JP2005059606A - Injection drawing blow molding machine - Google Patents

Injection drawing blow molding machine Download PDF

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JP2005059606A
JP2005059606A JP2004346803A JP2004346803A JP2005059606A JP 2005059606 A JP2005059606 A JP 2005059606A JP 2004346803 A JP2004346803 A JP 2004346803A JP 2004346803 A JP2004346803 A JP 2004346803A JP 2005059606 A JP2005059606 A JP 2005059606A
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mold
injection
blow
cavity
mounting plate
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JP3916167B2 (en
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Hisao Yamaguchi
久雄 山口
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Aoki Technical Laboratory Inc
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Abstract

<P>PROBLEM TO BE SOLVED: To allow an injection drawing blow molding using a transverse injection molding machine of a usual make-up; by attaching as a unit between a stationary board and a movable board of a mold clamping device, a drawing blow device, a revolving transfer means and blowing cavity molds. <P>SOLUTION: A drawing blow molding unit is attached to the mold clamping device of the transverse injection molding machine. The drawing blow molding unit is equipped with a pair of front and rear mold mounting plates, the injection cavity mold attached to the center of the front mold mounting plate, a pair of split type blow cavity molds attached respectively to the lower parts of the front and rear mold mounting plates, the revolving transfer means for a preform and the drawing blow device both located upside the blow cavity molds, and an injection core attached and extending from the revolving transfer means into the injection cavity mold. The front mold mounting plate is attached to the stationary board side of the mold clamping device. The rear mold mounting plate is attached to the movable board side. The revolving transfer means and the drawing blow device are pierced and supported movably on a tie-bar between the stationary board and the movable board. Mold clamping of the injection cavity mold and the injection core mold, and mutual mold clamping of the blow cavity molds are made simultaneously achievable by forward moving of the movable board. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

この発明は、通常構造の横型射出成形機の型締装置に延伸ブロー成形ユニットを配設して構成した射出延伸ブロー成形機に関するものである。   The present invention relates to an injection stretch blow molding machine configured by arranging a stretch blow molding unit in a mold clamping device of a horizontal injection molding machine having a normal structure.

従来の中空成形品の射出成形には、射出ブロー成形と射出延伸ブロー成形との二つの成形方法がある。射出ブロー成形は射出キャビティ型とブローキャビティ型の両方と交互に型閉じする複数の射出コア型を備え、その射出コア型の周囲に射出成形したプリフォームを、そのまま射出コア型と共にブローキャビティ型に移送し、そのブローキャビティ型内にて射出コア型からプリフォームにエアブローして中空成形品に成形している。   Conventional injection molding of hollow molded products includes two molding methods, injection blow molding and injection stretch blow molding. Injection blow molding has a plurality of injection core molds that are alternately closed with both injection cavity molds and blow cavity molds, and preforms that have been injection molded around the injection core molds can be used as blow cavity molds together with the injection core molds. It is transferred and air blown from the injection core mold to the preform in the blow cavity mold to form a hollow molded product.

プリフォームの移送手段としては、垂直回転手段、水平回転手段などが採用され、また水平位置にて射出成形したプリフォームを垂直位置に移送する傾斜回転手段などがあるが、そこに採用されている回転移送手段の構造から、通常構造の横型射出成形機をそのまま利用して、中空成形品のブロー成形を安易に行うことができず、このため射出ブロー成形機は専用機として提供されている。   As the preform transferring means, vertical rotating means, horizontal rotating means, etc. are adopted, and inclined rotating means for transferring the preform injection-molded in the horizontal position to the vertical position, etc. are adopted there. Due to the structure of the rotary transfer means, it is not possible to easily perform blow molding of a hollow molded product using a horizontal injection molding machine having a normal structure as it is, and therefore, an injection blow molding machine is provided as a dedicated machine.

また延伸ブロー成形には、プリフォームの射出成形と延伸ブロー成形とを別個の成形機により行う2ステーション方式(コールドパリソン方式)と、射出ブロー成形と同様に、プリフォームの射出成形から延伸ブロー成形を連続して行う1ステーション方式(ホットパリソン方式)とがある。   For stretch blow molding, two-station method (cold parison method) in which preform injection molding and stretch blow molding are performed on separate molding machines, and injection blow molding to preform blow molding as well as injection blow molding. There is a one-station method (hot parison method) that performs the above operation continuously.

1ステーション方式でも、射出ブロー成形と同様に射出コア型にプリフォームを抱きつかせてブローキャビティ型に移送し、ブローキャビティ型内にてプリフォームを、射出コア型に仕込んだ延伸ロッドとエアブローとにより、中空成形品に延伸ブロー成形する方法と、射出コア型を抜き取ってネック型(リップ型)により、プリフォームのネック又は口部を保持してブローキャビティ型に移送し、別に準備した延伸ロッド内装のブローコアを用いて、プリフォームをブローキャビティ型内で、中空成形品に延伸ブロー成形するする方法とがある。   Even in the one-station system, the preform is held in the injection core mold and transferred to the blow cavity mold in the same manner as in the injection blow molding, and the preform is transferred into the blow cavity mold by the draw rod and the air blow charged in the injection core mold. , A method of stretch blow molding into hollow molded products, and pulling out the injection core mold, holding the neck or mouth of the preform by the neck mold (lip mold), transferring it to the blow cavity mold, and separately preparing the stretch rod interior There is a method in which a preform is stretch blow molded into a hollow molded product in a blow cavity mold using the above blow core.

