JP3315628B2 - Vanishing model for casting - Google Patents

Vanishing model for casting

Info

Publication number
JP3315628B2
JP3315628B2 JP25423797A JP25423797A JP3315628B2 JP 3315628 B2 JP3315628 B2 JP 3315628B2 JP 25423797 A JP25423797 A JP 25423797A JP 25423797 A JP25423797 A JP 25423797A JP 3315628 B2 JP3315628 B2 JP 3315628B2
Authority
JP
Japan
Prior art keywords
casting
vanishing model
model
small
impeller
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP25423797A
Other languages
Japanese (ja)
Other versions
JPH1177238A (en
Inventor
博和 高山
俊之 小川
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ebara Corp
Original Assignee
Ebara Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ebara Corp filed Critical Ebara Corp
Priority to JP25423797A priority Critical patent/JP3315628B2/en
Publication of JPH1177238A publication Critical patent/JPH1177238A/en
Application granted granted Critical
Publication of JP3315628B2 publication Critical patent/JP3315628B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Molds, Cores, And Manufacturing Methods Thereof (AREA)

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】この発明は、インベストメン
ト鋳造用の消失模型に関し、特に、比較的大径のポンプ
の羽根車等を鋳造するために用いられる鋳造用消失模型
に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a vanishing model for investment casting, and more particularly to a vanishing model used for casting a relatively large diameter pump impeller.

【0002】[0002]

【従来の技術】インベストメント鋳造法は、製品形状の
中子を消失模型として作製し、これに耐火材を塗布して
乾燥し、さらに焼成して模型を消失することにより鋳型
を作製する。量産品では、金型を作製してこれにワック
スを注入して消失模型とする方法が用いられる。少量生
産では、光造型法のような迅速模型製造法を用い、アク
リル、ポリウレタンやポリカーボネイトのような樹脂を
素材として作製していた。
2. Description of the Related Art In an investment casting method, a core is produced as a vanishing model of a product shape, a refractory material is applied thereto, dried, and then fired to vanish the model to produce a mold. For mass-produced products, a method is used in which a mold is prepared and wax is injected into the mold to make a disappearing model. In small-lot production, rapid model manufacturing methods such as stereolithography have been used to produce resins such as acrylic, polyurethane and polycarbonate.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、比較的
大径でかつ少量生産のポンプの場合、金型を用いてワッ
クス模型を作製するのはコスト高となる。一方、光造型
法を用いる場合、大径の製品であると装置自体が大型に
なって装置コストが高くなる上に、造型に多大の時間を
要して効率も低下するだけでなく、樹脂の量が多くなる
ため熱膨張により鋳型が割れることが多い。
However, in the case of a pump having a relatively large diameter and a small quantity, it is costly to manufacture a wax model using a mold. On the other hand, when the optical molding method is used, if the product has a large diameter, the apparatus itself becomes large and the apparatus cost increases.In addition, the molding takes a lot of time and the efficiency is lowered, and the resin Due to the large amount, the mold often cracks due to thermal expansion.

【0004】この発明は、上記に鑑み、比較的大径でか
つ少量生産の鋳造品を効率良く製造することができるよ
うな消失模型を提供することを目的とする。
[0004] In view of the above, an object of the present invention is to provide a vanishing model capable of efficiently producing a cast product having a relatively large diameter and being manufactured in small quantities.

【0005】[0005]

【課題を解決するための手段】請求項1に記載の発明
は、インベストメント鋳造法に用いる消失模型であっ
て、樹脂により作製された寸法の小さい小型部と、機械
加工可能なワックスにより作製された寸法の大きい大型
部とが一体に組み立てられて構成され、前記消失模型
は、ポンプの羽根車を鋳造するためのものであり、前記
小型部は翼であり、前記大型部は主板及び/又は側板で
あることを特徴とする鋳造用消失模型である。これによ
り、形状が複雑な小型部を光造型等適宜の方法で多孔質
の樹脂を用いて精密にかつ効率良く作製し、単純形状の
大型部は機械加工可能なワックスで迅速に作製し、これ
らを組み立てて一体化することにより、比較的大型で単
品生産の成型品用の消失模型を全体として効率良く作製
することができる。
The present invention according to claim 1 is a vanishing model used for investment casting, which is made of a small portion having a small size made of resin and a machinable wax. The large model having a large dimension is integrally assembled and configured ,
Is for casting a pump impeller, and
The small part is a wing, and the large part is a main plate and / or a side plate.
It is a vanishing model for casting characterized by having. In this way, small parts with complicated shapes can be precisely and efficiently manufactured using a porous resin by an appropriate method such as stereolithography, and large parts having a simple shape can be quickly manufactured with machinable wax. By assembling and integrating, it is possible to efficiently produce a relatively large disappearing model for a molded product produced as a single product as a whole.

