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Monitoring Hydrogen Release from 4140 Steel Using the L_(CR) Ultrasonic Technique

机译:使用L_(CR)超声波技术监测4140钢的氢释放

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Hydrogen build-up and release in steel microstructure is of considerable interest in studying the mechanical performance of the material. L_(CR) ultrasonic waves are a potential research tool that will enable the nondestructive evaluation of this reversible hydrogen buildup since their speed is affected by stress and their travel path is through affected layer just below the surface. The present study used three blocks of 4140 steel cut from a longer sample. Frequency spectrum data also were collected. The assumed model was of hydrogen occupying the vacancies in the steel block during the high temperature high-pressure period in the autoclave, and then being purged upon removal as the block contracted, creating a residual tensile stress in the surface area of the block. As the hydrogen is purged, the tensile stress should decrease. The L_(CR) results confirmed this trend, although it was more strongly seen for the 11.7 MPa (1691 psia) block. Photomicrographs confirmed no cracks in the surfaces, although there was considerable decarburization. Frequency analysis showed that the decarbur-ization did affect the frequency spectrum but did not affect the L_(CR) wave speed.
机译:钢结微观结构的氢积聚和释放在研究材料的机械性能方面具有相当大的兴趣。 L_(CR)超声波是一种潜在的研究工具,使得这种可逆氢气的非破坏性评估,因为它们的速度受到压力的影响,并且其行程路径是通过表面下方的受影响层。本研究使用了从更长的样品中切割的三个4140钢块。也收集了频谱数据。假设的模型是在高温釜中高温高压时段施加钢块中的空位,然后在除去作为块收缩时被清除,在块的表面积中产生残余拉伸应力。随着氢气清洗,拉伸应力应减少。 L_(CR)结果证实了这一趋势,尽管11.7MPa(1691 PSIA)块更加强烈地看到。显微照片在表面上证实没有裂缝,尽管存在相当大的脱碳。频率分析表明,脱达替达替替替尔斯确实影响了频谱,但不影响L_(CR)波速。

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