JP2014201974A - Clamp device - Google Patents

Clamp device Download PDF

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JP2014201974A
JP2014201974A JP2013079265A JP2013079265A JP2014201974A JP 2014201974 A JP2014201974 A JP 2014201974A JP 2013079265 A JP2013079265 A JP 2013079265A JP 2013079265 A JP2013079265 A JP 2013079265A JP 2014201974 A JP2014201974 A JP 2014201974A
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circular mounting
clamp
hole
peripheral wall
mounting hole
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JP5739933B2 (en
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章浩 渡
Akihiro Watari
章浩 渡
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Kunimoto Shokai Co Ltd
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Kunimoto Shokai Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a safely usable clamp device by mutually connecting-fixing two clamps in a constant direction.SOLUTION: A clamp device is provided for mutually fixing both clamps 1A and 1B in a constant direction by joining mutual mutually adjacent substrate parts 12 and 14 of the two clamps 1A and 1B, and a substrate part 12 of the one clamp 1A is provided with a burring hole 13 having a cylindrical peripheral wall 13a projecting to the other substrate part 14 side, and a substrate part 14 of the other clamp 1B is provided with a circular fitting hole 15 capable of penetrating the cylindrical peripheral wall 13a of the burring hole 13, and the peripheral edge of this circular fitting hole 15 is formed with a recessed part 16 with every proper interval in a circumferential direction, and a cylindrical peripheral wall 13a of the burring hole 13 penetrating through this circular fitting hole 15, is constituted for forming a slipping-out preventive collar part 17 by curling its tip to the outside, and pressurizing and forming a rotation preventive projection part 18 biting in the recessed part 16 on the peripheral edge of the circular fitting hole 15.

Description

本発明は、仮設足場の組立てなどに使用されるクランプ装置であって、2つのクランプを一定の向きで互に連結固定したクランプ装置に関するものである。   The present invention relates to a clamp device used for assembling a temporary scaffold, etc., and relates to a clamp device in which two clamps are connected and fixed to each other in a fixed direction.

この種のクランプ装置は、2つのクランプの互に隣接する基板部どうしを結合して、両クランプを一定の向きで互に固定したものであるが、従来のこの種のクランプ装置として、特許文献1にも記載されるように、一方のクランプの基板部に角筒状周壁付き孔(バーリング孔)を設け、他方のクランプの基板部には、前記角筒状周壁付き孔の角筒状周壁が相対回転不能に貫通する角孔を設け、この角孔から突出した前記角筒状周壁の先端を外側にカーリング加工して抜け止め用鍔部を形成したものが知られている。   This type of clamping device is obtained by joining adjacent substrate portions of two clamps and fixing both clamps to each other in a fixed direction. 1, a hole with a square cylindrical peripheral wall (burring hole) is provided in the base plate part of one clamp, and the square cylindrical peripheral wall of the hole with the square cylindrical peripheral wall is provided in the base part of the other clamp. Is known in which a square hole penetrating in a relatively non-rotatable manner is provided, and the tip of the square cylindrical peripheral wall protruding from the square hole is curled outward to form a retaining collar.

特開2005−36555号公報JP 2005-36555 A

上記のような従来の向き固定型のクランプ装置では、前記角筒状周壁付き孔の角筒状周壁が6〜8角形のものであるため、この角筒状周壁と相手側の角孔との当接斜辺と、当該角筒状周壁付き孔と同心の仮想円と前記当接斜辺とが接する位置での仮想接線との間の角度が小さいため、両クランプを前記角筒状周壁付き孔の軸心の周りに相対回転させる方向の大きな外力が作用したとき、前記角筒状周壁の角部の内側への変形を伴って、角筒状周壁と相手側の角孔とが容易に相対回転し、所期通りの回り止め効果が得られなくなる問題点があった。勿論、前記角筒状周壁を角数の少ない例えば4角形にするなどして、前記当接斜辺と仮想接線との間の角度を大きくすることも考えられるが、このような角筒状周壁では、特許文献1にも記載されるように、この角筒状周壁付き孔を備えた一方のクランプを、2つのクランプが前記角筒状周壁付き孔の軸心の周りに相対回転自在な自在型クランプ装置を組み立てるときの一方のクランプとして利用することが出来ず、向き固定型クランプ装置の組立て専用のクランプとなってしまう。   In the conventional orientation-fixed clamping device as described above, since the square cylindrical peripheral wall of the hole with the square cylindrical peripheral wall is a 6-8 octagonal one, the square cylindrical peripheral wall and the opposite square hole Since the angle between the abutting oblique side and the virtual tangent at the position where the abutting oblique side comes into contact with the virtual circle concentric with the square cylindrical peripheral wall hole is small, both clamps are connected to the square cylindrical peripheral wall hole. When a large external force acting in the direction of relative rotation around the axis acts, the square cylindrical peripheral wall and the opposing square hole easily rotate relative to each other with deformation to the inside of the corner of the rectangular cylindrical peripheral wall. However, there is a problem that the desired anti-rotation effect cannot be obtained. Of course, it is conceivable to increase the angle between the abutting hypotenuse and the virtual tangent line by, for example, making the rectangular cylindrical peripheral wall into a quadrangular shape with a small number of corners, but in such a rectangular cylindrical peripheral wall, As described in Patent Document 1, one of the clamps provided with the hole with the square cylindrical peripheral wall is a free type in which the two clamps are relatively rotatable around the axis of the hole with the square cylindrical peripheral wall. It cannot be used as one of the clamps when assembling the clamp device, and becomes a clamp dedicated to the assembly of the fixed orientation clamp device.

