JP4763653B2 - Vibratory separator for die casting products - Google Patents

Vibratory separator for die casting products Download PDF

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JP4763653B2
JP4763653B2 JP2007152462A JP2007152462A JP4763653B2 JP 4763653 B2 JP4763653 B2 JP 4763653B2 JP 2007152462 A JP2007152462 A JP 2007152462A JP 2007152462 A JP2007152462 A JP 2007152462A JP 4763653 B2 JP4763653 B2 JP 4763653B2
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rotating plate
side walls
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JP2008302394A (en
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義則 山喜
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ロボテック株式会社
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本発明は、ダイカストや射出成形によって発生した金型鋳造製品における鋳造製品部分と湯口方案部分とを連続している堰部位を切断し、鋳造製品部分のみを分離して取り出し、製品としての体裁を整えるようにするための金型鋳造製品の振動式分離装置に関する。 The present invention cuts the weir site where the cast product part and the gate design part in the die casting product generated by die casting or injection molding are continuous, separates and removes only the cast product part, and forms the product as a product. The present invention relates to a vibration separating apparatus for a die casting product for making preparations.

ダイカストマシンを使っての金型鋳造において、ノズルから供給された金属溶融材料は湯口、湯道等の流路を経て堰から所定の金型内に給湯される。このとき、金型の合わせ面や摺動面等の隙間には意図せずに溶融材料が流れ込んでバリが発生し、また、成形後に金型から取り出すときには、凝固した鋳造製品部分と流路内で凝固している湯口方案部分とが一体となった状態となっている。   In mold casting using a die casting machine, the molten metal material supplied from a nozzle is supplied from a weir into a predetermined mold via a flow path such as a gate and a runner. At this time, the molten material flows unintentionally into gaps such as the mating surface and sliding surface of the mold, and burrs are generated, and when taking out from the mold after molding, the solidified cast product part and the flow path It is in a state of being integrated with the gate design part that has solidified.

また、ダイカストや射出成形の場合には、金型内の空気を逃がすために、エアベントとして金型の隙間を利用することもある。特に、熱間鍛造や一部の砂型鋳造やダイカストのように、意識的にバリを発生させて溶融材料の流動を助長させ、金型内への材料充満を促す所謂オーバーフローを目的としたものもある。このような場合には、バリの厚さや寸法も巨大なため、後工程の切断刃型を使ったプレス打抜き、切削加工、ロボット等によってバリ取りが行われる。   Further, in the case of die casting or injection molding, a gap in the mold may be used as an air vent in order to release air in the mold. Especially for hot forging, some sand mold casting and die casting, there is also a purpose for so-called overflow that consciously generates burrs to promote the flow of molten material and promotes material filling in the mold is there. In such a case, since the thickness and dimensions of the burr are enormous, deburring is performed by press punching using a cutting blade die in a later process, cutting, a robot, or the like.

ダイカスト鋳造によって鋳造品を製造する場合、前記した湯口、湯道、堰の流路を経ることで溶融材料を供給するから、製品凝固後ではこれらの流路で凝固化している湯口方案部分と製品部分とが一体となっているのは避けられず、製品部分と湯口方案部分とを分離する必要がある。このため、例えば特許文献1に開示されているように、鋳造製品部分に堰を介して連続している湯口方案部分に、打撃面が錐体状となっているハンマーの傾斜部を衝突させるように打撃して与える衝撃力によって湯口方案部分を堰にて破断し、鋳造製品部分を分離する鋳物の堰折り装置がある。   When a cast product is manufactured by die casting, the molten material is supplied through the flow passages of the gate, the runner, and the dam described above. It is inevitable that the parts are integrated, and it is necessary to separate the product part and the gate design part. For this reason, for example, as disclosed in Patent Document 1, an inclined portion of a hammer whose striking surface has a cone shape is made to collide with a pouring gate portion that is continuous with a cast product portion via a weir. There is a casting weir folding device that breaks the gate portion with a weir by the impact force applied to it and separates the cast product portion.

また、具体的なプレス打抜き、切削加工によるバリ取り技術としては、例えば、特許文献2に開示されているように、イジェクト手段により鋳造物が押し出される際に、バリがトリミング刃に当接して該バリを鋳造金型において分離除去するものとした鋳造方法および鋳造装置があり、あるいは特許文献3に開示されているように、ゲート切断用中子を反対方向に移動させてゲート部で固化した溶湯をキャビティ内の固化溶湯から分離切断するダイカスト機がある。
実開平5−5263号公報 特開2005−944号公報 特開平7−256424号公報
Further, as a deburring technique by specific press punching and cutting, for example, as disclosed in Patent Document 2, when the cast is pushed out by the ejecting means, the burr comes into contact with the trimming blade and There is a casting method and casting apparatus in which burrs are separated and removed from a casting mold, or as disclosed in Patent Document 3, the gate cutting core is moved in the opposite direction and solidified at the gate portion. There is a die casting machine that separates and cuts from solidified molten metal in the cavity.
Japanese Utility Model Publication No. 5-5263 JP-A-2005-944 JP 7-256424 A

しかしながら、従来のように切断刃型を使ったプレス打抜きを使用する場合には、製品の成形金型に対応した切断刃型をわざわざ作製しなければならず非常に面倒であって且つコスト高となると共に、他の成形金型によって製造された製品のバリ取りには対応できないのであった。   However, when using press punching using a cutting blade mold as in the prior art, it is necessary to make a cutting blade mold corresponding to the molding die of the product, which is very troublesome and expensive. At the same time, it cannot cope with deburring of products manufactured by other molding dies.

また、ハンマー等による堰折りの場合には、ハンマーその他の中間滑節部分にハンマーによる衝撃を緩和するための緩衝部材を介在させなければならず、かえってハンマー自体に重量的な負荷が掛かり、しかも構造も複雑なものとなる。   In addition, in the case of dam folding with a hammer or the like, a cushioning member for reducing the impact of the hammer must be interposed in the hammer or other intermediate joint part, which in turn places a heavy load on the hammer itself. The structure is also complicated.

