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A load-based multiple-partial unloading micro-indentation technique for mechanical property evaluation

机译:一种基于载荷的多部分卸载微压痕技术,用于力学性能评估

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摘要

A load-based multiple-partial unloading micro-indentation technique has been developed for evaluating mechanical properties of materials. Comparing to the current prevailing nano/micro-indentation methods, which require precise measurements of the indentation depth and load, the proposed technique only measures indentation load and the overall indentation displacement (i.e. including displacement of the loading apparatus). Coupled with a multiple-partial unloading procedure during the indentation process, this technique results in a load-depth sensing indentation system capable of determining Young's modulus of metallic alloys with flat, tubular, or curved architectures. Test results show consistent and correct elastic modulus values when performing indentation tests on standard alloys such as steel, aluminum, bronze, and single crystal superalloys. The proposed micro-indentation technique has led to the development of a portable load-depth sensing indentation system capable of on-site, in-situ material property measurement.
机译:已经开发了一种基于载荷的多部分卸载微压痕技术,用于评估材料的机械性能。与当前流行的需要精确测量压痕深度和载荷的纳米/微压痕方法相比,所提出的技术仅测量压痕载荷和总压痕位移(即包括加载装置的位移)。与压痕过程中的多部分卸载过程相结合,该技术导致了一种负载深度感应压痕系统,该系统能够确定具有扁平,管状或弯曲结构的金属合金的杨氏模量。当对标准合金(例如钢,铝,青铜和单晶高温合金)进行压痕测试时,测试结果显示出一致且正确的弹性模量值。所提出的微压痕技术已经导致了一种便携式负载深度感测压痕系统的开发,该系统能够现场,现场进行材料性能测量。

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