本発明は、上記のような従来の問題点を解消することのできるクランプ装置を提案するものであって、本発明に係るクランプ装置は、後述する実施例との関係を理解し易くするために、当該実施例の説明において使用した参照符号を括弧付きで付して示すと、2つのクランプ(1a,1B)の互に隣接する基板部(12,14)どうしを結合して、両クランプ(1A,1B)を一定の向きで互に固定したクランプ装置において、一方のクランプ(1A)の基板部(12)には、他方の基板部(14)側に突出する円筒状周壁(13a)を備えたバーリング孔(13)が設けられ、他方のクランプ(1B)の基板部(14)には、前記バーリング孔(13)の円筒状周壁(13a)が貫通し得る円形取付け孔(15)が設けられ、この円形取付け孔(15)の周縁には、周方向適当間隔おきに凹部(16)が形成され、この円形取付け孔(15)を貫通した前記バーリング孔(13)の円筒状周壁(13a)は、その先端を外側にカーリングさせて抜け止め用鍔部(17)を形成させると共に、前記円形取付け孔(15)の周縁の凹部(16)に食い込む回り止め用突出部(18)を加圧形成させた構成になっている。   The present invention proposes a clamping device that can solve the above-described conventional problems, and the clamping device according to the present invention is intended to make it easier to understand the relationship with embodiments described later. When the reference numerals used in the description of the embodiment are shown in parentheses, the substrate parts (12, 14) adjacent to each other of the two clamps (1a, 1B) are joined together, and both clamps ( 1A, 1B) is fixed to each other in a fixed direction, the cylindrical portion (13a) projecting toward the other substrate portion (14) is provided on the substrate portion (12) of one clamp (1A). A burring hole (13) is provided, and a circular mounting hole (15) through which the cylindrical peripheral wall (13a) of the burring hole (13) can pass is provided in the base plate part (14) of the other clamp (1B). Recesses (16) are formed on the periphery of the circular mounting hole (15) at appropriate intervals in the circumferential direction, and pass through the circular mounting hole (15). The cylindrical peripheral wall (13a) of the burring hole (13) is curled at its tip outward to form a retaining collar (17), and at the periphery of the circular mounting hole (15) (16). This is a structure in which a rotation preventing projection (18) that bites into the pressure is formed by pressure.

上記本発明の構成によれば、一方のクランプの基板部に設けられたバーリング孔の円筒状周壁に対する加圧加工のみで、別部品を全く使用せずに組み立てることが出来るものであって、両クランプ間に、前記バーリング孔の軸心の周りの相対回転を生じさせる向きの外力が作用したときは、前記バーリング孔の円筒状周壁に形成した回り止め用突出部と、他方のクランプの基板部に設けられた円形取付け孔周縁の凹部との食い込み嵌合部により、当該外力に抗するものであるが、このとき、前記凹部を備えた取付け用円形孔の内周辺と前記凹部に食い込み嵌合した前記回り止め用突出部は、円筒状周壁先端の抜け止め用鍔部と当該円筒状周壁が連設された基板部との間で挟み付けられているので、両クランプを相対回転させようとする前記外力が非常に大きくとも、前記凹部の拡大変形や当該凹部内からの前記回り止め用突出部の内側への抜け出しを伴って、両クランプ間の回り止め作用が無くなってしまう恐れは殆どない。   According to the configuration of the present invention described above, it is possible to assemble without using any separate parts by only pressing the cylindrical peripheral wall of the burring hole provided in the substrate portion of one clamp. When an external force in a direction that causes relative rotation around the axis of the burring hole is applied between the clamps, the rotation-preventing protrusion formed on the cylindrical peripheral wall of the burring hole and the substrate portion of the other clamp It is against the external force by the bite fitting part with the concave part of the peripheral edge of the circular mounting hole provided in this, but at this time, it bites and fits into the inner periphery of the circular hole for mounting provided with the concave part and the concave part. The anti-rotation protrusion is sandwiched between the retaining collar at the tip of the cylindrical peripheral wall and the substrate portion on which the cylindrical peripheral wall is connected. To the outside Even very large, with the exit to the interior of the rotation stop protrusion from expansion deformation or the inner recess of the recess, there is little possibility that disappears detent action between the two clamps.

