JP2007301685A - Copying mechanism in chamfering machine - Google Patents

Copying mechanism in chamfering machine Download PDF

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JP2007301685A
JP2007301685A JP2006133386A JP2006133386A JP2007301685A JP 2007301685 A JP2007301685 A JP 2007301685A JP 2006133386 A JP2006133386 A JP 2006133386A JP 2006133386 A JP2006133386 A JP 2006133386A JP 2007301685 A JP2007301685 A JP 2007301685A
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chamfering
swing arm
chamfered
arm
workpiece
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Sakae Kimura
栄 木村
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KAMIYA SEIKI KK
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KAMIYA SEIKI KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a copying mechanism capable of simply, surely and neatly chamfering along unevenness even on a part to be chamfered of an object designed with the unevenness, simple in structure, suitable for mass production, excellent in durability, easy in maintenance, easy to handle and economical. <P>SOLUTION: The copying mechanism includes a substrate 1 to be mounted appropriately on a supporting means S3 of a chamfering machine S, a swinging arm 10 to be mounted on the substrate 1 to be vertically swingable appropriately via a swinging and supporting means, a chamfering tool 25 mounted toward one end from the swinging center of the arm 10, and a weight 21 mounted toward the other end from the swinging center of the arm 10. The mechanism is formed so that the location of the weight 21 can be adjusted, and is structured to cause a rotary cutter 26 of the tool 25 to chamfer the part to be chamfered of the object H carried in an upwardly facing posture by a conveyance means S2 while copying by means of a torque occurring on the arm 10 by gravity. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、適宜被加工物の面取り加工部分(例えば、外装に軽量気泡製コンクリートパネルを使用した建築物の出隅部分に使用される断面が略L字状のコーナーパネルの頂縁部分等)を、その凹凸に沿って綺麗に面取り加工できるように工夫した面取り加工機に於ける倣い機構に関するものである。   The present invention is a chamfered portion of a workpiece as appropriate (for example, a top edge portion of a corner panel having a substantially L-shaped cross section used for a corner portion of a building using a lightweight cellular concrete panel as an exterior) Is a copying mechanism in a chamfering machine devised so that it can be chamfered cleanly along the irregularities.

従来、この種の面取り加工機としては、例えば、特許文献1に示すようなコーナーパネルの切削装置が開示されている。
そして、このコーナーパネルの切削装置は、断面がL字状のコ−ナ−パネルの外面を支承して搬送するV型のロ−ラ−コンベア−、このロ−ラ−コンベア−に載置された前記コ−ナ−パネルの内面を外面に向かって押圧するロ−ラ−、コ−ナ−パネルの複数個の凸角部を同時に切削可能な切削機、およびこの切削機に向かってコ−ナ−パネルをその後方から全長にわたって押し込む押し込み機構を備えたものである。
Conventionally, as this type of chamfering machine, for example, a corner panel cutting device as disclosed in Patent Document 1 is disclosed.
The corner panel cutting device is mounted on a V-shaped roller conveyor that supports and conveys the outer surface of an L-shaped corner panel, and this roller conveyor. In addition, a roller that presses the inner surface of the corner panel toward the outer surface, a cutting machine that can simultaneously cut a plurality of convex corners of the corner panel, and a coil toward the cutting machine. A pushing mechanism is provided for pushing the knurled panel from its rear side over its entire length.

実開平5−51611号公報Japanese Utility Model Publication No. 5-51611

ところが、前述の如きコーナーパネルの切削装置にあっては、面取り加工部分にデザインとしての凹凸がある場合、この凹凸に沿って面取り加工を施すことが難しい等の難点があった。
そこで、本発明は、前述の如き難点等を解消できるようにするのは勿論のこと、被加工物の面取り加工部分にどのような凹凸があっても、この凹凸に沿った面取り加工が簡単に、確実に、且つ綺麗に行えるようにし、しかも、構成が簡素で、量産に適し、耐久性に優れ、メンテナンスも容易で、取り扱い易く、経済的な倣い機構を提供できるようにすべく創出されたものである。
However, in the corner panel cutting apparatus as described above, when the chamfered portion has a design asperity, it is difficult to chamfer along the unevenness.
Therefore, the present invention not only makes it possible to eliminate the above-mentioned difficulties, but also makes it easy to chamfer along the irregularities regardless of the irregularities in the chamfered portion of the workpiece. It was created to provide a copying mechanism that is reliable and clean, yet simple in structure, suitable for mass production, excellent in durability, easy to maintain, easy to handle, and economical. Is.

