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JP4508825B2 - Insert molding die, method of manufacturing insert molded product, and insert molded product - Google Patents

Insert molding die, method of manufacturing insert molded product, and insert molded product Download PDF

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JP4508825B2
JP4508825B2 JP2004313445A JP2004313445A JP4508825B2 JP 4508825 B2 JP4508825 B2 JP 4508825B2 JP 2004313445 A JP2004313445 A JP 2004313445A JP 2004313445 A JP2004313445 A JP 2004313445A JP 4508825 B2 JP4508825 B2 JP 4508825B2
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insert
molded product
temperature
mold
cavity
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JP2006076276A (en
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政義 関山
正英 小林
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Mitsubishi Plastics Inc
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Mitsubishi Plastics Inc
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Description

本発明は、インサート成形金型及びインサート成形品の製造方法並びにインサート成形品に関し、詳しくは、射出成形によるインサート成形法(転写成形法、フィルム一体成形法)によってインサート成形品を製造するためのインサート成形金型の構造、及び、該インサート成形金型を使用したインサート成形品の製造方法、並びに、該製造方法によって製造したインサート成形品に関する。   The present invention relates to an insert molding die, a method for manufacturing an insert molded product, and an insert molded product, and more particularly, an insert for manufacturing an insert molded product by an insert molding method (transfer molding method, film integral molding method) by injection molding. The present invention relates to a structure of a molding die, a method for manufacturing an insert molded product using the insert molding die, and an insert molded product manufactured by the manufacturing method.

金型のキャビティ面にインサートフィルムを配置して射出成形を行うことにより、射出成形と同時に、成形品の表面に文字や記号を含む模様を形成するインサート成形法が知られている。一般に、インサート成形法における転写成形法やフィルム一体成形法では、箔薄膜又はパターン等が形成された層と剥離層とを有する転写フィルムや、箔薄膜又はパターン等が形成された層を有するフィルム一体成形フィルムを、射出する熱可塑性樹脂の熱変形温度よりも低く設定した金型に沿うように配置した状態で、溶融樹脂を金型のキャビティ内に射出して樹脂成形品を成形するとともに、転写フィルムや一体成形フィルムの箔薄膜やパターン等の模様を成形品の表面に形成するようにしている(例えば、特許文献1参照。)。
特開2001−191362号公報
An insert molding method is known in which an insert film is placed on the cavity surface of a mold and injection molding is performed to form a pattern including characters and symbols on the surface of the molded product simultaneously with the injection molding. In general, in the transfer molding method and the film integral molding method in the insert molding method, a transfer film having a layer on which a foil thin film or pattern is formed and a release layer, or a film integral having a layer on which a foil thin film or pattern is formed With the molded film placed along the mold set lower than the thermal deformation temperature of the thermoplastic resin to be injected, the molten resin is injected into the mold cavity to mold the resin molded product and transfer A pattern such as a thin film or a pattern of a film or an integrally formed film is formed on the surface of the molded product (see, for example, Patent Document 1).
JP 2001-191362 A

上述のような転写成形法やフィルム一体成形法では、金型温度を熱可塑性樹脂の熱変形温度より低く設定した状態で溶融樹脂をキャビティ内に射出するため、ハイサイクルで所定の模様を有する成形品を得ることが可能である。しかしながら、成形品に通孔等の穴形状(通孔や開口部)が存在する場合や、製品サイズが大きくて多くの樹脂射出口を必要とする場合等では、金型温度が低いことから、キャビティ内で溶融樹脂の流れが合流する部分にウエルドラインが発生してしまい、製品となる成形品の外観が著しく損なわれてしまう。   In the transfer molding method and the film integral molding method as described above, since the molten resin is injected into the cavity with the mold temperature set lower than the thermal deformation temperature of the thermoplastic resin, molding having a predetermined pattern in a high cycle. It is possible to obtain goods. However, when the molded product has a hole shape such as a through hole (through hole or opening), or when the product size is large and many resin injection ports are required, the mold temperature is low. A weld line is generated at a portion where the molten resin flows in the cavity, and the appearance of the molded product as a product is significantly impaired.

