JP2011027080A - Multiaxial extruder - Google Patents

Multiaxial extruder Download PDF

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JP2011027080A
JP2011027080A JP2009176217A JP2009176217A JP2011027080A JP 2011027080 A JP2011027080 A JP 2011027080A JP 2009176217 A JP2009176217 A JP 2009176217A JP 2009176217 A JP2009176217 A JP 2009176217A JP 2011027080 A JP2011027080 A JP 2011027080A
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bolt insertion
shaft
bolt
shafts
fixing
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JP5180160B2 (en
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Hiroyuki Fukuda
裕之 福田
Hiroshi Kojima
宏 小島
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MORIYAMA KK
Nihon Spindle Manufacturing Co Ltd
Moriyama Co Ltd
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Nihon Spindle Manufacturing Co Ltd
Moriyama Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a multiaxial extruder whose disassembling and cleaning work can be quickly and simply performed. <P>SOLUTION: In a multiaxial extruder, in a cover 11 of a shaft supporting wall body 6, there are formed a plurality of inside-bolt insertion holes 13 through which heads 8h of fixing bolts 8 can pass as a plurality of bolt insertion holes 7. In a holding portion 12 of the shaft supporting wall body 6, as the plurality of bolt insertion holes 7, there are formed a plurality of elongate outside-bolt insertion holes 14 having small-diameter portions 14s through which a shaft 8a of the fixing bolt 8 can pass and smaller than the head 8h of the fixing bolt and a large-diameter portion 14b through which the head 8h of the fixing bolt 8 can pass, and which are made to communicate with each other, with each longitudinal direction of the plurality of elongate outside-bolt insertion holes 14, and made to be in parallel with a sliding direction of the holding portion 12. With a plurality of the fixing bolts 8 loosened, the holding portion 12 is made to be freely movable along a sliding direction across a position where the fixing bolt 8 is inserted into the small-diameter portion 14s of the outside-bolt insertion hole and a position where the fixing bolt 8 is inserted into the large-diameter portion 14b. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は、受入口から内部に供給される材料を吐出口から押し出すための複数の押し出し軸を回転自在に収納し且つそれら複数の押し出し軸を出し入れするための開口部を備えたケーシング本体と、前記複数の押し出し軸の支軸の一端を回転自在に支持した状態で前記開口部を閉じる軸支持壁体とを備えたケーシングが設けられ、前記軸支持壁体に形成された複数のボルト挿通孔を通して前記押し出し軸の回転軸心に沿う方向で前記ケーシング本体に螺合されて、前記軸支持壁体を前記ケーシング本体に固定する複数の固定用ボルトが設けられた多軸押出機に関する。   The present invention includes a casing body that rotatably accommodates a plurality of extrusion shafts for extruding a material supplied from a receiving port through a discharge port, and an opening for inserting and removing the plurality of extrusion shafts; A plurality of bolt insertion holes formed in the shaft support wall body are provided with a casing including a shaft support wall body that closes the opening while rotatably supporting one ends of the support shafts of the plurality of extrusion shafts. The present invention relates to a multi-screw extruder provided with a plurality of fixing bolts that are screwed into the casing body in a direction along the rotation axis of the push-out shaft and fix the shaft support wall body to the casing body.

かかる多軸押出機は、例えばゴム、溶融樹脂等の比較的粘度が高い材料を押し出すものであり、例えば、テーパースクリューを備えた材料供給機から供給される材料をこの多軸押出機により圧力を高めて押し出し、メッシュ等により異物を除去するように構成されている。   Such a multi-screw extruder extrudes a material having a relatively high viscosity such as rubber or molten resin. For example, a material supplied from a material supply machine equipped with a taper screw is used to apply pressure to the multi-screw extruder. It is configured to extrude and extrude and remove foreign matter with a mesh or the like.

このような多軸押出機において、従来は、軸支持壁体が1枚の板状に構成されて、その1枚の板状の軸支持壁体に、固定用ボルトの軸部が挿通可能で且つ固定用ボルトの頭部よりも小径のボルト挿通孔が複数形成されていた(例えば、特許文献1参照。)。これにより、固定用ボルトにより軸支持壁体をケーシング本体に固定可能とされていた。   In such a multi-screw extruder, conventionally, the shaft support wall is configured as a single plate, and the shaft portion of the fixing bolt can be inserted into the single plate-shaped shaft support wall. In addition, a plurality of bolt insertion holes having a smaller diameter than the head of the fixing bolt are formed (for example, see Patent Document 1). Accordingly, the shaft support wall body can be fixed to the casing body by the fixing bolt.

特開2004−218483号公報JP 2004-218383 A

ところで、このような多軸押出機では、材料の押し出し作業の終了時や、取り扱う材料を変更するとき等に、複数の押し出し軸をケーシング本体から取り出して複数の押し出し軸やケーシングの内部等に残留した材料を除去し、清掃する分解清掃を行うことになる。
しかしながら、従来の多軸押出機では、以下に説明するように、分解清掃を行うときには煩雑な作業が必要であり、改善が望まれていた。
By the way, in such a multi-screw extruder, at the end of the material extruding operation or when changing the material to be handled, etc., the plural extruding shafts are taken out from the casing body and remain in the plural extruding shafts or inside the casing. The disassembled cleaning that removes the cleaned material and cleans it is performed.
However, in the conventional multi-screw extruder, as described below, complicated work is required when performing disassembly and cleaning, and improvement has been desired.

即ち、複数の押し出し軸をケーシング本体から取り出すときは、複数の固定用ボルト全てをケーシング本体から取り外した後、軸支持壁体をケーシング本体から取り外して複数の押し出し軸から分離し、更に、これら複数の押し出し軸を例えば一つずつ支軸の軸心方向に個別に移動させてケーシング本体から取り出す必要があり、作業が煩雑であった。
又、清掃が終了した複数の押し出し軸をケーシング本体に入れるときは、先ず、複数の押し出し軸を一つずつ個別にケーシング本体に入れ、続いて、軸支持壁体をケーシング本体の所定の位置に位置させて軸支持壁体に複数の押し出し軸の支軸を支持させた状態で、ケーシング本体から取り外されている複数の固定用ボルトを1個ずつ軸支持壁体のボルト挿通孔に挿通してケーシング本体に螺合する必要があり、作業が煩雑であった。
That is, when removing a plurality of extruded shafts from the casing body, after removing all of the plurality of fixing bolts from the casing body, the shaft support wall body is detached from the casing body and separated from the plurality of extruded shafts. For example, it is necessary to individually move the extrusion shafts one by one in the axial center direction of the support shaft and take them out from the casing body, which is complicated.
Also, when putting a plurality of extruded shafts that have been cleaned into the casing body, first put the plurality of extruded shafts one by one into the casing body, and then place the shaft support wall at a predetermined position on the casing body. A plurality of fixing bolts, which are removed from the casing body, are inserted into the bolt insertion holes of the shaft support wall body one by one with the shaft support wall body supporting the support shafts of the plurality of extrusion shafts. It was necessary to screw into the casing body, and the work was complicated.

本発明は、かかる実情に鑑みてなされたものであり、その目的は、分解清掃作業の迅速化及び簡素化を図り得る多軸押出機を提供することにある。   The present invention has been made in view of such circumstances, and an object of the present invention is to provide a multi-screw extruder capable of speeding up and simplifying the disassembly and cleaning work.

上記目的を達成するための本発明に係る多軸押出機は、受入口から内部に供給される材料を吐出口から押し出すための複数の押し出し軸を回転自在に収納し且つそれら複数の押し出し軸を出し入れするための開口部を備えたケーシング本体と、前記複数の押し出し軸の支軸の一端を回転自在に支持した状態で前記開口部を閉じる軸支持壁体とを備えたケーシングが設けられ、前記軸支持壁体に形成された複数のボルト挿通孔を通して前記押し出し軸の回転軸心に沿う方向で前記ケーシング本体に螺合されて、前記軸支持壁体を前記ケーシング本体に固定する複数の固定用ボルトが設けられた多軸押出機であって、その特徴構成は、
前記軸支持壁体が、前記複数の押し出し軸の支軸を回転自在に支持する蓋部とその蓋部の外側に重ねられてその蓋部の面方向に沿うスライド方向に沿って移動自在な押さえ部とを備えて構成され、
前記蓋部に、前記複数のボルト挿通孔として、前記固定用ボルトの頭部が通過可能な複数の内側ボルト挿通孔が設けられ、
前記押さえ部に、前記複数のボルト挿通孔として、前記固定用ボルトの軸部が挿通可能で且つ前記固定用ボルトの頭部よりも小径の小径部と前記固定用ボルトの頭部が通過可能な大径部とを連通して備えた複数の長孔状の外側ボルト挿通孔が、夫々の長手方向を前記スライド方向に沿わせた状態で設けられ、
前記複数の固定用ボルトを緩めた状態で、前記押さえ部が、前記外側ボルト挿通孔の前記小径部に前記固定用ボルトが挿通される状態の位置と前記大径部に前記固定用ボルトが挿通される状態の位置とにわたって前記スライド方向に沿って移動自在とされている点にある。
In order to achieve the above object, a multi-screw extruder according to the present invention rotatably accommodates a plurality of extrusion shafts for extruding a material supplied from a receiving port through a discharge port, and includes the plurality of extrusion shafts. There is provided a casing comprising a casing main body having an opening for taking in and out, and a shaft support wall that closes the opening in a state in which one end of a support shaft of the plurality of extrusion shafts is rotatably supported, A plurality of fixing members that are screwed into the casing body in a direction along the rotation axis of the push-out shaft through a plurality of bolt insertion holes formed in the shaft supporting wall body, and fix the shaft supporting wall body to the casing body. A multi-screw extruder provided with bolts, the characteristic configuration of which is
The shaft support wall body is overlapped on the outer side of the lid portion that rotatably supports the support shafts of the plurality of push-out shafts and is movable along the sliding direction along the surface direction of the lid portion. And comprising
The lid portion is provided with a plurality of inner bolt insertion holes through which the heads of the fixing bolts can pass as the plurality of bolt insertion holes,
As the plurality of bolt insertion holes, a shaft portion of the fixing bolt can be inserted into the pressing portion, and a small diameter portion smaller than the head of the fixing bolt and a head of the fixing bolt can pass through. A plurality of elongated outer bolt insertion holes provided in communication with the large-diameter portion are provided in a state in which the respective longitudinal directions are along the slide direction,
With the plurality of fixing bolts loosened, the holding portion is inserted into the position where the fixing bolt is inserted into the small diameter portion of the outer bolt insertion hole and the large diameter portion. It is in the point which is movable along the said slide direction over the position of the state performed.

