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激光熔修AZ31B镁合金焊趾区材料的疲劳性能 被引量:10
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作者 李正 吴圣川 +1 位作者 徐道荣 王文先 《失效分析与预防》 2011年第4期209-212,共4页
疲劳性能是评估镁合金焊接结构寿命的重要指标。AZ31B镁合金TIG焊趾存在的微细裂纹与几何不连续,是在役焊接结构疲劳裂纹萌生的主要原因。为减轻接头的应力集中和改善其疲劳性能,采用CO2激光热源重熔AZ31B镁合金焊趾。研究发现:Mg17Al1... 疲劳性能是评估镁合金焊接结构寿命的重要指标。AZ31B镁合金TIG焊趾存在的微细裂纹与几何不连续,是在役焊接结构疲劳裂纹萌生的主要原因。为减轻接头的应力集中和改善其疲劳性能,采用CO2激光热源重熔AZ31B镁合金焊趾。研究发现:Mg17Al12在近熔合线的热影响区中沿晶界析出,而在焊缝中呈弥散分布。此外,因受脆晶相的作用,热影响区存在着微细裂纹。激光熔修能细化热影响区晶粒,抑制了Mg17A12沿晶界的析出从而有利于消除热影响区裂纹。然而因激光功率密度过高引起的镁元素烧损,是导致疲劳性能下降的一个重要原因。 展开更多
关键词 镁合金 疲劳性能 焊趾 激光熔修 应力集中
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Bionic mechanical design and 3D printing of novel porous Ti6Al4V implants for biomedical applications 被引量:14
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作者 Wen-ming Peng Yun-feng Liu +6 位作者 Xian-feng Jiang Xing-tao Dong Janice Jun Dale A. Baur Jia-jie Xu Hui Pan Xu Xu 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2019年第8期647-659,共13页
In maxillofacial surgery, there is a significant need for the design and fabrication of porous scaffolds with customizable bionic structures and mechanical properties suitable for bone tissue engineering. In this pape... In maxillofacial surgery, there is a significant need for the design and fabrication of porous scaffolds with customizable bionic structures and mechanical properties suitable for bone tissue engineering. In this paper, we characterize the porous Ti6Al4V implant, which is one of the most promising and attractive biomedical applications due to the similarity of its modulus to human bones. We describe the mechanical properties of this implant, which we suggest is capable of providing important biological functions for bone tissue regeneration. We characterize a novel bionic design and fabrication process for porous implants. A design concept of “reducing dimensions and designing layer by layer” was used to construct layered slice and rod-connected mesh structure (LSRCMS) implants. Porous LSRCMS implants with different parameters and porosities were fabricated by selective laser melting (SLM). Printed samples were evaluated by microstructure characterization, specific mechanical properties were analyzed by mechanical tests, and finite element analysis was used to digitally calculate the stress characteristics of the LSRCMS under loading forces. Our results show that the samples fabricated by SLM had good structure printing quality with reasonable pore sizes. The porosity, pore size, and strut thickness of manufactured samples ranged from (60.95± 0.27)% to (81.23±0.32)%,(480±28) to (685±31)μm, and (263±28) to (265±28)μm, respectively. The compression results show that the Young’s modulus and the yield strength ranged from (2.23±0.03) to (6.36±0.06) GPa and (21.36±0.42) to (122.85±3.85) MPa, respectively. We also show that the Young’s modulus and yield strength of the LSRCMS samples can be predicted by the Gibson-Ashby model. Further, we prove the structural stability of our novel design by finite element analysis. Our results illustrate that our novel SLM-fabricated porous Ti6Al4V scaffolds based on an LSRCMS are a promising material for bone implants, and are potentially applicable to the field of bone defect repair. 展开更多
关键词 Layered slice and rod-connected mesh structure (LSRCMS) Porous Ti6Al4V implant Bone defect repair Selective laser melting (SLM) Mechanical properties Finite element analysis
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