このため、家庭電気製品や日用雑貨製品等、高品質の美観を求められる製品で、穴形状を有する製品を製造する場合は、ウエルドラインを発生させないために、穴形状を設けない状態の成形品をインサート成形した後、該成形品に対して穴空け加工(トリミング)を行うことにより、所定位置に所定の大きさの穴形状を有する製品を得るようにしていた。したがって、製造工程が増加し、製造コストが増加する要因となっている。一方、製品サイズが大きいものでは、ウエルドラインが製品の目立たない位置に発生するように樹脂射出口の位置を設定することも行われているが、これにも限界がある。   For this reason, when manufacturing products with a hole shape, such as household electrical appliances and household goods, in order to prevent the formation of weld lines, molding without a hole shape is required. After the product is insert-molded, the molded product is drilled (trimmed) to obtain a product having a hole shape of a predetermined size at a predetermined position. Therefore, the manufacturing process increases, which is a factor that increases the manufacturing cost. On the other hand, when the product size is large, the position of the resin injection port is set so that the weld line is generated at a position where the product is not conspicuous, but this also has a limit.

そこで本発明は、インサート成形品におけるウエルドラインの発生を確実に防止でき、穴形状を有する成形品やサイズの大きな成形品も効率よく製造することができるインサート成形金型及び該インサート成形金型を使用したインサート成形品の製造方法並びに該製造方法によって製造したインサート成形品を提供することを目的としている。   Accordingly, the present invention provides an insert mold that can reliably prevent the occurrence of weld lines in an insert molded product, and can efficiently manufacture a molded product having a hole shape or a large molded product, and the insert mold. It is an object of the present invention to provide a method of manufacturing an insert molded product used and an insert molded product manufactured by the manufacturing method.

上記目的を達成するため、本発明のインサート成形金型は、樹脂射出口を有する固定型と可動型とを型締めして形成されるキャビティの少なくとも一方のキャビティ面に沿ってインサートフィルムを配置し、前記キャビティ内に溶融した熱可塑性樹脂を射出して樹脂成形品を成形するとともに、成形品表面に前記インサートフィルムから模様を転写するインサート成形金型において、射出成形時にウエルドラインの発生する位置に対応する前記固定型及び可動型の少なくとも一方に、反キャビティ面側に開口する凹部を形成するとともに、該凹部内に装着される入子に前記キャビティ面を加熱するための加熱媒体及び冷却するための冷却媒体が供給される温調通路を設け、キャビティ面側を除く前記入子の
側面と凹部の壁面との間に断熱部となる空気層を設けていることを特徴としている。
In order to achieve the above object, an insert mold according to the present invention has an insert film disposed along at least one cavity surface of a cavity formed by clamping a fixed mold having a resin injection port and a movable mold. In a mold for molding a resin molded product by injecting a molten thermoplastic resin into the cavity and transferring a pattern from the insert film to the surface of the molded product, a position where a weld line is generated at the time of injection molding At least one of the corresponding fixed mold and movable mold is formed with a recess opening on the side opposite to the cavity surface, and a heating medium for heating the cavity surface in a nest mounted in the recess and for cooling The temperature control passage to which the cooling medium is supplied is provided, and the nesting portion except the cavity surface side is provided.
An air layer serving as a heat insulating portion is provided between the side surface and the wall surface of the concave portion .

また、本発明のインサート成形品の製造方法は、上記構造のインサート成形金型を使用したインサート成形品の製造方法であって、前記インサートフィルムを配置したキャビティ内に樹脂を射出する際には、前記温調通路に加熱媒体を供給してキャビティ面の温度を射出する熱可塑性樹脂の熱変形温度より高い温度に加熱し、射出終了後には、前記温調通路に冷却媒体を供給してキャビティ面の温度を前記熱変形温度より低い温度に冷却することを特徴としている。   Moreover, the manufacturing method of the insert molded product of the present invention is a method of manufacturing an insert molded product using the insert molding die having the above structure, and when injecting resin into the cavity where the insert film is disposed, The heating medium is supplied to the temperature control passage to heat the cavity surface to a temperature higher than the thermal deformation temperature of the thermoplastic resin to be injected, and after the injection is finished, the cooling medium is supplied to the temperature control passage to Is cooled to a temperature lower than the thermal deformation temperature.

