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Study on Mechanical and Thermal Performance of Building Energy-saving Wall with Insulation Materials

机译:绝缘材料建筑节能墙体机械和热性能研究

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Sodium alginate and natural fiber were used as modifiers to prepare sodium alginate natural fiber type biological composites. The mechanical properties were characterized by universal testing machine, and the thermal properties were analyzed by conductivity, The effects of wood fiber and straw fiber content on the comprehensive properties of biological composite materials were evaluated by relevant instruments, and the feasibility of biological composite materials as building energy-saving wall insulation materials was evaluated. The results show that the flexural strength, compressive strength and elastic modulus of the composites increase with the increase of wood fiber content. When the wood fiber content is 100%, the mechanical properties of the sample are the best, the flexural strength is 0.573 MPa, and the compressive strength is 1.410 MPa. The results showed that wood fiber and sodium alginate binder were closely combined and had good wettability. The thermal conductivity of biological composite is 0.078-0.089w / (m · K), which means it has good thermal insula tion performance and can be used as thermal insulation material for building energy-saving wall. The results show that the properties of the composite can be improved by adding a higher proportion of wood fiber and a certain amount of glyoxal crosslinking agent.
机译:使用藻酸钠和天然纤维作为改性剂,制备海藻酸钠天然纤维型生物复合材料。通过通用试验机表征机械性能,通过电导率分析热性质,通过相关仪器评估木纤维和秸秆纤维含量对生物复合材料综合性能的影响,以及生物复合材料的可行性评估建筑节能壁保温材料。结果表明,复合材料的弯曲强度,抗压强度和弹性模量随木纤维含量的增加而增加。当木纤维含量为100%时,样品的机械性能最好,弯曲强度为0.573MPa,抗压强度为1.410MPa。结果表明,木纤维和海藻酸钠粘合剂紧密合并并具有良好的润湿性。生物复合材料的导热率为0.078-0.089w /(m·k),这意味着它具有良好的热肠球性能,可用作用于建筑节能墙的隔热材料。结果表明,通过添加更高比例的木纤维和一定量的乙二醛交联剂,可以改善复合材料的性质。

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