Quick-lock anti-auxetic tire for inner hole and end face positioning workpiece

A technology for end faces and workpieces, which is applied in the field of high-precision fast locking fixtures, can solve problems such as efficiency impact, low precision, and influence on end face processing, and achieve the effects of improving processing efficiency, large operating space, and fast locking

A technology for end faces and workpieces, which is applied in the field of high-precision fast locking fixtures, can solve problems such as efficiency impact, low precision, and influence on end face processing, and achieve the effects of improving processing efficiency, large operating space, and fast locking

CN105965292BActive Publication Date: 2018-10-19BEIJING INST OF AEROSPACE CONTROL DEVICES

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  • Quick-lock anti-auxetic tire for inner hole and end face positioning workpiece
  • Quick-lock anti-auxetic tire for inner hole and end face positioning workpiece
  • Quick-lock anti-auxetic tire for inner hole and end face positioning workpiece

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Experimental program
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Effect test

Embodiment Construction

[0027] Below in conjunction with accompanying drawing and specific embodiment the present invention is described in further detail:

[0028] Such as figure 1 Shown is a schematic diagram of the overall structure of the quick-locking anti-stretching tire for positioning the workpiece on the inner hole and the end face. Cone top wire 3; wherein the cone mandrel 2 extends into the expansion sleeve 1 in the axial direction; the axial side wall of the expansion sleeve 1 is provided with a radial cylindrical through hole; the axial side wall of the cone mandrel 2 is provided with a radial Tapered groove; the size of the taper top screw 3 is matched with the cylindrical through hole of the expansion sleeve 1 and the tapered groove of the cone mandrel 2; after the taper mandrel 2 extends into the expansion sleeve 1 along the Radially pass through the cylindrical through hole of the expansion sleeve 1 and extend into the tapered groove of the tapered mandrel 2 to realize a fastening c...

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Abstract

The invention discloses a quick locking anti-pull expanding tire of a workpiece being positioned by using an inner hole and an end face, and relates to the field of high-precision quick locking fixtures for numerically-controlled machine tools. The quick locking anti-pull expanding tire comprises an expanding sleeve, a tapered core shaft and a tapered jack screw, wherein the tapered core shaft stretches into the expanding sleeve in the axial direction; a radial cylindrical through hole is formed in the axial side wall of the expanding sleeve; a radial tapered groove is formed in the axial side wall of the tapered core shaft; the size of the tapered jack screw is fit with those of the cylindrical through hole of the expanding sleeve and the tapered groove of the tapered core shaft; after the expanding sleeve is assembled with the tapered core shaft, the tapered jack screw penetrates through the cylindrical through hole in the radial direction and stretches into the tapered groove of the tapered core shaft, thereby realizing fastening connection. With the adoption of the quick locking anti-pull expanding tire, high-precision quick locking of the workpiece being positioned by using the inner hole and the end face can be realized; clamping positioning can be carried out simply by using the inner hole and the end face; the processing of the excircle and the end face is not affected; the quick locking anti-pull expanding tire is simple and convenient to use; and on the premise of ensuring the positioning precision, the clamping efficiency is improved.

Description

technical field [0001] The invention relates to the field of high-precision fast locking fixtures for positioning workpieces on the end faces of inner holes, in particular to fast locking and anti-stretching tires for positioning workpieces on inner holes and end faces. Background technique [0002] In the CNC machining of precision parts, fast and high-precision clamping becomes the main factor determining the machining accuracy and efficiency. Especially for non-penetrating hollow, that is, blind cavity workpieces, when the inner hole and end face are used to position and process the shape, and the shape, inner hole, and end face have geometric accuracy requirements such as coaxiality and perpendicularity of not more than 0.01mm, the alignment of the part , Clamping is time-consuming and labor-intensive, and the accuracy is difficult to guarantee. [0003] At this stage, the finishing of the above parts, whether it is CNC lathe or CNC milling, is positioned by the inner h...

Claims

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Application Information

Patent Timeline
19 Oct 2018
Publication
CN105965292B
IPC
B23Q3/06; B23B31/173
CPC
B23B31/16158; B23Q3/062
Inventors
李峰; 甄立