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The simulation of injection molding process requires a stable algorithm to model the molten polymer with non-isothermal non-Newtonian property. In this paper, a staggered and iterative scheme is particularly designed to solve the velocity-pressure-temperature variables. In consideration of the polymer characteristic of high viscosity and low thermal conductivity, the non-Newtonian momentum-mass conservation equations are solved by the Crank-Nicolson method based split (CNBS) scheme, and the energy conservation equation with convective character is discretized by the characteristic Galerkin (CG) method. In addition, an arbitrary Lagrangian Eulerian (ALE) free surface tracking and mesh generation method is introduced to catch the front of the fluid flow. The efficiency of the proposed scheme is demonstrated by numerical experiments including a lid-driven cavity flow problem and an injection molding problem.  相似文献   
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采用差示扫描量热(DSC)法对3种不同组分的轿车地毯复合材料的热物性参数一比热进行了测试。基于对试验结果的对比分析,探讨了,影响轿车地毯复合材料热学性能的因素及原因,并建立了轿车地毯复合材料热学性能的数学模型,为轿车地毯热成型工艺和模具设计提供了基础性数据。  相似文献   
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以单向拉伸试验研究了轿车地毯不同宽度尺寸试样的热力塑性成形性能,试验发现轿车地毯材料的塑性成形性能具有尺寸效应。分析了轿车地毯材料的强度、塑性和断裂功等成形性能受尺寸的影响程度。试验结果表明,宽度为50mm的试样可以作为轿车地毯材料基本力学性能测试的统一标准,能较稳定地反映轿车地毯的基本力学性能。  相似文献   
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