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首页> 外文期刊>Journal of Materials Science >Kinetics of wetting and spreading of AgCu filler metal over Ti-6Al-4V substrates
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Kinetics of wetting and spreading of AgCu filler metal over Ti-6Al-4V substrates

机译:Ag-6填充金属在Ti-6Al-4V衬底上的润湿和扩散动力学

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The wetting and spreading of AgCu filler metal over Ti-6Al-4V (TC4) substrates in a high-purity argon atmosphere were investigated. The influences of substrate surface roughness and temperature on the wetting and spreading mechanisms were studied. The substrate surface roughness had a limited impact on the wetting and spreading process, while the temperature dictated the spreading process and mechanisms. At 860 A degrees C, the entire spreading process involved four distinct stages: (I) an initial stage (II) a rapid spreading stage (III) a limited spreading stage, and (IV) an asymptotic stage. On the other hand, at 940 A degrees C, owing to the more drastic chemical reaction, the entire spreading process exhibited only three stages: (I) an initial stage (II) a rapid spreading stage, and (III) an asymptotic stage. At 860 A degrees C, the wetting kinetics of the rapid spreading stage were determined by the chemical reaction rate, where the interdiffusion between Ti (from the substrate) and Cu (from the AgCu filler) was the dominant rate-limiting factor during the limited spreading stage. However, at 940 A degrees C, the wetting kinetics was dominated by the mixed effects of the chemical reactions, dissolution, and diffusion into the solid. These differences indicate that the wetting mechanism was changed from the reaction-limited (in stage II) and diffusion-limited (in stage III) modes at lower temperatures to a different mode at higher temperatures that were controlled by chemical reactions, dissolution, and diffusion into the solid.
机译:研究了在高纯氩气氛下,AgCu填充金属在Ti-6Al-4V(TC4)衬底上的润湿和扩散。研究了基材表面粗糙度和温度对润湿和铺展机理的影响。基材表面粗糙度对润湿和铺展过程的影响有限,而温度决定了铺展过程和机理。在860 A摄氏度,整个传播过程涉及四个不同的阶段:(I)初始阶段(II)快速传播阶段(III)有限传播阶段,以及(IV)渐近阶段。另一方面,在940 A的温度下,由于更剧烈的化学反应,整个扩散过程仅表现出三个阶段:(I)初始阶段(II)快速扩散阶段,以及(III)渐近阶段。在860 A的温度下,快速扩散阶段的润湿动力学由化学反应速率决定,其中Ti(来自基材)和Cu(来自AgCu填料)之间的相互扩散是有限时间内主要的速率限制因素。传播阶段。但是,在940 A摄氏度下,润湿动力学受化学反应,溶解和扩散到固体中的混合作用的支配。这些差异表明,润湿机制从较低温度下的反应受限模式(阶段II)和扩散受限(阶段III)模式改变为由化学反应,溶解和扩散控制的较高温度下的不同模式。变成固体。

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