さらに、本発明のインサート成形品は、上記製造方法によってインサート成形されたインサート成形品であって、高品質外観を有するインサート製品である。   Furthermore, the insert-molded product of the present invention is an insert-molded product that has been insert-molded by the above manufacturing method, and is an insert product that has a high-quality appearance.

本発明によれば、キャビティ面の一部、例えば、ウエルドラインの発生する位置に対応させたキャビティ面の近傍に温調通路を設け、該温調通路に所定温度の加熱媒体や冷却媒体を供給してキャビティ面を所定の温度に加熱・冷却することにより、ウエルドラインの発生を防止できる。さらに、キャビティ面側を除く温調通路の周囲に断熱部を設けることにより、加熱・冷却時の熱損失を抑制することができ、少量の加熱媒体及び冷却媒体によって所定のキャビティ面を短時間に効率よく加熱・冷却することができる。また、部分的に加熱する場合の温調通路は、樹脂流動解析で求めたウエルドライン等の発生位置に対応させて設ければよいから、加熱・冷却媒体の供給・排出用の配管等も単純化でき、可動型への対応も容易であり、可動型の作動や成形品の取り出しに悪影響を与えることはない。これにより、ウエルドラインがなく、高品質外観を有するインサート製品が得られる。 According to the present invention, a part of the key Yabiti surface, for example, the temperature regulating passage provided near the cavity surface to correspond to the occurrence position of the weld line, a heating medium and cooling medium of a predetermined temperature to the temperature regulating passage By supplying and heating and cooling the cavity surface to a predetermined temperature, the generation of weld lines can be prevented. Furthermore, by providing a heat insulating part around the temperature control passage excluding the cavity surface side, heat loss during heating / cooling can be suppressed, and a predetermined cavity surface can be formed in a short time with a small amount of heating medium and cooling medium. Heating and cooling can be performed efficiently. In addition, the temperature control passage for partial heating may be provided in correspondence with the position where the weld line, etc., obtained by the resin flow analysis is generated, so piping for heating / cooling medium supply / discharge is simple. It is easy to adapt to the movable mold and does not adversely affect the operation of the movable mold or the removal of the molded product. As a result, an insert product having no weld line and having a high quality appearance can be obtained.

図1及び図2は、本発明のインサート成形金型の第1参考例を示すもので、図1は断面図、図2は固定型をキャビティ側から見た正面図である。なお、本形態例に示すインサート成形金型は、2個取り金型の一例を示すものであるが、一方のみを図示して他方の図示は省略している。 1 and 2 show a first reference example of an insert molding die according to the present invention. FIG. 1 is a cross-sectional view, and FIG. 2 is a front view of the stationary die as viewed from the cavity side. The insert mold shown in this embodiment is an example of a two-piece mold, but only one is shown and the other is omitted.

このインサート成形金型は、可動型11と固定型12とを有するものであって、固定型12には、薄板状の成形品を成形するためのキャビティ13を有する入子14が組み込まれており、キャビティ13には、製品の穴形状部分を形成するための複数の穴形状形成部15が所定位置に突設され、一端にはキャビティ13内に溶融樹脂を射出するための樹脂射出口(ゲート)16が設けられている。また、可動型11及び固定型12には、インサートフィルム17、17を所定位置に固定するための真空吸着用の穴(図示省略)や位置決め固定用のピン等が所定位置に設けられている。   This insert molding die has a movable die 11 and a fixed die 12, and the fixed die 12 incorporates an insert 14 having a cavity 13 for molding a thin plate-like molded product. The cavity 13 is provided with a plurality of hole shape forming portions 15 for forming hole shape portions of the product at predetermined positions, and a resin injection port (gate) for injecting molten resin into the cavity 13 at one end. ) 16 is provided. The movable mold 11 and the fixed mold 12 are provided with vacuum suction holes (not shown) for fixing the insert films 17 and 17 at predetermined positions, positioning fixing pins, and the like at predetermined positions.

