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New Materials for Powder Injection Molding - High Entropy Alloys and Ceramic Matrix Composites

机译:粉末注射成型新材料 - 高熵合金和陶瓷基复合材料

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摘要

Probably the most decisive benefit of Powder Injection Molding (PIM) is the wide range of materials. As a logical consequence current R+D activities target on the adaptation of new metal and ceramic materials. Modern high-performance materials like e.g. Ni-based super alloys are widely applied. For further progress development of so-called High-Entropy-Alloys (HEA) characterized by a minimum of five elements with all of nearly the same content, i.e. an equiatomar composition, started. These alloys represent a quite new field in metallurgy expected to offer attractive properties like high thermal strength and/or increased ductility. For initial trials a Co20Cr20Fe20Mn20Ni20 alloy was used. Injection and sintering procedures were developed and the resulting densities were examined. Processing of Ceramic Matrix Composites by PIM represents a considerable challenge. Development of a process chain for the ceramic injection molding of Al_2O_3 short fiber CMC has been performed. Fiber content varied between 10 to 50 vol.% whereas for binder a well-examined system from KIT was chosen. As expected the fiber content showed a major effect on the rheological properties and fiber orientation depended strongly on the apparent shear profile. Both parameters affected the sintering behavior as well.
机译:粉末注射成型(PIM)最具决定性的优点可能是材料的广泛性。因此,当前的研发活动的目标是适应新的金属和陶瓷材料。镍基超级合金等现代高性能材料得到了广泛应用。为了取得进一步进展,开始开发所谓的高熵合金(HEA),其特征是至少含有五种几乎相同含量的元素,即equiatomar成分。这些合金代表了冶金领域的一个全新领域,有望提供具有吸引力的性能,如高热强度和/或更高的延展性。初始试验使用Co20Cr20Fe20Mn20Ni20合金。开发了注射和烧结程序,并检查了所得密度。用PIM加工陶瓷基复合材料是一个相当大的挑战。开发了al2o3短纤维CMC陶瓷注射成型工艺链。纤维含量在10至50体积%之间变化,而对于粘合剂,则选择试剂盒中经过充分检查的系统。正如所料,纤维含量对流变性能有重要影响,纤维取向强烈依赖于表观剪切剖面。这两个参数也影响烧结行为。

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