さらに、製品部分と湯口方案部分との分離が困難であったり、製品部分周囲の自動バリ取りができなかったりする場合は手作業による堰折りやオーバーフローカット等のバリ取りが行われるため、製品の量産化に伴ってかなりの作業人員を要するものとなる。すると、人件費が嵩むと同時に、堰折り・バリ取り作業での怪我も絶えないものとなるという諸々の問題点を有していた。   Furthermore, if it is difficult to separate the product part from the gate design part or if automatic deburring around the product part is not possible, deburring such as weir folding or overflow cutting is performed manually. A considerable number of workers will be required for mass production. Then, at the same time as labor costs increased, there were various problems that injuries during dam folding and deburring work would be constant.

そこで、本発明は叙上のような従来存した諸事情に鑑み創出されたもので、従来のように成形金型に対応した面倒な堰分離用の切断刃型を使わずに、また作業者の手作業やハンマー打撃等によらずに、低コストで安全且つ効率的に堰部位での分離作業が行えるものとし、さらに打撃部位を緩衝させる複雑、面倒な緩衝部材を設けるという煩雑な構成とする必要が無いものとした金型鋳造製品の振動式分離装置を提供することを目的とする。 Therefore, the present invention was created in view of the existing circumstances as described above, and without using the troublesome cutting blade mold for dam separation corresponding to the molding die as in the prior art, It is possible to perform the separation work at the dam site safely and efficiently at low cost without using manual work or hammering, etc., and a complicated configuration that provides a complicated and troublesome cushioning member that cushions the hammering site and It is an object of the present invention to provide a vibration separating apparatus for a die casting product which does not need to be performed.

上述した課題を解決するため、本発明に係る金型鋳造製品の振動式分離方法にあっては、金型鋳造によって成形された、堰Sによって連続している鋳造製品部分P1、湯口方案部分P2を含む製品Pの湯口方案部分P2を挟持配置させ、製品Pの湯口方案部分P2を製品Pの固有振動数に対応する振動数で強制振動させることによって堰S部位で切断し、鋳造製品部分P1と湯口方案部分P2とを分離することを特徴とする。
一方、本発明に係る金型鋳造製品の振動式分離装置にあっては、振動中心軸4を中心として振動可能とした振動作用子22と、該振動作用子22の背面側にアーム状に延設された梃子端23に連繋されていて、振動作用子22全体を強制振動可能とした加振装置31とを有してなる振動機構部21を備えると共に、振動作用子22の一端側には、金型鋳造によって成形された製品Pを保持する製品保持機構部13を設け、製品の固有振動数に対応した振動機構部21による振動作用子22の振動によって製品Pの鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部分を切断し、鋳造製品部分P1と湯口方案部分P2とを分離するようにしたことを特徴とする。
振動機構部21の加振装置31は、偏心回転する偏心回転板33を振動作用子22の梃子端23に嵌め入れて成るものとすることができる。また、加振装置31は、振動作用子22の梃子端23側で回転可能に枢着されたベアリング29と、該ベアリング29に当接配置されるようモーターMの出力軸32に偏心させて嵌着された偏心回転板33とを備えてなるものとすることができる。更に、この加振装置31には、梃子端23を規制し、復帰付勢させるスプリング24を付設してあるものとすることができる。
製品保持機構部13は、振動作用子22の一端側に支持ロッド12を昇降自在とするシリンダー機構部11を備え、該支持ロッド12に対向して製品Pを密着保持するチャック部13を備えて成るものとすることができる。
また、より具体的には、ベース2上に起立配置した正面側壁3c、左右側壁3a,3bから平面略コ字枠形状に形成した装置本体1と、左右側壁3a,3bの上端部相互間に横架した振動中心軸4に該振動中心軸4を中心として振動可能に枢着した側面略コ枠形状を呈し、コ字部背面側から後方に向けてアーム状の梃子端23が延設されている振動作用子22と、梃子端23をベース2側に弾発的な牽引傾向に付勢させて牽引しているスプリング24と、振動作用子22における振動中心軸4、梃子端23のスプリング24位置との間で縦方向に貫通形成した孔22aの左右内側壁面に横架した振動軸29aと、装置本体1における前記左右側壁3a,3bのいずれか一方に固定配置したモーターMの出力軸32に偏心させて嵌着されている偏心回転板33と、この偏心回転板33に当接させて前記振動軸29aに回転自在に取り付けられていて、偏心回転板33の偏心回転によって回転しながら前記振動軸29aを上下に振動させるベアリング29と、梃子端23端部上側に開けられた挿入穴28内に挿入された調整スプリング24aに対する弾発力の強弱を調整するよう、装置本体1の左右側壁3a,3b相互間に架設された支持枠部25に穿設された孔25aに螺合することで進退自在に挿入されていて、調整スプリング24aに受部27を介して圧接している支持ネジ26と、金型鋳造によって成形された製品Pを保持するよう振動作用子22の一端側に設けた製品保持機構部13とから成り、製品Pの固有振動数に対応した振動作用子22の振動によって製品Pの鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部分を切断し、鋳造製品部分P1と湯口方案部分P2とを分離するようにしたことを特徴とする。
In order to solve the above-described problems, in the vibration-type separation method for a cast metal product according to the present invention, a cast product portion P1 and a gate plan portion P2 which are formed by die casting and are continuous by the weir S. The pouring gate portion P2 of the product P including the product P is sandwiched and disposed, and the pouring gate portion P2 of the product P is forcibly vibrated at a frequency corresponding to the natural frequency of the product P to be cut at the weir S site, and the casting product portion P1 And the gate design part P2 are separated.
On the other hand, in the vibration separating apparatus for a die casting product according to the present invention, the vibrating element 22 that can vibrate around the vibration central axis 4 and an arm shape extending on the back side of the vibrating element 22 are provided. A vibration mechanism portion 21 is provided which is connected to a provided lever end 23 and includes a vibration device 31 capable of forcibly oscillating the entire vibration actuator 22. The product holding mechanism portion 13 for holding the product P formed by die casting is provided, and the cast product portion P1 and the gate of the product P are caused by the vibration of the vibration actuator 22 by the vibration mechanism portion 21 corresponding to the natural frequency of the product. The dam S portion that continues the design portion P2 is cut to separate the cast product portion P1 and the gate design portion P2.
The vibration device 31 of the vibration mechanism unit 21 may be formed by fitting an eccentric rotation plate 33 that rotates eccentrically into the lever end 23 of the vibration operator 22. The vibration device 31 is fitted eccentrically to the output shaft 32 of the motor M so as to be disposed in contact with the bearing 29 and the bearing 29 rotatably mounted on the lever end 23 side of the vibration operator 22. It can be provided with a worn eccentric rotating plate 33. Further, the vibration device 31 may be provided with a spring 24 for restricting the lever end 23 and urging it back.
The product holding mechanism unit 13 includes a cylinder mechanism unit 11 that allows the support rod 12 to move up and down on one end side of the vibration operator 22, and includes a chuck unit 13 that holds the product P in close contact with the support rod 12. It can consist of
More specifically, between the front side wall 3c and the left and right side walls 3a and 3b which are erected on the base 2, the apparatus main body 1 formed in a substantially U-shaped plane shape and the upper end portions of the left and right side walls 3a and 3b. The horizontal vibration center shaft 4 has a substantially U-frame shape that is pivotally mounted around the vibration center shaft 4 so as to vibrate, and an arm-shaped lever end 23 extends from the back of the U-shaped portion toward the rear. And the spring 24 that pulls the lever end 23 by urging the lever end 23 toward the base 2 in a resilient pulling tendency, and the vibration center shaft 4 and the spring of the lever end 23 in the vibration operator 22. An output shaft of a motor M fixedly disposed on one of the left and right side walls 3a and 3b of the apparatus main body 1 and a vibration shaft 29a horizontally mounted on the left and right inner wall surfaces of a hole 22a that is vertically formed between 24 positions. It is fitted eccentrically to 32 A center rotating plate 33 and a bearing which is rotatably attached to the vibration shaft 29a in contact with the eccentric rotating plate 33 and vibrates up and down while rotating by the eccentric rotation of the eccentric rotating plate 33. 29 and between the left and right side walls 3a and 3b of the apparatus main body 1 so as to adjust the strength of the elastic force with respect to the adjustment spring 24a inserted in the insertion hole 28 opened on the upper end of the lever end 23. The support screw 26 is inserted into the hole 25a formed in the support frame portion 25 so as to be able to advance and retreat, and is press-contacted to the adjustment spring 24a via the receiving portion 27, and is molded by die casting. The product holding mechanism 13 provided on one end side of the vibration actuator 22 so as to hold the product P, and the product P is produced by the vibration of the vibration operator 22 corresponding to the natural frequency of the product P. Parts P1 and cutting the dam S portion is sequencing the sprue scheme portion P2, is characterized in that so as to separate the cast product portion P1 and sprue scheme portion P2.