換言すれば、前記バーリング孔の内径を出来る限り大きくすると共に、前記凹部と回り止め用突出部との食い込み嵌合深さも出来る限り深くするだけで、両クランプ間に、前記バーリング孔の軸心の周りの相対回転を生じさせる向きの非常に大きな外力が作用したときでも、確実に両クランプを所期通りの一定の向きに固定されている状態で安全に使用することが出来る。更に、本発明の構成によれば、バーリング孔を備えた基板部を有する一方のクランプは、クランプの基板部に前記バーリング孔の円筒状周壁が貫通する円形孔、特に強度アップを図るために周縁にバーリング加工が施された円形孔を設けたクランプに、前記バーリング孔の円筒状周壁の先端に前記抜け止め用鍔部のみを形成させる方法で連結することにより、両クランプが前記バーリング孔の軸心の周りに自由回転自在な自在型クランプの一方のクランプとしても活用出来る。   In other words, the inner diameter of the burring hole is made as large as possible, and the depth of the bite fitting between the recess and the rotation preventing projection is made as deep as possible. Even when a very large external force acting in a direction causing relative rotation is applied, both clamps can be used safely in a state in which both clamps are securely fixed in a predetermined direction. Further, according to the configuration of the present invention, the one clamp having the substrate portion provided with the burring hole is a circular hole through which the cylindrical peripheral wall of the burring hole penetrates the substrate portion of the clamp, particularly the peripheral edge for increasing the strength. By connecting the clamp with a circular hole with a burring process to the tip of the cylindrical peripheral wall of the burring hole by a method of forming only the retaining collar, both clamps are connected to the shaft of the burring hole. It can also be used as one of the free clamps that can freely rotate around the heart.

尚、前記回り止め用突出部(18)は、前記円形取付け孔(15)の凹部(16)に、前記抜け止め用鍔部(17)のある側とは反対側から当該円形取付け孔(15)の軸心方向に嵌合するように形成するか又は、前記円形取付け孔(15)の凹部(16)の、当該円形取付け孔(15)の軸心方向の全域に内側から嵌合するように形成することが出来る。前者の構成は、回り止め用突出部の加圧成形が容易であり、後者の構成は、回り止め効果が高められる。又、前記円形取付け孔(15)の凹部(16)は、周方向に隙間なく隣接するように配設して、当該円形取付け孔の内周を連続する凹凸状に形成しても良いが、周方向に隣り合う各凹部(16)間に当該円形取付け孔(15)の円弧状周面(15a)が残される間隔で設けると共に、当該円形取付け孔(15)の軸心方向から見たときの形状がほぼ半円形であるように構成すれば、円形取付け孔に対してバーリング孔を確実に同心状に保持して連結一体化することが容易になる。しかも回り止め用突出部が食い込み嵌合する凹部側に入隅状角が無いので、両クランプ間に甚大な前記外力が作用したとき、前記凹部から亀裂が入って破断される恐れも少なくなる。   The rotation preventing protrusion (18) is formed in the circular mounting hole (15) from the side opposite to the side where the retaining collar (17) is located in the recess (16) of the circular mounting hole (15). ) In the axial direction of the circular mounting hole (15), or the concave portion (16) of the circular mounting hole (15) so as to be fitted from the inside to the entire axial direction of the circular mounting hole (15). Can be formed. The former configuration facilitates pressure molding of the rotation preventing projection, and the latter configuration enhances the rotation preventing effect. Further, the recess (16) of the circular mounting hole (15) may be arranged so as to be adjacent to each other without any gap in the circumferential direction, and the inner periphery of the circular mounting hole may be formed in a continuous uneven shape, When the arcuate peripheral surface (15a) of the circular mounting hole (15) is left between the recesses (16) adjacent in the circumferential direction, and when viewed from the axial direction of the circular mounting hole (15) If the shape is substantially semi-circular, it is easy to connect and integrate the burring hole securely and concentrically with the circular mounting hole. Moreover, since there is no corner angle on the concave side where the rotation preventing projection bites and fits, the possibility that the concave portion cracks and breaks when a large external force acts between both clamps is reduced.