上記特徴構成によれば、軸支持壁体がケーシング本体に固定された状態では、押さえ部は、各外側ボルト挿通孔の小径部に各固定用ボルトの軸部が挿通される状態の位置(以下、固定位置と記載する場合がある)に位置した状態で、各固定用ボルトの軸部が押さえ部の各外側ボルト挿通孔の小径部及び蓋部の各内側ボルト挿通孔に挿通されて、ケーシング本体に螺合されて締め付けられている。
複数の押し出し軸をケーシング本体から取り出すときは、各固定用ボルトをケーシング本体の各ネジ孔から抜けない程度に緩める。
次いで、押さえ部を各外側ボルト挿通孔の長手方向であるスライド方向に沿ってスライドさせて、各外側ボルト挿通孔の大径部に各固定用ボルトが挿通される状態の位置(以下、取り外し位置と記載する場合がある)に位置させる。そして、押さえ部における各外側ボルト挿通孔の大径部が各固定用ボルトから抜ける状態で、押さえ部をケーシング本体から取り外すことができる。同様に、蓋部も、各内側ボルト挿通孔が各固定用ボルトから抜ける状態でケーシング本体から取り外すことができる。そして、そのようにして押さえ部及び蓋部をケーシングから取り外すと、複数の押し出し軸をケーシング本体から取り外すことができる。
According to the above characteristic configuration, in a state where the shaft support wall body is fixed to the casing body, the holding portion is in a state where the shaft portion of each fixing bolt is inserted into the small diameter portion of each outer bolt insertion hole (hereinafter referred to as “the shaft portion”). , The shaft portion of each fixing bolt is inserted into the small diameter portion of each outer bolt insertion hole of the pressing portion and each inner bolt insertion hole of the lid portion, Screwed into the main body and tightened.
When removing a plurality of push-out shafts from the casing body, loosen each fixing bolt to the extent that it cannot be removed from each screw hole of the casing body.
Next, the holding part is slid along the sliding direction which is the longitudinal direction of each outer bolt insertion hole, and the position where each fixing bolt is inserted into the large diameter part of each outer bolt insertion hole (hereinafter referred to as the removal position). May be described). And a press part can be removed from a casing main body in the state which the large diameter part of each outer side bolt insertion hole in a press part pulls out from each fixing bolt. Similarly, the lid portion can also be removed from the casing body in a state where each inner bolt insertion hole is removed from each fixing bolt. And if a press part and a cover part are removed from a casing in that way, a some extrusion shaft can be removed from a casing main body.

複数の押し出し軸をケーシング本体に入れるときは、先ず、複数の押し出し軸をケーシング本体に入れた後、蓋部の各内側ボルト挿通孔にケーシング本体に取り付けられたままの複数の固定ボルトの頭部を挿通して、蓋部をケーシング本体に当接させる。次いで、押さえ部の各外側ボルト挿通孔の大径部に各固定用ボルトの頭部を挿通して、押さえ部を複数の固定用ボルトの軸部に挿通させた状態で、押さえ部をスライド方向に沿ってスライドさせて取り外し位置から固定位置に位置させた後、各外側ボルト挿通孔の小径部にて複数の固定用ボルトを締め付けると、押さえ部及び蓋部をケーシング本体に取り付けることができる。
つまり、複数の固定用ボルトをケーシング本体に取り付けたままで、押さえ部をスライドさせることにより、押さえ部、蓋部及び複数の押し出し軸をケーシング本体から簡便に取り外したり、ケーシング本体に簡便に取り付けることができる。
従って、分解清掃作業の迅速化及び簡素化を図り得る多軸押出機を提供することができるようになった。
When inserting a plurality of extrusion shafts into the casing body, first, after inserting the plurality of extrusion shafts into the casing body, the heads of the plurality of fixing bolts that are still attached to the casing body in the inner bolt insertion holes of the lid And the lid is brought into contact with the casing body. Next, the head of each fixing bolt is inserted into the large diameter part of each outer bolt insertion hole of the holding part, and the holding part is inserted in the shaft part of the plurality of fixing bolts, and the holding part is moved in the sliding direction. , The holding part and the cover part can be attached to the casing body by tightening a plurality of fixing bolts at the small diameter part of each outer bolt insertion hole.
That is, it is possible to easily remove the attaching part, the cover part and the plurality of push-out shafts from the casing body or simply attach to the casing body by sliding the holding part with the plurality of fixing bolts attached to the casing body. it can.
Accordingly, it is possible to provide a multi-screw extruder capable of speeding up and simplifying the disassembly and cleaning work.

本発明に係る多軸押出機の更なる特徴構成は、前記蓋部と前記複数の押し出し軸の支軸との軸心方向での相対移動を阻止して固定する支軸固定手段が設けられている点にある。   A further characteristic configuration of the multi-screw extruder according to the present invention is provided with support shaft fixing means for preventing and fixing relative movement in the axial direction between the lid portion and the support shafts of the plurality of extrusion shafts. There is in point.

上記特徴構成によれば、支軸固定手段により蓋部と複数の押し出し軸の支軸との軸心方向での相対移動を阻止して固定すると、少なくとも蓋部と複数の押し出し軸を一挙にケーシング本体から取り外したり、ケーシング本体に取り付けることができる。
従って、分解清掃作業を一層簡素化することができるようになった。
According to the above characteristic configuration, at least the lid portion and the plurality of push-out shafts are casing at a time when the support fixing means prevents the relative movement in the axial direction between the cover portion and the support shafts of the plurality of push-out shafts. It can be removed from the body or attached to the casing body.
Therefore, the disassembly and cleaning work can be further simplified.

本発明に係る多軸押出機の更なる特徴構成は、前記支軸の軸心方向に沿う方向での前記蓋部の移動をその蓋部の姿勢を保った状態で案内する案内機構が設けられている点にある。   A further characteristic configuration of the multi-screw extruder according to the present invention is provided with a guide mechanism for guiding the movement of the lid portion in a direction along the axial direction of the support shaft while maintaining the posture of the lid portion. There is in point.

上記特徴構成によれば、支軸固定手段により蓋部と複数の押し出し軸の支軸との軸心方向での相対移動を阻止した状態で、蓋部を案内機構の案内で支軸の軸心方向に沿う方向にケーシング本体から遠ざかる方向に移動させる。すると、蓋部がその姿勢が保たれた状態で移動し、その蓋部と一緒に複数の押し出し軸が移動してケーシング本体から取り出されることになり、蓋部と複数の押し出し軸を一挙にケーシング本体から取り外すことができる。
又、同様に、蓋部及び複数の押し出し軸がケーシング本体の外部に位置する状態から、蓋部を案内機構の案内により、支軸の軸心方向に沿う方向にケーシング本体に近づく方向に移動させる。すると、蓋部がその姿勢が保たれた状態で移動し、その蓋部と一緒に複数の押し出し軸が移動してケーシング本体に入れられることになり、蓋部と複数の押し出し軸を一挙にケーシング本体に取り付けることができる。
従って、蓋部及び複数の押し出し軸の重量が重くても、それらを安全且つ容易にケーシング本体から取り外したりケーシング本体に取り付けることができるようになった。
According to the above characteristic configuration, in the state in which relative movement in the axial direction between the lid portion and the support shafts of the plurality of push-out shafts is prevented by the support shaft fixing means, the cover portion is guided by the guide mechanism and the shaft center of the support shaft. Move in a direction away from the casing body in a direction along the direction. Then, the lid part moves in a state in which the posture is maintained, and the plurality of extrusion shafts move together with the lid part and are taken out from the casing body, and the lid part and the plurality of extrusion shafts are moved to the casing all at once. Can be removed from the body.
Similarly, from the state where the lid portion and the plurality of push-out shafts are located outside the casing body, the lid portion is moved in the direction approaching the casing body in the direction along the axial direction of the support shaft by the guide mechanism. . Then, the lid part moves in a state where the posture is maintained, and a plurality of extrusion shafts move together with the lid part and are put into the casing body, and the lid part and the plurality of extrusion shafts are moved to the casing at once. Can be attached to the body.
Therefore, even if the cover part and the plurality of extrusion shafts are heavy, they can be safely and easily detached from the casing body or attached to the casing body.

