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Development and characterization of thermal insulation materials from renewable resources

机译:利用可再生资源开发和表征隔热材料

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The present study has investigated the scope for valuation of agro-resources by-products as aggregates and as binding material to produce rigid fully bio-based composite panels. Two types of aggregates: hemp shiv and corn cob residues (obtained after alkali treatment on the corn cob), and six types of green binders are investigated. Specimens are produced to verify the gluing effect, to characterize mechanical, thermal and hygric properties of developed composites and to identify the best aggregate-binder mixture. They show interesting thermal conductivity ranging from 67 to 148 mW/(m.K) at dry state, excellent hygric properties (MBV 2 g/(m(2)).%RH)) and high enough mechanical properties to be self bearing. These results suggest that developed composites can be used as building materials but not for the same types of use. In fact, some composites would be more suitable for thermal insulating products and others would be better suited for indoor facing panels. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究调查了农业资源副产品作为骨料和生产刚性完全基于生物的复合材料板的粘合材料的评估范围。研究了两种聚集体:大麻纤维和玉米芯残留物(在玉米芯上经过碱处理后获得),以及六种绿色粘合剂。制作标本来验证胶合效果,表征已开发复合材料的机械,热和亲水性能,并确定最佳的骨料-粘合剂混合物。它们在干燥状态下表现出令人感兴趣的导热系数,范围从67到148 mW /(m.K),出色的水力学性能(MBV> 2 g /(m(2))。%RH),以及足够高的机械性能以自承。这些结果表明,已开发的复合材料可用作建筑材料,但不能用于相同类型的用途。实际上,某些复合材料将更适合于隔热产品,而其他复合材料将更适合于室内饰面板。 (C)2019 Elsevier Ltd.保留所有权利。

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