射出コア型によるプリフォームの移送及び延伸ブローでは、プリフォームが射出コア型に抱きついていることから、延伸ロッドによる軸方向の延伸が難しく、また射出コア型側から受ける熱影響による温度分布の不安定さから均一な延伸ブローが困難なことから、現在では実用機として採用されて居らず、射出コア型による移送であっても、延伸ブロー時には射出コア型を抜き取ってブローコアに替える方法が採用されている。   In the transfer and stretch blow of the preform by the injection core mold, the preform is stuck to the injection core mold, so that it is difficult to stretch in the axial direction by the stretch rod, and the temperature distribution is not affected by the thermal effect from the injection core mold side. Since uniform stretch blow is difficult due to stability, it has not been adopted as a practical machine at present, and even when transferring by an injection core mold, a method of extracting the injection core mold and replacing it with a blow core at the time of stretch blow is adopted. ing.

このようなことから、実用化されている1ステーション方式の全ては、射出コア型を抜き取って、ブローポジションに準備された延伸ロッド内装のブローコアに交換し、それにより延伸ブローを行う方法を採用している。   For this reason, all of the one-station systems that have been put into practical use adopt a method in which the injection core mold is removed and replaced with a blow core with a stretch rod built in the blow position, thereby performing stretch blow. ing.

しかしながら、コア交換による射出延伸ブロー成形では、射出キャビティ型に対する射出コア型の出入装置と、ブローキャビティ型に対するブローコア型の出入装置が必要となり、またプリフォームの移送に回転手段を採用していることなどから、その構造が射出ブロー成形機よりも更に複雑となり、高価な専用機として市販されている。   However, injection stretch blow molding by core replacement requires an injection core mold loading / unloading device for the injection cavity mold and a blow core mold loading / unloading device for the blow cavity mold, and a rotating means is used to transfer the preform. Therefore, the structure is more complicated than that of an injection blow molding machine, and it is commercially available as an expensive dedicated machine.

この発明は上記事情から考えられたものであって、その目的は、型締装置の固定盤と可動盤との間に、延伸ブロー装置及び射出成形したプリフォームの回転移送手段と、射出及びブローキャビティ型とをユニットとして取付けることにより、通常構造の横型射出装置でも中空成形品の延伸ブロー成形が容易に行い得る新たな延伸ブロー成形機を提供することにある。   The present invention has been conceived in view of the above circumstances, and its object is to provide a stretch blow device, a rotational transfer means for an injection-molded preform, and an injection and blow device between a fixed plate and a movable plate of a mold clamping device. It is an object of the present invention to provide a new stretch blow molding machine that can easily perform a blow blow molding of a hollow molded product even with a horizontal injection apparatus having a normal structure by attaching a cavity mold as a unit.

上記目的によるこの発明は、横型射出成形機の型締装置に、前後一対の型取付板と、前型取付板の中央に取付けた射出キャビティ型と、前型取付板の下部と可動盤側の後型取付板の下部とに取付けた分割型によるブローキャビティ型と、そのブローキャビティ型の上部に位置するプリフォームの回転移送手段及び延伸ブロー装置と、回転移送手段側から射出キャビティ型内に位置する進退自在な射出コア型とを備えた延伸ブロー成形ユニットを、上記型締装置の固定盤側に前型取付板を、可動盤側に後型取付板をそれぞれ取付ける一方、上記回転移送手段及び延伸ブロー装置を固定盤と可動盤の間のタイバーに移動自在に挿通支持して、上記可動盤の前進移動により射出キャビティ型と射出コア型の型締及び、ブローキャビティ型相互の型締とを同時に行えるように設けてなる、というものである。   According to the above-mentioned object, the present invention provides a mold clamping device for a horizontal injection molding machine, a pair of front and rear mold mounting plates, an injection cavity mold mounted at the center of the front mold mounting plate, a lower portion of the front mold mounting plate, and a movable platen side. A blow cavity mold by a split mold attached to the lower part of the rear mold attaching plate, a rotary transfer means and a stretch blow device for the preform located above the blow cavity mold, and located in the injection cavity mold from the rotary transfer means side A stretch blow molding unit having a reciprocating injection core mold, wherein a front mold mounting plate is mounted on the fixed plate side of the mold clamping device, and a rear mold mounting plate is mounted on the movable plate side; The stretch blower is movably inserted into and supported by a tie bar between the fixed platen and the movable platen, and the mold of the injection cavity mold and the injection core mold are clamped by the forward movement of the movable platen, and the molds of the blow cavity molds are mutually clamped. The composed provided to allow simultaneous, is that.

