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Preparation and High Temperature Tensile Mechanical Properties of Multilayer Metal Hot Forging Die Specimens

机译:多层金属热锻模具试样的制备及高温拉伸力学性能

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The bonding strength of cladding is the key to the normal use of multilayer metal hot forging die. This paper presents a method of multilayer metal specimens prepared by PTAW. The specimens are selected H13 steel as the substrate, M2 steel as the transition layer, Ni60A alloy as the high temperature cladding, and the high temperature tensile test is performed on the Gleeble 3500 machine. The research results show that the substrate and cladding have good metallurgical bonding and the cladding hardness is higher than the substrate. Compared with H13 specimens, tensile strength of cladding metal specimens increase, elongation and yield strength decrease. All tensile fractures appeared on the H13 substrate during the experiment. It indicates that the cladding strength and bonding strength are higher than the substrate and the high temperature strength of cladding metal hot forging die is overall superior to H13 hot forging die.
机译:包层的粘接强度是多层金属热锻模具正常使用的关键。本文介绍了PTAW制备的多层金属样品的方法。将样品选择H13钢作为基板,作为过渡层的M2钢,Ni60a合金作为高温包层,并且在Gleeble 3500机上进行高温拉伸试验。研究结果表明,基材和包层具有良好的冶金键合,包层硬度高于基材。与H13试样相比,包层金属样品的拉伸强度增加,伸长率和屈服强度降低。在实验期间,所有拉伸骨折出现在H13衬底上。表示包层强度和粘合强度高于基材,熔覆金属热锻造模具的高温强度总体上优于H13热锻模。

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