本発明に係る多軸押出機の更なる特徴構成は、前記押さえ部が設けられた前記ケーシングが、前記長孔状の外側ボルト挿通孔の長手方向が上下方向を向く姿勢で配置され、
前記押さえ部を前記スライド方向である上下方向に移動させて、少なくとも前記外側ボルト挿通孔の前記大径部に前記固定用ボルトが挿通される状態の位置に保持可能なスライド機構が設けられている点にある。
According to a further feature of the multi-screw extruder according to the present invention, the casing provided with the pressing portion is arranged in a posture in which the longitudinal direction of the elongated hole-like outer bolt insertion hole is directed in the vertical direction,
There is provided a slide mechanism capable of moving the pressing portion in the vertical direction that is the sliding direction, and holding the fixing bolt at a position where the fixing bolt is inserted into at least the large-diameter portion of the outer bolt insertion hole. In the point.

上記特徴構成によれば、スライド機構によって、押さえ部を上下方向に移動させて少なくとも取り外し位置に保持することができるので、重量が重くても押さえ部を安全且つ容易に上下方向に移動させて少なくとも取り外し位置に保持することができる。
例えば、押さえ部が設けられたケーシングを、外側ボルト挿通孔の大径部が下側に位置する姿勢で配置する場合、スライド機構によって、押さえ部を上方に持ち上げて取り外し位置に保持することになる。この場合は、スライド機構により押さえ部を下方に移動させると、各外側ボルト挿通孔の小径部に各固定用ボルトの軸部が挿通される状態となって、複数の固定用ボルトにより押さえ部が固定位置に保持されることになるので、スライド機構には、押さえ部を固定位置に保持させる機能を必ずしも備えさせる必要がない。
従って、押さえ部の重量が重くても、それを安全且つ容易に上下方向に移動させて、取り外し位置及び固定位置に保持させることができるようになった。
According to the above characteristic configuration, the holding mechanism can be moved in the vertical direction by the slide mechanism and held at least in the removal position. Therefore, even if the weight is heavy, the pressing part can be safely and easily moved in the vertical direction at least. Can be held in the removal position.
For example, when the casing provided with the pressing portion is arranged in a posture in which the large-diameter portion of the outer bolt insertion hole is positioned on the lower side, the pressing portion is lifted upward and held at the removal position by the slide mechanism. . In this case, when the holding portion is moved downward by the slide mechanism, the shaft portion of each fixing bolt is inserted into the small diameter portion of each outer bolt insertion hole, and the holding portion is moved by the plurality of fixing bolts. Since the slide mechanism is held at the fixed position, the slide mechanism does not necessarily have a function of holding the pressing portion at the fixed position.
Therefore, even if the weight of the pressing portion is heavy, it can be safely and easily moved up and down to be held at the removal position and the fixed position.

実施形態に係る多軸押出機を備えた押出システムの概略構成図Schematic configuration diagram of an extrusion system equipped with a multi-screw extruder according to an embodiment 実施形態に係る多軸押出機の分解斜視図Exploded perspective view of a multi-screw extruder according to an embodiment 実施形態に係る多軸押出機の縦断側面図Vertical side view of a multi-screw extruder according to an embodiment 実施形態に係る多軸押出機の正面図Front view of a multi-screw extruder according to an embodiment 歯車出し入れ側の歯車支持壁体をケーシング本体に固定した状態を説明する多軸押出機の要部の図The figure of the principal part of the multi-screw extruder explaining the state which fixed the gear support wall body of the gear insertion / removal side to the casing body 歯車出し入れ側の歯車支持壁体をケーシング本体から取り外した状態を説明する多軸押出機の要部の図The figure of the principal part of the multi-screw extruder explaining the state which removed the gear support wall body of the gear insertion / removal side from the casing main body 複数の歯車をケーシング本体に対して出し入れする手順を説明する多軸押出機の概略図Schematic diagram of a multi-screw extruder explaining the procedure for putting in and out a plurality of gears with respect to the casing body 別実施形態に係る多軸押出機の概略図Schematic of a multi-screw extruder according to another embodiment

以下、図面に基づいて、本発明の実施形態を説明する。
図1は、本発明に係る多軸押出機S2を備えた押出システムの概略構成図である。
この押出システムは、例えば、ゴム、溶融樹脂等の比較的粘度の高い材料を押し出すものであり、図1に示すように、材料を吐出口31から押し出し供給する材料供給機S1と、その材料供給機S1から受入口1に供給される材料を圧力を高めて吐出口2から押し出す多軸押出機S2とを備えて構成されている。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a schematic configuration diagram of an extrusion system including a multi-screw extruder S2 according to the present invention.
This extrusion system, for example, extrudes a material having a relatively high viscosity such as rubber or molten resin. As shown in FIG. 1, a material supply device S1 for extruding and supplying the material from the discharge port 31, and its material supply And a multi-screw extruder S2 that pushes the material supplied from the machine S1 to the receiving port 1 through the discharge port 2 while increasing the pressure.

図1に示すように、材料供給機S1は、吐出口31を備えたケース32内に2軸のテーパースクリュー33を並設して構成され、供給ホッパ34を通してケース32内に供給される材料を2軸のテーパースクリュー33により吐出口31から押し出すように構成されている。
又、多軸押出機S2は、レール35上に支持輪36を介して支持させて、清掃時やメンテナンス時等に、材料供給機S1から離せるように遠近移動自在に設けてある。
As shown in FIG. 1, the material supply machine S <b> 1 is configured by arranging a biaxial taper screw 33 in parallel in a case 32 having a discharge port 31, and a material supplied into the case 32 through a supply hopper 34. The biaxial taper screw 33 is configured to be pushed out from the discharge port 31.
Further, the multi-screw extruder S2 is supported on the rail 35 via a support wheel 36, and is provided so as to be able to move far and away so as to be separated from the material supply machine S1 at the time of cleaning or maintenance.

図2〜図4に基づいて、多軸押出機S2について説明を加える。尚、図4は多軸押出機S2の正面図であるが、(a)は後述するガイド板22(支軸固定手段Fの一例)を取り外した状態の正面図であり、(b)は、ガイド板22を取り付けた状態の正面図である。
多軸押出機S2は、ギア式ポンプとして構成されており、具体的には、受入口1から内部に供給される材料を吐出口2から押し出すための複数の歯車3(押し出し軸の一例)を回転自在に収納し且つそれら複数の歯車3を出し入れするための開口部4を備えたケーシング本体5と、複数の歯車3の支軸3aの一端を回転自在に支持した状態で開口部4を閉じる歯車支持壁体6(軸支持壁体の一例)とを備えたケーシングCが設けられている。
又、歯車支持壁体6に形成された複数のボルト挿通孔7を通して歯車3の回転軸心Aに沿う方向にケーシング本体5に螺合されて、歯車支持壁体6をケーシング本体5に固定する複数の固定用ボルト8が設けられている。
The multi-screw extruder S2 will be described based on FIGS. 4 is a front view of the multi-screw extruder S2, (a) is a front view of a state where a guide plate 22 (an example of the support shaft fixing means F) described later is removed, and (b) It is a front view in the state where guide plate 22 was attached.
The multi-screw extruder S2 is configured as a gear-type pump. Specifically, a plurality of gears 3 (an example of an extrusion shaft) for extruding a material supplied from the receiving port 1 to the inside from the discharge port 2 are provided. A casing body 5 having an opening 4 for accommodating the plurality of gears 3 in and out of the plurality of gears 3 and closing one end of the support shafts 3a of the plurality of gears 3 are closed in a state of being rotatably supported. A casing C provided with a gear support wall 6 (an example of a shaft support wall) is provided.
The gear support wall body 6 is fixed to the casing body 5 by being screwed into the casing body 5 in a direction along the rotational axis A of the gear 3 through a plurality of bolt insertion holes 7 formed in the gear support wall body 6. A plurality of fixing bolts 8 are provided.

ケーシング本体5は、外形が概ね直角六面体状であり、互いに噛み合う一対の歯車3を回転可能なように遊嵌する歯車収納孔9(開口部4の一例)を備えて構成されている。つまり、この実施形態では、多軸押出機S2が二軸に構成されている。ちなみに、歯車収納孔9は、歯車3の回転軸心方向視で8の字形状に形成されている。
一対の歯車3は支軸3aが互いに平行になる状態でケーシング本体5内に収納されている。各歯車3は、例えば平歯車、はすば歯車、やまば歯車等を用いることができる。
一対の歯車3のうちの一方は、伝動機構(図示省略)を介して電動モータ等の駆動手段に伝動連結される駆動歯車3Dであり、他方は、従動歯車3Sである。
The casing main body 5 has a substantially hexagonal outer shape, and includes a gear housing hole 9 (an example of the opening 4) in which a pair of gears 3 meshing with each other is loosely fitted. That is, in this embodiment, the multi-screw extruder S2 is configured to be biaxial. Incidentally, the gear housing hole 9 is formed in a figure 8 shape when viewed in the direction of the rotational axis of the gear 3.
The pair of gears 3 are housed in the casing body 5 with the support shafts 3a being parallel to each other. As each gear 3, for example, a spur gear, a helical gear, a helical gear, or the like can be used.
One of the pair of gears 3 is a drive gear 3D that is transmission-coupled to drive means such as an electric motor via a transmission mechanism (not shown), and the other is a driven gear 3S.