図1Aは、組み立てられたクランプ装置の正面図、図1Bは、同左側面図である。FIG. 1A is a front view of the assembled clamping device, and FIG. 1B is a left side view thereof. 図2Aは、一方のクランプの基板部を示す平面図、図2Bは、同基板部の縦断側面図である。FIG. 2A is a plan view showing a substrate portion of one clamp, and FIG. 2B is a longitudinal side view of the substrate portion. 図3Aは、他方のクランプの基板部を示す底面図、図3Bは、同基板部の縦断側面図である。FIG. 3A is a bottom view showing a substrate portion of the other clamp, and FIG. 3B is a vertical side view of the substrate portion. 図4A〜図4Cは、2つのクランプの基板部どうしを連結一体化する作業の各段階を示す縦断側面図である。FIG. 4A to FIG. 4C are vertical side views showing each stage of the work of connecting and integrating the substrate portions of the two clamps. 図5A及び図5Bは、図4A及び図4Bに示す作業段階での底面図、図5Cは、図4Cに示す作業段階での平面図である。5A and 5B are bottom views at the work stage shown in FIGS. 4A and 4B, and FIG. 5C is a plan view at the work stage shown in FIG. 4C. 図6Aは、図4Aの要部拡大図、図6Bは、同要部の横断平面図である。6A is an enlarged view of a main part of FIG. 4A, and FIG. 6B is a cross-sectional plan view of the main part. 図7Aは、変形例における要部の縦断側面図、図7Bは、同要部の横断平面図である。FIG. 7A is a longitudinal side view of a main part in a modification, and FIG. 7B is a transverse plan view of the main part. 図8A〜図8Cは、それぞれ円形取付け孔の変形例を示す平面図である。8A to 8C are plan views showing modifications of the circular mounting holes, respectively.

図1は、本発明に基づいて組み立てられた向き固定型クランプ装置を示しており、この実施例では同一構造の2つのクランプ1A,1Bを、それぞれが挟持する鋼管が互いに直交する向きで、背中合わせに連結固定したものである。各クランプ1A,1Bは、ベース部材2と開閉自在な押え部材3、及び締結用ねじ手段4から構成されている。ベース部材2は、図2及び図3に示すように、一端から斜め外向きに連設され且つ先端に軸受け孔5aを備えたアーム部5と、他端の軸受け孔6aが設けられた巾の狭い軸受け部6を含めて全体が、左右両側辺に内側への立上り側板部を備えた断面コ字形のものである。押え部材3は、一端が前記ベース部材2のアーム部5の先端に内嵌して軸受け孔5aに支軸7により、ベース部材2に対し遠近方向に開閉自在に軸支されたもので、他端の二股部8を含めて全体が、左右両側辺に内側への立上り側板部を備えた断面コ字形のものである。締結用ねじ手段4は、ベース部材2の軸受け部6に一端が内嵌して軸受け孔6aに支軸9により揺動自在に軸支された螺軸10と、この螺軸10に螺嵌されたナット11とから構成されている。   FIG. 1 shows a fixed orientation type clamping apparatus assembled according to the present invention. In this embodiment, two clamps 1A and 1B having the same structure are back-to-back with the steel pipes sandwiched between them being perpendicular to each other. It is connected and fixed to. Each clamp 1A, 1B is comprised from the base member 2, the pressing member 3 which can be opened and closed, and the screw means 4 for fastening. As shown in FIGS. 2 and 3, the base member 2 has a width in which an arm portion 5 which is provided obliquely outward from one end and has a bearing hole 5a at the tip and a bearing hole 6a at the other end is provided. The entire structure including the narrow bearing portion 6 has a U-shaped cross section provided with inwardly rising side plate portions on both left and right sides. The presser member 3 is one end of which is fitted into the tip of the arm portion 5 of the base member 2 and is pivotally supported in the bearing hole 5a by a support shaft 7 so as to be openable and closable with respect to the base member 2. The whole including the bifurcated portion 8 at the end has a U-shaped cross section provided with inwardly rising side plate portions on both left and right sides. The fastening screw means 4 is screwed into the screw shaft 10 and a screw shaft 10 having one end fitted into the bearing portion 6 of the base member 2 and pivotally supported by the support shaft 9 in the bearing hole 6a. And a nut 11.