さらに、可動型11及び固定型12は、一般的な射出成形用金型と同様に、断熱材18を介してベースプレートに固定されており、固定型12には、溶融樹脂が供給されるスプル19、ランナ20及び前記ゲート16が設けられ、可動型11には、成形品を取り出すためのエジェクターピンが設けられている。   Furthermore, the movable mold 11 and the fixed mold 12 are fixed to the base plate via a heat insulating material 18 like a general injection mold, and the sprue 19 to which the molten resin is supplied is supplied to the fixed mold 12. The runner 20 and the gate 16 are provided, and the movable die 11 is provided with an ejector pin for taking out a molded product.

そして、可動型11及び固定型12の内部には、キャビティ面を所定温度に加熱・冷却するための温調通路21,22がキャビティ面に近い位置に設けられている。この温調通路21,22には、キャビティ面を所定温度に加熱するための加熱媒体が供給されるとともに、昇温状態のキャビティ面を所定温度に冷却するための冷却媒体が供給される。固定型12の温調通路22は、入子14の反キャビティ側に溝を形成するとともに、この溝の開口をシール材22aを介して温調通路カバー22bで覆うことによって形成されており、可動型11では、金型内に温調通路21となる通孔を直接形成している。   And inside the movable mold | type 11 and the fixed mold | type 12, the temperature control paths 21 and 22 for heating and cooling a cavity surface to predetermined temperature are provided in the position close | similar to a cavity surface. The temperature control passages 21 and 22 are supplied with a heating medium for heating the cavity surface to a predetermined temperature, and with a cooling medium for cooling the cavity surface in a temperature-up state to a predetermined temperature. The temperature control passage 22 of the fixed mold 12 is formed by forming a groove on the side opposite to the cavity of the insert 14 and covering the opening of this groove with a temperature control passage cover 22b via a seal material 22a. In the mold 11, a through hole serving as the temperature adjustment passage 21 is formed directly in the mold.

また、入子14は、その反キャビティ側が断熱材23を介して固定型本体部に固着され、両側部分には固定型本体部との間に隙間を設け、断熱部となる空気層24を形成するようにしている。このように、温調通路21の周囲に断熱材23や空気層24のような断熱部を設けることにより、温調通路21に加熱媒体や冷却媒体を供給してキャビティ面を加熱・冷却する際に、キャビティ面を除く金型部分に加熱・冷却の際の熱エネルギーが伝達されるのを抑えることができ、加熱媒体や冷却媒体が有する熱エネルギーの損失を抑えて有効に利用することができ、少量の加熱媒体や冷却媒体で特定のキャビティ面を効果的に加熱・冷却することができる。   Further, the nest 14 is fixed to the fixed mold main body part via the heat insulating material 23 on the side opposite to the cavity, and a gap is formed between the fixed mold main body part on both side portions to form an air layer 24 serving as a heat insulating part. Like to do. In this way, by providing a heat insulating portion such as the heat insulating material 23 and the air layer 24 around the temperature control passage 21, the heating medium and the cooling medium are supplied to the temperature control passage 21 to heat and cool the cavity surface. In addition, heat energy during heating / cooling can be prevented from being transmitted to the mold part excluding the cavity surface, and the heat energy loss of the heating medium and cooling medium can be suppressed and used effectively. A specific cavity surface can be effectively heated and cooled with a small amount of heating medium or cooling medium.

