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首页> 外文期刊>Journal of the European Ceramic Society >Rheological properties of alumina feedstocks for the low-pressure injection moulding process
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Rheological properties of alumina feedstocks for the low-pressure injection moulding process

机译:低压注模工艺用氧化铝原料的流变性能

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摘要

The low-pressure injection moulding process (LPIM) allows near-net shape manufacturing of ceramic microcomponents. Feedstocks used in this process have to fulfil different requirements. They have to show good flowability for the machining but they also need to have high solids content to reduce shrinkage during sintering. This work focuses on the flow behaviour of alumina feedstocks with high solids content, based on two different binder systems and two different alumina powders. By varying particle size, organic binder system, and solids content, the rheological properties of the feedstocks were modified significantly. The material parameters such as viscosity, the derived relative viscosity, and yield stress were investigated systematically. The Herschel-Bulkley model turned out to be suitable for the description of the rheological behaviour of these ceramic feedstocks. The dependency of the relative viscosity on solids content could be well described by models like Krieger-Dougherty, the Eilers, and the Quemada models, while the best results for the maximum packing factors were obtained with the Janardhana Reddy et al. model.
机译:低压注塑成型工艺(LPIM)允许陶瓷微零件的近净成形。此过程中使用的原料必须满足不同的要求。它们必须显示出良好的加工流动性,但还需要具有较高的固体含量以减少烧结过程中的收缩。这项工作基于两种不同的粘合剂体系和两种不同的氧化铝粉末,着重研究了高固含量氧化铝原料的流动行为。通过改变粒径,有机粘合剂体系和固体含量,可以显着改变原料的流变性。系统地研究了材料参数,如粘度,导出的相对粘度和屈服应力。结果证明,Herschel-Bulkley模型适用于描述这些陶瓷原料的流变行为。诸如Krieger-Dougherty,Eilers和Quemada模型等模型可以很好地描述相对粘度对固体含量的依赖性,而Janardhana Reddy等人则获得了最大填充因子的最佳结果。模型。

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