受入口1及び吐出口2は、互いに対向する状態で、歯車収納孔9における一対の歯車3が噛み合う領域に臨むようにケーシング本体5に形成されている。
ケーシング本体5における歯車収納孔9が開口する面の夫々には、歯車収納孔9の開口縁の外周部に略均等に分散する状態で、固定用ボルト8を螺合するための複数(この実施形態では12個)のネジ孔5nが形成されている。ちなみに、固定用ボルト8としては、例えば六角ボルトが用いられるが、このような形状に限定されるものではない。
The receiving port 1 and the discharge port 2 are formed in the casing body 5 so as to face a region where the pair of gears 3 in the gear housing hole 9 mesh with each other in a state of facing each other.
Each of the surfaces of the casing main body 5 where the gear housing holes 9 are opened has a plurality (this embodiment) for screwing the fixing bolts 8 in a state of being distributed substantially evenly on the outer peripheral portion of the opening edge of the gear housing holes 9. Twelve screw holes 5n are formed. Incidentally, as the fixing bolt 8, for example, a hexagonal bolt is used, but it is not limited to such a shape.

前記歯車支持壁体6は、歯車収納孔9の両側の開口部4を閉じるように一対設けられ、それら一対の歯車支持壁体6夫々に、一対の歯車3夫々の支軸3aの端部を回転自在に支持する一対の軸受部10が備えられて、一対の歯車支持壁体6により、一対の歯車3の支軸3aの両端を回転可能に支持するように構成されている。
各歯車支持壁体6には、前記複数(この実施形態では12個)のボルト挿通孔7が、ケーシング本体5の複数(この実施形態では12個)のネジ孔5nに対応するように、歯車支持壁体6の周縁部に略均等に分散して形成されている。
A pair of the gear support wall bodies 6 are provided so as to close the openings 4 on both sides of the gear housing hole 9, and the end portions of the support shafts 3 a of the pair of gears 3 are respectively attached to the pair of gear support wall bodies 6. A pair of bearing portions 10 that are rotatably supported are provided, and both ends of the support shafts 3 a of the pair of gears 3 are rotatably supported by the pair of gear support wall bodies 6.
In each gear support wall 6, the plurality of (12 in this embodiment) bolt insertion holes 7 correspond to the plurality (12 in this embodiment) screw holes 5 n of the casing body 5. The support wall 6 is formed so as to be distributed substantially evenly on the peripheral edge.

歯車収納孔9の両側の開口部4のうちの一方が一対の歯車3の出し入れ用として用いられるように構成されている。
そして、本発明では、一対の歯車支持壁体6のうち、歯車出し入れ用の開口部4を閉じる方(以下、歯車出し入れ側の歯車支持壁体6Aと記載する場合がある)が、複数(この実施形態では2個)の歯車3の支軸3aを回転自在に支持する蓋部11とその蓋部11の外側に重ねられてその蓋部11の面方向に沿うスライド方向に沿って移動自在な押さえ部12とを備えて構成されている。
One of the openings 4 on both sides of the gear housing hole 9 is configured to be used for taking in and out the pair of gears 3.
In the present invention, among the pair of gear support wall bodies 6, there are a plurality of (this may be referred to as a gear support wall body 6A on the gear insertion / removal side) that closes the gear insertion / removal opening 4 (this is sometimes referred to as a gear support wall body 6A) The cover 11 that rotatably supports the support shaft 3a of the gear 3 in the embodiment) and the outer side of the cover 11 are overlapped, and are movable along the sliding direction along the surface direction of the cover 11. The holding part 12 is provided.

蓋部11に、前記複数のボルト挿通孔7として、固定用ボルト8の頭部8hが通過可能な複数の内側ボルト挿通孔13が設けられている。
又、押さえ部12に、前記複数のボルト挿通孔7として、固定用ボルト8の軸部8aが挿通可能で且つ固定用ボルト8の頭部8hよりも小径の小径部14sと固定用ボルト8の頭部8hが通過可能な大径部14bとを連通して備えた複数の長孔状の外側ボルト挿通孔14が、夫々の長手方向を前記スライド方向に沿わせた状態で設けられている。
そして、複数の固定用ボルト8を緩めた状態で、押さえ部12が、外側ボルト挿通孔14の小径部14sに固定用ボルト8が挿通される状態の位置(固定位置)と大径部14bに固定用ボルト8が挿通される状態の位置(取り外し位置)とにわたってスライド方向に沿って移動自在とされている。
具体的には、複数の長孔状の外側ボルト挿通孔14は、小径部14sが同じ側に位置し且つ小径部14sと大径部14bとの並び方向(長手方向に相当する)が互いに平行となる形態で設けられている。
ちなみに、各内側ボルト挿通孔13は円孔状であり、各長孔状の外側ボルト挿通孔14は、だるま孔状である。
The lid portion 11 is provided with a plurality of inner bolt insertion holes 13 through which the heads 8h of the fixing bolts 8 can pass as the plurality of bolt insertion holes 7.
Further, as the plurality of bolt insertion holes 7, the shaft portion 8 a of the fixing bolt 8 can be inserted into the holding portion 12, and the small diameter portion 14 s and the fixing bolt 8 are smaller in diameter than the head 8 h of the fixing bolt 8. A plurality of long hole-like outer bolt insertion holes 14 provided in communication with a large-diameter portion 14b through which the head 8h can pass are provided in a state in which the respective longitudinal directions are along the sliding direction.
Then, in a state where the plurality of fixing bolts 8 are loosened, the holding portion 12 is positioned between the position (fixed position) in which the fixing bolt 8 is inserted into the small diameter portion 14s of the outer bolt insertion hole 14 and the large diameter portion 14b. It is movable along the sliding direction over a position (removal position) where the fixing bolt 8 is inserted.
Specifically, in the plurality of long hole-like outer bolt insertion holes 14, the small diameter portion 14s is located on the same side, and the arrangement direction (corresponding to the longitudinal direction) of the small diameter portion 14s and the large diameter portion 14b is parallel to each other. It is provided in the form which becomes.
Incidentally, each inner bolt insertion hole 13 has a circular hole shape, and each long hole-shaped outer bolt insertion hole 14 has a dart hole shape.

又、蓋部11と複数の歯車3の支軸3aとの軸心方向での相対移動を阻止して固定する支軸固定手段Fが設けられている。
更に、歯車3の支軸3aの軸心方向に沿う方向での蓋部11の移動をその蓋部11の姿勢を保った状態で案内する案内機構Gが設けられている。
Further, support shaft fixing means F is provided for preventing and fixing relative movement in the axial direction between the lid portion 11 and the support shafts 3a of the plurality of gears 3.
Further, a guide mechanism G is provided for guiding the movement of the lid portion 11 in the direction along the axial direction of the support shaft 3a of the gear 3 while maintaining the posture of the lid portion 11.

次に、多軸押出機S2の各部について説明を加える。
図2〜図4に示すように、蓋部11は、ケーシング本体5における開口部4が形成された面の外形と略同形の矩形板状に構成されている。
そして、蓋部11の内面(ケーシング本体5に当て付けられる方の面)の中央部に前記一対の軸受部10が取り付けられ、並びに、一対の軸受部10に支持された一対の歯車3の支軸3aを貫通させる一対の支軸貫通孔11hが形成されている。
一対の歯車3の支軸3a夫々における歯車出し入れ側の歯車支持壁体6Aの蓋部11に挿通される部分は、押さえ部12の外面と略面一になる長さであり、その端面には、後述する歯車組付用ボルト15(支軸固定手段Fの一例)を螺合するためのネジ孔3nが形成されている。
Next, description will be added about each part of the multi-screw extruder S2.
As shown in FIGS. 2-4, the cover part 11 is comprised by the rectangular-plate shape substantially the same shape as the external shape of the surface in which the opening part 4 in the casing main body 5 was formed.
The pair of bearing portions 10 are attached to the center of the inner surface of the lid portion 11 (the surface to be applied to the casing body 5), and the pair of gears 3 supported by the pair of bearing portions 10 are supported. A pair of support shaft through-holes 11h are formed through the shaft 3a.
The portion inserted into the lid portion 11 of the gear support wall 6A on the gear insertion / removal side of each of the support shafts 3a of the pair of gears 3 has a length that is substantially flush with the outer surface of the pressing portion 12, A screw hole 3n for screwing a gear assembly bolt 15 (an example of the support shaft fixing means F), which will be described later, is formed.

