波音游戏平台下载-波音博彩广告网_百家乐园选_sz全讯网新2xb112 (中国)·官方网站

科學(xué)研究

打造高水平科技創(chuàng)新平臺(tái)和一流科研團(tuán)隊(duì)!

MENU

學(xué)術(shù)活動(dòng)

材料學(xué)院8月31日學(xué)術(shù)報(bào)告預(yù)告

編輯: 材料學(xué)院 劉艷 時(shí)間:2015-08-25
報(bào)告題目:Projectile Penetration of High-strength Fabric
報(bào)告人:Prof. Victor P.W. Shim (National University of Singapore)
報(bào)告時(shí)間:2015年8月31日(周一)下午3:00
報(bào)告地點(diǎn):5號(hào)樓502-1會(huì)議室
報(bào)告人簡(jiǎn)介:
Victor Shim is a Professor of Mechanical Engineering at the National University of Singapore (NUS). His current research interests include dynamic material behaviour, cellular materials, penetration of high-strength fabrics, and projectile impact on protective structures. He established the Impact Mechanics Laboratory at NUS and is an Associate Editor of the International Journal of Impact Engineering. He went to the University of Auckland in 1973 to pursue his Bachelor’s degree, supported by a scholarship from the New Zealand government. Subsequently, he returned to Singapore to fulfil three years of military service as an artillery officer. Thereafter, he was appointed an academic tutor at NUS, and concurrently undertook research for his Master’s degree. He then proceeded to Cambridge University in 1982 on an NUS scholarship and did his PhD in Impact Mechanics, returning in 1986 to a faculty position at NUS. He has been a Visiting Scientist at the Tokyo Institute of Technology and a Visiting Scholar at UC San Diego. He has received numerous awards for Teaching Excellence and Innovative Teaching, has held several university-level management appointments, and is currently a Vice-Dean of the Engineering Faculty.
報(bào)告摘要:
High-strength fabrics possess favourable characteristics, such as flexibility, and excellent specific strength, because of their light weight and high tensile strength of constituent fibres. These give them properties suitable for applications in protection against impact – e.g. bullet-resistant body armour and barriers for turbine engine fragments. Moreover, such fabrics can also be combined with metals to form lightweight, high-performance laminates used in aircraft structures, or reinforcement to enhance the flexural/tensile strength of brittle construction materials like concrete. Some recent work on the ballistic response of high-strength fabrics will be presented. The dynamic properties of yarns that constitute a fabric are examined, since they determine the impact response of fabrics; this information is also required for computational simulation of such material. The influence of strain rate and the weaving process on yarn properties are also studied. How high-strength fabrics respond to projectile impact is investigated, and high-speed photography is employed to observe deformation and failure, and to identify the governing mechanisms. In addition, the influence of impact angle on the ballistic performance of fabric is characterized. Computational modelling of projectile penetration of fabric is undertaken, and models with various degrees of complexity are introduced, together with their ability to estimate the ballistic resistance of high-strength fabric. 
贡觉县| 网络赌场| 大发888娱乐场 34| 百家乐出老千视频| 百家乐官网澳门百家乐官网澳门赌场| 最好的百家乐好评平台都有哪些| 百家乐官网庄闲多少| 百家乐官网书籍| 百家乐娱乐下载| LV百家乐官网客户端LV| 235棋牌游戏| 澳门百家乐打法百家乐破解方法| 噢门百家乐官网玩的技巧| 威尼斯人娱乐代理| 百家乐官网秘籍下注法| 百家乐官网打印机分析| 缅甸黄金赌场| 真人百家乐套红利| 金龍百家乐官网的玩法技巧和规则 | 百家乐官网公式软件| 百家乐官网打法分析| 大发888娱乐场菲律宾| 真人版百家乐试玩| 家百家乐官网破解软件| 新世纪百家乐的玩法技巧和规则| 百家乐官网园| 达日县| 大发888游戏平台888| 马尼拉百家乐官网的玩法技巧和规则 | 利澳百家乐官网的玩法技巧和规则 | 百家乐官网水晶筹码| 佳豪娱乐| 大发888娱乐场客户端下载| 菲律宾百家乐娱乐场| 沙龙百家乐官网破解| 蓝盾百家乐娱乐场开户注册| 百家乐官网娱乐平台网| 金海岸百家乐官网娱乐城| 皇冠现金网骗人| 大发888宫网| 百家乐平点|