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Effects of Nickel on the Sintering Behavior of Fe-Ni Compacts Made from Composite and Elemental Powders

机译:镍对复合和元素粉末制成的铁镍压块烧结行为的影响

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Injection-molded Fe-Ni parts made from composite and elemental powders were prepared, and the effect of nickel on the sintering of iron compacts was investigated. Dilatometry analyses showed that the alpha-gamma phase transformation temperature of the Fe-Ni compact changed from a fixed 912deg C for pure iron to a temperature range between 700deg C and 912deg C where two phases coexisted. The micro structure indicated that nickel impeded surface diffusion and slowed down the neck growth rate of iron powder in the early sintering stage. The dual phase and the small neck size at low temperatures suppressed the exaggerated grain growth, which usually occurs on carbonyl iron powders at 912deg C. It was also observed that nickel impeded the grain growth of iron at high temperatures. Thus, by reducing the exaggerated grain growth during phase transformation, impeding the grain growth at high temperatures, and with high diffusion rates of iron in Ni-rich areas, enhanced densification was obtained for Fe-Ni systems, particularly for those Systems made from composite powders. However, when coarse nickel powder was added, expansion was observed due to the presence of large pores around nickel powders. These pores were formed because of the particle rearrangement which was caused by the Kirkendall effect.
机译:制备了由复合粉末和元素粉末制成的注射成型的Fe-Ni零件,并研究了镍对铁粉烧结的影响。膨胀分析表明,Fe-Ni压块的α-γ相转变温度从纯铁的固定912摄氏度变为两相共存的700摄氏度至912摄氏度之间的温度范围。显微组织表明,镍在烧结初期阻碍了表面扩散并减慢了铁粉的颈部生长速率。低温下的双相和较小的颈尺寸抑制了夸大的晶粒长大,晶粒长大通常发生在912摄氏度的羰基铁粉上。还观察到镍阻碍了高温下铁的晶粒长大。因此,通过减少相变过程中过大的晶粒长大,阻碍高温下的晶粒长大以及铁在富Ni区域中的高扩散速率,Fe-Ni体系,特别是由复合材料制成的系统获得了更高的致密化粉末。然而,当添加粗镍粉时,由于镍粉周围存在大孔而观察到膨胀。这些孔的形成是由于由柯肯德尔效应引起的粒子重排。

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