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Role of stacking fault energy (SFE) on the high strain rate deformation of cold sprayed Cu and Cu-Al alloy coatings

机译:堆叠故障能量(SFE)对冷喷涂Cu和Cu-Al合金涂层高应变率变形的作用

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摘要

Cold spray deposition involves a unique combination of high strain rate and moderate to high strain deformation of powder particles that contrasts it from conventional severe plastic deformation techniques. In the present work, a systematic study of the microstructure and micromechanical properties of cold sprayed Cu and Cu-Al alloys, which are known for significant variation in stacking fault energy with small alloying addition, is presented. The deposition process results in significant grain refinement (<50 nm) and profuse deformation twinning with very fine twins (<20 nm) in the Cu-Al alloys. The theoretical predictions of the extent of grain refinement using a dislocation-based model agree well with the experimental observations for the alloys, even in the presence of significant twinning. The inherent discrete nature of the cold spray coating deposition results in significant heterogeneity and hence extensive hardness mapping has been performed to establish structure-property correlations at the micrometer length scale. Furthermore, the various factors influencing the hardness of the coatings are analytically determined and it was found that the strengthening contribution from the boundary (grain/twin) is much lower than that determined from Hall-Petch type relationship in case of the alloys that showed significant twinning. A twin mediated deformation mechanism in the presence of fine twins, which subsequently de-twin, is found to explain the lower boundary strengthening.
机译:冷喷雾沉积涉及高应变率的独特组合和中度至高应变变形的粉末颗粒,从传统的严重塑性变形技术造影。在本作工作中,呈现了冷喷涂Cu和Cu-Al合金的微观结构和微机械性能的系统研究,该研究已知以小的合金化加入堆叠故障能量的显着变化。沉积工艺导致显着的晶粒细化(<50nm)和Cu-Al合金中具有非常精细的双胞胎(<20nm)的多样性变形。使用基于错位的模型的晶粒细化程度的理论预测甚至在合金的实验观察中,即使在有明显的孪生存在下也是如此。冷喷涂沉积的固有的离散性质导致显着的异质性,因此已经进行了广泛的硬度映射,以在千分尺长度下建立结构性质相关性。此外,影响涂层硬度的各种因素被分析确定,发现来自边界(谷物/双)的强化贡献远低于霍尔 - 竖起型关系中,以防显着的情况孪生。发现在随后去双胞胎的细双胞胎存在下的双介导的变形机制解释了下边界强化。

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