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Online since: October 2012
Authors: Yu Fang Chao
The ability cost control is determined by process cost control and scientificalness of control system and materials cost control.
In addition, the identification of cost factors shows that costs are mainly from construction process and materials consuming.
Related building materials Design and construction Real estate, hotel construction Consulting and design Suzhou Gold Mantis Co.
Benchmarking enterprise scope of business In fig 1, business development of Gold Mantis company is typical of vertical development, its business range is decoration engineering construction and design, technical advice and service; GuoDu construction group’s business is around decoration engineering design, taking a horizontal development, its business range is providing building materials, and decoration engineering design and construction, real estate and hotel services; Shandong JinDan’s business is only around building decoration, taking a professional area.
Its business range is curtain wall decoration construction and corresponding supporting building materials production.
Online since: March 2014
Authors: Meng Zhao
Application of Titanium Metal Materials and Bone Tissue Engineering in Exercise-induced Bone Injury Repair Meng Zhao PE College of Yan Shan University, China tyxyzhaomeng@163.com Keywords: Titanium metal materials; bone tissue engineering; exercise-induced bone injury Abstract.
Find a good biological characteristic of repair material of bone tissue engineering has been a hot research in the Department of orthopedics.
Application of titanium metal composite materials in bone tissue engineering Application of inorganic calcium phosphate coated titanium metal composite material.
And the selection of bone repair material is also the key to the treatment.
Titanium phosphate glass microspheres for bone tissue engineering.
Online since: February 2011
Authors: Liu Lan Lin, Wen Juan Wang, Jia Feng Zhang, Ming Lun Fang
Biomechanical Numerical Simulation of Bone Tissue Engineering Scaffolds Lin Liulan, Wang Wenjuan, Zhang Jiafeng, Fang Minglun Shanghai Key Laboratory of Mechanical Automation and Robotics, Shanghai University, Shanghai 200444, China linliulan@staff.shu.edu.cn Keywords: Bone tissue engineering scaffold, Stress shielding, Finite element method, Biomechanics Abstract.
Biomechanical compatibility is one of the key targets for bone tissue engineering scaffolds.
Introduction The 3D porous biological scaffold for cells is the one of the key factors in bone tissue engineering.
Materials and Methods Modeling of the Femoral Defect and Scaffolds as a Whole.
From a mechanical point, tissue engineering method researches effects of materials structure stress field on growth of cells.
Online since: August 2012
Authors: Hai Feng Zhang, Xin Jie Zhang
And key tooth coding is the necessary conditions for the realization of automated assembly, and the difficulty is the key tooth extract, in view of the above, and the paper innovatively proposes an extracting method of key tooth code on the basis of experiments.
Then we can all key tooth code of keys to arm stress caused by voltage output voltage circuit, through the calculation of the corresponding key tooth code.
Strain on the arm, paste in under the arm because of different materials sometimes might deformation is a vibration limits.
Strain on the arm, paste in under the arm because of different materials sometimes might deformation is a vibration limits.
References [1] XiaQi cold strain test principle and application in engineering shanxi building 2008-10 [2] HaoWeiDong ce-grate displacement sensor guilin electronic industrial institute journal 1997 [3] Zhaojun QuShiRu army with the triangle area ratio based on the plane figure identification method of lanzhou university transportation research in 2005-6
Online since: August 2013
Authors: Fu Zhou Luo, Yan Hu Han
Integrated Risk Management Based on Life Cycle of Engineering Project Fuzhou Luo1,a , Yanhu Han1,b 1School of Management, Xi’an University of Architecture & Technology, Xi’an, Shaanxi 710055, China aluofz@163.com, biamhanyanhu@163.com Keywords: engineering project management; life cycle; risk management; integration; PRAM Abstract.
Risk management is the key factor to project’s success, while the integrated risk management based on the life cycle of engineering project is an inevitable trend.
The integrated risk management based on the life cycle of engineering project is an inevitable trend.
Construction of integrated risk management model based on life cycle of engineering project Introduce PRAM method.
B., A risk engineering approach to project risk management.
Online since: July 2013
Authors: Lu He, Lu Zhang, Jia Yong Chen, Chu Dong Pan, Yu Xiang Liu
Bulletin of the New Zealand National Society for Earthquake Engineering, 1994. 27: p. 110
Journal of Architecture and Civil; Engineering, 2009. 26: p. 6
Earthquake Engineering & Structural Dynamics, 2001. 30(10): p. 1511-1538
Engineering Structures, 2009. 31(10): p. 2345-2356
Eathquake Engineering & Structural Dynamics, 2005. 34(6): p. 595-611
Online since: October 2014
Authors: Julitte Huez, Pierre Ponthiaux, Sergiu Stanciu, Marioara Abrudeanu, Jean Pierre Millet, Xavier Balandraud, Michel Grediac, Maria Magdalena Dicu, Adriana Gabriela Plaiasu, Vasile Rizea
Introduction Materials engineering involves knowledge of the fundamental physics, chemistry and engineering of materials in order to elaborate, develop, and use materials with superior and new properties.
Master's programs are designed to give you a solid (strong) education in the materials engineering field.
By understanding the properties of materials, materials engineers create new materials with desired properties.
The research activities are typically in materials engineering field.
The research activities are typically in materials engineering field.
Online since: October 2013
Authors: Gui Xiang Zeng
The research may provide a good reference for engineers to reasonably design the frame shear-wall structure.
Therefore, the design of shear-walls is the key technology of frame shear-wall structure.
This not only increases the cost of upper structure materials, but also brings difficulties of foundation design.
In addition, there is a minimum threshold of shear force subjected by frame structure, material consumption of frame structure will no longer reduced while the shear-walls increase.
Wang, Seismic Design of Building Structure and Engineering Application, China Building Industry Press, Beijing, 2008
Online since: June 2014
Authors: Guo Bi, Jing Lin, Ping Guo Zhang, Lin Mai
With the aid of CiteSpaceII, a kind of information visualization software, the paper analyzed Chinese research institution co-occurrence network, noun phrases and key words co-occurrence network and evolution of knowledge map of aerospace engineering.
Besides, based on noun phrases and key words co-occurrence network and evolution of knowledge map of aerospace engineering, the research aims at revealing the research hot-spots, intellectual base, research fronts and trends analysis of aerospace engineering.
They indicate that the design of equipment is a key point.
Scientific research of space life sciences, space materials, space astronomy and space physics in microgravity is under way.
[17] Walter H U: Fluid Science and Materials Science in Space(1987)
Online since: September 2011
Authors: Qi Mao Zhong
Cutting Performance and Engineering Technology for High Speed Machining of Diamond Coating Cutters Qimao Zhong College of Mechanical Engineering, Jimei University, Fujian Xiamen, 361021, P R.
China qmzhong@jmu.edu.cn Keywords: Diamond, Coating cutters, High speed machining, Engineering technology Abstract.
Because of the performance demand of light and tough materials as aluminium alloy in the industry like aerospace and cars becomes higher, machining and utilizing such materials has been more difficult.
Fig. 3 The wear of hard alloy cutter Fig . 4 The wear of diamond coating cutter Key Engineering Technology for High Speed Machining Effective and rapid machining is a technology to save cost.
Bravi: Diamond and Related Materials, (2002) No.11, pp. 242-248 [6] S.Y.
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