しかして、前述の如き課題を達成すべく、本発明の請求項1記載の面取り加工機に於ける倣い機構にあっては、被加工物Hの面取り加工部分を、その凹凸に沿って面取り加工できるよう構成した面取り加工機Sに於ける倣い機構であって、面取り加工機Sの適宜支持手段S3に装着される基板1と、この基板1に適宜揺動支持手段を介して上下方向に揺動自在となるよう装着される揺動アーム10と、この揺動アーム10の揺動中心を境として一端がわに装着される面取り加工具25と、揺動アーム10に装着される重り21とを備え、揺動アーム10に於ける重り21の取付け位置を調整できるよう形成し、重力により揺動アーム10に生じる回転モーメントを利用して、面取り加工機Sの適宜搬送手段S2によって上向き状態で搬送される被加工物Hの面取り加工部分を、面取り加工具25の適宜回転カッター26が倣いながら面取りできるよう構成する手段を採用した。   Therefore, in order to achieve the above-described problem, in the copying mechanism in the chamfering machine according to claim 1 of the present invention, the chamfered portion of the workpiece H is chamfered along the unevenness thereof. This is a copying mechanism in the chamfering machine S configured to be able to perform, and a substrate 1 mounted on an appropriate support means S3 of the chamfering machine S, and an up-and-down swing on the substrate 1 through an appropriate swing support means. A swing arm 10 that is mounted so as to be movable, a chamfering tool 25 that is mounted on one end with the swing center of the swing arm 10 as a boundary, and a weight 21 that is mounted on the swing arm 10. And is formed so that the mounting position of the weight 21 on the swing arm 10 can be adjusted, and is turned upward by an appropriate conveying means S2 of the chamfering machine S using the rotational moment generated in the swing arm 10 by gravity. Transported Chamfering portion of the workpiece H, employing a means be configured to be chamfered while appropriately rotating cutter 26 of chamfering tool 25 is copying.

また、請求項2記載の面取り加工機に於ける倣い機構にあっては、揺動アーム10に当接可能となるストッパー6を基板1に配すると共に、ストッパー6の配設位置を調整できるように形成して、面取り加工具25の回転カッター26が被加工物Hの面取り加工部分を所定量以上に面取りすべく揺動アーム10が揺動するのを規制できるよう構成する手段を採用した。   Further, in the copying mechanism in the chamfering machine according to claim 2, the stopper 6 that can come into contact with the swing arm 10 is arranged on the substrate 1, and the arrangement position of the stopper 6 can be adjusted. In this case, the rotating cutter 26 of the chamfering tool 25 is configured to be able to restrict the swing arm 10 from swinging to chamfer the chamfered portion of the workpiece H to a predetermined amount or more.

更に、請求項3記載の面取り加工機に於ける倣い機構にあっては、揺動アーム10の一端がわに装着される面取り加工具25の取付け角度を自由に調整できるよう構成する手段を採用した。   Furthermore, in the copying mechanism in the chamfering machine according to claim 3, means is adopted in which the mounting angle of the chamfering tool 25 to which one end of the swing arm 10 is attached can be freely adjusted. did.

従って、本発明の請求項1記載の面取り加工機に於ける倣い機構によれば、被加工物Hの面取り加工部分にデザインとしての凹凸等があっても、この凹凸に沿った面取り加工が簡単に、確実に、且つ綺麗に行えるようになる。
しかも、構成が簡素で、量産に適し、耐久性に優れ、メンテナンスも容易で、取り扱い易く、経済的な倣い機構を提供できるようになる。
Therefore, according to the copying mechanism in the chamfering machine according to claim 1 of the present invention, even if the chamfered portion of the workpiece H has irregularities as a design, chamfering along the irregularities is easy. In addition, it can be done reliably and cleanly.
In addition, the copying mechanism is simple, suitable for mass production, excellent in durability, easy to maintain, easy to handle and economical.

特に、重力により揺動アーム10に生じる回転モーメントを利用して、面取り加工機Sの適宜搬送手段S2によって上向き状態で搬送される被加工物Hの面取り加工部分を、面取り加工具25の適宜回転カッター26が倣いながら面取りできるよう構成したので、被加工物Hの面取り加工部分にデザインとしての凹凸等があった場合でも、その凸部分と凹部分とを面取り加工している時の揺動アーム10に生じる回転モーメント(面取り加工具25の回転カッター26が被加工物Hを圧迫する力)に差がなく、正確で綺麗な面取り加工が実現できるようになる。   In particular, by using the rotational moment generated in the swing arm 10 by gravity, the chamfering tool 25 rotates the chamfering part 25 of the workpiece H that is conveyed in an upward state by the appropriate conveying means S2 of the chamfering machine S. Since the cutter 26 can be chamfered while copying, even if the chamfered portion of the workpiece H has irregularities as a design, the swing arm when the convex portion and the concave portion are chamfered. 10 has no difference in rotational moment (the force with which the rotary cutter 26 of the chamfering tool 25 presses the workpiece H), and an accurate and clean chamfering process can be realized.

