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Optimal Control of Vitrifying Polymers Cooling Process to Reduce Residual Stresses

机译:玻璃化聚合物冷却过程的最佳控制降低残余应力

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This paper's purpose is analyzing a problem of optimal control of vitrifying polymers cooling process. A solution methodology is suggested targeting at decreasing technological residual stresses, which predetermine major operating characteristics of polymer structures. The criteria function to be minimized is maximum intensity of technological residual stresses under minimum cooling process time. To determine technological residual stresses, a problem of thermoviscoelasticity is solved in finite-elemental formulation. The chosen mathematical model of mechanical behavior of viscoelastic bodies under thermorelaxation transition allows to formulate and to solve the problem of cooling process optimal control. Obtained results show that application of optimal control methods to vitrifying polymers cooling process lead to tenfold decrease of technological residual stresses when compared to an uncontrolled process.
机译:本文的目的在于分析了玻璃化聚合物冷却过程的最佳控制问题。提示靶向降低技术残余应力的解决方案方法,其预先确定了聚合物结构的主要操作特性。最小化的标准功能是最小冷却过程中的技术残余应力的最大强度。为了确定技术残余应力,在有限元制剂中求解热血管痉挛的问题。热弹性转变下粘弹性体的机械行为的所选择的数学模型允许配制和解决冷却过程最佳控制的问题。得到的结果表明,与不受控制的工艺相比,在玻璃化聚合物冷却过程中,最佳控制方法的应用导致技术残留应力的十倍。

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