以上のように構成された本発明に係る金型鋳造製品の振動式分離方法にあって、製品Pの、例えば湯口方案部分P2を挟持配置させておいてから、当該湯口方案部分P2を例えば製品Pの固有振動数に対応する振動数で強制振動させることによって、製品Pの振動を共鳴増幅させ、その結果、製品Pにおける鋳造製品部分P1と湯口方案部分P2との堰S部分に撓み応力が集中されるものとなって、当該堰S部位を切断させる。
一方、本発明に係る金型鋳造製品の振動式分離装置にあって、振動機構部21は、加振装置31による振動駆動によって振動作用子22を強制的に振動させ、この伝達された振動が製品Pの固有振動数と共鳴することで振動振幅を増幅させるものとなり、これにより鋳造製品部分P1と湯口方案部分P2との堰S部位に撓み応力を集中させ、他部位に比し脆弱な堰S部位を破断し、鋳造製品部分P1と湯口方案部分P2とを分離させる。
このとき、振動作用子22の梃子端23側のベアリング29にスプリング24の復帰付勢力に抗して当接配置された偏心回転板33は、所定の回転数となるモーターMの出力軸32に偏心させて嵌着されているため、梃子端23を介して振動作用子22全体を振幅させ、その振幅は所定の振動数となって、振動を効率良く発生させる。
In the vibratory separation process of the die cast product according to the present invention configured as described above, the product P, for example a sprue scheme portion P2 from allowed sandwiched arrangement, if example embodiment the sprue scheme portion P2 By forcibly vibrating the product P at a frequency corresponding to the natural frequency of the product P, the vibration of the product P is resonantly amplified. As a result, the bending stress is applied to the weir S portion of the product P between the cast product portion P1 and the gate design portion P2. Is concentrated, and the weir S portion is cut.
Meanwhile, in the vibratory separator of the die cast product according to the present invention, the vibrating mechanism 21 forcibly vibration vibration effect element 22 by the vibration driven by vibrating device 31, which is the transmitted vibration Resonates with the natural frequency of the product P to amplify the vibration amplitude, thereby concentrating the bending stress on the weir S portion of the cast product portion P1 and the gate design portion P2, and being weaker than other portions. The weir S site is broken to separate the cast product portion P1 and the gate design portion P2.
At this time, the eccentric rotating plate 33 disposed in contact with the bearing 29 on the lever end 23 side of the vibrating element 22 against the return biasing force of the spring 24 is applied to the output shaft 32 of the motor M having a predetermined rotational speed. since by decentering is fitted, to the amplitude of the whole oscillation effect element 22 via a lever end 23, the amplitude thereof becomes predetermined vibration number efficiently to generate vibrations.

本発明によれば、従来のように成形金型に対応した面倒な切断刃型を使わずに、また作業者の手作業やハンマー打撃によらずに、低コストで安全且つ効率的に堰S部位で鋳造製品Pの鋳造製品部分P1と湯口方案部分P2とを分離できる。また、振動を与えるときの打撃部位を緩衝させる複雑、面倒な緩衝部材を設ける必要もなく、その保守も簡単に行え、しかも製品Pにおける鋳造製品部分P1、湯口方案部分P2等の形状等による制約もなく、汎用性あるものとして実施できる利点がある。   According to the present invention, the weir S can be safely and efficiently produced at low cost without using a troublesome cutting blade mold corresponding to a molding die as in the prior art, and without manual operation or hammering by an operator. The cast product portion P1 and the gate design portion P2 of the cast product P can be separated at the portion. Further, there is no need to provide a complicated and troublesome cushioning member that cushions the hitting portion when vibration is applied, the maintenance can be easily performed, and restrictions due to the shape of the cast product portion P1, the gate design portion P2, etc. of the product P There is also an advantage that it can be implemented as versatile.

