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JP5290555B2 - Molding mold manufacturing method - Google Patents

Molding mold manufacturing method Download PDF

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JP5290555B2
JP5290555B2 JP2007249500A JP2007249500A JP5290555B2 JP 5290555 B2 JP5290555 B2 JP 5290555B2 JP 2007249500 A JP2007249500 A JP 2007249500A JP 2007249500 A JP2007249500 A JP 2007249500A JP 5290555 B2 JP5290555 B2 JP 5290555B2
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JP2009078459A (en
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時人 尾崎
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株式会社東海モデル
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a method for producing a molding die whose production period can be remarkably reduced, and further having improved strength and durability, and, whose production is easy, and which is also economically advantageous, and to provide a master model thereof. <P>SOLUTION: The method for producing a molding die comprises: a stage where an object model 20 is prepared; a stage where the object model is mounted freely removably, so as to create a master model 30; a stage where a pattern 41 for a cavity die essentially consisting of a zinc alloy and the master model 30 are matched, a metal resin is injected from a resin injection part 44 into a space 43 forming a die face part, so as to create a cavity die 40; and a stage where the object model is arranged at the die face part 49 of the cavity die, thereafter, the cavity die and the pattern 51 for a core die essentially consisting of a zinc alloy are matched, and a metal resin is injected from a resin injection part 54 of the pattern for a core die into a space 53 for forming a die face part, so as to create a core die 50. <P>COPYRIGHT: (C)2009,JPO&amp;INPIT

Description

この発明は、成形用金型の製法関する。 The present invention relates to a mold manufacturing method.

射出成形や低圧RIM成形等のプラスチック成形品のための大物部品(車のバンパー、インパネ、バックドアパネル等)の成形型や中物物品(車のドアトリム、ピラー、電化部品等)の成形用金型は、例えば型面が成形品形状に窪んだ凹形状のキャビティ型と、型面が突出した凸形状のコア型より構成されることが多い。このような成形型を得るには、通常木型等のマスターモデルが製作される。そして、マスターモデルの表面形状をシリコン樹脂、エポキシ樹脂等により転写してキャビティ型を製作し、次いで、該キャビティ型に製品の窪んだ側の面形状を作り込んだ部材を設置し、前記の樹脂を用い転写することによりコア型を得る。このようなマスターモデルを用いる製造方法では、マスターモデルとキャビティ型、コア型の一連の型製作に4〜6週間要し、型の製作費も高くなる。   Molds for large parts (car bumpers, instrument panels, back door panels, etc.) and plastic articles for injection molding, low pressure RIM molding, etc. For example, the mold surface is often composed of a concave cavity mold in which the mold surface is recessed in the shape of a molded product and a convex core mold in which the mold surface protrudes. In order to obtain such a mold, a master model such as a wooden mold is usually manufactured. Then, the surface shape of the master model is transferred with silicon resin, epoxy resin or the like to produce a cavity mold, and then a member in which the surface shape on the recessed side of the product is formed is installed in the cavity mold, and the resin To obtain a core mold. In such a manufacturing method using a master model, it takes 4 to 6 weeks to produce a series of a master model, a cavity mold, and a core mold, and the production cost of the mold increases.

上のような問題を改善するために、出願人は、先に、光造形材料を使用した光造形法又は粉末造形材料を使用した粉末焼結造形法によって形成された所定の型面形状を有する薄肉型表面層と、前記薄肉型表面層の背面側に該薄肉型表面層と一体にそれぞれ前記光造形法又は粉末焼結造形法によって形成された補強リブ部と、前記薄肉型表面層の背面側の前記補強リブ部の空間に一体に充填された裏打ち樹脂層からなる成形型の構造を提案した(特許文献1)。   In order to remedy the above problems, the applicant has a predetermined mold surface shape formed by the stereolithography method using an optical modeling material or the powder sintering modeling method using a powder modeling material. A thin-walled surface layer, a reinforcing rib formed integrally with the thin-walled surface layer on the back surface side of the thin-walled surface layer, respectively, by the stereolithography method or the powder sintering molding method, and a back surface of the thin-walled surface layer The structure of the shaping | molding die which consists of a lining resin layer with which the space of the said reinforcement rib part of the side was integrally filled was proposed (patent document 1).

