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首页> 外文期刊>Journal of Thermal Spray Technology >Microstructure and Room Temperature Compressive Deformation Behavior of Cold-Sprayed High-Strength Cu Bulk Material
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Microstructure and Room Temperature Compressive Deformation Behavior of Cold-Sprayed High-Strength Cu Bulk Material

机译:冷喷涂高强度Cu散装材料的微观结构和室温压缩性能

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摘要

This study investigated the room temperature compressive deformation behavior of Cu bulk material manufactured by cold spray process. Initial microstructural observation identified a unique microstructure with grain size of hundreds of nm in the particle interface area and relatively coarse grains in all other areas. Room temperature compressive results confirmed cold-sprayed Cu to have a yield strength of 340 MPa, which is similar to materials manufactured by severe plastic deformation process such as equal channel angular press. In addition, strain softening phenomenon, which is rarely found in room temperature compressive deformation, was observed. According to such unique characteristics, continuous microstructure evolution and surface fractures according to the strain (et = 0.3/0.6/0.9) of the material were observed, and considerations were made for deformation and fracture behavior. Microstructural observation after compressive deformation confirmed that average grain size decreased as the strain increased, and the fraction of the low-angle boundary, which has an indirect relationship with dislocation density, showed a tendency to decrease in et = 0.30.6 region where the strain softening phenomenon occurs. Based on the results described above, this study was able to identify the possibility of manufacturing cold-sprayed Cu bulk material for structural material and its room temperature deformation behavior.
机译:研究了冷喷涂法制备的铜块体材料的室温压缩变形行为。初步微观结构观察发现,颗粒界面区域的晶粒尺寸为数百纳米,而所有其他区域的晶粒相对较粗。室温压缩结果证实,冷喷涂铜具有340 MPa的屈服强度,这与通过严重塑性变形工艺(如等通道角压力机)制造的材料相似。此外,还观察到了室温压缩变形中罕见的应变软化现象。根据这种独特的特性,观察到了连续的微观结构演变和根据材料应变(et=0.3/0.6/0.9)产生的表面断裂,并考虑了变形和断裂行为。压缩变形后的微观结构观察证实,平均晶粒尺寸随着应变的增加而减小,并且在发生应变软化现象的et=0.30.6区域,与位错密度有间接关系的低角度边界部分有减小的趋势。基于上述结果,本研究能够确定制造用于结构材料的冷喷涂铜块体材料的可能性及其室温变形行为。

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