すなわち、これは本発明に係る金型鋳造製品の振動式分離方法が、金型鋳造によって成形された製品Pを挟持配置させ、製品Pの固有振動数に対応する振動数で強制振動させることによって、鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部位で切断し、分離するからであり、これにより、製作が面倒で且つ高価な切断刃型を使わずに、安全且つ効率的に製品Pにおける分離作業が行える。   That is, this is because the vibration separating method of the mold casting product according to the present invention sandwiches and arranges the product P formed by the mold casting, and forcibly vibrates it at a frequency corresponding to the natural frequency of the product P. This is because the cast product part P1 and the gate design part P2 are cut and separated at the weir S site where the casting part P2 is continuous, thereby making the production safe and efficient without using a troublesome and expensive cutting blade mold. In particular, the separation work on the product P can be performed.

一方、本発明に係る金型鋳造製品の振動式分離装置にあっては、振動中心軸4を中心として振動可能とした振動作用子22全体を強制振動可能とした加振装置31とを有してなる振動機構部21を備え、振動作用子22に設けた製品保持機構部13で挟持した製品Pの固有振動数に対応した振動機構部21による振動作用子22の振動によって製品Pの鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部分を切断し、鋳造製品部分P1と湯口方案部分P2とを分離するようにしたから、製品Pの固有振動数に対応した振動機構部21による振動作用子22の振動によって鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部位で切断するものとしたので、製品Pにおける鋳造製品部分P1、湯口方案部分P2それぞれを低コストで安全且つ効率的に分離できる。   On the other hand, the die separation product vibration type separation device according to the present invention includes a vibration device 31 that can vibrate the entire vibration element 22 that can vibrate about the vibration center axis 4. The casting product of the product P by the vibration of the vibration actuator 22 by the vibration mechanism 21 corresponding to the natural frequency of the product P sandwiched by the product holding mechanism 13 provided on the vibration operator 22. Since the weir S portion where the portion P1 and the gate design portion P2 are made continuous is cut to separate the casting product portion P1 and the gate design portion P2, the vibration mechanism portion corresponding to the natural frequency of the product P 21, the casting product portion P1 and the gate design portion P2 are cut by the weir S site where the casting product portion P1 and the gate design portion P2 are continuous. It can safely and efficiently separated at a low cost.

そして、加振装置31は、偏心回転する偏心回転板33を振動作用子22の梃子端23に嵌め入れて成るから、偏心回転板33の偏心回転が梃子端23を介して、更にはベアリング29を介して偏心回転板33を振動させるものとなり、偏心回転速度に対応して振動作用子22を振動させることで、この振動作用子22の製品保持機構部13によって保持されている製品Pをも振動させる。そのため、この振動状態が製品Pにおける鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部位を細かく振動させ、重量バランスの均衡を喪失させることとも相俟ち、堰S部位で破断させ、鋳造製品部分P1と湯口方案部分P2とを円滑に分離させる。 The vibrating device 31 is formed by inserting an eccentric rotating plate 33 that rotates eccentrically into the lever end 23 of the vibrating element 22, so that the eccentric rotation of the eccentric rotating plate 33 is further performed via the lever end 23 and the bearing 29. an eccentric rotating plate 33 becomes that vibrate through, by oscillating the operation Yoko 22 vibration in response to the eccentric rotational speed, the product P held by the product holding mechanism 13 of the vibration effect element 22 Also vibrate. For this reason, this vibration state is also caused by finely vibrating the weir S site where the cast product portion P1 and the gate design portion P2 of the product P are continuous, thereby losing the balance of the weight balance, and breaking at the weir S site. The casting product portion P1 and the gate design portion P2 are smoothly separated.

また、加振装置31には、梃子端23を規制し、復帰付勢させるスプリング24を付設してあることで、偏心回転板33による振動作用子22の振動をスプリング24の弾発力に抗して行わせ、しかもその復原によって振動作用を円滑化させ、振動作用子22自体を細かい振動状態で振動できるものとなる。そのため、振動作用子22全体は、これ自体に振幅の小さい安定した状態の振動を効率良く発生でき、堰S部位に対しての分断力を一層増大させる。それと共に、スプリング24の張力調整、偏心回転板33の偏心回転による振動作用子22自体の振動数の調整等によって、破断すべき製品Pの固有の振動数とのマッチングを図り得、一層円滑な分離作業を可能にする。 Further, the vibration device 31 is provided with a spring 24 that restricts the lever end 23 and urges it to return, so that the vibration of the vibration actuator 22 caused by the eccentric rotating plate 33 is resisted against the elastic force of the spring 24. and it was carried out, yet its restoration by to facilitate vibration effect, and it can vibrate the vibrating action element 22 itself with a fine vibration state. Therefore, the entire vibration operator 22 can efficiently generate a vibration in a stable state with a small amplitude in itself, further increasing the breaking force with respect to the weir S site. At the same time, by adjusting the tension of the spring 24 and adjusting the frequency of the vibrating element 22 itself by eccentric rotation of the eccentric rotating plate 33, matching with the specific frequency of the product P to be broken can be achieved, and smoother. Allows separation work.

また、振動機構部21による振動数が製品Pの固有振動数に対応することで、振動機構部21によって振動作用子22を振動させた際には、この伝達された振動が製品Pの固有振動数と共鳴して振動振幅を増幅させ、鋳造製品部分P1と湯口方案部分P2との間にある堰S部位に対する撓み応力の集中が効率良く行われ、低コストで安全且つ効率的に分離作業が行える。 Further, since the vibration frequency by the vibration mechanism unit 21 corresponds to the natural frequency of the product P, when the vibration actuator 22 is vibrated by the vibration mechanism unit 21, the transmitted vibration is the natural vibration of the product P. was amplified vibration amplitude in resonance with the number, the casting concentration of deflection stresses on the dam S site between the product portion P1 and sprue scheme portion P2 is performed efficiently, the work safely and efficiently separated at low cost Can be done.

尚、上記の課題を解決するための手段、発明の効果の項夫々において付記した符号は、図面中に記載した構成各部を示す部分との参照を容易にするために付したもので、図面中の符号によって示された構造・形状に本発明が限定されるものではない。   Note that the reference numerals added in the means for solving the above-described problems and the effects of the invention are given for easy reference to the parts showing the components shown in the drawings. The present invention is not limited to the structure / shape indicated by the reference numeral.

