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Effects of hydrogen on the mechanical properties of a 2 1/4Cr-1Mo steel

机译:氢对2 1 / 4Cr-1Mo钢力学性能的影响

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This paper explores the effects of hydrogen on the mechanical properties of a 2 1/4Cr-1Mo steel. The results for both microstructural conditions, as received and aged, indicated a loss of ductility after hydrogen charging treatment, but the yield strength and ultimate tensile strength remained unaltered. The fractograph analysis revealed that the fracture mode was modified by the hydrogen. The steel in the as-received condition showed craters and fisheyes on the fracture surface. The aged steel showed a brittle appearance associated with cleavage facets and small portion of areas with dimples. The hydrogen diffusivity and solubility were investigated using electrochemical permeation technique. It was observed that the hydrogen diffusivity decreased from 2.3 +/- 0.4 x 10(-10) m(2) s(-1) in the as-received condition to 5.7 +/- 0.1 x 10(-11) m(2) s(-1) in the aged condition. The hydrogen solubility showed an increase for the aged condition in comparison to the as received sample. Both phenomena can be attributed to carbide evolution during aging, resulting in an increase of the carbide/matrix interfacial area.
机译:本文探讨了氢对2 1 / 4Cr-1Mo钢力学性能的影响。微观结构条件的结果,无论是接受还是老化,都表明在充氢处理后延展性下降,但屈服强度和极限抗拉强度保持不变。断裂图分析表明,断裂模式被氢改变。处于接收状态的钢在断裂表面上显示出弹坑和鱼眼。时效钢表现出脆性外观,与开裂面和小区域的酒窝有关。使用电化学渗透技术研究了氢的扩散率和溶解度。观察到氢扩散率从接收状态下的2.3 +/- 0.4 x 10(-10)m(2)s(-1)降低到5.7 +/- 0.1 x 10(-11)m(2) )s(-1)在老化条件下。与所接收的样品相比,在老化条件下氢溶解度显示出增加。两种现象都可以归因于时效过程中碳化物的析出,从而导致碳化物/基体界面面积的增加。

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