各クランプ1A,1Bの使用方法は従来周知の通りであって、ベース部材2と押え部材3とで鋼管などの被締結物を挟み付けた状態で、ナット11を螺軸10の先端側に移動させてある状態の当該螺軸10を押え部材3の先端二股部8に嵌合させ、この状態でナット11をねじ込み方向に回転操作して、押え部材3をベース部材2の方へ押圧揺動させ、この押え部材3とベース部材2との間で被締結物を挟持締結するものである。従って、ベース部材2と押え部材3の内側への立上り側板部の内周縁は、被締結物の周面に出来る限り面接触出来るような形状に構成されている。   The use method of each clamp 1A, 1B is as is well known in the art, and the nut 11 is moved to the distal end side of the screw shaft 10 with the base member 2 and the presser member 3 sandwiching a fastened object such as a steel pipe. In this state, the screw shaft 10 is engaged with the bifurcated end 8 of the presser member 3, and in this state, the nut 11 is rotated in the screwing direction to press and swing the presser member 3 toward the base member 2. The object to be fastened is clamped and fastened between the pressing member 3 and the base member 2. Therefore, the inner peripheral edge of the rising side plate portion on the inner side of the base member 2 and the presser member 3 is configured to have a surface contact with the peripheral surface of the fastened object as much as possible.

上記の2つのクランプ1A,1Bのベース部材2の連結部構造について説明すると、図2に示すように一方のクランプ、例えばクランプ1Aのベース部材2における基板部、即ち、他方のクランプ1Bと結合される平坦な基板部12には、外向きに突出する円筒状周壁13aを備えたバーリング孔13が一体形成され、図3に示すように他方のクランプ1Bの基板部、即ち、一方のクランプ1Aと結合される平坦な基板部14には、前記バーリング孔13の円筒状周壁13aの外径より少し大きい内径の円形取付け孔15が設けられ、この円形取付け孔15の内周縁には、周方向適当間隔おきに複数個の凹部16が切欠形成されている。この凹部16は、周方向に隣り合う各凹部16間に当該円形取付け孔15の円弧状周面15aが残される間隔で設けられる(図示例は、等間隔で8つの凹部が設けられる)もので、当該円形取付け孔15の軸心方向から見たときの形状がほぼ半円形である。   The connecting portion structure of the base member 2 of the two clamps 1A and 1B will be described. As shown in FIG. 2, it is coupled to one clamp, for example, the substrate portion of the base member 2 of the clamp 1A, that is, the other clamp 1B. The flat substrate portion 12 is integrally formed with a burring hole 13 having a cylindrical peripheral wall 13a protruding outward, and as shown in FIG. 3, the substrate portion of the other clamp 1B, that is, one clamp 1A and The flat base plate part 14 to be joined is provided with a circular mounting hole 15 having an inner diameter slightly larger than the outer diameter of the cylindrical peripheral wall 13a of the burring hole 13, and an inner peripheral edge of the circular mounting hole 15 has an appropriate circumferential direction. A plurality of recesses 16 are notched at intervals. The recesses 16 are provided at intervals at which the arcuate peripheral surface 15a of the circular mounting hole 15 remains between the recesses 16 adjacent in the circumferential direction (in the illustrated example, eight recesses are provided at equal intervals). The shape of the circular mounting hole 15 as viewed from the axial direction is substantially semicircular.