【0006】請求項2に記載の発明は、前記小型部は、
気孔率が20%以上の多孔質性の樹脂であることを特徴
とする請求項1に記載の鋳造用消失模型である。これに
より、大型の消失模型であっても、一旦低温にしてワッ
クスを流し出すことで樹脂部分を少なくし、さらに、焼
成の際の熱膨張を吸収してシェルの割れを防止する。
[0006] According to a second aspect of the present invention, the small portion includes:
The vanishing model for casting according to claim 1, wherein the porosity is a porous resin having a porosity of 20% or more. Thus, even in the case of a large disappearing model, the resin portion is reduced by once flowing the wax at a low temperature, and the thermal expansion at the time of firing is absorbed to prevent cracking of the shell.

【0007】[0007]

【0008】請求項に記載の発明は、前記小型部は、
アクリル、ポリカーボネイト又はポリウレタンを素材と
することを特徴とする請求項1に記載の鋳造用消失模型
である。
[0008] According to a third aspect of the present invention, the small portion includes:
The casting model according to claim 1, wherein the casting model is made of acrylic, polycarbonate or polyurethane.

【0009】[0009]

【実施例】以下、この発明の一実施例の羽根車を製造す
る方法を、図面を参照して説明する。この実施例では、
外形が約500mmの両吸い込み型の遠心ポンプの羽根
車を作製した。図1は、羽根車を作成するための消失模
型を示すが、羽根車10は、主板12、側板14及びそ
の間に配された複数の翼16からなり、主板12は、中
央に駆動軸を取り付ける穴18とボス部20を有する円
板であり、側板14は中央に流体の流入口22が形成さ
れている。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A method for manufacturing an impeller according to one embodiment of the present invention will be described below with reference to the drawings. In this example,
An impeller of a double suction centrifugal pump having an outer shape of about 500 mm was produced. FIG. 1 shows a vanishing model for making an impeller. An impeller 10 includes a main plate 12, a side plate 14, and a plurality of blades 16 arranged therebetween, and the main plate 12 has a drive shaft mounted at the center. It is a disk having a hole 18 and a boss 20, and the side plate 14 has a fluid inlet 22 formed in the center.

【0010】先ず、主板12及び側板14は、単純形状
のため旋盤等により機械加工可能なワックスを切削加工
を施して作製した。これと同様の方法で、押湯、湯道等
の必要箇所も成形した。
First, the main plate 12 and the side plate 14 were manufactured by cutting a wax which can be machined by a lathe or the like because of its simple shape. In the same manner, necessary parts such as a riser and a runner were also formed.

【0011】次に、個々の翼16の作製方法を説明す
る。アクリル素材の粒子からなる原料(DTM社製、商
品名:ツルーフォーム)Mを、図2(a)に示すよう
に、光造形装置(選択レーザー焼結装置)24のチャン
バ26内に所定の厚さ、例えば0.1mmの厚さで均一
に充填して、原料粒子層28を形成する。この光造型装
置24は、チャンバ26の上方に配置したレーザ照射装
置30と、図示していない制御装置を備えており、制御
装置の記憶部には、個々の翼16の形状の等ピッチ断面
における断層の形状データが例えば数値データとして記
憶されている。翼16は、光造型装置24の効率を向上
させるために、複数を並列配置して造形するようにして
いもよい。
Next, a method of manufacturing the individual wings 16 will be described. As shown in FIG. 2A, a raw material (trade name: Trueform, manufactured by DTM) made of an acrylic material particle is placed in a chamber 26 of an optical shaping apparatus (selective laser sintering apparatus) 24 with a predetermined thickness. Then, for example, the raw material particle layer 28 is formed by uniformly filling with a thickness of 0.1 mm. The optical molding device 24 includes a laser irradiation device 30 disposed above the chamber 26 and a control device (not shown). The shape data of the fault is stored, for example, as numerical data. A plurality of wings 16 may be formed by arranging a plurality of wings in parallel in order to improve the efficiency of the optical molding device 24.

