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The Effect of Silica Nanoparticle Filler and Mg(OH)_2 Particle Addition on the Compressive Strength of Rice Husk Composite

机译:二氧化硅纳米粒子填料和Mg(OH)_2颗粒对稻壳复合材料抗压强度的影响

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Simple mixing and hot pressing methods were used to make nanocomposite of rice husk using PVAc as adhesive, silica nanoparticle as filler and Mg(0H)2 particle . The compressive strength of the composite was examined. The optimum mass ratio composition of rice husk and PVAc was 13 : 2. A compressive strength of 63.95 MPa was obtained for the samples which were pressed at 75 MPa pressure, at 100°C temperature and then held for 15 minutes in the hot pressing machine. The addition of silica nanoparticle increased the compressive strength to 74.65 MPa hence increasing the value by approximately 11%. The addition of Mg(OH)_2 particles then decreased the compressive strength to 61.23 MPa therefore decreasing the value about 13%. The compressive strength gained for the rice-husk/PVAc composite with nanosilica filler is stronger than the composite of Kumagai S making it feasible to be used in many applications, especially in furnishings.
机译:使用PVAC作为粘合剂,二氧化硅纳米粒子作为填料和Mg(0H)2颗粒,使用简单的混合和热压方法来制备稻壳的纳米复合材料。检查复合材料的抗压强度。稻壳和PVAC的最佳质量比成分为13:2。获得63.95MPa的抗压强度,用于在75MPa压力下压制在100℃温度下,然后在热压机中保持15分钟。加入二氧化硅纳米粒子的抗压强度至74.65MPa,因此将值增加约11%。然后加入mg(OH)_2颗粒,然后将抗压强度降低至61.23MPa,因此降低了约13%的值。用纳米菌填料的水稻壳/ PVAC复合材料获得的抗压强度比Kumagai S的复合材料更强,使得可用于许多应用中的可行性,特别是在家具中。

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