Manufacturing and characterization of porous titanium components

IF 4.5 2区 材料科学 Q1 CRYSTALLOGRAPHY
Florencia Edith Wiria, Saeed Maleksaeedi, Zeming He
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引用次数: 14

Abstract

A powder-bed 3D printer (3DP) is investigated to fabricate porous titanium components. The titanium material was 3D printed and subsequently post-processed by thermal debinding and sintering. Characterization work was carried out to investigate the effects of sintering temperature on the internal porosity profile and shrinkage of 3D printed titanium components, the effects of different binder content on the overall shape of the pre-designed porous components and the effects of post-processing debinding profiles on the titanium components.

多孔钛元件的制造与表征
采用粉末床3D打印机(3DP)制备多孔钛部件。钛材料是3D打印的,随后通过热脱脂和烧结进行后处理。研究了烧结温度对3D打印钛构件内部孔隙率和收缩率的影响,不同粘结剂含量对预设计多孔构件整体形状的影响,以及后处理脱脂型材对钛构件的影响。
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来源期刊
Progress in Crystal Growth and Characterization of Materials
Progress in Crystal Growth and Characterization of Materials 工程技术-材料科学:表征与测试
CiteScore
8.80
自引率
2.00%
发文量
10
审稿时长
1 day
期刊介绍: Materials especially crystalline materials provide the foundation of our modern technologically driven world. The domination of materials is achieved through detailed scientific research. Advances in the techniques of growing and assessing ever more perfect crystals of a wide range of materials lie at the roots of much of today''s advanced technology. The evolution and development of crystalline materials involves research by dedicated scientists in academia as well as industry involving a broad field of disciplines including biology, chemistry, physics, material sciences and engineering. Crucially important applications in information technology, photonics, energy storage and harvesting, environmental protection, medicine and food production require a deep understanding of and control of crystal growth. This can involve suitable growth methods and material characterization from the bulk down to the nano-scale.
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