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Online since: November 2015
Authors: Jin Yang, Fa Zhou Wang, Yun Peng Liu
Raw materials and experiments 2.1 Raw materials (1) Cement: Portland cement (PC) was used with the physical and mechanical properties listed in Table 1.
Construction and Building Materials, 2011, 25(1), pp.1-13
Construction and Building Materials, 2012, 31, pp.226-230
ACI Materials Journal, 2015, 112, pp.463-470
ACI Materials Journal, 2009, 106, pp.123-127
Online since: October 2015
Authors: Boris Ya. Mokritskii, Jury I. Bublikov, Gaik V. Oganyan, Dmitriy A. Pustovalov, Anatoliy Stepanovich Vereschaka, Alexey Anatolevich Vereschaka
Sladkov.: Applied Mechanics and Materials Vol. 325-326 (2013) pp 1454-1459 [8] Vereshchaka A.S., Vereschaka A.A., Kirillov A.K. : Key Engineering Materials Vol.496. (2011). p.67-74
Kulikov: Key Engineering Materials Vol. 581 (2014), p. 68 [11] A.A.
Oganyan: Applied Mechanics and Materials Vol. 684 (2014), p. 264 [13] A.S.
Anikeev: Advanced Materials Research Vol. 871 (2014) p. 164 [17] A.A.
Ruziev: Applied Mechanics and Materials Vol. 457-458 (2014) p. 120 [19] Vereschaka Alexey: Key Engineering Materials Vol. 581 (2014) p. 62-67 [20] B.Y.
Online since: February 2011
Authors: Wei Ming Gao, Min Liu, Ya Qin Wang, Li Mei Liu
A brief analysis on computer laboratory management in high schools Weiming Gao1,a, Min Liu2,b, Yaqin Wang 3,cand Limei Liu4,d 1Computer Management Centre, Hebei Normal University of Science & Technology, Qinhuangdao, Hebei Province, China 23 Department of Computer Science, Hebei Normal University of Science & Technology, Qinhuangdao, Hebei Province, China 4 Archives, Hebei Normal University of Science & Technology, Qinhuangdao, Hebei Province, China a45141200@qq.com, b35838443@qq.com, c45155048@qq.com,dhanmei315@sohu.com Keywords:computer laboratory, planning, scientific management, maintain Abstract.
As for the establishment of equipment installation, testing, operating and documents maintainance, all information should be complete, and the drive should be kept, as well as the related materials, which can be used as references malfunction when the equipments go out of order.
Jia, in:The Practice and Discussion on the Computer Laboratory Management in High Schools , edited by Laboratory Science, May (2008) [3] J.
Song, in:The Strengtheing of Computer Laboratory Management , edited by Journal of North China Institute of Astronautic Engineering, October (2008) [4] Y.
Yang,in:Brief Discussion on the Public Computer Laboratory Management and Maintainance , edited by Journal of Zhangzhou Teachers College(2005)
Online since: December 2013
Authors: Gang Wei, Qin Wei Su
Acknowledgments This work was financially supported by The Chinese National Natural Science Foundation (51178428), Zhejiang Provincial Natural Science Foundation of China under Grant No.
Beijing:Science Press, 2002.
Journal of Zhejiang Transportation Science Technology, 2005, (2):41–43.
Chinese Journal of Underground Space and Engineering, 2008, 4(1):181–184.
Beijing: Science Press, 2004.
Online since: September 2014
Authors: Jian Jun Wang, Sheng Nan Zhou
An Integrated Approach to Correlated Multi-response Optimization ZHOU Shengnan1, a, WANG Jianjun1,b 1Department of Management Science and Engineering, Nanjing University of Science and Technology,China, 210094 azhousn1130@163.com , bjjwang@njust.edu.cn Keywords: Correlated multi-response; Grey relational analysis; Genetic algorithm; Pattern search; Principal component analysis Abstract.
Acknowledgements This work is supported by the National Natural Science Foundation of China (No.71371099), the China Postdoctoral Science Foundation (No. 2013M531366), the Research Fund for the Doctoral Program of Higher Education (No.20123219120032).
International Journal of Manufacturing Technology and Management, Vol.27(2013), p.218 [5] Elshaikh M, Fadzil M F M, Kamel N, et al.
J.: Asian Journal on Quality, Vol.12(2011), p.67 [11] Sibalija, T.
T.: J.Materials Processing Technology,Vol. 209(2009), p.3808
Online since: December 2014
Authors: Zi Guang He, Hong Zhou Lin, Zhao Duan
Stability Analysis of Loess Landslides induced by Irrgation 1,aZhao Duan,2,bZiguang He, 3,cHongzhou Lin 1College of Geology and Environment, Xi’an University of Science and Technology, Xi’an 710054, Shaanxi, China 2College of Geology Engineering and Geomatics, Chang′an University, Xi′an 710054, Shaanxi, China 3College of Geology Engineering and Geomatics, Chang′an University, Xi′an 710054, Shaanxi, China a,b,clandsliders@163.com Keywords: Irrigation,loess landslide,mechanism,stability.
In this paper, the study area to obtain engineering geological environment location, meteorology and hydrology, topography, lithology, geological structure, hydrogeological conditions, seismic activity and other aspects of human engineering activities; but also on the study area loess landslide material composition, physical properties of soil mechanics environmental conditions, hydrological properties, mechanical properties, microstructure and other aspects collapsible research.
Zhangcunwan loess landslides are composed of loose porous material loose, fractured, is a kind of meta-stable soil structure.
After the soil with water, collapsible and easy to soften, which is the material basis with a slumping natural tendency.
