基于过程解耦的硬度自动化检测系统混合GR&R方法研究
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中国航空工业集团公司北京长城计量测试技术研究所

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TB9

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Research on Hybrid GR&R Method of Hardness Automatic Testing System Based on Process Decoupling
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AVIC Changcheng Institute of Metrology Measurement

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    摘要:

    针对硬度自动化检测系统兼具“自动化”与“破坏性”双重特性的问题,本文系统阐述了其测量系统分析(Measurement System Analysis,MSA)的特殊性,指出传统重复性与再现性(Gage Repeatability and Reproducibility, GR&R)方法在变异源识别与实验设计上的局限性。在此基础上,提出一种“过程解耦-混合GR&R”实验策略,将硬度检测流程解耦为压痕生成(破坏性)与压痕测量(非破坏性)两个子过程,分别采用嵌套设计与交叉设计进行变异源分离与量化。通过构建双检测单元自动化平台,开展系统的MSA实验,运用方差分析法评估设备重复性、再现性及交互作用的影响。研究结果表明,所提出的方法能有效识别主导变异源,为硬度自动化检测系统的性能评估与优化提供了可行的分析框架,具有较强的工程适用性与推广价值。

    Abstract:

    In view of the dual characteristics of "automation" and "destructiveness" of the automatic hardness testing system, this paper systematically expounds the particularity of its measurement system analysis (MSA), and points out the limitations of the traditional Gauge Repeatability and reproducibility (GR&R) method in the identification of variation sources and experimental design. On this basis, a "process decoupling hybrid GR&R" experimental strategy is proposed, which decouples the hardness testing process into two sub processes: indentation generation (destructive) and indentation measurement (non-destructive). Nested design and cross design are used to separate and quantify the variation sources, respectively. Through the construction of double detection unit automation platform, the systematic MSA experiment was carried out, and the analysis of variance was used to evaluate the influence of equipment repeatability, reproducibility and interaction. The results show that the proposed method can effectively identify the dominant variation sources, and provide a feasible analysis framework for the performance evaluation and optimization of the hardness automatic testing system, which has strong engineering applicability and popularization value.

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  • 收稿日期:2025-09-24
  • 最后修改日期:2025-11-11
  • 录用日期:2025-11-12
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