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PLASTIC LOCALIZATION PHENOMENA IN A Mn-ALLOYED AUSTENITIC STEEL

机译:锰合金奥氏体钢中的塑性局部化现象

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摘要

A 0.5 wt.% C, 22 wt.% Mn austenitic steel, recently proposed for fabricating automotive body structures by cold sheet forming, due to favorable overall strength and ductility, exhibits plastic localizations during uniaxial tensile tests, whereas no localization happens during biaxial Erichsen cupping tests. Full-thickness tensile and Erichsen specimens, cut from as-produced sheets, were polished and tested at different strain rates. During the tensile tests, the plastic localization phenomena consist first of macroscopic deformation bands traveling along the tensile axis, and then of series of stationary deformation bands, each adjacent to the preceding ones; both types of bands involve the full specimen width and yield macroscopically observable surface relief. No comparable surface relief was observed during the standard Erichsen tests. The stress state being known to influence plastic localization phenomena, reduced-width Erichsen tests were performed with 10 to 30 mm width polished specimens, in order to explore the transition from biaxial to uniaxial loading.
机译:由于良好的整体强度和延展性,最近提出了通过冷板成形来制造车身结构的0.5 wt。%C,22 wt。Mn Mn奥氏体钢,在单轴拉伸试验中表现出塑性局部化,而在双轴Erichsen中则没有局部化。拔罐测试。从生产的板材上切下的全厚度拉伸试样和埃里克森试样进行抛光并在不同的应变速率下进行测试。在拉伸试验中,塑性局部化现象首先包括沿拉伸轴行进的宏观形变带,然后是一系列固定的形变带,每个形变带与前面的形变带相邻。两种类型的谱带都涉及整个样品宽度,并产生宏观可观察到的表面起伏。在标准的Erichsen测试中没有观察到类似的表面起伏。已知应力状态会影响塑性定位现象,为了研究从双轴载荷到单轴载荷的过渡,对10至30 mm宽度的抛光试样进行了宽度减小的Erichsen测试。

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