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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A novel method for predicting degrees of crystallinity in injection molding during packing stage
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A novel method for predicting degrees of crystallinity in injection molding during packing stage

机译:一种新方法,用于预测包装阶段注射成型中的结晶度

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摘要

Being able to predict products' degrees of crystallinity and thereby optimize their crystallization processes is of great significance for producing high-quality polymeric products in injection molding. However, it is rather difficult to theoretically establish the relationship between the crystallization results and processing conditions (high cooling rates and pressures, strong and complex flow fields). Injection molding simulation software can simulate polymers' density results during packing stage, and these predicted density results can be used to calculate polymers' crystallinity results. Based on this idea, a novel method was proposed to predict the degrees of crystallinity for polymers during packing stage. In this method, pressure and temperature results are first simulated by an injection molding simulation software, and then the density results are calculated based on a pressure-volume-temperature model. Next, the crystallinity results are solved according to the densities of the fully crystalline part and the purely amorphous part. Finally, two case studies are conducted to verify the proposed crystallinity prediction method. Moreover, the effects of packing parameters (mold temperature, packing pressure, and packing time) on polymers' crystallization behaviors are investigated. The experimental results show that the proposed method is correct and effective.
机译:能够预测产物的结晶度,从而优化它们的结晶过程对于在注射成型中生产高质量的聚合物产物具有重要意义。然而,理论上是在理论上建立结晶结果和加工条件(高冷却速度和压力,强和复杂的流场)之间的关系。注塑模拟软件可以在包装阶段模拟聚合物的密度导致,并且这些预测密度结果可用于计算聚合物的结晶度结果。基于该思想,提出了一种新的方法来预测包装阶段中聚合物的结晶度。在该方法中,首先通过注塑模拟软件模拟压力和温度结果,然后基于压力体积温度模型计算密度结果。接下来,根据完全结晶部分和纯无定形部分的密度来解决结晶度结果。最后,进行了两种案例研究以验证所提出的结晶度预测方法。另外,研究了填料参数(模具温度,包装压力和包装时间)对聚合物的结晶行为的影响。实验结果表明,该方法是正确有效的。

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