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A Consideration of Cleavage Crack Propagation in Fe_2Si Steel

机译:关于Fe_2Si钢裂解裂纹扩展的思考。

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It is well established that within the lower-shelf temperature range of Fe2-3Si polycrystalline steels, the brittle fracture occurs predominately by transgranular cleavage, unless subject to embrittling heat-treatments. The cleavage fracture develops on the well established {001} planes of the bcc structure. In this paper we revisit the growth, of these cleavage cracks by considering crack propagation in single crystals of Fe2Si steel. Three point bend specimens manufactured from oriented crystals have been tested by impact loading at a temperature of-196℃. High spatial resolution focused ion beam imaging combined with ion milling is used to examine in detail the crack propagation path and has provided a new insight into the mechanisms involved. In particular it has been established that within the process zone of the propagating cracks local strain is accommodated by the formation of {112} twins. The results are discussed with respect to the overall crack propagation mechanism.
机译:公认的是,在Fe2-3Si多晶钢的较低层架温度范围内,除非经过脆化热处理,否则脆性断裂主要通过跨晶分裂发生。分裂断裂在密件抄送结构的良好建立的{001}平面上发展。在本文中,我们通过考虑在Fe2Si钢单晶中的裂纹扩展来重新研究这些解理裂纹的生长。由取向晶体制成的三点弯曲试样已经在-196℃的温度下通过冲击载荷进行了测试。结合离子铣削的高空间分辨率聚焦离子束成像技术可用于详细检查裂纹扩展路径,并为所涉及的机理提供了新见识。特别地,已经确定,在{{}}孪晶的形成中,在扩展裂纹的加工区域内容纳了局部应变。讨论了有关整体裂纹扩展机理的结果。

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