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Microstructure and formability of aluminum bearing TRIP-aided steels with annealed martensite matrix

机译:退火马氏体基体的含铝TRIP辅助钢的组织和成形性

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摘要

The effects of aluminum content on microstructure, ductility and formability of advanced high strength low alloy TRIP (Transformation-Induced Plasticity)-aided ferrous sheet steels with annealed martensite matrix (or TRIP-aided annealed martensitic steel) were investigated in order to realize hot-dip galvanization. Aluminum addition of 0.5-1.0mass percent (and simultaneous silicon removal of the same amount) to a 0.2C-1.5Si-1.5Mn-0.04AI (mass percent) steel refined the matrix structure and retained austenite needles and increased carbon concentration of retained austenite. It also brought on an excellent total elongation, stretch-flangeability and bendability, although the tensile strength decreased. Optimum austempering temperature for the total elongation increased to 450-475 deg C, due to the increased carbon concentration of retained austenite. On the other hand, optimum austempering temperatures for the stretch-flangeability and bend-ability were maintained at 350-400 deg C, mainly due to uniform fine lath matrix and retained austenite needles. If only large total elongation is required for the TRIP-aided steel, it is expected that hot-dip galvanizing immediately after continuous intercritical annealing can be realized.
机译:研究了铝含量对具有退火马氏体基体的高级高强度低合金TRIP(相变诱导塑性)辅助的黑色钢板(或TRIP辅助退火的马氏体钢)的组织,延展性和可成形性的影响,以实现热轧。浸镀锌。向0.2C-1.5Si-1.5Mn-0.04AI(质量百分比)钢中添加0.5-1.0质量%的铝(并同时去除相同量的硅)可细化基体组织并保留奥氏体针,并提高保留碳的浓度奥氏体。尽管抗拉强度降低,但它也具有优异的总伸长率,拉伸凸缘性和弯曲性。由于残余奥氏体的碳浓度增加,总延伸率的最佳奥氏体回火温度提高到450-475摄氏度。另一方面,拉伸凸缘性和弯曲性的最佳奥氏体温度保持在350-400℃,这主要是由于均匀的细板条基体和残留的奥氏体针。如果仅对TRIP辅助钢要求大的总伸长率,则可以期望在连续的临界退火之后立即实现热浸镀锌。

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