押さえ部12は、蓋部11の一対の支軸貫通孔11hを外部に臨ませる開口を備えた枠状に構成されている。
図5及び図6にも示すように、押さえ部12は、その押さえ部12と蓋部11とからなる歯車出し入れ側の歯車支持壁体6Aをケーシング本体5に取り付けるための前記固定位置(図5参照)と、その歯車支持壁体6Aをケーシング本体5から取り外すための前記取り外し位置(図6参照)とに、蓋部11の面方向に沿って外側ボルト挿通孔14の長手方向(スライド方向に相当する)に移動自在なように構成されている。
そして、複数の外側ボルト挿通孔14は、押さえ部12を固定位置に位置させたときに、複数の小径部14s夫々が蓋部11の複数の内側ボルト挿通孔13夫々に連通し(図5参照)、且つ、押さえ部12を取り外し位置に位置させたときに、複数の大径部14b夫々が蓋部11の複数の内側ボルト挿通孔13夫々に連通する(図6参照)ように形成されている。
The pressing portion 12 is configured in a frame shape having an opening that allows the pair of support shaft through holes 11 h of the lid portion 11 to face the outside.
As shown also in FIGS. 5 and 6, the pressing portion 12 has the fixing position (FIG. 5) for attaching the gear support wall body 6 </ b> A on the gear loading / unloading side composed of the pressing portion 12 and the lid portion 11 to the casing body 5. Reference) and the removal position (see FIG. 6) for removing the gear support wall 6A from the casing body 5 along the longitudinal direction of the outer bolt insertion hole 14 along the surface direction of the lid 11 (in the sliding direction). It is configured to be movable.
The plurality of outer bolt insertion holes 14 communicate with the plurality of inner bolt insertion holes 13 of the lid portion 11 when the pressing portion 12 is positioned at the fixed position (see FIG. 5). In addition, when the holding portion 12 is positioned at the removal position, the plurality of large diameter portions 14b are formed so as to communicate with the plurality of inner bolt insertion holes 13 of the lid portion 11 (see FIG. 6). Yes.

図2及び図3に示すように、歯車出し入れ側とは別の歯車支持壁体6Bは、歯車出し入れ側の歯車支持壁体6Aの蓋部11と同形状の矩形板状に構成され、その内面の中央部に前記一対の軸受部10が取り付けられている。
その歯車出し入れ側とは別の歯車支持壁体6Bには、固定用ボルト8の軸部8aが挿通可能で且つ固定用ボルト8の頭部8hよりも小径の円孔状の複数のボルト挿通孔7が、ケーシング本体5の複数のネジ孔5nに対応するように、歯車支持壁体6Bの周縁部に略均等に分散して形成され、更に、一対の軸受部10に支持された一対の歯車3の支軸3aを貫通させる一対の支軸貫通孔6hが形成されている。
As shown in FIGS. 2 and 3, the gear support wall body 6B different from the gear insertion / removal side is configured as a rectangular plate having the same shape as the lid portion 11 of the gear support wall body 6A on the gear insertion / removal side. The pair of bearing portions 10 are attached to the central portion of the.
A plurality of bolt insertion holes in the form of circular holes having a diameter smaller than that of the head 8h of the fixing bolt 8 can be inserted into the gear support wall 6B different from the gear insertion / removal side. 7 is formed so as to be distributed substantially evenly on the peripheral edge of the gear support wall 6B so as to correspond to the plurality of screw holes 5n of the casing body 5, and further, a pair of gears supported by the pair of bearings 10 A pair of support shaft through-holes 6h that allow the three support shafts 3a to pass therethrough are formed.

図3及び図4に示すように、上述のように構成されたケーシングCは、長孔状の外側ボルト挿通孔14の小径部14sが上側に位置してその外側ボルト挿通孔14の長手方向が上下方向を向く姿勢で、歯車出し入れ側とは別の歯車支持壁体6Bにて、支持部材16により片持ち状に架台17上に配置されている。
そして、押さえ部12を前記スライド方向である上下方向に移動させて、少なくとも外側ボルト挿通孔14の大径部14bに固定用ボルト8が挿通される状態の位置(即ち、取り外し位置)に保持可能なスライド機構Mが設けられている。
このスライド機構Mについて、説明を加える。
図2〜図6に示すように、このようにケーシングCを配置した状態で、押さえ部12の上端部には、蓋部11側に張り出す状態で張り出し部18が設けられ、その張り出し部18に設けられたネジ孔18nに、スライド用ボルト19が、その先端が蓋部11の側面(上端面)に当接する状態で螺合されている(図3参照)。
そして、複数の固定用ボルト8を緩めた状態で、スライド用ボルト19を正逆回転させることにより、押さえ部12を上下方向のスライド方向に移動させて固定位置と取り外し位置とに保持させることができる。つまり、張り出し部18とスライド用ボルト19とにより、スライド機構Mが構成される。ちなみに、スライド用ボルト19としては、例えば六角ボルトが用いられる。
As shown in FIGS. 3 and 4, in the casing C configured as described above, the small-diameter portion 14s of the long hole-like outer bolt insertion hole 14 is located on the upper side, and the longitudinal direction of the outer bolt insertion hole 14 is In a posture facing in the up-down direction, a gear support wall body 6B different from the gear loading / unloading side is disposed on the mount 17 in a cantilever manner by the support member 16.
Then, the holding part 12 can be moved in the vertical direction, which is the sliding direction, and can be held at least at a position where the fixing bolt 8 is inserted through the large-diameter part 14b of the outer bolt insertion hole 14 (that is, the removal position). A sliding mechanism M is provided.
The slide mechanism M will be further described.
As shown in FIGS. 2 to 6, in the state in which the casing C is arranged in this way, a protruding portion 18 is provided on the upper end portion of the pressing portion 12 so as to protrude toward the lid portion 11, and the protruding portion 18. The slide bolt 19 is screwed into the screw hole 18n provided in the front end so that the tip of the slide bolt 19 is in contact with the side surface (upper end surface) of the lid portion 11 (see FIG. 3).
Then, with the plurality of fixing bolts 8 loosened, the holding bolt 12 can be moved in the vertical sliding direction by rotating the sliding bolt 19 forward and backward to be held at the fixing position and the removing position. it can. That is, the slide mechanism M is configured by the overhanging portion 18 and the slide bolt 19. Incidentally, as the slide bolt 19, for example, a hexagon bolt is used.

図3及び図4に示すように、架台17上には、一対のガイドシャフト20(案内機構Gの一例)がケーシングCの下方に配置され、夫々の長手方向を歯車3の支軸3aの軸心方向に沿う状態で歯車出し入れ側の歯車支持壁体6Aの側にケーシングCから突出するように設けられている。
一対のガイドシャフト20の夫々には、筒状のガイド部材21がガイドシャフト20の長手方向に移動自在に外嵌状に設けられ、ガイド板22が立ち姿勢でそれら一対のガイド部材21に支持されている。
つまり、ガイド板22が一対のガイドシャフト20の案内により歯車3の支軸3aの軸心方向に移動自在に設けられている。
As shown in FIGS. 3 and 4, a pair of guide shafts 20 (an example of a guide mechanism G) are disposed on the gantry 17 below the casing C, and the longitudinal directions of the shafts are the axes of the support shafts 3 a of the gears 3. It is provided so as to protrude from the casing C on the side of the gear support wall 6A on the gear insertion / removal side in a state along the center direction.
A cylindrical guide member 21 is provided on each of the pair of guide shafts 20 so as to be movable in the longitudinal direction of the guide shaft 20, and a guide plate 22 is supported by the pair of guide members 21 in a standing posture. ing.
That is, the guide plate 22 is provided so as to be movable in the axial direction of the support shaft 3 a of the gear 3 by the guide of the pair of guide shafts 20.

ガイド板22には、歯車出し入れ側の歯車支持壁体6Aの押さえ部12に当て付けた状態で、一対の歯車3の支軸3a夫々の端面に形成されたネジ孔3nと夫々同心になるように、一対のボルト挿通孔22hが形成されている。
そして、ガイド板22を押さえ部12に当て付けた状態で、歯車組付用ボルト15を各ボルト挿通孔22hを通して各歯車3の支軸3aのネジ孔3nに螺合して締め付けることにより、複数の歯車3、蓋部11及び押さえ部12を一体に組み付けることができる。
つまり、ガイド板22及び2個の歯車組付用ボルト15により、前記支軸固定手段Fが構成され、一対のガイドシャフト20により、前記案内機構Gが構成されることになる。
The guide plate 22 is concentric with the screw holes 3n formed on the end surfaces of the support shafts 3a of the pair of gears 3 in a state where the guide plate 22 is in contact with the pressing portion 12 of the gear support wall 6A on the gear insertion / removal side. In addition, a pair of bolt insertion holes 22h is formed.
Then, with the guide plate 22 applied to the holding part 12, the gear assembly bolts 15 are screwed into the screw holes 3n of the support shafts 3a of the gears 3 through the respective bolt insertion holes 22h and tightened. The gear 3, the lid part 11, and the pressing part 12 can be assembled together.
That is, the support shaft fixing means F is configured by the guide plate 22 and the two gear assembly bolts 15, and the guide mechanism G is configured by the pair of guide shafts 20.

次に、図5〜図7に基づいて、複数の歯車3をケーシング本体5から取り出したりケーシング本体5に入れるための手順を説明する。尚、図5の(a)は、多軸押出機S2の要部の正面図であり、(b)は、(a)のVb−Vb矢視図であり、図6の(a)は、多軸押出機S2の要部の正面図であり、(b)は、(a)のVIb−VIb矢視図である。   Next, a procedure for taking out the plurality of gears 3 from the casing body 5 and putting it into the casing body 5 will be described with reference to FIGS. In addition, (a) of FIG. 5 is a front view of the principal part of multi-screw extruder S2, (b) is a Vb-Vb arrow view of (a), (a) of FIG. It is a front view of the principal part of multi-screw extruder S2, (b) is a VIb-VIb arrow line view of (a).

