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首页> 外文期刊>Journal of Thermal Spray Technology >Deposition of Electrically Conductive Coatings on Castable Polyurethane Elastomers by the Flame Spraying Process
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Deposition of Electrically Conductive Coatings on Castable Polyurethane Elastomers by the Flame Spraying Process

机译:火焰喷涂法在可浇铸聚氨酯弹性体上沉积导电涂层

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摘要

Deposition of metallic coatings on elastomeric polymers is a challenging task due to the heat sensitivity and soft nature of these materials and the high temperatures in thermal spraying processes. In this study, a flame spraying process was employed to deposit conductive coatings of aluminum-12silicon on polyurethane elastomers. The effect of process parameters, i.e., stand-off distance and air added to the flame spray torch, on temperature distribution and corresponding effects on coating characteristics, including electrical resistivity, were investigated. An analytical model based on a Green's function approach was employed to determine the temperature distribution within the substrate. It was found that the coating porosity and electrical resistance decreased by increasing the pressure of the air injected into the flame spray torch during deposition. The latter also allowed for a reduction of the stand-off distance of the flame spray torch. Dynamic mechanical analysis was performed to investigate the effect of the increase in temperature within the substrate on its dynamic mechanical properties. It was found that the spraying process did not significantly change the storage modulus of the polyurethane substrate material.
机译:由于弹性材料的热敏感性和柔软性以及热喷涂过程中的高温,在弹性体聚合物上沉积金属涂层是一项艰巨的任务。在这项研究中,采用火焰喷涂工艺在聚氨酯弹性体上沉积了铝12硅的导电涂层。研究了工艺参数的影响,即停靠距离和添加到火焰喷枪中的空气对温度分布的影响以及对涂层特性(包括电阻率)的相应影响。采用基于格林函数方法的分析模型来确定基板内的温度分布。发现在沉积过程中,通过增加注入火焰喷枪的空气压力,可以降低涂层的孔隙率和电阻。后者还允许减小火焰喷灯的支座距离。进行动态力学分析以研究衬底内温度升高对其动态力学性能的影响。发现喷涂过程没有显着改变聚氨酯基材的储能模量。

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