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Microstructure and mechanical properties of diffusion bonded joints of high-entropy alloy Al 5(HfNbTiZr) 95 and TC4 titanium alloy

机译:高熵合金Al (HFNBTIZR) 95 和TC4钛合金

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TC4 (Ti–6Al–4V) titanium alloy and Al5(HfNbTiZr)95refractory high-entropy alloy were successfully diffusion bonded at a temperature range of 800–1000?°C for 60?min under 5?MPa. The microstructure and mechanical properties of the diffusion bonded joints were investigated. The diffusion bonding seam of the joint contained two different zones, namely: a reaction zone with acicular titanium structures (Zone I); and a continuous solid solution reaction zone (Zone II) which inherited the orientation of the matrix Al5(HfNbTiZr)95. The highest microhardness of reaction zone reached 6.82?GPa, located in the boundary of TC4 and the acicular titanium structure zone. The effects of bonding temperature on the microstructure and mechanical properties of the joints were revealed. As bonding temperature increased, all the reaction zones grew in a parabolic manner with an increase in the bonding temperature. The shear strength of the joints ranged from 55.56?MPa to 777.06?MPa as the bonding temperature increased. The maximum shear strength of 770.06?MPa was obtained at a bonding temperature of 950?°C for 60?min under 5?MPa, and the fracture located in the TC4 substrate illustrated a typical ductile fracture mode.
机译:TC4(Ti-6AL-4V)钛合金和Al5(HFNBTIZR)95重症的高熵合金成功扩散在800-1000℃的温度范围内,在5℃以下的温度范围内键合60?mpa。研究了扩散粘合接头的微观结构和力学性能。关节的扩散接缝含有两种不同的区域,即:具有针状钛结构的反应区(I区);和遗传基质Al5(HFNBTIZR)95的取向的连续固溶体反应区(区域II)。反应区的最高微硬度达到6.82〜GPA,位于TC4和针状钛结构区的边界中。揭示了键合温度对关节微观结构和机械性能的影响。随着键合温度的增加,所有反应区以抛物线方式增长,键合温度的增加。随着键合温度的增加,关节的剪切强度范围为55.56〜777.06μm≤MPa。 770.06℃的最大剪切强度在950Ω℃的粘合温度下获得60℃,在5℃下的粘合温度下获得,并且位于TC4基板中的断裂示出了典型的延性裂缝模式。

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