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冠状动脉支架力学性能的理论和实验研究 被引量:5
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作者 周承倜 董何彦 《应用力学学报》 EI CAS CSCD 北大核心 2008年第4期556-561,共6页
冠状动脉支架必须具备的力学性能为:传送时的纵向柔软性,由球囊充压扩张时的动力大变形性能,在血管内支撑血管回缩压力的抗屈曲性能,以及术后金属支架留存在血管内的抗疲劳性能。本文内容分两部分:1、综述和评论支架的上述四种力学性能,... 冠状动脉支架必须具备的力学性能为:传送时的纵向柔软性,由球囊充压扩张时的动力大变形性能,在血管内支撑血管回缩压力的抗屈曲性能,以及术后金属支架留存在血管内的抗疲劳性能。本文内容分两部分:1、综述和评论支架的上述四种力学性能,2、重点论述金属支架纵向柔软性的最新研究结果。支架的结构刚度有离散性,介入治疗的要求和受力情况复杂,目前支架的力学性能质量标准尚未完善建立,支架结构设计中力学问题的处理仍存在盲目性。本文对于制定支架力学性能的质量标准以及改进和提高支架网架结构的力学性能设计都具有重要意义。 展开更多
关键词 冠状动脉支架 支架纵向柔软性 支架力学性能试验
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改善巷道支架结构与性能的实验室研究
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作者 吴绍倩 《矿山压力与顶板管理》 1995年第1期57-59,共3页
本文分析了对支架性能进行实验室研究的意义,介绍了通过支架整架力学性能检测对改善支架结构和性能的作用以及取得的效益。
关键词 巷道支架 支架力学性能 试验台 煤矿
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深井软岩巷道钢管混凝土支护结构性能试验及应用 被引量:147
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作者 高延法 王波 +4 位作者 王军 李冰 邢飞 王宗纲 金同乐 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2010年第A01期2604-2609,共6页
深井软岩及动压巷道支护难度大,传统的支护方式已难以满足需要。为此研发钢管混凝土支架,在实验室测试支架的力学性能,试验支架采用φ140mm×4.5mm钢管和C40混凝土,由4段构成,接头采用套管连接。在侧向约束、纵向点载荷加压条件下,... 深井软岩及动压巷道支护难度大,传统的支护方式已难以满足需要。为此研发钢管混凝土支架,在实验室测试支架的力学性能,试验支架采用φ140mm×4.5mm钢管和C40混凝土,由4段构成,接头采用套管连接。在侧向约束、纵向点载荷加压条件下,试验支架的极限承载力为1504.1kN,纵向极限压缩变形为82.65mm,破坏方式为钢管材料屈服破坏。与U型钢支架相比,钢管混凝土支架支护反力大、性价比优越。钢管混凝土支架在煤矿井下巷道支护应用效果良好,有着广泛的推广应用前景。 展开更多
关键词 采矿工程 钢管混凝土支架 支架力学性能试验 深井软岩巷道 巷道支护
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Analysis of mechanical performance of braided esophageal stent structure and its wires
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作者 倪晓宇 王果 +1 位作者 龙志红 潘长网 《Journal of Southeast University(English Edition)》 EI CAS 2012年第4期457-463,共7页
This paper aims to find the relationship between the structural parameters and the radial stiffness of the braided stent and to understand the stress distribution law of the wires. According to the equation of the spa... This paper aims to find the relationship between the structural parameters and the radial stiffness of the braided stent and to understand the stress distribution law of the wires. According to the equation of the space spiral curve, a three-dimensional parametrical geometrical model is constructed. The finite element model is built by using the beam-beam contact elements and 3D beam elements. The constituent nitinol wires are assumed to be linear elastic material. The finite element analysis figures out that the radial stiffness of the stent and the stress distribution of the wires are influenced by all the structural parameters. The helix pitch of the wires is the most important factor. Under the condition of the same load and other structural parameters remaining unchanged, when the number of wires is 24, the stress of the wire crosssection is at the minimum. A comparison between the vitro experimental results and the analytical results is conducted, and the data is consistent, which proves that the current finite element model can be used to appropriately predict the mechanical performance of the braided esophageal stents. 展开更多
关键词 braided esophageal stent finite element mechanical performance radial stiffness WIRE
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Effect of hydroxyapatite:zirconia volume fraction ratio on mechanical and corrosive properties of Ti-matrix composite scaffolds 被引量:1
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作者 Mehmet TOPUZ Burak DIKICI +1 位作者 Mehmet GAVGALI Yasemin YILMAZER 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第3期882-894,共13页
Ti-based scaffolds reinforced with zirconia and hydroxyapatite were produced successfully by a hybrid method with an eco-friendliness and low cost to obtain low elastic modulus(E) with sufficient physical, electrochem... Ti-based scaffolds reinforced with zirconia and hydroxyapatite were produced successfully by a hybrid method with an eco-friendliness and low cost to obtain low elastic modulus(E) with sufficient physical, electrochemical and biological properties. The effect of simultaneous modification of the volume fraction of hydroxyapatite(HA) and zirconia(ZrO_(2)) on scaffolds was investigated in terms of mechanical, corrosive, and antibacterial properties. Scanning electron microscopy with attached electron dispersive spectroscopy and X-ray diffraction were used for the characterization of scaffolds. Compression and electrochemical tests were performed to determine mechanical properties with detailed fracture mechanism and in-vitro corrosion susceptibility to simulated body fluid at 37 ℃,respectively. Antibacterial tests were carried out by comparing the inhibition areas of E.coli and S.aureus bacteria. It was observed that the mechanical strength of the scaffolds decreased with increasing HA:ZrO_(2)volume fraction ratio.The lowest E was achieved(6.61 GPa) in 6:4 HA:ZrO_(2)composite scaffolds. Corrosion current density(J_(corr)) values were calculated to be 21, 337, and 504 μ A/cm^(2) for unreinforced Ti, 3:2 and 6:4 HA:ZrO_(2)reinforced scaffolds,respectively. The inhibition capacity of the 6:4 reinforced composite scaffold was found to be more effective against S.aureus bacteria than other scaffolds. 展开更多
