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浅谈多用途的承印材料——合成纸
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作者 张红路 《广东印刷》 1997年第2期38-39,共2页
合成纸(Synthetic Paper)俗称“撕不烂”,是以合成高分子物质为主要原料所制成的外观近似纸浆制造的普通纸,而其物性介乎普通纸与塑料薄膜之间的一种纸的替代品,合成纸的优点在于稳定性好,表面平滑,耐撕,耐油,防湿,尤其是印刷适性好,受... 合成纸(Synthetic Paper)俗称“撕不烂”,是以合成高分子物质为主要原料所制成的外观近似纸浆制造的普通纸,而其物性介乎普通纸与塑料薄膜之间的一种纸的替代品,合成纸的优点在于稳定性好,表面平滑,耐撕,耐油,防湿,尤其是印刷适性好,受到人们的青睐。目前,已在商业,包装,建材等领域应用,尽管如此,合成纸发展毕竟较晚,人们对之较为陌生,作为印刷工作者应当充分了解其性质,并对其使用范围有个大概的认识,才能充分发挥合成纸的优势,印制出更多更新颖的产品。 展开更多
关键词 印刷材料 用途承印材料 合成纸
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玻纤网布—多用途建筑材料
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作者 叶鼎铨 《玻璃纤维》 CAS 2002年第6期33-34,共2页
关键词 增强混凝土 外墙保温系统 玻纤网布 用途建筑材料
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新型泡沫/纤维隔热材料系统
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作者 徐庆斌 《国外耐火材料》 2003年第1期60-61,共2页
关键词 新型 泡沫/纤维隔热材料系统 隔热层系统 用途隔热材料
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纳米塑料 被引量:1
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作者 漆宗能 《科学技术与工程》 2002年第1期29-30,共2页
纳米塑料是定指用层状硅酸盐作为分散相,利用插层聚合、熔融插层等特殊工艺制备的聚合物/层状硅酸盐纳米复合材料.层状硅酸盐主要来源于天然蒙脱土.故又称聚合物/粘土纳米复合材料[见于学术刊物.包括美国"科学"(Science)杂志... 纳米塑料是定指用层状硅酸盐作为分散相,利用插层聚合、熔融插层等特殊工艺制备的聚合物/层状硅酸盐纳米复合材料.层状硅酸盐主要来源于天然蒙脱土.故又称聚合物/粘土纳米复合材料[见于学术刊物.包括美国"科学"(Science)杂志和英国"自然"(Nature)杂志]. 展开更多
关键词 纳米复合材料 纳米塑料 制备工艺 物理力学性能 材料用途
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中小企业贷款受托支付采用网上审批方式的构想
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作者 朱纪亮 《武汉金融》 北大核心 2017年第5期51-52,87,共3页
受托支付具有易被突破、资金流向难以掌控等问题。本文建议商业银行受托支付采用网上审批方式,其流程是:授予信贷额度,借款人提交受托支付申请,交易款项划入监管账户,借款人提交贷款用途证明材料,银行审批同意支付,款项转入收款人账户... 受托支付具有易被突破、资金流向难以掌控等问题。本文建议商业银行受托支付采用网上审批方式,其流程是:授予信贷额度,借款人提交受托支付申请,交易款项划入监管账户,借款人提交贷款用途证明材料,银行审批同意支付,款项转入收款人账户。最后,本文认为银行需要获得可靠的资金用途证明材料来规避审批风险。 展开更多
关键词 商业银行 受托支付 中小企业贷款 资金用途证明材料
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Environmental analysis of innovative sustainable composites with potential use in aviation sector -A life cycle assessment review 被引量:6
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作者 BACHMANN Jens HIDALGO Carme RICOUT Stephanie 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第9期1301-1317,共17页
The forecast of growing air transport in the upcoming decades faces the challenge of an increasing environmental impact.Aviation industry is working on promising technologies to mitigate this environmental impact.Ligh... The forecast of growing air transport in the upcoming decades faces the challenge of an increasing environmental impact.Aviation industry is working on promising technologies to mitigate this environmental impact.Lightweight design is a strong lever to lower the fuel consumption and,consequently,with it the emissions of aviation.High performance composites are a key technology to help achieve these aims thanks to their favourable combination of mechanical properties and low weight in primary structures.However,mainly synthetic materials such as petrol based carbon fibres and epoxy resins are used nowadays to produce composite in aviation.Renewable materials like bio-based fibres and resin systems offer potential environmental advantages.However,they have not found their way into aviation,yet.The reasons are reduced mechanical properties and,especially for the use of natural fibres,their flammability.Improvements of these shortcomings are under investigation.Therefore the application of bio-based and recycled materials in certain areas of the aircraft could be possible in the future.Good examples for applications are furnishings and secondary structures.The motivation for this paper is to give an overview of potential environmental properties by using such eco-materials in aviation.Life cycle assessment(LCA) is a tool to calculate environmental impacts during all life stages of a product.The main focus is laid on the bio-fibres flax and ramie,recycled carbon fibres and bio-based thermoset resin systems.Furthermore an overview of environmental aspects of existing composite materials used in aviation is given.Generally,a lack of LCA results for the substitution of synthetic materials by bio-based/recycled composite materials in aviation applications has been identified.Therefore,available information from other transport areas,such as automotive,has been summarized.More detailed LCA data for eco-composite materials and technologies to improve their properties is important to understand potential environmental effects in aviation. 展开更多
关键词 AVIATION composite natural fibre recycled carbon fibre bio-resin cabin interior secondary structure fife cycle assessment (LCA)
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