加えて、揺動アーム10に面取り加工具25を装着してあるので、面取り加工具25(回転カッター26)を機敏に上下動させることができるようになり、回転カッター26が被加工物Hの面取り加工部分の凹凸をスムーズに且つ機敏に倣うことができ、正確で綺麗な面取り加工が実現できるようになる。ひいては、被加工物Hの処理速度(面取り加工機Sの搬送手段S2の搬送速度)を上げることも可能となり、作業効率の向上にも役立つようになる。   In addition, since the chamfering tool 25 is mounted on the swing arm 10, the chamfering tool 25 (rotating cutter 26) can be moved up and down quickly, and the rotating cutter 26 can move the workpiece H. The unevenness of the chamfered portion can be imitated smoothly and quickly, and an accurate and clean chamfering can be realized. As a result, it is possible to increase the processing speed of the workpiece H (the conveyance speed of the conveyance means S2 of the chamfering machine S), which also helps to improve the work efficiency.

そして、揺動アーム10に於ける重り21の取付け位置を調整できるよう形成したので、面取り加工具25の回転カッター26が被加工物Hを圧迫する力を、簡単に、正確に、且つ細かく調整でき、しかも、取り扱い易く、使い勝手の優れたものとなる。   And since it was formed so that the attachment position of the weight 21 in the swing arm 10 could be adjusted, the force with which the rotary cutter 26 of the chamfering tool 25 presses the workpiece H can be adjusted easily, accurately and finely. It is easy to handle and easy to use.

また、本発明の請求項2記載の面取り加工機に於ける倣い機構によれば、揺動アーム10の揺動をストッパー6によって簡単に且つ確実に規制できるようになり、面取り加工具25の回転カッター26が被加工物Hの面取り加工部分を所定量以上に面取りするのを、確実に防止できるようになる。ひいては、倣い機構の損傷や、面取り加工不良による被加工物Hの損失等を防止できるようになる。
しかも、ストッパー6の配設位置を調整できるように形成してあるので、揺動アーム10の揺動規制位置を簡単に、確実に、且つ正確に調整できるようになる。
Further, according to the copying mechanism in the chamfering machine according to claim 2 of the present invention, the swing of the swing arm 10 can be easily and surely restricted by the stopper 6, and the rotation of the chamfering tool 25 can be controlled. It becomes possible to reliably prevent the cutter 26 from chamfering the chamfered portion of the workpiece H to a predetermined amount or more. As a result, damage to the copying mechanism, loss of the workpiece H due to chamfering defects, and the like can be prevented.
In addition, since the arrangement position of the stopper 6 can be adjusted, the rocking restriction position of the rocking arm 10 can be adjusted easily, reliably and accurately.

更に、本発明の請求項3記載の面取り加工機に於ける倣い機構によれば、被加工物Hの面取り加工部分への回転カッター26の接触角度を任意に変更できるようになり、被加工物Hに応じてより最適な面取り加工が行えるようになる。   Further, according to the copying mechanism in the chamfering machine according to claim 3 of the present invention, the contact angle of the rotary cutter 26 to the chamfered portion of the workpiece H can be arbitrarily changed, and the workpiece More optimal chamfering can be performed according to H.