2つのクランプ1A,1Bどうしの連結方法について説明すると、図4A及び図5Aに示すように、一方のクランプ1Aのバーリング孔13における円筒状周壁13aを他方のクランプ1Bの円形取付け孔15に、それぞれの基板部12,14の外表面どうしを当接させるように挿通させ、両基板部12,14の軸受け孔5a,6aの貫通方向(完成したクランプ装置における両クランプ1A,1Bがそれぞれ挟持する被締結物の長さ方向)が互いに直交する向きに両基板部12,14を円形取付け孔15の軸心の周りに相対回転させる。次に、図4B及び図5Bに示すように、基板部14の内側に突出している円筒状周壁13aの先端部を、従来周知の方法にて外側にカーリング加工して、外周端が基板部14の内面に当接する抜け止め用鍔部17を形成させる。勿論、この状態で両基板部12,14の円形取付け孔15の軸心周りの相対回転が不能になるように、抜け止め用鍔部17の外周端を基板部14の内面に圧接させることが出来る。   The connecting method of the two clamps 1A and 1B will be described. As shown in FIGS. 4A and 5A, the cylindrical peripheral wall 13a in the burring hole 13 of one clamp 1A is inserted into the circular mounting hole 15 of the other clamp 1B, respectively. Are inserted so that the outer surfaces of the substrate portions 12 and 14 come into contact with each other, and the through-holes of the bearing holes 5a and 6a of the both substrate portions 12 and 14 (the clamps to which the clamps 1A and 1B in the completed clamping device are sandwiched, respectively) The two substrate portions 12 and 14 are rotated relative to each other around the axis of the circular mounting hole 15 in a direction in which the length direction of the fastener is orthogonal to each other. Next, as shown in FIG. 4B and FIG. 5B, the tip end portion of the cylindrical peripheral wall 13a protruding to the inside of the substrate portion 14 is curled outward by a conventionally known method so that the outer peripheral end is the substrate portion 14. The retaining collar 17 is formed to abut against the inner surface. Of course, in this state, the outer peripheral end of the retaining flange 17 may be brought into pressure contact with the inner surface of the substrate portion 14 so that relative rotation about the axis of the circular mounting hole 15 of both the substrate portions 12 and 14 is impossible. I can do it.

最後に、図4C及び図5Cに示すように、前記円筒状周壁13aに、円形取付け孔15の各凹部16に食い込む回り止め用突出部18を加圧形成させる。具体的には、図4C及び図5Cに示すように、前記円筒状周壁13aの内径より僅かに小径の円柱体19の周囲に、円形取付け孔15の各凹部16に前記円筒状周壁13aを押し出すための突条部20を軸心方向と平行に突設させたパンチ21を、バーリング孔13を備えた基板部12の内側からバーリング孔13内に圧入し、図6に示すように、前記円筒状周壁13aに、前記抜け止め用鍔部17のある側とは反対側から前記円形取付け孔15の各凹部16に当該円形取付け孔15の軸心方向に食い込み嵌合する回り止め用突出部18を加圧形成させる。従ってこの場合は、図示のように、各回り止め用突出部18と抜け止め用鍔部17との間には、元の円筒状周壁13aが少し残った状態である。尚、上記パンチ21をバーリング孔13内に圧入するとき、円筒状周壁13aの先端部にカーリング加工で形成された抜け止め用鍔部17を受け金型で支持しておくことは勿論である。   Finally, as shown in FIG. 4C and FIG. 5C, the cylindrical peripheral wall 13 a is press-formed with a rotation-preventing protrusion 18 that bites into each recess 16 of the circular mounting hole 15. Specifically, as shown in FIGS. 4C and 5C, the cylindrical peripheral wall 13 a is pushed out to each recess 16 of the circular mounting hole 15 around a cylindrical body 19 having a diameter slightly smaller than the inner diameter of the cylindrical peripheral wall 13 a. A punch 21 having protrusions 20 for projecting in parallel with the axial direction is press-fitted into the burring hole 13 from the inside of the substrate part 12 provided with the burring hole 13, and as shown in FIG. An anti-rotation protrusion 18 that bites into and fits into each concave portion 16 of the circular mounting hole 15 in the axial direction of the circular mounting hole 15 from the side opposite to the side where the retaining hook 17 is provided. Is formed under pressure. Therefore, in this case, as shown in the drawing, the original cylindrical peripheral wall 13a is slightly left between each of the anti-rotation protrusions 18 and the retaining hooks 17. Of course, when the punch 21 is press-fitted into the burring hole 13, the retaining flange 17 formed by curling is received at the tip of the cylindrical peripheral wall 13 a by a mold.