図3は、本発明のインサート成形金型の金型構造における第形態例を示す要部の断面図である。本形態例は、可動型や固定型(以下、単に金型31という)において、射出成形時にウエルドラインの発生する位置に対応したキャビティ面32に近い位置に温調通路33を設けている。この温調通路33は、金型31の反キャビティ面側に開口した凹部34内に装着される入子35内に設けられている。入子35のキャビティ面側の先端面35aは、前記凹部34の底壁34aに密着した状態となっており、入子35の側面35bと凹部34の壁面34bとの間には、断熱部となる空気層36が設けられている。 FIG. 3 is a cross-sectional view of the main part showing a first embodiment in the mold structure of the insert molding mold of the present invention. In this embodiment, in a movable mold or a fixed mold (hereinafter simply referred to as a mold 31), a temperature adjustment passage 33 is provided at a position close to the cavity surface 32 corresponding to a position where a weld line is generated during injection molding. The temperature control passage 33 is provided in a nest 35 that is mounted in a recess 34 that is open on the opposite side of the mold 31 to the cavity side. The tip surface 35a on the cavity surface side of the insert 35 is in close contact with the bottom wall 34a of the recess 34, and between the side surface 35b of the insert 35 and the wall surface 34b of the recess 34, there is a heat insulating portion. An air layer 36 is provided.

このように、金型31の全体に温調通路を設けずに、ウエルドラインの発生箇所等に対応させたキャビティ面32の一部分のみを加熱・冷却するように温調通路33を設けることにより、金型31の全体に温調通路を設ける場合に比べて配管等の配置数が少なくなり、金型31の周辺機器の増加も最小限に抑えることができる。なお、符号37は、ベースプレートとの間に設けられる断熱材である。   In this way, by providing the temperature adjustment passage 33 so as to heat and cool only a part of the cavity surface 32 corresponding to the place where the weld line is generated without providing the temperature adjustment passage in the entire mold 31, Compared with the case where the temperature control passage is provided in the entire mold 31, the number of pipes and the like is reduced, and an increase in peripheral devices of the mold 31 can be minimized. In addition, the code | symbol 37 is a heat insulating material provided between baseplates.

図4は、本発明のインサート成形金型の第形態例を示す要部の断面図である。なお、以下の説明において、前記第2形態例で示した金型構造における構成要素と同一の構成要素には、それぞれ同一符号を付して詳細な説明は省略する。 FIG. 4 is a cross-sectional view of the main part showing a second embodiment of the insert molding die of the present invention. In the following description, the same components as those in the mold structure shown in the second embodiment are denoted by the same reference numerals, and detailed description thereof is omitted.

本形態例は、金型31の反キャビティ面側に開口した凹部34内に装着される入子35のキャビティ面側の先端面35aに凹溝35cを設け、先端面35aを凹部34の底壁34aに密着させることにより、凹溝35cと底壁34aとによって囲まれた部分に温調通路33を形成している。また、温調通路33の周囲には、加熱媒体や冷却媒体の漏れを防止するためのシール材38が設けられており、入子35の側面35bと凹部34の壁面34bとの間には、断熱部となる空気層36が設けられている。このように形成することによっても、前記同様にキャビティ面32を効率よく加熱・冷却することができる。   In this embodiment, a concave groove 35 c is provided on the distal end surface 35 a on the cavity surface side of the insert 35 that is mounted in the concave portion 34 opened on the opposite side of the mold 31 to the cavity side, and the distal end surface 35 a is used as the bottom wall of the concave portion 34. The temperature control passage 33 is formed in a portion surrounded by the concave groove 35c and the bottom wall 34a by being in close contact with 34a. Further, a sealing material 38 for preventing the leakage of the heating medium and the cooling medium is provided around the temperature adjustment passage 33, and between the side surface 35 b of the insert 35 and the wall surface 34 b of the recess 34, An air layer 36 serving as a heat insulating portion is provided. By forming in this way, the cavity surface 32 can be efficiently heated and cooled in the same manner as described above.

図5は、本発明のインサート成形金型の第2参考例を示す要部の断面図である。本形態例は、金型31の内部に、温調通路33となる1列又は複数の通孔を穿設するとともに、該温調通路33の周囲に断熱部となる空気層を形成するための溝39を設けている。このように、金型31の内部に温調通路33を直接形成することによっても、前記同様の作用効果を得ることができる。 FIG. 5 is a cross-sectional view of a main part showing a second reference example of the insert molding die of the present invention. In this embodiment, one row or a plurality of through-holes serving as the temperature control passage 33 are formed in the mold 31 and an air layer serving as a heat insulating portion is formed around the temperature control passage 33. A groove 39 is provided. As described above, the same effect as described above can be obtained by directly forming the temperature adjusting passage 33 in the mold 31.