上記構成では、通常構造の横型射出成形機の型締装置が備える固定盤と可動盤の間に、延伸ブロー成形ユニットを配設するだけで、横型射出成形機を射出延伸ブロー成形機として使用することができる。また射出とブローの両キャビティ型の型締も可動盤の前進移動により行い得ることからとから、成形操作も通常の射出成形時と特に変わるところがなく、成形される中空成形品の広口容器に制限されず、通常のボトルをも成形することができるので、専用機に比べて廉価な汎用の横型射出成形機の利用範囲が増すようになる。   In the above configuration, the horizontal injection molding machine is used as an injection stretch blow molding machine simply by disposing a stretch blow molding unit between a fixed plate and a movable plate provided in a mold clamping device of a horizontal injection molding machine having a normal structure. be able to. In addition, since both the injection and blow cavity molds can be clamped by moving the movable plate forward, the molding operation is not particularly different from that during normal injection molding, and it is limited to the wide-mouthed container of the hollow molded product to be molded. In addition, since ordinary bottles can be molded, the range of use of a general-purpose horizontal injection molding machine that is less expensive than a dedicated machine is increased.

図中40は横型射出成形機の射出装置、41は型締装置で、その両方は機台上に横に対設してある。型締装置41は機台上に立設した固定盤42,42′と、その固定盤42,42′を連結しているタイバー44に挿通支持した可動盤43と、その可動盤43に連結した図示しない型締シリンダの型締ラム45とによる通常の構成からなり、上記固定盤42と可動盤43との間に延伸ブロー成形ユニット1が取付けてある。   In the figure, 40 is an injection device of a horizontal injection molding machine, 41 is a mold clamping device, both of which are arranged horizontally on the machine base. The mold clamping device 41 is connected to fixed plates 42 and 42 'standing on the machine base, a movable plate 43 inserted and supported by a tie bar 44 connecting the fixed plates 42 and 42', and the movable plate 43. The stretched blow molding unit 1 is mounted between the fixed platen 42 and the movable platen 43 and has a normal configuration with a mold clamping ram 45 of a mold clamping cylinder (not shown).

上記延伸ブロー成形ユニット1は、中央板3と、その前後に対設した一対の型取付板2,3とを備え、その前型取付板2と中央板3の四隅部には図5及び図6に示すように、上記タイバー44の挿通孔5,6が穿設してある。   The stretch blow molding unit 1 includes a center plate 3 and a pair of mold mounting plates 2 and 3 provided in front and rear of the center plate 3, and the front mold mounting plate 2 and the central plate 3 have four corners in FIGS. As shown in FIG. 6, the insertion holes 5 and 6 of the tie bar 44 are formed.

前型取付板2の内側面の中央には、プリフォーム成形用の射出キャビティ型7がスプル部を挿通して取付けてあり、それに対向する中央板3の前側上部には、前面を下向き45°の角度の斜面に形成した中空のベースブロック8が固設してある。このベースブロック8と射出キャビティ型7の下側には、前型取付板2と中央板下側に形成した凹所3aを通して、後型取付板4とに取付けた一対の分割型9a,9bによるブローキャビティ型9が配置してある。   At the center of the inner surface of the front mold mounting plate 2, an injection cavity mold 7 for molding a preform is inserted through the sprue portion, and the front upper portion of the central plate 3 facing the front mold plate is 45 ° downward. A hollow base block 8 formed on an inclined surface of the angle is fixed. Under the base block 8 and the injection cavity mold 7, a pair of split molds 9a and 9b are attached to the rear mold mounting plate 4 through a recess 3a formed on the lower side of the front mold mounting plate 2 and the central plate. A blow cavity mold 9 is arranged.

このブローキャビティ型9の上には、後記する回転駆動装置26と共にプリフォームの回転移送手段を構成する移送台10が設けてある。この移送台10は、射出キャビティ型7とブローキャビティ型9の両方に臨む型取付面を直角に有する中空で縦断面が正三角形状の台からなり、その中心を軸として傾斜回転するように、プーリー11を取付けた背面をベースブロック8の傾斜前面にベアリングにより回転自在に保持して設けてある。   On the blow cavity mold 9, there is provided a transfer table 10 that constitutes a rotation transfer means for the preform together with a rotation drive device 26 described later. This transfer table 10 is a hollow, vertical section having a right triangle with a mold mounting surface facing both the injection cavity mold 7 and the blow cavity mold 9, and is tilted and rotated around its center as an axis. The back surface to which the pulley 11 is attached is provided on the inclined front surface of the base block 8 while being rotatably supported by a bearing.

この移送台10の二つの型取付面の中央にはコア挿入孔12が穿設してあり、そのコア挿入孔12の外側に、射出キャビティ型7とブローキャビティ型9の両方と交互に臨むネック型13,13が取付けてある。このネック型13は閉鎖状態を維持するばね部材に抗して側方に摺動開放する通常構造のもので、そのネック型13を通して射出キャビティ型7に射出コア型14が挿入位置する。   A core insertion hole 12 is formed in the center of the two mold mounting surfaces of the transfer table 10, and a neck that alternately faces both the injection cavity mold 7 and the blow cavity mold 9 outside the core insertion hole 12. Molds 13 and 13 are attached. The neck mold 13 has a normal structure that slides and opens sideways against the spring member that maintains the closed state, and the injection core mold 14 is inserted into the injection cavity mold 7 through the neck mold 13.

