら下・上加熱機構8・6は、通電によって発熱する通電発熱体9・9と、定盤状を成しかつ絶縁性で耐熱性の下・上保持部材10・11とで構成してあり、前記通電発熱体9・9の各々は、針金状を成していて前記下・上成形体素材
の溶着部S・ Sのそれぞれにほぼ対向して延び、かつ、熱膨張による伸長に対して所要形状に維持すべく前記保持部材10・11の表面上に刻設した溝12・12の内部に、直径方向において所要長さ埋没して所要形状に維持されて装着してある。
【0009】
また、前記通電発熱体9・9のそれぞれは、図2のイに示すように、上方へ鋭角状に折れ曲がって通電発熱体9・9自体の熱膨張を吸収する吸収部14を形成しており、この吸収部14は前記保持部材10・11にそれぞれ設けた収納孔15内に収納してある。
なお、吸収部14を鋭角状に形成すると、通電発熱体9・9が熱膨張して長さが伸長しても、屈曲部が相互に接近するだけで、この熱膨張によって溝12・12内の通電発熱体9・9が溝12・12から大きく突出することはない。
【0010】
なおまた、前記収納孔15は、前記溝12・12に沿って延びるとともに前記保持部材10・11をそれぞれ上下に貫通する長孔状を成し、かつ、前記下・上成形体素材・Wが位置する側とは反対の側の約半分が前記通電発熱体9・9の延びる方向へ広がっている。また、前記収納孔15内における通電発熱体9・9の両端付近間には収納孔15の上部とほぼ同じ角度の傾斜部を有する絶縁性の押え部材16が挿入してあって、前記通電発熱体9・9を前記保持部材10・11にそれぞれ固定している。そして、前記通電発熱体9・9のそれぞれの両端は図示しない電源に接続している。
【0011】
また、前記加熱装置3の上方には、前記上成形体素材を保持する上受型17を下面に取り付けた上テーブル18が、前記下受型2、下テーブル1等と対向して昇降可能に配設してある。
【0012】
このように構成したものは、図1に示すように、2個の下・上成形体素材・ Wをそれぞれ保持した下受型2と上受型17との間位置に加熱装置3を進入させ、続いて、下テーブル1を介して下受型2を上昇させるとともに上テーブル18を介して上受型17を下降させて、2個の下・上成形体素材・ Wをそれぞれ通電発熱体9・9に近接させるとともにその状態を維持する。
【0013】
これにより、下・上成形体素材・ Wの溶着部S
を通電発熱体9・9によってそれぞれ加熱軟化させる。溶着部S・ Sの加熱完了後、下受型2を下降させるとともに上受型17を上昇させ、続いて、通電発熱体9・9を下受型2と上受型17との間位置から後退させる。その後、再び下受型2を上昇させるとともに上受型17を下降させて、加熱軟化した溶着部S・Sを互いに当接させ、溶着部S・ Sが冷却されるまで下・上成形体素材・W同士を押圧する。これにより、2個の下・上成形体素材・ Wは溶着部S・Sにて強固に溶着されることとなる。
【0014】
なお、上記の実施例では、通電発熱体9・9の熱膨張の吸収部14は図2のイに示すように構成したが、これに限定されるものではなく、例えば図2のロに示すように、上方へ鋭角状に折れ曲がった吸収部34を半円弧状に繋ぎかつフック状の牽引部材35と支持部材36によって前記保持部材10・11に装着しても同様の作用効果が得られる。またなお、前記牽引部材35は、図3のイに示すように、フック状のものの代わりに、引っ張りコイルばね状のもの45、図3のロに示すようにリング状のもの55にしても同様の作用効果が得られる。
【0015】
さらになお、上記の実施例では、保持部材10・11に対する通電発熱体9・9の固定は、押え部材16の収納孔15への挿入によって行なっているが、これに限定されるものではなく、例えば図4に示すように、引っ張りコイルばね46によって弾性支持した支持部材47に通電発熱体9の両端付近を押え金具48・48によって固定し、前記引っ張りコイルばね46は前記保持部材10・11にブラケット49を介してそれぞれ係止するようにしてもよい。
【0016】
【発明の効果】
以上の説明から明らかなように本発明は、少なくとも1個の熱可塑性樹脂成形体素材に溶着部を有する2個以上の熱可塑性樹脂成形体素材のうち少なくとも一方の熱可塑性樹脂成形体素材における前記溶着部を加熱軟化させたのち前記溶着部と前記熱可塑性樹脂成形体素材または2個以上の前記溶着部同士を当接させて2個以上の前記熱可塑性樹脂成形体素材を溶着させる熱可塑性樹脂成形体素材の溶着方法において、針金状を成していて前記溶着部に対向して三次元的に延びる形状を成し通電によって発熱する通電発熱体を、または、前記熱可塑性樹脂成形体素材を移動させ、これにより、前記通電発熱体を前記溶着部に接近または当接させてこの溶着部を加熱するから、成形品素材の溶着部を適確に加熱して軟化させることが可能なるなどの優れた実用的効果を奏する。
【図面の簡単な説明】
【図1】本発明を適用した成形体素材の溶着装置の一実施例を示す概略正面図である。
【図2】図1の主要部に係る各種の実施例の拡大詳細図である。
【図3】図1の主要部に係る各種の実施例の拡大詳細図である。
【図4】図1の主要部に係る他の実施例の拡大詳細図である。
【符号の説明】
9 通電発熱体
10;11 保持部材
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a method and apparatus for welding a thermoplastic resin molded body material , and more specifically, a molded body material molded from a thermoplastic resin such as ABS, PMMA, PS, or the like (hereinafter abbreviated as a molded body material ). And, for example, a method and an apparatus for manufacturing a finished product of a thermoplastic resin molded body such as an automobile lamp, an intake manifold, and a battery.
