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High-Temperature Severe Plastic Deformation of Ferritic Steel by Torsion

机译:铁素体钢的高温严重塑性变形扭转

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An ultra-low carbon IF steel was heavily deformed up to an equivalent strain of 36 at various high temperatures of ferrite single-phase region and various strain rates. Effects of temperature and strain rate on the microstructures evolved in torsion deformation were clarified. On the other hand, it was found that homogeneous ultrafine grained structures were not obtained by the present torsion deformation though very high strain was applied. The coarser grain sizes than those obtained by conventional severe plastic deformation (like ARB) were due to the deformation at higher temperature and lower strain rate, but lower fraction of high-angle grain boundaries in the torsion specimen was suggested to be attributed to the characteristics of monotonic torsion (or simple shear) deformation including the way of strain evaluation.
机译:在铁素体单相区的各种高温和各种应变率下,超低碳IF钢都发生了严重变形,直至等效应变为36。阐明了温度和应变速率对扭转变形中微观组织的影响。另一方面,发现虽然施加了非常高的应变,但通过目前的扭转变形不能获得均匀的超细晶粒结构。比常规剧烈塑性变形(如ARB)获得的晶粒尺寸要大,这是由于在较高的温度和较低的应变速率下产生的形变,但建议将扭转试样中高角度晶界的比例降低,归因于其特性单调扭转(或简单剪切)变形的方法,包括应变评估的方法。

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