Yanan He, Li He, Wei Li, Yongqiang Li, Weihua Liu, liang Liu
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引用次数: 0
Abstract
This article introduces a round-wheel compound dynamic model to simulate the force process after the release of the compound bow. This model is developed in the static model established by M.Tiermas, a more refined model was obtained through the kinetic energy theorem, which considers the influence of the mass distribution of bow limb and bowstring on the dynamic process, rather than simplifying the parameters of bow limb and bowstring to concentrated mass. This article analyzes the changes in force and energy of each component of the compound bow over time and drawing distance after the release of the bowstring. The analysis reveals that the string is the primary factor affecting the efficiency of the compound bow and is also the most vulnerable component, as the peak force it experiences during rebound is much greater than the force when in a static state. This model provides a theoretical basis for the design of the round-wheel compound bow structure.
期刊介绍:
Meccanica focuses on the methodological framework shared by mechanical scientists when addressing theoretical or applied problems. Original papers address various aspects of mechanical and mathematical modeling, of solution, as well as of analysis of system behavior. The journal explores fundamental and applications issues in established areas of mechanics research as well as in emerging fields; contemporary research on general mechanics, solid and structural mechanics, fluid mechanics, and mechanics of machines; interdisciplinary fields between mechanics and other mathematical and engineering sciences; interaction of mechanics with dynamical systems, advanced materials, control and computation; electromechanics; biomechanics.
Articles include full length papers; topical overviews; brief notes; discussions and comments on published papers; book reviews; and an international calendar of conferences.
Meccanica, the official journal of the Italian Association of Theoretical and Applied Mechanics, was established in 1966.