工艺和设计因素对复合材料成型温度分布的影响

A. Kondratiev, Oleksii Vambol, Marvna Shevtsova, A. Tsaritsynskyi, T. Nabokina
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引用次数: 0

摘要

目前制造复合材料产品的技术的进步和广泛的复合材料使得制造各种形状和尺寸的产品成为可能,同时保证了它们的高质量和优异的电气特性。然而,大多数企业使用的成型复合材料产品的温度-时间制度是相当的能源和时间消耗。此外,所得产品中的热残余应力和应变可能使其无法进一步使用。本文的目的是开发一种技术,用于确定在技术和设计因素方面成型的聚合物复合材料包装厚度的温差。分析依赖关系,允许计算在成型期间的复合材料包的厚度温差。热问题的解决被简化为确定被成型产品的温度场。分析表明,温度场与被成型材料的特性和性能以及主辅工具的特性有关。为解决热导率问题,计算了主模具、被塑件和辅助模具内的温度场分布。在这种情况下,接触单元在结合处的边界条件相同。对影响复合材料包的温度梯度的因素进行了分析,这些因素包括在获得的依赖项中。此外,还从工艺和设计的角度考虑了降低温度场不均匀性的可能途径。所获得的结果使得在不增加生产成本的情况下减少复合材料包成型厚度的温差成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Technological and Design Factors on the Temperature Distribution in a Composite Being Moulded
The present advancement of technologies for manufacturing composite products and a wide range of composite materials make it possible to manufacture products of various shapes and sizes, while ensuring their high quality and excellent electrical characteristics. However, the temperature-time regimes for moulding composite products used at most enterprises are quite energy and time consuming. Moreover, thermal residual stresses and strains in the obtained product can make its further use impossible. The aim of the article is to develop a technique for determining the temperature difference across the thickness of the package of a polymer composite material being moulded with regard to technological and design factors. Analytical dependences that allow calculating the temperature difference across the thickness of the composite package during moulding have been obtained. The solution of the thermal problem was reduced to determining the temperature field in the product being moulded. The analysis revealed the dependence of the temperature field on the characteristics and properties of the material being moulded and the characteristics of the main and auxiliary tool. To solve the problem of thermal conductivity, the distribution of the temperature field in the main tool, product being moulded and auxiliary tool was calculated. In this case, the boundary conditions at the joints were the same for the contacting elements. An analysis of the factors affecting a temperature gradient across the composite package, which were included in the obtained dependences, was carried out. Moreover, possible ways to reduce the unevenness of the temperature field by technological and design methods were considered. The results obtained made it possible to reduce the temperature difference across the thickness of the composite package being moulded without additional production costs.
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