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首页> 外文期刊>Metals and Materials International >Fabrication of Hadfield-Cored Multi-layer Steel Sheet by Roll-Bonding with 1.8-GPa-Strength-Grade Hot-Press-Forming Steel
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Fabrication of Hadfield-Cored Multi-layer Steel Sheet by Roll-Bonding with 1.8-GPa-Strength-Grade Hot-Press-Forming Steel

机译:用1.8-GPA强度级热压成型钢轧制通过轧制瓦尔菲尔德多层钢板的制造

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摘要

An austenitic Hadfield steel was roll-bonded with a 1.8-GPa-strength-grade martensitic hot-press-forming (HPF) steel to fabricate a multi-layer steel (MLS) sheet. Near the Hadfield/HPF interface, the carburized and decarburized layers were formed by the carbon diffusion from the Hadfield (1.2%C) to HPF (0.35%C) layers, and could be regarded as kinds of very thin multi-layers of 35 mu m in thickness. The tensile test and fractographic data indicated that the MLS sheet was fractured abruptly within the elastic range by the intergranular fracture occurred in the carburized layer. This was because C was mainly segregated at prior austenite grain boundaries in the carburized layer, which weakened grain boundaries to induce the intergranular fracture. In order to solve the intergranular facture problem, the MLS sheet was tempered at 200 A degrees C. The stress-strain curve of the tempered MLS sheet lay between those of the HPF and Hadfield sheets, and a rule of mixtures was roughly satisfied. Tensile properties of the MLS sheet were dramatically improved after the tempering, and the intergranular fracture was erased completely. In particular, the yield strength up to 1073 MPa along with the high strain hardening and excellent ductility of 32.4% were outstanding because the yield strength over 1 GPa was hardly achieved in conventional austenitic steels.
机译:将奥氏体Hadfield钢与1.8-GPA强度级马氏体热压成形(HPF)钢滚动,以制造多层钢(MLS)片。在Hadfield / HPF界面附近,通过HATFIELD(1.2%C)至HPF(0.35%C)层的碳扩散形成渗碳和脱碳层,并且可以被认为是35亩的非常薄的多层m厚度。拉伸试验和型式化数据表明,MLS片材在渗碳层中发生的骨间骨折突然在弹性范围内爆裂。这是因为C主要在渗碳层中的先前奥氏体晶界中隔离,这削弱了晶界以诱导骨间骨折。为了解决晶间体的问题,将MLS片材在200℃下进行回火。回火的MLS片材的应力 - 应变曲线在HPF和HADFIELD板的那些之间铺设,并且大致满足混合物的规则。在回火后显着改善MLS片材的拉伸性能,并且完全擦除骨间骨折。特别地,高达1073MPa的屈服强度随着32.4%的高应变硬化和优异的延性而突出,因为在常规奥氏体钢中几乎不达到1GPa的屈服强度。

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