以上のようにしてクランプ1Aの基板部12とクランプ1Bの基板部14とを、両基板部12,14の軸受け孔5a,6aの貫通方向が互いに直交する向きで背中合わせに連結固定したならば、それぞれのベース部材2に押え部材3と締結用ねじ手段4の螺軸10を軸支することにより、両クランプ1A,1Bのそれぞれに鋼管などの被締結物を、その長さ方向が互いに直交する向きで締結させることが出来る向き固定型のクランプ装置を得ることが出来る。このクランプ装置の使用状態において、両クランプ1A,1Bがバーリング孔13の軸心方向に互いに離脱する方向に相対移動することは、一方のクランプ1Aのベース部材2の基板部12と円筒状周壁13aの先端の抜け止め用鍔部17との間で、他方のクランプ1Bの基板部14の円形取付け孔15の周囲が挟持されていることにより阻止され、又、両クランプ1A,1Bがバーリング孔13の軸心の周りに相対回転することは、一方のクランプ1Aの円筒状周壁13aに加圧形成された各回り止め用突出部18と、他方のクランプ1Bの基板部14の円形取付け孔15の各凹部16との周方向の当接により阻止されている。   If the substrate portion 12 of the clamp 1A and the substrate portion 14 of the clamp 1B are connected and fixed back to back in such a manner that the through-holes of the bearing holes 5a and 6a of both the substrate portions 12 and 14 are orthogonal to each other as described above, By supporting the presser member 3 and the screw shaft 10 of the fastening screw means 4 on the respective base members 2, the clamped objects such as steel pipes are respectively attached to the clamps 1A and 1B, and their length directions are orthogonal to each other. A direction-fixed clamping device that can be fastened in a direction can be obtained. When the clamp device is in use, the relative movement of the clamps 1A and 1B in the direction away from each other in the axial direction of the burring hole 13 means that the base member 2 and the cylindrical peripheral wall 13a of the base member 2 of one clamp 1A. The clamp 1B is blocked by the periphery of the circular mounting hole 15 of the substrate portion 14 of the other clamp 1B, and the clamps 1A and 1B are blocked by the burring hole 13. The relative rotation around the axis of each of the clamps causes the rotation-preventing projections 18 formed by pressure on the cylindrical peripheral wall 13a of one clamp 1A and the circular mounting holes 15 of the base plate 14 of the other clamp 1B. It is blocked by circumferential contact with each recess 16.

尚、前記回り止め用突出部18は、図7に示すように、前記円形取付け孔15の凹部16の、当該円形取付け孔15の軸心方向の全域に内側から嵌合するように形成することも出来る。又、円形取付け孔15の内周縁に形成する凹部16は、基本的にはどのような形状のものでも良いし、円形取付け孔15の周方向の間隔も限定されるものではない。例えば、図8Aに示すように、周方向の長さが凹入深さより長い横長形状の凹部22であっても良いし、図8Bに示すように先細り状の三角形に近い形状の凹部23であっても良い。又、凹部間の周方向の間隔も、図8Aの凹部22で示すように、周方向の間隔を十分に開けて4つ程度の凹部を設けることも出来るし、図8Bの凹部23で示すように、周方向に隣り合う凹部間に元の円形取付け孔15の内周縁が残らない程度に密接する間隔で凹部を設けて、円形取付け孔15の内周を連続する凹凸状(ギザギザ状)に構成しても良い。勿論、先の実施例に示した半円形の凹部16を、図8Cに示すように、周方向の間隔を狭めて個数を増やすことも出来る。   As shown in FIG. 7, the anti-rotation protrusion 18 is formed so as to be fitted from the inside into the whole area of the concave portion 16 of the circular mounting hole 15 in the axial direction of the circular mounting hole 15. You can also. Further, the recess 16 formed on the inner peripheral edge of the circular mounting hole 15 may basically have any shape, and the circumferential interval between the circular mounting holes 15 is not limited. For example, as shown in FIG. 8A, the recess 22 may be a horizontally long recess 22 whose length in the circumferential direction is longer than the recess depth, or the recess 23 having a shape close to a tapered triangle as shown in FIG. 8B. May be. Further, as shown by the concave portion 22 in FIG. 8A, the circumferential interval between the concave portions can be provided with about four concave portions with a sufficient interval in the circumferential direction, as shown by the concave portion 23 in FIG. 8B. In addition, recesses are provided at such a close interval that the inner peripheral edge of the original circular mounting hole 15 does not remain between the recesses adjacent to each other in the circumferential direction, and the inner periphery of the circular mounting hole 15 is continuously uneven (jagged). It may be configured. Of course, as shown in FIG. 8C, the number of semicircular recesses 16 shown in the previous embodiment can be increased by narrowing the circumferential interval.

本発明のクランプ装置は、仮設足場の組立てなどに使用されるクランプ装置であって、2つのクランプを一定の向きで互に連結固定したクランプ装置として活用出来る。   The clamp device of the present invention is a clamp device used for assembling a temporary scaffold, and can be used as a clamp device in which two clamps are connected and fixed to each other in a fixed direction.

