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首页> 外文期刊>Journal of Materials Processing Technology >Customization of residual stress induced in cold spray printing
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Customization of residual stress induced in cold spray printing

机译:冷喷涂中诱导残留应激的定制

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It is generally believed that because of deposition at a temperature lower than the melting point, and high impact velocity of particles in cold spray printing, beneficial compressive residual stresses are induced in the substrate and coating. We have examined this general belief by identifying four major factors influencing the formation of residual stresses: coating and impact-induced temperatures, thermal mismatch of coat and substrate, heat transfer rate, and impact peening effect. A series of experiments is developed to allow studying these effects separately and to investigate their interactions. It is concluded that the heat input and heat transfer rate are the key controlling factors in the sign of the residual stress. Furthermore, we show that one can control the formation of residual stress to a desirable pattern, i.e., compressive in both the coating and the substrate near the interface. Using such parameters, two distinct residual stresses, tensile and compressive, were produced in the Al7075 coated AZ31B sheet. Further, the quality of the two coatings is measured through computerized tomography, surface roughness, and hardness measurements. It is shown that the density and hardness of the compressive samples are higher, while the roughness is lower than the tensile sample.
机译:一般认为,由于沉积温度低于熔点,以及冷喷印花中颗粒的高冲击速度,在基材和涂层中会产生有益的压缩残余应力。我们通过确定影响残余应力形成的四个主要因素来检验这一普遍看法:涂层和冲击诱导温度、涂层和基材的热失配、传热速率和冲击喷丸效应。我们开发了一系列实验来分别研究这些效应,并研究它们之间的相互作用。结果表明,热输入和传热速率是残余应力信号的关键控制因素。此外,我们还表明,可以将残余应力的形成控制在一个理想的模式,即涂层和界面附近的基体中的压缩。利用这些参数,在Al7075涂层AZ31B板材中产生了两种不同的残余应力:拉伸应力和压缩应力。此外,通过计算机断层扫描、表面粗糙度和硬度测量来测量两种涂层的质量。结果表明,压缩试样的密度和硬度高于拉伸试样,而粗糙度低于拉伸试样。

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