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首页> 外文期刊>Science and Technology of Welding & Joining >Investigation of heat affected zone softening in armour steels Part 2 ‐ Mechanical and microstructure heterogeneity
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Investigation of heat affected zone softening in armour steels Part 2 ‐ Mechanical and microstructure heterogeneity

机译:铠装钢热影响区软化的研究第2部分-机械和微观结构的不均匀性

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Flash processed (FP) steels have shown potential for armour applications based on the response to ballistic loading. In this research, weldability of these steels was studied and compared to commercial high hard (HH) armour steel. Simulated heat affected zone (HAZ) microstructures in these steels were investigated by comprehensive microscopy and hardness mapping. HAZ softening in HH steel was observed on heating to a peak temperature below Ac 1 due to overtempering of original microstructure. In FP steel, the softening was associated with allotriomorphic ferrite formation when heated to a peak temperature between Ac 1 and Ac 3. The transformation kinetics, softening, and hardening characteristics are rationalised based on changes in prior austenite grain size, cooling rate and underlying chemical heterogeneity.
机译:基于弹道载荷的响应,闪速加工(FP)钢已显示出用于装甲应用的潜力。在这项研究中,对这些钢的可焊性进行了研究,并与商用高硬(HH)装甲钢进行了比较。通过全面的显微镜和硬度图研究了这些钢中模拟的热影响区(HAZ)的微观结构。在加热至低于Ac 1的峰值温度时,会观察到HH钢中的HAZ软化,这是由于原始微结构的回火所致。在FP钢中,当加热到Ac 1和Ac 3之间的峰值温度时,软化与同素异形铁素体的形成有关。转变动力学,软化和硬化特性是根据先前奥氏体晶粒尺寸,冷却速率和基本化学成分的变化而合理化的异质性。

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