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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Exergy efficiency optimization model of motorized spindle system for high-speed dry hobbing
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Exergy efficiency optimization model of motorized spindle system for high-speed dry hobbing

机译:高速干滚滚动机动主轴系统的高效优化模型

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摘要

High-speed dry hobbing (HSDH) has been regarded as an environmentally benign gear machining technique. Current research on energy efficiency of machine tool focuses on the energy efficiency for workpiece material removal but rarely involves the energy consumption required to control thermal stability. Due to the fact that thermal effect dominates the machining accuracy and accuracy consistency, especially in the dry machining process, the energy consumption for thermal stability control should be taken as useful energy consumption. In view of this, by taking the motorized spindle system (MSS) as the study objective, which is a core subsystem of machine tool enabling HSDH and characterizes intensive and inefficient energy consumption, an exergy-based method is proposed to evaluate the comprehensive energy efficiency of MSS. Furthermore, an exergy efficiency optimization model is proposed to maximize total exergy efficiency and minimize average temperature of MSS. A solution method integrating Pareto Dominant-based Multi-objective Simulated Annealing (PDMOSA) and Technique for Order of Preference by Similarity to an Ideal Solution (TOPSIS) is proposed to search the best solution of the optimization model. A case study is introduced to validate the proposed model and a final optimal solution is obtained at the total exergy efficiency of 53.5% with balanced temperature of 35.4 degrees C. The cooling water in MSS is identified to be a dominant factor that affects total exergy destruction. The presented model can give a reference to select appropriate process parameters of MSS for green and precision machining.
机译:高速干滚齿(HSDH)被视为环境良好的齿轮加工技术。目前关于机床能效的研究专注于工件材料去除的能效,但很少涉及控制热稳定性所需的能量消耗。由于热效应主导加工精度和精度一致性,特别是在干加工过程中,热稳定性控制的能耗应作为有用的能耗。鉴于此,通过采取电动主轴系统(MSS)作为研究目标,这是一种机床核心子系统,其能够实现HSDH并表征密集且低效的能耗,提出了一种基于漏洞的方法来评估综合能效MSS。此外,提出了一种效率优化模型,以最大限度地提高全面的高效率,最大限度地减少MS的平均温度。求解基于帕累托的多目标模拟退火(PDMOSA)和技术的解决方法,以便通过与理想解决方案(TOPSIS)的相似性偏好的顺序来搜索优化模型的最佳解决方案。引入案例研究以验证所提出的模型,最终的最佳溶液以35.4摄氏度的平衡温度为53.5%获得53.5%的效率。MSS中的冷却水被识别为影响总漏洞的主要因素。所提出的模型可以参考选择用于绿色和精密加工的MSS的适当工艺参数。

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