JP2011011522A - Heating exhaust device - Google Patents

Heating exhaust device Download PDF

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JP2011011522A
JP2011011522A JP2009159868A JP2009159868A JP2011011522A JP 2011011522 A JP2011011522 A JP 2011011522A JP 2009159868 A JP2009159868 A JP 2009159868A JP 2009159868 A JP2009159868 A JP 2009159868A JP 2011011522 A JP2011011522 A JP 2011011522A
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cylindrical mold
electromagnetic induction
case
heating
induction coil
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JP5473437B2 (en
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Takahiro Yoshioka
高広 吉岡
Shuhei Ogami
周併 大神
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Gunze Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a heating exhaust device which can efficiently exhaust gas which is generated when a cylindrical mold contained in the case is induction-heated.SOLUTION: The heating exhaust device 1 includes: a case 7 which contains a cylindrical mold 5 in which both ends 3 are opened; electromagnetic induction coils which are prepared in the case 7 and face the cylindrical mold 5 from the radial direction; exhaust ducts 19 in which air inlets 15 are arranged above the ends 3 of the cylindrical mold 5 in the case 7, respectively; a suction means 21 linked to terminations 17 of the exhaust ducts 19; and a rise and fall means 43 to raises and falls the exhaust ducts 19 with respect to the cylindrical mold 5.

Description

本発明は、シームレス(無継目)製品の遠心成形に使用する円筒状金型を加熱し、シームレス製品の材料に含まれる溶剤の気化したガスを排気する加熱排気装置に関する。   The present invention relates to a heating and exhausting apparatus that heats a cylindrical mold used for centrifugal molding of seamless (seamless) products, and exhausts a gas vaporized by a solvent contained in the material of the seamless products.

シームレス製品の材料が溶剤を含む熱硬化性樹脂である場合、円筒状金型を所定の温度に加熱し、円筒状金型の熱で熱硬化性樹脂が硬化するに従い溶剤が気化しガスとなる。このようなガスが大気中に漏出しないように、円筒状金型をケースに収納し、ケースに接続した排気ダクトを通して、ケース内のガスはスクラバー等へ送られる。   When the material of the seamless product is a thermosetting resin containing a solvent, the cylindrical mold is heated to a predetermined temperature, and as the thermosetting resin is cured by the heat of the cylindrical mold, the solvent vaporizes and becomes a gas. . In order to prevent such gas from leaking into the atmosphere, the cylindrical mold is housed in the case, and the gas in the case is sent to a scrubber or the like through an exhaust duct connected to the case.

従来、電熱器、又は温風等による円筒状金型の加熱は行われているが、これらに比べ高い効率で円筒状金型の全体を加熱するには、円筒状金型の近傍に電磁誘導コイルを設置し、この電磁誘導コイルによって円筒状金型を誘導加熱することが望ましい。この場合、電磁誘導コイルの冷却が不可欠であるため、電磁誘導コイルのパッケージ内に空気がエアブロワー等で送風される。しかしながら、電磁誘導コイルは誘導加熱された円筒状金型に比較して温度が低く、電磁誘導コイルに触れた溶剤のガスが結露するという問題が起こる。   Conventionally, heating of a cylindrical mold by an electric heater or hot air has been performed, but in order to heat the entire cylindrical mold with higher efficiency than these, electromagnetic induction is provided near the cylindrical mold. It is desirable to install a coil and inductively heat the cylindrical mold with this electromagnetic induction coil. In this case, since cooling of the electromagnetic induction coil is indispensable, air is blown into the package of the electromagnetic induction coil by an air blower or the like. However, the temperature of the electromagnetic induction coil is lower than that of the induction-heated cylindrical mold, and there is a problem that the solvent gas that touches the electromagnetic induction coil is condensed.

下記の特許文献は、円筒状金型を製造炉に収納することを示している。これは、製造炉に過熱水蒸気を供給することにより、シームレス製品に残留する溶剤を気化させ、そのガスを過熱水蒸気と共に製造炉から排気するものである。   The following patent document shows that a cylindrical mold is stored in a manufacturing furnace. In this method, by supplying superheated steam to the production furnace, the solvent remaining in the seamless product is vaporized, and the gas is exhausted from the production furnace together with the superheated steam.

