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视盘生物力学的研究进展 被引量:3
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作者 钱道卫 刘金华 《眼科研究》 CSCD 北大核心 2007年第7期551-553,共3页
生物力学因素与青光眼视神经病变有关,筛板处的缺血和作用于该处的机械压力,在青光眼的轴浆流损害中起着重要作用。根据生物力学的基本原理,分析视盘的几何形状、材料特性、周边环境和机械负荷等生物力学环境,建立计算机辅助的视盘3-维... 生物力学因素与青光眼视神经病变有关,筛板处的缺血和作用于该处的机械压力,在青光眼的轴浆流损害中起着重要作用。根据生物力学的基本原理,分析视盘的几何形状、材料特性、周边环境和机械负荷等生物力学环境,建立计算机辅助的视盘3-维有限元素模型,观察在不同眼压下视盘周围巩膜的结缔组织,筛板前后的神经组织,筛板,巩膜管壁的张力、压力和变形;研究视盘生物力学特点与青光眼视功能丧失的关系,探讨青光眼的病因及不同个体对眼压的易感性。 展开更多
关键词 青光眼 视盘 眼压 生物力学 3-维有限元素模型
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Finite element modeling of power spinning of thin-walled shell with hoop inner rib 被引量:14
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作者 白倩 杨合 詹梅 《中国有色金属学会会刊:英文版》 EI CSCD 2008年第1期6-13,共8页
A 3D elasto-plastic finite element(FE)model of power spinning of thin-walled aluminum alloy shell with hoop inner rib was established under software ABAQUS.Key technologies were dealt with reasonably.The reliability o... A 3D elasto-plastic finite element(FE)model of power spinning of thin-walled aluminum alloy shell with hoop inner rib was established under software ABAQUS.Key technologies were dealt with reasonably.The reliability of the FE model was verified theoretically and experimentally.The forming process was simulated and studied.The distribution of the thickness and stress,and the variations of spinning force were obtained.The workpiece springback was analyzed with ABAQUS/Standard.The results show that the FE model considering elastic deformation can not only be used to analyze the workpiece springback in the complex spinning process,but also serve as a significant guide to study the local deformation mechanism and choose the reasonable parameters. 展开更多
关键词 铝合金 有限元素模型 稀有金属 处理方法
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视盘生物力学的研究
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作者 吴凌 樊瑜波 《中医眼耳鼻喉杂志》 2012年第1期53-55,共3页
生物力学因素与青光眼视神经病变有关,筛板处的缺血和作用于该处的机械压力,在青光眼的轴浆流损害中起着重要作用.根据生物力学的基本原理,分析视盘的几何形状、材料特性、周边环境和机械负荷等生物力学环境,建立计算机辅助的视盘32维... 生物力学因素与青光眼视神经病变有关,筛板处的缺血和作用于该处的机械压力,在青光眼的轴浆流损害中起着重要作用.根据生物力学的基本原理,分析视盘的几何形状、材料特性、周边环境和机械负荷等生物力学环境,建立计算机辅助的视盘32维有限元素模型,观察在不同眼压下视盘周围巩膜的结缔组织,筛板前后的神经组织,筛板,巩膜管壁的张力、压力和变形;研究视盘生物力学特点与青光眼视功能丧失的关系,探讨青光眼的病因及不同个体对眼压的易感性. 展开更多
关键词 青光眼 视盘 眼压 生物力学 32维有限元素模型
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Biomechanics of the sclera and effects on intraocular pressure
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作者 Xu Jia Juan Yu +1 位作者 Sheng-Hui Liao Xuan-Chu Duan 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2016年第12期1824-1831,共8页
Accumulating evidence indicates that glaucoma is a multifactorial neurodegenerative disease characterized by the loss of retinal ganglion cells(RGC), resulting in gradual and progressive permanent loss of vision.Reduc... Accumulating evidence indicates that glaucoma is a multifactorial neurodegenerative disease characterized by the loss of retinal ganglion cells(RGC), resulting in gradual and progressive permanent loss of vision.Reducing intraocular pressure(IOP) remains the only proven method for preventing and delaying the progression of glaucomatous visual impairment.However, the specific role of IOP in optic nerve injury remains controversial, and little is known about the biomechanical mechanism by which elevated IOP leads to the loss of RGC. Published studies suggest that the biomechanical properties of the sclera and scleral lamina cribrosa determine the biomechanical changes of optic nerve head, and play an important role in the pathologic process of loss of RGC and optic nerve damage. This review focuses on the current understanding of biomechanics of sclera in glaucoma and provides an overview of the possible interactions between the sclera and IOP. Treatments and interventions aimed at the sclera are also discussed. 展开更多
关键词 BIOMECHANICS 绿内障 巩膜 intraocular 压力 有限元素模型
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Numerical failure analysis of a continuous reinforced concrete bridge under strong earthquakes using multi-scale models 被引量:2
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作者 Li Zhongxian Chen Yu Shi Yundong 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第2期397-413,共17页
