Design and Analysis of Artificial Heart Model by Using Finite Element Analysis

Q4 Energy
Manjunath Lh, K. V
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引用次数: 0

Abstract

The human heart is a cardiac muscular organ which pumps blood through blood vessels to various tissues and organs for their function and also carries oxygen and other nutrients to tissues. The heart geometry is very complex and function of heart also plays major role in all kinds of animals for survival and carryout all kinds of functions. Investigating the biomechanical behaviour of a soft artificial heart model is a hard task as such things are very complicated in terms of both material properties and geometry. This work is focused on modelling of soft material heart model and study of static and Dynamic behaviour with easily operable, full-size. Theatrical heart model was designed using Creo Parametric 5.0 software. The developed model was further analyzed by the boundary condition such as Total Deformation, Principal stress, Maximum principle stresses and Elastic strain for five different case studies for various pressures at ventricle chamber and Expansion Chamber. The developed model can be used for further Numerical simulation and investigation of the artificial heart were implemented using Creo Parametric 5.0 and ANSYS, with different Bio-Compatible materials such as Silicon Elastomers, Teflon (PTFE), Polyethylene, Graphene, Carbon fiber. The biomechanical modelling and analysis of the soft artificial heart were implemented using the finite element modelling in ANSYS.
人工心脏模型的有限元设计与分析
人的心脏是一个心肌器官,它通过血管将血液泵送到各种组织和器官以发挥其功能,还将氧气和其他营养物质输送到组织。心脏的几何形状非常复杂,心脏的功能也在各种动物的生存和执行各种功能中发挥着重要作用。研究软人工心脏模型的生物力学行为是一项艰巨的任务,因为这些事情在材料特性和几何形状方面都非常复杂。这项工作的重点是软材料心脏模型的建模,以及易于操作的全尺寸静态和动态行为的研究。剧场心脏模型采用Creo Parametric 5.0软件进行设计。针对心室室和膨胀室不同压力的五个不同案例研究,通过总变形、主应力、最大主应力和弹性应变等边界条件对所开发的模型进行了进一步分析。所开发的模型可用于进一步的人工心脏数值模拟和研究。使用Creo Parametric 5.0和ANSYS,使用不同的生物相容性材料,如硅弹性体、聚四氟乙烯(PTFE)、聚乙烯、石墨烯、碳纤维,对人工心脏进行了数值模拟和调查。利用有限元软件ANSYS对软质人工心脏进行生物力学建模和分析。
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来源期刊
Journal of Mines, Metals and Fuels
Journal of Mines, Metals and Fuels Energy-Fuel Technology
CiteScore
0.20
自引率
0.00%
发文量
101
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