特開2006−281653号公報JP 2006-281653 A

本発明は、上記の実情に鑑みて為されたものであり、ケースに収納した円筒状金型を誘導加熱するとき、ケース内で発生するガスを良好に排気できる加熱排気装置を提供することを目的とする。   The present invention has been made in view of the above circumstances, and provides a heating / exhaust device capable of exhausting gas generated in a case satisfactorily when induction heating a cylindrical mold housed in the case. Objective.

本発明は上記目的を達成するため、長手方向の端部が開放した円筒状金型を内部に収納するケースと、前記ケースの内部に設けられ、前記円筒状金型にその径方向から対向する電磁誘導コイルと、前記ケースの内部の前記円筒状金型の端部の上方に吸気口をそれぞれ配置し、前記ケースの外側へ終端を延出した排気ダクトと、前記排気ダクトの終端に接続した吸引手段とを備えることを特徴とする。   In order to achieve the above-mentioned object, the present invention includes a case for accommodating therein a cylindrical mold having an open end in the longitudinal direction, and a case provided inside the case, which faces the cylindrical mold from the radial direction. An electromagnetic induction coil, an intake port disposed above the end of the cylindrical mold inside the case, respectively, an exhaust duct extending to the outside of the case, and connected to the end of the exhaust duct And suction means.

また、本発明は、前記排気ダクトを前記円筒状金型に対して昇降させる昇降手段を備えることを特徴とする。また、本発明は、前記電磁誘導コイルを前記排気ダクトに連結したことを特徴とする。   In addition, the present invention is characterized by comprising elevating means for elevating and lowering the exhaust duct with respect to the cylindrical mold. Further, the present invention is characterized in that the electromagnetic induction coil is connected to the exhaust duct.

また、本発明は、複数の前記電磁誘導コイルを備え、これらの電磁誘導コイルのうち一の電磁誘導コイルを、前記円筒状金型の下方に配置し、前記複数の電磁誘導コイルのうち他の電磁誘導コイルを、前記円筒状金型の端部の上方に配置し前記排気ダクトに連結したことを特徴とする。     In addition, the present invention includes a plurality of the electromagnetic induction coils, one of the electromagnetic induction coils is disposed below the cylindrical mold, and the other of the plurality of electromagnetic induction coils An electromagnetic induction coil is disposed above the end of the cylindrical mold and connected to the exhaust duct.

また、本発明は、前記円筒状金型の端部よりも前記電磁誘導コイルが長手方向へ25mm以下の範囲で突出することを特徴とする。   Moreover, the present invention is characterized in that the electromagnetic induction coil protrudes in the longitudinal direction in a range of 25 mm or less from the end of the cylindrical mold.

本発明に係る加熱排気装置によれば、ケースの内部に設けられた電磁誘導コイルで円筒状金型を誘導加熱し、円筒状金型の内側に供給されるシームレス製品の材料を加熱できる。これにより材料に含まれる溶剤が気化しガスが発生する。排気ダクトの吸気口は、ケースの内部の円筒状金型の端部の上方にそれぞれ配置され、排気ダクトの終端に接続した吸引手段は、ケースの内部を満たす空気を排気ダクトの吸気口から吸引するので、円筒状金型の内側で発生したガスは、直ちに排気ダクトの吸気口へ誘引される。   According to the heating and exhausting apparatus according to the present invention, the cylindrical mold can be induction-heated by the electromagnetic induction coil provided inside the case, and the material of the seamless product supplied to the inside of the cylindrical mold can be heated. As a result, the solvent contained in the material is vaporized and gas is generated. The intake port of the exhaust duct is arranged above the end of the cylindrical mold inside the case, and the suction means connected to the end of the exhaust duct sucks the air filling the inside of the case from the intake port of the exhaust duct Therefore, the gas generated inside the cylindrical mold is immediately attracted to the intake port of the exhaust duct.

このため、ケースの内部にガスが拡散することはないので、ケースの内部でガスの結露は起こらない。しかも、ガスが結露しない分、排気ダクトを通り吸引手段に達するガスの量、又は濃度が増すので、ガスの回収を効率よく行うことができる。   For this reason, since gas does not diffuse inside the case, no condensation of gas occurs inside the case. In addition, since the amount or concentration of the gas that reaches the suction means through the exhaust duct is increased by the amount of condensation of the gas, the gas can be recovered efficiently.

