WO2011086835A1 - Two-shaft clamp device - Google Patents

Two-shaft clamp device Download PDF

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Publication number
WO2011086835A1
WO2011086835A1 PCT/JP2010/073389 JP2010073389W WO2011086835A1 WO 2011086835 A1 WO2011086835 A1 WO 2011086835A1 JP 2010073389 W JP2010073389 W JP 2010073389W WO 2011086835 A1 WO2011086835 A1 WO 2011086835A1
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WO
WIPO (PCT)
Prior art keywords
shaft
insertion hole
clamp body
shaft insertion
slits
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PCT/JP2010/073389
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French (fr)
Japanese (ja)
Inventor
山本智司
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Yamamoto Satoshi
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Application filed by Yamamoto Satoshi filed Critical Yamamoto Satoshi
Publication of WO2011086835A1 publication Critical patent/WO2011086835A1/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B7/00Connections of rods or tubes, e.g. of non-circular section, mutually, including resilient connections
    • F16B7/04Clamping or clipping connections
    • F16B7/044Clamping or clipping connections for rods or tubes being in angled relationship
    • F16B7/048Clamping or clipping connections for rods or tubes being in angled relationship for rods or for tubes without using the innerside thereof
    • F16B7/0493Clamping or clipping connections for rods or tubes being in angled relationship for rods or for tubes without using the innerside thereof forming a crossed-over connection