図6は、本発明のインサート成形金型の第形態例を示す要部の断面図である。本形態例は、金型31の凹部34に装着した入子35のベースプレート側に、前記断熱材に代えて低熱伝導率金属からなる補強材40を設けた例を示している。このように、入子35のベースプレート側に補強材40を設けたり、入子35のベースプレート側や第4形態例で示した温調通路33となる通孔を設けた部分のベースプレート側をベースプレートに接するように延長したりすることにより、入子35の装着部や温調通路33を設けた部分を補強することができ、金型31の全体的な強度を確保することができる。 FIG. 6 is a cross-sectional view of the main part showing a third embodiment of the insert molding die of the present invention. This embodiment shows an example in which a reinforcing member 40 made of a low thermal conductivity metal is provided on the base plate side of the insert 35 attached to the recess 34 of the mold 31 instead of the heat insulating material. As described above, the reinforcing member 40 is provided on the base plate side of the insert 35, or the base plate side of the base plate side of the insert 35 or the portion provided with the through hole serving as the temperature adjusting passage 33 shown in the fourth embodiment is used as the base plate. By extending so as to be in contact with each other, the mounting portion of the insert 35 and the portion provided with the temperature adjustment passage 33 can be reinforced, and the overall strength of the mold 31 can be ensured.

なお、各形態例及び各参考例に示した金型構造における温調通路は、可動型11及び固定型12のいずれか一方に設けてもよく、双方に設けるようにしてもよい。また、温調通路の形状等は、加熱・冷却するキャビティ面の位置や面積、金型の大きさ、加熱温度や冷却速度の各種条件に応じて適当に設定することが可能である。また、各形態例では、断熱部として空気層を設けるようにしているが、この部分に断熱材を充填してもよい。 In addition, the temperature control path in the mold structure shown in each embodiment and each reference example may be provided in one of the movable mold 11 and the fixed mold 12, or may be provided in both. In addition, the shape of the temperature control passage and the like can be appropriately set according to various conditions such as the position and area of the cavity surface to be heated and cooled, the size of the mold, the heating temperature and the cooling rate. Moreover, in each form example, although an air layer is provided as a heat insulation part, you may fill this part with a heat insulating material.

さらに、インサートフィルム17は、可動型11及び固定型12のいずれか一方に配置するようにしてもよく、インサートフィルム17の形態は、長尺で連続的に成形を行えるものあっても、所定形状に切断されたものでバッチ方式で成形を行うものであってもよい。また、金型の細部の構造は、従来から用いられている射出成形用金型と同様に形成することができ、成形品の形状や使用する熱可塑性樹脂の種類等の条件に応じて適当な構造を採用することができる。   Furthermore, the insert film 17 may be disposed on either the movable mold 11 or the fixed mold 12. The insert film 17 may be a long shape that can be continuously formed, but may have a predetermined shape. It may be formed by a batch method after being cut into pieces. In addition, the detailed structure of the mold can be formed in the same manner as conventionally used injection molds, and is appropriate depending on conditions such as the shape of the molded product and the type of thermoplastic resin used. A structure can be adopted.