更に、本発明に係る加熱排気装置によれば、昇降手段が排気ダクトを円筒状金型に対して昇降させるので、例えば互いに直径の異なる複数の円筒状金型の中から選択した円筒状金型をケースに収納した場合、円筒状金型の端部から排気ダクトの吸気口までの高さを所望に調整することができる。このため、円筒状金型の直径の大きさに関わらず、当該加熱排気装置は、溶剤のガスがケースの内部で拡散するのを防止し、上記の効果を達成することができる。   Further, according to the heating and exhausting apparatus according to the present invention, the lifting means lifts and lowers the exhaust duct with respect to the cylindrical mold. For example, a cylindrical mold selected from a plurality of cylindrical molds having different diameters from each other Is stored in the case, the height from the end of the cylindrical mold to the intake port of the exhaust duct can be adjusted as desired. Therefore, regardless of the diameter of the cylindrical mold, the heating and exhausting apparatus can prevent the solvent gas from diffusing inside the case and achieve the above effect.

更に、本発明に係る加熱排気装置によれば、電磁誘導コイルを排気ダクトに連結しているので、排気ダクトが昇降するときに、電磁誘導コイルを排気ダクトと共に昇降させることができる。このため、上記の排気ダクトの高さ調整を行うのと同時に、電磁誘導コイルを円筒状金型に対向させる間隔も調整することができる。   Furthermore, according to the heating and exhausting apparatus according to the present invention, since the electromagnetic induction coil is connected to the exhaust duct, the electromagnetic induction coil can be moved up and down together with the exhaust duct when the exhaust duct moves up and down. For this reason, the distance at which the electromagnetic induction coil faces the cylindrical mold can be adjusted simultaneously with the height adjustment of the exhaust duct.

更に、本発明に係る加熱排気装置によれば、円筒状金型の長手方向の全域を一の電磁誘導コイルで加熱することに加え、円筒状金型の端部を他の電磁誘導コイルで加熱することができる。このため、単一の電磁誘導コイルで円筒状金型を誘導加熱するのに比較して、円筒状金型の全体の温度を均一に保つのに有利である。   Furthermore, according to the heating and exhausting apparatus according to the present invention, in addition to heating the entire longitudinal direction of the cylindrical mold with one electromagnetic induction coil, the end of the cylindrical mold is heated with another electromagnetic induction coil. can do. For this reason, it is advantageous to keep the entire temperature of the cylindrical mold uniform compared to induction heating of the cylindrical mold with a single electromagnetic induction coil.

本発明の実施形態に係る加熱排気装置の動作の一例を示す長手方向の断面図。Sectional drawing of the longitudinal direction which shows an example of operation | movement of the heating exhaust apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る加熱排気装置の動作の一例を示す幅方向の断面図。Sectional drawing of the width direction which shows an example of operation | movement of the heating exhaust apparatus which concerns on embodiment of this invention. 本発明の実施形態に係る加熱排気装置の動作の他例を示す長手方向の断面図。Sectional drawing of the longitudinal direction which shows the other example of operation | movement of the heating exhaust apparatus which concerns on embodiment of this invention.

本発明の実施形態に係る加熱排気装置について図面を参照しながら説明する。シームレス製品の遠心成形を行うための要素には、従来の技術を適用できるので、その図示を省略する。   A heating and exhausting apparatus according to an embodiment of the present invention will be described with reference to the drawings. Since the conventional technique can be applied to the element for performing centrifugal molding of the seamless product, its illustration is omitted.

図1に示すように、加熱排気装置1は、長手方向の両方の端部3が開放した円筒状金型5を内部に収納する箱形のケース7と、ケース7の内部に設けられ円筒状金型5の外周面9に対向する複数の電磁誘導コイル11,13と、ケース7の内部の円筒状金型5の端部3の上方に吸気口15をそれぞれ配置しケース7の外側へ終端17を延出した2つの排気ダクト19と、排気ダクト19の終端17に接続した吸引手段21とを備える。   As shown in FIG. 1, the heating / exhaust device 1 includes a box-shaped case 7 that houses therein a cylindrical mold 5 that is open at both ends 3 in the longitudinal direction, and a cylindrical shape that is provided inside the case 7. A plurality of electromagnetic induction coils 11 and 13 facing the outer peripheral surface 9 of the mold 5 and an intake port 15 are disposed above the end 3 of the cylindrical mold 5 inside the case 7, and terminates outside the case 7. Two exhaust ducts 19 extending from the exhaust duct 19 and suction means 21 connected to the terminal end 17 of the exhaust duct 19 are provided.

