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DENSIFICATION STUDY OF TITANIUM POWDER COMPACTS

机译:钛粉体致密化研究

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摘要

Powder compaction characteristics is a very important parameter to control in order to obtain products with best mechanical properties made by P/M techniques. This work presents a study on the densification of titanium powders trying to optimize the particle size distribution for the best packing and the maximum densification by pressure compaction. The powders used were made from titanium sponge obtained by the Kroll process. The powders were embrittled by mean of the Hydride-Dehydride process (HDH) and milled in a rotative ball-mill under vacuum. Powders with different particles sizes distributions were mixed in several proportions according to Alfred's and Andreasen's Theory. The samples were compacted by uniaxial and isostatic pressing and sintered under vacuum. The evaluation of the densification was made following the Standard method of test for density of glass by Buoyancy (ASTM - C693-74) and by scanning electron microscopy (SEM). The samples made with powder milled during 36 hours and 12 hours presented better densification than the ones milled during shorter time and the ones with distributions combinations.
机译:粉末压实特性是控制非常重要的参数,以便获得通过P / M技术制成的具有最佳机械性能的产品。这项工作提出了对钛粉致密化的研究,试图通过最佳的填充和最大的压实压实来优化粒径分布。所使用的粉末由通过Kroll法获得的海绵钛制成。通过氢化物-脱水法(HDH)使粉末脆化,并在真空下在旋转球磨机中研磨。根据阿尔弗雷德(Alfred)和安德里亚森(Andreasen)的理论,将具有不同粒度分布的粉末按几个比例混合。通过单轴和等静压压实样品,并在真空下烧结。致密化的评估是根据浮力(ASTM-C693-74)和扫描电子显微镜(SEM)进行的玻璃密度测试的标准方法进行的。与在较短时间内研磨的样品和具有分布组合的研磨样品相比,在36小时和12小时内研磨的粉末样品具有更好的致密性。

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