Previous failure analyses of bridges typically focus on substructure failure or superstructure failure separately. However, in an actual bridge, the seismic induced substructure failure and superstructure failure may ... Previous failure analyses of bridges typically focus on substructure failure or superstructure failure separately. However, in an actual bridge, the seismic induced substructure failure and superstructure failure may influence each other. Moreover, previous studies typically use simplified models to analyze the bridge failure; however, there are inherent defects in the calculation accuracy compared with using a detailed three-dimensional(3D) finite element(FE) model. Conversely, a detailed 3D FE model requires more computational costs, and a proper erosion criterion of the 3D elements is necessary. In this paper, a multi-scale FE model, including a corresponding erosion criterion, is proposed and validated that can significantly reduce computational costs with high precision by modelling a pseudo-dynamic test of an reinforced concrete(RC) pier. Numerical simulations of the seismic failures of a continuous RC bridge based on the multi-scale FE modeling method using LS-DYNA are performed. The nonlinear properties of the bridge, various connection strengths and bidirectional excitations are considered. The numerical results demonstrate that the failure of the connections will induce large pounding responses of the girders. The nonlinear deformation of the piers will aggravate the pounding damages. Furthermore, bidirectional earthquakes will induce eccentric poundings to the girders and different failure modes to the adjacent piers. 展开更多
关键词 数字模拟 侵蚀标准 多尺度的有限元素(FE ) 模型 失败机制 失败模式
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Numerical analysis of stress distribution in the upper arm tissues under an inflatable cuff:Implications for noninvasive blood pressure measurement 被引量:3
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作者 Zhipeng Deng Fuyou Liang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第5期959-969,共11页
An inflatable cuff wrapped around the upper arm is widely used in noninvasive blood pressure measurement.However, the mechanical interaction between cuff and arm tissues, a factor that potentially affects the accuracy... An inflatable cuff wrapped around the upper arm is widely used in noninvasive blood pressure measurement.However, the mechanical interaction between cuff and arm tissues, a factor that potentially affects the accuracy of noninvasive blood pressure measurement, remains rarely addressed. In the present study, finite element(FE) models were constructed to quantify intra-arm stresses generated by cuff compression, aiming to provide some theoretical evidence for identifying factors of importance for blood pressure measurement or explaining clinical observations. Obtained results showed that the simulated tissue stresses were highly sensitive to the distribution of cuff pressure on the arm surface and the contact condition between muscle and bone. In contrast, the magnitude of cuff pressure and small variations in elastic properties of arm soft tissues had little influence on the efficiency of pressure transmission in arm tissues. In particular, it was found that a thickened subcutaneous fat layer in obese subjects significantly reduced the effective pressure transmitted to the brachial artery, which may explain why blood pressure overestimation occurs more frequently in obese subjects in noninvasive blood pressure measurement. 展开更多
关键词 Noninvasive 血压测量 可膨胀的手铐 上面的手臂 有限元素(FE ) 模型 装载并且接触条件 强调分发 肥胖的病人
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Improvement of Mechanical Properties of Wood-Plastic Composite Floors Based on the Optimum Structural Design 被引量:5
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作者 Yang Zhang Ping Xue +3 位作者 Yun Ding Mingyin Jia Jianchen Cai Xiaoming Jin 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2016年第4期444-454,共11页
A study is carried out on the structural design of wood-plastic composite floors. The geometric parameters of the cavities, the structure, and the means to optimize the performance of these light boards are investigat... A study is carried out on the structural design of wood-plastic composite floors. The geometric parameters of the cavities, the structure, and the means to optimize the performance of these light boards are investigated. Various structural parameters of the boards, such as size,shape, and the pattern of cavities are also studied. The optimal structure can be determined by calculation and analysis of the strength, stiffness, weight and cost of the material. A finite element model for the mechanical analysis of wood-plastic composite floors is established; and the results are used to verify the strength criteria under bending deformation, which is the most common loading condition of flooring board. 展开更多
关键词 木头塑料合成 flooring 董事会 最佳的结构 有限元素模型
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