円筒状金型5は、その内側に溶剤を含む液状の熱硬化性樹脂、又は熱可塑性樹脂が供給される。シームレス製品の材料に適用できる熱硬化性樹脂としてポリイミド系樹脂がある。図2に記した2つの円23は、円筒状金型5の外周面9に転がり接触するローラーの外形を表している。これらのローラーは、円筒状金型5を水平姿勢で支持し、電動機の出力を円筒状金型5に回転力として伝達するものである。ケース7は、図1,2に示す側面材25,27、底面材29、及び上面材31を接合して成る函体である。   The cylindrical mold 5 is supplied with a liquid thermosetting resin or a thermoplastic resin containing a solvent inside. There is a polyimide resin as a thermosetting resin that can be applied to the material of seamless products. The two circles 23 shown in FIG. 2 represent the outer shape of the roller that is in rolling contact with the outer peripheral surface 9 of the cylindrical mold 5. These rollers support the cylindrical mold 5 in a horizontal posture, and transmit the output of the electric motor to the cylindrical mold 5 as a rotational force. The case 7 is a box formed by joining the side members 25 and 27, the bottom member 29, and the top member 31 shown in FIGS.

排気ダクト19は、ケース7の上面材31を貫く通気パイプ33の下端に、吸気口15を下向きに開放したフード35を接合したものである。図2に表れたフード35の幅は、円筒状金型5の直径よりも大きいことが好ましく、点37で示した円筒状金型5の幾何学的中心は、フード35の幅を二等分する位置の真下を通ることが好ましい。図1に表れたフード35の厚みを80mm前後に設定するのが好ましい。フード35の幅は、円筒状金型5の直径よりも約20mm広いことが好ましい。また、円筒状金型5の端部3から吸気口15までの高さは、約10mm以内であることが好ましい。この高さは、円筒状金型5の直径を[φ]とし、その幾何学的中心から吸気口15までの高さを[h]とすると、h−φ/2として得られる。   The exhaust duct 19 is formed by joining a hood 35 having an intake port 15 opened downward to the lower end of a ventilation pipe 33 that penetrates the upper surface member 31 of the case 7. The width of the hood 35 shown in FIG. 2 is preferably larger than the diameter of the cylindrical mold 5, and the geometric center of the cylindrical mold 5 indicated by a point 37 bisects the width of the hood 35. It is preferable to pass directly under the position to be. It is preferable to set the thickness of the hood 35 shown in FIG. The width of the hood 35 is preferably about 20 mm wider than the diameter of the cylindrical mold 5. Moreover, it is preferable that the height from the edge part 3 of the cylindrical metal mold | die 5 to the inlet port 15 is about 10 mm or less. This height is obtained as h−φ / 2 where the diameter of the cylindrical mold 5 is [φ] and the height from the geometric center to the intake port 15 is [h].

吸引手段21として、吸引口から吸引した空気を吐出口から吐出できるエアブロワー、又は空気ポンプ等を適用しても良い。この場合、排気ダクト19の終端17は、一点鎖線39で示したホース等を介して、吸引手段21の吸引口に接続される。吸引手段21の吐出口にはスクラバー等を接続しても良い。また、図示を省略しているが、ケース7の適所には換気孔が形成されており、ケース7の内部を満たす空気が吸引手段21によって吸引される分、ケース7の外側の空気が換気孔を経てケース7の内部に導入される。   As the suction unit 21, an air blower that can discharge air sucked from the suction port from the discharge port, an air pump, or the like may be applied. In this case, the end 17 of the exhaust duct 19 is connected to the suction port of the suction means 21 via a hose or the like indicated by a one-dot chain line 39. A scrubber or the like may be connected to the discharge port of the suction means 21. Although not shown, a ventilation hole is formed at an appropriate position of the case 7, and the air that fills the inside of the case 7 is sucked by the suction means 21, so that the air outside the case 7 is ventilated. After that, it is introduced into the case 7.