Definitions

  • the present invention relates to an apparatus for differentially clamping the two shafts in two stages differentially by one tightening means with one connecting component slidably fitted to two shafts substantially orthogonal to each other.
  • a method of fixing each shaft in a predetermined positional relationship by means of a connecting part that can slide on a substantially orthogonal shaft are used.
  • work efficiency is poor because each shaft is usually tightened with individual screws.
  • Patent Document 1 has devised a clamp device in which two support shafts arranged in parallel by one screw are connected so as to be rotatable and fixed.
  • the number of parts is high and the cost is high.
  • the base cylinder 5 and the first fastening cylinder 12 need to be thickened. Since both shafts are clamped at almost the same time, there is a problem in that the tightening operation cannot be performed in order, for example, the height is first adjusted and then the horizontal position is adjusted.
  • the present invention improves the positioning accuracy of the clamping operation by providing a device that clamps the first shaft by tightening one screw and then clamps the second shaft by tightening the screw. In addition, workability is improved.
  • a device that clamps two shafts that intersect at substantially right angles in a two-stage differential manner with one tightening means includes a case, a clamp body held by the case, and a case
  • the fastening bolt is a screwed fastening bolt, and by tightening the fastening bolt, the tip of the bolt pushes the clamp body, and first the first shaft is provided on the case side and the first shaft provided on the clamp body.
  • Structure in which the second shaft penetrating the second shaft insertion hole of the clamp body is easily elastically deformed by a slit provided in a side portion of the second shaft insertion hole. In this case, the second shaft is held by the second shaft clamping device.
  • the slit provided in the side portion of the second shaft insertion hole is one slit connecting the inner peripheral surface of the second shaft insertion hole and the outer surface of the clamp body. is there.
  • the slits provided at the side of the second shaft insertion hole are at least four non-through slits provided substantially symmetrically with respect to the center of the second shaft hole, and the non-through slits are inserted into the second shaft.
  • a slit provided from the inner peripheral surface of the hole toward the outer surface of the clamp body and not reaching the outer surface of the clamp body, and a second shaft insertion hole provided from the outer surface of the clamp body toward the second shaft insertion hole The slits that do not reach the inner peripheral surface of the bolt are alternately arranged in the direction in which the bolt tightening force acts.
  • the slits provided on the side of the second shaft insertion hole are at least four non-through slits provided substantially parallel to the central axis of the second shaft insertion hole, two of which are the second shaft A pair of non-penetrating slits in the same plane from the entrance to the exit, and the other two are in the same plane different from the plane from the exit of the second axis toward the entrance.
  • It is a biaxial clamping device characterized by being a pair of non-penetrating slits.
  • both end surfaces of the second shaft insertion hole are expressed as the entrance and exit of the second shaft, but the insertion direction of the second shaft is not limited.
  • Positioning with respect to the two axes can be performed sequentially. For example, first, the position in the left-right direction can be accurately determined, and then the position in the front-rear direction can be determined next. Can be positioned with high accuracy.
  • the non-penetrating slit is provided almost symmetrically with respect to the radial direction or the axial center direction of the tightening shaft, the elastic deformation amount of the hole is symmetrical with respect to the axial center.
  • the positioning system can be further improved, and uneven wear of the shaft can be prevented.
  • FIG. 1 is a perspective view of a biaxial clamping device according to the present invention. It is the front view and side view of a case by this invention. It is the front view and side view of the clamp body by this invention (shape of Claim 2). It is the front view and side view of the clamp body by this invention (shape of Claim 3). It is the front view and side view of the clamp body by this invention (shape of Claim 4).
  • FIG. 1 is a perspective view showing a state in which two substantially perpendicular axes are fixed by a clamping device according to the present invention.
  • the rectangular parallelepiped case 10 is provided with a square hole 14 for accommodating the rectangular parallelepiped clamp body 20 so as to be slidable in the vertical direction in FIG. 1, and a first shaft 31 is provided below the square hole.
  • a first shaft contact surface 11 having a semi-cylindrical surface with a curvature slightly larger than the outer diameter of the first shaft is provided.
  • a female screw 13 is machined on the upper portion of the case 10 (the side facing the first shaft contact surface 11).
  • clearance holes 12 for allowing the second shaft 32 to pass through loosely are provided on both side surfaces slightly above the center of the square hole in a direction perpendicular to the first shaft contact surface 11.
  • a first shaft contact surface 21 having a semi-cylindrical surface having a slightly larger curvature than the outer diameter of the first shaft is provided at the lower portion of the clamp body 20.
  • a second shaft insertion hole 22 for allowing the second shaft 32 to slidably pass through is provided in a direction slightly perpendicular to the first shaft abutting surface 21 slightly above the center of the clamp body.
  • One through slit 23 that connects the inner peripheral surface of the second shaft insertion hole 22 to the outer surface of the clamp body is processed.
  • a circular recess 28 is provided on the upper surface of the clamp body so that the tip of the fastening bolt 33 can be inserted.
  • the first shaft 31 is passed between the first shaft contact surface 11 provided on the case 10 and the first shaft contact surface 21 provided on the clamp body 20, and
  • the tightening bolt 33 is tightened with the second shaft 32 penetrating the escape hole 12 provided in the case and the second shaft insertion hole 22 provided in the clamp body
  • the clamp body 20 is first lowered in FIG.
  • the first shaft 31 is clamped and fixed between the first shaft contact surface 11 provided on the case and the first shaft contact surface 21 provided on the clamp body.
  • the clamp body 20 When the tightening bolt 33 is further tightened, the clamp body 20 is elastically deformed, and the groove width of the through slit 23 is narrowed. That is, the inner diameter in the vertical direction of the second shaft insertion hole 22 provided in the clamp body is reduced, and the second shaft 32 is tightened and fixed.
  • both the first shaft and the second shaft can be tightened, and the first shaft is first fixed, and then the second shaft is fixed by further tightening the bolt. Therefore, highly accurate positioning can be performed while sequentially adjusting the position.
  • first shaft contact surface 11 provided on the case and the first shaft contact surface 21 provided on the clamp body have a depth that is less than a semi-cylindrical.
  • the recess 28 provided in the clamp body guides the tip of the tightening bolt 33 so that the clamp body 20 does not come out of the case 10 even if the tightening bolt is slightly loosened.
  • FIG. 4 is an example in which a plurality of non-through slits 24 and 25 are provided instead of the single through slit 23 shown in FIG.
  • the non-through slit 24 extending from the insertion hole 22 toward the outer surface of the clamp body and the non-through slit 25 extending from the outer surface of the clamp body toward the insertion hole 22 are alternately arranged up and down.
  • the left and right sides of the insertion hole 22 are provided almost symmetrically.
  • At least one pair of non-penetrating slits 24 and 25 is provided, preferably one pair of non-penetrating slits 24 and two pairs of non-penetrating slits 25 are provided as shown in FIG. Is preferred.
  • the slit depth is preferably such that the non-penetrating slits 24 and 25 overlap when viewed from above so that local bending is easily generated, and the groove bottom shape is rounded to avoid stress concentration.
  • FIG. 5 shows an example in which a plurality of non-through slits 26 and 27 are provided instead of the single through slit 23 shown in FIG.
  • the elastic deformation amount of the second shaft insertion hole 22 becomes symmetric, so that the clamp body 20 and the second shaft 32 slightly change in angle when clamping. Therefore, it is possible to clamp with more accurate positioning accuracy.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Clamps And Clips (AREA)

