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Copper-alloy molds provide cycle time and quality advantages for injection molding and resin transfer molding

机译:铜合金模具提供注塑和树脂转移成型的循环时间和质量优势

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Cycle time affects the overall economics of plastic and composite molding processes. The choice of mold materials greatly influences the temperatures in the cavity, the cycle time and part quality. This paper summarizes and highlights two investigations of the influence of mold materials on the productivity of injection molding and resin transfer molding. The investigation of injection molding compared the performance of molds made from six copper alloys with P20 steel. The results showed that high thermal conductivity copper-alloy molds reduced the cycle time compared to steel and showed a significantly lower cavity-surface temperature and more uniform cooling. The investigation of resin transfer molding (RTM) showed how the thermal diffusivity of copper alloys enables the mold to reach steady state quickly, to maintain a more uniform temperature, to dissipate reaction exotherm, to improve temperature control, and to provide more uniform curing of the part. These advantages can be translated into economic advantages by reducing cycle time, improving production efficiencies, and lowering capital costs. The thermal and economic benefits are available from a wide range of copper alloys that eliminate the need to compromise hardness or strength.
机译:循环时间影响塑料和复合成型工艺的整体经济学。模具材料的选择大大影响了腔内的温度,循环时间和部分质量。本文总结并突出了模具材料对注塑成型和树脂转移成型的生产率的两次调查。注塑成型研究比较了由六种铜合金制成的模具与P20钢制成的性能。结果表明,与钢相比,高导热铜合金模具降低了循环时间,并显示出明显较低的腔表面温度和更均匀的冷却。树脂转移成型(RTM)的研究表明,铜合金的热扩散性如何使模具能够快速达到稳态,以保持更均匀的温度,以消散反应放热,以改善温度控制,并提供更均匀的固化那个部分。这些优点可以通过减少循环时间,提高生产效率和降低资本成本来转化为经济优势。热和经济效益可从各种铜合金提供,消除了损害硬度或强度的需要。

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