この射出コア型14は、後型取付板4の内面に基端を固着して、ベースブロック8と移送台10とに挿入したコア部材15の先端に段部を設けて一体形成してあり、その段部をネック型13の周囲に当接してプリフォーム成形時の射出圧力を、コア部材15を介し中央板側で受けることができるようにしてある。このコア部材15には、ベースブロック上部のブローコア挿入孔8aと、ブローキャビティ型9の上のコア挿入孔12との中間に位置する縦孔16が穿設してあり、この縦孔16を後記するブローコア18が貫通して、その先端がベースブロック上からブローキャビティ型側のネック型13に達するようにしてある。   The injection core mold 14 is integrally formed by fixing the base end to the inner surface of the rear mold mounting plate 4 and providing a step portion at the distal end of the core member 15 inserted into the base block 8 and the transfer table 10. The stepped portion is brought into contact with the periphery of the neck mold 13 so that the injection pressure at the time of preform molding can be received through the core member 15 on the center plate side. The core member 15 is provided with a vertical hole 16 located between the blow core insertion hole 8a above the base block and the core insertion hole 12 on the blow cavity mold 9, and this vertical hole 16 will be described later. The blow core 18 that penetrates passes through and the tip of the blow core 18 reaches the neck mold 13 on the blow cavity mold side from above the base block.

17はベースブロック8の上に設置した延伸ブロー装置で、そのベースブロック8の上部両側に対設したガイド支柱19と、先端を挿入孔8aに収めたブローコア18の後端を取付けて、該ブローコア18を前部下側に下向きに保持し、後部両側をガイド支柱19に挿通した昇降部材20と、ガイド支柱19にわたり設けた座板21に立設して、ピストンロッド22を昇降部材20に連結したエア又は油圧作動の昇降シリンダ23と、昇降部材20の前部上に立設して、ピストンロッド24をブローコア18内の延伸ロッド25に連結したエア又は油圧作動の延伸シリンダ25とからなる。   Reference numeral 17 denotes a stretch blow device installed on the base block 8, and a guide column 19 provided on both sides of the upper portion of the base block 8 and a rear end of the blow core 18 whose tip is housed in the insertion hole 8 a are attached. The piston rod 22 is connected to the lifting member 20 by holding 18 downwardly at the front lower side and standing on the lifting member 20 inserted through the guide column 19 on both sides of the rear and the seat plate 21 provided across the guide column 19. An air or hydraulically operated lifting cylinder 23 and an air or hydraulically operated stretching cylinder 25 standing on the front part of the lifting member 20 and connecting a piston rod 24 to a stretching rod 25 in the blow core 18.

26は移送台10の回転駆動装置で、中央板3の側部に取付けてベースブロック8の前面と並行に下向き45°の角度で、ベースブロック8の反操作側の側部に設けた支持プレート27と、その上面に設置した電動サーボモータ28と、支持プレート27の下面に軸承した中間プーリー29及びモータ軸先端のプーリー30と、それらプーリー29,30と移送台10のプーリー11とに巻回した駆動用のタイミングベルト31とからなる。   Reference numeral 26 denotes a rotation driving device for the transfer table 10, which is attached to the side of the central plate 3 and is provided on the side of the base block 8 opposite to the operation side at a 45 ° angle in parallel with the front surface of the base block 8. 27, an electric servo motor 28 installed on the upper surface thereof, an intermediate pulley 29 supported on the lower surface of the support plate 27, a pulley 30 at the tip of the motor shaft, and the pulleys 29, 30 and the pulley 11 of the transfer table 10 are wound around. And a driving timing belt 31.

32はネック型13の型開部材で、図6に示すように、中央板3の内側に固設して、ブローキャビティ型9の両側に設けたホルダー33の先端部に取付けてある。この開閉部材32はエア又は油圧シリンダ34のピストンに連結して、先端をネック型13のパーティングラインの側部に臨ました楔状のものからなる。   Reference numeral 32 denotes a mold opening member of the neck mold 13, which is fixed to the inner side of the center plate 3 and attached to the front end portions of holders 33 provided on both sides of the blow cavity mold 9 as shown in FIG. 6. The opening / closing member 32 is connected to a piston of an air or hydraulic cylinder 34 and is formed of a wedge-shaped member having a tip facing a side portion of the parting line of the neck mold 13.

35は前型取付板2と中央板3の対向隅部に設けた開閉ロッドで、先端を中央板3に連結して後端を上記前型取付板2に挿通し、その後端を前型取付板2の外側に取付けた油圧シリンダ6に接続して、両板にわたり進退自在に設けられ、これにより中央板3は前型取付板2に対し進退自在に関連付けられて、横型射出成形機に適応する延伸ブロー成形ユニット1を構成している。   An open / close rod 35 is provided at the opposite corner of the front mold mounting plate 2 and the central plate 3. The front end is connected to the central plate 3, the rear end is inserted into the front mold mounting plate 2, and the rear end is mounted on the front mold. Connected to the hydraulic cylinder 6 attached to the outside of the plate 2 and provided so as to be able to advance and retreat over both plates, whereby the central plate 3 is associated with the front die mounting plate 2 so as to be able to advance and retract, and is suitable for a horizontal injection molding machine. The stretch blow molding unit 1 is configured.

