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Evaluation of Damage Degree of Inconel 718 using Nondestructive Indicators of Damage

机译:使用损伤的非破坏性指标评估Inconel 718的损伤程度

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摘要

This paper presents the results of the quantitative evaluation of the degree of damage caused by plastic strain accumulated in static tensile tests and creep tests. To detect changes in the structure of the material and in order to determine the degradation of the materials, nondestructive methods were used, namely the ultrasonic and eddy current methods. In ultrasonic testing, attenuation and acoustic birefringence were used as damage indicators. In the case of the eddy current method, changes in the phase angle of impedance were observed in the material. The material tested was Inconel 718 alloy. Inconel alloys are often find application in extreme working conditions including in the power engineering industry, aviation and aerospace. A new type of specimen with the variable cross-sectional area of the measuring part was used in the tests. This allowed researchers to obtain a continuous distribution of plastic strain and enabled analysis of the material with respect to different damage degrees. The correlation between the degree of damage, expressed by the measure of deformation, and the value of nondestructive indicators was determined. On the basis of it, the dependence indicating the ability to nondestructive evaluation of the degradation degree of the material, subjected to loads exceeding the yield limit was obtained.
机译:本文介绍了定量评估静态拉伸试验和蠕变试验中累积的塑性应变所造成的破坏程度的结果。为了检测材料结构的变化并确定材料的降解,使用了非破坏性方法,即超声和涡流方法。在超声测试中,衰减和声双折射被用作损伤指标。在涡流法的情况下,在材料中观察到阻抗的相角的变化。测试的材料是Inconel 718合金。铬镍铁合金常用于极端工作条件,包括在动力工程行业,航空和航天中。测试中使用了一种新型的标本,该标本的测量部件的横截面积可变。这使研究人员可以获得塑性应变的连续分布,并能够针对不同的损坏程度对材料进行分析。确定了由变形量表示的损伤程度与非破坏性指标值之间的相关性。基于此,获得表示承受超过屈服极限的载荷的材料降解程度的非破坏性评估能力的依赖性。

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