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A workpiece machining error analysis method based on installation error extraction and correction

A technology of installation error and analysis method, which is applied in the direction of measuring devices, special data processing applications, instruments, etc., can solve the problems that cannot reflect the machining error of the worm, and the installation and alignment are cumbersome, etc., and achieve good market application prospects, high promotion and application value, The effect of eliminating systematic errors

Active Publication Date: 2019-02-01
XI AN JIAOTONG UNIV +1
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AI Technical Summary

Problems solved by technology

In the detection of worms, for worms without top and bottom holes, the installation and alignment are usually cumbersome, and there is still a large space for tilting and deflection between the aligned worm and the axis of rotation of the measuring machine, and the final measurement results are affected by the clamping of the worm. influence, and cannot reflect the real machining error of the worm

Method used

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  • A workpiece machining error analysis method based on installation error extraction and correction
  • A workpiece machining error analysis method based on installation error extraction and correction
  • A workpiece machining error analysis method based on installation error extraction and correction

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Embodiment Construction

[0026] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0027] For the worm without upper and lower tops and the machining error measurement that has a large deviation between the axis of the worm and the axis of rotation of the measuring platform after the top is clamped, if the installation error is not corrected, and the measurement results are used as the basis for judging whether the worm is qualified, Since the installation error is not eliminated, the measurement result of the qualified worm will be poor, and it will be misjudged as a waste product. The above problems also exist in the analysis of machining errors of other workpieces similar to worms (such as rotary workpieces). For this reason, the present invention firstly proposes a worm screw eccentricity and tilt installation error extraction and correction method based on a four-axis measurement center, including the following steps, see Ima...

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Abstract

The invention provides a workpiece machining error analysis method based on installation error extraction and correction. This method is based on the four-axis measurement platform, and its mathematical model is established according to the workpiece parameters; the workpiece measurement data is collected by the path planning of follow-up trajectory; obtaining the installation error of the workpiece installation datum relative to the rotating shaft of the measuring platform, analyze and obtain the installation error matrix of the workpiece based on the principle of coordinate change, and quantify the installation error; the measurement data collected in the machine coordinate system are transformed into the workpiece coordinate system after the installation error is compensated, and the installation error is corrected. And eliminates system error by optimal matching with mathematical model; the error analysis is carried out by using the matched data, so as to improve the accuracy of error analysis.

Description

technical field [0001] The invention belongs to the field of precision measurement of complex shapes, and in particular relates to a method for extracting and correcting worm eccentricity and inclination installation errors based on a four-axis measurement center. Background technique [0002] The worm plays an important role in the transmission system, and has the excellent characteristics of compact structure, stable, low noise and large transmission ratio. In the detection of worms, for worms without top and bottom holes, the installation and alignment are usually cumbersome, and there is still a large space for tilting and deflection between the aligned worm and the axis of rotation of the measuring machine, and the final measurement results are affected by the clamping of the worm. The influence cannot reflect the real machining error of the worm. Therefore, minimizing the influence of installation errors in the measurement process can reflect the real processing quali...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50G01B21/00G01B21/20
CPCG01B21/00G01B21/20G06F30/17G06F30/20G06F2111/10
Inventor 丁建军蔡磊刘阳鹏王震李兵蒋庄德赵威
Owner XI AN JIAOTONG UNIV
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