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首页> 外文期刊>Journal of Reinforced Plastics and Composites >THREE-DIMENSIONAL CHARACTERIZATION OF PULTRUDED FIBERGLASS EPOXY COMPOSITE MATERIALS
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THREE-DIMENSIONAL CHARACTERIZATION OF PULTRUDED FIBERGLASS EPOXY COMPOSITE MATERIALS

机译:拉挤玻璃纤维环氧复合材料的三维表征

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摘要

Computer simulation is helpful for understanding the manufacturing of pultruded advanced composites. This research involves a three-dimensional examination of the temperature and thermochemical aspects for the manufacturing of cartesian fiberglass-epoxy composite materials. Comparison of the computer generated predictions were made with experimentally measured temperature profiles and the degree of cure obtained using a Differential Scanning Calorimeter (DSC). A numerical model employing Patankar's [1] control volume based finite difference technique was employed for solving the governing energy and species equations used to model the entire heating (moving and non-moving) sections of the pultruder. This computer model can be utilized to establish functional relationships between combinations of pull speed, fiber volume, and die temperature profiles and can be employed to refine the pultruder for manufacturing composites, indicating the importance of controlling the processing parameters in producing quality pultruded products. Since this computer simulation is independent of predetermined laboratory values in generating results, it can establish the guidelines in the design of an advanced pultrusion machine itself, and in orchestrating the future development of advanced composite materials. [References: 10]
机译:计算机仿真有助于了解布鲁德先进复合材料的制造。该研究涉及用于制造笛卡尔玻璃纤维 - 环氧复合材料的温度和热化学方面的三维检查。通过通过实验测量的温度分布和使用差示扫描量热计(DSC)获得的计算机产生的预测的比较。采用了采用PatankAL [1]控制体积的有限差分技术的数值模型来解决用于模拟制草制水器的整个加热(移动和非移动)部分的控制能量和物种方程。该计算机模型可用于建立拉速,纤维体积和管芯温度型材组合之间的功能关系,并且可以采用以优化用于制造复合材料的布赖丁,表明在生产质量拉挤产物中控制加工参数的重要性。由于这种计算机仿真在产生结果时与预定的实验室值无关,因此它可以建立一个先进的拉挤机本身的设计指导,以及协调先进复合材料的未来发展。 [参考:10]

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