この先行技術は、従来に比して短期間での製作が可能で、試作用成形型や少量多品種用の成形型とし高い評価を得ている。
特開2003−94443
This prior art can be manufactured in a short period of time compared to the prior art, and has been highly evaluated as a prototype mold and a small quantity and a variety of molds.
JP2003-94443

この発明は、製作期間を大幅に短縮することができる成形型を提案するものであるが、さらに強度や耐久性を向上させるとともに、製作が容易で経済的にも有利な成形用金型の製法提案するものである。 This invention proposes a mold that can greatly shorten the production period, but further improves the strength and durability, and is easy to produce and economically advantageous. This is a proposal.

すなわち、請求項1の発明は、成形品の三次元データから凹所を有する実物モデル(20)を作成する工程と、パーティング面(32)を有し、突部(35)及び段部(36)が形成されたマスターモデル元型(31)を用意し、前記突部(35)及び段部(36)に前記実物モデルの凹所を取り外し可能に嵌着させてマスターモデル(30)を作成する工程と、パーティング面(42)と型面部形成用空所(43)と前記型面部形成用空所へのレジン注入部(44)とを有する亜鉛合金を主体とするキャビティ型用元型(41)を作成する工程と、前記キャビティ型用元型(41)と前記マスターモデル(30)との前記パーティング面(32,42)を合着して型合わせして、前記レジン注入部から前記型面部形成用空所にメタルレジンを注入して該メタルレジンによる型面部(49)を一体に有するキャビテイ型(40)を作成する工程と、パーティング面(52)と型面部形成用空所(53)と前記型面部形成用空所へのレジン注入部(54)とを有する亜鉛合金を主体とするコア型用元型(51)を作成する工程と、前記マスターモデルから取り外した前記実物モデル(20)を前記キャビティ型の型面部(49)に配置した後、該キャビティ型(40)と前記コア型用元型(51)とのパーティング面(42,52)を合着して型合わせして、前記コア型用元型のレジン注入部から前記型面部形成用空所にメタルレジンを注入して該メタルレジンによる型面部(59)を一体に有するコア型(50)を作成する工程とを有することを特徴とする成形用金型の製法に係る。 That is, the invention of claim 1 includes a step of creating a real model (20) having a recess from the three-dimensional data of a molded product, a parting surface (32), a protrusion (35) and a step ( 36) is prepared, and a master model (31) is prepared, and a recess of the real model is removably fitted to the protrusion (35) and the step (36) to attach the master model (30). A cavity mold element mainly composed of a zinc alloy having a forming step, a parting surface (42), a mold surface portion forming space (43), and a resin injection portion (44) into the mold surface portion forming space. The step of creating a mold (41), the parting surfaces (32, 42) of the master mold (41) for the cavity mold and the master model (30) are bonded together, and the resin is injected. Metal resin from the part to the mold surface forming space A step of forming a cavity mold (40) integrally having a mold surface portion (49) made of the metal resin, a parting surface (52), a mold surface portion forming space (53), and the mold surface portion forming space; Forming a core mold master mold (51) mainly composed of a zinc alloy having a resin injection portion (54) to a place, and replacing the real model (20) removed from the master model with the cavity mold mold After being arranged on the surface portion (49), the parting surfaces (42, 52) of the cavity mold (40) and the core mold master mold (51) are bonded together to form a mold, and the core mold master And a step of injecting a metal resin from the resin injection portion of the mold into the mold surface portion forming space to produce a core mold (50) integrally including the mold surface portion (59) of the metal resin. Concerning the manufacturing method of molding dies

請求項2の発明は、請求項1において、前記キャビティ型(40)及びコア型(50)がそれぞれのモールドベース(13,14)に取付けられる構造を有する請求項1に記載の成形用金型の製法に係る。   According to a second aspect of the present invention, in the first aspect, the mold for molding according to the first aspect has a structure in which the cavity mold (40) and the core mold (50) are attached to the respective mold bases (13, 14). Related to the manufacturing method.

