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Analysis on the effect of pressure and mass fraction of chromium to mechanical properties and electrical conductivity of copper-chromium composite in hot compaction process

机译:铬的压力和质量分数对热压过程中铜铬复合材​​料力学性能和电导率的影响分析

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摘要

Cu-Cr composite is used in the electronic industry as a material which is directly connected to the electricity, as a component of a circuit breaker, cable contact, circuit board, etc. In this study, hot compaction method was employed to manufacture Cu-Cr composite which has excellent hardness and electrical conductivity. Composite manufacturing was based on powder metallurgy technique while mixing used mechanical milling method in regards to its better homogeneity. Hot compaction process set at the temperature of 300°C was applied to the powder material to increase the plasticity so the compaction can be done easier. Some variation was made on the composition of Cu : Cr ratio (90 : 10, 80 : 20, 70 : 30, and 60 : 40), and the compaction pressure (500, 700, and 1000 MPa). Sintering was conducted at 85°C with holding time of 1 h. Based on the results, the optimum sintering density of 96.81% of its theoretical density was obtained at Cu : Cr ratio as of 80 : 20. Maximum hardness at 60%Cu : 40%Cr and P = 1000 MPa was 129 VHN. And, electrical conductivity was reached its optimum value of 82.6% IACS when the Cu:Cr ratio was 90:10 at P = 1000 MPa.
机译:Cu-Cr复合材料在电子工业中用作直接与电连接的材料,作为断路器,电缆触点,电路板等的组成部分。在这项研究中,采用热压法制造Cu-Cr复合材料。 Cr复合材料,具有出色的硬度和导电性。复合材料制造基于粉末冶金技术,同时考虑到其更好的均质性,使用机械研磨方法进行混合。对粉末材料进行设定为300°C的热压实工艺以增加可塑性,因此可以更轻松地进行压实。 Cu:Cr比(90:10、80:20、70:30和60:40)的组成和压实压力(500、700和1000 MPa)有所不同。烧结在85℃下进行,保持时间为1小时。基于该结果,在Cu∶Cr比率为80∶20的情况下,获得了其理论密度的96.81%的最佳烧结密度。在60%Cu∶40%Cr和P = 1000MPa时的最大硬度为129VHN。并且,当P = 1000MPa时Cu∶Cr比为90∶10时,电导率达到其最佳值82.6%IACS。

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