【0012】制御装置は、上記原料粒子層28の厚さと
対応する厚さに輪切りした形状を算出し、この形状を平
面視したパターンに沿ってレーザ光スキャンを行なうよ
うに、レーザ照射装置30に対して制御信号を送る。レ
ーザ照射装置30は、例えば、炭酸ガスレーザ発生装置
等のレーザ光源32からレーザ光をミラー34を介して
原料粒子層28に照射する。レーザ照射を受けた箇所の
原料粒子層28は昇温し、部分的に溶融して融着部を形
成し、翼薄片36が形成される。
The control device calculates a shape of the material particle layer 28 in a shape corresponding to the thickness corresponding to the thickness of the material particle layer 28, and instructs the laser irradiation device 30 to perform a laser beam scan along a pattern in which this shape is viewed in plan. Send a control signal to it. The laser irradiator 30 irradiates a laser beam from a laser light source 32 such as a carbon dioxide laser generator to the raw material particle layer 28 via a mirror 34. The temperature of the raw material particle layer 28 at the location where the laser irradiation has been performed is raised and partially melted to form a fused portion, and the blade flake 36 is formed.

【0013】次に、この翼薄片36の上に原料を供給し
て同じ厚さの原料粒子層28を形成し、これに上記翼薄
片36に続く部分の形状になるようにレーザ照射を行
う。必要に応じてレーザ照射装置30と原料層の距離を
調整してレーザ光の焦点を調整する。この工程を順次繰
り返すことにより、同図(b)に示すような、薄片が一
体に積層された翼16が作成される。
Next, a raw material is supplied onto the wing thin piece 36 to form a raw material particle layer 28 having the same thickness, and laser irradiation is performed on the raw material particle layer 28 so as to have a shape following the wing thin piece 36. The focal point of the laser beam is adjusted by adjusting the distance between the laser irradiation device 30 and the raw material layer as necessary. By repeating this process sequentially, a blade 16 in which thin pieces are integrally laminated as shown in FIG.

【0014】このようにして製造した翼を、図1に示す
ように、先に作製した主板12の表面の所定位置に載せ
て接着剤などで取り付ける。そして、その上に側板14
を被せ、所定箇所に押湯、湯道等を取り付けて一体化
し、消失模型とする。これに、水溶性シリカを含有する
耐火材を多層に塗布してシェルを形成し、これを100
℃のオートクレーブ中でワックスを一旦流し出した後、
炉中にて1000℃で1時間焼成し、消失模型を除去し
て鋳型を作製した。昇温時における模型の熱膨張による
シェルの割れは生じなかった。
As shown in FIG. 1, the wing manufactured as described above is mounted on a predetermined position on the surface of the previously prepared main plate 12 and attached with an adhesive or the like. And the side plate 14 is placed on it.
And a hot water bath, a runner, etc. are attached to a predetermined location and integrated to form a disappearing model. A refractory material containing water-soluble silica is applied thereon in multiple layers to form a shell.
After pouring out wax in an autoclave at ℃
It was baked at 1000 ° C. for 1 hour in a furnace, and the disappearance model was removed to prepare a mold. The shell did not crack due to the thermal expansion of the model at the time of temperature rise.

【0015】なお、上記においては、この発明をポンプ
の羽根車に用いたが、精密な形状が必要とされる任意の
製品の作製に用いても良いことは言うまでもない。
In the above description, the present invention is used for an impeller of a pump, but it goes without saying that the present invention may be used for manufacturing any product requiring a precise shape.

【0016】[0016]

【発明の効果】以上説明したように、この発明によれ
ば、小型部のみを樹脂で精密にかつ効率良く作製し、こ
れを他の適宜の機械加工方法で機械加工可能なワックス
で作製した大型部と組み立てて一体化することにより、
比較的大型で単品生産の成型品用の消失模型を全体とし
て効率良く作製することができ、例えば、比較的大径の
ポンプの製造コストを大幅に低下させることができる。
As described above, according to the present invention, only a small portion is precisely and efficiently made of resin, and a large portion is made of wax which can be machined by another appropriate machining method. By assembling and integrating with the part,
A relatively large vanishing model for a molded product produced as a single product can be efficiently manufactured as a whole, and, for example, the manufacturing cost of a pump having a relatively large diameter can be significantly reduced.

