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Online since: October 2011
Authors: Tie Lin Shi, Ming Jin Yang, Xi Wen Li
Stream Function of Cohesive Mixing in the Tank of a Planetary Mixer Mingjin Yang1,2,a, Xiwen Li2,b and Tielin Shi2,c 1College of Engineering and Technology, Southwest University, Chongqing, China, 400715 2Department of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan, China, 430074 aymingjin2000@126.com, bxiwenli@vip.sina.com, ctlshi@mail.hust.edu.cn Keywords: Stream function, Cohesive mixing, Mixer, Planetary motion Abstract.
For a material point P with initial position, it occupies position after a period of time, then maps to , namely, , and .
Acknowledgements The study was supported by Natural Science Foundation Project of CQ CSTC 2009BB1297, Chunhui Project of Ministry of education of China Z2009-1-63012, and Fundamental Research Funds for the Central Universities of China HUST2010MS090, XDJK2009B028/C004.
Shi: Applied Mechanics and Materials, Vol. 37-38, pp. 858-861
Finn: Journal of Engineering Mathematics, Vol. 41(2001) No.1, pp. 75-79.
Online since: September 2013
Authors: Ferri M.H.Aliabadi, P.H. Wen, X.J. Huang
Huang1,b and Ferri Aliabadi2,c 1 School of Engineering and Material Sciences, Queen Mary, University of London, UK 2Department of Aeronautics, Imperial College, London, UK ap.h.wen@qmul.ac.uk, bxuejiao.huang@qmul.ac.uk,cm.h.aliabadi@imperial.ac.uk Keywords: Nonlocal elasticity, Eringen’s model, point collocation method, radial basis function Abstract.
Nowadays, it is believed that the physical nature of materials is discrete if atoms are regarded to be the basic constituents.
[5] Wen PH, Aliabadi MH, Analytical formulation of meshless local integral equation method, APPLIED MATHEMATICAL MODELLING, 2013, Vol:37, Pages:2115-2126 [6] Wen PH, Aliabadi MH, Analysis of functionally graded plates by meshless method: A purely analytical formulation, ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2012, Vol:36, Pages:639-650 [7 Li LY, Wen PH, Aliabadi MH, Meshfree modeling and homogenization of 3D orthogonal woven composites, COMPOSITES SCIENCE AND TECHNOLOGY, 2011, Vol:71, Pages:1777-1788, [8] Wen PH, Aliabadi MH, Elastic Moduli of Woven Fabric Composite by Meshless Local Petrov-Galerkin (MLPG) Method, CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES, 2010, Vol:61, Pages:133-154 [9] Wen PH, Aliabadi MH, Evaluation of mixed-mode stress intensity factors by the mesh-free Galerkin method: static and dynamic, JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN, 2009, Vol:44, Pages:273-286
Online since: May 2013
Authors: Xue Cheng Zhang, Li Juan Yu, Chang Ju Xu
Finite-element Analysis of 10kN Deadweight Force Standard Machine’ Reverse frame Yu Lijuan1,a , Xu Changju2,b , Zhang Xuecheng3,c 1Mechanical science and engineering College, Jilin University,Jilin Changchun ,China 2Mechanical science and engineering College, Jilin University,Jilin Changchun ,China 3Mechanical science and engineering College, Jilin University,Jilin Changchun ,China atallyu@163.com, bexcj19518@163.com, czxche@163.com, Keywords: Buckling, Stability analysis, Reverse frame, Deadweight Force Standard Machine Abstract: In the test enginery, using reverse frame put the pulling force into the pressure is the most commonly structure method.
Model material parameters: elastic modulus of Upper and lower horizontal beams and transitional connection is , elastic modulus of left and right rods is .Poisson's ratio of all components is ,the density is .
Journal Of Da Lian Railway Instute.2006.3 [5] Meng Guangwei, Mechanics of Materials, Machinery Industry Press,2004.
Online since: June 2014
Authors: Jun Feng Zou, He Li, Gui Cheng Wang
The material of specimen is 45 steel, the density of 45 steel is 7824, its thermal parameters can be lookup in “ thermal parameters of alloy steel”[7].
Acknowledgment This research was supported by the National Natural Science Foundation of P.R.China (No.51075192), National key projects of P.R.China(2013ZX04009031)and A Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions.
Thermal simulating of grinding harden processing zone[N].Journal of Basic Science and Engineering,2006,14 (3):411一417 [3] Zhang Lei.
Wiley & Sons,1990 [7] Tan Zhen, Guo Guangwen, alloy thermal [M], Beijing: Metallurgical Industry Press, 1994. 12 [8] Hua Dingan, Ren Gupta h, grinding principle of [M], Beijing: Publishing House of electronics industry, 2011.1 [9] T Nguyen, L.C Zhang ,Prediction of the Hardened Layer in Traverse Cylindrical Grinding-hardening[J], Materials Science Forum Vols. 697-698 (2012) pp 13-18
Online since: August 2016
Authors: Jing Wang, Han Bing Liu, Hu Zhu Zhang
As the soil exists widely and has a certain degree of mechanical strength, it was used widely as building material, foundation and ambient medium in the engineering construction[1].
Materials and Methods Test Soil.
Acknowledgment The study was financially supported by the National Natural Science Foundation Project of P.R.
China (No. 51308256) and the Transportation Science and Technology Planning Project of Jilin Province in P.R.