Abstract

Disclosed is a two-shaft clamp device with improved positioning accuracy in clamping operations and improved operability, which initially clamps a first shaft by tightening a screw and then clamps a second shaft by further tightening the same screw. The two-shaft clamp device comprises a case (10), a clamp body (20) supported by the case, and a fastening bolt (33) screwed into the case. By tightening the fastening bolt (33), the end of the bolt presses the clamp body (20) and, first, the first shaft (31) is held from both sides by a first shaft contact surface disposed on the case side, and a first shaft contact surface disposed on the clamp body; next, a second shaft (32), which passes through a second shaft insertion hole in the clamp body, is supported by means of a configuration easily elastically deformable by means of a slit (23) provided on the side of the aforementioned second shaft insertion hole.

Description

二軸クランプ装置Biaxial clamping device
本発明は、ほぼ直交する2本の軸にそれぞれ摺動可能に嵌合した1つの連結部品を1箇所の締付け手段により差動的に二段階で前記2本の軸をクランプする装置に関する。 The present invention relates to an apparatus for differentially clamping the two shafts in two stages differentially by one tightening means with one connecting component slidably fitted to two shafts substantially orthogonal to each other.
計測機器の位置決め装置や工作機械の加工基準設定装置、あるいは棒状材からなる構造物において、ほぼ直交する軸上を摺動可能な連結部品によって、それぞれの軸を所定の位置関係で固定する方法が多く用いられている。
しかし通常はそれぞれの軸を個別のねじで締付ける構造なので作業効率が悪いという問題があった。
In a measuring device positioning device, a machine tool processing standard setting device, or a structure made of a rod-shaped material, a method of fixing each shaft in a predetermined positional relationship by means of a connecting part that can slide on a substantially orthogonal shaft. Many are used.
However, there is a problem that work efficiency is poor because each shaft is usually tightened with individual screws.
上記問題を解決する方法として、例えば特許文献1では、1個のねじによって並列する2個の支持軸を回動及び固定可能に連結したクランプ装置が考案されている。
しかし特許文献1の構造では、部品点数が多く高価になる点、2本の軸径が同一の場合でも基筒体5と第一締付筒12を太くする必要があるので無駄な大きさになる点、ほぼ同時に両方の軸がクランプされるので、例えば、先ず高さを調節してその後水平方向の位置を調整する等の順を追った締付け作業ができないという問題があった。
As a method for solving the above problem, for example, Patent Document 1 has devised a clamp device in which two support shafts arranged in parallel by one screw are connected so as to be rotatable and fixed.
However, in the structure of Patent Document 1, the number of parts is high and the cost is high. Even when the two shaft diameters are the same, the base cylinder 5 and the first fastening cylinder 12 need to be thickened. Since both shafts are clamped at almost the same time, there is a problem in that the tightening operation cannot be performed in order, for example, the height is first adjusted and then the horizontal position is adjusted.
また特許文献2では、1組のボルトとナットによって棒状部材を連結固定する結合具が考案されている。
しかし特許文献2の方法では、軸を斜め方法に押すことになるので、軸が直角に固定できない可能性があり、また、両方の軸が同時にクランプされるので、上記と同様に順を追った締付け作業はできない。
Moreover, in patent document 2, the coupling tool which connects and fixes a rod-shaped member with one set of volt | bolt and nut is devised.
However, in the method of Patent Document 2, since the shaft is pushed obliquely, the shaft may not be fixed at a right angle, and both shafts are clamped at the same time. Tightening work is not possible.
実開昭62-167917号公報Japanese Utility Model Publication No. 62-167717 実開昭58-53907号公報Japanese Utility Model Publication No. 58-53907
本発明は1個のねじを締付けることによって、先ず第1の軸をクランプし、更に前記のねじを締付けることによって第2の軸をクランプする装置を提供することによって、クランプ作業の位置決め精度を向上し、かつ作業性を改善したものである。 The present invention improves the positioning accuracy of the clamping operation by providing a device that clamps the first shaft by tightening one screw and then clamps the second shaft by tightening the screw. In addition, workability is improved.
