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Dynamic behavior of hydrogen desorption from pure iron and inconel 625 during elastic and plastic deformations

机译:弹性和塑性变形过程中纯铁和铬镍铁合金625解吸氢的动态行为

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Dynamic behavior of hydrogen desorption from pure iron with a body-centered-cubic lattice and Inconel 625 with a face-centered-cubic lattice was examined during tensile deformation using a quadrupole mass spectrometer in a vacuum chamber integrated with a tensile testing machine. Hydrogen desorption from hydrogen-charged specimens was detected under various strain rates and cyclic stresses. Hydrogen desorption rarely increased under elastic deformation. In contrast, it increased rapidly at the proof stress when plastic deformation began, reached its maximum, and then decreased gradually with increasing applied strain for both pure iron and Inconel 625. This desorption behavior is closely related to hydrogen dragging by moving dislocations. The thermal desorption analysis results showed that the amount of desorbed hydrogen differed at each strain rate. This difference in the amount of desorbed hydrogen transported by dislocations depends on the balance between the hydrogen diffusion rate and mobile dislocation velocity.
机译:在拉伸变形过程中,使用四极质谱仪在集成了拉伸试验机的真空室中检查了具有体心立方晶格的纯铁和具有表面心立方晶格的Inconel 625的氢脱附动力学行为。在各种应变速率和循环应力下,检测了从充氢样品中析出的氢气。在弹性变形下氢的解吸很少增加。相反,当纯铁和Inconel 625施加塑性应变时,当塑性变形开始时,它在屈服应力下迅速增加,达到最大值,然后逐渐减小。这种解吸行为与移动位错引起的氢拖动密切相关。热脱附分析结果表明,在每种应变速率下,脱附的氢量不同。通过位错传输的解吸氢的量的这种差异取决于氢扩散速率和移动位错速度之间的平衡。

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