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The Influence of the Opening Angle on the Stress Distribution through the Saphenous Vein Wall

机译:开口角对通过隐静脉壁应力分布的影响

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In the present study, the inflation test of human vena saphena magna was conducted to obtain data suitable for multi-axial constitutive modeling at overloading conditions (pressures up to approximately 18 kPa). Subsequently the data were fitted with a hyperelastic, nonlinear and anisotropic constitutive model based on the theory of the closed thick-walled tube. It was observed that initial highly deformable behavior in the pressure-circumferential stretch response is followed by progressive large strain stiffening, which is in contrast to the pressure-axial stretch response. The effect of possible residual stress was evaluated in a simulation of the intramural stress distribution with the opening angle prescribed to 0°, 10°, 20°, 30°, 40°, and 50°. The result suggests that the optimal opening angle making the stress distribution through the wall thickness uniform is about 20°.
机译:在本研究中,进行了人体VENA Saphena MAGNA的膨胀试验,以获得适用于过载条件(压力高达约18kPa)的多轴本构型建模的数据。随后,基于封闭的厚壁管的理论,数据拟合了一种超速率,非线性和各向异性本构模型。观察到,在压力圆周拉伸响应中的初始高度可变形的行为之后是渐进式大应变加固,这与压力轴向拉伸响应相反。在逆脉压力分布的模拟中评估了可能的残余应力的效果,该模拟与0°,10°,20°,30°,40°和50°的开口角度。结果表明,通过壁厚均匀的最佳开度角度使应力分布为约20°。

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