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竹壳编织技术
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作者 徐如意 晋戈 《企业科技与发展》 1995年第4期14-14,共1页
竹壳,又名笋壳叶。即各种竹笋长成竹而脱下的壳。长期以来,竹壳都是腐烂而废弃于林中。近年来湖南、贵州等地开发竹壳资源,变废为宝,取得了很好的经济效益和社会效益。如用竹壳可编织地毯、门垫、提袋、坐垫、门帘、拖鞋、礼品盒、挂毯... 竹壳,又名笋壳叶。即各种竹笋长成竹而脱下的壳。长期以来,竹壳都是腐烂而废弃于林中。近年来湖南、贵州等地开发竹壳资源,变废为宝,取得了很好的经济效益和社会效益。如用竹壳可编织地毯、门垫、提袋、坐垫、门帘、拖鞋、礼品盒、挂毯、茶具垫、小玩具、沙发垫。扫把等种类繁多,花样齐全的产品,经久耐用,造型美观大方,弹性强,重量轻,颜色高雅,不褪色,且具强烈的民族特色,在国内外市场上成了畅销不衰的精品。1 竹壳丝的加工 压丝:将竹壳洗去泥土等脏物晒干。放在清水池中浸泡,等竹壳全部浸透后沥干。按大小整理后.一束一束握住竹壳的一端,放在固定好的齿耙上压成细丝。 干燥:把压好的竹壳丝进行干燥到手摸无湿润感,再松散地铺放于屋内,把装有硫磺的火盆放到屋门口处,关闭窗子和门点燃硫磺,熏3~4个小时,让竹壳增色,防虫蛀及氧化变色,再继续进行干燥。最后筛除细粉,打包入库。 展开更多
关键词 编织技术 编织地毯 编织架 民族特色 氧化变色 壳资源 几何造型 清水池 造型美观 优美图
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Analysis of mechanical performance of braided esophageal stent structure and its wires
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作者 倪晓宇 王果 +1 位作者 龙志红 潘长网 《Journal of Southeast University(English Edition)》 EI CAS 2012年第4期457-463,共7页
This paper aims to find the relationship between the structural parameters and the radial stiffness of the braided stent and to understand the stress distribution law of the wires. According to the equation of the spa... This paper aims to find the relationship between the structural parameters and the radial stiffness of the braided stent and to understand the stress distribution law of the wires. According to the equation of the space spiral curve, a three-dimensional parametrical geometrical model is constructed. The finite element model is built by using the beam-beam contact elements and 3D beam elements. The constituent nitinol wires are assumed to be linear elastic material. The finite element analysis figures out that the radial stiffness of the stent and the stress distribution of the wires are influenced by all the structural parameters. The helix pitch of the wires is the most important factor. Under the condition of the same load and other structural parameters remaining unchanged, when the number of wires is 24, the stress of the wire crosssection is at the minimum. A comparison between the vitro experimental results and the analytical results is conducted, and the data is consistent, which proves that the current finite element model can be used to appropriately predict the mechanical performance of the braided esophageal stents. 展开更多
关键词 braided esophageal stent finite element mechanical performance radial stiffness WIRE
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