請求項1の発明によれば、前記したように、成形品の三次元データから凹所を有する実物モデルを作成し、パーティング面を有し、突部及び段部が形成されたマスターモデル元型を用意し、前記突部及び段部に前記実物モデルの凹所を取り外し可能に嵌着させてマスターモデルを作成し、このマスターモデルとキャビティ型用元型とを型合わせしてキャビテイ型を作成する一方、コア型は前記実物モデルを前記キャビティ型に配置してコア型用元型とを型合わせして作成されるものであるから、極めて簡易な連続工程でその製作期間を大幅に短縮することができる。また、キャビティ型及びコア型は、各々、亜鉛合金を主体とする元型の型面部形成用空所にメタルレジンを注入して該メタルレジンによる型面部が一体に形成されるものであるから、簡単かつ確実な工程で強度や耐久性が向上し、さらに経済的にも有利な成形用金型を得ることができる。
According to the invention of claim 1, as described above, a master model element having a parting surface, a projecting part and a step part formed by creating a real model having a recess from the three-dimensional data of the molded product A mold is prepared, a master model is created by removably fitting the recess of the real model to the protrusion and step, and a cavity mold is formed by matching the master model with the cavity mold master mold. On the other hand, since the core mold is created by placing the actual model in the cavity mold and matching with the core mold master mold, the production period is greatly shortened by an extremely simple continuous process. can do. In addition, the cavity mold and the core mold are each formed by integrally injecting a metal resin into the former mold surface portion forming space mainly composed of a zinc alloy, and the mold surface portion of the metal resin is integrally formed. With a simple and reliable process, strength and durability can be improved, and a molding die that is economically advantageous can be obtained.

また、請求項2の発明によれば、前記キャビティ型及びコア型がそれぞれのモールドベースに取付けられる構造を有するものであるから、これらの成形用金型による成形を簡単かつ容易に効率よく行うことができる。   In addition, according to the invention of claim 2, since the cavity mold and the core mold are structured to be attached to the respective mold bases, the molding with these molding dies can be easily and easily performed efficiently. Can do.

以下添付の図面に従ってこの発明を詳細に説明する。
図1はこの発明の製法によって製造された成形用金型を射出成形機のモールドベースに装着した状態の概略断面図、図2は実物モデルの実施例を示す断面図、図3はマスターモデルの断面図、図4はマスターモデルとキャビティ型用元型とを型合わせした状態の断面図、図5はキャビティ型用元型に型面部を形成してキャビティ型を作成する状態の断面図、図6はキャビティ型とコア型用元型とを型合わせした状態の断面図、図7はコア型用元型に型面部を形成してコア型を作成する状態の断面図である。
Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.
FIG. 1 is a schematic sectional view showing a state where a molding die manufactured by the manufacturing method of the present invention is mounted on a mold base of an injection molding machine, FIG. 2 is a sectional view showing an example of a real model, and FIG. FIG. 4 is a cross-sectional view of a master model and a cavity mold master, and FIG. 5 is a cross-sectional view of a cavity mold formed by forming a mold surface portion on the cavity mold master. 6 is a cross-sectional view of a state in which the cavity mold and the core mold original mold are combined, and FIG. 7 is a cross-sectional view of a state in which a core surface is formed by forming a mold surface portion on the core mold original mold.

図1に示す射出成形機の成形型10は、この発明によって得られた成形用金型であるキャビティ型40及びコア型50をそれぞれのモールドベース13、14に装着した状態の概略断面図である。請求項2の発明として規定したように、あらかじめ専用のモールドベース13,14を作成しておき、金型40,50をこのモールドベースに対して入れ子として取付け可能な構造とすることによって、成形の時間短縮及び成形コストの低減を図ることが可能である。なお、モールドベース13、14は公知のものである。図1において、符号11は固定盤、12はスプルー孔、16は可動盤、17はエジェクタピン、Pは成形品である。   The molding die 10 of the injection molding machine shown in FIG. 1 is a schematic cross-sectional view of a state in which a cavity die 40 and a core die 50, which are molding dies obtained by the present invention, are mounted on the mold bases 13 and 14, respectively. . As specified in the invention of claim 2, dedicated mold bases 13 and 14 are prepared in advance, and the molds 40 and 50 are structured so as to be nestable with respect to the mold base. It is possible to reduce the time and the molding cost. The mold bases 13 and 14 are known ones. In FIG. 1, reference numeral 11 is a fixed platen, 12 is a sprue hole, 16 is a movable platen, 17 is an ejector pin, and P is a molded product.

