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REDUCTION OF VIBRATIONS IN BALL SCREW DRIVEN MACHINE TOOLS BY THE OPTIMAL SELECTION OF NUT PARAMETERS

机译:通过螺母参数的最佳选择减少滚珠丝杠驱动机床中的振动

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Due to the growing need for sustainable manufacturing processes, machine tool designers are constantly looking for ways to reduce unwanted structural vibrations without having to increase the mass/inertia of moving components, which in turn increases the energy consumption and cost of the machines. Recent research has shown that, due to the coupling introduced by the nut, the torque applied to ball screw drives by the motor causes undesirable lateral (bending) vibrations of the screw, which adversely affects the fatigue life and positioning accuracy of ball screw drives. By analyzing the stiffness matrix connecting the screw to the nut, this paper shows that the helix angle of the screw and the entry/exit angles of the balls have the most influence on the degree of coupling between motor torque and lateral vibrations of the screw. Consequently, by carefully selecting the helix angle of the screw together with the entry/exit angles of the balls, the undesirable lateral vibrations of the screw can be minimized, without having to increase the diameter (i.e. stiffness/inertia) of the ball screw. The merits and limitations of the proposed method are demonstrated using simulations on a single-axis ball screw driven machine.
机译:由于可持续制造工艺的需求不断增长,机床设计人员不断寻找减少不需要的结构振动的方法,而无需增加移动部件的质量/惯性,这反过来增加了机器的能量消耗和成本。最近的研究表明,由于螺母引入的联接,电动机施加到滚珠丝杠驱动的扭矩导致螺钉的不希望的横向(弯曲)振动,这对滚珠丝杠驱动的疲劳寿命和定位精度产生不利影响。通过分析将螺钉连接到螺母的刚度矩阵,本文示出了螺钉的螺旋角和球的入口/出口角度对螺钉的电动机扭矩和横向振动之间的耦合程度最有影响。因此,通过与球的入口/出口角度一起仔细选择螺钉的螺旋角,可以最小化螺杆的不希望的横向振动,而不必增加滚珠丝杠的直径(即刚度/惯性​​)。在单轴滚珠丝杠驱动机上使用模拟来证明所提出的方法的优点和局限。

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