以下、図面を参照して本発明を実施するための最良の一形態を説明する。図において示される符号1は、本発明に係る金型鋳造製品の振動式分離装置を構成する装置本体である。該装置本体1は、図1および図2に示すように、台座Qの上に設置された下側のベース2の一端に起立配置した正面側壁3cの左右両側に左右側壁3a,3bを起立配置させて平面から見て略コ字枠形状に形成し、該左右側壁3a,3bの上端部相互間に振動中心軸4を横架させ、該振動中心軸4には側面から見て略コ枠形状を呈する振動作用子22の上部側角部が枢着されることで、該振動作用子22が振動中心軸4を中心にして例えば上下方向で揺動可能になっている。   The best mode for carrying out the present invention will be described below with reference to the drawings. Reference numeral 1 shown in the drawing is an apparatus main body constituting the vibration separating apparatus for a die casting product according to the present invention. As shown in FIGS. 1 and 2, the apparatus main body 1 has left and right side walls 3a and 3b erected on both the left and right sides of a front side wall 3c that is erected at one end of a lower base 2 installed on a base Q. And is formed in a substantially U-shaped frame shape when viewed from the plane, and the vibration center axis 4 is horizontally placed between the upper end portions of the left and right side walls 3a and 3b. The upper corner portion of the vibration actuator 22 having a shape is pivoted so that the vibration operator 22 can swing in the vertical direction, for example, about the vibration center axis 4.

また、振動作用子22は、振動中心軸4を介してコ字部背面側から後方に向けてアーム状の梃子端23が延設されており、当該梃子端23は、当該梃子端23自身と例えばベース2との間に弾発的な牽引傾向に付勢されているスプリング24によってベース2側に牽引されている。そして、該スプリング24によって、後述するように振動作用子22が揺動するときに原位置に復帰させ、振動作用子22を振動させるようになっている。 Further, the vibration acting element 22 has an arm-shaped lever end 23 extending rearward from the back side of the U-shaped portion via the vibration center axis 4, and the lever end 23 is connected to the lever end 23 itself. For example, it is pulled to the base 2 side by a spring 24 biased by a resilient pulling tendency with respect to the base 2. The spring 24 returns to the original position when the vibration operator 22 swings as will be described later , and the vibration operator 22 is vibrated .

尚、該梃子端23には、左右側壁3a,3bの上端部相互間に架設された支持枠部25に対し調整スプリング24aを介して連繋させたものとし、スプリング24による弾発力を調整して適宜な振動数を振動作用子22に設定できるようにしている。すなわち、支持枠部25には左右一対の孔25aが穿設され、この孔25aそれぞれには支持ネジ26が進退自在に挿入され、該支持ネジ26の挿入側下端部に装着固定された円板状の受部27が梃子端23端部上側に開けられた左右一対の有底円形状の挿入穴28内に、調整スプリング24aに対する弾発力の強弱を調整できるように調整スプリング24aを圧接することで、挿入されている。   The lever end 23 is connected to a support frame portion 25 laid between the upper end portions of the left and right side walls 3a and 3b via an adjustment spring 24a, and the elasticity of the spring 24 is adjusted. Thus, an appropriate frequency can be set in the vibration operator 22. That is, a pair of left and right holes 25a are formed in the support frame portion 25, and a support screw 26 is inserted into each of the holes 25a so as to be able to advance and retreat. The adjustment spring 24a is pressed against the adjustment spring 24a so that the strength of the elastic force can be adjusted in a pair of left and right bottomed circular insertion holes 28 opened on the upper end of the lever end 23. It has been inserted.

また、振動作用子22には、振動中心軸4と梃子端23のスプリング24位置との略中間に縦方向に貫通させた略矩形状の孔22aが設けられており、この孔22a内における左右に対向する内側壁面に架けて横架されることで、例えば一対のベアリング29を介して回転自在にした振動軸29aが取り付けられている。   The vibration element 22 is provided with a substantially rectangular hole 22a penetrating in the vertical direction substantially in the middle between the vibration center axis 4 and the position of the spring 24 of the lever end 23, and left and right in the hole 22a. A vibration shaft 29 a that is rotatable, for example, via a pair of bearings 29 is attached to the inner wall surface that faces the inner surface of the shaft.

一方、左右側壁3a,3bのいずれか一方側にはモーターMを固定配置してある。そして、該モーターMの出力軸32は側壁3a,3b相互間内に軸受を介して導入され、該出力軸32に嵌着された偏心回転板33を前記一対のベアリング29に当接させることにより偏心回転板33の偏心回転でベアリング29を介して振動軸29aを上下に振動させるようにすることで、加振装置31を構成している。   On the other hand, a motor M is fixedly disposed on either one of the left and right side walls 3a and 3b. The output shaft 32 of the motor M is introduced between the side walls 3a and 3b via a bearing, and an eccentric rotating plate 33 fitted to the output shaft 32 is brought into contact with the pair of bearings 29. The vibration device 31 is configured by causing the vibration shaft 29 a to vibrate up and down via the bearing 29 by the eccentric rotation of the eccentric rotation plate 33.

このとき偏心回転板33は、図1に示すように、出力軸32に対して約1mm程度で偏心させて嵌着されており、偏心回転板33の一方の半径aとこれに対称な180°位置における半径bとの比が例えばa:b=39mm:41mmとなるようにして、振幅幅が例えば2mm程度となるように設定してある。そして、モーターMの所定数の回転、更には減・増速機構を介した増減によって得られる振動数は、製品Pの固有振動数に対応するように、不図示の例えばインバーターを介してモーターMの回転数を可変自在に調整できるようにしている。   At this time, as shown in FIG. 1, the eccentric rotating plate 33 is fitted with an eccentricity of about 1 mm with respect to the output shaft 32, and is 180 degrees symmetrical to one radius a of the eccentric rotating plate 33. The ratio with the radius b at the position is set to, for example, a: b = 39 mm: 41 mm, and the amplitude width is set to about 2 mm, for example. The frequency obtained by a predetermined number of rotations of the motor M, and further by the increase / decrease through the speed reduction / acceleration mechanism, corresponds to the natural frequency of the product P so that the motor M is connected via an inverter (not shown), for example. The number of rotations can be adjusted variably.

こうして、振動作用子22の梃子端23を規制するスプリング24による復帰付勢力と共に振動作用子22全体を強制的に振動可能とした振動機構部21が形成される。   In this way, the vibration mechanism portion 21 is formed that forcibly vibrates the entire vibration actuator 22 together with the return biasing force by the spring 24 that restricts the lever end 23 of the vibration actuator 22.