図5及び図7の(a)に示すように、歯車出し入れ側の歯車支持壁体6Aがケーシング本体5に固定された状態では、押さえ部12が固定位置に位置して、押さえ部12の複数の外側ボルト挿通孔14の小径部14s夫々が蓋部11の複数の内側ボルト挿通孔13夫々と連通しており、各固定用ボルト8の軸部8aが各外側ボルト挿通孔14の小径部14s及び各内側ボルト挿通孔13に挿通されて、ケーシング本体5の各ネジ孔5nに螺合されて締め付けられている。   As shown in FIGS. 5 and 7A, in the state where the gear support wall 6A on the gear insertion / removal side is fixed to the casing body 5, the pressing portion 12 is positioned at the fixed position, and a plurality of the pressing portions 12 are provided. small-diameter portion 14s of s small diameter portion 14s each of the outer bolt insertion hole 14 is passed through a plurality of inner bolt insertion holes 13 respectively and the communication of the lid portion 11, the shaft portion 8a of the fixing bolt 8 is the outer bolt holes 14 And inserted into each inner bolt insertion hole 13 and screwed into each screw hole 5n of the casing body 5 to be tightened.

複数の歯車3をケーシング本体5から取り出すときは、図6(a)に示すように、先ず、各固定用ボルト8をケーシング本体5の各ネジ孔5nから抜けない程度に緩める。
次いで、図7(a)及び(b)に示すように、スライド用ボルト19を張り出し部18のネジ孔18nに螺合する方向に回して、押さえ部12を上方に移動させて取り外し位置に位置させる。このように押さえ部12が取り外し位置に位置する状態では、押さえ部12の複数の外側ボルト挿通孔14の大径部14b夫々が蓋部11の複数の内側ボルト挿通孔13夫々に連通する状態になっている。
When taking out the plurality of gears 3 from the casing body 5, first, as shown in FIG. 6A, first, the fixing bolts 8 are loosened so as not to come out from the screw holes 5 n of the casing body 5.
Next, as shown in FIGS. 7A and 7B, the slide bolt 19 is turned in a direction to be screwed into the screw hole 18n of the overhanging portion 18, and the pressing portion 12 is moved upward to be positioned at the removal position. Let Thus, in the state where the pressing portion 12 is located at the removal position, the large diameter portions 14b of the plurality of outer bolt insertion holes 14 of the pressing portion 12 communicate with the plurality of inner bolt insertion holes 13 of the lid portion 11, respectively. It has become.

次いで、図7の(b)に示すように、ガイド板22を一対のガイドシャフト20に支持して、一対のガイドシャフト20の案内でケーシングCの側に移動させて、歯車出し入れ側の歯車支持壁体6Aの押さえ部12に当て付ける。
そして、ガイド板22の各ボルト挿通孔22hに歯車組付用ボルト15を挿通して、各歯車3の支軸3aのネジ孔3nに螺合して締め付ける。
すると、ガイド板22及び歯車組付用ボルト15からなる支軸固定手段Fにより、複数の歯車3、蓋部11及び押さえ部12が一体に組み付けられる。
Next, as shown in FIG. 7B, the guide plate 22 is supported on the pair of guide shafts 20 and moved to the casing C side by the guide of the pair of guide shafts 20 to support the gear on the gear loading / unloading side. It applies to the pressing part 12 of the wall 6A.
Then, the gear assembly bolts 15 are inserted into the bolt insertion holes 22 h of the guide plate 22, screwed into the screw holes 3 n of the support shafts 3 a of the gears 3, and tightened.
Then, the plurality of gears 3, the lid portion 11, and the pressing portion 12 are integrally assembled by the support shaft fixing means F including the guide plate 22 and the gear assembly bolt 15.

次いで、図6(b)及び図7の(c)に示すように、ガイド板22を一対のガイドシャフト20の案内でケーシング本体5から遠ざかる側に移動させると、押さえ部12の各外側ボルト挿通孔14の大径部14b及び蓋部11の各内側ボルト挿通孔13が各固定用ボルト8から抜けながら、複数の歯車3、蓋部11及び押さえ部12が一体的にケーシング本体5から遠ざかる側に移動して、複数の歯車3がケーシング本体5から取り出される。尚、上述の如き複数の歯車3、蓋部11及び押さえ部12の移動は、ガイド板22を直接引っ張っても良いが、押しボルト等を利用しても良い。
このように複数の歯車3がケーシング本体5から取り出した状態で、複数の歯車3や、ケーシング本体5の歯車収納孔9内等を清掃することになる。
Next, as shown in FIGS. 6B and 7C, when the guide plate 22 is moved to the side away from the casing body 5 by the guide of the pair of guide shafts 20, the outer bolts of the pressing portion 12 are inserted. While the large-diameter portion 14b of the hole 14 and the inner bolt insertion holes 13 of the lid portion 11 are removed from the respective fixing bolts 8, the plurality of gears 3, the lid portion 11 and the pressing portion 12 are integrally separated from the casing body 5. The plurality of gears 3 are removed from the casing body 5. The movement of the plurality of gears 3, the lid portion 11, and the pressing portion 12 as described above may be performed by directly pulling the guide plate 22, but may be performed using a push bolt or the like.
In this manner, with the plurality of gears 3 taken out from the casing body 5, the plurality of gears 3, the inside of the gear housing hole 9 of the casing body 5, and the like are cleaned.

複数の歯車3をケーシング本体5に入れるときは、図7の(c)に示すように、支軸固定手段Fにより複数の歯車3、蓋部11及び押さえ部12を一体に組み付けてケーシング本体5の外部に位置する状態から、ガイド板22を一対のガイドシャフト20の案内でケーシング本体5に近づく側に移動させる。すると、複数の歯車3が開口部4を通してケーシング本体5に入れられつつ、押さえ部12の各外側ボルト挿通孔14の大径部14b及び蓋部11の各内側ボルト挿通孔13にケーシング本体5に螺合された各固定用ボルト8が挿通されて、蓋部11がケーシング本体5に当て付けられる。   When the plurality of gears 3 are put into the casing body 5, as shown in FIG. 7C, the casing body 5 is assembled by assembling the plurality of gears 3, the lid portion 11 and the pressing portion 12 together by the support shaft fixing means F. The guide plate 22 is moved to the side closer to the casing body 5 by the guide of the pair of guide shafts 20 from the state of being located outside. Then, the plurality of gears 3 are inserted into the casing main body 5 through the opening 4, and the large-diameter portion 14 b of each outer bolt insertion hole 14 of the pressing portion 12 and the inner bolt insertion hole 13 of the lid portion 11 are connected to the casing main body 5. The fixing bolts 8 screwed together are inserted, and the lid portion 11 is applied to the casing body 5.

次いで、図5に示すように、スライド用ボルト19を張り出し部18のネジ孔18nから抜く方向に回して、押さえ部12を下方に移動させて固定位置に位置させる。このように押さえ部12が固定位置に位置する状態では、押さえ部12の複数の外側ボルト挿通孔14の小径部14s夫々が蓋部11の複数の内側ボルト挿通孔13夫々と連通する状態となっている。
そして、各固定用ボルト8をケーシング本体5の各ネジ孔5nに螺合して締め付けると、歯車出し入れ側の歯車支持壁体6Aがケーシング本体5に固定されることになる。
Next, as shown in FIG. 5, the slide bolt 19 is rotated in the direction to be pulled out from the screw hole 18 n of the overhanging portion 18, and the pressing portion 12 is moved downward to be positioned at the fixed position. Thus, in the state where the pressing portion 12 is located at the fixed position, the small diameter portions 14 s of the plurality of outer bolt insertion holes 14 of the pressing portion 12 communicate with the plurality of inner bolt insertion holes 13 of the lid portion 11. ing.
When the fixing bolts 8 are screwed into the screw holes 5n of the casing body 5 and tightened, the gear support wall 6A on the gear insertion / removal side is fixed to the casing body 5.

次いで、各歯車組付用ボルト15をガイド板22の各ボルト挿通孔22hから抜いて、ガイド板22を一対のガイドシャフト20の案内でケーシングCから遠ざかる側に移動させて、一対のガイドシャフト20から取り外す。   Next, each gear assembly bolt 15 is removed from each bolt insertion hole 22 h of the guide plate 22, and the guide plate 22 is moved away from the casing C by the guide of the pair of guide shafts 20. Remove from.

〔別実施形態〕
次に別実施形態を説明する。
(A) 上記実施の形態では、多軸押出機S2を、2つの歯車3を複数の押し出し軸として並設配置したギア式ポンプとして構成したが、別に、多軸押出機を、2つのスクリューを複数の押し出し軸として並設配置したスクリュー式等の別形式のポンプとして構成しても構わない。
ここで、受入口から内部に供給される材料を吐出口から押し出すための複数の押し出し軸とは、外周部に材料を収容自在な凹部を形成するように形成され、それら回転することで当該凹部が受入口から材料を受入れ、当該受け入れた材料を吐出口に移動し、当該移動した材料を吐出口に吐出するように構成された軸を示す。
また、上記の実施形態では、ケーシングに収納する押し出し軸の軸数は、2軸で説明したが、この構成に限定されるものではなく、3軸以上で構成しても良い。
[Another embodiment]
Next, another embodiment will be described.
(A) In the above embodiment, the multi-screw extruder S2 is configured as a gear-type pump in which the two gears 3 are arranged side by side with a plurality of extrusion shafts. You may comprise as another type pumps, such as a screw type, arranged in parallel as a plurality of extrusion axes.
Here, the plurality of extrusion shafts for extruding the material supplied from the receiving port to the inside from the discharge port are formed so as to form a concave part capable of accommodating the material on the outer peripheral part, and the concave part is formed by rotating them. Shows a shaft configured to receive material from the receiving port, move the received material to the discharge port, and discharge the moved material to the discharge port.
In the above-described embodiment, the number of extrusion shafts housed in the casing has been described as being two, but is not limited to this configuration, and may be configured with three or more shafts.

