Rectangular Plate Rebound Vibration Suppression using Double Collision Phenomena

Hiroki Matsumoto, Kazuhiro Kawakita
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Abstract

The rectangular plate is a model of the internal mirror of an SLR camera. The internal mirror model is a rectangular metal plate that rotates on its own axis around one side of a rectangle. When the mirror hits to the stopper, a rebound vibration occurs. The double collision method is introduced to reduce the rebound vibration. The timing of the double collision varies the amount of rebound vibration. 3-D Particle Image Velocimetry (3-D PIV) and 3-D motion analysis are used to investigate the rebound phenomena. 3-D PIV measures the rebound vibration velocity of the mirror model surface at the moment of collision.  3-D motion analysis is used to measures the rebound vibration displacement at the moment of collision. When the rebound vibration is small, the low-velocity region on the surface of the mirror model moves in the longitudinal direction. This indicates that the mirror model is undergoing wave deformation after the moment of collision. When the timing of the second collision is optimized, the deformation of the mirror model at the moment of collision is increased and the rebound amount is suppressed.
利用双重碰撞现象抑制矩形板回弹振动
矩形板是单反相机的内反光镜模型。内反光镜模型是一个矩形金属板,可绕矩形一侧的轴线旋转。当镜子撞击到挡板时,会产生反弹振动。为减少反弹振动,引入了双重碰撞法。双重碰撞的时间会改变反弹振动的大小。三维粒子图像测速仪(3-D PIV)和三维运动分析用于研究反弹现象。3-D PIV 可测量碰撞瞬间镜面模型表面的反弹振动速度。 三维运动分析用于测量碰撞瞬间的反弹振动位移。当反弹振动较小时,镜面模型表面的低速区域会向纵向移动。这表明镜面模型在碰撞瞬间发生了波形变形。优化第二次碰撞的时间后,碰撞瞬间镜面模型的变形增大,反弹量减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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