非平面维氏硬度测量校正系数的计算

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
S. G. Sandomirski, A. L. Val’ko, S. P. Rudenko
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引用次数: 0

摘要

准确测定维氏HV硬度对制品材料力学性能的测定具有重要意义。测量HV的一个重要方面是在非平面表面上获取其值。规范性文件包含修正因子K的表值,这取决于表面形状(凸或凹,球形或圆柱形),其曲率(直径D)和硬度(压痕对角线长度的算术平均值D),但这并不能解决问题。表中未给出的d/ d比的K值是通过最接近测量表中的d/ d值的插值确定的。这些表中的d/ d值表示的误差完全包含在确定测量的d/ d比的K系数的误差中。本工作的目的是简化非平面维氏硬度测量的修正系数K的计算,并减少与规定方法相比的计算误差。所提出的方法是基于K系数的统计分析,在以表格形式考虑的情况的监管文件中提出。使用二次幂函数来近似K(d/ d)依赖关系的充分性和满足被测表面零曲率处K≡1的物理证明条件的必要性已经得到证实。与规范性文件中推荐的K系数计算方法相比,K系数的计算简化了,计算误差减小了。与规范性文件中推荐的计算相比,计算误差减小的原因是,在使用所开发的公式计算时,对给定表面的GOST表中给出的所有n个d/ d值进行平均,计算出特定d/ d系数K值的误差。也就是说,与按规定程序计算的误差相比,误差减小了约√n2。上述数值数据和应用实例说明了这一点。所得的球面和圆柱(凹面和凸面)硬度HV测量时修正系数K的计算公式,可以合理地用于非平面物体硬度HV的自动计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation of Correction Factors for Vickers’ Hardness Measurements on a Non-Planar Surface
The exact determination of Vickers HV hardness is important for determining of the product material mechanical properties. An important aspect of measuring HV is to obtain its values on a non-planar surface. Regulatory documents contain table values of correction factors K which depend on the surface shape (convex or concave, spherical or cylindrical), its curvature (diameter D) and hardness (arithmetic mean d of indentation diagonal lengths) but this does not solved the problem. The K values for d/D ratios not given in the tables are determined by interpolation from the closest to the measured tabulated d/D values. The error in the representation of these tabulated d/D values is fully included in the error of determining the K coefficient for the measured d/D ratio. The aim of the work was to simplify the calculation of correction factors K for Vickers hardness measurements on non-planar surfaces and to reduce the calculation error compared to the methodology governed by the regulations.The method presented is based on a statistical analysis of K coefficients, presented in regulatory documents for cases considered in the form of tables. The sufficiency of using of a quadratic power function for approximating K(d/D) dependences and the necessity of fulfilling the physically justified condition K ≡ 1 at zero curvature of tested surface have been substantiated. Simplification of calculation of K coefficient and decrease of calculation error in comparison with the recommended in the regulatory documents obtaining of K value by linear interpolation relative to two adjacent table values are shown.The reduction of the calculation error in comparison with the calculation recommended in the regulatory documents occurred because of the reason that when calculating by the developed formulas, the error in the value of the calculated for a specific value of d/D coefficient K is averaged over all n values of d/D given in the table of GOST for a given surface. That is, the error is reduced by a factor of about √n 2 in comparison with the calculation according to the regulated procedure. This is illustrated by the above numerical data and an example of the use of the method.The obtained formulas for calculation of correction coefficients K when measuring hardness HV on spherical and cylindrical (concave and convex) surfaces are reasonable to use for automatic calculation of HV on items with a non-planar surface.
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
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