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Simulations of cyclic, transient variations of mold temperatures in the SMC compression molding process

机译:在SMC压缩成型过程中模拟模具温度的周期性变化

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The dual reciprocity boundary element technique is used to simulate the cyclic SMC compression molding process, taking into account the heat transfer within the whole mold. The cyclic, transient variations in mold temperatures at different mold locations are illustrated through the analysis of a plate mold. The transient temperature fluctuation near the mold cavity surface is much larger than that away from it. It was also found that owing to the high heating fluid temperature (compared with the ambient air temperature), the heat transfer at the mold exterior surface shows a significant effect on the mold temperature distribution, especially when the mold is a small or medium size. The present method provides a complete and more accurate description of the mold temperature variation during the whole cycle history by including the mold as the analysis domain, meanwhile minimizing the computation time. Other analysis methods, including the constant mold wall temperature approach, the hybrid shape-factor/finite element method, as well as the cycle-averaged boundary element technique imposed with 1-D transient analysis, basically overestimate mold wall temperatures and the associated charge conversion rate. [References: 32]
机译:考虑到整个模具内的传热,采用双重互易边界元技术来模拟循环SMC压缩成型过程。通过对平板模具的分析,可以说明在不同模具位置处模具温度的周期性变化。模腔表面附近的瞬态温度波动远大于模腔表面附近的瞬态温度波动。还发现由于加热流体温度高(与环境空气温度相比),在模具外表面的热传递对模具温度分布显示出显着影响,尤其是当模具为中小尺寸时。通过将模具作为分析域,同时最小化了计算时间,本方法提供了在整个循环历史中模具温度变化的完整且更准确的描述。其他分析方法,包括恒定模具壁温度方法,混合形状因数/有限元方法以及采用一维瞬态分析施加的周期平均边界元素技术,基本上会高估模具壁温度和相关的电荷转换率。 [参考:32]

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