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Online since: June 2019
Authors: Cristina Maria Biris, Mihaela Oleksik
Girjob, Study of the formability of light metallic materials, Academic Journal of Manufacturing Engineering, 12(3), (2014) 110-115 [5] W.
Frazier, Metal Additive Manufacturing: A Review, Journal of Materials Engineering and Performance, 23, (2014) 1917–1928 [6] M.
Balan, Springback of thick sheet AHSS subject to bending under tension, International Journal of Mechanical Sciences, 59, (2012) 104 [9] K.P.
Landert, Incremental forming of sandwich panels, Journal of Materials Processing Technology, 204, (2008) 290 [10] A.
Kafafi (eds), Science and Technology of Polymers and Advanced Materials.
Online since: February 2012
Authors: Xua Nang Hu, Dian Xin Jia, Jian Ge, Yan Zhu, Dan Hua Ying
Inheritance and Innovation of Ecological Materials from Traditional Buildings in Zhejiang, China Danhua Ying 1, a, Xuanang Hu 2,b , Jian Ge 3,c , Dianxin Jia 4,d, Yan Zhu 5,e 1-5 Department of Architecture, Zhejiang University, Hangzhou, 310058, China; Semitropical Archi-Science National Key Laboratory, South China University of Technology, Guangzhou, 510640, China; ayingdanhua1987@gmail.com, b hxa2011@zju.edu.cn , c gejian1@zju.edu.cn, djiadianxin@gmail.com , e yzhu@zju.edu.cn , Keywords:Zhejiang traditional building materials, advanced building materials,survey, inheritance,innovation,agricultural waste, plant fiber, industrial waste, synthetic materials, composite material Abstract:This article engages in a survey on the countryside’s building materials in Zhejiang province, and indicates problems in the new countryside construction during the early 1990s to 2005: on one side, rarely few new materials for energy-conservation is being used; on the other side, traditional materials
So a range of materials which make improvement or innovation on traditional or materials in Zhejiang rural areas are enumerated. 3.
Inheritance and innovation of ecological materials from traditional house 3.1 Inheritance and improvement of renewable recyclable organic eco-materials These materials are used widely in the dwellings in the past.
Journal of Zhejiang Wanli University. 2005: 53-56
Journal of Panzhihua University. 2010: 27-29
Online since: December 2013
Authors: Jing Guo
Based on the above reasons we put forward to manage the building materials by barcode technology.
Building materials coding format Coding design of CMSS should be based on the use of material process, at the same time should show the material location information, and other materials can be used for the difference and the related information.
Different objects have connection with each other in the system as follows: (1) A kind of building materials from some suppliers, a supplier supply many kinds of construction materials to buyer; (2) A location only store one construction material, but one construction material can be stored on more than one location; (3) A system user can deliver a variety of building materials, but one building material can also be repeated drawing by many users of the system.
Journal of Private Science and Technology, 2013(2):32, in Chinese [4] Yuanmin Jiang: Application of Barcode Equipment Management.
Journal of College Education Research, 2009(9):214, in Chinese
Online since: February 2020
Edited by: Dumitru Nedelcu
The 35th volume of the journal "Advanced Engineering Forum" includes peer-reviewed manuscripts describing the engineering solutions and results of research dealing with actual problems in applied materials science, mechanical engineering, building engineering, applied mechanics, power engineering and engineering management.
Online since: December 2014
Authors: Pi Hua Wen, Ping Cao, Rui Wen Chen, Ri Hong Cao
In this work, combined with similar material testing and discrete element numerical method(PFC) to investigate the mechanical behavior and failure mode of the rock-like materials with multi-fissures.
Combined with similar material testing and discrete element numerical method(PFC), this paper investigate the mechanical behavior and failure mode of the rock-like materials with multi-fissures.
The mechanical properties of the rock-like materials is listed in Table 1.
Macro-mechanical properties of regular cracks body in rock-like materials under uniaxial compression[J].Journal of University Science and Technology Beijing, 2001, 23(3):199-203.