なお、図示の延伸ブロー成形ユニット1では、開閉ロッド35を前型取付板2と中央板3とにわたり配設しているが、開閉ロッド35は図では省略しするが、中央板3と後型取付板4とにわたり配設してもよく、この場合には油圧シリンダ36を後型取付板4に取り付けて、開閉ロッド35の伸長による中央板2の前進移動で型閉を行い。縮小による後退移動で型開を行うことができる。   In the illustrated stretch blow molding unit 1, the open / close rod 35 is disposed across the front mold mounting plate 2 and the central plate 3, but the open / close rod 35 is omitted in the drawing, but the central plate 3 and the rear mold are omitted. In this case, the hydraulic cylinder 36 is attached to the rear mold mounting plate 4, and the mold is closed by the forward movement of the central plate 2 by extension of the opening / closing rod 35. The mold can be opened by retreating by reduction.

上記構成の延伸ブロー成形ユニット1の型締装置への取付けは、図4に示すように、先ずタイバー44を挿通する前の固定盤42と可動盤43の間に、延伸ブロー成形ユニット1を型閉状態で固定盤側に前型取付板2を向けて吊り込む。次に位置合わせして、タイバー44,44を固定盤42,42′と可動盤43及び前型取付板2と中央板3の四隅部に挿通し、固定盤42,42′の連結を行う。これにより移送台10及び回転駆動装置26と延伸ブロー装置17が、中央板3を介してタイバー44,44に移動自在に支持される。しかるのち、前型取付板2を固定盤42の内側に、後型取付板4は可動盤43の内側にそれぞれピン止めする。   As shown in FIG. 4, the stretch blow molding unit 1 having the above-described configuration is attached to the mold clamping device by first placing the stretch blow molding unit 1 between the fixed platen 42 and the movable platen 43 before the tie bar 44 is inserted. In the closed state, the front mold mounting plate 2 is suspended toward the fixed platen side. Next, the tie bars 44 and 44 are inserted into the four corners of the fixed platen 42 and 42 ′, the movable platen 43, the front mold attaching plate 2 and the central plate 3, and the fixed plates 42 and 42 ′ are connected. As a result, the transfer table 10, the rotation drive device 26, and the stretch blow device 17 are supported by the tie bars 44, 44 through the central plate 3 so as to be movable. Thereafter, the front mold mounting plate 2 is pinned inside the fixed platen 42 and the rear mold mounting plate 4 is pinned inside the movable platen 43.

このピン止めにより型取付板4は可動盤43と一体となって、可動盤43の進退移動でブローキャビティ型9の型開閉及び型締と、固定盤側の射出キャビティ型7と射出コア型14の型開閉及び型締が同時に行える横型の射出延伸ブロー成形機となる。   By this pinning, the die mounting plate 4 is integrated with the movable platen 43, and the movable platen 43 is moved forward and backward to open / close and mold the blow cavity die 9, and the injection cavity die 7 and the injection core die 14 on the fixed platen side. This is a horizontal injection stretch blow molding machine capable of simultaneously opening and closing the mold and clamping the mold.

なお、上記構成では前型取付板2を中央板3と共に四隅部をタイバー44に挿通しているが、前型取付板2は必ずしもタイバー44に挿通支持する必要はなく、場合によってはタイバー挿通孔5を省略して、前型取付板2を固定盤41にピン止するだけでもよい。   In the above configuration, the front mold mounting plate 2 is inserted through the tie bar 44 at the four corners together with the central plate 3, but the front mold mounting plate 2 does not necessarily need to be inserted and supported by the tie bar 44. 5 may be omitted and the front mold mounting plate 2 may be simply pinned to the fixed platen 41.

上記構成の射出延伸ブロー成形機では、図1及び図2に示す型開状態にて、開閉ロッド35を開閉シリンダ36を油圧作動により縮小すると、中央板3がベースブロック8と共に固定盤42側に引き寄せられて、前型取付板2の射出キャビティ型7と移送台10の垂直面のネック型13とが型閉する。また水平面のネック型13がブローキャビティ型9の前型取付板2側の分割型9bに引き寄せられて、半部型閉が行われる。   In the injection stretch blow molding machine having the above-described configuration, when the open / close rod 35 is reduced by the hydraulic operation of the open / close cylinder 36 in the mold open state shown in FIGS. 1 and 2, the center plate 3 is moved together with the base block 8 to the fixed platen 42 side. As a result of the drawing, the injection cavity mold 7 of the front mold mounting plate 2 and the neck mold 13 on the vertical surface of the transfer table 10 are closed. Further, the neck 13 in the horizontal plane is drawn toward the split mold 9b on the front mold mounting plate 2 side of the blow cavity mold 9, and the half mold is closed.

次に、型締装置41の型締シリンダ(図は省略)を油圧作動し、型締ラム45を伸長して可動盤43を前進移動すると、可動盤43と共に後型取付板4と一体のブローキャビティ型9の一方の分割型9aと、コア部材15及び開閉部材32とが前進移動して、コア部材先端の射出コア型14がコア挿通孔12からネック型13を貫通して射出キャビティ型7に突出位置し、射出コア型14の周囲に広口のプリフォームの射出キャビティを形成する。   Next, when the mold clamping cylinder (not shown) of the mold clamping device 41 is hydraulically operated, the mold clamping ram 45 is extended and the movable platen 43 is moved forward, and the movable platen 43 and the rear mold attachment plate 4 are blown together. One split mold 9 a of the cavity mold 9, the core member 15 and the opening / closing member 32 move forward, and the injection core mold 14 at the tip of the core member penetrates the neck mold 13 from the core insertion hole 12 and the injection cavity mold 7. A wide-mouth preform injection cavity is formed around the injection core mold 14.