[0002]
[Prior art]
Conventionally, as one method of heating and softening a welded part in a molded body material having a welded part, there is a method in which a heated heating element is brought into contact with the welded part. And as this heat generating body, the thing of the structure which incorporates an electric heater in a metal member and heats a metal member by the heat_generation | fever of an electric heater is generally used.
[0003]
[Problems to be solved by the invention]
However, in such a conventional heating method using a metal member with an electric heater, it takes a long time or energy loss to raise the temperature of the metal member, and depending on the shape of the metal member, There was a problem that the temperature of the facing portion was not uniform.
[0004]
The present invention has been made in view of the above circumstances, and its object is to provide a welding method and apparatus of the molding material capable of heating the welded portion of the molded body material to accurately is there.
[0005]
[Means for Solving the Problems]
In order to achieve the above object, the present invention provides the above-mentioned welding in at least one thermoplastic resin molded material of two or more thermoplastic resin molded materials having a welded portion in at least one thermoplastic resin molded material . Thermoplastic resin molding in which two or more thermoplastic resin molded materials are welded by bringing the welded portion and the thermoplastic resin molded material or two or more welded portions into contact with each other after heat softening the portion In the welding method of the body material , an energizing heating element that forms a wire shape and extends in a three-dimensional manner facing the welding portion and generates heat by energization, or the thermoplastic resin molded body material is used. It is made to move, and this makes the said heating part approach or contact | abut to the said welding part, and heats this welding part, It is characterized by the above-mentioned.
[0006]
The energization heating element in the present invention is a heating element made of nickel / chromium alloy or iron / chromium alloy, and is made of a wire material having a diameter of 2 to 6 mm.
Since the energization heating element of the present invention is a wire material, it can extend three-dimensionally.
