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Analysis of microstructural evolution during friction stir welding of ultrahigh-strength steel

机译:超高强度钢摩擦搅拌焊接过程中的组织演变分析

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摘要

Friction stir lap-welded advanced high-strength M190 steel exhibited formation of lath martensite at weld nuggets, a ferrite layer at faying surfaces and a ferrite–pearlite microstructure at the bottom of the stir zone. The phase transformation was governed by severe plastic deformation in the austenitic region followed by cooling. The strain rate and peak temperature played key roles in controlling the prior-austenitic grain size and were correlated to the Zener–Hollomon parameter. An empirical relationship has been obtained for dynamically recrystallized austenite grains.
机译:搅拌摩擦搭接焊接的高级高强度M190钢在焊接熔核处形成板条马氏体,在接合表面形成铁素体层,在搅拌区的底部形成铁素体-珠光体显微组织。相变由奥氏体区域中严重的塑性变形控制,然后冷却。应变率和峰值温度在控制奥氏体前体晶粒尺寸中起着关键作用,并且与齐纳-所罗门参数相关。对于动态再结晶的奥氏体晶粒,已经获得了经验关系。

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