1A,1B クランプ
2 ベース部材
3 押え部材
4 締結用ねじ手段
12,14 基板部
13 バーリング孔
13a 円筒状周壁
15 円形取付け孔
15a 円弧状周面
16,22,23 凹部
17 抜け止め用鍔部
18 回り止め用突出部
21 パンチ
DESCRIPTION OF SYMBOLS 1A, 1B Clamp 2 Base member 3 Pressing member 4 Fastening screw means 12, 14 Substrate part 13 Burring hole 13a Cylindrical peripheral wall 15 Circular mounting hole 15a Arc-shaped peripheral surface 16, 22, 23 Recessed part 17 Retaining prevention collar part 18 Stop projection 21 Punch

Claims (4)

2つのクランプの互に隣接する基板部どうしを結合して、両クランプを一定の向きで互に固定したクランプ装置において、一方のクランプの基板部には、他方の基板部側に突出する円筒状周壁を備えたバーリング孔が設けられ、他方のクランプの基板部には、前記バーリング孔の円筒状周壁が貫通し得る円形取付け孔が設けられ、この円形取付け孔の周縁には、周方向適当間隔おきに凹部が形成され、この円形取付け孔を貫通した前記バーリング孔の円筒状周壁は、その先端を外側にカーリングさせて抜け止め用鍔部を形成させると共に、前記円形取付け孔の周縁の凹部に食い込む回り止め用突出部を加圧形成させている、クランプ装置。   In a clamp device in which two clamps adjacent to each other are connected to each other and fixed to each other in a fixed direction, the clamp of one clamp has a cylindrical shape protruding toward the other substrate A burring hole having a peripheral wall is provided, and a circular mounting hole through which the cylindrical peripheral wall of the burring hole can pass is provided in the substrate portion of the other clamp. The cylindrical peripheral wall of the burring hole penetrating through the circular mounting hole is curled at the tip to form a retaining collar, and is formed at the peripheral recess of the circular mounting hole. A clamping device that presses and forms a protrusion for detent that bites in. 前記回り止め用突出部は、前記円形取付け孔の凹部に、前記抜け止め用鍔部のある側とは反対側から当該円形取付け孔の軸心方向に嵌合するように形成されている、請求項1に記載のクランプ装置。   The anti-rotation protrusion is formed in the recess of the circular mounting hole so as to be fitted in the axial direction of the circular mounting hole from the side opposite to the side where the retaining hook is located. Item 2. The clamping device according to Item 1. 前記回り止め用突出部は、前記円形取付け孔の凹部の、当該円形取付け孔の軸心方向の全域に内側から嵌合するように形成されている、請求項1に記載のクランプ装置。   2. The clamp device according to claim 1, wherein the rotation-preventing projection is formed so as to be fitted from the inside to the entire region of the concave portion of the circular mounting hole in the axial direction of the circular mounting hole. 前記円形取付け孔の凹部は、周方向に隣り合う各凹部間に当該円形取付け孔の円弧状周面が残される間隔で設けられると共に、当該円形取付け孔の軸心方向から見たときの形状がほぼ半円形である、請求項1〜3の何れか1項に記載のクランプ装置。   The concave portions of the circular mounting holes are provided at intervals between the concave portions adjacent to each other in the circumferential direction so that the arc-shaped peripheral surface of the circular mounting holes is left, and the shape when viewed from the axial direction of the circular mounting holes is The clamping device according to any one of claims 1 to 3, which is substantially semicircular.
JP2013079265A 2013-04-05 2013-04-05 Clamping device Active JP5739933B2 (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5758646U (en) * 1980-09-25 1982-04-06
JPS60184937U (en) * 1984-05-17 1985-12-07 佐藤 政太郎 Connection device for frame pipe materials
JPS61140204U (en) * 1985-02-20 1986-08-30
JPS61140203U (en) * 1985-02-20 1986-08-30
JPH0678496U (en) * 1993-04-21 1994-11-04 義晴 内橋 Pipe connection fitting
JP2005036555A (en) * 2003-07-17 2005-02-10 Kunimoto Co Ltd Clamping device

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5758646U (en) * 1980-09-25 1982-04-06
JPS60184937U (en) * 1984-05-17 1985-12-07 佐藤 政太郎 Connection device for frame pipe materials
JPS61140204U (en) * 1985-02-20 1986-08-30
JPS61140203U (en) * 1985-02-20 1986-08-30
JPH0678496U (en) * 1993-04-21 1994-11-04 義晴 内橋 Pipe connection fitting
JP2005036555A (en) * 2003-07-17 2005-02-10 Kunimoto Co Ltd Clamping device

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