上述のように形成したインサート成形金型を使用してインサート成形品を製造するに際しては、図1に示すように、所定の箔薄膜やパターン等を形成した各インサートフィルム17を可動型11及び固定型12の所定位置に配置固定して型締めし、温調通路21,22に加熱媒体を供給して金型温度、すなわち、キャビティ面の温度を熱可塑性樹脂の熱変形温度より高い温度に加熱する。この状態でゲート16から溶融樹脂をキャビティ13内に射出して樹脂成形品を成形するとともに、成形品表面に前記インサートフィルム17から模様を転写する。射出終了後は、温調通路21,22に冷却媒体を供給してキャビティ面の温度を前記熱変形温度より低い温度に冷却する。   When an insert molded product is manufactured using the insert molding die formed as described above, as shown in FIG. 1, each insert film 17 on which a predetermined foil thin film or pattern is formed is fixed to the movable mold 11 and fixed. The mold 12 is arranged and fixed at a predetermined position and clamped, and a heating medium is supplied to the temperature control passages 21 and 22 to heat the mold temperature, that is, the temperature of the cavity surface to a temperature higher than the thermal deformation temperature of the thermoplastic resin. To do. In this state, molten resin is injected from the gate 16 into the cavity 13 to mold a resin molded product, and a pattern is transferred from the insert film 17 to the surface of the molded product. After the injection is completed, a cooling medium is supplied to the temperature adjusting passages 21 and 22 to cool the temperature of the cavity surface to a temperature lower than the thermal deformation temperature.

このように、成形品にウエルドラインが発生しやすい部位のキャビティ面を射出成形時に熱可塑性樹脂の熱変形温度より高い温度に加熱することにより、樹脂の流動性を高めてウエルドラインの発生を防止することができる。また、射出成形後に直ちにキャビティ面を冷却することにより、成形サイクルを短縮できるので、生産効率を大幅に向上させることができる。特に、穴形状等によってウエルドラインが発生する部位のみを加熱・冷却するので、少量の加熱媒体及び冷却媒体によって短時間に効率よく加熱・冷却することができる。   In this way, by heating the cavity surface where the weld line is likely to occur in the molded product to a temperature higher than the thermal deformation temperature of the thermoplastic resin during injection molding, the fluidity of the resin is increased and the occurrence of weld lines is prevented. can do. Moreover, since the molding cycle can be shortened by cooling the cavity surface immediately after injection molding, the production efficiency can be greatly improved. In particular, since only the portion where the weld line is generated due to the hole shape or the like is heated and cooled, it can be efficiently heated and cooled in a short time with a small amount of heating medium and cooling medium.

このようにして得られたインサート成形品は、穴形状を有するものやサイズの大きなものであっても、ウエルドラインによる外観不良がなく、高品質な外観を有するものとなり、ポリカーボネートのような透明樹脂の場合でも、透明性に優れ、外観良好で高品質な成形品となることから、家庭電気製品や日用雑貨製品等、高品質の美観を求められる製品に最適である。   The insert-molded product obtained in this way has a high-quality appearance with no poor appearance due to the weld line, even if it has a hole shape or a large size, and is a transparent resin such as polycarbonate. Even in this case, it is excellent in transparency, has a good appearance, and is a high-quality molded product. Therefore, it is optimal for products that require high-quality aesthetics, such as household electrical appliances and household goods.

本発明のインサート成形金型の第1参考例を示す断面図である。It is sectional drawing which shows the 1st reference example of the insert molding die of this invention. 同じく固定型をキャビティ側から見た正面図である。It is the front view which similarly looked at the stationary mold from the cavity side. 本発明のインサート成形金型の金型構造における第形態例を示す要部の断面図である。It is sectional drawing of the principal part which shows the 1st form example in the metal mold | die structure of the insert molding metal mold | die of this invention. 本発明のインサート成形金型の第形態例を示す要部の断面図である。It is sectional drawing of the principal part which shows the 2nd example of an insert mold of this invention. 本発明のインサート成形金型の第2参考例を示す要部の断面図である。It is sectional drawing of the principal part which shows the 2nd reference example of the insert molding die of this invention. 本発明のインサート成形金型の第形態例を示す要部の断面図である。It is sectional drawing of the principal part which shows the 3rd form example of the insert molding die of this invention.

