波音游戏-波音娱乐城赌球打不开

World’s strongest magnesium alloy developed Potential application as biodegradable medical implants

 

magnesium alloy
All the research team members are from CityU (from left: Dr Sun Ligang, Dr Wu Ge, Professor Lu Jian and Dr Chan A research team at CityU has achieved a ground-breaking advancement in materials research by successfully developing the first-ever supra-nano magnesium alloy

The new advanced material is 10 times stronger than conventional crystalline magnesium alloy and has super-deformation capacity two times higher than that of magnesium-based metallic glass. The magnesium-alloy system consists of nanocrystalline cores embeddedin amorphous glassy shells. The strength of the resulting dual-phase material is a near-ideal 3.3 gigapascals (Gpa) – making this the strongest magnesium – alloy thin film yet developed. 

Led by Professor Lu Jian, CityU Vice-President (Research and Technology) and Chair Professor of Mechanical Engineering, the team has been working hard on developing structural and functional materials with high strength and high ductility to overcome the limitations of existing materials. In the past five years, the team has successfully developed a dual phase alloy film structure smaller than 10nm, and named it as supra-nano-dual-phase glass-crystal (SNDP-GC). This is a new family of alloy structures – a world first.Ka-cheung).
magnesium alloy
Mechanical behaviour of the magnesium-based SNDP-GC at room temperature.

Professor Lu said that this new alloy has plenty of potential applications, including biodegradable implants. “The magnesium (Mg) alloys are newly developed biodegradable materials. The Mg-based SNDP-GC deposited Mg alloy could be used as a new prototype for biodegradable implants with excellent wear resistance. Patients would not have to undergo further surgery to remove the parts.” 

Furthermore, it could be used as a coating material for artificial joints for knees and hips, which can improve wear and corrosion resistance and reduce the risk of allergic reactions to metallic joints. 

The low-density property of magnesium alloy has also made it a desirable lightweight material for consumer electronics, such as smart phones and laptops, as well as aerospace and automotive products. However, scientists have been working hard over the years to improve its strength and wear resistance. CityU’s newly invented alloy can be a good substitute, as it can sustain pressure of more than 300 kilogrammes force per square millimetre and has super-high wear-resistance. 

The innovation has been published in top academic journal Nature.

聯絡資料

Back to top
988百家乐官网娱乐| 大发888移动版| 磨丁黄金城赌场| 澳门百家乐玩法心得技巧| 赌百家乐官网的体会| 综合百家乐博彩论坛| 百家乐三路法| 澳门百家乐走势图| 百家乐官网规则澳门| 成都百家乐牌具| 将军百家乐官网的玩法技巧和规则 | 百家乐官网怎么发牌| tt娱乐城开户| 历史百家乐路单图| 作弊百家乐官网赌具价格| 宝胜| 威尼斯人娱乐场钓鱼网站| 威尼斯人娱乐城极好| 大发888国际赌场娱乐网规则| 游戏房百家乐赌博图片| 百家乐赌博故事| 百家乐高手论坛| 新澳博百家乐官网的玩法技巧和规则 | 百家乐巴厘岛平台| 百家乐官网投注平台信誉排行| 大发888怎么赢钱| 大发888有哪些| 顶尖百家乐的玩法技巧和规则| 百家乐视频游戏网站| 自贡百家乐官网赌场娱乐网规则| 七乐娱乐城| 百家乐官网投注五揽式| 百家乐官网电器维修| 新葡京百家乐官网的玩法技巧和规则 | gt百家乐平台假吗| 大发888问题缺少组件| 新皇冠| 百家乐官网翻天粤语版qvod| 百家乐官网是真人发牌吗| 百家乐真人游戏网上投注| 网上百家乐危险|