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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Additive manufacturing of low-cost porous titanium-based composites for biomedical applications: Advantages, challenges and opinion for future development
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Additive manufacturing of low-cost porous titanium-based composites for biomedical applications: Advantages, challenges and opinion for future development

机译:用于生物医学应用的低成本多孔钛基复合材料的添加剂制造:未来发展的优势,挑战和意见

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摘要

Titanium and its alloys have received considerable attention for biomedical applications such as orthopaedic implants due to their outstanding mechanical properties and excellent biocompatibility. However, their composition, structural design and fabrication can be further tailored to improve key properties to make them more compatible with the human body and reduce their expense so that they can better compete with conventional metallic biomaterials. In this work, we provide a concise overview of additive manufacturing technologies and their application to biomedical titanium-based materials with a focus on the main achievements and issues which remain to be addressed. Subsequently, we highlight the potential to develop additive manufacturing of novel, low-cost porous titanium composites to meet the needs for biomedical orthopaedic implants. The article provides a pathway to their development through the application of alloy composition design and reinforcement strategies, manufacturing optimisation and identification of process-structure-property relationships controlling performance in combination with computer-aided structural design tools. This work aims to provide a platform for cost-effective manufacture of titanium composite orthopaedic implants with enhanced lifespans and structural compatibility. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其出色的机械性能和优异的生物相容性,钛及其合金对矫形植入物等生物医学应用有望的重视。然而,它们的组成,结构设计和制造可以进一步定制以改善关键特性,使它们与人体更加兼容并降低其费用,使得它们可以更好地与传统的金属生物材料竞争。在这项工作中,我们简要概述了添加剂制造技术及其对基于生物医学钛的材料的应用,重点是仍有待解决的主要成就和问题。随后,我们突出了开发新型,低成本多孔钛复合材料的添加剂制造的潜力,以满足生物医学整形面植入物的需求。本文通过应用合金组成设计和强化策略,制造优化和鉴定过程 - 结构 - 性能关系与计算机辅助结构设计工具的组合来提供途径。这项工作旨在为具有增强的寿命和结构相容性提供成本有效的钛复合矫形植入物的平台。 (c)2020 Elsevier B.v.保留所有权利。

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