電磁誘導コイル11,13は、それぞれのパッケージが図に表れている。電磁誘導コイル11は、円筒状金型5の下方に配置されケース7に位置決めされている。2つの電磁誘導コイル13は、円筒状金型5の両方の端部3の上方にそれぞれ配置され、これらの排気ダクト19を連結する連結材41に支持されている。電磁誘導コイル11,13と円筒状金型5の外周面9との間隔は約10mm以内であることが好ましい。   Each package of the electromagnetic induction coils 11 and 13 is shown in the figure. The electromagnetic induction coil 11 is disposed below the cylindrical mold 5 and is positioned on the case 7. The two electromagnetic induction coils 13 are respectively disposed above both ends 3 of the cylindrical mold 5 and supported by a connecting member 41 that connects these exhaust ducts 19. The distance between the electromagnetic induction coils 11 and 13 and the outer peripheral surface 9 of the cylindrical mold 5 is preferably within about 10 mm.

電磁誘導コイル11,13の電源回路はケース7の外側に設けられている。この電源回路から交流電流が電磁誘導コイル11,13に供給されると、円筒状金型5は磁界を印加され温度上昇する。特に、円筒状金型5の端部3は、電磁誘導コイル11,13の双方によって磁界を印加される。電磁誘導コイル13を省略しても円筒状金型5の誘導加熱は行えるが、円筒状金型5の開放した端部3から熱が逃げやすいので、電磁誘導コイル11に加えて電磁誘導コイル13を用いる方が、円筒状金型5の全体の温度を均一に保つのに有利である。   The power supply circuit for the electromagnetic induction coils 11 and 13 is provided outside the case 7. When an alternating current is supplied to the electromagnetic induction coils 11 and 13 from this power supply circuit, the cylindrical mold 5 is applied with a magnetic field and the temperature rises. In particular, a magnetic field is applied to the end 3 of the cylindrical mold 5 by both the electromagnetic induction coils 11 and 13. Although the induction heating of the cylindrical mold 5 can be performed even if the electromagnetic induction coil 13 is omitted, since heat easily escapes from the open end 3 of the cylindrical mold 5, the electromagnetic induction coil 13 is added to the electromagnetic induction coil 11. It is advantageous to keep the temperature of the entire cylindrical mold 5 uniform.

更に、加熱排気装置1は、円筒状金型5の端部3から吸気口15までの高さを最適に調整できるように、排気ダクト19を昇降手段43によって所望の高さに昇降させることができる。昇降手段43は、上面材31の上方に配置された昇降部材45と、昇降部材45を上面材31に対して昇降させる駆動源47と、上面材31を貫き昇降部材45に上端を固定されたスライドシャフト49と、上面材31に取付けられスライドシャフト49を昇降自在に案内するガイドブッシュ51とを備える。排気ダクト19の通気パイプ33は昇降部材45に固定されている。スライドシャフト49の下端は連結材41に接合されている。符号53はパッキン材を指している。   Further, the heating / exhaust device 1 can raise and lower the exhaust duct 19 to a desired height by the elevating means 43 so that the height from the end 3 of the cylindrical mold 5 to the intake port 15 can be adjusted optimally. it can. The elevating means 43 has an elevating member 45 disposed above the upper surface material 31, a drive source 47 for elevating the elevating member 45 relative to the upper surface material 31, and an upper end fixed to the elevating member 45 through the upper surface material 31. A slide shaft 49 and a guide bush 51 that is attached to the upper surface material 31 and guides the slide shaft 49 so as to be movable up and down are provided. The ventilation pipe 33 of the exhaust duct 19 is fixed to the elevating member 45. The lower end of the slide shaft 49 is joined to the connecting member 41. Reference numeral 53 indicates a packing material.

