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首页> 外文期刊>Acta metallurgica Sinica >HEALING OF HYDROGEN ATTACK CRACK IN AUSTENITE STAINLESS STEEL UNDER HEAT TREATMENT
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HEALING OF HYDROGEN ATTACK CRACK IN AUSTENITE STAINLESS STEEL UNDER HEAT TREATMENT

机译:热处理对奥氏体不锈钢中氢脆裂纹的修复

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The specimens of 304 austenite stainless steel with the hydrogen attack bubbles or cracks were heat treated at 600 deg C for 6h. The SEM and TEM observations on the specimens before and after the heat treatment showed that the bubbles or cracks could be healed completely by heat treatment. The healing of hydrogen attack bubbles or cracks is closely related to heat diffusion of Fe and C atoms in austenite. The driving force of crack healing results from the plastic deforming energy E_s induced by the growth of hydrogen attack bubbles or cracks. The critical condition of healing of bubbles or cracks is E_s >= 2 gamma/r (where gamma is the surface tension, r is the radius of bubbles or half length of crack). During healing of the hydrogen attack bubbles or cracks, the recovery, polygonization and recrystallization of the sub-grain also occured.
机译:将具有氢侵蚀气泡或裂纹的304奥氏体不锈钢样品在600℃下热处理6小时。热处理前后样品的SEM和TEM观察表明,热处理可以完全治愈气泡或裂缝。氢侵蚀气泡或裂纹的愈合与奥氏体中Fe和C原子的热扩散密切相关。裂纹愈合的驱动力是由氢腐蚀气泡或裂纹的增长引起的塑性变形能E_s产生的。气泡或裂纹愈合的临界条件是E_s> = 2 gamma / r(其中gamma是表面张力,r是气泡半径或裂纹一半长度)。在氢侵蚀气泡或裂纹愈合期间,还发生了亚晶粒的恢复,多边形化和重结晶。

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