以下、本発明を図示例に基づいて説明すると、次の通りである。
本発明は、例えば、外装に軽量気泡製コンクリートパネルを使用した建築物の出隅部分に使用される断面が略L字状のコーナーパネル等の頂縁部分を、その凹凸に沿って綺麗に面取り加工できるように構成された面取り加工機Sに設けられる倣い機構に係るものである。
具体的には、面取り加工機Sの適宜支持手段S3に装着される基板1と、この基板1に適宜揺動支持手段を介して上下方向に揺動自在となるよう装着される揺動アーム10と、この揺動アーム10の揺動中心を境として一端がわに装着される面取り加工具25と、揺動アーム10に装着される重り21とを備えたものである。(尚、重り21は、揺動アーム10の揺動中心を境として他端がわに装着されているが、これに限定されるものではない。)
そして、揺動アーム10に於ける重り21の取付け位置を調整できるよう形成し、重力により揺動アーム10に生じる回転モーメントを利用して、面取り加工機Sの適宜搬送手段S2によって上向き状態で搬送される被加工物Hの面取り加工部分を、面取り加工具25の適宜回転カッター26が倣いながら面取りできるよう構成されている。
また、揺動アーム10に当接可能となるストッパー6を基板1に配すると共に、ストッパー6の配設位置を調整できるように形成して、面取り加工具25の回転カッター26が被加工物Hの面取り加工部分を所定量以上に面取りすべく揺動アーム10が揺動するのを規制できるよう構成されている。
更に、揺動アーム10の一端がわに装着される面取り加工具25の取付け角度を自由に調整できるよう構成されている。
Hereinafter, the present invention will be described based on illustrated examples as follows.
The present invention, for example, cleanly chamfers the top edge portion of a corner panel or the like having a substantially L-shaped cross section used for a corner portion of a building using a lightweight cellular concrete panel for the exterior along the unevenness. The present invention relates to a copying mechanism provided in the chamfering machine S configured to be machined.
Specifically, the substrate 1 mounted on the appropriate support means S3 of the chamfering machine S, and the swing arm 10 mounted on the substrate 1 so as to be swingable in the vertical direction via the swing support means as appropriate. And a chamfering tool 25 having one end mounted on the wing with the swing center of the swing arm 10 as a boundary, and a weight 21 mounted on the swing arm 10. (While the weight 21 is attached to the other end with the swing center of the swing arm 10 as a boundary, the present invention is not limited to this.)
Then, the mounting position of the weight 21 on the swing arm 10 can be adjusted, and transported in an upward state by the appropriate transport means S2 of the chamfering machine S using the rotational moment generated in the swing arm 10 by gravity. The chamfered portion of the workpiece H to be processed is configured to be chamfered while the rotary cutter 26 of the chamfering tool 25 appropriately follows.
In addition, a stopper 6 that can come into contact with the swing arm 10 is disposed on the substrate 1 and formed so that the position of the stopper 6 can be adjusted. The rocking arm 10 is configured to be able to restrict the rocking arm 10 from chamfering to chamfer the chamfered portion to a predetermined amount or more.
Further, the mounting angle of the chamfering tool 25 to which one end of the oscillating arm 10 is attached to the alligator can be freely adjusted.

図示例の面取り加工機Sは、基台S1と、この基台S1の上に立設されると共に、被加工物Hを所定の姿勢のまま所定方向に水平移動可能となるように構成されている搬送手段S2と、基台S1の上に立設されると共に、本発明の倣い機構の基板1を支持する支持手段S3とを少なくとも備えている。
そして、前記支持手段S3は、基板1を上下方向に移動自在となるように構成された昇降機能と、基板1を搬送手段S2がわに向って進退自在に移動できるよう構成された水平移動機能と、基板1を鉛直面内に於いてその取付角度が自在に調整できるように構成された俯仰機能とを備えている。
The chamfering machine S of the illustrated example is configured to stand on the base S1 and the base S1, and to horizontally move the workpiece H in a predetermined direction with a predetermined posture. And at least a support means S3 which stands on the base S1 and supports the substrate 1 of the copying mechanism of the present invention.
The support means S3 includes an elevating function configured to move the substrate 1 up and down and a horizontal moving function configured to move the substrate 1 so that the conveying means S2 can move forward and backward. And an up-and-down function configured so that the mounting angle of the substrate 1 can be freely adjusted in the vertical plane.

また、前記基板1は、例えば、矩形状の金属製板材等によって形成され、面取り加工機Sの支持手段S3に装着できるように形成される。
しかも、中央から稍一端寄りの円孔部分を中心として俯仰自在となるよう支持手段S3に装着されている。
The substrate 1 is formed of, for example, a rectangular metal plate or the like, and is formed so that it can be attached to the support means S3 of the chamfering machine S.
Moreover, it is mounted on the support means S3 so that it can be raised and lowered about the circular hole portion near the one end of the heel from the center.

更に、基板1の一端寄りには、揺動アーム10を揺動自在に支持する揺動支持手段の取付軸2が固定されている。   Further, an attachment shaft 2 of a swing support means for swingably supporting the swing arm 10 is fixed near one end of the substrate 1.

そして、基板1の他端がわ上部には、ストッパー取付体5が固定(例えば、ネジ止め)され、このストッパー取付体5に螺刻した雌ネジ孔にストッパー6のネジ棒部分が螺着されている。
尚、前記ストッパー6は、例えば、ネジ棒の先端にストッパー本体を固着して構成されており、このストッパー本体が揺動アーム10の他端がわ上端面に当接可能となるように形成されている。
A stopper mounting body 5 is fixed (for example, screwed) to the upper end of the other end of the substrate 1, and a screw rod portion of the stopper 6 is screwed into a female screw hole screwed into the stopper mounting body 5. ing.
The stopper 6 is configured, for example, by fixing a stopper body to the tip of a screw rod, and this stopper body is formed so that the other end of the swing arm 10 can come into contact with the upper end surface of the arm. ing.

