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Online since: December 2014
Authors: S.H. Wang, Xiu Jian Tang, Zhi Yuan Wu, Kang Zhang, Xin Li Tian
Study on the Cutting Process for Remanufacture Deposited Materials Wu Zhi-yuan1, a, Zhang Kang1,b, Tang Xiu-Jian1,c , Tian Xin-li1,d,S.H.Wang2,e, 1National Key Laboratory for Equipment Remanufacturing, Academy of Armored Force Engineering, Beijing 100072 2Department of Scientific Research, Academy of Armored Force Engineering, China, 100072 aWu_zhiyuan20021@163.com, bzhangzuoyuan2005@126.com, ctangxiujian@sina.com Keywords: Deposited Materials, Impactive Cutting, Remanufacturing Abstract.
The systematic experiments for cutting remanufacture deposited materials have been finished.
All the tool materials can finish the cutting process.
Modern Manufacturing Engineering.
Chinese Surfacing Engineering.
Online since: February 2013
Authors: Xue Feng Chen, Jian Min Qin, Lu Lu Chi
DEM Simulation of Micro-Macro Mechanical Behaviour of Granular Materials Chi Lu-lu 1, a, Qin Jian-min2,b* and Chen Xue-feng1,c 1 Research and Development Center of the Civil Engineering Technology, Dalian University, Dalian, Liaoning 116622, China 2 Department of Engineering Mechanics, State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian 116024, P.
Introduction Granular materials are encountered widely in nature and engineering.
Chinese Journal of Geotechnical Engineering, 2000, 22, 701-704
Journal of Civil Engineering, 2008, 36, 87-96
Chinese Journal of Underground Space and Engineering, 2008, 4, 499-503
Online since: June 2011
Authors: Bao Zhong Qu, Di Wang, Dong Man Yu, Zhi Hua Gao
The data acquisition, process and reconstruction for a reverse engineering study Dong-man Yua, Bao-zhong Qub, Zhi-hua Gaoc and Di Wangd Engineering Research Center for Flexible Manufacture, Henan Polytechnic Institute, Nanyang 473009, China ayudongman@126.com, bqubz_1969@126.com, czhhgao@163.com, dsilentfarewell@gmail.com Key words: Data acquisition, Data process, Reverse engineering Abstract.
Reverse engineering in CAD model reconstruction of customized artificial joint, Medical Engineering & Physics. 27 (2005) 189–193 [2] Yu Zhang.
Research into the engineering application of reverse engineering technology, Journal of Materials Processing Technology. 139 (2003) 472–475 [3] Jin Tao, Kuang Jiyong.
Application of reverse engineering technology in constructing prototype surface, Applied Mechanics and Materials. 34-35(2010)1154-1158 [5] Lai Xinmin, Lin Zhongqin, Huang Tian.
Computer & Industrial Engineering. 40 (2001) 215-227
Online since: March 2008
Authors: Brian J. Sealy, Wilfried Lerch, Russell Gwilliam, Silke Paul, Ardechir Pakfar, Nicholas E.B. Cowern, Andrew J. Smith, Nicholas S. Bennett, Roger P. Webb, Benjamin Colombeau
Vacancy Engineering - an Ultra-low Thermal Budget Method for High-Concentration 'Diffusionless' Implantation Doping Nicholas E.B.
Source/drain (S/D) junctions formed by advanced vacancy engineering implants (VEI) are activated far above solubility.
In the vacancy engineering approach, boron is implanted into crystalline silicon that has been prepared with a high concentration of excess vacancies by a co-implant process.
The key to 'advanced vacancy engineering implants' (VEI) [4] lies in two features.
Figure 11: Approximate process windows from continuum simulations (SUSPRE) for V engineering using C, F, Si or Ge in the nominal 45 nm SOI MOS technology given in Fig. 10.
Online since: April 2011
Authors: Can Qun He, Bo Ji
The key of green design is the "3R" principle, namely Reduce, Recycle and Reuse.
It means that environmental factors and engineering properties together serve as the goal of material selection.
Green material is the key and prerequisite of green product design.
Green product design asks for that materials selected can naturally degrade.
Selecting recycled material of the waste can reduce environmental pollution and save raw materials.
