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Trabecular-like Ti-6Al-4V scaffolds for orthopedic: fabrication by selective laser melting and in vitro biocompatibility 被引量:22
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作者 Huixin Liang Youwen Yang +6 位作者 Deqiao Xie Lan Li Ning Mao Changjiang Wang Zongjun Tian Qing jiang Lida Shen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第7期1284-1297,共14页
Porous metal scaffolds play an important role in the orthopedic field, due to their wide applications in prostheses implantation. Some previous studies showed that the scaffolds with trabecular bone structure reconstr... Porous metal scaffolds play an important role in the orthopedic field, due to their wide applications in prostheses implantation. Some previous studies showed that the scaffolds with trabecular bone structure reconstructed via computed tomography had satisfactory biocompatibility. However, the reverse modeling scaffolds were inflexible for customized design. Therefore, a top-down designing biomimetic bone scaffold with favorable mechanical performances and cytocompatibility is urgently demanded for orthopedic implants. An emerging additive manufacturing technique, selective laser melting, was employed to fabricate the trabecular-like porous Ti-6Al-4 V scaffolds with varying irregularities(0.05-0.5) and porosities(48.83%–74.28%) designed through a novel Voronoi-Tessellation based method. Micro-computed tomography and scanning electron microscopy were used to characterize the scaffolds’ morphology.Quasi-static compression tests were performed to evaluate the scaffolds’ mechanical properties. The MG63 cells culture in vitro experiments, including adhesion, proliferation, and differentiation, were conducted to study the cytocompatibility of scaffolds. Compressive tests of scaffolds revealed an apparent elastic modulus range of 1.93–5.24 GPa and an ultimate strength ranging within 44.9–237.5 MPa, which were influenced by irregularity and porosity, and improved by heat treatment. Furthermore, the in vitro assay suggested that the original surface of the SLM-fabricated scaffolds was favorable for osteoblasts adhesion and migration because of micro scale pores and ravines. The trabecular-like porous scaffolds with full irregularity and higher porosity exhibited enhanced cells proliferation and osteoblast differentiation at earlier time, due to their preferable combination of small and large pores with various shapes. This study suggested that selective laser melting-derived Ti-6Al-4 V scaffold with the trabecular-like porous structure designed through Voronoi-Tessellation method, favorable mechanical performanc 展开更多
关键词 irregular porous structure Selective laser melting Voronoi-Tessellation Mechanical performance In VITRO study
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不规则多孔结构钛合金人体植入物的制备和性能研究 被引量:5
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作者 王琪 刘小娜 +1 位作者 黄晟 陆军 《钛工业进展》 CAS 2021年第4期28-33,共6页
相比规则多孔结构,不规则多孔结构更能较好地模仿实际骨小梁结构。基于Rhion 6软件中GH插件构建了不规则多孔结构模型,并采用激光选区熔化技术(SLM)制备出2组多孔结构植入物样件。对多孔结构样件进行了热处理和力学性能测试,比较热处理... 相比规则多孔结构,不规则多孔结构更能较好地模仿实际骨小梁结构。基于Rhion 6软件中GH插件构建了不规则多孔结构模型,并采用激光选区熔化技术(SLM)制备出2组多孔结构植入物样件。对多孔结构样件进行了热处理和力学性能测试,比较热处理前后力学性能变化。实验表明:当不规则度增加时,弹性模量和抗压强度降低;当孔隙率增加时,弹性模量和抗压强度增加。多孔结构样件经过880℃/30 min/FC热处理后,弹性模量无明显变化,抗压强度下降,延展性变好。 展开更多
关键词 增材制造 不规则多孔结构 植入物 力学性能 热处理
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多孔结构材料发展及研究现状
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作者 丁新隆 王芳 王飞跃 《农业工程》 2023年第4期77-82,共6页
讨论和分析了各种典型的周期性多孔结构、非周期性多孔结构和复合多孔结构材料的性质与应用现状,介绍了多孔结构材料在农业领域的应用。
关键词 多孔结构 周期性多孔结构 非周期型多孔结构 复合多孔结构
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生长在泡沫镍基底上的无规则多孔结构Ni_(3)S_(2)材料的制备及电化学性能
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作者 陈少峰 侯兰凤 《四川师范大学学报(自然科学版)》 CAS 2021年第2期257-261,共5页
为制备无规则多孔结构Ni_(3)S_(2)材料,以泡沫镍为基体,基于水热反应法进行无规则多孔结构的Ni_(3)S_(2)材料生长修饰操作,制成具备优良特性的超疏水材料并对其电化学性能进行研究.结果表明,接触角的数值会随着水热反应温度及时间的不... 为制备无规则多孔结构Ni_(3)S_(2)材料,以泡沫镍为基体,基于水热反应法进行无规则多孔结构的Ni_(3)S_(2)材料生长修饰操作,制成具备优良特性的超疏水材料并对其电化学性能进行研究.结果表明,接触角的数值会随着水热反应温度及时间的不同而呈现不同的结果.水热反应温度为180℃、反应时间为6 h的条件下水热反应层表面的水滴接触角达到最大值.此时,水热反应层还会在反应表层形成新的表面物相,这种物相对于提升Ni_(3)S_(2)材料的抗腐蚀性和耐酸碱性有很大帮助. 展开更多
关键词 无规则多孔结构 Ni_(3)S_(2)材料 接触角 水热反应 电化学特性
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