前記揺動アーム10は、例えば、適宜金属材等によって略細長帯板状に形成され、取付軸2を含む適宜揺動支持手段を介して基板1に揺動自在に装着されている。
しかも、揺動アーム10の長手方向略中央部分には、円形状の取付孔11が穿設され、この取付孔11を中心として上下方向に揺動できるように形成してある。
For example, the swing arm 10 is formed in a substantially elongated strip shape with a metal material or the like as appropriate, and is swingably mounted on the substrate 1 through appropriate swing support means including the mounting shaft 2.
In addition, a circular attachment hole 11 is formed in a substantially central portion in the longitudinal direction of the swing arm 10 so that the swing arm 10 can swing up and down around the attachment hole 11.

ところで、揺動アーム10を揺動自在に支持する揺動支持手段は、例えば、取付軸2と、一対のベアリングホルダー12、13と、スラストタイプの一対のベアリング14、16と、ラジアルタイプのベアリング15と、ワッシャー17と、ナット18とを備え、一方のベアリングホルダー12は、取付軸2に回動自在に装着され、一方のベアリング14は、一方のベアリングホルダー12に収容されると共にこのベアリングホルダー12と揺動アーム10との間に介装され、ラジアルタイプのベアリング15は、取付軸2に外装されると共に揺動アーム10の取付孔11に内嵌され、他方のベアリング16は、他方のベアリングホルダー13に収容されると共にこのベアリングホルダー13と揺動アーム10との間に介装され、ナット18は、取付軸2にの先端部分に螺着されると共に、ワッシャー17を介して他方のベアリングホルダー13の側面に当接している。
すなわち、揺動支持手段は、揺動アーム10が基板1に安定的に装着され、しかも、揺動アーム10がスムーズに且つ軽快に揺動できるように構成されたものであれば良い。
By the way, the swing support means for swingably supporting the swing arm 10 includes, for example, the mounting shaft 2, a pair of bearing holders 12 and 13, a pair of thrust type bearings 14 and 16, and a radial type bearing. 15, a washer 17, and a nut 18. One bearing holder 12 is rotatably mounted on the mounting shaft 2, and one bearing 14 is accommodated in one bearing holder 12 and the bearing holder. The radial type bearing 15 is externally mounted on the mounting shaft 2 and fitted in the mounting hole 11 of the swinging arm 10, and the other bearing 16 is interposed between the other bearing 16 and the swinging arm 10. The nut 18 is accommodated in the bearing holder 13 and interposed between the bearing holder 13 and the swing arm 10. , While being screwed to the tip portion of the mounting shaft 2, we are in contact through a washer 17 on the side face of the other bearing holder 13.
In other words, the swing support means may be any one that is configured so that the swing arm 10 can be stably mounted on the substrate 1 and the swing arm 10 can swing smoothly and lightly.

また、揺動アーム10の他端がわの側面下部には、揺動アーム10の長手方向に平行となるような略細長長円状の取付長溝20が凹設され、この取付長溝20と固定ネジ22を利用して、適宜重り21が揺動アーム10の長手方向に移動自在となるように装着されている。
すなわち、重り21は、溝形状に形成されて揺動アーム10の下端縁部分がその溝内に収まるように形成され、その側壁部に螺刻した雌ネジ孔に螺着される固定ネジ22の先端部分が取付長溝20内に収まることにより、揺動アーム10からの脱落が防止されるように形成されている。しかも、固定ネジ22の先端部分で取付長溝20の奥壁を圧接することで、揺動アーム10の任意の位置で重り21を固定できるように構成されている。
Further, a substantially elongated oblong mounting groove 20 that is parallel to the longitudinal direction of the swinging arm 10 is formed in the lower part of the side surface of the swing arm 10 at the other end, and is fixed to the mounting long groove 20. A weight 21 is appropriately mounted using the screw 22 so as to be movable in the longitudinal direction of the swing arm 10.
That is, the weight 21 is formed in a groove shape so that the lower end edge portion of the swing arm 10 is accommodated in the groove, and the fixing screw 22 is screwed into the female screw hole threaded on the side wall portion. When the tip portion is accommodated in the attachment long groove 20, the tip portion is formed so as to be prevented from falling off the swing arm 10. In addition, the weight 21 can be fixed at an arbitrary position of the swing arm 10 by pressing the back wall of the mounting long groove 20 with the tip of the fixing screw 22.

