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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of the Theological behavior of 316L stainless steel micro-nano powder feedstock for micro powder injection molding
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Investigation of the Theological behavior of 316L stainless steel micro-nano powder feedstock for micro powder injection molding

机译:用于微粉注射成型的316L不锈钢微纳粉原料的神学行为研究

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摘要

The Theological behavior of 316L stainless steel micro-nano powder feedstock was investigated by torque rheom-eter test which measured variations of mixing torque as a function of powder loading rate of the feedstock. The feedstock was prepared by mixing a bimodal powder mixture of 75 vol.% micro powder (D_(50) = 4.1 μm) and 25 vol.% nano powder (D_(50) =100 nm) with wax-based binder. Through the torque rheometer experiment the rheological properties were evaluated by measuring viscosity in dependence with shear rate, temperature and powder loading rate. As a result, the rheological parameters as flow behavior index (n), flow activation energy (E) and the moldability (α_(stv)) were obtained. It was found that the mixing torque was increased with increasing powder loading in three different rates. It was confirmed from the dependence of viscosity on shear rate that the micro-nano powder feedstock followed pseudo-plastic flow behavior. It was notable that the rheological parameters underwent a sudden change in the powder volume loading range of 66% to 68%. This powder loading range was consistent with the optimal powder volume loading of 66% in our previous work for powder injection molding.
机译:通过扭矩流变仪试验研究了316L不锈钢微纳粉末原料的流变行为,该试验测量了混合扭矩随原料粉末装载量的变化。通过将75体积%的微粉(D_(50)= 4.1μm)和25体积%的纳米粉(D_(50)= 100 nm)的双峰粉末混合物与蜡基粘合剂混合来制备原料。通过扭矩流变仪实验,通过测量粘度,剪切速率,温度和粉末加载速率来评估流变性能。结果,获得了流变参数,如流动行为指数(n),流动活化能(E)和可成型性(α_(stv))。发现以三种不同速率随着粉末负载的增加而增加混合扭矩。从粘度对剪切速率的依赖性可以证实,微纳米粉末原料遵循假塑性流动行为。值得注意的是,流变参数在66%至68%的粉末体积加载范围内经历了突然变化。此粉末装载量范围与我们先前粉末注射成型工作中的最佳粉末体积装载量66%一致。

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