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Control-oriented modeling of servo-pump driven injection molding machines in the filling and packing phase

机译:灌装阶段的伺服泵驱动注塑机的面向控制的建模

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摘要

Servo-valves or variable displacement pumps are typically used to control conventional hydraulic injection molding machines (IMMs). Recent developments in electrical drive technology allow to utilize servo-motor driven pumps instead, which is beneficial due to their higher energy efficiency. Their dynamic behavior, however, is significantly different compared to the conventional setup. Thus, currently used mathematical models and control concepts cannot be directly applied. This paper presents a computationally efficient and scalable mathematical model of the injection process for these servo-pump driven IMMs. A first-principles model of the injection machine is combined with a phenomenological model describing the injection process, i.e. the compression of the melt and the polymer flow into the mold. The proposed model is tailored to real-time applications and serves as an ideal basis for the design of model-based control strategies. The feasibility of the proposed model is demonstrated by a number of different experiments. They confirm a high model accuracy over the whole operating range for different mold geometries.[GRAPHICS].
机译:伺服阀或可变排量泵通常用于控制传统的液压注塑机(IMM)。电气驱动技术的最新发展允许改用伺服电动机驱动的泵,这是有益的,因为它们具有更高的能源效率。但是,它们的动态行为与常规设置相比有很大不同。因此,当前使用的数学模型和控制概念不能直接应用。本文介绍了这些伺服泵驱动的IMM注射过程的计算有效且可扩展的数学模型。将注射机的第一原理模型与描述注射过程的现象学模型相结合,即,熔体的压缩和聚合物流入模具的流动。所提出的模型是为实时应用量身定制的,是设计基于模型的控制策略的理想基础。大量不同的实验证明了该模型的可行性。他们确认了在不同模具几何形状的整个工作范围内具有很高的模型精度。[GRAPHICS]

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