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Bauschinger Effect of Mn18Cr18N Austenitic Stainless Steel

机译:Bauschinger Mn18Cr18N奥氏体不锈钢作用

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The experimental study of Bauschinger effect in Mn18Cr18N austenitic stainless steel was presented by compression-tensile cyclic loading tests with the prestrains ranging from 0.005 to 0.1, which was illustrated utilizing stress-strain curves and analysed by TEM images from aspects of microstructural mechanisms. Moreover, the Bauschinger effect and its associated roundness phenomenon in reverse flow curve with respect to different cycles and cyclic strain amplitudes were evaluated in a quantitative manner. The experimental results indicate that Bauschinger effect is apparent during the test. At smaller cyclic strain amplitude, intergranular backstress is the main source of Bauschinger effect. With further increasing of cycles, dislocation density increases and dislocation movement is hindered in the reverse deformation. Therefore, Bauschinger effect is weakened to some extent. At large cyclic strain amplitude, backstress originating from the dislocation pile-up at grain boundaries and the continuous formation of deformation twins dominate the Bauschinger effect. In addition, the backstress results in the roundness of reverse curve during cyclic loading. The larger value of Delta epsilon(p)*, the more obvious the roundness of the reverse curve, and the more significant the Bauschinger effect.
机译:通过压缩 - 拉伸循环加载试验,从0.005至0.1的血管加载载荷试验提出了Mn8Cr18N奥氏体不锈钢中的Bauschinger效应的实验研究,其利用应力 - 应变曲线并由微观结构机构的各方面分析并通过TEM图像分析。此外,以定量的方式评价关于不同循环和循环应变幅度的反向流动曲线中的Bauschinger效应及其相关的圆度现象。实验结果表明,在测试期间,Bauschinger效应是显而易见的。在较小的循环应变幅度下,晶间背部是Bauschinger效应的主要来源。随着循环的进一步增加,脱位密度增加和位错运动在反转变形中受到阻碍。因此,Bauschinger效应在一定程度上削弱。在大的循环应变幅度下,源自位错堆积在晶界和变形双胞胎的连续形成主导了Bauschinger效应。此外,返回率在循环加载期间导致反向曲线的圆度。 Delta Epsilon(P)*的较大值越明显,反向曲线的圆度越明显,Bauschinger效应越显着。

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