面向复杂构件的布氏硬度数字化在线检测方法研究
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1.中国航空工业集团公司北京长城计量测试技术研究所;2.中国航发贵州黎阳航空动力有限公司

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TB9

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Research on Digital Online Brinell Hardness Testing Method for Complex Components
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1.Changcheng Institute of Metrology &2.amp;3.Measurement;4.AECC Guizhou Liyang Aviation Power Co.,LTD.

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    摘要:

    硬度作为衡量材料力学性能的重要指标之一,其检测结果是否准确、可靠直接关系到航空航天、高端装备、精密仪器、汽车制造等先进制造领域关键产品的服役性能、安全寿命和整体质量。针对传统的实验室硬度检测方法存在抽样随机性、结果滞后性和数据孤立等固有局限,本文提出并实现了一种面向航空发动机叶片等复杂构件的布氏硬度数字化在线检测方法,本方法突破了异形工件在动态工况下的精准定位、表面自适应恒力打磨及工业现场低质量压痕图像高精度识别等关键技术难题,建设了硬度数据100%检测、结果实时判断可溯源的硬度数字化在线检测产线。实验验证结果表明,所构建的检测系统测量效率提升4倍,测量系统分析(MSA)GRR%为17.42%。经过数万件工件的长期运行验证,证明了该方法在实现原位实时、全自动化、可追溯的硬度质量控制方面的有效性与先进性,为智能制造背景下的“计量检测一体化”提供了可行的技术路径。

    Abstract:

    As a key mechanical property index of materials, hardness directly affects the service performance, operational safety, service life and comprehensive quality of core products in advanced manufacturing fields including aerospace, high-end equipment, precision instruments and the automotive industry. Given the inherent drawbacks of traditional laboratory hardness testing, such as random sampling, delayed data feedback and independent data silos, this paper proposes and develops a digital on-line Brinell hardness testing method for complex components represented by aero-engine blades. The proposed method overcomes key technical bottlenecks, including precise positioning of irregular workpieces under dynamic conditions, adaptive constant-force surface grinding, and high-precision recognition of low-quality industrial indentation images. Relying on the above technologies, a digital on-line hardness testing production line is constructed, which supports full-coverage hardness data collection and real-time traceable result evaluation. Experimental results show that the established system achieves four times higher testing efficiency, with the GRR% of measurement system analysis (MSA) reaching 17.42%. Long-term industrial application and verification on tens of thousands of workpieces demonstrate the effectiveness and technical advantages of this method in realizing in-situ, real-time, fully automated and traceable hardness quality control. This study provides a viable technical route for promoting the integration of metrology and testing under the background of intelligent manufacturing.

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  • 收稿日期:2026-02-25
  • 最后修改日期:2026-05-06
  • 录用日期:2026-05-08
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