Online since: May 2012
Authors: Wei Sun, Wei Ling Zhou, Chao Ming Pang, Ping Zhang, Hong Gen Qin, Ke Shu Wan
Application of X-CT technology in the microstructure analysis of cement-based materials Ping Zhang 1,a, Honggen Qin 1,b, Keshu Wan 1,c, Chaoming Pang 1,d, Wei Sun 1,e, Weiling Zhou 2, f 1 School of Materials Science and Engineering, Southeast University, Jiangsu Key Laboratory of Civil Engineering Material, Nanjing, 211189, PR China 2 State Key Laboratory of High Performance Civil Engineering Materials, Jiangsu Academy of Builing Science Co., LTD., Nanjing 210008, China azhang-ping@seu.edu.cn, b qinhonggen@seu.edu.cn, ckeshuwan@seu.edu.cn, dpangchao@seu.edu.cn, esunwei@seu.edu.cn, fzhouweiling@cnjsjk.cn Key words: X-CT technology; Pore structure; Gray value; Cement-based materials Abstract: Based on the small density changes of each phases, the defects and morphology of cement-based materials can be observed with the X-ray computed tomography (X-CT).
The application of X-CT technology in the cement-based materials was reviewed in this paper.
Introduction Concrete is non homogeneous materials with complex micro and macro structure.
Conclusions X-CT technology plays an important role in the microstructure analysis of cement-based materials.
Acknowledgements This work was financially supported by National Basic Research Program (973) of China (No. 2009CB623200), Open Foundation program of State Key Laboratory of High Performance Civil Engineering Materials ((2010CEM010)) and The New Teacher Induction Program - Ministry of Education (200802861029).
Online since: April 2014
Authors: Ping Bo Qu
In quantitative terms, equipment layouts mainly consider transportation cost minimization of the material flow, the work piece flow, and pedestrian between devices or units per unit of time period.
For cellular manufacturing systems (Cellular Manufacturing System, CMS) [2], optimization objectives vary, devices are classified to form manufacturing unit, rational distribution unit makes logistics costs between the unit and the unit a minimum , cost of all materials transport a minimum.
(3)Random Key conversion Random Key’s general approach is to use a continuous sequence The specified number for each behavior, usually represented by random coding, Then select one transformation rules are real number sequence to integer sequences.
And Random Key notation supports standard crossover.
Chinese Mechanical Engineering, 2007, 18 (21):2576 -2579
Online since: May 2021
Authors: Qian He Chen, Chun Lian Song, Cai Xia Li
With the further development of modern engineering material technology, polymer materials, together with information technology and biotechnology, promote the progress and development of society.
However, most of these polymer materials are brittle materials, which often have defects in the preparation process.
Digital Image Correlation Method and Basic Concept of Fracture Behavior of Modified Polymer Materials Basic Principle and Key Technology of Digital Image Correlation Method. ①The principle of 3D digital image correlation method.
Engineering Fracture Mechanics. 2019,5(212):210-220
Materials & Design.2020,11(196):109187
Online since: December 2010
Authors: Jin Sheng Liang, Jun Ping Meng, Guang Chuan Liang, Yan Ding, Li Juan Wang
University Education of Intellectual Property for Innovation Talents of Science and Technology in Functional Material Industry Jinsheng Lianga*, Junping Mengb, Yan Dingc, Lijuan Wangd and Guangchuan Liange Institute of Power Source and Ecomaterials Science,Hebei University of Technology, Tianjin 300130,China aLiang_jinsheng@sina.com, bmengjunping@hebut.edu.cn, cdingyan@hebut.edu.cn, dwljhh@yahoo.com.cn, eliangguangchuan@hebut.edu.cn Keywords: new material industry, functional material, science and technology innovation, talent training, intellectual property education, environment functional materials Abstract.
Combined the training practice on the innovation talents of science and technology in the industries of the new energy and environment functional materials, the education mode of the intellectual property for the compound innovation talents of science and technology in the functional material industry was studied. 1.
Combined the industry technology of the energy and environment materials and the great strategic demand for compound innovative talents, the popularization and the education mode of the intellectual property for the compound innovation talents of science and technology in the functional material industry were researched, according to the basic requirement for the inorganic nonmetal material engineering specialty. 2.
Innovating of the Teaching Mode for the Specialized Courses and Raising the Capability of Students for Science and Technology Innovation [3] Relying on the Institute of Power Source and Ecomaterials Science, and the National Key Subject, Hebei University of Technology built up the department of inorganic non-metallic materials.
Ding, et al.: Advanced Materials Research,(2010), v 96, p. 289
Online since: February 2012
Authors: Chun Hui Lu
‘Theory and Practice Together’ in American Engineering Education Chunhui Lu School of Mechanical-Electronic Engineering 200 Jinling Beilu Road, Hohai University, Changzhou, China chunhuill@yeah.net Key Words: Engineering education, Theory and practice together Abstract.
Engineering students must do some projects which near facts.
So students buy and cut materials by themselves to put a product on display.
American engineering education is ‘Theory and Practice Together’.
Engineering students training in America is advanced.
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