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Online since: March 2016
Authors: Wenbin Yu
Mechanics of Composite Materials.
Random heterogeneous materials.
International Journal of Engineering Science, 20(5):605 - 621, 1982
Mechanics of Materials, 14:127-139, 1992
Analysis of composite materials-a survey.
Online since: April 2015
Authors: Rebiha Smahi, Youcef Bouafia, Mohand said KACHI
Benallal, R.Desmorat, Mechanics of solid materials (Mécanique des matériaux solides), Dunod, Paris, ISBN 978- 2 -10- 051623- 0.(2009) [2] P.
Procedia Materials Science.
International Journal of Solids and Structures 43, (2006) 1093–1116
Publication Hermes science.
Materials and Structures ( 2014 ), DOI 10.1617/s11527- 014- 0439- 8.
Online since: January 2014
Authors: Qian Wang, Sen Lin Tian, Ming Jiang, Xin Yuan, Rong Rong Miao, Jian Zhou
Journal of Hazardous Materials, 2009, 171(1-3): 588 [3] Liping Ma, Ping Ning, Yuanyuan Zhang, Xueqian Wang.
Journal of Rare Earths, 2010, 28(2): 205 [5] Qiongfen Yu, Ping Ning, Honghong Yi, Xiaolong Tang, Ming LI, Liping Yang.
Chinese Journal of Chemical Engineering, 2008, 16(5): 715 [7] Ping Ning, Hans-Jörg Bart, Liping Ma, Xueqian Wang.
Engineering Science, 2004, 2(4): 20 [8] Ping Ning, Xueqian Wang, Hans-Jörg Bart, Senlin Tian, Yong Zhang, Xueqian Wang.
Journal of Cleaner Production, 2011, 19(13): 1547 [9] Zhonghua Wang, Ming Jiang, Ping Ning, Gang Xie.
Online since: January 2013
Authors: Qing Jun Chen, Kai Rong Shi, Zheng Rong Jiang, Xiao Nan Gao
(a) Architectural rendering (b) Plan (c) Section 1-1 (d) Section 2-2 (e) Upper single layer latticed shell (f) Lower cable-strut system Fig. 1 Analytical model Specifications of members and materials are shown in Table 1.
Influence of material elastic-plasticity.
Chen, Stability of Latticed Shells, Science Press, Beijing, 1999
Wang, et al, The overall stability analysis of the suspend-dome structure system of the badminton gymnasium for 2008 Olympic Games, Journal of Building Structures. 28 (2007) 22-30, 44
Cai, Analysis of nonlinear buckling and construction simulation for an elliptic paraboloid radial beam string structure, China Civil Engineering Journal. 44 (2011) 1-8
Online since: July 2018
Authors: Qin Xiang Xia, Gang Feng Xiao, Xiu Quan Cheng, Ning Yuan Zhu
Materials and Product Technology. 54(2017) 212-235
Lin, Ge Liu, A new mathematical model for predicting flow stress of typical high-strength alloy steel at elevated high temperature, Computational Materials Science. 48(2010)54-58
[6] Yuanyuan Dong, Cunsheng Zhang, Xing Lu, Constitutive Equations and Flow Behavior of an As-Extruded AZ31 Magnesium Alloy Under Large Strain Condition, Journal of Materials Engineering and Performance. 25(6)2016-2267
Sivaprasad, Constitutive equations to predict high temperature flow stress in a Ti-modified austenitic stainless steel, Materials Science and Engineering A. 500(2009)114-121
Kocks, Laws for Work-hardening and Low-temperature Creep, Journal of Engineering Materials Technology. 98(1976)76-85.
Online since: March 2014
Authors: Yan Li Zhang, Xiao Li Feng, Ruo Yu Liu, Liang Jiao Chen, Yao Kun Zhang, Long Quan Shao
Materials and Methods Teeth preparation.
This finding may be explained with the combination of silica materials and silane coupling agent.
Although surface roughening creates mechanical retentive areas of zirconia, improvement of the bond strength may be limited because of little silica content of these materials[7].
Pow, Insights into porcelain to zirconia bonding, Journal of Adhesion Science and Technology. 26 (2012) 1249-1265
Astuta, Bonding of dual-cured resin cement to zirconia ceramic using phosphate acid ester monomer and zirconate coupler, Journal of Biomedical Materials Research. 77 (2006) 28-33
Online since: March 2022
Authors: Kageishieny Nadarason, Niwasiny Arumugan, Sasitharan Nagapan, Suaathi Kaliannan, Samiullah Sohu, N. Al-Emad
The study found that timber and metal were highly recycled waste materials at both apartments.
Only four types of C&D waste focused such as metal, concrete, packaging materials and timber.
The recycling practices for packaging materials increases but drops in February (0.33m3).
The highly recycling materials is metal followed by timber, concrete and packaging material.
M, A Review on recycled use of solid wastes in building materials, International Journal of Civil and Environmental Engineering. (2015) 1578-1587
Online since: September 2010
Authors: Ferenc Kristály, István Papp, László A. Gömze
Materials and methods Raw materials used in laboratory tests were illite - chlorite rich clay from Tiszavasvári (E-Hungary) and three types of vegetal waste materials.
TA data for raw clay, raw vegetal materials and mixtures is listed in Table 1.
Applied Clay Science, 8, pp. 81-89 [6] A.
Journal of Thermal Analysis, Vol. 48, pp. 49-62 [7] V.S.
Delgado (2002): Handbook of Thermal Analysis of Construction Materials.
Online since: July 2014
Authors: P. Rajan, K. Rajkumar
Journal of the Minerals, Metals and Materials society 43 (4),10-15 [2] F.
Materials Science and Engineering A 2006; 427:76–82 [4] H.
Stephens, Machining of Al-5Mg reinforced with 5 vol % Saffil and 15 vol % SiC, Materials Science and Engineering A 135 (1991) 287–290 [8] J.P.
Baptista, Relationship between cutting force and PCD cutting tool wear in machining silicon carbide reinforced aluminium, Journal of Materials Processing Technology. 103 (2000) 417–423 [9] V.
Journal of Materials Processing Technology 140 (2003) 711–716 [13] S.
Online since: May 2012
Authors: Nan Qi Ren, Hong Xu Bao, Wei Wei Cai, Xi Ping Ma, You Tao Song, Man Li Shen, Zhong Lin Chen, Li Dan Li
However, hydrogen gas is not readily available in nature like fossil fuels and natural gas, but can be produced from renewable materials such as biomass and water[3] [4].
Recently, a novel H2-producing bacterial strain X9 was isolated from a continuous stirred-tank hydrogen production bioreactor (CSTR), and the stain X9 achieved maximum specific hydrogen yield of 4.9mmol/g with MCC under the optimal conditions Materials and methods The source of hydrogen-producing bacteria.
International Journal of Hydrogen Energy, 2011. 36(13): p. 7443-7459
International Journal of Hydrogen Energy, 2010. 35(16): p. 8544-8553
International Journal of Hydrogen Energy, 2010. 35(16): p. 8371-8384