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Online since: December 2012
Authors: Peng Tao Chi, Jun Song, Yong Qi Xie, Jian Zu Yu
Different aspects of storage such as materials, PCM container, heat transfer, enhancement technology innovation have been examined.
Corresponding Author Yongqi Xie is working at the School of Aeronautics Science and Engineering, Beihang University, China.
Dutta, A numerical model for heat sinks with phase change materials and thermal conductivity enhancers, International Journal of Heat and Mass Transfer. 49 (2006) 1833-1844
John, Phase change heat transfer enhancement using copper porous foam, Journal of Heat Transfer. 130 (2008) 082301-1-082301-11
Wu, Heat transfer enhancement of high temperature thermal energy storage using metal foams and expanded graphite, Solar Energy Materials & Solar Cells. 95 (2011) 636-643.
Online since: August 2011
Authors: He Guo Zhu, Jian Liang Li, Huan Wang, Jin Zhu Song, Yin Qun Yao, Ya Lin Jiang
Study on the amount of SiO2 on the thermal resistance of the ceramic-lined composite cast iron pipe Heguo Zhua, Huan Wangb, Jinzhu Songc, Yinqun Yaod, Jianliang Lie, Yalin Jiangf College of Materials Science & Engineering, Nanjing University of Science & Technology.
Mamyan: Metallurgical Materials and Transaction A Vol. 34(2003)P. 1979 [3] H.X.
Wang: Journal Materials Research Vol.15(2000)P.1943 [4] Z.C.
Fan: Journal of Materials Science Vol.30(1995)P.2554 [9] W.
Lai: Journal of Materials Science Vol.35(2000)P.45
Online since: January 2012
Authors: Zhao Yao Zhou, Shou Bin Dong, Yao Wang, Jian Yi Pan
[3] Huang Aiyun, Chen Donghai, Zhang Baoqiang: Journal of Jiaozuo Institute of Technology (Natural Science) 19(2000) 373-376
Huetink: Computational Materials Science 18(2000) 381-392
Lof: Journal of Materials Processing Technology 114(2001) 174-183
[8] Lin Gaoyong, Zhou Jia, Zheng Xiaoyan, Feng Di, Huang Guangfa, Peng Dashu: Journal of Cent South Univ.
(Science and Technology) 39(2008) 748-754
Online since: April 2011
Authors: Xian Zhao Jia, Hong Bin Liu, Zhi Wen Zhang
With two supporting the lime rotary kiln was studied in the paper, the cylinder shell, kiln lining and materials were looked as a whole system, the cylinder and kiln lining were modeled with lamination and partition, the various factors to stress of the kiln cylinder were researched, such as the cylinder axial thickness, the cylinder axial materials and materials in it, the finite element software ANSYS was used to analyze the structure stress and thermal stress distribution status of cylinder, the analysis results are helpful for the design and optimization of rotary kiln cylinder.
Fig. 2 the finite element model of kiln cylinder The material was given some parameter as a whole in kiln cylinder: filling rate (take 10%), density (1. 1t/m3), the relationship between the materials and the inwall of kiln cylinder is the contact relation for considering the influence of the materials gravity on kiln cylinder.
Li: Journal of Xiangtan Mining Institute.
Shu: Journal of Luoyang Institute of Technology.
Liu,ect.: Natural Science Journal of Xiangtan University.
Online since: April 2014
Authors: Quan Jiang, Ping Zhao, Chun Zhi Zhao, Li Ping Ma
Comparative Study on Life Cycle Assessment for Typical Building Thermal Insulation Materials in China Liping Ma1,3,4,a, Quan Jiang1,2,3,4,b, Ping Zhao4,c, Chunzhi Zhao1,3,4,d 1China Building Material Test & Certification Group Co., Ltd., Beijing 100024, China. 2College of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China 3National Key Lab for Green Building Materials, Beijing 100024, China 4China Building Material Academy, Beijing 100024, China a mlp@ctc.ac.cn, b jq@ctc.ac.cn, c czz@ctc.ac.cn, d zhaoping@cbmaemail.com.cn Keywords: Polystyrene board, Rock wool board, Rigid foam polyurethane board, Life cycle assessment.
