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New methodology for the design of ultra-light structural components for machine tools

机译:机床超轻结构部件设计的新方法

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摘要

Energy consumption is the key to the ecological impact of many machine tools, especially milling machines. One promising strategy for minimising the energy consumption of machine tools is to reduce the mass of their structural components. This solution, however, has a clear drawback: the mechanical stiffness of the machine is reduced, impairing its performance and, in the long run, its productivity. This study proposes a new methodology to overcome such limitations, which involves the design of machine tools with ultra-light structural components, and the development of strategies to counteract the loss of productivity as a consequence of lightweight machines. The new methodology includes the use of modular boxes built with carbon-fibre trusses, calculation of the dynamic stiffness of the new design, the identification of its weaknesses in terms of its cutting processes, and the design and integration of active damping systems in the machine to soften the expected vibrations under the most critical cutting conditions. This methodology has been tested in the new design of a ram of a bridge-type machining centre of medium size. The results show that a 60% reduction in mass can be achieved and that an active damper system can compensate a 60% reduction in mechanical stiffness, maintaining a level of performance that is comparable to heavier standard machines under high-cutting conditions.
机译:能耗是影响许多机床(尤其是铣床)生态影响的关键。减少机床能耗的一种有前途的策略是减少其结构部件的质量。然而,该解决方案具有明显的缺点:降低了机器的机械刚度,从而损害了其性能,并且从长远来看,损害了其生产率。这项研究提出了一种克服这种局限性的新方法,其中涉及具有超轻结构部件的机床的设计,以及针对轻型机床导致的生产率损失的对策的开发。新方法包括使用由碳纤维桁架制成的模块化箱,计算新设计的动态刚度,确定其在切割过程方面的弱点以及将主动阻尼系统设计和集成到机器中在最关键的切削条件下软化预期的振动。这种方法已经在中等尺寸的桥式加工中心的滑枕的新设计中进行了测试。结果表明,可以实现质量减轻60%,并且主动减振器系统可以补偿机械刚度降低60%,并在高切削条件下保持与重型标准机器相当的性能水平。

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