このときコア部材15の先端の段部がネック型13と接して、ネック型13を射出キャビティ型7に押圧する。またブローキャビティ型9側では、分割型9aがプリフォームを保持したネック型13を挟んで前型取付板2側の分割型9bと型閉し、広口容器のブローキャビティを形成する。そして更なるプランジャの加圧により型締が行われて、その状態が維持される(図3参照)。   At this time, the step at the tip of the core member 15 is in contact with the neck mold 13 and presses the neck mold 13 against the injection cavity mold 7. On the blow cavity mold 9 side, the split mold 9a is closed with the split mold 9b on the front mold mounting plate 2 side with the neck mold 13 holding the preform interposed therebetween, thereby forming a blow cavity of the wide-mouth container. Then, the mold is clamped by further pressurization of the plunger, and the state is maintained (see FIG. 3).

この型締後に、スプルにノズルタッチした射出装置40から、射出キャビティ型7に溶融樹脂を射出充填すると、射出コア型14の周囲にプリフォームが射出成形される。この際、射出圧力はネック型13と接した先端の段部により、可動盤43により押圧されたコア部材15が受けるので、移送台10には射出圧力が加わらず、ベースブロック8による保持部に負担が掛かるようなことがない。   After the mold clamping, when a molten resin is injected and filled into the injection cavity mold 7 from the injection device 40 that is nozzle-touched to the sprue, a preform is injection molded around the injection core mold 14. At this time, the injection pressure is received by the core member 15 pressed by the movable platen 43 by the stepped portion in contact with the neck mold 13, so that the injection pressure is not applied to the transfer table 10, and the holding force by the base block 8 is applied. There is no burden.

また同時に型締されたブローキャビティ型9では、ネック型13により口部を保持して回転移送されてきたプリフォームを、広口容器に成形する延伸ブローが行われる。この延伸ブローは型締完了後の延伸ブロー装置17の昇降シリンダ23と延伸シリンダ25の連続作動により行われる。   At the same time, in the blow cavity mold 9 that has been clamped, stretch blow is performed to mold the preform that has been rotated and held by the neck mold 13 into a wide-mouth container. This stretching blow is performed by continuous operation of the elevating cylinder 23 and the stretching cylinder 25 of the stretching blow apparatus 17 after completion of mold clamping.

先ず図3に示すように、昇降シリンダ23の作動により挿入孔8aに収めたブローコア18の先端が、コア部材15の縦穴16を貫通して、ブローキャビティ型9と型閉したネック型13内に挿入位置するところまで、昇降部材20を降下する。次に延伸シリンダ26を作動して、延伸ロッド25を伸長すると同時に、図示しないエア通路からブローコア内に圧縮エアを圧送して、プリフォームを延伸ブローする。これによりプリフォームはブローキャビティ一杯に延伸膨張して広口容器となる。この延伸ブロー成形は射出成形と同時に、あるいは射出成形中に行い得る。   First, as shown in FIG. 3, the tip of the blow core 18 accommodated in the insertion hole 8 a by the operation of the elevating cylinder 23 passes through the vertical hole 16 of the core member 15 and enters the blow cavity mold 9 and the neck mold 13 closed with the mold. The elevating member 20 is lowered to a position where it is inserted. Next, the stretching cylinder 26 is operated to extend the stretching rod 25, and at the same time, compressed air is pumped into the blow core from an air passage (not shown) to stretch and blow the preform. As a result, the preform is stretched and expanded to fill the blow cavity to form a wide-mouthed container. This stretch blow molding can be performed simultaneously with the injection molding or during the injection molding.

成形完了後の型開は、延伸ブロー装置17におけるブローコア18及び延伸ロッド25の引上作動を先行し、次に射出キャビティ型7とネック型13及び射出コア型14、ネック型13とブローキャビティ型9の型開が可動盤43の後退移動により行われる。可動盤43が型締ラム45の縮小により後退移動すると、ブローキャビティ型9の一方の分割型9aと共にコア部材15も後退移動して、射出コア型14が射出キャビティ型7から引き抜かれ、また分割型9aが固定盤2側の他方の分割型9から離れてブローキャビティ型9の型開が行われる。   After the molding is completed, the mold opening precedes the pulling-up operation of the blow core 18 and the stretch rod 25 in the stretch blow apparatus 17, and then the injection cavity mold 7, the neck mold 13 and the injection core mold 14, the neck mold 13 and the blow cavity mold. 9 is opened by the backward movement of the movable platen 43. When the movable platen 43 moves backward due to the reduction of the mold clamping ram 45, the core member 15 also moves backward together with one split mold 9a of the blow cavity mold 9, and the injection core mold 14 is pulled out from the injection cavity mold 7 and split. The mold 9a is separated from the other divided mold 9 on the fixed platen 2 side, and the blow cavity mold 9 is opened.

