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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Impact Toughness of 0.2 Pct C-1.5 Pct Si-(1.5 to 5) Pct Mn Transformation-Induced Plasticity-Aided Steels with an Annealed Martensite Matrix
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Impact Toughness of 0.2 Pct C-1.5 Pct Si-(1.5 to 5) Pct Mn Transformation-Induced Plasticity-Aided Steels with an Annealed Martensite Matrix

机译:具有退火马氏体基体的0.2 Pct C-1.5 Pct Si-(1.5至5)Pct Mn相变诱导塑性辅助钢的冲击韧性

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摘要

The impact properties of 0.2 pct C-1.5 pct Si-(1.5 to 5) pct Mn transformation-induced plasticity (TRIP)-aided steels with an annealed martensite matrix which had been subjected to isothermal transformation after inter-critical annealing were investigated for potential automotive applications. The impact properties are related to the retained austenite characteristics of the steels. The products of tensile strength (TS) and Charpy impact absorbed value (CIAV) were the same for the 1.5 and 5 pct Mn steels, although the ductile-brittle transition temperature was higher for the latter. The impact properties of the 3 pct Mn steel were worse than these two steels. The high TS 9 CIAV value for the 5 pct Mn steel at 293 K (25 degrees C) was mainly caused by the TRIP effect of a larger amount of retained austenite (36 vol pct) and the hardened matrix structure; low retained austenite stability and/or a hard martensite-austenite phase reduced this value. The higher ductile-brittle transition temperature of the 5 pct Mn steel was associated with Mn segregation, a large amount of unstable retained austenite on prior austenitic grain boundaries, and decreased cleavage fracture stress owing to the high Mn content. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:研究了0.2%C-1.5%Si-(1.5至5)pct Mn相变诱导塑性(TRIP)辅助钢和退火马氏体基体的冲击性能,这些材料在临界退火后经过等温转变汽车应用。冲击性能与钢的残余奥氏体特性有关。 1.5和5 pct Mn钢的拉伸强度(TS)和夏比冲击吸收值(CIAV)的乘积相同,尽管后者的延性-脆性转变温度更高。 3 pct Mn钢的冲击性能比这两种钢差。 5 pct Mn钢在293 K(25摄氏度)下的高TS 9 CIAV值主要是由于大量残留奥氏体(36 vol pct)的TRIP效应和硬化基体结构引起的。低的残余奥氏体稳定性和/或硬的马氏体-奥氏体相降低了该值。 5 pct Mn钢的较高的韧性-脆性转变温度与Mn偏析,在先前的奥氏体晶界上存在大量不稳定的残余奥氏体,以及由于Mn含量高而引起的解理断裂应力降低有关。 (C)矿产,金属与材料学会和ASM International 2016

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