駆動源47は限定される要素ではないが、例えばギアケース55に電動機を内装し、この電動機の回転に従って作動ロッド57がギアケース55に対して上下方向に作動するアクチュエータを適用しても良い。この場合、ギアケース55を上面材31に固定し作動ロッド57を昇降部材45に接合する。作動ロッド57が上方へ作動するとき、図3に示すように昇降部材45と共に2つの排気ダクト19、及び電磁誘導コイル13が円筒状金型5に対して上昇する。反対に、作動ロッド57が下方へ作動するとき、図1に示すように昇降部材45と共に2つの排気ダクト19、及び電磁誘導コイル13が円筒状金型5に対して下降する。   Although the drive source 47 is not a limited element, for example, an electric motor may be provided in the gear case 55, and an actuator in which the operating rod 57 operates vertically with respect to the gear case 55 according to the rotation of the electric motor may be applied. In this case, the gear case 55 is fixed to the upper surface member 31 and the operating rod 57 is joined to the elevating member 45. When the operation rod 57 is operated upward, the two exhaust ducts 19 and the electromagnetic induction coil 13 are raised with respect to the cylindrical mold 5 together with the elevating member 45 as shown in FIG. On the contrary, when the operation rod 57 operates downward, the two exhaust ducts 19 and the electromagnetic induction coil 13 are moved down with respect to the cylindrical mold 5 together with the elevating member 45 as shown in FIG.

以上に述べた加熱排気装置1によれば、電磁誘導コイル11,13で円筒状金型5を誘導加熱し、円筒状金型5の内側に供給されるシームレス製品の材料を加熱できる。これにより材料に含まれる溶剤が気化しガスが発生する。吸引手段21は、ケース7の内部の空気を排気ダクト19の吸気口15から吸引するので、円筒状金型5の内側で発生したガスは、直ちに排気ダクト19の吸気口15へ誘引される。このため、ケース7の内部にガスが拡散することはないので、ケース7の内部でガスの結露は起こらない。しかも、ガスが結露しない分、排気ダクト19を通り吸引手段21に達するガスの量、又は濃度が増すので、ガスの回収を効率よく行うことができる。   According to the heating / exhaust apparatus 1 described above, the cylindrical mold 5 is induction-heated by the electromagnetic induction coils 11 and 13, and the material of the seamless product supplied to the inside of the cylindrical mold 5 can be heated. As a result, the solvent contained in the material is vaporized and gas is generated. Since the suction means 21 sucks the air inside the case 7 from the intake port 15 of the exhaust duct 19, the gas generated inside the cylindrical mold 5 is immediately attracted to the intake port 15 of the exhaust duct 19. For this reason, since gas does not diffuse inside the case 7, no condensation of gas occurs inside the case 7. In addition, since the amount or concentration of the gas that reaches the suction means 21 through the exhaust duct 19 is increased by the amount of condensation of the gas, the gas can be recovered efficiently.

また、互いに直径の異なる複数の円筒状金型の中から選択した円筒状金型5をケース7に収納する場合、加熱排気装置1は、円筒状金型5の端部3から吸気口15までの高さを調整できるので、円筒状金型5の直径の大きさに関わらず、溶剤のガスがケース7の内部で拡散するのを防止し、上記の効果を達成することができる。   When the cylindrical mold 5 selected from a plurality of cylindrical molds having different diameters is housed in the case 7, the heating / exhaust device 1 extends from the end 3 of the cylindrical mold 5 to the intake port 15. Therefore, regardless of the diameter of the cylindrical mold 5, the solvent gas can be prevented from diffusing inside the case 7 and the above effect can be achieved.

また、電磁誘導コイル13が連結材41を介して2つの排気ダクト19に連結されているので、排気ダクト19が昇降するときに、電磁誘導コイル13を排気ダクト19と共に昇降させることができる。このため、上記の排気ダクト19の高さ調整を行うのと同時に、電磁誘導コイル13を円筒状金型5の外周面9に対向させる間隔も適切に調整することができる。   Further, since the electromagnetic induction coil 13 is connected to the two exhaust ducts 19 via the connecting member 41, the electromagnetic induction coil 13 can be moved up and down together with the exhaust duct 19 when the exhaust duct 19 moves up and down. Therefore, at the same time that the height of the exhaust duct 19 is adjusted, the interval at which the electromagnetic induction coil 13 is opposed to the outer peripheral surface 9 of the cylindrical mold 5 can be adjusted appropriately.

図1,3に示すように、電磁誘導コイル11の全長は円筒状金型5よりも長く、電磁誘導コイル11の端部は、次の理由で円筒状金型5の端部3から長手方向へ突出している。同様に、電磁誘導コイル13の端部も円筒状金型5の端部3から長手方向へ突出している。   As shown in FIGS. 1 and 3, the electromagnetic induction coil 11 has an overall length longer than that of the cylindrical mold 5, and the end of the electromagnetic induction coil 11 extends in the longitudinal direction from the end 3 of the cylindrical mold 5 for the following reason. Protruding to Similarly, the end of the electromagnetic induction coil 13 protrudes from the end 3 of the cylindrical mold 5 in the longitudinal direction.