[5] Kulatilake P H S W, Malama B, Wang J.Physical and particle flow modeling of jointed rock behavior under uniaxial loading[J].International Journal of Rock Mechanics and Mining Sciences, 2001, 38(5): 641-657.
Online since: May 2020
Authors: T.V. Semenova, N.P. Aleksandrova, A.S. Aleksandrov
Road Materials and Pavement Design 12(2) (2011) 423–439
Journal of Modern Transportation 19(2) (2011) 114–133
Series: Materials Science and Engineering 262 (2017) 1–7
Advances in Materials Science and Engineering, Volume 2017 15 p.
Materials Science Forum. 945 (2019) 771-775.
Online since: November 2011
Authors: Bin Zhang, Xiao Ning Tang
After the resulting materials solidified, they were cultured in bacterial incubator at 37oC for 18 h.
Antibacterial properties and corrosion resistance of Cu and Ag/Cu porous materials.
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A. 2008, 87A(1):33-37 [5] J.H.
JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION. 2008, 2(36): 771-774 [9] Tang Xiaoning, Xie Gang, Zhang Bin, Wang Xiaonan.
Advanced Materials Research. 2009, 79-82:1799-1802 [14] Meifeng ZHOU, Qizhuang HE.
Online since: May 2011
Authors: Bin Wan, Kai Yue, Lian Cun Zheng, Xin Xin Zhang
The effective thermal conductivity of composite materials with spherical dispersed phase Bin Wan 1, a, Kai Yue 1,b , Liancun Zheng 2,c and Xinxin Zhang 1,d 1Department of Thermal Engineering, University of Science and Technology Beijing Beijing 100083, China 2Department of Mathematics & Mechanics, University of Science and Technology Beijing, Beijing 100083, China awanbin225@163.com, byuekai@ustb.edu.cn, cliancunzheng@163.com, dxxzhang@ustb.edu.cn Keywords: Composite materials, ETC, Radiation, Porosity Abstract.
Dieska: Metallic Materials, 40(2) (2002), p.74–81
Dieska: Metallic Materials, 41(4) (2003), p.152–161
Cordfunke: Journal of nuclear materials, 223 (1995), p.135-142
Kingery: Journal of American Ceramic Society, 37(1954), p.99-107.
Online since: February 2012
Authors: Hai Yan Zhang, Xiao Guo Cao
In this paper, the cathode materials of SOEC are reviewed.
The research development of cathode materials is presented in this paper.
Journal of Materials Science. 39(2004) 4405-4439 [7] Martinez-Frias J, Pham AQ, Aceves SM.
Materials Chemistry and Physics. 96(2006) 388-395 [15] Momma A, Kato T, Kaga Y, Nagata S.
Journal of Materials Chemistry. 18(2008) 2349-2354
Online since: July 2012
Authors: Quan Yuan, Zhi Xue Qu, Wang Qun, Zi Xin Gu, Tong Wu
Preparation and Electromagnetic Properties of Manganese Zinc Ferrite/Barium Ferrite Composite Materials Quan Yuan1, Qun Wang1, a, Zhixue Qu1, Zixin Gu1, Tong Wu2 1 Key Laboratory of Functional Materials of China Education Ministry, College of Materials Science and Engineering, Beijing University of Technology, Beijing 100124, P.R.
[4] Liu Yapi, He Shijin, Development of High Frequency and High DC-Bias MnZn Frrite DMR50B Material, Journal of Magnetic Materials and Devices. 3 (2010) 36-41
[5] Chen Shichai, Luo Jun, Jia Lijun, Zhang Huaiwu, Electromagnetic Properties of PZT-NiCuZn Composite Materials, Journal of Magnetic Materials and Devices. 3 (2008) 34-38
[6] Zhong Hui, Zhang Huaiwu, Zhou Haitao, Magnetic Properties of BaTiO3-NiCuZn Composite Material, Journal of Magnetic Materials and Devices. 4 (2003) 10-12
Functional Materials. 2 (2004) 164-168
Showing 561 to 570 of 96451 items