前記取付長溝20は、例えば、揺動アーム10の揺動中心を越えて一端がわにまで延長するように構成したものでも良い。すなわち、重り21を揺動アーム10の一端がわにも移動させることができるように形成しておき、面取り加工具25の回転カッター26が被加工物Hに当接する力を強くすることができるようにしても良い。   For example, the long mounting groove 20 may be configured such that one end extends to the alligator beyond the swing center of the swing arm 10. That is, the weight 21 is formed so that one end of the swing arm 10 can be moved to the outside, and the force with which the rotary cutter 26 of the chamfering tool 25 abuts the workpiece H can be increased. You may do it.

更に、揺動アーム10の一端がわには、例えば、加工具取付体23がネジ止め固定され、この加工具取付体23に面取り加工具25を着脱自在に固定できるよう構成されている。
尚、前記加工具取付体23は、例えば、揺動アーム10の一端がわに予め複数設けた雌ネジ孔を利用して、その取付角度を自由に変更できるように形成しても良いし、或いは、加工具取付体23自身に角度調節機能を設けても良い。すなわち、面取り加工具25(回転カッター26)の取付け角度を自由に調整できるように形成してあれば良い。
また、加工具取付体23は、揺動アーム10のどの位置に装着しても良いし、揺動アーム10の左右側面のどちらに装着しても良いものである。
Furthermore, for example, a processing tool mounting body 23 is fixed to the end of the swing arm 10 with a screw, and the chamfering processing tool 25 can be detachably fixed to the processing tool mounting body 23.
The processing tool mounting body 23 may be formed so that the mounting angle can be freely changed using, for example, a plurality of female screw holes provided in advance at one end of the swing arm 10. Or you may provide an angle adjustment function in the processing tool attachment body 23 itself. That is, what is necessary is just to form so that the attachment angle of the chamfering processing tool 25 (rotary cutter 26) can be adjusted freely.
Further, the processing tool attachment body 23 may be mounted at any position of the swing arm 10 or may be mounted on either the left or right side surface of the swing arm 10.

加えて、揺動アーム10の一端がわには、別途重りを付設できるように形成しておき、面取り加工具25の回転カッター26が被加工物Hに当接する力を強くすることができるように構成しても良い。   In addition, one end of the oscillating arm 10 is formed so that a separate weight can be attached to the end, so that the force with which the rotary cutter 26 of the chamfering tool 25 abuts on the workpiece H can be increased. You may comprise.

前記面取り加工具25は、例えば、エアルーターや電動ルーター等が利用され、また、前記回転カッター26は、複数の切削刃が設けられたものでも良いし、或いは、研削砥石等を利用したものであっても良い。   For example, an air router or an electric router is used as the chamfering tool 25, and the rotary cutter 26 may be provided with a plurality of cutting blades, or may use a grinding wheel or the like. There may be.

本発明の倣い機構は、前述のごとく構成されており、次に、その使用例について説明する。
先ず、重り21の位置調整及びストッパー6の位置調整を行って、面取り加工具25の回転カッター26が所望位置に配されるようにセットする。そして、面取り加工機Sの搬送手段S2に被加工物Hをセットすると共に、被加工物Hを所定向きに搬送する。すると、回転カッター26が被加工物Hの面取り加工部分に当接すると共に面取り加工を行う。このとき、回転カッター26(及び揺動アーム10)は、被加工物Hの面取り加工部分の凹凸に応じて上下し、被加工物Hの面取り加工部分の凹凸に沿って綺麗に面取り加工を行うようになる。
尚、面取り加工機Sは、搬送手段S2に沿うように複数の面取り加工具25を配しても良いし、被加工物Hに対する回転カッター26の接触角度も適宜自由に設定、変更することができる。
The copying mechanism of the present invention is configured as described above. Next, an example of its use will be described.
First, the weight 21 and the stopper 6 are adjusted so that the rotary cutter 26 of the chamfering tool 25 is placed at a desired position. And while setting the workpiece H to the conveyance means S2 of the chamfering machine S, the workpiece H is conveyed in a predetermined direction. Then, the rotary cutter 26 contacts the chamfered portion of the workpiece H and performs chamfering. At this time, the rotary cutter 26 (and the swing arm 10) moves up and down according to the unevenness of the chamfered portion of the workpiece H, and cleanly chamfers along the unevenness of the chamfered portion of the workpiece H. It becomes like this.
The chamfering machine S may be provided with a plurality of chamfering tools 25 along the conveying means S2, and the contact angle of the rotary cutter 26 with respect to the workpiece H can be set and changed as appropriate. it can.