ほぼ直角に交差する2本の軸を、1つの締付け手段により、差動的に二段階で前記2本の軸をクランプする装置であり、ケースと、ケースに保持されたクランプ体と、ケースに螺合した締付けボルトからなり、締付けボルトを締めることにより、ボルトの先端がクランプ体を押し、先ず第1軸がケース側に設けられた第1軸当接面とクランプ体に設けられた第1軸当接面に挟まれて保持され、次に、クランプ体の第2軸挿入穴を貫通した第2軸が、前記第2軸挿入穴の側部に設けたスリットによって容易に弾性変形する構造になっていることにより前記第2軸を保持することを特徴とする二軸クランプ装置である。 A device that clamps two shafts that intersect at substantially right angles in a two-stage differential manner with one tightening means, and includes a case, a clamp body held by the case, and a case The fastening bolt is a screwed fastening bolt, and by tightening the fastening bolt, the tip of the bolt pushes the clamp body, and first the first shaft is provided on the case side and the first shaft provided on the clamp body. Structure in which the second shaft penetrating the second shaft insertion hole of the clamp body is easily elastically deformed by a slit provided in a side portion of the second shaft insertion hole. In this case, the second shaft is held by the second shaft clamping device.
前記第2軸挿入穴の側部に設けたスリットが、第2軸挿入穴の内周面と前記クランプ体の外表面を繋いでいる1つのスリットであることを特徴とした二軸クランプ装置である。 In the biaxial clamping device, the slit provided in the side portion of the second shaft insertion hole is one slit connecting the inner peripheral surface of the second shaft insertion hole and the outer surface of the clamp body. is there.
前記第2軸挿入穴の側部に設けたスリットが、第2軸の穴の中心に対してほぼ対称に設けられた少なくとも4個の非貫通スリットであり、該非貫通スリットは第2軸の挿入穴の内周面からクランプ体の外表面に向かって設けられクランプ体の外表面に達していないスリットと、クランプ体の外表面から第2軸挿入穴に向かって設けられ該第2軸挿入穴の内周面に達していないスリットとが、ボルトの締付け力が作用する方向に交互に配置されていることを特徴とする二軸クランプ装置である。 The slits provided at the side of the second shaft insertion hole are at least four non-through slits provided substantially symmetrically with respect to the center of the second shaft hole, and the non-through slits are inserted into the second shaft. A slit provided from the inner peripheral surface of the hole toward the outer surface of the clamp body and not reaching the outer surface of the clamp body, and a second shaft insertion hole provided from the outer surface of the clamp body toward the second shaft insertion hole The slits that do not reach the inner peripheral surface of the bolt are alternately arranged in the direction in which the bolt tightening force acts.
前記第2軸挿入穴の側部に設けたスリットが、第2軸挿入穴の中心軸に対してほぼ平行に設けられた少なくとも4個の非貫通スリットであり、そのうちの2個は第2軸の入り口から出口方向に向かう、ほぼ同一平面内にある一対の非貫通スリットであり、他の2個は第2軸の出口から入り口方向に向かう、前記平面とは別のほぼ同一平面内にある一対の非貫通スリットであることを特徴とする二軸クランプ装置である。
尚、ここでは説明を容易にするために第2軸挿入穴の両端面を、第2軸の入り口と出口と表現したが第二軸の挿入方向を限定するものではない。
The slits provided on the side of the second shaft insertion hole are at least four non-through slits provided substantially parallel to the central axis of the second shaft insertion hole, two of which are the second shaft A pair of non-penetrating slits in the same plane from the entrance to the exit, and the other two are in the same plane different from the plane from the exit of the second axis toward the entrance. It is a biaxial clamping device characterized by being a pair of non-penetrating slits.
Here, for ease of explanation, both end surfaces of the second shaft insertion hole are expressed as the entrance and exit of the second shaft, but the insertion direction of the second shaft is not limited.
1本の締付けボルトを締付けることにより、2本の軸を作動的に締付け固定することができるので、作業性が良い。 By tightening one tightening bolt, the two shafts can be operatively fastened and fixed, so workability is good.
2本の軸に対する位置決めを、順次行うことができるので、例えば、先ず左右方向位置を正確に決めてから、次に前後方向の位置を決める作業ができるので、1本のねじで二方向の位置決めが可能でありながら、精度の高い位置決めができる。 Positioning with respect to the two axes can be performed sequentially. For example, first, the position in the left-right direction can be accurately determined, and then the position in the front-rear direction can be determined next. Can be positioned with high accuracy.
部品点数が少ないので比較的低コストで製作可能であり、双方の軸を円弧で締付けるので接触面圧が低く、その結果軸が磨耗しにくいので耐久性に優れ、当初の高精度を保つことができる。 Since the number of parts is small, it can be manufactured at a relatively low cost. Since both shafts are tightened with arcs, the contact surface pressure is low, and as a result, the shafts are less likely to wear out. it can.
請求項3又は請求項4によれば、締付ける軸の径方向又は軸心方向に対し、非貫通スリットをほぼ対称に設けたので、穴の弾性変形量が軸中心に対して左右対称になるので、位置決め制度が更に向上し、軸の偏磨耗を防ぐことができる。
 
