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Effects of Spark-Plasma Sintering Treatment on Cold-Sprayed Copper Coatings

机译:等离子烧结处理对冷喷涂铜涂层的影响

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摘要

Cold-spray is well known as an effective coating technique to make thick metallic coatings. However, cold-sprayed metallic coatings usually have low tensile strengths due to low adhesion strength between particles, and low ductility due to low adhesion strength between particles and work hardening. Spark-plasma sintering (SPS) is a pressure-sintering technique that employs a large pulsed direct current. Compared to annealing heat treatment (AHT), SPS is expected to effectively improve the adhesion strength between particles in cold-sprayed metallic coatings. In order to investigate the effects of SPS, cold-sprayed Cu coatings were treated by both SPS and AHT under a wide range of temperatures. The microstructures and mechanical properties of the treated specimens were investigated primarily by scanning electron microscopy, electron backscatter diffraction analysis, hardness tests, and tensile tests. Despite comparable values for porosity, crystal grain size, plastic strain distribution, hardness, and yield stress, the tensile strength and ductility of the specimen treated by SPS at 400℃ (SPS400) were significantly higher than those of the specimen treated by AHT at 450℃. Based on these results, it was determined that SPS treatment is more effective in improving the adhesion strength between the particles in cold-sprayed Cu coatings than AHT.
机译:众所周知,冷喷涂是一种用于制造厚金属涂层的有效涂层技术。然而,由于颗粒之间的低粘附强度,冷喷涂金属涂层通常具有低拉伸强度,并且由于颗粒之间的低粘附强度和加工硬化而具有低延展性。火花等离子体烧结(SPS)是一种采用大脉冲直流电的压力烧结技术。与退火热处理(AHT)相比,SPS有望有效提高冷喷涂金属涂层中颗粒之间的粘合强度。为了研究SPS的效果,在很宽的温度范围内用SPS和AHT对冷喷涂的铜涂层进行了处理。主要通过扫描电子显微镜,电子背散射衍射分析,硬度测试和拉伸测试研究了处理过的样品的微观结构和力学性能。尽管在孔隙度,晶粒尺寸,塑性应变分布,硬度和屈服应力方面具有可比的值,但在400℃下经SPS处理的试样(SPS400)的拉伸强度和延展性明显高于在450℃下经AHT处理的试样℃。根据这些结果,可以确定,与AHT相比,SPS处理在改善冷喷涂Cu涂层中的颗粒之间的粘合强度方面更有效。

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