Funds: the key project of National Natural Science Fund (41130753); Xi'an University of Science And Technology start up gold (2014QDJ029) Reference [1] Jinyan Li, Dai Fu early studies [J] loess landslides induced mechanism irrigation Shang Cheng Geotechnical Journal, 2007,29 (10): 1493-1499 [2] Xu collar, Fu Jingyang early wear characteristics of loess landslides south-parametric statistical analysis [J] hydrogeological L:..
Online since: January 2014
Authors: Ya Lan Luo, Chun Hua Zhao
Design and analysis of experimental scheme The test material was Medicago sativa L. cv.
Test serial number Parameter factors Test evaluation index Colligation score Cutting speed ratio K Press roller peripheral V/(m/s) Reel speed ratio λ Working stubble /mm Recutting rate /% Flattening ratio /% Crushed grass lass rate /% 1 2 4 2.5 49 0.6 49 2.13 46.19 2 2 4.2 2.66 48.5 0.62 47.5 2.15 45.37 3 2 4.5 3 48 0.7 42 2.6 43.9 4 2.5 4 2.66 42 0.8 48.5 2.3 44.55 5 2.5 4.2 3 40 0.75 45 2.65 43.2 6 2.5 4.5 2.5 43 0.72 44.2 2.1 42.02 7 3 4 3 39 1.05 44 2.7 42.85 8 3 4.2 2.5 41 0.9 46 2 42.2 9 3 4.5 2.66 40 1 43 2.32 41.46 k1 45.15 44.53 43.37 k2 43.26 43.59 43.79 k3 42.17 42.46 43.32 Range 2.98 2.07 0.47 Optimal decision K3 V3 λ3 Using above experimental materials and methods for optimal combination test.
Design and experiment of new conditioning mechanism for mower conditioner[J].Journal of jiangsu university(natural science edition),2013,34(3):287-292
Journal- of-Research-Punjab-Agricultural -University.1998, 35:73-85
[6] Chinese Academy of Agricultural Mechanization Science.
Online since: November 2011
Authors: Hong Xue Xie, John Prausnitz, Xiu Ling Wu
Determination on Crystallinity of Ionic Liquids Pretreated Biomass Hongxue Xie1, 2,a, John Prausnitz1,b and Xiuling Wu2,c 1Department of Chemical and Biomolecular Engineering, University of California, Berkeley, CA 94720, USA. 2College of Material Science and Chemical Engineering, China University of Geoscience, WuHan, Wuhan, 450052, China.
I200 represents both crystalline and amorphous material while IAM represents amorphous material only.
Person : Journal of Biotechnology, Vol. 139(2009), 47
Robert: Journal of Applied Polymer Science, Vol. 8 (1964), p.1311
Friedrich: Applied Surface Science, Vol. 257 (2011), p.6220
Online since: October 2013
Authors: Ming Jun Chen, He Nan Liu, Lin Yu, Wan Qun Chen
Table 1 shows the material properties selected for the model.
Y: screw driven table X: linear motor table Z: linear motor table W: manual table C: rotary motor table Supporting frame Gantry Fig. 1 Physical picture of the machine tool Fig. 2 Finite element mode of the machine tool Table.1 Material properties of the machine tool Material ρ [kg/m3] μ E [Pa] Granite 2800 0.25 3.75×1010 Steel 7850 0.3 2.06×1011 Aluminum alloy 2700 0.3 7×1010 Finite Element Modal Analysis of the Machine Tool Modal analysis is a method of analysis, prediction, evaluation and optimization for dynamic characteristics, depending on modal parameters of vibration system.
Acknowledgments This work is supported by the Major Program of National Natural Science Foundation of China (Grant No. 50935003).
References [1] Hao Yang, Wu Yang, Daming Wang: Computing, Control and Industrial Engineering, 2011 IEEE 2nd International Conference Vol. 1 (2011), p. 223 [2] Daisuke Kono, Thomas Lorenzer, Sascha Weikert etal: Precision Engineering Vol. 34 (2010), p. 399 [3] Kang Yang and Tao Han: Journal of Jiamusi University (Natural Science) Vol. 23 (1) (2005), p. 94 [4] Yazhou Sun, Rui Wang, Kai Cheng, etal: Machinery Design & Manufacture (1) (2005), p. 94 [5] Hyung Wook Park, Young Bin Park, Steven Y.
Liang: Advanced Manufacture Technology Vol. 56 (2011), p. 1 [6] Fang Kang and Jinwei Fan: Machinery Design & Manufacture (7) (2008), p. 181 [7] Yaoman Zhang, Chunshi Liu, Zhikun Xie and Yongxian Liu: Journal of Northeastern University (Natural Science) Vol. 28 (11) (2007), p. 1628 [8] Xiaopeng Li and Zhijie Zhao: Chinese Control and Decision Conference (2011), p. 3998 [9] Hesheng Zuo and Yuying Peng: Modal Analysis on Vibration Experiment (China Railway Publishing House, Beijing 1995).
Online since: March 2013
Authors: Xin Liang Wang, Qin Feng Di, Wei Gong, Yi Chong Cheng, Shuai Hua
Introduction The preparations and applications of superhydrophobic surfaces have attracted researchers much attention among science researchers in recent decades[1].
There are many unsaturated impending bonds on nanomaterial surface and the material has good hydrophobic properties.
Numerical study of wall wettabilities and topography on drag reduction effect in micro-channel flow by lattice boltzmann method, Journal of Hydrodynamics, 22(2010) 366-372
[11] Zhang RL, Di QF, Wang XL et al Lattice Boltzmann Simulation of Flow in a Micro-channel , Chinese Journal of Computational Physics, 28(2011) 225-229
The hydrophobic nanoparticles adsorption layer on core surface and its properties, Advanced Materials Research, 465(2012) 239-243