(B) 長孔状の外側ボルト挿通孔14の形状は、上記の実施形態の如きだるま孔状に限定されるものではなく、固定用ボルト8の軸部8aが挿通可能で且つ固定用ボルト8の頭部8hよりも小径の小径部14sと固定用ボルト8の頭部8hが通過可能な大径部14bとを連通して備える条件で、種々の形状が可能である。 (B) The shape of the long hole-like outer bolt insertion hole 14 is not limited to the shape of the daruma hole as in the above embodiment, but the shaft portion 8a of the fixing bolt 8 can be inserted and the fixing bolt 8 can be inserted. Various shapes are possible under the condition that the small-diameter portion 14s having a smaller diameter than the head portion 8h and the large-diameter portion 14b through which the head portion 8h of the fixing bolt 8 can pass are communicated.

(C) 押さえ部12のスライド方向は、上記の実施形態の如き直線状に限定されるものではなく、円弧状等の曲線状でも良い。
そして、長孔状の外側ボルト挿通孔14の長手方向は、押さえ部12のスライド方向に合致した形状とする。
(C) The sliding direction of the pressing portion 12 is not limited to a linear shape as in the above embodiment, and may be a curved shape such as an arc shape.
The longitudinal direction of the long hole-like outer bolt insertion hole 14 is made to match the sliding direction of the pressing portion 12.

(D) 固定用ボルト8、歯車組付用ボルト15及びスライド用ボルト19としては、上記の実施形態にて例示した六角ボルト以外に、種々のボルトを用いることができる。例えば、頭部が円柱状で六角形の孔を備えた六角穴付ボルト(キャップボルト)を用いることができる。 (D) As the fixing bolt 8, the gear assembly bolt 15, and the slide bolt 19, various bolts can be used in addition to the hexagon bolts exemplified in the above embodiment. For example, a hexagon socket head cap screw (cap bolt) having a columnar head and a hexagonal hole can be used.

(E) 上記の実施形態では、支軸固定手段Fを構成するガイド板22を、一対のガイドシャフト20により歯車3の支軸3aの軸心方向に沿う方向に移動案内されるように設けたが、このガイド板22を一対のガイドシャフト20から切り離した状態で設けても良い。
この場合は、蓋部11に一対のガイド部材21を取り付けて、その一対のガイド部材21を案内機構Gとしての一対のガイドシャフト20に外嵌させることにより、蓋部11を直接一対のガイドシャフト20により歯車3の支軸3aの軸心方向に沿う方向に移動案内するように構成することになる。そして、ガイド板22は、押さえ部12への当て付け、押さえ部12からの取り外し自在とする。
又、上記の実施形態では、支軸固定手段Fを、複数の歯車3、蓋部11及び押さえ部12を一体に組み付けるように構成して、複数の歯車3、蓋部11及び押さえ部12を一体でケーシング本体5から取り外したりケーシング本体5に取り付けるように構成した。
これに代えて、支軸固定手段Fを、複数の歯車3と蓋部11のみを一体に組み付けるように構成して、複数の歯車3及び蓋部11のみを一体でケーシング本体5から取り外したりケーシング本体5に取り付けるようにしても良い。このようにすると、押さえ部12をこれら複数の歯車3及び蓋部11とは別にケーシング本体5から取り外したりケーシング本体5に取り付けることになる。
つまり、複数の歯車3をケーシング本体5から取り出すときは、先ず、押さえ部12をケーシング本体5から取り外してから、ガイド板22を一対のガイドシャフト20の案内でケーシング本体5に近づく側に移動させて蓋部11に当て付け、ガイド板22の各ボルト挿通孔22hに歯車組付用ボルト15を挿通して、各歯車3の支軸3aのネジ孔3nに螺合することにより、複数の歯車3及び蓋部11を一体に組み付けることになる。又、複数の歯車3をケーシング本体5に入れるときは、上述のように一体に組み付けた状態でケーシング本体5の外部に位置する複数の歯車3及び蓋部11を、一対のガイドシャフト20の案内でケーシング本体5に近づく側に移動させて、複数の歯車3をケーシング本体5に入れてから、押さえ部12をケーシング本体5に取り付けることになる。
(E) In the above embodiment, the guide plate 22 constituting the support shaft fixing means F is provided so as to be moved and guided by the pair of guide shafts 20 in a direction along the axial center direction of the support shaft 3 a of the gear 3. However, the guide plate 22 may be provided in a state of being separated from the pair of guide shafts 20.
In this case, by attaching a pair of guide members 21 to the lid portion 11 and fitting the pair of guide members 21 to a pair of guide shafts 20 as the guide mechanism G, the lid portion 11 is directly attached to the pair of guide shafts. 20 is configured to move and guide in a direction along the axial direction of the support shaft 3a of the gear 3. The guide plate 22 can be applied to the pressing portion 12 and can be removed from the pressing portion 12.
Further, in the above embodiment, the support shaft fixing means F is configured so that the plurality of gears 3, the lid portion 11 and the pressing portion 12 are assembled together, and the plurality of gears 3, the lid portion 11 and the pressing portion 12 are assembled. It was configured to be integrally removed from the casing body 5 or attached to the casing body 5.
Instead of this, the support shaft fixing means F is configured so that only the plurality of gears 3 and the lid 11 are assembled together, and only the plurality of gears 3 and the lid 11 are integrally removed from the casing body 5 or the casing. You may make it attach to the main body 5. FIG. If it does in this way, the press part 12 will be removed from the casing main body 5 separately from these some gears 3 and the cover part 11, or will be attached to the casing main body 5.
That is, when taking out the plurality of gears 3 from the casing body 5, first, the pressing portion 12 is removed from the casing body 5, and then the guide plate 22 is moved to the side closer to the casing body 5 by the guide of the pair of guide shafts 20. And a plurality of gears by inserting the gear assembly bolts 15 into the bolt insertion holes 22h of the guide plate 22 and screwing them into the screw holes 3n of the support shafts 3a of the gears 3, respectively. 3 and the lid 11 are assembled together. Further, when the plurality of gears 3 are put into the casing body 5, the plurality of gears 3 and the lid portion 11 positioned outside the casing body 5 in the state of being integrally assembled as described above are guided by the pair of guide shafts 20. Then, after moving to the side closer to the casing body 5 and putting the plurality of gears 3 into the casing body 5, the pressing portion 12 is attached to the casing body 5.

(F) 上記の実施形態では、一対のガイドシャフト20をケーシングCを支持する架台17に設けて、案内機構Gを架台17と一体的に組付ける場合について例示したが、案内機構Gを架台17と別体で設けても良い。
この場合は、図8に示すように、ケーシングCを支持する架台17とは別体の案内機構支持用架台23上に、上記の実施形態と同様の一対のガイドシャフト20を設けることになる。この場合、案内機構支持用架台23を移動可能に構成すれば、多軸押出機S2を通常運転するときは、案内機構GをケーシングCから離れた場所に移動させることができるので、案内機構Gが通常の材料押出作業の邪魔になるのを防止することができる。
(F) In the above embodiment, the case where the pair of guide shafts 20 is provided on the gantry 17 that supports the casing C and the guide mechanism G is assembled integrally with the gantry 17 is illustrated. And may be provided separately.
In this case, as shown in FIG. 8, a pair of guide shafts 20 similar to those in the above-described embodiment are provided on the guide mechanism support base 23 that is separate from the base 17 that supports the casing C. In this case, if the guide mechanism support base 23 is configured to be movable, the guide mechanism G can be moved away from the casing C when the multi-screw extruder S2 is normally operated. Can be prevented from interfering with the normal material extrusion operation.

(G) ガイド板22を一対のガイドシャフト20の案内で移動させるために、電動シリンダ、油圧シリンダ等のアクチュエータを設けても良い。又、押さえ部12を固定位置と取り外し位置とにわたって移動させるために、電動シリンダ、油圧シリンダ等のアクチュエータを設けても良い。 (G) In order to move the guide plate 22 by the guide of the pair of guide shafts 20, an actuator such as an electric cylinder or a hydraulic cylinder may be provided. Further, an actuator such as an electric cylinder or a hydraulic cylinder may be provided in order to move the pressing portion 12 between the fixed position and the removal position.

(H) 上記の実施形態では、一対のガイドシャフト20をケーシングCの下方に設けて、ガイド板22を立ち姿勢で案内する場合について例示したが、ガイド板22を案内する形態は、このように立ち姿勢で案内する形態に限定されるものではない。
例えば、一対のガイドシャフト20をケーシングCの上方に設けて、ガイド板22を吊り下げ姿勢で案内する形態でも良い。
(H) In the above embodiment, the case where the pair of guide shafts 20 is provided below the casing C and the guide plate 22 is guided in a standing posture is illustrated. However, the guide plate 22 is guided in this manner. It is not limited to the form of guiding in a standing posture.
For example, a pair of guide shafts 20 may be provided above the casing C, and the guide plate 22 may be guided in a suspended posture.

