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Influence of cold gas spray processing conditions on the properties of 316L stainless steel coatings

机译:冷气喷涂条件对316L不锈钢涂层性能的影响

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摘要

It is well known that particle velocity before deposition is one of the most important parameters for fabrication of the high-quality cold sprayed coatings. In this work, 316L stainless steel powders were deposited on the substrate with the same material. The influence of particle size, morphology and processing parameters such as gas pressure (up to 4 MPa) and temperature (up to 1000 degrees C), on particle velocity have been investigated using a DPV-2000 in-flight particle velocity monitoring system, followed by the measurement and analysis of deposition efficiency and coating mechanical properties including tensile strength and micro-hardness of the coatings. The results show that a higher particle velocity can be achieved by using particles with an angular morphology and a finer particle size. Higher particle velocities, resulting from higher working gas pressure and temperature, yield much denser coatings with higher deposition efficiency, micro-hardness and tensile strength.
机译:众所周知,沉积前的颗粒速度是制造高质量冷喷涂涂层的最重要参数之一。 在这项工作中,用相同的材料沉积在基材上沉积316L不锈钢粉末。 已经使用DPV-2000飞行飞行粒度速度监测系统研究了粒度,形态和加工参数(诸如气体压力(最多4MPa)和温度(高达4MPa)和温度(最多1000摄氏度)的粒子速度的影响 通过测量和分析沉积效率和涂层机械性能,包括涂层的拉伸强度和微硬度。 结果表明,通过使用具有角形态的颗粒和更精细的粒度可以实现更高的粒子速度。 较高的颗粒速度,由更高的工作气体压力和温度导致,产生更高的密集涂层,沉积效率更高,微硬度和拉伸强度。

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