符号の説明Explanation of symbols

11…可動型、12…固定型、13…キャビティ、14…入子、15…穴形状形成部、16…ゲート、17…インサートフィルム、18…断熱材、19…スプル、20…ランナ、21,22…温調通路、22a…シール材、22b…温調通路カバー、23…断熱材、24…空気層、31…金型、32…キャビティ面、33…温調通路、34…凹部、34a…底壁、34b…壁面、35…入子、35a…先端面、35b…側面、35c…凹溝、36…空気層、37…断熱材、38…シール材、39…溝、40…補強材   DESCRIPTION OF SYMBOLS 11 ... Movable type | mold, 12 ... Fixed type | mold, 13 ... Cavity, 14 ... Nesting, 15 ... Hole shape formation part, 16 ... Gate, 17 ... Insert film, 18 ... Thermal insulation, 19 ... Sprue, 20 ... Runner, 21, 22 ... Temperature control passage, 22a ... Sealing material, 22b ... Temperature control passage cover, 23 ... Heat insulation material, 24 ... Air layer, 31 ... Mold, 32 ... Cavity surface, 33 ... Temperature control passage, 34 ... Recess, 34a ... Bottom wall, 34b ... wall surface, 35 ... nesting, 35a ... tip surface, 35b ... side surface, 35c ... concave groove, 36 ... air layer, 37 ... heat insulating material, 38 ... sealing material, 39 ... groove, 40 ... reinforcing material

Claims (3)

樹脂射出口を有する固定型と可動型とを型締めして形成されるキャビティの少なくとも一方のキャビティ面に沿ってインサートフィルムを配置し、前記キャビティ内に溶融した熱可塑性樹脂を射出して樹脂成形品を成形するとともに、成形品表面に前記インサートフィルムから模様を転写するインサート成形金型において、射出成形時にウエルドラインの発生する位置に対応する前記固定型及び可動型の少なくとも一方に、反キャビティ面側に開口する凹部を形成するとともに、該凹部内に装着される入子に前記キャビティ面を加熱するための加熱媒体及び冷却するための冷却媒体が供給される温調通路を設け、キャビティ面側を除く前記入子の側面と凹部の壁面との間に断熱部となる空気層を設けていることを特徴とするインサート成形金型。 An insert film is disposed along at least one cavity surface of a cavity formed by clamping a fixed mold having a resin injection port and a movable mold, and a molten thermoplastic resin is injected into the cavity to form a resin. In an insert molding die for molding a product and transferring a pattern from the insert film to the surface of the molded product , an anti-cavity surface is provided on at least one of the fixed die and the movable die corresponding to a position where a weld line is generated during injection molding. to form a recess that opens to the side, provided with a temperature control passage cooling medium is supplied in the heating medium and for cooling for heating the cavity surface insert which is mounted in the recess, cavity side insert molding die, characterized in that is provided an air layer as a heat insulating portion between the side surface and the recess of the wall of the entering element except . 請求項1記載のインサート成形金型を使用したインサート成形品の製造方法であって、前記インサートフィルムを配置したキャビティ内に樹脂を射出する際には、前記温調通路に加熱媒体を供給してキャビティ面の温度を射出する熱可塑性樹脂の熱変形温度より高い温度に加熱し、射出終了後には、前記温調通路に冷却媒体を供給してキャビティ面の温度を前記熱変形温度より低い温度に冷却することを特徴とするインサート成形品の製造方法。   A method for manufacturing an insert molded product using the insert molding die according to claim 1, wherein when a resin is injected into a cavity in which the insert film is disposed, a heating medium is supplied to the temperature control passage. The temperature of the cavity surface is heated to a temperature higher than the heat deformation temperature of the thermoplastic resin to be injected, and after the injection is finished, a cooling medium is supplied to the temperature adjusting passage to lower the temperature of the cavity surface to a temperature lower than the heat deformation temperature. A method for producing an insert-molded product, characterized by cooling. 請求項2記載の製造方法によってインサート成形されたことを特徴とするインサート成形品。   An insert-molded product, which is insert-molded by the manufacturing method according to claim 2.
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JP5128306B2 (en) * 2008-02-15 2013-01-23 ポリプラスチックス株式会社 Manufacturing method of composite molded product
JP5122320B2 (en) * 2008-02-15 2013-01-16 ポリプラスチックス株式会社 Manufacturing method of composite molded product
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