また、図1のキャビティ型40に関し、符号41は亜鉛合金を主体とするキャビティ型用元型、42はパーティング面、49はメタルレジンによる型面部で、49Sはその型面(表面)である。同様に、コア型50に関し、符号51は亜鉛合金を主体とするコア型用元型、52はパーティング面、59はメタルレジンによる型面部で、59Sはその型面(表面)を表す。以下これらのキャビティ型40及びコア型50の製法について図とともに説明する。   Further, with respect to the cavity mold 40 shown in FIG. 1, reference numeral 41 is a cavity mold master mold mainly composed of a zinc alloy, 42 is a parting surface, 49 is a mold surface portion made of metal resin, and 49S is its mold surface (surface). . Similarly, with respect to the core mold 50, reference numeral 51 denotes a core mold original mold mainly composed of a zinc alloy, 52 denotes a parting surface, 59 denotes a mold surface portion made of a metal resin, and 59S denotes the mold surface (surface). Hereinafter, a method for manufacturing the cavity mold 40 and the core mold 50 will be described with reference to the drawings.

請求項1の発明に係る製法は、実物モデル20を作成する工程と、マスターモデル30を作成する工程と、キャビティ型用元型41を作成する工程と、キャビテイ型40を作成する工程と、コア型用元型51を作成する工程と、コア型50を作成する工程とを有する。   The manufacturing method according to the invention of claim 1 includes a step of creating a real model 20, a step of creating a master model 30, a step of creating a cavity mold master 41, a step of creating a cavity mold 40, a core It has the process of creating the mold original mold 51, and the process of creating the core mold 50.

実物モデル20を作成する工程は、図2に示す例のように、成形品の三次元データに基づき、例えば、公知の光造形材料を使用した光造形法や粉末造形材料を使用した粉末焼結造形法によって作成される。   The process of creating the real model 20 is based on the three-dimensional data of the molded product, as in the example shown in FIG. 2, for example, a powder molding method using a stereolithography method using a known stereolithography material or a powder modeling material. Created by modeling method.

マスターモデル30を作成する工程は、図3に図示したように、パーティング面32を有するマスターモデル元型31に実物モデル20を取り外し可能に装着してマスターモデル30が作成される。マスターモデル元型31は公知の木型やケミカルウッドが用いられる。実物モデル20を取り外し可能に装着するには、図示のように、実物モデル20の凹所等を利用して元型31に突部35や段部36を形成して嵌着するようにしてもよい。   In the process of creating the master model 30, as shown in FIG. 3, the master model 30 is created by detachably mounting the real model 20 on the master model master 31 having the parting surface 32. As the master model base 31, a known wooden shape or chemical wood is used. In order to detachably mount the real model 20, as shown in the figure, the projection 35 and the stepped portion 36 may be formed and fitted to the original mold 31 by using a recess or the like of the real model 20. Good.

キャビティ型用元型41を作成する工程は、図4に図示したように、亜鉛合金を主体とする材料によって、パーティング面42と型面部形成用空所43と前記型面部形成用空所へのレジン注入部44とが形成される。亜鉛合金を主体とする材料は、「ZAS」としてこの種成形型に用いられている。   As shown in FIG. 4, the step of creating the cavity mold base mold 41 is performed by using a material mainly composed of a zinc alloy to the parting surface 42, the mold surface portion forming space 43, and the mold surface portion forming space. The resin injection part 44 is formed. A material mainly composed of a zinc alloy is used in this type of mold as “ZAS”.