According to claim 3 or claim 4, since the non-penetrating slit is provided almost symmetrically with respect to the radial direction or the axial center direction of the tightening shaft, the elastic deformation amount of the hole is symmetrical with respect to the axial center. The positioning system can be further improved, and uneven wear of the shaft can be prevented.
本考案による二軸クランプ装置の斜視図である。1 is a perspective view of a biaxial clamping device according to the present invention. 本発明によるケースの正面図と側面図である。It is the front view and side view of a case by this invention. 本発明によるクランプ体の正面図と側面図である(請求項2の形状)。It is the front view and side view of the clamp body by this invention (shape of Claim 2). 本発明によるクランプ体の正面図と側面図である(請求項3の形状)。It is the front view and side view of the clamp body by this invention (shape of Claim 3). 本発明によるクランプ体の正面図と側面図である(請求項4の形状)。It is the front view and side view of the clamp body by this invention (shape of Claim 4).
図1~3を用いて本発明の基本的な構成を説明する。図1は、本発明によるクランプ装置によってほぼ直交する二軸を固定している状態を示した斜視図である。 The basic configuration of the present invention will be described with reference to FIGS. FIG. 1 is a perspective view showing a state in which two substantially perpendicular axes are fixed by a clamping device according to the present invention.
直方体状のケース10には、直方体状のクランプ体20を、図1で上下方向に摺動可能に収容するための角穴14が設けられており、角穴の下部には、第1軸31の外径よりやや大きな曲率の半円筒面を持つ第1軸当接面11が設けられている。
ケース10の上部(第1軸当接面11に対向する側)には、めねじ13が加工されている。
また、角穴の中央やや上の両側面に、第1軸当接面11と直交する方向に、第2軸32をルーズに貫通させるための逃げ穴12が設けられている。
The rectangular parallelepiped case 10 is provided with a square hole 14 for accommodating the rectangular parallelepiped clamp body 20 so as to be slidable in the vertical direction in FIG. 1, and a first shaft 31 is provided below the square hole. A first shaft contact surface 11 having a semi-cylindrical surface with a curvature slightly larger than the outer diameter of the first shaft is provided.
A female screw 13 is machined on the upper portion of the case 10 (the side facing the first shaft contact surface 11).
Further, clearance holes 12 for allowing the second shaft 32 to pass through loosely are provided on both side surfaces slightly above the center of the square hole in a direction perpendicular to the first shaft contact surface 11.
クランプ体20の下部には、第1軸の外径よりやや大きな曲率の半円筒面を持つ第1軸当接面21が設けられている。
また、クランプ体の中央やや上には、第1軸当接面21と直交する方向に、第2軸32を摺動可能に貫通させるための第2軸挿入穴22が設けられている。
第2軸挿入穴22の内周面からクランプ体の外表面までを繋ぐ1つの貫通スリット23が加工されている。
クランプ体の上面には、締付けボルト33の先端が入る大きさの円形凹部28が設けられている。
A first shaft contact surface 21 having a semi-cylindrical surface having a slightly larger curvature than the outer diameter of the first shaft is provided at the lower portion of the clamp body 20.
In addition, a second shaft insertion hole 22 for allowing the second shaft 32 to slidably pass through is provided in a direction slightly perpendicular to the first shaft abutting surface 21 slightly above the center of the clamp body.
One through slit 23 that connects the inner peripheral surface of the second shaft insertion hole 22 to the outer surface of the clamp body is processed.
A circular recess 28 is provided on the upper surface of the clamp body so that the tip of the fastening bolt 33 can be inserted.
以上の構成において、図1に示したように、ケース10に設けた第1軸当接面11とクランプ体20に設けた第1軸当接面21の間に第1軸31を通し、かつ、第2軸32をケースに設けた逃げ穴12とクランプ体に設けた第2軸挿入穴22を共に貫通させた状態にして、締付けボルト33を締めると、先ずクランプ体20が
図1で下方向に押されて、第1軸31が、ケースに設けた第1軸当接面11とクランプ体に設けた第1軸当接面21に挟持され固定される。 
In the above configuration, as shown in FIG. 1, the first shaft 31 is passed between the first shaft contact surface 11 provided on the case 10 and the first shaft contact surface 21 provided on the clamp body 20, and When the tightening bolt 33 is tightened with the second shaft 32 penetrating the escape hole 12 provided in the case and the second shaft insertion hole 22 provided in the clamp body, the clamp body 20 is first lowered in FIG. The first shaft 31 is clamped and fixed between the first shaft contact surface 11 provided on the case and the first shaft contact surface 21 provided on the clamp body.
さらに締付けボルト33を締めると、クランプ体20が弾性変形し、貫通スリット23の溝幅が狭くなる。すなわちクランプ体に設けた第2軸挿入穴22の上下方向の内径が小さくなり、第2軸32を締付け、これを固定する。 When the tightening bolt 33 is further tightened, the clamp body 20 is elastically deformed, and the groove width of the through slit 23 is narrowed. That is, the inner diameter in the vertical direction of the second shaft insertion hole 22 provided in the clamp body is reduced, and the second shaft 32 is tightened and fixed.
上記のように締付けボルトを締めることにより、第1軸と第2軸の両方を締付けることができ、しかも、先ず第1軸が固定されて、さらにボルトを締付けることにより第2軸が固定されるので、順次位置を調節しながら高精度の位置決めをすることができる。 By tightening the tightening bolt as described above, both the first shaft and the second shaft can be tightened, and the first shaft is first fixed, and then the second shaft is fixed by further tightening the bolt. Therefore, highly accurate positioning can be performed while sequentially adjusting the position.