すなわち、振動機構部21は、モーターMの回転による振動数を、製品Pの固有振動数に対応するような所定の範囲に設定することで振動作用子22に振動を発生させる。そして、この振動が、後述する製品保持機構部13によって保持されている製品Pに伝達した際には、この振動作用子22の振動が製品Pの固有振動数に共鳴して製品P自体の振動振幅が増幅されることから、鋳造製品部分P1、湯口方案部分P2とを連続させている堰S部位に対する応力集中が効率良く行われる。   That is, the vibration mechanism unit 21 causes the vibration operator 22 to generate vibrations by setting the frequency due to the rotation of the motor M to a predetermined range corresponding to the natural frequency of the product P. When this vibration is transmitted to the product P held by the product holding mechanism 13 described later, the vibration of the vibration operator 22 resonates with the natural frequency of the product P and the vibration of the product P itself. Since the amplitude is amplified, stress concentration is efficiently performed on the weir S site where the cast product portion P1 and the gate design portion P2 are continuous.

また、振動作用子22の前部側のコ字部位には、鋳造製品部分P1、湯口方案部分P2が一体となっている鋳造後の製品Pを保持する製品保持機構部13が設けられている。該製品保持機構部13は、コ字部の例えば下端側には支持ロッド11aを昇降自在とする例えば油圧式もしくは圧縮エアー式等のシリンダー機構部11を設け、これに対応して振動作用子22のコ字部の上端側には、上昇した支持ロッド11aと共に製品Pを挟持するようにした密着保持するためのチャック部12を設けて成る。   Further, a product holding mechanism 13 for holding the cast product P, in which the cast product portion P1 and the gate design portion P2 are integrated, is provided at the U-shaped portion on the front side of the vibration element 22. . The product holding mechanism portion 13 is provided with a cylinder mechanism portion 11 such as a hydraulic type or a compressed air type that allows the support rod 11a to move up and down, for example, on the lower end side of the U-shaped portion, and the vibration actuating element 22 corresponding to this. On the upper end side of the U-shaped portion, there is provided a chuck portion 12 for tightly holding the product P together with the raised support rod 11a.

このエアーシリンダー機構部11は、図3に示すように、シリンダー内にピストンが挿入され、該ピストンをシリンダー内の油圧もしくは空気圧の制御によって昇降自在としてある。そして、ピストンにはチャック部12に対向して支持ロッド11aが取り付けられており、上昇突出した支持ロッド11aの先端がシリンダー内の油圧もしくは空気圧でもって製品Pの例えば湯口方案部分P2部分を、チャック部12と共に下側からしっかりと押さえ込むものとしてある。   As shown in FIG. 3, the air cylinder mechanism 11 is configured such that a piston is inserted into a cylinder, and that the piston can be moved up and down by controlling hydraulic pressure or air pressure in the cylinder. A support rod 11a is attached to the piston so as to face the chuck portion 12, and the tip of the support rod 11a that protrudes upward is chucked by, for example, a gate design portion P2 portion of the product P by hydraulic or pneumatic pressure in the cylinder. It is supposed to be pressed down together with the part 12 from below.

尚、この加振装置31は、本発明の一例にしか過ぎず、他の方式を採用しても良いことは勿論である。例えば、加振装置31自体を往復動するエアシリンダによって構成することも可能である(図示せず)。また、振動機構部21の後方へ向けて斜め下方向に傾斜した受台としてのシューターを設け、振動作用子22の振動によって堰S部位が切断されて落下した鋳造製品部分P1をこのシューターで受けて所定方向に排出できるようにしても良い(図示せず)。   Of course, the vibration device 31 is only an example of the present invention, and other methods may be adopted. For example, the vibration device 31 itself can be configured by an air cylinder that reciprocates (not shown). Also, a shooter is provided as a pedestal inclined obliquely downward toward the rear of the vibration mechanism portion 21, and the cast product portion P <b> 1 that has been dropped due to the weir S portion being cut by the vibration of the vibration operator 22 is received by this shooter. It may be possible to discharge in a predetermined direction (not shown).

これにより、不図示のダイカストマシンを使っての金型鋳造によって製造された製品Pにおける鋳造製品部分P1と湯口方案部分P2とを分離する場合には、湯口方案部分P2の一端側をロボットアーム先端のハンドチャックHによって把持しながら支持ロッド12とチャック部13との間に搬送させ、当該湯口方案部分P2を、上昇した下側の支持ロッド12と上側のチャック部13とによって挟持させておく。次いで、加振装置31のモーターMを駆動させることで、振動作用子22を振動させると、製品Pにおける脆弱な堰S部位に応力が集中して、この堰Sにて切断され、鋳造製品部分P1を湯口方案部分P2から分離するものである。 Thus, when separating the cast product portion P1 and the gate design portion P2 in the product P manufactured by die casting using a die casting machine (not shown), one end side of the gate design portion P2 is connected to the tip of the robot arm. While being held by the hand chuck H, it is transported between the support rod 12 and the chuck portion 13 and the gate design portion P2 is held between the raised lower support rod 12 and the upper chuck portion 13. Then, by driving the motor M of the vibrator 31, when is vibrated vibration effect element 22, stress concentrates to the fragile dam S sites in the product P is being cut at the dam S, cast product The part P1 is separated from the gate design part P2.

次に、以上のように構成された最良の形態についての使用、動作の一例について説明する。例えばダイカストマシン等を使っての金型鋳造によって製造された製品Pにおいて、鋳造製品部分P1と湯口方案部分P2とを堰S部位で分離して鋳造製品部分P1を取り出すとき、先ず台座Qの上に設置された装置本体1の振動作用子22における製品保持機構部13の支持ロッド11aを下降させておく。   Next, an example of use and operation of the best mode configured as described above will be described. For example, in a product P manufactured by die casting using a die casting machine or the like, when the cast product part P1 and the gate design part P2 are separated at the weir S site and the cast product part P1 is taken out, first, the top of the base Q The support rod 11a of the product holding mechanism 13 in the vibration element 22 of the apparatus main body 1 installed in the apparatus is lowered.

