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Properties Evolution during Transient Liquid Phase Sintering of PM Alumix 431

机译:PM Alumix 431瞬态液相烧结过程中的性能演变

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This paper reports a study on densification and microstructural changes, which were occurred during transient liquid phase sintering of Alumix 431. The objective was to find the optimum sintering temperature for obtaining higher densities and improved mechanical properties. For this purpose, the commercial Al powder mixture ECKA Alumix 431 was pressed at 400 MPa and sintered under pure nitrogen in a broad range of temperature between 580 and 620∘Cfor 30 minutes inN2. The effect of sintering temperature was evaluated by measuring sintered density, transverse rupture strength, dynamic Young's modulus, and macrohardness. The optical microscopy and scanning electron microscopy used for studying microstructural characterization and fracture surface of the resulting materials, respectively. It could be observed that the sintered density increases with higher sintering temperature up to a certain limit, rearrangement as well as pore elimination due to transient liquid phase sintering being helpful. On the other hand, too high sintering temperatures are unwelcome either apparently as a consequence of Zn evaporation and microstructural change such as grain growth. It was found that the maximum sintered density for Alumix 431 is attained by sintering at the range of 610∘Cwhen the amount of liquid phase is satisfactory.
机译:本文报道了对Alumix 431瞬时液相烧结过程中发生的致密化和微观结构变化的研究。目的是找到最佳烧结温度以获得更高的密度和改善的机械性能。为此,将商品铝粉混合物ECKA Alumix 431在400 MPa下压制,并在纯氮气中在580至620∘C的宽温度范围内在N2中烧结30分钟。通过测量烧结密度,横向断裂强度,动态杨氏模量和宏观硬度来评估烧结温度的影响。光学显微镜和扫描电子显微镜分别用于研究所得材料的微观结构特征和断裂表面。可以观察到,随着烧结温度的升高,烧结密度增加到一定极限,由于瞬时液相烧结而引起的重排以及孔的消除是有帮助的。另一方面,显然不受欢迎的烧结温度是锌蒸发和诸如晶粒长大之类的微观结构变化的结果。发现当液相量令人满意时,通过在610∘C的范围内烧结获得Alumix 431的最大烧结密度。

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