即ち、寸法xは、電磁誘導コイル11,13の端部から円筒状金型5の端部3までの距離を示している。円筒状金型5の内側で発生したガスを排気ダクト19へ導くには、寸法xを小さくするのが好ましいが、電磁誘導コイル11,13の端部の位置を円筒状金型5の端部3に揃える(寸法xを0mmにする)と、端部3に磁界が印加され難くなり、円筒状金型5の全体の一様な誘導加熱が妨げられる。そこで、排気ダクト19による良好なガスの吸引と、円筒状金型5の全体の温度の均一化とを達成するために、25mm以下の範囲で寸法xを設定することが好ましい。図示の寸法xは約15mmに相当する。   That is, the dimension x indicates the distance from the end portions of the electromagnetic induction coils 11 and 13 to the end portion 3 of the cylindrical mold 5. In order to guide the gas generated inside the cylindrical mold 5 to the exhaust duct 19, it is preferable to reduce the dimension x. However, the positions of the end portions of the electromagnetic induction coils 11 and 13 are set to the end portions of the cylindrical mold 5. If the diameter is set to 3 (the dimension x is set to 0 mm), it is difficult to apply a magnetic field to the end 3, and uniform induction heating of the entire cylindrical mold 5 is hindered. Therefore, in order to achieve good gas suction by the exhaust duct 19 and uniform temperature of the entire cylindrical mold 5, it is preferable to set the dimension x in a range of 25 mm or less. The dimension x shown corresponds to about 15 mm.

尚、本発明は、その趣旨を逸脱しない範囲で当業者の知識に基づいて種々なる改良、修正、又は変形を加えた態様でも実施でき、以下の態様で実施しても良い。例えば、電磁誘導コイル13を省略し、単一の電磁誘導コイル11で円筒状金型5を誘導加熱しても良い。この場合、電磁誘導コイル11を排気ダクト19に連結するようにしても良い。また、電磁誘導コイル11,13は、円筒状金型5に対してその径方向から対向すれば良く、電磁誘導コイル11,13を円筒状金型5の側方に配置しても良い。   In addition, this invention can be implemented also in the aspect which added various improvement, correction, or a deformation | transformation based on the knowledge of those skilled in the art within the range which does not deviate from the meaning, and may be implemented in the following aspects. For example, the electromagnetic induction coil 13 may be omitted, and the cylindrical mold 5 may be induction heated with the single electromagnetic induction coil 11. In this case, the electromagnetic induction coil 11 may be connected to the exhaust duct 19. The electromagnetic induction coils 11 and 13 may be opposed to the cylindrical mold 5 from the radial direction, and the electromagnetic induction coils 11 and 13 may be arranged on the side of the cylindrical mold 5.

排気ダクト19は2つである必要はなく、1つの排気ダクト19の下端が2つの吸気口15に分岐するようにしても良い。昇降手段43を省略し、排気ダクト19をケース7の適所に固定しても良い。吸引手段21が吸引する空気の風量は約200リットル/minが適当であるが、吸引手段21であるエアブロワーに供給される電流をインバーター制御し、これにより排気ダクト19の吸気口15から吸引される空気の流量を調整できるようにしても良い。   There is no need for two exhaust ducts 19, and the lower end of one exhaust duct 19 may be branched into two intake ports 15. The elevating means 43 may be omitted and the exhaust duct 19 may be fixed at an appropriate position of the case 7. The air volume sucked by the suction means 21 is appropriately about 200 liters / min. However, the current supplied to the air blower as the suction means 21 is controlled by an inverter, and is thereby sucked from the intake port 15 of the exhaust duct 19. The flow rate of air may be adjusted.

また、円筒状金型5の温度を非接触式の温度計で測定し、この値に基づき電磁誘導コイル11,13の電源回路が円筒状金型5に印加する磁界の強度を調整するようにしても良い。電磁誘導コイル11の端部から円筒状金型5の端部3までの距離と、電磁誘導コイル13の端部から円筒状金型5の端部3までの距離とは、必ずしも一致しなくて良い。   The temperature of the cylindrical mold 5 is measured with a non-contact type thermometer, and the strength of the magnetic field applied to the cylindrical mold 5 by the power supply circuit of the electromagnetic induction coils 11 and 13 is adjusted based on this value. May be. The distance from the end of the electromagnetic induction coil 11 to the end 3 of the cylindrical mold 5 does not necessarily match the distance from the end of the electromagnetic induction coil 13 to the end 3 of the cylindrical mold 5. good.

