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Effect of enhancing fins on the heating/cooling efficiency of rotational molding and the molded product qualities

机译:散热片的增强对滚塑成型的加热/冷却效率和成型产品质量的影响

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Rotational molding has become one of the most important polymer processing methods for producing hollow plastic articles. However, the long cycle time required by the rotational molding process has confounded the overall success of this technology. Molds with extended surfaces (fins) have the potential to enhance heat transfer by increasing surface area. This report aims to examine the effects of enhanced fins on the heating/cooling efficiency of rotational molding and on molded product qualities. Rotational molding experiments were carried out in a laboratory-scale uniaxial machine, which is capable of measuring internal air temperature in the cycle. Three types of fins, including pin, rectangular and triangular fins, were used to mold the parts. Cycle-time reductions by the fins were measured. Characterization of molded part properties was also performed after molding. It was found that the mold surfaces with pin fins exhibited the highest heating and cooling efficiency. The use of fins in rotational molding can be better justified under conditions for which the convective heat transfer is small. In addition, molds with extended surfaces produce parts with less shrinkage but with greater warpage. The internal surface quality and tensile strengths of molded parts were not affected by these fins. It was shown that the heating/cooling efficiency can be increased by the fins, and this increase provides significant advantages in terms of reduced cycle time. (c) 2007 Elsevier Ltd. All rights reserved.
机译:旋转模塑已成为生产中空塑料制品的最重要的聚合物加工方法之一。但是,滚塑工艺所需的长循环时间使该技术的整体成功感到困惑。具有扩展表面(散热片)的模具具有通过增加表面积来增强热传递的潜力。该报告旨在研究散热片对滚塑成型的加热/冷却效率以及成型产品质量的影响。旋转模塑实验是在实验室规模的单轴机器上进行的,该机器能够测量循环中的内部空气温度。三种类型的翅片,包括销钉,矩形翅片和三角形翅片,用于模制零件。测量了散热片减少的周期时间。成型后还对成型件的性能进行表征。发现带有针状翅片的模具表面表现出最高的加热和冷却效率。在对流传热较小的条件下,可以更好地证明在旋转模塑中使用散热片是合理的。此外,具有延伸表面的模具生产的零件收缩率较小,但翘曲较大。这些散热片不会影响模制零件的内表面质量和拉伸强度。结果表明,通过散热片可以提高加热/冷却效率,并且这种提高在减少循环时间方面具有明显的优势。 (c)2007 Elsevier Ltd.保留所有权利。

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