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Microstructural study of adiabatic shear bands formed in serrated chips during high-speed machining of hardened steel

机译:淬火钢高速加工过程中锯齿状切屑形成的绝热剪切带的显微组织研究

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摘要

The characterization of the microstructure and phase transformation in adiabatic shear bands (ASBs) within the serrated chips generated during high-speed machining of hardened 30CrNi3MoV steel has been performed. The observations showed that the microstructure gradually changes from the center of the ASB to the matrix of the chip, the fine equiaxed grains appear with size of about 0.4–0.6 μm in the center of the ASBs, the transitional region adjacent to the ASB is characterized by the broken and elongated martensite laths in shear direction. The analysis indicated that the serrated chip formation was likely due to adiabatic shear instability that occurred in the primary shear zones and the transformation to martensite within the ASB. Dynamic recovery and recrystallization are the dominant metallurgical processes during microstructural evolution of ASB.
机译:进行了30CrNi 3 MoV硬化钢高速加工过程中产生的锯齿状切屑中绝热剪切带(ASB s )的显微组织和相变的表征。观察结果表明,微结构从ASB的中心逐渐向切屑的基质变化,细小的等轴晶粒出现在ASB s 的中心,尺寸约为0.4-0.6μm。与ASB相邻的过渡区域的特征是在剪切方向上断裂和拉长的马氏体板条。分析表明,锯齿状切屑的形成可能是由于在主剪切区发生了绝热剪切不稳定性以及在ASB内转变为马氏体。动态恢复和再结晶是ASB组织演变过程中的主要冶金过程。

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