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Measurement of Maximum Deviation from Roundness Based on the Inverse Kinematics Principle
Measurement Science Review ( IF 1.0 ) Pub Date : 2019-12-01 , DOI: 10.2478/msr-2019-0035
Tomáš Stejskal 1 , Miroslav Dovica 2 , Tatiana Kelemenová 2 , Dominika Palaščáková 1 , Eduard Jakubkovič 2 , Michal Považan 1 , Štefan Ondočko 1
Affiliation  

Abstract The article deals with a special method of measuring the maximum deviation of objects from roundness based on the inverse kinematics principle. The inverse measurement mechanism is based on the immobility of the measuring probes and the object performing all the motions required to measure a dimension. The advantage of this principle is minimization of the temperature change, while the adverse effect in the measurement system is greatly reduced at the same time. The measurement methodology requires a special software evaluation of the data measured. The aim of the given measurement methodology was to establish the maximum roundness deviation that corresponds to the Least Squares Circle (LSC) method. An experiment with three measuring probes was conducted to verify the methodology.

中文翻译:

基于逆运动学原理的圆度最大偏差测量

摘要 本文研究了一种基于逆运动学原理的测量物体圆度最大偏差的特殊方法。反向测量机制基于测量探针的不动性和执行测量尺寸所需的所有运动的对象。该原理的优点是温度变化最小,同时对测量系统的不利影响也大大减少。测量方法需要对测量数据进行特殊的软件评估。给定测量方法的目的是建立对应于最小二乘圆 (LSC) 方法的最大圆度偏差。进行了使用三个测量探针的实验以验证该方法。
更新日期:2019-12-01
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