关键词 titanium biocomposite HYDROXYAPATITE ZIRCONIA SCAFFOLD mechanical properties in-vitro corrosion
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Effect of porosity on mechanical properties of porous tantalum scaffolds produced by electron beam powder bed fusion 被引量:4
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作者 Yu GUO Chao CHEN +4 位作者 Qiang-bing WANG Min LIU Yuan-kui CAO Yan-ming PAN Li-ming TAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第9期2922-2934,共13页
The effect of porosity on compressive,bending,and tensile properties of the porous tantalum scaffolds fabricated by electron beam powder bed fusion(EB-PBF)was investigated.The porous tantalum scaffolds with porosity f... The effect of porosity on compressive,bending,and tensile properties of the porous tantalum scaffolds fabricated by electron beam powder bed fusion(EB-PBF)was investigated.The porous tantalum scaffolds with porosity from 69%to 77.8%were obtained by varying the designed porosity and adjusting the processing parameters.It is found that the pores and unfused powder decrease with the increase of deposited energy density.The decrease of porosity leads to an improvement in mechanical properties.The relevancy between compressive/bending/tensile yield strength and relative density can be described appropriately by exponential model,while the relationship between elastic modulus and relative density is in good agreement with the Gibson-Ashby model.All the porous tantalum scaffolds exhibit good ductility in compressive,bending and tensile tests.No fragmentation of struts is observed during the compression process,but cracks are formed on the strut surface after 90°bending,mainly due to the high sensibility to defects caused by the oxide. 展开更多
关键词 porous tantalum scaffold electron beam powder bed fusion POROSITY mechanical properties Gibson−Ashby model
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Advancements in three-dimensional titanium alloy mesh scaffolds fabricated by electron beam melting for biomedical devices: mechanical and biological aspects 被引量:14
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作者 Krishna Chaitanya Nune Shujun Li R. Devesh Kumar Misra 《Science China Materials》 SCIE EI CSCD 2018年第4期455-474,共20页
We elucidate here the process-structure-property relationships in three-dimensional(3 D) implantable titanium alloy biomaterials processed by electron beam melting(EBM) that is based on the principle of additive m... We elucidate here the process-structure-property relationships in three-dimensional(3 D) implantable titanium alloy biomaterials processed by electron beam melting(EBM) that is based on the principle of additive manufacturing. The conventional methods for processing of biomedical devices including freeze casting and sintering are limited because of the difficulties in adaptation at the host site and difference in the micro/macrostructure, mechanical, and physical properties with the host tissue. In this regard, EBM has a unique advantage of processing patient-specific complex designs, which can be either obtained from the computed tomography(CT) scan of the defect site or through a computeraided design(CAD) program. This review introduces and summarizes the evolution and underlying reasons that have motivated 3 D printing of scaffolds for tissue regeneration.The overview comprises of two parts for obtaining ultimate functionalities. The first part focuses on obtaining the ultimate functionalities in terms of mechanical properties of 3 D titanium alloy scaffolds fabricated by EBM with different characteristics based on design, unit cell, processing parameters, scan speed, porosity, and heat treatment. The second part focuses on the advancement of enhancing biological responses of these 3 D scaffolds and the influence of surface modification on cell-material interactions. The overview concludes with a discussion on the clinical trials of these 3 D porous scaffolds illustrating their potential in meeting the current needs of the biomedical industry. 展开更多
关键词 Electron beam melting 3D printing tissue engineering mechanical properties BIOCOMPATIBILITY
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