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Enhancement of Mechanical Properties of AISI304 Stainless Thin Plate by Low-pressure, Repeated Explosive Hardening

机译:通过低压,重复爆炸硬化来增强AISI304不锈钢薄板的机械性能

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摘要

In order to improve the mechanical properties of AISI304 stainless thin plate, a low-pressure, repeated explosive hardening process was carried out using the explosive treatment technique. Both the residual microstructures and mechanical properties of the treated material were investigated and compared with the undeformed sample. The results show that microhardness, yield strength and ultimate strength of the treated sample remarkably enhanced during a low-pressure, repeated explosive hardening. We propose that the strengthening mechanisms are closely related to the microstructure evolution during the low-pressure, repeated explosive hardening. The corresponding microstructures in the twice hardening samples were dominated by deformation twins, a martensites, with a few deformation bands. The micro-structures in the four times hardening samples were characterized by deformation bands and a martensites, where volume fraction of martensite was larger than that in the twice hardening sample.
机译:为了改善AISI304不锈钢薄板的机械性能,使用爆炸处理技术进行了低压,反复爆炸硬化处理。研究了处理过的材料的残余微观结构和力学性能,并与未变形的样品进行了比较。结果表明,在低压,重复爆炸硬化过程中,处理过的样品的显微硬度,屈服强度和极限强度显着提高。我们提出,强化机制与低压,反复爆炸硬化过程中的微观组织演变密切相关。在两次硬化的样品中,相应的微观结构主要由变形孪晶,马氏体和少量的变形带决定。四次淬火样品的微观结构以形变带和马氏体为特征,其中马氏体的体积分数大于两次淬火样品的马氏体体积分数。

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