ところで、倣い機構の具体的構成、面取り加工機Sの具体的構成、形状、寸法、材質、基台S1の具体的構成、形状、寸法、配設位置、搬送手段S2の具体的構成、形状、寸法、配設位置、支持手段S3の具体的構成、形状、寸法、配設位置、数、基板1の具体的構成、形状、寸法、材質、配設位置、取付軸2の具体的構成、形状、寸法、材質、配設位置、ストッパー取付体5の具体的構成、形状、寸法、材質、配設位置、ストッパー6の具体的構成、形状、寸法、材質、配設位置、数、揺動アーム10の具体的構成、形状、寸法、材質、配設位置、取付孔11の具体的構成、形状、寸法、配設位置、ベアリングホルダー12、13の具体的構成、形状、寸法、材質、配設位置、ベアリング14、15、16の具体的構成、形状、寸法、数、配設位置、ワッシャー17の具体的構成、形状、寸法、材質、数、ナット18の具体的構成、形状、寸法、材質、数、取付長溝20の具体的構成、形状、寸法、配設位置、数、重り21の具体的構成、形状、寸法、材質、配設位置、数、固定ネジ22の具体的構成、形状、寸法、材質、加工具取付体23の具体的構成、形状、寸法、材質、配設位置、面取り加工具25の具体的構成、形状、寸法、回転カッター26の具体的構成、形状、寸法、材質、被加工物Hの具体的構成、形状、寸法、材質等は、図示例のもの等に限定されることなく、適宜自由に設定、変更できるものである。   By the way, a specific configuration of the copying mechanism, a specific configuration of the chamfering machine S, a shape, a dimension, a material, a specific configuration of the base S1, a shape, a dimension, an arrangement position, a specific configuration of the conveying means S2, a shape, Dimensions, location, specific configuration of support means S3, shape, dimensions, location, number, specific configuration of substrate 1, shape, dimensions, material, location, specific configuration of mounting shaft 2, shape , Dimensions, material, arrangement position, specific configuration of stopper mounting body 5, shape, dimensions, material, arrangement position, specific configuration of stopper 6, shape, dimensions, material, arrangement position, number, swing arm 10 specific configurations, shapes, dimensions, materials, arrangement positions, specific configurations of mounting holes 11, shapes, dimensions, arrangement positions, specific configurations of bearing holders 12, 13, shapes, dimensions, materials, arrangements Position, specific configuration of bearings 14, 15, 16, shape, dimensions, number, Installation position, specific configuration of washer 17, shape, dimensions, material, number, specific configuration of nut 18, shape, size, material, number, specific configuration of mounting long groove 20, shape, size, arrangement position, number , Specific configuration of weight 21, shape, dimensions, material, arrangement position, number, specific configuration of fixing screw 22, shape, dimensions, material, specific configuration of work tool mounting body 23, shape, dimensions, material, Arrangement position, specific configuration, shape and dimensions of chamfering tool 25, specific configuration of rotary cutter 26, shape, dimensions, material, specific configuration of workpiece H, shape, dimensions, material, etc. It can be freely set and changed as appropriate without being limited to the above.

本発明の倣い機構を備えた面取り加工機を例示する正面図である。It is a front view which illustrates the chamfering processing machine provided with the copying mechanism of the present invention. 本発明の倣い機構を備えた面取り加工機を例示する側面図である。It is a side view which illustrates the chamfering processing machine provided with the copying mechanism of the present invention. 本発明の倣い機構を備えた面取り加工機を例示する平面図である。It is a top view which illustrates the chamfering machine provided with the copying mechanism of this invention. 本発明の倣い機構を例示する分解斜視図である。It is a disassembled perspective view which illustrates the copying mechanism of this invention. 本発明の倣い機構を例示する正面図である。It is a front view which illustrates the copying mechanism of this invention. 本発明の倣い機構を例示する平面図である。It is a top view which illustrates the copying mechanism of this invention. 被加工物の倣い面取り状態を例示する正面図である。It is a front view which illustrates the copying chamfering state of a workpiece.

符号の説明Explanation of symbols

1 基板
2 取付軸
5 ストッパー取付体
6 ストッパー
10 揺動アーム
11 取付孔
12 ベアリングホルダー
13 ベアリングホルダー
14 ベアリング
15 ベアリング
16 ベアリング
17 ワッシャー
18 ナット
20 取付長溝20
21 重り
22 固定ネジ22
23 加工具取付体23
25 面取り加工具
26 回転カッター
S 面取り加工機
S1 基台
S2 搬送手段
S3 支持手段
H 被加工物
DESCRIPTION OF SYMBOLS 1 Board | substrate 2 Mounting shaft 5 Stopper mounting body 6 Stopper 10 Oscillating arm 11 Mounting hole 12 Bearing holder 13 Bearing holder 14 Bearing 15 Bearing 16 Bearing 17 Washer 18 Nut 20 Mounting long groove 20
21 Weight 22 Fixing screw 22
23 Work tool mounting body 23
25 Chamfering tool 26 Rotating cutter S Chamfering machine S1 Base S2 Conveying means S3 Supporting means H Workpiece

