百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

New research sheds light on the potential for building more durable infrastructure

 

Joint research between City University of Hong Kong (CityU) and the Massachusetts Institute of Technology (MIT) has identified why adhesives holding certain materials together fracture and fail and what might be done to strengthen these bonds. The research has enormous implications for a wide range of bonded materials, including concrete composites used in Hong Kong’s infrastructure and materials in medical treatments.
 
According to the research, whenever materials are bonded, such as brick with epoxy or concrete with fibre, the strength and durability of the bonding depends on external factors such as temperature, pH levels and moisture. To improve the bond, it is essential to observe how materials disconnect when they come apart.
 
The findings of the team, which was led by Dr Denvid Lau, Assistant Professor in the Department of Architecture and Civil Engineering at CityU, were recently published in a paper, “A robust nanoscale experimental quantification of fracture energy in a bilayer material system”, in the prestigious US science journal Proceedings of the National Academy of Sciences (PNAS).
 
The research measured the debonding mechanism of organic-inorganic interfaces using scanning electron microscope (SEM) images of a layered epoxy (organic)-silica (inorganic) bonded system at the nano level. After debonding, hair-like crack structures were detected that allowed water molecules to seep in and eventually weaken the adhesion.
 
The new findings will enable engineering researchers to design more durable and reliable composites, which can be applied in all kinds of bonding mechanisms consisting of organic-inorganic materials.
 
A civil engineering scientist, Dr Lau initiated the research on bonding mechanisms in the hope of addressing durability issues such as the effect of moisture on concrete composites, which are used in the construction and structural maintenance of transportation systems, buildings and infrastructure.
 
“Deterioration or even the collapse of a building will arise if the interfaces between materials are not addressed carefully,” Dr Lau said.
 
One solution for strengthening concrete is carbon fibre, which has been gaining popularity in the US, Europe and Japan over the past ten years for strengthening worn-out concrete composites. However, carbon fibre is yet to be widely adopted in Hong Kong because of the humid environment. A possible remedy would be to use better sealants for keeping out moisture.
 
Dr Lau believes the paper was accepted by the influential PNAS journal because of the extensive potential applications of the research beyond the construction industry. Electronic chips, aircraft construction and biomedical treatments, particularly in the field of dentistry, are just a few areas that might benefit from the findings.
 
“The research findings allow a close and accurate observation of the bonding behaviour of any biomaterials attached to the human body. It will eventually lead to a longer life span of the biomedical applications,” said Dr Lau. Examples include tooth crowns, artificial teeth and silicone gel-filled breast implants.
 
Collaborating researchers on the paper included Professor Oral Büyük?ztürk and Professor Markus J. Buehler from the Department of Civil and Environmental Engineering and Research Associate Mr Kurt Broderick in the Microsystems Technology Laboratories, all of MIT.
 
 
Notes to editors:
 
Filename: _DSC7588.jpg
Caption: Dr Lau identifies debonding patterns for producing more resilient composites in building infrastructure and biomedical treatments.
 
Filename: Fig_8.jpg
Caption: Left: SEM image of the epoxy-silica interface at the crack tip. Right: Hair-like structures linking epoxy and silica.
 
 
Media enquiries: Pui Chan, Communications and Public Relations Office (Tel: 3442 6806 or 9787 1642)
 
 
To download photo -- (Remark: Copyrights belong to CityU. Use of the photo(s) for purposes other than reporting the captioned news story is restricted.)

YOU MAY BE INTERESTED

Back to top
现场百家乐官网的玩法技巧和规则| 博彩论坛网| 3U百家乐娱乐城| 二八杠小游戏| 巴青县| 百家乐官网街机| 先锋百家乐的玩法技巧和规则| 京城娱乐城| 百家乐官网赌场牌路分析| 玩百家乐官网有何技巧| 乐中百家乐官网的玩法技巧和规则| 百家乐7scs娱乐平台| 墨脱县| 百家乐有作弊的吗| 六合彩预测| 百家乐如何破解| 爱赢娱乐城资讯网| 百家乐投注规则| 客服| 什么叫百家乐的玩法技巧和规则| 百家乐官网博彩资讯论坛| 富二代百家乐的玩法技巧和规则| 大发88846| 百家乐官网手机壳| 百家乐注册| 百家乐官网7scs娱乐场| 大发888无数| 百家乐那个平台好| 百家乐官网在线怎么玩| 永康百家乐赌博| 百家乐官网破解视频| 澳门百家乐国际娱乐城| 百家乐官网关键词| 最新百家乐电脑游戏机| 百家乐官网六合彩| 赌博运气| 百家乐的战术| 澳门百家乐官网必胜看| 马山县| 大发888娱乐注册| 百家乐娱乐城优惠|