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生物活性玻璃涂层激光熔覆过程中热与应力演变的三维分析

3D analysis of thermal and stress evolution during laser cladding of bioactive glass coatings.

作者信息

Krzyzanowski Michal, Bajda Szymon, Liu Yijun, Triantaphyllou Andrew, Mark Rainforth W, Glendenning Malcolm

机构信息

The University of Sheffield, Department of Materials Science and Engineering, Mappin Street, Sheffield S1 3JD, UK; AGH University of Science and Technology, Mickiewicza 30, Krakow 30-059, Poland.

AGH University of Science and Technology, Mickiewicza 30, Krakow 30-059, Poland.

出版信息

J Mech Behav Biomed Mater. 2016 Jun;59:404-417. doi: 10.1016/j.jmbbm.2016.02.023. Epub 2016 Feb 23.

Abstract

Thermal and strain-stress transient fields during laser cladding of bioactive glass coatings on the Ti6Al4V alloy basement were numerically calculated and analysed. Conditions leading to micro-cracking susceptibility of the coating have been investigated using the finite element based modelling supported by experimental results of microscopic investigation of the sample coatings. Consecutive temperature and stress peaks are developed within the cladded material as a result of the laser beam moving along the complex trajectory, which can lead to micro-cracking. The preheated to 500°C base plate allowed for decrease of the laser power and lowering of the cooling speed between the consecutive temperature peaks contributing in such way to achievement of lower cracking susceptibility. The cooling rate during cladding of the second and the third layer was lower than during cladding of the first one, in such way, contributing towards improvement of cracking resistance of the subsequent layers due to progressive accumulation of heat over the process.

摘要

对在Ti6Al4V合金基底上激光熔覆生物活性玻璃涂层过程中的热场和应变-应力瞬态场进行了数值计算和分析。利用基于有限元的建模方法,并结合样品涂层微观研究的实验结果,研究了导致涂层产生微裂纹敏感性的条件。由于激光束沿复杂轨迹移动,熔覆材料内部会出现连续的温度和应力峰值,这可能导致微裂纹。将基板预热至500°C可降低激光功率,并降低连续温度峰值之间的冷却速度,从而有助于降低裂纹敏感性。第二层和第三层熔覆过程中的冷却速率低于第一层,由于在整个过程中热量的逐渐积累,有助于提高后续层的抗裂性。

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