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Microwave Curing of Non-Traditional Polymer Materials Used in Manufacture of Injection Moulds

机译:用于制造注射模具的非传统聚合物材料的微波固化

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Microwave heating technology is a cost-effective alternative way for heating and curing of used in polymer processing of various alternate materials. The work presented in this paper addresses the attempts made by the authors to study the glass transition temperature and curing of materials such as casting resins R2512, R2515 and laminating resin GPR 2516 in combination with two hardeners ADH 2403 and ADH 2409. The magnetron microwave generator used in this research is operating at a frequency of 2.45 GHz with a hollow rectangular waveguide. During this investigation it has been noted that microwave heated mould materials resulted with higher glass transition temperatures and better microstructure. It also noted that Microwave curing resulted in a shorter curing time to reach the maximum percentage cure. From this study it can be concluded that microwave technology can be efficiently and effectively used to cure new generation alternate polymer materials for manufacture of injection moulds in a rapid and efficient manner. Microwave curing resulted in a shorter curing time to reach the maximum percentage cure.
机译:微波加热技术是一种经济高效的替代方法,用于加热和固化各种交替材料的聚合物加工。本文提出的作者提出了作者对玻璃化转变温度和材料的尝试,例如浇铸树脂R2512,R2515和层压树脂GPR 2516与两个硬化剂ADH 2403和ADH 2409的组合。磁控管微波发生器在本研究中使用的是使用中空矩形波导的2.45GHz的频率运行。在该研究期间,已经注意到微波加热模具材料导致更高的玻璃化转变温度和更好的微观结构。它还注意到微波固化导致较短的固化时间来达到最大百分比固化。从本研究开始,可以得出结论,微波技术可以有效地和有效地用于固化新一代替代聚合物材料,以快速有效地制造注射模具。微波固化导致较短的固化时间达到最大百分比固化。

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