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Linear guide rail precision automatic measuring device and measuring method thereof

An automatic measurement, linear guide technology, applied in the direction of measuring devices, fluid devices, instruments, etc., can solve the problems of easy wear, large workload and labor intensity, easy wear and deformation of detection plates and guide rail fixtures, and achieves a simple structure. , The effect of reducing labor intensity and reducing inspection cost

Active Publication Date: 2013-12-11
SU CHUNGUANG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantages of this measurement method are:
[0004] 1. It is necessary to clamp the guide rail and move the table base on the detection plate, which requires a lot of work and labor intensity, and the detection efficiency is extremely low;
[0005] 2. The measurement error is large. The contact surface of the detection plate, guide r

Method used

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  • Linear guide rail precision automatic measuring device and measuring method thereof
  • Linear guide rail precision automatic measuring device and measuring method thereof
  • Linear guide rail precision automatic measuring device and measuring method thereof

Examples

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Embodiment Construction

[0029] refer to figure 1 , figure 2 , a linear guide rail accuracy automatic measuring device, which includes a frame 1, a standard guide rail 2 is fixedly installed at one end of the frame 1, a reference slider 3 is inserted on the standard guide rail 2, and a top plate 6 is fixedly installed on the reference slider 3 , the both sides of top plate 6 width direction are provided with L-shaped support 41,42 respectively, and the non-contact measuring head 51,52 that is vertically arranged is fixedly installed on described two L-shaped support 41,42 respectively, and described non-contact type The probes 51 and 52 are pneumatic probes, and the two non-contact probes 51 and 52 respectively correspond to the left and right positions of the width direction of the bottom surface of the guide rail 2. The rack 1 is provided with an auxiliary tool parallel to the position of the standard guide rail 2. The guide rail 8 and the auxiliary guide rail 8 are provided with a movable sli...

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Abstract

The invention discloses a linear guide rail precision automatic measuring device and a measuring method thereof. The device comprises a frame; a standard guide rail is fixedly installed on one end of the frame; a reference slide block is sleeved on the standard guide rail; the reference slide block is fixedly provided with a top board; the two sides in the top board width direction are each provided with an L-shaped support; the two L-shaped supports are respectively fixedly provided with vertically arranged non-contact probes; the two on-contact probes are respectively arranged at a left position and a right position in the width direction of a guide rail bottom; the frame is provided with an auxiliary guide rail parallel with the standard guide rail in terms of position; the auxiliary guide rail is provided with a movable slide block linked to the L-shaped supports; the movable slide block is linked to a driving apparatus through a belt; and the frame is also provided with a bracket bearing and holding a guide rail to be detected and a press head for pressing the end portion of the guide rail to be detected onto the end portion of the standard guide rail. By using the measuring mode, it is unnecessary to fix the guide rail to a detection platform through screws, and the measuring efficiency can be greatly improved.

Description

technical field [0001] The invention relates to a precision measuring device, in particular to a linear guide rail precision automatic measuring device and a measuring method thereof. Background technique [0002] After the linear guideway is manufactured, precision measurement is required to ensure that the product meets the acceptance criteria. At present, there are mainly three indicators for the accuracy measurement of the linear guideway. Refer to image 3 , which are respectively: 1. The distance between the groove center of the linear guide rail and the bottom surface of the guide rail (height H); 2. The parallelism between the center of the left and right grooves of the guide rail on any cross section of the guide rail and the bottom surface of the guide rail (PAL1); 3. The parallelism of the groove centerline to the bottom surface of the guide rail in the longitudinal direction of the guide rail (PAL2); [0003] The existing linear guide rail accuracy measurement me...

Claims

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Application Information

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IPC IPC(8): G01B13/02G01B13/18
Inventor 杨炫召叶飞原冯健文张艳红
Owner SU CHUNGUANG
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