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Experimental and numerical modal analysis of a servo-screw press with coupled drives as a basis for increasing flexibility and dynamics

机译:伺服螺旋压力机与耦合驱动器的实验和数值模态分析,作为增加灵活性和动态性的基础

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摘要

The development of electromechanical servo presses permits greater flexibility in process kinematics. When this feature is exploited in a targeted manner, the result of the forming process is largely determined by the dynamic properties of the forming machine. Here, attunement between control and mechanics is a central criterion for ensuring good motion dynamics, positioning accuracy and component quality. The increased motion dynamics during workpiece contact require a dynamic stability of the system technology in order to ensure process reliability. They affect the reactions of the machine structure as a result of the attendant process forces and inertial loads. The resulting oscillations affect the component quality and the operational strength of the machine. The effects of the slide guide, press mounting support, mass distribution and stiffness distribution are studied on the basis of a linearly elastic model of a servo-screw press and the results of an experimental modal analysis. The results of this study are intended to help shorten commissioning times and increase the productivity of servo-screw presses.
机译:机电伺服压力机的发展使过程运动学具有更大的灵活性。当有针对性地利用此功能时,成型过程的结果很大程度上取决于成型机的动态特性。在这里,控制和机械之间的协调是确保良好运动动态,定位精度和组件质量的主要标准。工件接触过程中增加的运动动力学要求系统技术具有动态稳定性,以确保过程可靠性。由于伴随的过程力和惯性负载,它们会影响机器结构的反作用力。产生的振荡会影响组件的质量和机器的运行强度。基于伺服螺杆压力机的线性弹性模型和实验模态分析的结果,研究了滑动导轨,压力机安装支架,质量分布和刚度分布的影响。这项研究的结果旨在帮助缩短调试时间并提高伺服螺杆压力机的生产率。

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