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On the effect of mould temperature on the orientation and packing of particles in ceramic injection moulding

机译:模具温度对陶瓷注塑成型粒子取向和包装的影响

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摘要

Particle packing and orientation in Ceramic Injection Moulding are caused by shear rate variations along the part, which are complicated by cooling rates and depend on material properties and process parameters. This work studies particle orientation and packing for a ceramic feedstock in relation to mould temperature, with a focus on the influence from Rapid Heat Cycle Moulding (RHCM). A sample part consisting of bars having different thicknesses (0.4 mm to 6 mm) was injection moulded using first ambient mould temperature and then a rapid heating approach; subsequently, green part microstructure was analysed to detect particle orientation and packing. Results show a more uniform orientation at thick sections using RHCM, with a 15% enlargement of a core layer characterised by randomly oriented particles, as well as a higher homogeneity of powder packing between thin and thick sections. Thus, this study demonstrates that not only can RHCM be used to enhance feature replication capability, but also has the potential to improve critical microstructural properties of green components, which highly influence sintered parts quality.
机译:陶瓷注射成型中的颗粒填料和取向是由沿剖面的剪切速率变化引起,这通过冷却速率复杂并且取决于材料性质和工艺参数。这项工作研究了与模具温度相关的陶瓷原料的颗粒取向和包装,重点关注快速热循环模塑(RHCM)的影响。由具有不同厚度(0.4mm至6mm)的棒的样品部分使用第一环境模具温度注塑成型,然后是快速加热方法;随后,分析了绿色部分微观结构以检测颗粒取向和包装。结果在使用RHCM的厚部分上显示更均匀的取向,其特征在于随机取向颗粒的芯层,以及薄厚度和厚的部分之间的粉末包装的均匀性更高。因此,本研究表明,不仅可以使用RHCM来增强特征复制能力,而且还具有改善绿色成分的临界微观结构性能的可能性,这对烧结部件质量高度影响。

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