男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
US EUROPE AFRICA ASIA 中文
China / Top Stories

Light, strong alloy may alter design of aircraft

By Wang Hongyi in Shanghai (China Daily) Updated: 2017-08-07 08:15

A new kind of nano material developed by domestic researchers is expected to become the next-generation aviation material and boost the development of the country's homegrown large passenger aircraft.

The nano ceramic aluminum alloy was developed by the research team from the School of Materials Science and Engineering at Shanghai Jiao Tong University.

Light in weight, such new material has the characteristics of high rigidity, high strength, fatigue resistance, low expansion and high temperature resistance.

Instead of the traditional physical method of mixing the ceramic and aluminum alloy, researchers put the nano ceramic particles into aluminum alloy through an innovative chemical process. During the process, the size, shape, and distribution of the particles were controlled.

This helped improve the rigidity and strength of the new material. At the same time, the processing and manufacturing performance of aluminum alloy remains, said Professor Wang Haowei, who led the project.

"The nano ceramic aluminum alloy material helps break the bottleneck of large-scale application in engineering," Wang said.

The university's scientists started the basic research in the field in the early 1990s, Wang said, and they have made a lot of experiments in developing the new material over the years.

"Compared with titanium alloy and high-temperature alloy, the performance of aluminum alloy with 3D printing technology is much lower. The 3D printing components made of nano ceramic aluminum alloy can achieve the performance of forgings," Wang said.

So far, the new material has already been used in the Tiangong-1 and Tiangong-2 space labs, quantum satellites and meteorological satellites. It also has been used in key components of automotive internal-combustion engines, which not only reduces weight efficiency, but also saves energy, reduces emissions and improves safety.

Wang said researchers are stepping up their cooperation with Commercial Aircraft Corp of China to promote the use of such new materials in large aircraft.

"The advances in aviation development are closely connected to the progress of materials, and we are closely watching the development and performance of the new material," said Wu Guanghui, vice-president of COMAC, the general designer of C919, the first homegrown large passenger aircraft

Wu said the nano ceramic aluminum alloy material is still being tested, and is expected to be used in the C919 aircraft, replacing some of current components, which were imported.

A new material innovation center was established at the university last week, which aims to further boost the industrialization of the nano ceramic aluminum alloy material. Based on Wang's research team, the center was jointly established by the Huaibei government of Anhui province, Shanghai Jiao Tong University, Shanghai JuneYao Group and Anhui Xiangbang Composite Material Co.

In 2013, the Huaibei government established a midterm test and manufacturing base with an annual production capacity of more than 1,000 metric tons, and it also founded the Anhui Xiangbang Composite Material Co. The production of such material aims to meet large-scale applications in aerospace, aviation and auto industries.

wanghongyi@chinadaily.com.cn

Highlights
Hot Topics

...
主站蜘蛛池模板: 娱乐| 大邑县| 开鲁县| 定西市| 尼勒克县| 左云县| 江北区| 沈丘县| 依兰县| 武安市| 大新县| 大埔县| 西乌珠穆沁旗| 龙口市| 德昌县| 金川县| 吴江市| 新野县| 玉屏| 竹溪县| 赤水市| 工布江达县| 临海市| 罗山县| 清涧县| 荣昌县| 甘孜县| 黄石市| 青冈县| 南昌县| 墨脱县| 福泉市| 丹东市| 五大连池市| 上蔡县| 镇雄县| 招远市| 化德县| 黔南| 香格里拉县| 岑溪市| 九台市| 葫芦岛市| 宜宾县| 盐城市| 武穴市| 蛟河市| 弋阳县| 六枝特区| 三台县| 台中县| 体育| 景泰县| 梅州市| 祁东县| 西吉县| 临潭县| 开阳县| 太和县| 民勤县| 彩票| 兰西县| 蓝山县| 西吉县| 扶余县| 新龙县| 惠州市| 清水县| 同仁县| 维西| 保靖县| 宝应县| 苗栗市| 梁平县| 临澧县| 同德县| 句容市| 宣武区| 驻马店市| 泾阳县| 宁都县| 龙门县|