本発明は、精密な電子部品の製造に加え、あらゆる環状の製品を成形するのに有益な技術である。   The present invention is a useful technique for molding any annular product in addition to the manufacture of precision electronic components.

1…加熱排気装置、3…端部、5…円筒状金型、7…ケース、9…外周面、11,13…電磁誘導コイル、15…吸気口、17…終端、19…排気ダクト、21…吸引手段、23…円、25,27…側面材、29…底面材、31…上面材、33…通気パイプ、35…フード、41…連結材、43…昇降手段、45…昇降部材、47…駆動源、49…スライドシャフト、51…ガイドブッシュ、55…ギアケース、57…作動ロッド。

DESCRIPTION OF SYMBOLS 1 ... Heating exhaust apparatus, 3 ... End part, 5 ... Cylindrical metal mold, 7 ... Case, 9 ... Outer peripheral surface, 11, 13 ... Electromagnetic induction coil, 15 ... Inlet, 17 ... Termination, 19 ... Exhaust duct, 21 ... suction means, 23 ... circle, 25, 27 ... side material, 29 ... bottom material, 31 ... top material, 33 ... vent pipe, 35 ... hood, 41 ... coupling material, 43 ... lifting means, 45 ... lifting member, 47 ... drive source, 49 ... slide shaft, 51 ... guide bush, 55 ... gear case, 57 ... operating rod.

Claims (5)

長手方向の端部が開放した円筒状金型を内部に収納するケースと、
前記ケースの内部に設けられ、前記円筒状金型にその径方向から対向する電磁誘導コイルと、
前記ケースの内部の前記円筒状金型の端部の上方に吸気口をそれぞれ配置し、前記ケースの外側へ終端を延出した排気ダクトと、
前記排気ダクトの終端に接続した吸引手段とを備えることを特徴とする加熱排気装置。
A case in which a cylindrical mold having an open end in the longitudinal direction is stored inside;
An electromagnetic induction coil provided inside the case and facing the cylindrical mold from the radial direction;
An air intake duct arranged above the end of the cylindrical mold inside the case, and an end extending to the outside of the case; and
A heating exhaust apparatus comprising: suction means connected to a terminal end of the exhaust duct.
前記排気ダクトを前記円筒状金型に対して昇降させる昇降手段を備えることを特徴とする請求項1に記載の加熱排気装置。   The heating / exhaust device according to claim 1, further comprising elevating means for elevating and lowering the exhaust duct with respect to the cylindrical mold. 前記電磁誘導コイルを前記排気ダクトに連結したことを特徴とする請求項2に記載の加熱排気装置。   The heating exhaust apparatus according to claim 2, wherein the electromagnetic induction coil is connected to the exhaust duct. 複数の前記電磁誘導コイルを備え、これらの電磁誘導コイルのうち一の電磁誘導コイルを、前記円筒状金型の下方に配置し、前記複数の電磁誘導コイルのうち他の電磁誘導コイルを、前記円筒状金型の端部の上方に配置し前記排気ダクトに連結したことを特徴とする請求項2に記載の加熱排気装置。   A plurality of the electromagnetic induction coils, one electromagnetic induction coil of these electromagnetic induction coils is disposed below the cylindrical mold, and the other electromagnetic induction coil of the plurality of electromagnetic induction coils, The heating and exhausting apparatus according to claim 2, wherein the heating and exhausting apparatus is disposed above an end of a cylindrical mold and connected to the exhaust duct. 前記円筒状金型の端部よりも前記電磁誘導コイルが長手方向へ25mm以下の範囲で突出することを特徴とする請求項1乃至4の何れかに記載の加熱排気装置。

The heating / exhaust device according to any one of claims 1 to 4, wherein the electromagnetic induction coil protrudes in a longitudinal direction within a range of 25 mm or less from an end portion of the cylindrical mold.

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CN104048483A (en) * 2013-03-12 2014-09-17 松下电器产业株式会社 Hot air circulating-type heating device
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