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钴基合金等离子熔覆层残余应力的研究

A Study on the Residual Stress of the Co-Based Alloy Plasma Cladding Layer.

作者信息

Lai Youbin, Yue Xiang, Yue Wenwen

机构信息

Intelligent Manufacturing Key Laboratory of Ministry of Education, Shantou University, Shantou 515063, China.

College of Engineering, Shenyang Agricultural University, Shenyang 110866, China.

出版信息

Materials (Basel). 2022 Jul 25;15(15):5143. doi: 10.3390/ma15155143.

Abstract

The distribution law of residual stress in multi-channel scanned plasma cladding of Co-based alloy under different process parameters was studied by means of simulation and tests, and the optimum process parameters were optimized. The simulation model of the plasma cladding stress field was established by ABAQUS software, and the influence law of the working current, scanning speed, and scanning mode on the residual stress of the Co-based alloy multi-channel scanning was studied. A set of optimal cladding process parameters were obtained. The residual stress of the cladding layer was measured by the blind hole method and compared with the stress value in the finite element model. The results show that there is residual tensile stress on the surface of the cladding layer. The residual stress along the direction of the scanning path is greater than that along the direction of the scan sequence. The residual stress increases with the increase of the working current. The scanning speed is greater, and the residual stress is smaller. The residual stress of the short-edge scanning is greater than that of the long-edge scanning. The residual stress of the successive scanning is greater than that of the reciprocating scanning. The long-edge reciprocating scanning is the best scanning mode. The best combination of process parameters is the working current of 90 A, the scanning speed of 100 mm/min, and the long-edge reciprocating scanning mode.

摘要

通过模拟和试验研究了不同工艺参数下钴基合金多道扫描等离子熔覆残余应力的分布规律,并对最佳工艺参数进行了优化。利用ABAQUS软件建立了等离子熔覆应力场的模拟模型,研究了工作电流、扫描速度和扫描方式对钴基合金多道扫描残余应力的影响规律,获得了一组最佳的熔覆工艺参数。采用盲孔法测量了熔覆层的残余应力,并与有限元模型中的应力值进行了比较。结果表明,熔覆层表面存在残余拉应力,沿扫描路径方向的残余应力大于沿扫描顺序方向的残余应力,残余应力随工作电流的增大而增大,扫描速度越大,残余应力越小,短边扫描的残余应力大于长边扫描的残余应力,连续扫描的残余应力大于往复扫描的残余应力,长边往复扫描是最佳扫描方式,最佳工艺参数组合为工作电流90 A、扫描速度100 mm/min和长边往复扫描方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c1d/9331640/3afb56aa9cac/materials-15-05143-g001.jpg

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