[0007]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of a molded body material welding apparatus to which the present invention is applied will be described below in detail with reference to FIGS. As shown in FIG. 1, in the welding apparatus for the molded body material , a lower table 1 having a surface plate shape is disposed so as to be movable up and down. A lower receiving mold 2 for holding the lower molded body material W 1 protruding from the portion S 1 is attached. In addition, a heating device 3 is disposed above the lower receiving die 2 so as to be able to enter and exit right above the lower receiving die 2. The heating device 3 includes a surface plate-like support member 4 and a support member 4. The lower heating mechanism 6 for the lower molded body material W 1 mounted on the lower surface of the support member 5 via a plurality of vertical adjustment bars 5, 5 and the upper surface of the support member 4 mounted via the plurality of vertical adjustment bars 7, 7. an upper heating mechanism 8 on molding body material W 2 that, in are constituted. The upper molded body material W 2 has a rib-like welded portion S 2 projectingly provided on the lower surface which is the back surface.
[0008]
These lower and upper heating mechanisms 8 and 6 are composed of energizing heating elements 9 and 9 that generate heat when energized and lower and upper holding members 10 and 11 that form a surface plate and are insulating and heat resistant. each of the energization heater 9, 9, the lower-upper molding body not make a wire-like material W 1,
Grooves 12. Which are formed on the surfaces of the holding members 10 and 11 so as to extend substantially opposite to the welded portions S 1 and S 2 of W 2 and to maintain a required shape against expansion due to thermal expansion. 12 is embedded in a required length in the diametrical direction so as to be maintained in a required shape.
[0009]
Further, as shown in FIG. 2A, each of the energization heating elements 9 and 9 is bent upward at an acute angle to form an absorption portion 14 that absorbs the thermal expansion of the energization heating elements 9 and 9 itself. The absorbing portion 14 is housed in housing holes 15 provided in the holding members 10 and 11, respectively.
In addition, if the absorption part 14 is formed in an acute angle shape, even if the energization heating elements 9 and 9 are thermally expanded and the length is extended, the bent parts only approach each other. The energization heating elements 9 and 9 do not protrude greatly from the grooves 12 and 12.
[0010]
The storage hole 15 extends along the grooves 12 and 12 and has a long hole shape that vertically penetrates the holding members 10 and 11, and the lower and upper molded body materials W 1 and W. About half of the side opposite to the side where W 2 is located spreads in the direction in which the energization heating elements 9 and 9 extend. In addition, an insulating pressing member 16 having an inclined portion having substantially the same angle as that of the upper portion of the storage hole 15 is inserted between both ends of the conductive heating elements 9 and 9 in the storage hole 15. The bodies 9 and 9 are fixed to the holding members 10 and 11, respectively. The both ends of the energization heating elements 9, 9 are connected to a power source (not shown).
[0011]
Further, the above heating device 3, the upper receiving die 17 for holding the upper molded body material W 2 on the table 18 attached to the lower surface, the lower receiving mold 2, so as to face the lower table 1, such as lifting It is possible to arrange.
[0012]
As shown in FIG. 1, the structure thus configured has a heating device 3 at a position between the lower receiving mold 2 and the upper receiving mold 17 that respectively hold two lower and upper molded body materials W 1 and W 2. Then, the lower receiving mold 2 is raised through the lower table 1 and the upper receiving mold 17 is lowered through the upper table 18 to thereby lower the two lower and upper molded body materials W 1 and W 2. Are kept close to the energization heating elements 9, 9, respectively, and the state is maintained.
[0013]
Accordingly, the welding portion of the lower-upper molding body material W 1 · W 2 S 1 ·
S 2 is heated and softened by the energization heating elements 9 and 9 respectively. After the heating of the welded portions S 1 and S 2 is completed, the lower receiving die 2 is lowered and the upper receiving die 17 is raised, and then the energization heating elements 9 and 9 are placed between the lower receiving die 2 and the upper receiving die 17. Retract from position. Thereafter, the lower receiving mold 2 is raised again, and the upper receiving mold 17 is lowered to bring the heat-softened welded portions S 1 and S 2 into contact with each other, and lower until the welded portions S 1 and S 2 are cooled. The upper molded body materials W 1 and W 2 are pressed together. As a result, the two lower and upper molded body materials W 1 and W 2 are firmly welded at the welded portions S 1 and S 2 .