尚、ケースに設けた第1軸当接面11と、クランプ体に設けた第1軸当接面21は、一方又は両方が半円柱に満たない深さになっているので、第1軸を締付けた際にクランプ体の下端がケースに設けた角穴の平面部に当たらないようになっている。
また、クランプ体に設けた凹部28は、締付けボルト33の先端をガイドし、締付けボルトを少し緩めてもクランプ体20がケース10から抜け出さないようになっている。
One or both of the first shaft contact surface 11 provided on the case and the first shaft contact surface 21 provided on the clamp body have a depth that is less than a semi-cylindrical. When tightened, the lower end of the clamp body does not hit the flat part of the square hole provided in the case.
The recess 28 provided in the clamp body guides the tip of the tightening bolt 33 so that the clamp body 20 does not come out of the case 10 even if the tightening bolt is slightly loosened.
図4は、図3に示した、1つの貫通スリット23の代わりに、複数の非貫通スリット24、25を設けた例である。締付に必要な弾性変形量を確保するために、挿入穴22からクランプ体の外表面に向かう非貫通スリット24と、クランプ体の外表面から挿入穴22に向かう非貫通スリット25を上下交互に、挿入穴22の左右側部にほぼ左右対称に設けてある。
局部曲げによる変形量を大きくするために、少なくとも非貫通スリット24、25はそれぞれ1対以上、好ましくは図4に示したように、非貫通スリット24を1対、非貫通スリット25を2対設けるのが好ましい。
尚、スリットの深さは、非貫通スリット24、25が上方向から見てオーバーラップするようにして局部曲げを発生しやすくし、溝底形状を丸くして応力の集中を避けることが好ましい。
FIG. 4 is an example in which a plurality of non-through slits 24 and 25 are provided instead of the single through slit 23 shown in FIG. In order to ensure the amount of elastic deformation necessary for tightening, the non-through slit 24 extending from the insertion hole 22 toward the outer surface of the clamp body and the non-through slit 25 extending from the outer surface of the clamp body toward the insertion hole 22 are alternately arranged up and down. The left and right sides of the insertion hole 22 are provided almost symmetrically.
In order to increase the amount of deformation due to local bending, at least one pair of non-penetrating slits 24 and 25 is provided, preferably one pair of non-penetrating slits 24 and two pairs of non-penetrating slits 25 are provided as shown in FIG. Is preferred.
The slit depth is preferably such that the non-penetrating slits 24 and 25 overlap when viewed from above so that local bending is easily generated, and the groove bottom shape is rounded to avoid stress concentration.
図5は、図3に示した、1つの貫通スリット23の代わりに、複数の非貫通スリット26、27を設けた例である。
第2軸挿入穴の中心軸に対してほぼ平行に、上下位置をずらしてオーバーラップする4個の非貫通スリットを対向するように設けることにより、上下方向の締付力によって、第2軸挿入穴の内径が容易に弾性変形するようになっている。図5に示した非貫通スリットの方が、
図4に示したスリットより加工しやすいというメリットがある。 
FIG. 5 shows an example in which a plurality of non-through slits 26 and 27 are provided instead of the single through slit 23 shown in FIG.
By inserting four non-penetrating slits that are overlapped by shifting the vertical position substantially parallel to the central axis of the second shaft insertion hole, the second shaft is inserted by the vertical tightening force. The inner diameter of the hole is easily elastically deformed. The non-through slit shown in FIG.
There is an advantage that it is easier to process than the slit shown in FIG.
図4又は図5に示したスリット形状にすることにより、第2軸挿入穴22の弾性変形量が左右対称になるので、クランプする際にクランプ体20と第2軸32がわずかに角度変化することがなくなり、より正確な位置決め精度でクランプすることができる。 By making the slit shape shown in FIG. 4 or 5, the elastic deformation amount of the second shaft insertion hole 22 becomes symmetric, so that the clamp body 20 and the second shaft 32 slightly change in angle when clamping. Therefore, it is possible to clamp with more accurate positioning accuracy.
1 本発明によるクランプ装置
10 ケース
11 ケース側の第1軸当接面
12 ケースに設けた第2軸の逃げ穴
13 ケース側に設けためねじ
14 角穴
20 クランプ体
21 クランプ体の第1軸当接面
22 クランプ体の第2軸挿入穴
23 クランプ体の第2軸挿入穴に設けた貫通スリット
24 クランプ体の第2軸挿入穴からクランプ体の外表面に向かう非貫通スリット
25 クランプ体の外表面から第2軸挿入穴方向に向かう非貫通スリット
26 クランプ体の第2軸挿入穴の側部に、挿入穴の軸心方向に設けた非貫通スリット
27 非貫通スリット26の対面から上下位置をずらして設けた非貫通スリット
28 クランプ体に設けた凹部
31 第1軸
32 第2軸
33 締付けボルト
DESCRIPTION OF SYMBOLS 1 Clamp apparatus 10 by this invention Case 11 1st axis | shaft contact surface 12 of a case side The escape hole of the 2nd axis | shaft provided in the case 13 Screw 14 provided in a case side Square hole 20 Clamp body 21 Clamp body 1st axis contact Contact surface 22 Second shaft insertion hole 23 of clamp body Through slit 24 provided in second shaft insertion hole of clamp body Non-through slit 25 extending from second shaft insertion hole of clamp body toward outer surface of clamp body Outside clamp body Non-through slit 26 from the surface toward the second shaft insertion hole 26 A non-through slit 27 provided in the axial direction of the insertion hole at the side of the second shaft insertion hole of the clamp body Non-through slit 28 provided in a staggered manner Recess 31 provided in the clamp body First shaft 32 Second shaft 33 Tightening bolt