(I) 上記の実施形態のように、スライド機構Mを張り出し部18とスライド用ボルト19とにより構成する場合、張り出し部18を押さえ部12の下端部に設けても良い。
又、スライド機構Mは、上記の実施形態の構成に限定されるものではなく、クランプ用部品、カム機構、シリンダ等を備えて構成しても良い。
(I) When the slide mechanism M is configured by the overhanging portion 18 and the slide bolt 19 as in the above embodiment, the overhanging portion 18 may be provided at the lower end of the pressing portion 12.
Further, the slide mechanism M is not limited to the configuration of the above-described embodiment, and may be configured to include a clamping part, a cam mechanism, a cylinder, and the like.

(J) ケーシングCの配置形態は、外側ボルト挿通孔14の長手方向が横方向を向く配置形態でも良い。
この場合は、例えば、押さえ部12の左右方向の一端に張り出し部18を設け、その張り出し部18に設けられたネジ孔18nにスライド用ボルト19の先端が蓋部11の側面に当接する状態で螺合させ、押さえ部12を横方向のスライド方向に移動させて固定位置と取り外し位置とに位置させることになる。
(J) The arrangement form of the casing C may be an arrangement form in which the longitudinal direction of the outer bolt insertion hole 14 faces the horizontal direction.
In this case, for example, a protruding portion 18 is provided at one end in the left-right direction of the pressing portion 12, and the tip of the slide bolt 19 is in contact with the side surface of the lid portion 11 in the screw hole 18 n provided in the protruding portion 18. By screwing, the pressing portion 12 is moved in the lateral sliding direction to be positioned at the fixing position and the detaching position.

(K) 上記の実施形態の如き案内機構Gを省略して、支軸固定手段Fにより一体に組付けた複数の歯車3、蓋部11及び押さえ部12を台車等により移動させて、ケーシング本体5に対して出し入れするようにしても良い。 (K) The guide mechanism G as in the above embodiment is omitted, and the plurality of gears 3, the lid portion 11 and the pressing portion 12 assembled together by the support shaft fixing means F are moved by a carriage or the like, and the casing body 5 may be taken in and out.

以上説明したように、分解清掃作業の迅速化及び簡素化を図り得る多軸押出機を提供することができる。   As described above, a multi-screw extruder capable of speeding up and simplifying the disassembly and cleaning work can be provided.

1 受入口
2 吐出口
3 歯車(押し出し軸)
3a 支軸
4 開口部
5 ケーシング本体
6 歯車支持壁体(軸支持壁体)
7 ボルト挿通孔
8 固定用ボルト
8a 軸部
8h 頭部
11 蓋部
12 押さえ部
13 内側ボルト挿通孔
14 外側ボルト挿通孔
14b 大径部
14s 小径部
18 張り出し部
18n ネジ孔
19 スライド用ボルト
A 回転軸心
C ケーシング
F 支軸固定手段
G 案内機構
M スライド機構
1 Receiving port 2 Discharging port 3 Gear (extrusion shaft)
3a Support shaft 4 Opening 5 Casing body 6 Gear support wall (shaft support wall)
7 Bolt insertion hole 8 Fixing bolt 8a Shaft part 8h Head part 11 Lid part 12 Holding part 13 Inner bolt insertion hole 14 Outer bolt insertion hole 14b Large diameter part 14s Small diameter part 18 Overhang part 18n Screw hole 19 Slide bolt A Rotating shaft Center C Casing F Spindle fixing means G Guide mechanism M Slide mechanism

Claims (4)

受入口から内部に供給される材料を吐出口から押し出すための複数の押し出し軸を回転自在に収納し且つそれら複数の押し出し軸を出し入れするための開口部を備えたケーシング本体と、前記複数の押し出し軸の支軸の一端を回転自在に支持した状態で前記開口部を閉じる軸支持壁体とを備えたケーシングが設けられ、
前記軸支持壁体に形成された複数のボルト挿通孔を通して前記押し出し軸の回転軸心に沿う方向で前記ケーシング本体に螺合されて、前記軸支持壁体を前記ケーシング本体に固定する複数の固定用ボルトが設けられた多軸押出機であって、
前記軸支持壁体が、前記複数の押し出し軸の支軸を回転自在に支持する蓋部とその蓋部の外側に重ねられてその蓋部の面方向に沿うスライド方向に沿って移動自在な押さえ部とを備えて構成され、
前記蓋部に、前記複数のボルト挿通孔として、前記固定用ボルトの頭部が通過可能な複数の内側ボルト挿通孔が設けられ、
前記押さえ部に、前記複数のボルト挿通孔として、前記固定用ボルトの軸部が挿通可能で且つ前記固定用ボルトの頭部よりも小径の小径部と前記固定用ボルトの頭部が通過可能な大径部とを連通して備えた複数の長孔状の外側ボルト挿通孔が、夫々の長手方向を前記スライド方向に沿わせた状態で設けられ、
前記複数の固定用ボルトを緩めた状態で、前記押さえ部が、前記外側ボルト挿通孔の前記小径部に前記固定用ボルトが挿通される状態の位置と前記大径部に前記固定用ボルトが挿通される状態の位置とにわたって前記スライド方向に沿って移動自在とされている多軸押出機。
A casing main body that rotatably accommodates a plurality of extrusion shafts for extruding material supplied to the inside from the receiving port from the discharge port, and has an opening for taking in and out the plurality of extrusion shafts, and the plurality of extrusions A casing provided with a shaft support wall that closes the opening in a state in which one end of a support shaft of the shaft is rotatably supported;
A plurality of fixings that are screwed into the casing body in a direction along the rotation axis of the push-out shaft through a plurality of bolt insertion holes formed in the shaft supporting wall body, and fix the shaft supporting wall body to the casing body. A multi-screw extruder provided with a bolt for use,
The shaft support wall body is overlapped on the outer side of the lid portion that rotatably supports the support shafts of the plurality of push-out shafts and is movable along the sliding direction along the surface direction of the lid portion. And comprising
The lid portion is provided with a plurality of inner bolt insertion holes through which the heads of the fixing bolts can pass as the plurality of bolt insertion holes,
As the plurality of bolt insertion holes, a shaft portion of the fixing bolt can be inserted into the pressing portion, and a small diameter portion smaller than the head of the fixing bolt and a head of the fixing bolt can pass through. A plurality of elongated outer bolt insertion holes provided in communication with the large-diameter portion are provided in a state in which the respective longitudinal directions are along the slide direction,
With the plurality of fixing bolts loosened, the holding portion is inserted into the position where the fixing bolt is inserted into the small diameter portion of the outer bolt insertion hole and the large diameter portion. A multi-screw extruder that is movable along the sliding direction over a position in a state of being operated.
前記蓋部と前記複数の押し出し軸の支軸との軸心方向での相対移動を阻止して固定する支軸固定手段が設けられている請求項1に記載の多軸押出機。   2. The multi-screw extruder according to claim 1, further comprising support shaft fixing means for preventing and fixing relative movement in an axial direction between the lid portion and the support shafts of the plurality of extrusion shafts. 前記支軸の軸心方向に沿う方向での前記蓋部の移動をその蓋部の姿勢を保った状態で案内する案内機構が設けられている請求項2に記載の多軸押出機。   The multi-screw extruder according to claim 2, wherein a guide mechanism is provided for guiding the movement of the lid in a direction along the axial direction of the support shaft in a state in which the attitude of the lid is maintained. 前記押さえ部が設けられた前記ケーシングが、前記長孔状の外側ボルト挿通孔の長手方向が上下方向を向く姿勢で配置され、
前記押さえ部を前記スライド方向である上下方向に移動させて、少なくとも前記外側ボルト挿通孔の前記大径部に前記固定用ボルトが挿通される状態の位置に保持可能なスライド機構が設けられている請求項1〜3のいずれか1項に記載の多軸押出機。
The casing provided with the pressing portion is arranged in a posture in which the longitudinal direction of the elongated hole-like outer bolt insertion hole is directed in the vertical direction,
There is provided a slide mechanism capable of moving the pressing portion in the vertical direction that is the sliding direction, and holding the fixing bolt at a position where the fixing bolt is inserted into at least the large-diameter portion of the outer bolt insertion hole. The multi-screw extruder according to any one of claims 1 to 3.
JP2009176217A 2009-07-29 2009-07-29 Multi-screw extruder Expired - Fee Related JP5180160B2 (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62129589A (en) * 1985-11-25 1987-06-11 ザ ギヤレツト コーポレーシヨン Gear pump
JPH022867U (en) * 1988-06-16 1990-01-10
JPH05126064A (en) * 1991-04-08 1993-05-21 Bridgestone Corp Gear type measuring pump for synthesized elastic material
JP2001182669A (en) * 1999-12-27 2001-07-06 Mikuni Adec Corp Trochoid pump

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62129589A (en) * 1985-11-25 1987-06-11 ザ ギヤレツト コーポレーシヨン Gear pump
JPH022867U (en) * 1988-06-16 1990-01-10
JPH05126064A (en) * 1991-04-08 1993-05-21 Bridgestone Corp Gear type measuring pump for synthesized elastic material
JP2001182669A (en) * 1999-12-27 2001-07-06 Mikuni Adec Corp Trochoid pump

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