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'Gas Evacuation Technique: From Lab to Reality'

机译:“气体疏散技术:从实验室到现实”

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摘要

Initial efforts to gas assist injection mold Bulk Molding Compound were designed to stave off the growing competition of gas molded engineering thermoplastics. BMC, molded in solid, was losing market share to ETPs using various GAIM technologies. Now that BMC components can be effectively gas evacuated, the volumetric savings temporarily enjoyed by ETP no longer exist. As research continues, information regarding BMC material properties and GET processing techniques is beginning to proliferate to molders and original equipment manufacturers. The net result of this work has transcended the "defense of existing market share". Gas evacuation technique has opened potentials for greater BMC penetration into markets traditionally dominated by ETP, metals and other rigid substrates. It was the goal of this work to illustrate a new opportunity for the enhancement of value in molded product. Through the innovative use of pressurized gas and injection molding technology, gas evacuation technique has further improved the price to property ratio associated with Bulk Molding Compound.
机译:最初为气体辅助注射成型大体积模塑料提供的帮助旨在阻止气体模制工程热塑性塑料的日益激烈的竞争。坚固的BMC使用各种GAIM技术在ETP上失去了市场份额。现在可以有效地抽空BMC组件的气体,因此ETP暂时无法节省体积。随着研究的不断深入,有关BMC材料性能和GET处理技术的信息开始向模塑商和原始设备制造商扩散。这项工作的最终结果超出了“捍卫现有市场份额”的范围。气体疏散技术为BMC进入传统上以ETP,金属和其他刚性基材为主的市场提供了更大的潜力。这项工作的目的是说明增加模制品价值的新机会。通过对加压气体和注射成型技术的创新使用,抽气技术进一步提高了与大体积模塑料相关的价格/性能比。

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