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首页> 外文期刊>Surface & Coatings Technology >Effect on residual stresses in plasma sprayed Al-Si/B4C composite coatings subjected to thermal shock
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Effect on residual stresses in plasma sprayed Al-Si/B4C composite coatings subjected to thermal shock

机译:对等离子喷涂热冲击Al-Si / B4C复合涂层残余应力的影响

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摘要

Al-Si/B4C composite coatings were deposited on metallic substrates using an atmospheric plasma spray technique for diesel engine motor applications. The effect on residual stresses of the reinforcement particle (B4C) content, coating thickness and porosity of Al-Si/B4C coatings on AI-Si alloy substrate were investigated by the finite element method (FEM). The coatings were characterized by means of optical microscope. Thermal loads were applied to the model at a temperature of 550 degrees C using FEM. Metallographic analysis of the coatings proved the existence of porosity and reinforcement particle. It was found that the volume content of the B4C phase was in the range of 5-25%, and the porosity had a content at 0-14 vol.%. The coating thickness was in the range of 100-1000 mu m. Finite element calculations demonstrated that the thermal shock resistance decreased with the increase of the reinforcement particle content, the increase in coating thickness and with porosity contents of over 4 vol.%. Of the coating systems, Al-Si/20% B4C coating possess the highest thermal shock resistance. (c) 2004 Elsevier B.V. All rights reserved.
机译:使用常压等离子体喷涂技术将Al-Si / B4C复合涂层沉积在金属基材上,以用于柴油发动机发动机。通过有限元方法(FEM)研究了Al-Si / B4C涂层对Al-Si / B4C涂层中增强颗粒(B4C)含量,涂层厚度和孔隙率的残余应力的影响。借助于光学显微镜表征涂层。使用FEM在550摄氏度的温度下将热负荷应用于模型。涂层的金相分析证明存在孔隙和增强颗粒。发现B4C相的体积含量在5-25%的范围内,并且孔隙率为0-14体积%。涂层厚度在100-1000μm的范围内。有限元计算表明,随着增强颗粒含量的增加,涂层厚度的增加以及孔隙率超过4%(体积),耐热冲击性降低。在涂层系统中,Al-Si / 20%B4C涂层具有最高的抗热震性。 (c)2004 Elsevier B.V.保留所有权利。

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