【図面の簡単な説明】[Brief description of the drawings]

【図1】翼と主板及び側板のそれぞれ模型から羽根車の
消失模型を組み立てる工程を説明する図である。
FIG. 1 is a diagram illustrating a process of assembling a vanishing model of an impeller from models of a wing, a main plate, and a side plate.

【図2】この発明の1つの工程である翼の成形工程を説
明する図である。
FIG. 2 is a diagram illustrating a blade forming step, which is one step of the present invention.

【符号の説明】[Explanation of symbols]

10 羽根車 12 主板 14 側板 16 翼 10 impeller 12 main plate 14 side plate 16 wing

───────────────────────────────────────────────────── フロントページの続き (58)調査した分野(Int.Cl.7,DB名) B22C 9/04,7/02,9/22 ──────────────────────────────────────────────────続 き Continued on the front page (58) Field surveyed (Int.Cl. 7 , DB name) B22C 9 / 04,7 / 02,9 / 22

Claims (3)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 インベストメント鋳造法に用いる消失模
型であって、樹脂により作製された 寸法の小さい小型部と、機械加工
可能なワックスにより作製された寸法の大きい大型部と
が一体に組み立てられて構成され 前記消失模型は、ポンプの羽根車を鋳造するためのもの
であり、 前記小型部は翼であり、前記大型部は主板及び/又は側
板である ことを特徴とする鋳造用消失模型。
1. A vanishing model used in an investment casting method, wherein a small portion having a small size made of resin and a large portion having a large size made of a machinable wax are integrally assembled. is, the fugitive pattern is used to cast the impeller of the pump
, And the aforementioned small section is wings, the large portion main plate and / or side
A vanishing model for casting, which is a plate .
【請求項2】 前記小型部は、気孔率が20%以上の多
孔質性の樹脂であることを特徴とする請求項1に記載の
鋳造用消失模型。
2. The casting vanishing model according to claim 1, wherein the small portion is a porous resin having a porosity of 20% or more.
【請求項3】 前記小型部は、アクリル、ポリカーボネ
イト又はポリウレタンを素材とすることを特徴とする請
求項1に記載の鋳造用消失模型。
3. The casting vanishing model according to claim 1, wherein the small portion is made of acrylic, polycarbonate or polyurethane.
JP25423797A 1997-09-03 1997-09-03 Vanishing model for casting Expired - Lifetime JP3315628B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP25423797A JP3315628B2 (en) 1997-09-03 1997-09-03 Vanishing model for casting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP25423797A JP3315628B2 (en) 1997-09-03 1997-09-03 Vanishing model for casting

Publications (2)

Publication Number Publication Date
JPH1177238A JPH1177238A (en) 1999-03-23
JP3315628B2 true JP3315628B2 (en) 2002-08-19

Family

ID=17262184

Family Applications (1)

Application Number Title Priority Date Filing Date
JP25423797A Expired - Lifetime JP3315628B2 (en) 1997-09-03 1997-09-03 Vanishing model for casting

Country Status (1)

Country Link
JP (1) JP3315628B2 (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100389905C (en) * 2006-04-05 2008-05-28 中国兵器工业集团第七○研究所 Processing method of impellor mould of pressurizing unit compressor
CN102363199B (en) * 2011-11-04 2013-06-26 西安航空动力股份有限公司 Manufacturing method and fixture of integral bladed-disk wax mold
CN102366817B (en) * 2011-11-04 2013-06-26 西安航空动力股份有限公司 Wax mould manufacturing method of integral blade ring and combined fixture
CN103252449B (en) * 2013-05-08 2015-12-02 青岛钰鑫车辆工程有限公司 Composite stirs wing production method
CN107008854A (en) * 2017-05-05 2017-08-04 凯特工业科技(惠州)有限公司 A kind of manufacturing process of hot investment casting pump housing impeller wax-pattern
CN113606185A (en) * 2021-08-31 2021-11-05 东营一诚精密金属有限公司 Closed impeller structure convenient to investment casting

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5411023A (en) * 1977-06-28 1979-01-26 Kubota Ltd Oneeteme molding method of vanishable core for precise casting
JP2842082B2 (en) * 1992-09-14 1998-12-24 日産自動車株式会社 Vanishing model for precision casting
JPH0747443A (en) * 1993-08-06 1995-02-21 Yamagata Seimitsu Chuzo Kk Lost wax casting method

Also Published As

Publication number Publication date
JPH1177238A (en) 1999-03-23

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