Search Options

Sort by:

Sort search results by

Publication Type:

Publication Type filter

Open access:

Publication Date:

Periodicals:

Periodicals filter

Search results

Online since: July 2006
Authors: Z.W. Zhu, Di Zhu
Acknowledgements The work described in this paper was supported by the Natural Science Foundation of Jiangsu Province, China (No.BK2004005).
Chan: Journal of Materials Processing Technology, Vol.63 (1997), pp.844
Online since: November 2012
Authors: Ren Ping Xu, Shang You Zhang, Tian Hui Zhang, Li Chun Gu, Lin Guo, Ya Qing Tan
Research on Sprayer Innovative Design Based on Ergonomics and Rapid Prototyping Shangyou ZHANG 1, a, Tianhui ZHANG 1 , Lichun GU 1 , Lin GUO 1 , Yaqing TAN2 and Renping XU 3 1 Faculty of Engineering and Technology, Yunnan Agriculture University, Kunming 650201, China 2School of Business Administration, South China University of Technology, Guangzhou 510640, China 3 Faculty of Mechanical and Electrical, Engineering Kunming University of Science and Technology, Kunming 650093, China aynauzhy@yahoo.com.cn Keywords: Rapid Prototyping; Sprayer; Innovative Design; Ergonomics Abstract.
When no mistakes are guaranteed in STL files, the parameters for RP was set, considering the principle to save materials as much as possible, ensuring machining accuracy and convenience of post-processing.
Chinese Journal of Mechanical Engineering,2004(4):1-9
Online since: September 2013
Authors: Xiao Lin Chen, Jian Zhu, Peng Mao
And besides signing contracts with Qixia Construction, consulting units, suppliers of materials and equipments, units in charge of construction, water and electricity suppliers also reported to the affordable housing authorities for archival filing in order to ensure the project run smoothly.
Acknowledgements This work was financially supported by the General Project of Humanities and Social Sciences Research, Ministry of Education of China (Grant No.11YJCZH124).
[5] Zhang Wei, Zhu Hongliang: Systme changes of government investment project management in our country, China Civil Engineering Journal, 2007, 40, (5), pp.79-84, In Chinese
Online since: February 2012
Authors: Yong Mei Qian, Jia Jia Ren, Xin Sheng Yin
Introduction The Push-extend Multi-under-reamed Pile technology is a new type of reliable and practical technology, from the body structure and formation mechanism of the Push-extend Multi-under- reamed Pile can be understand, this type of pile by means of adding the Multi-under-reamed of bearing loads to improve pressure or pull force of the pile , with the high bearing capacity of single pile, the economic volume of material, convenient operation of construction, short construction period and widely applicable areas of many aspects, such as advantages.
In analysis the different calculation models will be established, a large number of simulation, formed the stress graphics under the different condition, as the basis material of theoretical analysis, and through the analysis and the arrangement, under the out loads ,qualitatively determine the failure principle of soil around the pile and under the plate of the Push-extend Multi-under-reamed Pile.
Acknowledgements This work was financially supported by National Natural Science Foundation of China (50878096) References [1] R.ZH.
Qian, CH.Y.Zou, X.SH.Yin: Journal of the Harbin Industrial University.
Online since: July 2013
Authors: Zhong Yun Fan, Jian Zhong Cui, Yu Bo Zuo, Q.F. Zhu, L. Lei
Cui1c 1Key Laboratory of Electromagnetic Processing of Materials, Ministry of Education, Northeastern University, Shenyang, Liaoning, 110819, China 2BCAST, Brunel University, Uxbridge, Middlesex, UB8 3PH, UK azuoyubo@epm.neu.edu.cn, bzhongyun.fan@brunel.ac.uk, cjzcui@epm.neu.edu.cn Keywords: Aluminium silicon alloy, Modification, Intensive melt shearing, Microstructure Abstract.
Acknowledgements The financial supports from EPSRC of UK, the National Natural Science Foundation of China (51104043) and the National Basic Research Program of China (2012CB619506) are gratefully acknowledged.
Zhang, Dongbei Daxue Xuebao/Journal of Northeastern University 28 (2007) 1406-1409
Online since: September 2014
Authors: Han Chen Gong, Jing Wei Yang, Jian Feng Liu, Yu Chuan Bian