Claims (4)

  1. ほぼ直角に交差する2本の軸(31、32)を、それぞれの軸に摺動可能に挿入した1つのクランプ装置(1)に設けた1つの締付け手段により、差動的に二段階で前記2本の軸をクランプする装置であり、ケース(10)とケースに保持されたクランプ体(20)と、前記ケースに螺合した締付けボルト(33)からなり、前記締付けボルトを締めることにより、ボルトの先端がクランプ体(20)を押し、先ず第1軸(31)がケース側に設けられた第1軸当接面(11)とクランプ体に設けられた第1軸当接面(21)に挟まれて保持され、次に、ケースの逃げ穴(12)を通りかつクランプ体の第2軸挿入穴(22)を貫通した第2軸(32)が、前記第2軸挿入穴の側部に設けたスリット(23、又は24と25、又は26と27)によって容易に弾性変形する構造になっていることにより前記第2軸を保持することを特徴とする二軸クランプ装置。 The two shafts (31, 32) intersecting at substantially right angles are differentially described in two stages by one tightening means provided in one clamp device (1) slidably inserted in each shaft. A device for clamping two shafts, comprising a case (10), a clamp body (20) held by the case, and a tightening bolt (33) screwed into the case, and by tightening the tightening bolt, The tip of the bolt presses the clamp body (20). First, the first shaft (31) is provided on the case side, and the first shaft contact surface (21) provided on the clamp body. ), And the second shaft (32) passing through the escape hole (12) of the case and penetrating the second shaft insertion hole (22) of the clamp body is connected to the second shaft insertion hole. Side slits (23, 24 and 25, or 26 and 27 Biaxial clamping apparatus characterized by holding said second axis by has a structure to easily elastically deformed by.
  2. 前記第2軸挿入穴(22)の側部に設けたスリットが、前記第2軸挿入穴の内周面と前記クランプ体の外表面を繋いでいる1つのスリット(23)であることを特徴とする請求項1に記載した二軸クランプ装置。 The slit provided on the side of the second shaft insertion hole (22) is one slit (23) connecting the inner peripheral surface of the second shaft insertion hole and the outer surface of the clamp body. The biaxial clamping device according to claim 1.
  3. 前記第2軸挿入穴(22)の側部に設けたスリットが、前記第2軸挿入穴の中心に対してほぼ対称に設けられた少なくとも4個の非貫通スリットであり、該非貫通スリットは前記第2軸挿入穴の内周面から前記クランプ体の外表面に向かって設けられクランプ体の外表面に達していないスリット(24)と、クランプ体の外表面から前記第2軸挿入穴に向かって設けられ該第2軸挿入穴の内周面に達していないスリット(25)とが、ボルトの締付け力が作用する方向に交互に配置されていることを特徴とする請求項1に記載した二軸クランプ装置。 The slits provided on the side of the second shaft insertion hole (22) are at least four non-through slits provided substantially symmetrically with respect to the center of the second shaft insertion hole, A slit (24) which is provided from the inner peripheral surface of the second shaft insertion hole toward the outer surface of the clamp body and does not reach the outer surface of the clamp body, and from the outer surface of the clamp body to the second shaft insertion hole. The slits (25) that are provided in a row and do not reach the inner peripheral surface of the second shaft insertion hole are alternately arranged in the direction in which the bolt tightening force acts. Biaxial clamping device.
  4. 前記第2軸挿入穴(22)の側部に設けたスリットが、前記第2軸挿入穴の中心軸に対してほぼ平行に設けられた少なくとも4個の非貫通スリットであり、そのうちの2個は第2軸の入り口から出口方向に向かう、ほぼ同一平面内にある一対の非貫通スリット(26)であり、他の2個は第2軸の出口から入り口方向に向かう、前記平面とは別のほぼ同一平面内にある一対の非貫通スリット(27)であることを特徴とする請求項1に記載した二軸クランプ装置。 The slits provided on the side of the second shaft insertion hole (22) are at least four non-through slits provided substantially parallel to the central axis of the second shaft insertion hole, two of which are Are a pair of non-penetrating slits (26) in the substantially same plane from the entrance of the second axis toward the exit, and the other two are separate from the plane from the exit of the second axis toward the entrance. The biaxial clamping device according to claim 1, wherein the pair of non-penetrating slits (27) are substantially in the same plane.
PCT/JP2010/073389 2010-01-13 2010-12-24 Two-shaft clamp device WO2011086835A1 (en)

