Wei Huidong, Yan Shiyong, Menary Gary
College of Health and Life Sciences, Aston University, Birmingham B4 7ET, UK.
School of Mechanical and Aerospace Engineering, Queen's University Belfast, Belfast BT9 5AH, UK.
Polymers (Basel). 2021 Mar 22;13(6):967. doi: 10.3390/polym13060967.
Stretch blow moulding (SBM) has been employed to manufacture bioresorbable vascular scaffold (BVS) from poly (l-lactic acid) (PLLA), whilst an experience-based method is used to develop the suitable processing conditions by trial-and-error. FEA modelling can be used to predict the forming process by the scientific understanding on the mechanical behaviour of PLLA materials above the glass transition temperature (). The applicability of a constitutive model, the 'glass-rubber' (GR) model with material parameters from biaxial stretch was examined on PLLA sheets replicating the biaxial strain history of PLLA tubes during stretch blow moulding. The different stress-strain relationship of tubes and sheets under equivalent deformation suggested the need of re-calibration of the GR model for tubes. A FEA model was developed for PLLA tubes under different operation conditions, incorporating a virtual cap and rod to capture the suppression of axial stretch. The reliability of the FEA modelling on tube blowing was validated by comparing the shape evolution, strain history and stress-strain relationship from modelling to the results from the free stretch blow test.
拉伸吹塑成型(SBM)已被用于由聚(L-乳酸)(PLLA)制造生物可吸收血管支架(BVS),而一种基于经验的方法则通过反复试验来开发合适的加工条件。有限元分析(FEA)建模可用于通过对高于玻璃化转变温度()的PLLA材料力学行为的科学理解来预测成型过程。在复制拉伸吹塑成型过程中PLLA管的双轴应变历史的PLLA片材上,研究了具有双轴拉伸材料参数的本构模型“玻璃-橡胶”(GR)模型的适用性。在等效变形下管和片材不同的应力-应变关系表明需要对管的GR模型进行重新校准。针对不同操作条件下的PLLA管开发了一个有限元分析模型,该模型包含一个虚拟帽和杆以捕捉轴向拉伸的抑制。通过比较建模得到的形状演变、应变历史和应力-应变关系与自由拉伸吹塑试验的结果,验证了有限元分析建模在管吹塑方面的可靠性。