Advanced flame retardant materials and fabrication methods
Advanced flame retardant materials and fabrication methods
批准号:
447475-2013
负责人:
Zhitomirsky, Igor
金额:
$5.06万
依托单位:
依托单位国家:
加拿大
项目类别:
Strategic Projects - Group
财政年份:
2014
资助国家:
加拿大
项目状态:
已结题
起止时间:
2014-01-01 至 2015-12-31
中文摘要
加拿大对各种商业产品的无毒和高效阻燃材料(FRM)的需求很大,而且还在不断增加。许多加拿大公司参与了FRM和各种产品的制造,其中包含FRM。新的联邦法规禁止有毒的FRM,它在过去被广泛使用,必须被新材料取代。该项目将侧重于新的无毒和高效的森林资源管理的可持续发展和商业产品的制造技术,包括森林资源管理。该项目是在麦克马斯特大学和高级陶瓷公司(ACC)积极合作的基础上进行的。新的方法将基于开发具有改进的FR性能的生物兼容性FRM。另一项重要的创新与记忆型FRM的发展有关。与其他类型的FRM相比,这种材料的FR性能和结构可以恢复。记忆型FRM具有许多其他优点,如生物兼容性、改善的热稳定性和高FR效率。合作工作将集中在开发和测试纳米FRM和使用新分散剂改善性能的新FRM组合物。使用对不同材料具有很强界面粘附性的新型分散剂是制备纳米粒子和利用先进的胶体技术制备复合材料的关键因素。另一项创新将涉及使用FR纳米纤维和纳米管来制造具有改进的FR和机械性能的复合材料。基于电合成的新的电化学策略将被用于制备含有FRM的复合膜。该项目的好处将包括向行政协调会和其他参与可持续生产含有森林资源管理产品的公司转让新技术。建议的工作满足了加拿大工业在FRM材料科学与工程、陶瓷与聚合物技术、复合材料、胶体技术、电化学、纳米技术等领域对HQP的需求。
英文摘要
Canada has large and increasing demand in non-toxic and efficient flame retardant materials (FRM) for a large variety of commercial products. Many Canadian companies are involved in manufacturing of FRM and various products, containing FRM. New Federal regulations banned toxic FRM, which were widely used in the past and must be replaced by new materials. The project will be focused on the sustainable development of new non-toxic and efficient FRM and manufacturing technologies for commercial products, containing FRM. The project is based on active collaboration of McMaster university and Advanced Ceramics Corporation (ACC). New approach will be based on the development of biocompatible FRM with improved FR properties. Another important innovation is related to the development of Memory type FRM. In contrast to other types of FRM, the FR properties and structure of such materials can be restored. Memory type FRM offer many other advantages, such as biocompatibility, improved thermal stability and high FR efficiency. The collaborative work will be focused on the development and testing of nano-FRM and new FRM compositions with improved properties using new dispersing agents. The use of new dispersing agents with strong interfacial adhesion to different materials is a key factor for the fabrication of nanoparticles and fabrication of composites by advanced colloidal techniques.Ceramic-FRM composites and polymer-FRM composites will be obtained using new colloidal techniques. Another innovation will be related to the use of FR nanofibers and nanotubes for the fabrication of composites with improved FR and mechanical properties. New electrochemical strategies, based on electrosynthesis, will be used for the fabrication of composite films, containing FRM. The benefits of this project will include the transfer of new technology to ACC and other companies involved in the sustainable manufacturing of FRM containing products. The proposed work meets the need of Canadian industry in HQP in materials science and engineering of FRM, ceramic and polymer technology, composites, colloidal technology, electrochemistry, nanotechnology and other fields.
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资助金额:$1.82万
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Advanced flame retardant materials and fabrication methods
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批准号:447475-2013
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项目类别:Strategic Projects - Group
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资助金额:$5.06万
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依托单位:
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财政年份:2014
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负责人:Zhitomirsky, Igor
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依托单位:
Advanced flame retardant materials and fabrication methods
-
批准号:447475-2013
-
项目类别:Strategic Projects - Group
-
资助金额:$5.06万
-
财政年份:2013
-
负责人:Zhitomirsky, Igor
-
依托单位:
海外基金