Variable Structure Control of Suspension Rotor System in the Mement Gyro Bian Yuchuan1, a, Gong Hanchen2,b Yang Jingwei2,c and Liu Jianfeng2,b 1 Beijing , China, Beijing Institute of Spacecraft System 2 Beijing , China, Institute of Beijing Computer Science and Technology abyuchuan99@126.com, bliujianfeng97711@163.com, cliujianfeng97711@outlook.com Keywords: The Moment Gyro.
Simulation and Realization We input compensating control coil parameter as follows in the experiment: lead material is , diameter is 0.3, two coil windings are 50 (no source) and 100 (having source) separately, live current , inductance , resistance , resistance reduce to superconductive temperature along with environment temperature, while there is no attenuation in the current of coil.
Empty round superconductive rotor is jointing by two hemisphere shells (diameter is, weight is , material is).
[2] Liu Jianfeng, Yuan Gannan, Zhao Lin, Liu Fanming,“A new measurement technique for gyro rotor’s surface and its influence on Gyro’s performance,” J.journal of Chinese inertial technology.2005,13(2),pp75-79
Online since: December 2013
Authors: Run Qiu Huang, Jian Feng Wang
For an uncrushable material, dEs/dW is a measure of the shear stiffness, which keeps decreasing until the peak stress ratio is reached, where dEs/dW is equal to zero.
When the material is crushable, the strain energy build-up is disrupted by one more energy dissipation mechanism — particle breakage, which is independent from the friction dissipation.
SKLGP2012K019 from the State Key Laboratory of Geohazard Prevention and Geo-environment Protection of Chengdu University of Technology and National Science Foundation of China Grant No. 51109182 are acknowledged.
International Journal for Numerical and Analytical Methods for Geomechanics, (2011), Online first (DOI: 10.1002/nag)
Online since: October 2012
Authors: Yan Lu, Rui Jin, Chuan Ming Zhai, Qing Hua Han
After the analysis, the key factors include the masonry material strength, reinforcement of crest slab and concrete strength, which affect the vertical bearing capacity.
Based on the acquired the material strength, the number of steel bars, effective section area, member size and so on, the resistance values of the bearing members are also calculated.
Zhou: Journal of Shanghai Jiaotong University Vol. 45, NO.5 (2011), p. 639-642(in Chinese)
[8] Ministry of Construction of People’s Republic of China: Technical Standard for Site Testing of Engineering (GB/T50315-2000) (China Environmental Science Press, Beijing 2011) (in Chinese)
Online since: December 2012
Authors: Jian Xia Su, Li Min Shi, Run Ping Han, Xing He Qian
Acknowledgements This work was financially supported by 2011ZK-07of Clothing Materials Research Development and of Evaluation of Beijing Key Laboratory and Beijing Education Commission, Textile testing technology based on machine vision research project of BIFT university-level academic innovation team 2011T-06 College Talents school plan - the backbone of the talents of young and middle-aged project (PHR201008283).
Signal Processing in MATLAB for fabric pilling images Preliminary Qingdao University, School of Computer Science thesis,(2007) [2]H.K.Lu,Zh.L.Zhong.
Based on image analysis technology fabric pilling grading method.(2007) [4] Das, A, Chakroborty, P.Study of Fabric Hairiness using Image Processing Technique.Research Journal of Textile & Apparel, (2008), p.562 [5] F.Hu. wool fabric pilling research and analysis .
Online since: July 2014
Authors: Li Xin Liu, Jing Wen Su, Fan Wu, Hai Tao Li, Ling Fei Zhang, A.J. Deeks, Shu Heng Li
Acknowledgement The material presented in this paper is based upon work supported the Doctoral Program Foundation of the Ministry of Education under Grant No. 20123204120012, Project of the Housing and Urban-Rural Development Bureau of Jiang-su Province (No. 
JS2012ZD34), National University students practical and innovation training project (No. 201210298025), A Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions, the College Natural Science Foundation of Jiangsu Province under Grant No. 11KJB560003, Open Fund Project from Key Laboratory of Concrete and Pre-stressed Concrete Structure of Ministry of Education (Southeast University) and Students innovation laboratory project of Nanjing Forestry University (No. nlsycx201310).
Any opinions, findings, and conclusions or recommendations expressed in this material are those of the writer(s) and do not necessarily reflect the views of the foundations.
Journal of Zhengzhou University, 25(2).
Showing 93661 to 93670 of 97111 items