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Textures and mechanical responses with strain path in FeP04

机译:FeP04中的织构和具有应变路径的力学响应

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We report extensive x-ray diffractometric measurements as well as conventional metallurgical and mechanical tests on thin steel sheets of FeP04 for deep drawability in order to identify key microscopic parameters that govern both texture evolution and mechanical response as function of the type of loading path. While Microhardness measurements, as expected show an evolution as function of material work hardening, the distribution of grain size seems to be unaffected by the different type of loading path. Quantitative texture measurements demonstrates a development of different texture components depending on the type of loading path used to achieve the plastic deformation. Indeed, when compared to as received samples significant variation was found on Poles density and orientation distribution function versus the type of applied stress states.
机译:我们报告了广泛的X射线衍射测量以及对FePO4薄钢板的常规冶金和机械测试的深冲性,以便确定可控制纹理演变和机械响应随装载路径类型变化的关键微观参数。正如预期的那样,虽然显微硬度测量显示出材料加工硬化的变化,但晶粒尺寸的分布似乎不受不同类型的加载路径的影响。定量的纹理测量表明,取决于用于实现塑性变形的加载路径的类型,不同纹理成分的发展。确实,当与接收的样本进行比较时,发现极密度和方向分布函数与所施加应力状态的类型之间存在显着差异。

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