Effects of Bio-Particles on Mechanical and Quasi-Static Punch Shear Behaviors of Glass/Epoxy Composites

H. Kandaş, O. Ozdemir
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Abstract

In this study, the effect of acorn powder reinforcement at different percentages on the mechanical and quasi-static penetration behavior of glass fiber reinforced composites was investigated. Reinforcement materials used are woven E-glass fiber and cleaned acorn micro powders. Powders were cleansed from impurities with a sodium hydroxide solution. Cleaned powders were mixed with resin by using a mechanical mixing method. Thereafter, resin mixture was applied to glass fibers with hand lay-up method and composite plate was produced by vacuum bag method. Quasi-static penetration tests were performed at room temperature as well as mechanical tests. While 1, 10 and 20 mm/min were selected as quasi-static penetration test speed, tension, compression and three point bending tests were selected as mechanical tests. Force and energy test results of quasi-static penetration tests of composites were compared with each other. Additionally, tensile, compressive and flexural strengths of the composites were investigated.
生物颗粒对玻璃/环氧复合材料力学和准静态冲剪行为的影响
研究了不同比例橡子粉增强对玻璃纤维增强复合材料力学和准静态渗透性能的影响。增强材料采用编织e -玻璃纤维和清洁橡子微粉。粉末用氢氧化钠溶液除去杂质。用机械混合法将清洗后的粉末与树脂混合。然后,用手铺法将树脂混合物涂在玻璃纤维上,用真空袋法制备复合板材。在室温下进行了准静态侵彻试验和力学试验。准静态侵彻试验速度选择1、10和20 mm/min,力学试验选择拉伸、压缩和三点弯曲试验。对复合材料准静态侵彻试验的力和能测试结果进行了对比。此外,还研究了复合材料的拉伸、压缩和弯曲强度。
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