Manufacture and Vibration-Damping Effect of Composites for Archery Carbon Fiber-Reinforced Polymer Limb with Glass Fiber-Reinforced Polymer Stabilizer

Author:

Heo Won Wook1ORCID,An Seung Kook1ORCID,Yeum Jeong Hyun2,Yang Seong Baek3,Choi Sejin14ORCID

Affiliation:

1. Department of Organic Material Science and Engineering, Pusan National University, Busan 46241, Republic of Korea

2. Department of Biofibers and Biomaterials Science, Kyungpook National University, Daegu 41566, Republic of Korea

3. Research Institute for Green Energy Convergence Technology, Gyeongsang National University, Jinju 660701, Republic of Korea

4. Institute of Advanced Organic Materials, Pusan National University, Busan 46241, Republic of Korea

Abstract

Typically, archers prepare two sets of bows for competitions in case of bow breakage, but if the limbs of the bow break during a match, archers can become psychologically disadvantaged, leading to potentially fatal consequences. Archers are very sensitive to the durability and vibration of their bows. While the vibration-damping properties of Bakelite® stabilizer are excellent, its low density and somewhat lower strength and durability are disadvantages. As a solution, we used carbon fiber-reinforced plastic (CFRP) and glass fiber-reinforced plastic (GFRP) for the archery limb with stabilizer, commonly used for the limbs of the bow, to manufacture the limb. The stabilizer was reverse-engineered from the Bakelite® product and manufactured using glass fiber-reinforced plastic in the same shape as the existing product. Analyzing the vibration-damping effect and researching ways to reduce the vibration that occurs during shooting through 3D modeling and simulation, it was possible to evaluate the characteristics and the effect of reducing the limb’s vibration by manufacturing archery bows and limbs using carbon fiber- and glass fiber-reinforced composites. The objective of this study was to manufacture archery bows using CFRP and GFRP, and to assess their characteristics as well as their effectiveness at reducing limb vibration. Through testing, the limb and stabilizer that were produced were determined to not fall behind the abilities of the bows currently used by athletes, and they also exhibited a noticeable reduction in vibrations.

Funder

Pusan National University

Publisher

MDPI AG

Subject

General Materials Science

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