キャビティ型40を作成する工程は、図5に図示のように、前記キャビティ型用元型41と前記マスターモデル30とのパーティング面32及び42を合着して型合わせして、元型41のレジン注入部44から前記型面部形成用空所にメタルレジンRを注入して該メタルレジンによる型面部49を一体に有するキャビティ型40を作成する。メタルレジンRは、通常樹脂型として用いられている、エポキシ樹脂にアルミニウム微粉を混入した耐熱表面注型材料で、実施例ではバンティコ社の商品名「クインネートMEZ360」を用いた。なお、熱硬化条件は60℃で12時間である。   As shown in FIG. 5, the step of creating the cavity mold 40 is performed by fitting the parting surfaces 32 and 42 of the cavity mold master 41 and the master model 30 together, and matching the mold 41. A metal mold R is injected from the resin injection portion 44 into the mold surface portion forming space to make a cavity mold 40 integrally having a mold surface portion 49 made of the metal resin. Metal Resin R is a heat-resistant surface casting material in which aluminum fine powder is mixed in an epoxy resin, which is usually used as a resin mold. In the examples, the trade name “Quinate MEZ360” manufactured by Bantico Co., Ltd. was used. In addition, thermosetting conditions are 12 hours at 60 degreeC.

次に、コア型用元型51を作成する工程は、図6に図示のように、前記のキャビティ型用元型41と同様の亜鉛合金を主体とする材料によって、パーティング面52と型面部形成用空所53と前記型面部形成用空所へのレジン注入部54とが形成される。   Next, as shown in FIG. 6, the step of creating the core mold master 51 is performed using a material mainly composed of zinc alloy similar to the cavity mold master 41 and the parting surface 52 and the mold surface portion. A forming space 53 and a resin injection portion 54 into the mold surface portion forming space are formed.

コア型50を作成する工程は、図7に図示のように、まず、前記マスターモデル30から取り外した実物モデル20をキャビティ型40の型面部49に配置する。その後、該キャビティ型40と前記コア型用元型51とのパーティング面42及び52を合着して型合わせして、コア型用元型51のレジン注入部54から型面部形成用空所53にメタルレジンRを注入して、該メタルレジンRによる型面部59を一体に有するコア型50を作成する。型面部49を一体に有するを作成する。メタルレジンRは、前記キャビテイ型40の型面部49と同一のエポキシ樹脂にアルミニウム微粉を混入した耐熱表面注型材料を用いた。   As shown in FIG. 7, in the process of creating the core mold 50, first, the actual model 20 removed from the master model 30 is placed on the mold surface portion 49 of the cavity mold 40. Thereafter, the parting surfaces 42 and 52 of the cavity mold 40 and the core mold original mold 51 are bonded together to form a mold, and from the resin injection portion 54 of the core mold original mold 51, a mold surface portion forming space is formed. A metal resin R is injected into 53, and a core mold 50 integrally having a mold surface 59 of the metal resin R is produced. A mold surface portion 49 is integrally formed. As the metal resin R, a heat-resistant surface casting material in which aluminum fine powder was mixed in the same epoxy resin as the mold surface portion 49 of the cavity mold 40 was used.

図1はこの発明の製法によって製造された成形用金型を射出成形機のモールドベースに装着した状態の概略断面図である。FIG. 1 is a schematic cross-sectional view showing a state where a molding die manufactured by the manufacturing method of the present invention is mounted on a mold base of an injection molding machine. 図2は実物モデルの実施例を示す断面図である。FIG. 2 is a cross-sectional view showing an example of a real model. 図3はマスターモデルの断面図である。FIG. 3 is a cross-sectional view of the master model. 図4はマスターモデルとキャビティ型用元型とを型合わせした状態の断面図である。FIG. 4 is a cross-sectional view showing a state in which the master model and the cavity mold master are combined. 図5はキャビティ型用元型に型面部を形成してキャビティ型を作成する状態の断面図である。FIG. 5 is a cross-sectional view of a state in which a cavity surface is formed by forming a mold surface portion on a cavity mold base mold. 図6はキャビティ型とコア型用元型とを型合わせした状態の断面図である。FIG. 6 is a cross-sectional view of a state in which the cavity mold and the core mold are combined. 図7はコア型用元型に型面部を形成してコア型を作成する状態の断面図である。FIG. 7 is a cross-sectional view of a state in which the core surface is formed by forming the mold surface portion on the core mold original mold.