Lu, Problems on the research of shear strength of clayey soils, China Civil Engineering Journal, 32(1999) 3-9
Online since: August 2013
Authors: Hai Yan Cao, Xue Mei Duan, Hua Xiang Wang
Image color from red to blue indicates the material permittivity increasing, the red for the maximum permittivity, and blue for the minimum permittivity.
Acknowledgements This work was financially supported by the Science & Technology Research & Development Projects in Hebei Province (12212001) and Natural Science Foundation of China (61102096).
Zhu: Journal of Tianjin University, Vol. 36 (2003) No.3, p. 307 (In Chinese) [3] L.F.
Qi: Journal of Beijing Institute of Machinery Industry, Vol. 21 (2006) No.2, p. 28 (In Chinese) [6] Y.
Hua: The 6th International Conference on Measurement and Control of Granular Materials, (Tokyo, Japan, 2003), Vol. 1, p.309
Online since: February 2012
Authors: Lei Li, Qiang Li, Yu Qi Chen, Guo Jie Huang
Study on the Microstructures and Properties of the Lead-free Easy-cutting BiAl-brass Li Lei1,a , Chen Yuqi2,b, Li Qiang3,c and Huang Guojie4,d 1School of Materials Science and Engineering, Henan Poytechnic University, Jiaozuo, 454000, China 2State Key Laboratory for Fabrication and Processing of Nonferrous Metals, Beijing General Research Institute for Nonferrous Metals, Beijing 100088, China aleili8@gmail.com, bchyuqipy@163.com,cliqiang@hpu.edu.cn,dhuangguojie@grinm.com Keywords: lead-free brass, easy-cutting, hot-working property, machinability Abstract.
Acknowledgements The authors are grateful for support from Key Research Project of Henan, Science and Technology Department of China (No. 092102210368) and Natural Science Research Grant of Henan Education Department of China (No. 2008A460009) and Funds of Introduction of Talents of Henan Polytechnic University (No.
Ryan, F.B.Taylor: Journal of the American Water Works Association Vol.75 (1983), p.92
Yoshikawa: Journal of the Japan Research Institute for Advanced Copper-Base Material and Technologies Vol. 41, (2002) p.97
Online since: August 2013
Authors: Zhi Wu Yan, Ling Mao, Bao Li Liu, Wei Luo
Introduction Tourism resource is the material basis and prerequisite of tourism industry whose survival and development rely on tourism resources, and geological landscape is a special kind of natural tourism resources.
After applied to tourism resources investigation, remote sensing technology can not only save manpower, material resources and financial resources, improve the speed and quality of investigation, but also can strengthen macro grasp of regional natural resources and understanding of its formation.
The number of researchers with background of computer science, information science, tourism management, mathematics is increasing besides the researchers with geological background.
Laura: Environmental Management Vol. 5 (2004), p. 748 [3] Tim Bahaire and Martin Elliott-White: Journal of Sustainable Tourism Vol. 2 (1992), p. 159 [4] P.W.
(In Chinese) [11] Yibin Zhang and Jiahui Qu: Remote Sensing Technology and Application, Vol.1 (1997), p.76 (In Chinese) [12] Baohua Huang, Fusheng Guo and Yongbiao Jiang: Journal of Mountain Science Vol.4 (2010), p.201 (In Chinese) [13] Yongbiao Jiang, Fusheng Guo and Zhonghua Hu: A Study on the Features of Danxia Landform and Its Landscape Types in Xinjiang Basin Vol.4 (2010), p.43 (In Chinese)
Online since: February 2012
Authors: Zhan Feng Zhou
Reverse logistics is a process of planning, executing and controlling for the flow and storage from user point to original output point of raw material, work in process, finished goods and the related information in order to recycling resource and disposing waste in the effective and reasonable cost [1].
References [1] Yan Xu: Research on Reverse Logistics Management [D], Beijing: University of International Business &Economics, 2004:7 (In Chinese) [2] Dongyao Wang: Research on the Third Party Reverse Logistics Provider selection Issues [D], Wuhan: Wuhan University of Science and Technology, 2009:14 (In Chinese) [3] Jing Chen: Study on the Third Party Reverse Logistics and Its Provider Selection [D], Dalian: Dalian Maritime University, 2007:42 (In Chinese) [4] Zhixiang Chen, Shihua Ma and Rongqiu Chen: submitted to Journal of System Engineering and Electronics (2001) [5] Hui Yue, Xueyan Zhong and Huanzhen Ye: submitted to Journal of Soft Science (2005) (In Chinese) [6] Tuanying He and Tianshan Ma: submitted to Journal of Wuhan University of Technology (2009) (In Chinese)
Online since: May 2012
Authors: Yong Sheng Liu, Gu Sheng Tong
Coal rock belongs to elastic brittle material and they are suit for the coulomb strength criteria.
JIANGXI COAL SCIENCE & TECHNOLOGY, vol.2(2006) :83-86 (in Chinese) [2] Guang zhe Deng, Shibing Wang, Bingxiang Huang.RESEARCH ON BEHAVIOCHARACTER OF CRACK DEVELOPMENT INDUCED BY HYDRAULIC FRACTURING IN COAL-ROCKMASS.
Chinese Journal of Rock Mechanics and Engineering vol.20(2006):3489-3493 (in Chinese) [3] Bingxiang Huang.
Journal of china coal society,Vol.35(2010) :1765-1766 (in Chinese) [4] Xuebi n Wang,Wei Wang, Yi-shan Pan.
JOURNAL OF CHINA COAL SOCIETY,Vol. 35 (2010) : 723-728 (in Chinese)