一方、金型から取り出された製品Pを搬送ロボットのアーム先端のハンドチャックHによって把持し、図2(a)に示すように、製品保持機構部13内に側方から搬入する。そして、図2(b)に示すように、支持ロッド11aをシリンダー機構部11によって上昇させることで、当該支持ロッド11aと上側のチャック部12とによって例えば製品Pの湯口方案部分P2を挟持した後、ハンドチャックHを約90度旋回させてから側方に退避移動させる。   On the other hand, the product P taken out from the mold is held by the hand chuck H at the end of the arm of the transfer robot, and is carried into the product holding mechanism 13 from the side as shown in FIG. Then, as shown in FIG. 2 (b), after the support rod 11a is lifted by the cylinder mechanism portion 11, for example, the pouring gate portion P2 of the product P is sandwiched between the support rod 11a and the upper chuck portion 12. Then, the hand chuck H is turned about 90 degrees and then moved sideways.

次いで、図3に示すように、湯口方案部分P2を製品保持機構部13によって挟持させたままの状態でモーターMを起動して加振装置31を駆動することで、振動機構部21における振動作用子22を強制的に振動させる。そうすると、振動作用子22において、スプリング24の復帰付勢力に抗して当接配置された偏心回転板33が、所定の回転数で回転されるモーターMの出力軸32に偏心されて嵌着されているため、梃子端23を介して振動作用子22全体が振幅の小さな所定振動数となって振動される。 Next, as shown in FIG. 3, the motor M is started and the vibration device 31 is driven in a state in which the gate design portion P <b> 2 is held by the product holding mechanism portion 13, whereby the vibration action in the vibration mechanism portion 21 is performed. The child 22 is forced to vibrate. As a result, the eccentric rotating plate 33 disposed in contact with the return biasing force of the spring 24 in the vibrating element 22 is eccentrically fitted to the output shaft 32 of the motor M rotated at a predetermined rotational speed. and for which the entire vibrating action transducer 22 is vibrated by a small place constant frequency amplitude via a lever end 23.

そして、この振動が製品保持機構部13によって保持されている製品Pに伝達した際には、この振動作用子22の振動が製品Pの、例えば固有振動数に共鳴して製品P自体の振動振幅を増幅させることから、鋳造製品部分P1と湯口方案部分P2とを連続させている堰S部位に対する撓み応力の集中が効率良く行われ、肉薄な堰S部位が切断される。その結果、堰S部位で切断されることで、製品Pにおける鋳造製品部分P1が湯口方案部分P2から分離され、鋳造製品部分P1のみを取り出すことができる。   When this vibration is transmitted to the product P held by the product holding mechanism unit 13, the vibration of the vibration operator 22 resonates with, for example, the natural frequency of the product P and the vibration amplitude of the product P itself. Therefore, the concentration of the bending stress on the weir S site where the cast product portion P1 and the gate design portion P2 are continuous is efficiently performed, and the thin weir S site is cut. As a result, by cutting at the weir S site, the cast product portion P1 in the product P is separated from the gate design portion P2, and only the cast product portion P1 can be taken out.

また、図4には別の実施の形態が示されており、この実施の形態では、スプリング24の弾発力を利用した振動態様とせずに、モーターMによる出力軸32の回転が直接の振動作用となるように構成したものである。すなわち、前部に製品保持機構部13を有する側面から見て二股状の振動作用子22を振動中心軸4を中心に前後部が上下方向に揺動するように、左右側壁3a,3b相互間に横架すると共に、振動作用子22の後部、例えばそのほぼ中央位置で必要があればベアリング29を介在させて、出力軸32に偏心させて固着した偏心回転板33を嵌め合わせて、加振装置31を構成したものである。   FIG. 4 shows another embodiment. In this embodiment, the rotation of the output shaft 32 by the motor M is directly vibrated without using the vibration mode using the elastic force of the spring 24. It is comprised so that it may become an effect | action. That is, the bifurcated vibration operator 22 as viewed from the side having the product holding mechanism 13 at the front portion is formed between the left and right side walls 3a and 3b so that the front and rear portions swing vertically about the vibration center axis 4. And an eccentric rotating plate 33 which is eccentrically fixed to the output shaft 32 is fitted with a bearing 29 if necessary at the rear portion of the vibration element 22, for example, at a substantially central position thereof, and is vibrated. The apparatus 31 is configured.

この実施の形態によると、モーターMの回転は、偏心回転板33を偏心回転させ、この偏心回転は振動作用子22の後部を振幅させ、回転数に伴い振動作用子22自体を振動させ、振動作用子22前部の製品保持機構部13にて保持されている製品Pに振動を与え、鋳造製品部分P1を湯口方案部分P2から分離切断する。 According to this embodiment, rotation of the motor M is an eccentric rotating plate 33 is eccentrically rotated, the eccentric rotation causes the amplitude rear vibration effect element 22, to vibrate the operation Yoko 22 itself vibration have with the rotation speed Then, vibration is applied to the product P held by the product holding mechanism 13 at the front part of the vibrating element 22, and the cast product part P1 is separated and cut from the gate design part P2.

本発明を実施するための最良の形態における振動式分離装置の概略構成を示すもので、(a)は側面図、(b)は(a)のX−X断面図である。BRIEF DESCRIPTION OF THE DRAWINGS The schematic structure of the vibration type separation apparatus in the best form for implementing this invention is shown, (a) is a side view, (b) is XX sectional drawing of (a). 同じく振動式分離装置の使用状態において、製品の搬送ロボットのハンドチャックの進入退避の一例を示すもので、(a)はハンドチャック進入時の一部切欠平面図、(b)はハンドチャック退避時の一部切欠平面図である。Similarly, in the operating state of the vibration type separation device, an example of entering and retracting the hand chuck of the product transfer robot is shown. (A) is a partially cutaway plan view when entering the hand chuck, and (b) is when retracting the hand chuck. FIG. 同じく振動式分離装置による製品の分離状態を示す側面図である。It is a side view which similarly shows the separation state of the product by a vibration type separation apparatus. 他の実施の形態における側面概略図である。It is the side surface schematic in other embodiment.

