Ab'/> Influence of particle-size distribution and temperature on the rheological properties of highly concentrated Inconel feedstock alloy 718
首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Influence of particle-size distribution and temperature on the rheological properties of highly concentrated Inconel feedstock alloy 718
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Influence of particle-size distribution and temperature on the rheological properties of highly concentrated Inconel feedstock alloy 718

机译:粒度分布和温度对高浓缩型原料合金的流变性能的影响718

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AbstractPowder injection moulding is a low-cost manufacturing process that produces very complex parts to net shapes in a wide variety of materials and unique alloys, including superalloys, stainless steels, and carbides. The feedstocks used in this process must meet various requirements. They have to show good flowability for the injection process, but they also need to have high solids loading to reduce shrinkage during sintering. In the present study, we investigated the rheological behaviours of Inconel feedstock with various average particle sizes in a polydisperse population from 6 to 66μm and solids loading (?=50%–72%) at a shear rate of 10–105s?1. The binder formulation was a polymer-based aqueous system composed of 55vol% polyethylene glycol (PEG), 40vol% polypropylene (PP), and 5vol% stearic acid (SA). In particular, the effects of particle size, flow activation energy and the mouldability index on the rheology of the feedstock were studied in detail. New rheological models that describe the effects of various parameters such as shear rate, particle size, temperature, and solids loading are introduced, and their predictions are compared with the experimental values. These rheological behaviours were also characterised using our empirical models, which can be directly applied to the process optimisation of powder injection moulding for micro-components. As a result, rheological parameters such as flow behaviour index, maximal solids loading, and flow activation energy were obtained. The particular rheological behaviour of the Inconel feedstock with a highly concentrated solids fraction, which deviates from typical pseudoplastic behaviour, has a relevant correlation with the proposed models. Moreover, the models can be used when similar behaviours are observed in other formulation, powder and binder systems.Graphical abstractDisplay OmittedHighlights?Inconel superalloy powder and polymer based PEG aqueous binder systems are mixed.?Influence of particle size, temperature and solid loading on shear rheology is shown.?New rheological models for high loaded polymer?Identifications of rheological models are carried out for feedstocks and binders.?Influence of the powder particle size on the mouldability index]]>
机译:<![cdata [ 抽象 粉末注射成型是一种低成本的制造过程,可在各种各样的净形状产生非常复杂的零件材料和独特合金,包括高温合金,不锈钢和碳化物。在该过程中使用的原料必须满足各种要求。它们必须为注射过程表现出良好的流动性,但它们也需要具有高固体载荷以减少烧结过程中的收缩。在本研究中,我们研究了在从6至66μm的多分散群体中具有各种平均粒度的通知原料的流变性行为,并且固体载荷(β = 50%-72%)剪切速率为10-10 5 s ?1 。粘合剂制剂是由55Vol%聚乙二醇(PEG),40Vol%聚丙烯(PP)和5Vol%硬脂酸(SA)组成的基于聚合物的含水体系。特别地,详细研究了粒度,流动活化能和颗粒的效果对原料的流变学的影响。介绍了新的流变模型,描述了各种参数,例如剪切速率,粒度,温度和固体载荷,并将其预测与实验值进行比较。这些流变行为也使用我们的经验模型来表征,可以直接应用于用于微组分的粉末注射成型的过程优化。结果,获得了流动行为指数,最大固体载荷和流动活化能量的流变参数。具有高度浓缩固体级分的Inconel原料的特定流变行为偏离典型的假塑性行为,与所提出的模型具有相关的相关性。此外,当在其他配方,粉末和粘合剂系统中观察到类似的行为时,可以使用模型=“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”id =“ab0010”class =“图形”XML:LANG =“en”查看=“全部”> 图形抽象 < CE:简单段落>展示省略 < CE:章节ID =“ST0015”>突出显示 Inconel超合金粉末和聚合物基PEG含水粘合剂系统是混合的d。 显示了粒度,温度和固体载荷对剪切流变的影响。 高负荷聚合物的新流变模型 用于原料和粘合剂的流变模型的标识。 影响粉末粒径对霉菌性指数(Morelability指数) ]]>

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