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Evaluation of thermo-energetic behavior for demand-oriented operating of machine tool cooling systems

机译:评估机床冷却系统以需求为导向的热能行为

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In state of the art machine tools, structural thermal displacement is commonly reduced by cooling and tempering measures. The application of these measures frequently counteracts the original goal of energy efficiency. To design demand-oriented cooling systems, this paper presents a method to evaluate cooling measures and control parameters by means of a variance-based sensitivity analysis regarding the thermo-energetic efficiency. The evaluation is carried out by using the example of a machine bed made of high performance concrete. The integrated fluid-air cooling system with fan speed control and the bed structure are modelled by lumped elements. In addition to the PID-control of the cooling fluid temperature, the evaluation considers a two-position control of separately controllable cooling circuits and the influence of ambient temperature. The criteria to evaluate are temperature differences within the machine structure, the dissipated heat and their proportions to deployed electrical energy.
机译:在现有技术的机床中,通常通过冷却和回火措施来减少结构热位移。这些措施的应用经常会抵消最初的能源效率目标。为了设计面向需求的冷却系统,本文提出了一种基于热能效率的基于方差的敏感性分析来评估冷却措施和控制参数的方法。以高性能混凝土制成的机床为例进行评估。通过集总元素对带有风扇速度控制和床结构的集成式流体-空气冷却系统进行建模。除了对冷却液温度进行PID控制之外,评估还考虑了可单独控制的冷却回路的两位置控制以及环境温度的影响。评估的标准是机器结构内的温差,散发的热量及其与已部署电能的比例。

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