首页> 外国专利> HIGH-HARDNESS HIGH-THERMAL CONDUCTIVITY COMPOSITE METALLIC MATERIAL, METHOD FOR PRODUCTION THEREOF, AND MOLD FOR MOLDING PLASTIC OR FIBER-REINFORCED PLASTIC

HIGH-HARDNESS HIGH-THERMAL CONDUCTIVITY COMPOSITE METALLIC MATERIAL, METHOD FOR PRODUCTION THEREOF, AND MOLD FOR MOLDING PLASTIC OR FIBER-REINFORCED PLASTIC

机译:高硬度,高导热率的复合金属材料,其制造方法以及用于模制塑料或纤维增强塑料的模具

摘要

PROBLEM TO BE SOLVED: To avoid occurrence of bonding defect by favorably bonding a high-heat transfer material and a high-hardness material when in use as a mold and the like.;SOLUTION: In a high-hardness high-thermal conductivity composite metallic material 1, a Cu-Ni-Si-based copper alloy material 3 and a high-hardness metallic material 2 are interfacially bonded, and a diffusion layer 4 of Ni, Si is formed on the bonding interface. The high-hardness high-thermal conductivity composite metallic material 1 can be produced by heating the Cu-Ni-Si-based copper alloy material 3 and the high-hardness metallic material 2 interfacially bonded and diffusing Ni and Si of the Cu-Ni-Si-based copper alloy to the side of the high-hardness metallic material to form the diffusion layer of Ni, Si on the interface. The favorable bonding condition is obtained by interfacial bonding of the Cu-Ni-Si-based copper alloy material 3 and the high-hardness metallic material 2. The diffusion layer 4 of Ni, Si is formed on the interface, and the negative effect due to the difference between the linear expansion coefficients of the Cu-Ni-Si-based copper alloy material 3 and the high-hardness metallic material 2 is prevented. Thus, the favorable bonding condition is maintained.;COPYRIGHT: (C)2016,JPO&INPIT
机译:解决的问题:在用作模具等时,通过良好地粘结高热传递材料和高硬度材料来避免粘结缺陷的发生;解决方案:在高硬度高导热性复合金属中在材料1中,将Cu-Ni-Si系铜合金材料3和高硬度金属材料2界面接合,在接合界面上形成Ni,Si的扩散层4。高硬度高热导率复合金属材料1可以通过对界面结合的Cu-Ni-Si系铜合金材料3和高硬度金属材料2进行加热,并扩散Cu-Ni-的Ni和Si来制造。硅基铜合金的侧面是高硬度金属材料,在界面上形成Ni,Si扩散层。通过Cu-Ni-Si系铜合金材料3与高硬度金属材料2的界面结合,可以得到良好的结合条件。在界面上形成Ni,Si的扩散层4,并且产生不良影响。这样就防止了Cu-Ni-Si基铜合金材料3和高硬度金属材料2的线性膨胀系数之间的差异。因此,保持了良好的粘合条件。;版权所有:(C)2016,JPO&INPIT

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