Degradation of Polyester Composite Reinforced E-Glass Fiber with Calcium Carbonate Filler in Seawater

Mohamad Nasir, J. Fajrin
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Abstract

This research is concerned with composite materials that use CaCO3 as a reinforcing material in construction, especially subsea panels and buildings. Composite materials are solids composed of two or more materials that have their own properties and improve their properties when combined. In this experiment, glass fiber and CaCO3 were mixed in a certain composition and tested to evaluate the water absorption and mechanical strength of the composite. The results show that increasing temperature can increase water absorption, while the addition of CaCO3 has a significant effect on water absorption due to its hydrophilic properties. Water absorption in polyester composites is influenced by aging temperature and Calcium Carbonate powder filler, affecting tensile and bending strength. As aging temperature increases, mechanical strength decreases, composite having the highest tensile strength. Bending tests show debonding and splitting fault patterns due to glass fiber arrangement. With a deeper understanding of how CaCO3 affects composite materials under various conditions, this research can provide valuable insights for developing more durable composite materials suitable for construction applications, especially in corrosive environments such as subsea buildings.In this research, it proposes theoretically model to controlling on half-wave voltage of modulator, in which it uses studying the factor of effective of refractive index difference, this using analysis distribution of refractive index for LN material before and after voltage is applied (i.e., with and without applied voltage), and uses analysis a factor of propagation constant difference ??, before and after voltage is applied where it depends on the wavelength, these leads to it controls on the half-wave voltage V? using a reduction half-wave voltage up to 1V. Also, it achieves an excellent solution for solve the fundamental optical mode with effective factor is neff. Finally, the modulator with an effect effective refractive index difference have lower applied voltage up to 10V, and with an effective propagation constant difference the operating voltage is from value of 20V.
含碳酸钙填料的聚酯复合材料增强电子玻璃纤维在海水中的降解作用
本研究涉及在建筑中使用 CaCO3 作为增强材料的复合材料,特别是海底板和建筑物。复合材料是由两种或两种以上的材料组成的固体,这些材料具有各自的特性,当它们结合在一起时,其特性会得到改善。在本实验中,玻璃纤维和 CaCO3 按一定成分混合,并对复合材料的吸水性和机械强度进行了测试。结果表明,温度升高可增加吸水性,而 CaCO3 因其亲水性对吸水性有显著影响。聚酯复合材料的吸水性受老化温度和碳酸钙粉末填料的影响,从而影响拉伸和弯曲强度。随着老化温度的升高,机械强度降低,复合材料的拉伸强度最高。弯曲测试表明,玻璃纤维排列会导致脱粘和劈裂。随着对 CaCO3 在各种条件下如何影响复合材料有了更深入的了解,这项研究可以为开发更耐用的复合材料提供有价值的见解,这些材料适合建筑应用,尤其是在腐蚀性环境中,如海底建筑、和无施加电压时)的折射率分布,并分析施加电压前后的传播常数差系数(取决于波长),从而控制半波电压 V?,降低半波电压至 1V。此外,它还能很好地解决有效系数为 neff 的基本光学模式问题。最后,具有有效折射率差效应的调制器的应用电压较低,最高可达 10V,而具有有效传播常数差效应的调制器的工作电压为 20V。
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