维普中文期刊产品整合服务
19篇 您的检索式:作者名="Wang Cunshan"
    题名 作者 年代 出处 被引量
1Influences of laser powers on microstructure and properties of the coatings on the AZ91HP magnesium alloy显示文摘Al-Si alloy coatings were prepared on AZ91HP magnesium alloy by broad-beam laser cladding; the influences of the powers on the microstructure and properties of the coatings were discussed. It was found that the microstructure of the coatings at the powers of 3 and 3.5 kW was characterized by Mg2Si dendrites, and needle-like Mg2Al3 (hcp) dispersing in the Mg17Al12 matrix, whereas the coating at the power of 2.5 kW was composed of the petal-like Mg2Al3 (fcc) as well as the needle-like Mg2Al3 (hcp). The coating at the power of 4 kW appeared as α-Mg solid solution and Mg2Si, Mg17Al12, as well as Mg2Al3 (hcp). The coatings with the powers of 3 and 3.5 kW exhibited higher microhardness and better wear resistance because of more Mg2Si and Mg17Al12. However, the coating at the power of 2.5 kW displayed better corrosion resistance.Yali GAO Dangsheng XIONG Cunshan WANG Yongzhe CHEN 2009Acta Metallurgica Sinica(English Letters)2009,22,3:2
2Broad-beam laser cladding of Al Si alloy coating on AZ91HP magnesium alloy显示文摘Gao Yali Wang Cunshan 2006Surface & Coatings Technology2006,201,:1
3Broad-beam laser cladding of Al-Cu alloy coating on AZ91HP magnesium alloy 显示文摘Gao Yali Wang Cunshan 2007Applied Surface Science2007,253,:1
4The resistance to wear and corrosion of laser-cladding Al2O3 ceramic coating on Mg ahoy 显示文摘Gao Yali Wang Cunshan Yao Man 2007Applied Surface Science2007,253,1215:1
5Broadbeam laser cladding of Al- Si alloy coating on AZ91HP magnesium alloy显示文摘Yali Gao Cunshan Wang Qi Lin Hongbin Liu Man Yao 2006Surface and Coatings Technology2006,201,6:1
6Broad-beam laser cladding of Al–Cu alloy coating on AZ91HP magnesium alloy显示文摘Yali Gao Cunshan Wang Hongjie Pang Hongbin Liu Man Yao 2007Applied Surface Science2007,,11:1
7The resistance towear and corrosion of laser-cladding Al2O3 ceramic coating onMg alloy显示文摘Gao Yali Wang Cunshan Yao Man 2007Applied Surface Science2007,253,:1
8Microstructure and properties of laser clad Zr-based alloy coatings on Ti substrates显示文摘Yanfang Wang Gang Li Cunshan Wang Yuanliang Xia Bysakh Sandip Chuang Dong 2003Surface & Coatings Technology2003,,3:1
9The resistanceto wear and corrosion of laser-cladding Al2 Os ceramiccoating on Mg alloy 显示文摘Gao Yali Wang Cunshan Yao Man 2007Applied Surface Science2007,253,1215:1
10Composition design and laser cladding of Ni-Zr-AI alloy coating on the magnesium surface 显示文摘Wang Cunshan Chen Yongzhe 2009Applied Surface Science2009,256,5:1
11Surface and coating technology 显示文摘Gao Yali Wang Cunshan Lin Qi 2006201 ( 6 ): 2701-27062006,201,6:1
12Broad-beam laser cladding of Al–Si alloy coating on AZ91HP magnesium alloy显示文摘Yali Gao Cunshan Wang Qi Lin Hongbin Liu Man Yao 2006Surface & Coatings Technology2006,,6:1
13Broad-beam laser cladding of AI-Si alloy coating on AZ91HPmagaesium alloy显示文摘Yali Gao Cunshan Wang Qi Lin 2006Surface and Coatings Technology2006,201,6:1
14The resistance to wear and corrosion of laser cladding Al2O3 ceramic coating on Mg alloy显示文摘GAO YALI WANG CUNSHAN YAO MAN 2007Applied Surface Science2007,,253:1
15Composition design and laser cladding of Ni-Zr-Al alloy coating on the magnesium surface显示文摘Wang Cunshan Chen Yongzhe Li Ting Applied Surface Science0,,:1
16Microstructure and properties of laser clad Zr-based alloy coatings on Ti显示文摘Yanfang Wang Gang Li Cunshan Wang 2004Surface and Coatings Technology2004,176,3:1
17Broad-beam laser cladding of Al2Cu alloy coating on AZ91HP magnesium alloy 显示文摘Gao Yali Wang Cunshan Man Yao 2007Applied Surface Science2007,253,:1
18Mechanical, forming and biological properties of Ti-Fe-Zr-Y alloys prepared by 3D printing显示文摘Biomedical Ti-Fe-Zr-Y alloys were prepared by 3D printing on pure titanium substrate. The influences of Zr on mechanical, forming, and biological properties of the alloys were investigated in detail. The results showed that with increasing the Zr addition, the surface roughness, friction coefficient and worn volume decrease at first and then increase, the lowest values obtained at 5.86Zr addition. The ultimate compression stress and specific strength gradually decrease. The studied alloys have no cytotoxicity. They can promote the early adhesion and proliferation of cells. The eutectic alloy with 5.86 at.% Zr addition has the best ability of apatite deposition, it exhibits a better comprehensive performance among the studied alloys, which is superior to the Ti70.5Fe29.5 and Ti-6Al-4V alloys.Liying Han Cunshan Wang Zhengwei Li 2019Journal of Materials Science & Technology2019,35,7:0
19Fractional-order Sliding Mode Control of Hybrid Drive Wind Turbine for Improving Low-voltage Ride-through Capacity显示文摘A hybrid drive wind turbine equipped with a speed regulating differential mechanism can generate electricity at the grid frequency by an electrically excited synchronous generator without requiring fully or partially rated converters. This mechanism has extensively been studied in recent years. To enhance the transient operation performance and low-voltage ridethrough capacity of the proposed hybrid drive wind turbine, we aim to synthesize an advanced control scheme for the flexible regulation of synchronous generator excitation based on fractional-order sliding mode theory. Moreover, an extended state observer is constructed to cooperate with the designed controller and jointly compensate for parametric uncertainties and external disturbances. A dedicated simulation model of a 1.5 MW hybrid drive wind turbine is established and verified through an experimental platform. The results show satisfactory model performance with the maximum and average speed errors of 1.67% and 1.05%, respectively. Moreover, comparative case studies are carried out considering parametric uncertainties and different wind conditions and grid faults, by which the superiority of the proposed controller for improving system ongrid operation performance is verified.Ziwei Wang Wenliang Yin Lin Liu Yue Wang Cunshan Zhang Xiaoming Rui 2023Journal of Modern Power Systems and Clean Energy2023,11,5:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费