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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Temperature and Sheet Temper on Isothermal Solidification Kinetics in Clad Aluminum Brazing Sheet
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Effect of Temperature and Sheet Temper on Isothermal Solidification Kinetics in Clad Aluminum Brazing Sheet

机译:温度和回火温度对复合铝钎焊板等温凝固动力学的影响

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Isothermal solidification (IS) is a phenomenon observed in clad aluminum brazing sheets, wherein the amount of liquid clad metal is reduced by penetration of the liquid clad into the core. The objective of the current investigation is to quantify the rate of IS through the use of a previously derived parameter, the Interface Rate Constant (IRC). The effect of peak temperature and initial sheet temper on IS kinetics were investigated. The results demonstrated that IS is due to the diffusion of silicon (Si) from the liquid clad layer into the solid core. Reduced amounts of liquid clad at long liquid duration times, a roughened sheet surface, and differences in resolidified clad layer morphology between sheet tempers were observed. Increased IS kinetics were predicted at higher temperatures by an IRC model as well as by experimentally determined IRC values; however, the magnitudes of these values are not in good agreement due to deficiencies in the model when applied to alloys. IS kinetics were found to be higher for sheets in the fully annealed condition when compared with work-hardened sheets, due to the influence of core grain boundaries providing high diffusivity pathways for Si diffusion, resulting in more rapid liquid clad penetration.
机译:等温凝固(IS)是在复合铝钎焊片中观察到的现象,其中,液态复合金属渗透到芯中而减少了液态复合金属的量。当前研究的目的是通过使用先前导出的参数接口速率常数(IRC)来量化IS的速率。研究了峰值温度和初始板材回火对IS动力学的影响。结果表明,IS是由于硅(Si)从液体覆盖层扩散到固体核中。观察到在长时间的液体持续时间下液体包覆量减少,片材表面变粗糙,并且在片材回火之间重新凝固的包覆层形态有所差异。通过IRC模型以及实验确定的IRC值,可以预测在更高温度下IS动力学增加。但是,由于模型应用于合金时的缺陷,这些值的大小不一致。发现与完全硬化的板材相比,在全退火状态下板材的IS动力学更高,这是由于芯晶界的影响为Si扩散提供了高扩散路径,从而使熔覆层更快地渗透。

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