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Moulded Part Design for the Gas Injection Technique

机译:气体注入技术的模压部件设计

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In gas assisted injection moulding the melt front advancement has a considerable effect on the gas penetration. The evaluation of an appropriate melt filling is an important step to avoid instabilities in the process sequence. Taking a sample moulded part a procedure is presented that enables the part designer to evaluate required melt and gas injection points according to the gas injection technique. Using finite element simulations different calculations for the melt front advancement lead to the correct gate location in correspondence with the gas nozzle and the part geometry.
机译:在气体辅助注射成型中,熔体前进步对气体渗透具有相当大的影响。对适当的熔融填充的评估是避免在过程序列中避免稳定性的重要步骤。采用样品模制部分,提出了一种程序,使得部件设计师能够根据气体喷射技术评估所需的熔体和气体注入点。使用有限元模拟熔体前进步的不同计算导致与气体喷嘴和部分几何形状相对应的正确栅极位置。

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