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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Effect of orientations on in situ tensile deformation and fracture behaviours of nickel-base single-crystal superalloys
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Effect of orientations on in situ tensile deformation and fracture behaviours of nickel-base single-crystal superalloys

机译:取向对镍基单晶高温合金原位拉伸变形和断裂行为的影响

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摘要

After systematically investigating in situ tensile deformation and fracture behaviours of nickel-base single-crystal superalloys with four different orientations, their slip and fracture modes in relation to the orientations are obtained and shown as follows. In [0 0 1] oriented specimen, four slip systems were activated and the crack initiated along the interactive location between the third slip bands (SBs) and deformation bands in priority. The crack propagation involves all three crack opening types of I, II and III. [0 1 1] oriented specimens exhibited obvious low strain hardening rate and high ductility, which can be attributed to the balance between the softening caused by the propagation of SBs and the latent hardening caused by the propagation of deformation bands. Except for [1-bar 1 1] case, the critical resolved shear stress(CRSS) of the other oriented superalloys at room temperature is approximate, which is due to non-Schmid behaviour in superalloys. Lall-Chin-Pope model is used to explain the orientation dependence of CRSS. Furthermore, the fracture modes of different oriented specimens depend on the intensity of intrusion and extrusion and the degree of match between normal stress and shear stress. The shear stress is beneficial to the crack initiation and the normal stress contributes to the crack propagation.
机译:在系统地研究了四种不同取向的镍基单晶高温合金的原位拉伸变形和断裂行为后,得出了它们相对于取向的滑移和断裂模式,如下所示。在[0 0 1]取向的样本中,激活了四个滑移系统,并优先沿着第三滑移带(SBs)和形变带之间的相互作用位置开裂。裂纹扩展涉及I,II和III的所有三种裂纹开口类型。 [0 1 1]取向的样品表现出明显的低应变硬化速率和高延展性,这可以归因于SB的传播引起的软化和变形带的传播引起的潜在硬化之间的平衡。除[1-bar 1 1]情况外,其他取向的高温合金在室温下的临界解析剪切应力(CRSS)近似,这是由于高温合金的非Schmid行为所致。 Lall-Chin-Pope模型用于解释CRSS的方向依赖性。此外,不同取向试样的断裂模式取决于侵入和挤压的强度以及法向应力和剪切应力的匹配程度。切应力有利于裂纹萌生,而正应力有助于裂纹扩展。

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