この可動盤43の後退に伴い、中央板3と可動盤43との間には型開スペースが生じてゆき、またコア部材15の押圧によるネック型13の拘束もなくなるので、その可動盤43の後退移動に並行して開閉ロッド35を油圧シリンダ36により伸長作動すると、中央板3がベースブロック8及び移送台10と共に後退移動して、射出キャビティ型7とネック型13とが型開し、ネック型13に口部を保持されてプリフォームがキャビティから離型する。   As the movable platen 43 moves backward, a mold opening space is generated between the central plate 3 and the movable platen 43, and the neck die 13 is not restrained by the pressing of the core member 15. When the opening / closing rod 35 is extended by the hydraulic cylinder 36 in parallel with the backward movement, the central plate 3 moves backward together with the base block 8 and the transfer table 10, and the injection cavity mold 7 and the neck mold 13 are opened, and the neck The mouth is held by the mold 13 and the preform is released from the cavity.

ブローキャビティ型9では、ベースブロック8及び移送台10の後退移動により、ネック型13も広口容器を保持した状態で前型取付板2側の分割型9bから離れて完全に離型する。   In the blow cavity mold 9, the neck mold 13 is separated from the split mold 9 b on the front mold mounting plate 2 side and completely released by the backward movement of the base block 8 and the transfer table 10 while holding the wide-mouth container.

可動盤43の後退による型開は、図1及び図2では射出コア型14がベースブロック8に収まる所まで行っているが、射出コア型14が移送台10の回転に支障を来さぬ所まででよく、その型開完了位置にてブローキャビティ型9の両側の型開部材32を、ネック型13のパーティング面に押込んで型開を行い、広口容器の離型が行われる。   The mold opening by the retraction of the movable platen 43 is performed until the injection core mold 14 fits in the base block 8 in FIGS. 1 and 2, but the injection core mold 14 does not interfere with the rotation of the transfer table 10. The mold opening members 32 on both sides of the blow cavity mold 9 are pushed into the parting surface of the neck mold 13 at the mold opening completion position to open the mold, and the wide-mouth container is released.

広口容器の離型が済むと、プリフォームのブローキャビティ型9への回転移送となる。この移送は電動サーボモータ28を180°回転することによつて行われる。電動サーボモータ28による回転は、タイミングベルト11により移送台10に伝達され、移送台10の傾斜回転により型取付面が垂直から水平に変わって、ネック型13に保持されたプリフォームは、ブローキャビティ型9のパーティング上に下向きに、また反対にブローキャビティ型9に位置して広口容器が離型された後のネック型13は、射出キャビティ型7の対面位置に横向きにそれぞれ位置する。   When the wide-mouth container is released from the mold, the preform is rotated and transferred to the blow cavity mold 9. This transfer is performed by rotating the electric servo motor 28 by 180 °. The rotation by the electric servo motor 28 is transmitted to the transfer table 10 by the timing belt 11, and the mold mounting surface changes from vertical to horizontal by the tilt rotation of the transfer table 10, and the preform held on the neck mold 13 is blow cavity The neck mold 13 is positioned on the parting side of the injection cavity mold 7 downward and on the opposite side of the injection cavity mold 7 after the wide-mouth container is released from the blow cavity mold 9.

このような移送台10の傾斜回転による移送が完了すると、再び図1及び図2に示す型開位置において、開閉ロッド35の縮小による射出キャビティ型7とネック型13の型閉じ、型開位置からの可動盤43の前進移動による射出コア型14と、射出キャビティ型7及びネック型13との型締め、同時にプリフォームを保持したネック型13とブローキャビティ型9の型締等が行われて、次の射出延伸ブロー工程に移行する。   When the transfer by the tilting rotation of the transfer table 10 is completed, the molds of the injection cavity mold 7 and the neck mold 13 are closed by the reduction of the opening / closing rod 35 in the mold opening position shown in FIGS. 1 and 2 again. The mold is clamped between the injection core mold 14 by the forward movement of the movable plate 43 and the injection cavity mold 7 and the neck mold 13, and the neck mold 13 holding the preform and the blow cavity mold 9 are clamped at the same time. It moves to the next injection stretch blow process.

このように、上記構成の延伸ブロー成形機では、通常構造の横型射出成形機の型締装置をそのまま使用して、射出とブローの両キャビティ型の型締も可動盤の前進移動により同時に行い得ることからとから、通常の射出成形と同様な成形操作で射出延伸ブロー成形が行え、成形される中空成形品の広口容器に制限されず、通常のボトルをも成形することができる。さらに延伸ブロー成形が不要のときには、ユニットを他の成形品の射出キャビティ型に替えれば、そのまま通常の射出成形機として使用できる。   As described above, in the stretch blow molding machine having the above-described configuration, the mold clamping device of the horizontal injection molding machine having the normal structure can be used as it is, and the mold clamping of both the injection and blow cavities can be performed simultaneously by the forward movement of the movable platen. Therefore, injection stretch blow molding can be performed by a molding operation similar to that of normal injection molding, and the present invention is not limited to a wide-mouth container of a hollow molded product to be molded, and a normal bottle can also be molded. Further, when stretch blow molding is not required, the unit can be used as it is as a normal injection molding machine by replacing the unit with an injection cavity mold of another molded product.

