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Recoil and Vibration in an Archery Bow Equipped with a Multi-Rod Stabilizer

机译:配备多杆稳定器的射箭弓的后坐力和振动

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The aim of this research is to create a mechanical and mathematical model of a multi-rod stabilizer for the sport archery bow and to analyze its capability to damp disagreeable recoil and vibration of the bow during internal ballistic motion. The research methods are based on the Euler-Bernoulli theory of beam bending, Lagrange equations of the second kind, the Cauchy problem, and the Runge-Kutta method. A mathematical software package was used to analyze the problem. The approach to the problem of sport-bow stabilization in the vertical plane that is proposed in this paper addresses the practical needs both of applied engineering mechanics and of the sport of archery. Numerical results from computer simulation are presented in both tabular and graphical form. The common motion of the string and arrow (internal ballistic motion) is accompanied by intense vibration which is caused by disruption of the static force balance at the moment of string release.
机译:这项研究的目的是为运动射箭弓创建一个多杆稳定器的力学和数学模型,并分析其在内部弹道运动过程中阻尼弓的令人讨厌的后坐力和振动的能力。研究方法基于梁弯曲的Euler-Bernoulli理论,第二类拉格朗日方程,柯西问题和Runge-Kutta方法。使用数学软件包来分析问题。本文提出的在垂直平面上运动弓稳定的方法解决了应用工程力学和射箭运动的实际需求。计算机仿真的数值结果以表格和图形形式显示。弦和箭的共同运动(内部弹道运动)伴随着剧烈的振动,这是由于弦释放时静力平衡的破坏引起的。

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