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Small Specimen, Accelerated Fracture Mechanics Test Methods for Failure Analysis

机译:小标本,加速骨折力学试验方法进行失效分析

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Innovative methods of extracting test specimens while minimizing the compromises in fracture mechanics analysis often requires imaginative and creative loading conditions to duplicate the in-service fracture conditions. Accelerated test methods to conduct time dependent crack growth measurements in a short time also becomes a critical requirement. The purpose of this paper is to provide an overview of the modified fracture mechanics test methods with specific examples of how modified specimens were fabricated and utilized in the analyses. It will be explained how an accelerated test methods developed on a government funded Small Business Innovative Research Program (SBIR) is utilized to measure fracture toughness with small specimens and life parameters of crack initiation threshold, K{sub}(Iscc), and K{sub}(threshold) for fatigue in a very short time. These techniques have been applied to conduct failure analyses of welded HY 130 steel structures, turbine bolts, gas regulator springs, and chrome-plated aircraft pistons.
机译:提取试样的创新方法,同时最小化骨折力学分析中的折衷通常需要想象力和创造性的装载条件,以重复在役骨折条件。加速试验方法在短时间内进行时间依赖性裂纹生长测量也成为一个关键要求。本文的目的是提供改性骨折力学试验方法的概述,具体实施例如何在分析中制造和使用改性标本。将说明如何在政府资助的小型企业创新研究计划(SBIR)上产生的加速测试方法用于测量裂缝韧性和裂缝启动阈值的小标本和寿命参数,K {Sub}(ISCC)和K {在很短的时间内疲劳的子}(阈值)。已经应用了这些技术来进行焊接HY 130钢结构,涡轮机螺栓,气体调节弹簧和镀铬飞机活塞的故障分析。

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