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Master flow curves as a tool to modelling ceramic injection molding

机译:主流曲线作为建模陶瓷注塑成型的工具

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摘要

Compounds used for Ceramic Injection Molding (CIM) are rheologically complex materials. The applicability of currently available mathematical models to CIM systems fails due to high number of variables playing a significant role: binder composition, powder morphology and loading as well as concentration of processing aids. In this paper we present the way to overcome this issue with a model, where a set of its parameters is a priori given regardless the contents of powder or additional ingredients in a feedstock. Then, the relative viscosity of an individual composition of a CIM feedstock is obtained only by inserting the corresponding concentrations of powder (aluminium oxide) and additive (stearic acid). The proposed master curve exhibits the fixed functional structure common for 36 composition combinations arising from Al2O3 powder loading (0-50%) and stearic acid concentration (up to 5%). The deviation from the measured values does not exceed an experimental error.
机译:用于陶瓷注射成型(CIM)的化合物是流变性复杂的材料。 目前可用的数学模型对CIM系统的适用性因播放具有重要作用的大量变量:粘合剂组成,粉末形态和装载以及加工助剂的浓度。 在本文中,我们展示了用模型克服这个问题的方法,其中一组参数是无论原料中的粉末还是其他成分的内容物的先验。 然后,仅通过插入相应的粉末(氧化铝)和添加剂(硬脂酸)来获得CIM原料的单独组成的相对粘度。 所提出的主曲线表现出由Al 2 O 3粉末负载(0-50%)和硬脂酸浓度(最高5%)产生的36种成分组合共同的固定官能结构。 与测量值的偏差不超过实验误差。

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