The manufacture technologies of two kinds of bamboo laminated panel and their physical-mechanical properties have been studied in the paper. The species of bamboo are the D. yunnanicus Hsueh et D. Z. Li in Yunnan Prov...The manufacture technologies of two kinds of bamboo laminated panel and their physical-mechanical properties have been studied in the paper. The species of bamboo are the D. yunnanicus Hsueh et D. Z. Li in Yunnan Province and P. heterocycla var. pubescens Ohwi in Zhejiang Province. The data are offered in order to provide proof to produce architectural panel by bamboo materials. The results show as follows: Laminated bamboo panel can be produced by the reconstruction technology, and the mechanical prope...展开更多
针对目前玻璃钢叶片存在的问题,采用分级竹青板作为风电叶片复合材料的增强相,并利用INSTRON 5582G rad ing能力学试验机进行检测。结果表明:由一二级竹青板制成的分级竹青层积材复合材料,其物理力学性能均达到或超过目前国外风电叶片...针对目前玻璃钢叶片存在的问题,采用分级竹青板作为风电叶片复合材料的增强相,并利用INSTRON 5582G rad ing能力学试验机进行检测。结果表明:由一二级竹青板制成的分级竹青层积材复合材料,其物理力学性能均达到或超过目前国外风电叶片在用的常规木材/环氧层积材的特性,完全能够替代目前大量使用的玻璃钢叶片材料。展开更多
文摘The manufacture technologies of two kinds of bamboo laminated panel and their physical-mechanical properties have been studied in the paper. The species of bamboo are the D. yunnanicus Hsueh et D. Z. Li in Yunnan Province and P. heterocycla var. pubescens Ohwi in Zhejiang Province. The data are offered in order to provide proof to produce architectural panel by bamboo materials. The results show as follows: Laminated bamboo panel can be produced by the reconstruction technology, and the mechanical prope...
文摘针对目前玻璃钢叶片存在的问题,采用分级竹青板作为风电叶片复合材料的增强相,并利用INSTRON 5582G rad ing能力学试验机进行检测。结果表明:由一二级竹青板制成的分级竹青层积材复合材料,其物理力学性能均达到或超过目前国外风电叶片在用的常规木材/环氧层积材的特性,完全能够替代目前大量使用的玻璃钢叶片材料。