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Thermal stability and properties of deformation-processed Cu-Fe in situ composites

机译:变形加工的Cu-Fe原位复合材料的热稳定性和性能

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摘要

This paper investigated the thermal stability, tensile strength, and conductivity of deformation-processed Cu-14Fe in situ composites produced by thermo-mechanical processing. The thermal stability was analyzed using scanning electronic microscope and transmission electron microscope. The tensile strength and conductivity were evaluated using tensile-testing machine and micro-ohmmeter, respectively. The Fe fibers in the deformation-processed Cu-14Fe in situ composites undergo edge recession, longitudinal splitting, cylinderization, break-up, and spheroidization during the heat treatment. The Cu matrix experiences recovery, recrystallization, and precipitation phase transition. The tensile strength and conductivity first increase with increasing temperature of heat treatment, reach peak values at different temperatures, and then decrease at higher temperatures. The value of parameter Z of the in situ composite reaches the peak of 2.86 x 107 MPa2 pct IACS after isothermal heat treatment at 798 K (525 °C) for 1 hour. The obtained tensile strength and conductivity of the in situ composites are 907 MPa and 54.3 pct IACS; 868 MPa and 55.2 pct IACS; 810 MPa and 55.8 pct IACS; or 745 MPa and 57.4 pct IACS, at η = 7.8 after isochronal heat treatment for 1 hour.
机译:本文研究了热机械加工变形后的Cu-14Fe原位复合材料的热稳定性,拉伸强度和电导率。使用扫描电子显微镜和透射电子显微镜分析热稳定性。分别使用拉伸试验机和微欧姆计评估拉伸强度和导电率。变形处理后的Cu-14Fe原位复合材料中的Fe纤维在热处理过程中会发生边缘退缩,纵向断裂,圆柱化,破裂和球化。铜基体经历恢复,重结晶和沉淀相变。抗拉强度和导电率首先随着热处理温度的升高而增加,在不同温度下达到峰值,然后在较高温度下降低。在798 K(525°C)等温热处理1小时后,原位复合材料的参数Z值达到2.86 x 107 MPa2 pct IACS的峰值。获得的原位复合材料的拉伸强度和电导率是907 MPa和54.3 pct IACS。 868 MPa和55.2 pct IACS; 810 MPa和55.8 pct IACS;等时热处理1小时后,在η= 7.8时为745 MPa和57.4 pct IACS。

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