[0014]
In the above-described embodiment, the thermal expansion absorbing portion 14 of the energization heating elements 9 and 9 is configured as shown in FIG. 2A, but is not limited to this. For example, as shown in FIG. As described above, the same effect can be obtained even when the absorbing portion 34 bent upward at an acute angle is connected in a semicircular arc shape and attached to the holding members 10 and 11 by the hook-like pulling member 35 and the support member 36. Further, the pulling member 35 may be a tension coil spring 45 instead of a hook as shown in FIG. 3A, or a ring 55 as shown in FIG. The following effects can be obtained.
[0015]
Furthermore, in the above embodiment, the energization heating elements 9 and 9 are fixed to the holding members 10 and 11 by inserting the holding members 16 into the storage holes 15, but the present invention is not limited to this. for example, as shown in FIG. 4, the tensile secured by brackets 48, 48 pressing the vicinity of both ends of the energization heater 9 to the support member 47 which is elastically supported by the coil spring 46, the tension coil spring 46 in the holding member 10, 11 You may make it latch respectively via the bracket 49. FIG.
[0016]
【The invention's effect】
As is clear from the above description, the present invention relates to the thermoplastic resin molded body material in at least one of the two or more thermoplastic resin molded body materials having a welded portion in at least one thermoplastic resin molded body material . Thermoplastic resin in which two or more thermoplastic resin molding materials are welded by bringing the welding portion and the thermoplastic resin molding material or two or more welding portions into contact with each other after heat-softening the welding portion In the method of welding a molded body material , an electric heating element that forms a wire shape and extends in a three-dimensional manner facing the welding portion and generates heat by energization, or the thermoplastic resin molded body material is used. This causes the energization heating element to approach or abut against the welded portion to heat the welded portion, so that the welded portion of the molded product material can be heated appropriately and softened. Excellent Has a practical effect.
[Brief description of the drawings]
FIG. 1 is a schematic front view showing an embodiment of a molding material welding apparatus to which the present invention is applied.
FIG. 2 is an enlarged detail view of various embodiments according to the main part of FIG.
FIG. 3 is an enlarged detail view of various embodiments according to the main part of FIG. 1;
4 is an enlarged detail view of another embodiment according to the main part of FIG.
[Explanation of symbols]
9 Current-carrying heating element 10; 11 Holding member

Claims (7)

少なくとも1個の熱可塑性樹脂成形体素材に溶着部を有する2個以上の熱可塑性樹脂成形体素材のうち少なくとも一方の熱可塑性樹脂成形体素材における前記溶着部を加熱軟化させたのち前記溶着部と前記熱可塑性樹脂成形体素材または2個以上の前記溶着部同士を当接させて2個以上の前記熱可塑性樹脂成形体素材を溶着させる熱可塑性樹脂成形体素材の溶着方法において、
針金状を成していて前記溶着部に対向して三次元的に延びる形状を成しかつ通電によって発熱する通電発熱体を、または、前記熱可塑性樹脂成形体素材を移動させ、これにより、前記通電発熱体を前記溶着部に接近または当接させてこの溶着部を加熱することを特徴とする熱可塑性樹脂成形体素材の溶着方法。
At least one thermoplastic resin molding material having at least one thermoplastic resin molding material having at least one thermoplastic resin molding material , heat-softening the welding portion in at least one thermoplastic resin molding material, and in the thermoplastic resin molded body material or two or more of the welded portion welding a thermoplastic resin molded body material for welding two or more of the thermoplastic resin molded body material with each other it is brought into contact with,
An electric heating element that forms a wire shape and extends in a three-dimensional manner facing the welded portion and generates heat when energized, or the thermoplastic resin molded body material is moved. A method for welding a thermoplastic resin molded body material , wherein an energized heating element is brought close to or in contact with the welded portion to heat the welded portion.
請求項1に記載の熱可塑性樹脂成形体素材の溶着方法において、
前記通電発熱体が直径方向において所要長さ埋没可能でありかつ通電発熱体を所要形状に維持する溝を有する保持手段によって前記通電発熱体を保持することを特徴とする熱可塑性樹脂成形体素材の溶着方法。
In the welding method of the thermoplastic resin molded material according to claim 1,
A thermoplastic resin molded body material characterized in that the energization heating element is held by a holding means which can be buried in a required length in the diameter direction and has a groove for maintaining the energization heating element in a required shape. Welding method.
