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Analysis and Modeling of Sintering of Sr-hexaferrite Produced by PIM Technology

机译:PIM技术生产的Sr-六方铁氧体的烧结分析与建模

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The powder injection moulding (PIM) technology is lately becoming more and more significant due to complex design possibilities and good repeatability. This technology requires optimization of all steps starting with material and binder, injection, debinding and sintering parameters. Sintering is one of the key links in this technology. The powder injection moulding process is specific as during feedstock injection powder particles mixed into the binder do not come into mechanical contact. Shrinkage during sintering of PIM samples is high. In this work we have analyzed and modeled the sintering process of isotropic PIM samples of Sr-hexaferrite. The Master Sintering Curve (MSC) principle has been applied to analyze sintering of two types of PIM Sr-hexaferrite samples with completely removed binder and only the extraction step of the debinding procedure (thermal debinding proceeding simultaneously with sintering). Influence of the heating rate on resulting sample microstructures has also been analyzed. Influence of the sintering time and temperature was analyzed using three different phenomenological equations.
机译:由于复杂的设计可能性和良好的可重复性,粉末注射成型(PIM)技术近来变得越来越重要。这项技术需要优化所有步骤,从材料和粘合剂,注射,脱脂和烧结参数开始。烧结是这项技术的关键环节之一。粉末注射成型工艺是特定的,因为在进料过程中,混入粘合剂中的粉末颗粒不会机械接触。 PIM样品在烧结过程中的收缩率很高。在这项工作中,我们已经对Sr-六方铁氧体各向同性PIM样品的烧结过程进行了分析和建模。主烧结曲线(MSC)原理已用于分析两种类型的PIM Sr-六价铁氧体样品的烧结,其中完全去除了粘合剂,并且仅进行了脱脂过程的提取步骤(热脱脂与烧结同时进行)。还分析了加热速率对所得样品微结构的影响。使用三种不同的现象学方程分析了烧结时间和温度的影响。

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