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Rheological properties of gas and water atomized 17-4PH stainless steel MIM feedstocks: Effect of powder shape and size

机译:气体和水雾化17-4PH不锈钢MIM原料的流变特性:粉末形状和尺寸的影响

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摘要

Influence of powder shape resulting from the fabrication route (gas or water atomization) together with the effect of mean particle size and solid loading on rheological properties of highly filled metal powder feedstocks was investigated as a key to processing of Metal Injection Molding (MIM) parts without voids and cracks. Eight 17-4PH gas or water atomized powders varying in the mean particle diameters from 3 to 20 μm were admixed into paraffin wax/high density polyethylene (50/50) binder at powder loadings up to 70 vol.%. The relative viscosity data obtained from capillary rheometer was fitted with rheological models to evaluate maximum loading along with the determination of the same parameter using time dependent torque measurement. It was found out that for coarse particles the processability in terms of rheological behavior is better in case of gas atomized powders in accordance with previous findings, but in case of fine powders, water atomized powders showed higher performance. © 2017 The Authors
机译:研究了制造路线(气体或水雾化)产生的粉末形状以及平均粒径和固体载量对高填充金属粉末原料流变性能的影响,这是加工金属注射成型(MIM)零件的关键没有空隙和裂缝。将8种平均粒径在3到20μm之间变化的17-4PH气体或水雾化粉末混合到石蜡/高密度聚乙烯(50/50)粘合剂中,粉末负载量最高为70 vol。%。从毛细管流变仪获得的相对粘度数据与流变模型相匹配,以评估最大载荷,并使用随时间变化的扭矩测量来确定相同参数。已经发现,根据先前的发现,对于粗颗粒而言,在气体雾化粉末的情况下,就流变行为而言,可加工性更好,但是在细粉末的情况下,水雾化的粉末表现出更高的性能。 ©2017作者

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