請求項1または2に記載の熱可塑性樹脂成形体素材の溶着方法において、
熱膨張を吸収する吸収部を有する通電発熱体を前記溶着部に接近または当接させることを特徴とする熱可塑性樹脂成形体素材の溶着方法。
In the welding method of the thermoplastic resin molded body material according to claim 1 or 2,
A method of welding a thermoplastic resin molded body material , characterized in that an energization heating element having an absorption part for absorbing thermal expansion is brought close to or in contact with the welding part.
少なくとも1個の熱可塑性樹脂成形体素材に溶着部を有する2個以上の熱可塑性樹脂成形体素材のうち少なくとも一方の熱可塑性樹脂成形体素材における前記溶着部を加熱軟化させたのち前記溶着部と前記熱可塑性樹脂成形体素材または2個以上の前記溶着部同士を当接させて2個以上の熱可塑性樹脂成形体素材を溶着させる熱可塑性樹脂成形体素材の溶着装置において、
前記溶着部を加熱軟化させる発熱体を、通電によって発熱する通電発熱体によって構成し、針金状にして前記溶着部に対向して三次元的に延びる形状を成し、かつ、熱膨張による伸長に対して所要形状に維持すべく保持部材によって保持し、さらに、前記発熱体が前記溶着部に対して進行するか、または前記溶着部が前記発熱体に対して進行して、前記通電発熱体は前記溶着部に接近または当接してこの溶着部を加熱することを特徴とする熱可塑性樹脂成形体素材の溶着装置。
At least one thermoplastic resin molding material having at least one thermoplastic resin molding material having at least one thermoplastic resin molding material , heat-softening the welding portion in at least one thermoplastic resin molding material, and in welding device for thermoplastic resin molded body material for welding two or more thermoplastic resin molded material and the thermoplastic resin molded body material or abut two or more of the welded portions,
The heating element that heats and softens the welded portion is constituted by an energized heating element that generates heat when energized, forms a wire shape and extends three-dimensionally facing the welded portion, and is extended by thermal expansion. On the other hand, it is held by a holding member to maintain a required shape, and further, the heating element advances relative to the welding part, or the welding part advances relative to the heating element, A welding apparatus for a thermoplastic resin molded material , which heats the welded part by approaching or abutting the welded part.
請求項4に記載の熱可塑性樹脂成形体素材の溶着装置において、
前記保持部材は前記通電発熱体を直径方向において所要長さ埋没させて所要形状に維持可能な溝を有することを特徴とする熱可塑性樹脂成形体素材の溶着装置。
In the welding apparatus of the thermoplastic resin molded body material according to claim 4,
The thermoplastic resin molded body material welding device, wherein the holding member has a groove capable of burying the energization heating element in a required length in the diameter direction and maintaining the required shape.
請求項4または5に記載の熱可塑性樹脂成形体素材の溶着装置において、
前記通電発熱体は熱膨張を吸収する吸収部を有することを特徴とする熱可塑性樹脂成形体素材の溶着装置。
In the welding apparatus of the thermoplastic resin molded body material according to claim 4 or 5,
The welding device for thermoplastic resin molded material , wherein the energization heating element has an absorption part for absorbing thermal expansion.
請求項4〜6のうち少なくとも1項に記載の熱可塑性樹脂成形体素材の溶着装置において、
前記通電発熱体は直径2〜6mmの針金材であることを特徴とする熱可塑性樹脂成形体素材の溶着装置。
In the welding apparatus of the thermoplastic resin molded material according to at least one of claims 4 to 6,
The welding device for thermoplastic resin molded material , wherein the energization heating element is a wire material having a diameter of 2 to 6 mm.
JP2001029028A 2001-02-06 2001-02-06 Method and apparatus for welding thermoplastic resin molding material Expired - Fee Related JP4433362B2 (en)

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