Wang Hao, Niu Haoyi, Wu Hao, Li Rengeng, Fan Guohua
Key Laboratory for Light-Weight Materials, College of Materials Science and Engineering, Nanjing Tech University, Nanjing 210009, China.
College of Materials Science and Engineering, Chongqing University, Chongqing 400030, China.
Materials (Basel). 2022 Apr 14;15(8):2891. doi: 10.3390/ma15082891.
An in situ tensile test of the ring-rolled GH4169 alloy is performed to investigate the plastic deformation behavior at the micro level. Slip system activations are identified by slip traces captured by a scanning electron microscope and lattice orientation data acquired by electron backscattered diffraction. Our results demonstrated that the fraction of low-angle grain boundaries gradually increased upon tensile deformation, and the misorientation evolution in the grain interior was severely inhomogeneous. The Schmid factors at the grains of interest are calculated for comparison with the actual activated slip systems. Most of the slip system activation coincides with the Schmid law, as opposed to the initiation of other potential slip systems at some grains.
对环轧GH4169合金进行原位拉伸试验,以研究微观层面的塑性变形行为。通过扫描电子显微镜捕获的滑移痕迹和电子背散射衍射获取的晶格取向数据来识别滑移系激活情况。我们的结果表明,在拉伸变形时,低角度晶界的比例逐渐增加,且晶粒内部的取向差演变严重不均匀。计算感兴趣晶粒处的施密德因子,以便与实际激活的滑移系进行比较。大多数滑移系激活与施密德定律相符,与某些晶粒处其他潜在滑移系的启动情况相反。