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1增强不锈钢表面耐蚀性的研究进展显示文摘不锈钢是使用范围广泛且环保的一种耐蚀材料,但不锈钢在空气中自钝化形成的氧化膜的耐蚀性不佳,因此后续钝化处理是提高不锈钢表面耐蚀性的重要方法。本文综述了提高不锈钢表面耐蚀方法的研究进展。介绍不锈钢的钝化机理、硝酸钝化方法与柠檬酸钝化方法的最佳工艺。总结动电位极化曲线、电化学阻抗谱、Mott-Schottky曲线、循环伏安法和磨损-电化学腐蚀共五种不锈钢钝化膜耐蚀性测试方法。梳理塑性变形对不锈钢耐蚀性的影响,强调适度的塑性变形能够提高不锈钢耐蚀性。展望不锈钢钝化处理及塑性变形增强不锈钢钝化效应的研究趋势。滕琳琳 陈永君 钟嘉彬 燕峰 解志文 宫伟家 2021辽宁科技大学学报2021,44,5:3
2Development of Bioimplants with 2D, 3D, and 4D Additive Manufacturing Materials显示文摘Over the past 30 years,additive manufacturing(AM)has developed rapidly and has demonstrated great potential in biomedical applications.AM is a materials-oriented manufacturing technology,since the solidification mechanism,architecture resolution,post-treatment process,and functional application are based on the materials to be printed.However,3D printable materials are still quite limited for the fabrication of bioimplants.In this work.2D/3D AM materials for bioimplants are reviewed.Furthermore,inspired by Tai Chi,a simple yet novel soft/rigid hybrid 4D AM concept is advanced to develop complex and dynamic biological structures in the human body based on 4D printing hybrid ceramic precursor/ceramic materials that were previously developed by our group.With the development of multi-material printing technology,the development of bioimplants and soft/rigid hybrid biological structures with 2D/3D/4D AM materials can be anticipated.Guo Liu Yunhu He Pengchao Liu Zhou Chen Xuliang Chen Lei Wan Ying Li Jian Lu 2020Engineering2020,6,11:1
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