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3D FE analysis on the product defects of composites formed by liquid-solid extrusion process

机译:液固挤压成型复合材料产品缺陷的3D有限元分析

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摘要

The liquid-solid extrusion process for forming composite products was simulated by the three-dimensional thermo-mechanical finite element method. The mechanism for forming defects was analyzed based on the distribution of temperature and flowage of the work piece. The surface annular cracks occurring at the initial stage was caused by the high deformation temperature together with the axial tensile stress which was caused by uneven axial flow rate. However, the low deformation temperature in the terminal stage led to high resistance of deformation and interfacial strength, resultingin the fracture of fibres during severe deformation. The deformation condition in the middle stage was feasible to obtain composite products that were defect free. The simulation was verified through the comparison of the deforming force between the calculated and the measured one in laboratory conditions. The results indicate that the forming quality depends on the thermal and deformation state of the work piece, which can be controlled by the selection and adjustment of the process parameters.
机译:采用三维热力有限元方法对复合材料成形的液固挤压过程进行了模拟。根据工件的温度和流量分布分析了缺陷形成的机理。在初始阶段出现的表面环形裂纹是由变形温度高和轴向流量不均匀引起的轴向拉伸应力共同引起的。然而,在末端阶段较低的变形温度导致较高的变形阻力和界面强度,导致严重变形期间纤维断裂。在中间阶段的变形条件对于获得无缺陷的复合产品是可行的。通过比较在实验室条件下计算出的和测得的变形力来验证仿真。结果表明,成形质量取决于工件的热和变形状态,这可以通过选择和调整工艺参数来控制。

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