この発明の射出延伸ブロー成形機における型締装置の型開時の縦断側面図である。It is a vertical side view at the time of mold opening of the mold clamping apparatus in the injection stretch blow molding machine of this invention. 同上の平面図である。It is a top view same as the above. 同じく型締装置の型閉時の縦断側面図である。It is a vertical side view of the mold clamping device when the mold is closed. 延伸ブロー成形ユニットの取付け時の型締装置の側面図である。It is a side view of the mold clamping apparatus at the time of attachment of a stretch blow molding unit. 延伸ブロー成形ユニットの型閉状態における側面図である。It is a side view in the mold closed state of the stretch blow molding unit. 同上の前部取付板を除いた正面図である。It is a front view except a front part mounting plate same as the above.

符号の説明Explanation of symbols

1 延伸ブロー成形ユニット
2 前型取付板
3 中央板
4 後型取付板
5,6 タイバー挿通孔
7 射出キャビティ型
8 ベースブロック
9 ブローキャビティ型
10 移送台
11 移送台のプーリー
13 ネック型
14 射出コア型
15 コア部材
17 延伸ブロー装置
18 ブローコア
25 延伸ロッド
27 支持プレート
28 電動サーボモータ
29,30 プーリー
31 タイミングベルト
40 射出装置
41 型締装置
42 固定盤
43 可動盤
44 タイバー
45 型締ラム
DESCRIPTION OF SYMBOLS 1 Stretch blow molding unit 2 Front mold attachment plate 3 Center plate 4 Rear mold attachment plate 5,6 Tie bar insertion hole 7 Injection cavity mold 8 Base block 9 Blow cavity mold 10 Transfer base 11 Transfer base pulley 13 Neck mold 14 Injection core mold 15 Core member 17 Stretch blow device 18 Blow core 25 Stretch rod 27 Support plate 28 Electric servo motors 29, 30 Pulley 31 Timing belt 40 Injection device 41 Mold clamping device 42 Fixed platen 43 Movable platen 44 Tie bar 45 Mold clamping ram

Claims (1)

横型射出成形機の型締装置に、前後一対の型取付板と、前型取付板の中央に取付けた射出キャビティ型と、前型取付板の下部と可動盤側の後型取付板の下部とに取付けた分割型によるブローキャビティ型と、そのブローキャビティ型の上部に位置するプリフォームの回転移送手段及び延伸ブロー装置と、回転移送手段側から射出キャビティ型内に位置する進退自在な射出コア型とを備えた延伸ブロー成形ユニットを、上記型締装置の固定盤側に前型取付板を、可動盤側に後型取付板をそれぞれ取付ける一方、上記回転移送手段及び延伸ブロー装置を固定盤と可動盤の間のタイバーに移動自在に挿通支持して、上記可動盤の前進移動により射出キャビティ型と射出コア型の型締及び、ブローキャビティ型相互の型締とを同時に行えるように設けてなることを特徴とする射出延伸ブロー成形機。 The mold clamping device of the horizontal injection molding machine includes a pair of front and rear mold mounting plates, an injection cavity mold mounted at the center of the front mold mounting plate, a lower portion of the front mold mounting plate, and a lower portion of the rear mold mounting plate on the movable platen side. A blow cavity mold by a split mold attached to the mold, a rotary transfer means and a stretch blow device for the preform located above the blow cavity mold, and an injection core mold that can be moved back and forth in the injection cavity mold from the rotary transfer means side A front mold mounting plate on the fixed platen side of the mold clamping device and a rear mold mounting plate on the movable platen side, while the rotation transfer means and the stretch blow device are mounted on the fixed platen. The tie bar between the movable plates is movably inserted and supported so that the mold can be clamped between the injection cavity mold and the injection core mold and the blow cavity molds can be clamped simultaneously by the forward movement of the movable plate. Injection stretch blow molding machine, characterized by comprising.
JP2004346803A 2004-11-30 2004-11-30 Injection stretch blow molding machine Expired - Fee Related JP3916167B2 (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009061685A (en) * 2007-09-06 2009-03-26 Toyoda Gosei Co Ltd Opening and closing apparatus for mold
US7611658B2 (en) 2004-03-03 2009-11-03 Constantinos Sideris Injection blow moulding of plastics articles
CN104690879A (en) * 2015-01-28 2015-06-10 苏州市天星山精密模具有限公司 Plastic injection molding machine
KR20210028048A (en) * 2018-10-11 2021-03-11 가부시키가이샤 아오키가타시겐큐쇼 Stretch blow molding device and blow molding method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7611658B2 (en) 2004-03-03 2009-11-03 Constantinos Sideris Injection blow moulding of plastics articles
JP2009061685A (en) * 2007-09-06 2009-03-26 Toyoda Gosei Co Ltd Opening and closing apparatus for mold
CN104690879A (en) * 2015-01-28 2015-06-10 苏州市天星山精密模具有限公司 Plastic injection molding machine
KR20210028048A (en) * 2018-10-11 2021-03-11 가부시키가이샤 아오키가타시겐큐쇼 Stretch blow molding device and blow molding method
KR102278155B1 (en) 2018-10-11 2021-07-16 가부시키가이샤 아오키가타시겐큐쇼 Stretch blow molding apparatus and blow molding method

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