首页> 外文期刊>Journal of Thermal Spray Technology >Residual Stress Evolution in Zirconia (Y8%) Coatings During Atmospheric Plasma Spraying for Substrates Under Rotating Kinematic
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Residual Stress Evolution in Zirconia (Y8%) Coatings During Atmospheric Plasma Spraying for Substrates Under Rotating Kinematic

机译:旋转运动旋转运动中氧化锆(Y8%)涂层的残余应力演化

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摘要

Ceramics coatings produced by atmospheric plasma spraying (APS) on steel alloys parts involve high residual stress level that can affect the coating properties and integrity. Most of the experimental studies were focused on the stress evaluation into APS-produced coatings onto static targets. However, these studies have not been extended to stresses induced on rotating samples. Indeed, the thermal background and the deposition way onto a static target is different from a rotating one, resulting in indifferent coating residual stresses. The aim of this work is to estimate and understand the real-time stress evolution from the sandblasting process to the coating formation while the substrate is fixed at a rotating support thanks to a new system developed in the laboratory. Three different sources of stresses are analyzed in this paper: stresses induced by sandblasting, substrate heating, and splat quenching followed by the cooling down of the coating/substrate composite. Resulting stresses measurements are compared with after test ones made by incremental hole drilling.
机译:由大气等离子喷涂(APS)产生的陶瓷涂层钢合金零件涉及高残余应力水平,可影响涂层性能和完整性。大多数实验研究都集中在静态靶标中的APS制造的涂层中的应力评估。然而,这些研究尚未扩展到旋转样品上诱导的应力。实际上,将热背景和沉积方式与静态目标不同于旋转靶,导致脱涂的涂覆残余应力。这项工作的目的是估计和理解从喷砂过程到涂层形成的实时应力进化,而基板通过在实验室中开发的新系统固定在旋转支撑件处。本文分析了三种不同的应力来源:喷砂,衬底加热和Splat淬火诱导的应力,然后进行涂层/基板复合材料的冷却。将产生的压力测量与通过增量钻孔钻孔制成的测试之后进行比较。

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