Subject "the Research and Application of Life Cycle Assessment Technology to the Building Materials for Building Engineering in Typical Regions" of the National Science & Technology Pillar Program during the Twelfth Five-year Plan Period (No.: 2011BAJ04B06) Introduction As the policies for building energy efficiency has been fully implemented and the green building action widely carried out, the technology for the assessing and verifying green building materials is vital and needs to be established as soon as possible.
At present, the study on life cycle assessment for thermal insulation materials [8,9] is rarely reported in China.
This paper has performed the life cycle assessment on three most widely used thermal insulation materials (namely, the polystyrene board, the polyurethane board and rock wool board) in the current domestic building engineering based on the LCA method, combining the characteristics of the employing of such materials in different regions, and is aimed to illustrate the basic information of the life cycle environmental load of thermal insulation materials in this industry and to provide data support to the establishment of localized LCA database for thermal insulation materials and the assessment of green building materials.
Journal of Environmental Science. 2010, 30(10):2136-2144
Online since: January 2014
Authors: Xin Rong Yang, Da Ming Gu, Shuo Gu, Xu Lei Sui
The materials were assembled into CR2025 button cell.
Chemistry of Materials 25 (2013) 768-781 [2] Y.
Chinese Science Bulletin 57 (2012) 4160-4163 [4] K.S.
Chemistry of Materials 24 (2012) 3212 −3218
Journal of Alloys and Compounds. 509 (2011) 957-960
Online since: June 2015
Authors: Abdul Rahman Mohamed, Z.A. Mohd Ishak, Mariatti Jaafar, W.A.D. Wan Dalina, Soon Huat Tan
Fiber reinforced polymers are gaining increasing importance in lightweight structural materials [4].
Materials and Method The MWCNTs used in this study were synthesized by a group of researchers from the Universiti Sains Malaysia.
Kathi, Thermal and mechanical properties of epoxy/carbon fiber composites reinforced with multi-walled carbon nanotubes, Journal of Macromolecular Science, Part B: Physics. 51 (2011) 358-367
Edwards, Composite Materials Revolutionise Aerospace Engineering, INGENIA. (36) September 2008
Gray, Recent Developments in carbon nanotube membranes for water purification and gas separation, Materials. (3) 2010 127-149.
Online since: June 2025
Authors: Joao Pedro Almeida Lopes, Hebert Luis Rossetto
Conventional waterproofing methods often rely on materials with significant environmental impacts.
In the search for sustainable alternatives, plant-based materials have garnered attention.
Construction and Building Materials, v. 30, p. 125-138, 2012
Construction and Building Materials, v. 101 (1), p. 80-90, 2015
Journal of the Korean Wood Science and Technology, v. 45 (6), p. 772-786, 2017
Online since: July 2016
Authors: Alexander Scheuermann, S. Galindo Torres, Somayeh Behraftar, Joshua Heslin
The present paper uses the results of this paper to simulate cylindrical samples and study other parameters which represents mechanical behaviour of rock materials.
Franklin, "Suggested method for determining point load strength," in International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts, 1985, pp. 51-60
Li, "Breaking processes in three-dimensional bonded granular materials with general shapes," Computer Physics Communications, vol. 183, pp. 266-277, 2012
Marques, Hossein JAnjani, "A novel calibration methodology to obtain material parameters for the representation of fracture mechanics based on discrete element simulations," International Journal of Rock Mechanics and Mining Sciences 2015 (under revision)
Franklin, "The point-load strength test," in International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts, 1972, pp. 669-676
Online since: April 2012
Authors: Akshaya Kumar Rout, Kali Pada Maity, Santosh Kumar Sahoo
[3] Kim, H., Sweeney, K. and Altan, T. (1994), Application of computer aided simulation to investigate metal flow in selected forging operations, journal of Materials Processing Technology.
-Soo, Min-Kim, B. and Choi, J.C. (1994), Perform design in extrusion by the FEM and its experimental confirmation, journal of Materials Processing Technology, Vol. 41 (2), pp. 237-248
S.(1992), Finite –element analysis of Copper extrusion process, journal of Materials Processing Technology, Vol. 34 (1-4), pp. 101-108
N., Dixit P.M. and Lal, G.K. (1995), Die design for axisymmetric extrusion, journal of Materials Processing Technology, Vol. 55 (3-4), pp. 331-339
Sethuraman, R. and Lal, G.K., (1996), Upper-bound and FE analysis of axisymmetric hot extrusion, journal of Materials Processing Technology, Vol. 57 (1-2), pp.14-22
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