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RHEOLOGICAL INVESTIGATION OF WATER ATOMIZED METAL INJECTION MOLDING (MIM) FEEDSTOCK FOR PROCESSIBILITY PREDICTION

机译:水雾化金属注射成型(MIM)原料的流变研究,用于加工预测

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This paper presents the rheological properties of SS316L water atomized MIM feedstock. Coarse and fine SS316L water atomized powder is mixed with a composite binder consisting of PMMA and PEG to form a homogenous paste, termed as feedstock. The feedstock is loaded with SS316L water atomized powder ranging 62 v/o, 62.5 v/o, 63 v/o, 63.5 v/o and 64 v/o. However, due to the morphology of the water atomized powder which is not spherical compared to the gas atomized ones, fine powder feedstock is unable to produce any significant rheological result due to the powder loading being more than 63.5 v/o. Results show that the fine powder feedstock demonstrates a higher viscosity if compared to the coarse powder feedstock. It can be established that binder separations are likely to occur in the coarse powder feedstock, especially, at high temperatures. The investigation concludes that the fine powder feedstock has its best rheological properties at 62 v/o while the coarse powder feedstock lies between 63 v/o and 63.5 v/o.
机译:本文礼物SS316L水的流变性能雾化MIM原料。粗和细SS316L水雾化粉末与由PMMA和PEG的复合粘合剂混合以形成均匀的糊状物,称为原料。原料装入SS316L水雾化粉末测距62 V / O,62.5 V / O,63 V / O,63.5 V / O和64 V / O操作。然而,由于水雾化粉末相比,气体雾化的那些,其不是球形的形态,细粉末原料是无法产生任何显著流变结果由于粉末装载作为超过63.5 V / O操作。结果表明,如果相比于粗粉末原料中的细粉末原料展示了更高的粘度。它可以建立粘合剂分离是可能发生在粗粉末的原料,尤其是在高温下。调查的结论是,细粉料在62种V都有其最佳的流变性能/ O的同时/ O和粗粉原料谎言部63v之间63.5 V / O操作。

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