10 成形型
13,14 モールドベース
20 実物モデル
30 マスターモデル
31 マスターモデル元型
32 パーティング面
40 キャビティ型
41 キャビティ型用元型
42 パーティング面
43 型面部形成用空所
44 レジン注入部
49 型面部
50 コア型
51 コア型用元型
52 パーティング面
53 型面部形成用空所
54 レジン注入部
59 型面部
DESCRIPTION OF SYMBOLS 10 Mold 13,14 Mold base 20 Real model 30 Master model 31 Master model original mold 32 Parting surface 40 Cavity mold 41 Cavity mold original mold 42 Parting surface 43 Mold surface part formation space 44 Resin injection part 49 Mold surface part 50 Core mold 51 Core mold original mold 52 Parting surface 53 Mold surface section forming space 54 Resin injection section 59 Mold surface section

Claims (2)

成形品の三次元データから凹所を有する実物モデル(20)を作成する工程と、
パーティング面(32)を有し、突部(35)及び段部(36)が形成されたマスターモデル元型(31)を用意し、前記突部(35)及び段部(36)に前記実物モデルの凹所を取り外し可能に嵌着させてマスターモデル(30)を作成する工程と、
パーティング面(42)と型面部形成用空所(43)と前記型面部形成用空所へのレジン注入部(44)とを有する亜鉛合金を主体とするキャビティ型用元型(41)を作成する工程と、
前記キャビティ型用元型(41)と前記マスターモデル(30)との前記パーティング面(32,42)を合着して型合わせして、前記レジン注入部から前記型面部形成用空所にメタルレジンを注入して該メタルレジンによる型面部(49)を一体に有するキャビテイ型(40)を作成する工程と、
パーティング面(52)と型面部形成用空所(53)と前記型面部形成用空所へのレジン注入部(54)とを有する亜鉛合金を主体とするコア型用元型(51)を作成する工程と、
前記マスターモデルから取り外した前記実物モデル(20)を前記キャビティ型の型面部(49)に配置した後、該キャビティ型(40)と前記コア型用元型(51)とのパーティング面(42,52)を合着して型合わせして、前記コア型用元型のレジン注入部から前記型面部形成用空所にメタルレジンを注入して該メタルレジンによる型面部(59)を一体に有するコア型(50)を作成する工程
とを有することを特徴とする成形用金型の製法。
Creating a real model (20) having a recess from the three-dimensional data of the molded article;
A master model master mold (31) having a parting surface (32) and having a protrusion (35) and a step (36) is prepared, and the protrusion (35) and the step (36) are Creating a master model (30) by detachably fitting the recess of the real model ;
A cavity mold master (41) mainly composed of a zinc alloy having a parting surface (42), a mold surface portion forming space (43), and a resin injection portion (44) into the mold surface portion forming space. Creating a process;
The parting surfaces (32, 42) of the cavity mold master (41) and the master model (30) are bonded together to form a mold, and from the resin injection part to the mold surface part forming space Injecting a metal resin to create a cavity mold (40) integrally having a mold surface portion (49) of the metal resin;
A core mold master (51) mainly composed of a zinc alloy having a parting surface (52), a mold surface portion forming space (53), and a resin injection portion (54) into the mold surface portion forming space. Creating a process;
The actual model (20) removed from the master model is placed on the mold surface (49) of the cavity mold, and then the parting surface (42) between the cavity mold (40) and the core mold original mold (51). , 52) and mold matching, injecting a metal resin from the resin injection part of the core mold original mold into the mold surface part forming space and integrating the mold surface part (59) by the metal resin integrally Forming a core mold (50) having a process for producing a mold for molding.
前記キャビティ型(40)及びコア型(50)がそれぞれのモールドベース(13,14)に取付けられる構造を有する請求項1に記載の成形用金型の製法。   The method for manufacturing a molding die according to claim 1, wherein the cavity mold (40) and the core mold (50) are attached to respective mold bases (13, 14).
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