符号の説明Explanation of symbols

H…ハンドチャック M…モーター
P…製品 S…堰
P1…鋳造製品部分 P2…湯口方案部分
Q…台座
a,b…偏心回転板の半径
1…装置本体 2…ベース
3a,3b…左右側壁 3c…正面側壁
4…振動中心軸
11…シリンダー機構部 11a…支持ロッド
12…チャック部 13…製品保持機構部
21…振動機構部 22…振動作用子
22a…孔 23…梃子端
24…スプリング 24a…調整スプリング
25…支持枠部 25a…孔
26…支持ネジ 27…受部
28…挿入穴 29a…振動軸
29…ベアリング 31…加振装置
32…出力軸 33…偏心回転板
H ... hand chuck M ... motor P ... product S ... weir P1 ... cast product part P2 ... pouring gate plan part Q ... pedestal a, b ... radius 1 of eccentric rotating plate ... main body 2 ... bases 3a, 3b ... left and right side walls 3c ... Front side wall 4 ... Vibration center shaft 11 ... Cylinder mechanism 11a ... Support rod 12 ... Chuck 13 ... Product holding mechanism 21 ... Vibration mechanism 22 ... Vibration actuator 22a ... Hole 23 ... Ladder end 24 ... Spring 24a ... Adjustment spring DESCRIPTION OF SYMBOLS 25 ... Support frame part 25a ... Hole 26 ... Support screw 27 ... Receiving part 28 ... Insertion hole 29a ... Vibration shaft 29 ... Bearing 31 ... Excitation apparatus 32 ... Output shaft 33 ... Eccentric rotation plate

Claims (2)

ベース上に起立配置した正面側壁、左右側壁から平面略コ字枠形状に形成した装置本体と、左右側壁の上端部相互間に横架した振動中心軸に該振動中心軸を中心として振動可能に枢着した側面略コ枠形状を呈し、コ字部背面側から後方に向けてアーム状の梃子端が延設されている振動作用子と、梃子端をベース側に弾発的な牽引傾向に付勢させて牽引しているスプリングと、振動作用子における振動中心軸、梃子端のスプリング位置との間で縦方向に貫通形成した孔の左右内側壁面に横架した振動軸と、装置本体における前記左右側壁のいずれか一方に固定配置したモーターの出力軸に偏心させて嵌着されている偏心回転板と、この偏心回転板に当接させて前記振動軸に回転自在に取り付けられていて、偏心回転板の偏心回転によって回転しながら前記振動軸を上下に振動させるベアリングと、梃子端端部上側に開けられた挿入穴内に挿入された調整スプリングに対する弾発力の強弱を調整するよう、装置本体の左右側壁相互間に架設された支持枠部に穿設された孔に螺合することで進退自在に挿入されていて、調整スプリングに受部を介して圧接している支持ネジと、金型鋳造によって成形された製品を保持するよう振動作用子の一端側に設けた製品保持機構部とから成り、製品の固有振動数に対応した振動作用子の振動によって製品の鋳造製品部分と湯口方案部分とを連続させている堰部分を切断し、鋳造製品部分と湯口方案部分とを分離するようにしたことを特徴とする金型鋳造製品の振動式分離装置。 It is possible to vibrate around the vibration center axis on the front side wall standing up on the base, the device main body formed in a plane U-shaped frame shape from the left and right side walls, and the vibration center axis laid between the upper ends of the left and right side walls A pivoting side with a substantially U-frame shape, and a vibrating actuator with an arm-shaped lever end extending backward from the back side of the U-shaped part, and a tendency to elastically pull the lever end toward the base In the main body of the device, the vibration shaft horizontally laid on the left and right inner wall surfaces of the hole formed in the longitudinal direction between the biased and pulled spring, the vibration center axis of the vibration actuator, and the spring position of the lever end An eccentric rotating plate that is eccentrically fitted to an output shaft of a motor that is fixedly disposed on either one of the left and right side walls, and is rotatably attached to the vibrating shaft in contact with the eccentric rotating plate; Rotated by the eccentric rotation of the eccentric rotating plate It is installed between the left and right side walls of the device main body so as to adjust the strength of the elastic force against the bearing that vibrates the vibration shaft up and down and the adjustment spring inserted in the insertion hole opened on the upper end of the insulator end. A support screw that is inserted in a freely reciprocating manner by being screwed into a hole drilled in the support frame portion, and that holds the product molded by die casting and press-contacted to the adjustment spring via the receiving portion. A weir portion comprising a product holding mechanism portion provided on one end side of the vibration actuating element, wherein the cast product portion of the product and the gate design portion are made continuous by the vibration of the vibration actuating member corresponding to the natural frequency of the product A die-casting product vibration type separation device characterized in that the casting product part and the gate design part are separated from each other. 製品保持機構部は、振動作用子の一端側に支持ロッドを昇降自在とするシリンダー機構部を備え、該支持ロッドに対向して製品を密着保持するチャック部を備えて成る請求項1記載の金型鋳造製品の振動式分離装置。   2. The gold according to claim 1, wherein the product holding mechanism portion includes a cylinder mechanism portion that allows the support rod to move up and down on one end side of the vibration operator, and a chuck portion that holds the product in close contact with the support rod. Vibration type separation device for mold casting products.
JP2007152462A 2007-06-08 2007-06-08 Vibratory separator for die casting products Active JP4763653B2 (en)

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JP3181098U (en) * 2012-11-08 2013-01-24 ロボテック株式会社 Blast-type separation device for surplus in die casting products
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JPS4985967A (en) * 1972-12-22 1974-08-17
JPH0679440A (en) * 1992-08-31 1994-03-22 Yamaha Motor Co Ltd Device for removing runner part in formed product
JPH06198418A (en) * 1992-12-31 1994-07-19 Yamagata Pref Gov Method for separating out sprue parts from cast product
JPH1071513A (en) * 1996-05-24 1998-03-17 Akimichi Koide Ultrasonic micro hole drilling device
JP2000343206A (en) * 1997-12-13 2000-12-12 Yoshitaka Aoyama Method for shaking off molding sand from casting and apparatus therefor
JP2003062862A (en) * 2001-08-24 2003-03-05 Pentax Corp Breaking separation method for molded product

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JPS4985967A (en) * 1972-12-22 1974-08-17
JPH0679440A (en) * 1992-08-31 1994-03-22 Yamaha Motor Co Ltd Device for removing runner part in formed product
JPH06198418A (en) * 1992-12-31 1994-07-19 Yamagata Pref Gov Method for separating out sprue parts from cast product
JPH1071513A (en) * 1996-05-24 1998-03-17 Akimichi Koide Ultrasonic micro hole drilling device
JP2000343206A (en) * 1997-12-13 2000-12-12 Yoshitaka Aoyama Method for shaking off molding sand from casting and apparatus therefor
JP2003062862A (en) * 2001-08-24 2003-03-05 Pentax Corp Breaking separation method for molded product

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