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Microstructure and mechanical properties of Ti/Ta/Cu/Ni alloy laminate composite materials produced by explosive welding

机译:爆炸焊接生产Ti / Ta / Cu / Ni合金层压材料层压材料的微观结构和力学性能

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摘要

Ti/Ni alloy-based laminate composite materials were produced by explosive welding with two thin intermediate layers of tantalum and copper placed between Ti and Ni alloy layers. The influence of the thickness of the Cu interlayer (0.1-0.7 mm) on the structure and mechanical properties of the explosively welded composites was examined. Investigations carried out by optical and scanning electron microscopy showed the formation of an inhomogeneous structure in the vicinity of the interfaces with zones of local melting and cavities within these zones. The wavelength and the amplitude at the interface between the copper and tantalum interlayers changed with the thickness of the copper layer. In order to evaluate the mechanical properties of the composites containing copper interlayers of different thicknesses, microhardness, tensile, and bending tests were performed. As the thickness of the copper layer was decreased to 0.3 mm, the tensile and bending strengths of the laminate composites increased.
机译:通过爆炸焊接生产Ti / Ni合金的层压材料复合材料,其具有两个薄的钽中间层和铜置于Ti和Ni合金层之间的铜。研究了Cu中间层(0.1-0.7mm)厚度对爆破焊接复合材料的结构和力学性能的影响。通过光学和扫描电子显微镜进行的研究表明,在这些区域内的局部熔化和空腔区域的接口附近形成了非均匀结构。铜和钽中间层之间的波长和幅度随铜层的厚度而改变。为了评估含有不同厚度,微硬度,拉伸和弯曲试验的含有铜夹层的复合材料的机械性能。随着铜层的厚度降低至0.3mm,层压复合材料的拉伸和弯曲强度增加。

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