Claims (3)

被加工物の面取り加工部分を、その凹凸に沿って面取り加工できるよう構成した面取り加工機に於ける倣い機構であって、面取り加工機の適宜支持手段に装着される基板と、この基板に適宜揺動支持手段を介して上下方向に揺動自在となるよう装着される揺動アームと、この揺動アームの揺動中心を境として一端がわに装着される面取り加工具と、揺動アームに装着される重りとを備え、揺動アームに於ける重りの取付け位置を調整できるよう形成し、重力により揺動アームに生じる回転モーメントを利用して、面取り加工機の適宜搬送手段によって上向き状態で搬送される被加工物の面取り加工部分を、面取り加工具の適宜回転カッターが倣いながら面取りできるよう構成したことを特徴とする面取り加工機に於ける倣い機構。   A copying mechanism in a chamfering machine configured so that a chamfered portion of a workpiece can be chamfered along the unevenness, and a substrate mounted on an appropriate support means of the chamfering machine, and an appropriate A swing arm mounted so as to be swingable in the vertical direction via the swing support means, a chamfering tool mounted at one end with the swing center of the swing arm as a boundary, and the swing arm The weight mounting position is adjusted so that the mounting position of the weight on the swing arm can be adjusted. A chamfering mechanism in a chamfering machine, wherein a chamfered portion of a workpiece conveyed by the chamfering device is configured to be chamfered while appropriately chamfering a chamfering tool. 揺動アームに当接可能となるストッパーを基板に配すると共に、ストッパーの配設位置を調整できるように形成して、面取り加工具の回転カッターが被加工物の面取り加工部分を所定量以上に面取りすべく揺動アームが揺動するのを規制できるよう構成したことを特徴とする請求項1記載の面取り加工機に於ける倣い機構。   A stopper that can come into contact with the swing arm is arranged on the substrate, and the stopper is positioned so that the position of the stopper can be adjusted, so that the rotary cutter of the chamfering tool increases the chamfered part of the workpiece to a predetermined amount or more. 2. The copying mechanism in a chamfering machine according to claim 1, wherein the swinging arm is restricted from swinging to be chamfered. 揺動アームの一端がわに装着される面取り加工具の取付け角度を自由に調整できるよう構成したことを特徴とする請求項1または請求項2記載の面取り加工機に於ける倣い機構。   3. The copying mechanism in a chamfering machine according to claim 1, wherein the mounting angle of the chamfering tool to which one end of the swing arm is attached to the crocodile can be freely adjusted.
JP2006133386A 2006-05-12 2006-05-12 Copying mechanism in chamfering machine Pending JP2007301685A (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108214163A (en) * 2017-12-15 2018-06-29 浙江创凯机电科技有限公司 Metal snap block facing attachment
JP2021092141A (en) * 2021-01-26 2021-06-17 株式会社西田 Manufacturing device of tabular material
JP2021167561A (en) * 2017-12-26 2021-10-21 株式会社西田 Manufacturing device of projected corner material

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JPH0413214U (en) * 1990-05-25 1992-02-03
JPH06277999A (en) * 1993-03-29 1994-10-04 Sanritsu Seiki Kk Chamfering grinder
JPH08323524A (en) * 1995-05-29 1996-12-10 Ishikawajima Harima Heavy Ind Co Ltd Chamfering device
JP2006097405A (en) * 2004-09-30 2006-04-13 Nichiha Corp Method and device for applying chamfering work to apex angle part of projected corner column

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6383248U (en) * 1986-11-20 1988-06-01
JPH0413214U (en) * 1990-05-25 1992-02-03
JPH06277999A (en) * 1993-03-29 1994-10-04 Sanritsu Seiki Kk Chamfering grinder
JPH08323524A (en) * 1995-05-29 1996-12-10 Ishikawajima Harima Heavy Ind Co Ltd Chamfering device
JP2006097405A (en) * 2004-09-30 2006-04-13 Nichiha Corp Method and device for applying chamfering work to apex angle part of projected corner column

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108214163A (en) * 2017-12-15 2018-06-29 浙江创凯机电科技有限公司 Metal snap block facing attachment
JP2021167561A (en) * 2017-12-26 2021-10-21 株式会社西田 Manufacturing device of projected corner material
JP7160401B2 (en) 2017-12-26 2022-10-25 株式会社西田 Protruding corner material manufacturing equipment
JP2021092141A (en) * 2021-01-26 2021-06-17 株式会社西田 Manufacturing device of tabular material
JP7012395B2 (en) 2021-01-26 2022-01-28 株式会社西田 Plate-shaped material manufacturing equipment

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