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Ultrasonic horn design for ultrasonic machining technologies

机译:用于超声加工技术的超声喇叭设计

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Many of industrial applications and production technologies are based on the application of ultrasound. In many cases, the phenomenon of ultrasound is also applied in technological processes of the machining of materials. The main element of equipments that use the effects of ultrasound for machining technology is the ultrasonic horn – so called sonotrode. The performance of ultrasonic equipment, respectively ultrasonic machining technologies depends on properly designed of sonotrode shape. The dynamical properties of different geometrical shapes of ultrasonic horns are presented in this paper. Dependence of fundamental modal properties (natural frequencies, mode shapes) of various sonotrode shapes for various geometrical parameters is analyzed. Modal analyses of the models are determined by the numerical simulation using finite element method (FEM) design procedures. The mutual comparisons of the comparable parameters of the various sonotrode shapes are presented.
机译:许多工业应用和生产技术都基于超声波的应用。在许多情况下,超声现象也被应用于材料加工的工艺过程中。利用超声波效果进行加工技术的设备的主要元素是超声波喇叭-所谓的超声波发生器。超声设备或超声加工技术的性能取决于超声焊极形状的正确设计。本文介绍了超声喇叭不同几何形状的动力学特性。分析了各种超声焊极形状对各种几何参数的基本模态特性(固有频率,模态形状)的依赖性。使用有限元方法(FEM)设计程​​序通过数值模拟确定模型的模态分析。提出了各种超声焊极形状的可比较参数的相互比较。

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