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Characterisation of handling and service surface damage on Nickel alloys caused by low velocity impacts of blunt hard objects

机译:钝硬物体的低速冲击导致镍合金处理和服务表面损坏的特性

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摘要

This paper presents a characterisation of surface damage, more specifically dents, caused by low velocity impacts of blunt objects on RR1000 Nickel superalloys. These are representative of damage that may occur during handling and service of components during manufacturing or maintenance. The characterisation of dents produced in laboratory tests is carried out both in terms of their geometry and the residual stresses the damage. A finite element model is presented and the results are validated in terms of dent geometry produced for different impact velocities. The stress distribution predicted by the numerical model is also compared with experimentally measured stresses via X-ray diffraction for validation of the model. The residual stresses obtained from the finite element (FE) model and their implications to fatigue and crack propagation lives are also discussed here. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了钝性物体对RR1000镍超合金的低速冲击所造成的表面损伤(更具体地说是凹痕)的特征。这些代表了在制造或维护期间处理和维修组件期间可能发生的损坏。在实验室测试中产生的凹痕的特征既要根据其几何形状进行,也要考虑残余应力对损伤的影响。提出了有限元模型,并根据针对不同冲击速度产生的凹痕几何形状验证了结果。还将通过数值模型预测的应力分布与通过X射线衍射实验测量的应力进行比较,以验证模型。本文还讨论了从有限元(FE)模型获得的残余应力及其对疲劳和裂纹扩展寿命的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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