Applications Claiming Priority (2)

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JP2010000140U JP3158309U (en) 2010-01-13 2010-01-13 Biaxial clamping device
JP2010-000140U 2010-01-13

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Cited By (2)

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JP2012255536A (en) * 2011-09-02 2012-12-27 Tomoji Yamamoto Holding device
CN114483733A (en) * 2022-02-10 2022-05-13 浙江奥展航空科技有限公司 High mechanical anti-loosening fastening structure of security

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KR101973730B1 (en) * 2010-12-09 2019-04-29 에프큐 아이피 에이비 Locking device and method for fixation of components to tubes
JP5408812B2 (en) * 2012-03-16 2014-02-05 株式会社スター精機 Pipe joint
JP6368622B2 (en) * 2014-11-05 2018-08-01 有限会社吉田構造デザイン Shock absorber

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JPS581433U (en) * 1981-06-24 1983-01-07 株式会社島津製作所 Fixture
JPS60128009U (en) * 1984-02-06 1985-08-28 名古屋機工株式会社 Rod clamp device
JPH0575522U (en) * 1992-03-03 1993-10-15 株式会社椿本チエイン Shaft mounting structure for rotating body

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JPS581433U (en) * 1981-06-24 1983-01-07 株式会社島津製作所 Fixture
JPS60128009U (en) * 1984-02-06 1985-08-28 名古屋機工株式会社 Rod clamp device
JPH0575522U (en) * 1992-03-03 1993-10-15 株式会社椿本チエイン Shaft mounting structure for rotating body

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012255536A (en) * 2011-09-02 2012-12-27 Tomoji Yamamoto Holding device
WO2013031945A1 (en) * 2011-09-02 2013-03-07 Yamamoto Satoshi Holding apparatus
CN114483733A (en) * 2022-02-10 2022-05-13 浙江奥展航空科技有限公司 High mechanical anti-loosening fastening structure of security

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