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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >An integrated process-machine approach for designing productive and lightweight milling machines
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An integrated process-machine approach for designing productive and lightweight milling machines

机译:设计生产轻质铣床的集成工艺机器方法

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This paper provides an integrated approach for designing large milling machines, taking both mass reduction of mobile structural components and the maximum material removal rate into account. This approach considers a representative milling operation and a productivity target as a starting point, and then deals with the design of the machine to achieve the targeted productivity with structural components of minimum mass. The procedure is based on modeling the interactions between process and machine by means of a stability model of the milling process in modal coordinates. The model allows the identification of the mechanical design parameters that limit the productivity as well as the threshold values that must be met to ensure the targeted productivity. Those values are reached in an iterative procedure that minimizes the mass of the critical structural components of the machine. This approach has been applied to the re-design of an actual milling machine, on which, once built and adjusted, the machining tests conducted have shown increases above 100% in productivity, consuming at the same time 13% less energy due to mass reduction above 20% in mobile structural components. In this way, an eco-efficient milling machine that performs highly productive machining processes has been designed and built.
机译:本文提供了一种设计大型铣床的综合方法,同时考虑了移动结构部件的质量减少和最大材料去除率。这种方法将代表性的铣削操作和生产率目标作为出发点,然后进行机床设计,以最小质量的结构部件实现目标生产率。该过程基于在模态坐标下通过铣削过程的稳定性模型对过程与机器之间的相互作用进行建模。该模型允许识别限制生产率的机械设计参数以及为确保目标生产率而必须满足的阈值。这些值是通过迭代过程达到的,该过程可最大程度地减少机器关键结构部件的质量。该方法已应用于实际铣床的重新设计,在此铣床上进行了构建和调整后,进行的机加工测试表明生产率提高了100%以上,同时由于质量降低而减少了13%的能耗超过20%的移动结构组件。通过这种方式,已经设计并制造出了一种高效生态的铣床,可以执行高生产率的加工过程。

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