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Online since: August 2014
Authors: Xing Li, Xiao Yong Li, Yun Chun Jiang, Jing Peng Chen, Cun Yan Cui, Yuan Li
Journal of Hazardous Materials, 1982, 6(1): 43-83
Journal of hazardous materials, 2000, 77(1): 57-75
Huazhong University of Science and Technology press, 2011 [10] Sui Hong-tao, Li Peng-fei.
Online since: November 2014
Authors: Zhen Chuan Song, Ming Han, Zheng Hu, Ke Yan Ning
Thus, for better understanding of these phenomena, thermomechanical processes should be examined not only in the thin material layer in the vicinity of the friction surface but also in the whole element[5, 6].
Fig.5 Temperature experimental result during braking Fig.6 Von Mises stress distribution The calculated maximum values of the Von Mises stresses had reached about 408MPa, which does not exceed the yield stress of the materials used in the discs, as shown in Fig.6.
This may suggest that the deformations are the result of material creep at elevated temperatures.
Tang, Journal of Tribology, 129 (2007) 543
Wu, Journal of Mechanical Science and Technology, 24 (2010) 81-84.
Online since: June 2007
Authors: Kwang Suk You, Hwan Kim, Jung Ah Kim, Im Chan Lee, Hee Chan Cho, Ji Whan Ahn
The Effect of Initial Hydration Temperature on the Characteristics of Calcium Hydroxide and Aragonite Precipitated Calcium Carbonate Ji-Whan Ahn1 , Jung-Ah Kim 1,a , Kwang-Suk You 1 , Hwan Kim 2 , Hee-Chan Cho3 , and Im-Chan Lee1 1 Minerals and Materials Processing Division, Korea Institute of Geoscience and Mineral Resources, Daejeon 305-350, South Korea 2 Dept. of Materials Science and Engineering, Seoul National University, Seoul 151-742, South Korea 3 Dept. of Civil, Urban and Geosystem Engineering, Seoul National University, Seoul 151-742, South Korea a Corresponding author: gurmwmdk@empal.com Keywords: Hydration, Calcium hydroxide, Aragonite Abstract.
References [1] Irfan Ar, Gulsen Dogu: Chemical Engineering Journal, No. 83 (2001), pp. 131-137 [2] J.
Park: Journal of the Korean Society for Geosystem Eng., Vol. 7 (2004), pp.95-102
Online since: December 2010
Authors: Ai Hui Zhang, Wei Liang Jin, Gui Bing Li
Experimental Investigation on Effective Bond Length of Flexurally CFRP-Strengthened RC Beams Failed by Intermediate Crack Debonding Guibing Li1,2,a, Aihui Zhang2,b and Weiliang Jin2,c 1School of Management Science & Technology, Shandong Institute of Business and Technology, China 2School of Civil Engineering and Architecture, Zhejing University, China aliguibing@zju.edu.cn, bzah@zju.edu.cn, cjinwl@zju.edu.cn Keywords: RC Beam, FRP-strengthened, Intermediate Crack, Debonding, Effective Bond Length Abstract.
F Chen: Construction and Building Materials 17(6-7), 447-462. (2003)
Wu and H Niu: JSCE Journal of Materials, Concrete Structures and Pavements 27(6), 101-121. (2007)
Jiang: Journal of composites for construction 11(2) 161-174. (2007).
Online since: November 2012
Authors: Li Sha Song, Li Sun, Hong Yuan Huo, Chen Jie Cao, Tong Xing
The feeding sequence of raw materials is as Fig. 1.
Fig. 1 Feeding sequence of raw materials WAW-600 electric-hydraulic servo-type test machine was used in the experiment, which had several functions controlled by computer such as translation between different control modes smoothly, constant loading and constant rate of loading.
Pan, Experimental study on stress-strain characteristics of steel fiber reinforced concrete under uniaxial tension, Journal of Hydraulic Engineering, 5 (2002) 47-50
Yang, High-strength and Super High-strength Steel Fiber Reinforced Concrete, Science Press, Beijing, 2002
Li, Experimental study on axial-tensile properties of steel fiber reinforced concrete, Journal of North China Institute of water Conservancy and Hydroelectric Power, 3 (2007) 8-50.
Online since: March 2004
Authors: Sun Keun Hwang, Gil-Su Hong, Akihiko Chiba, Mok Soon Kim, Won Yong Kim, Jun Kyung Sung
Citation & Copyright (to be inserted by the publisher ) Mechanical Property of Single Phase Co-Ni-Cr-Mo Based Superalloy Produced by Cold Working and Recrystallization Heat Treatment Jun-Kyung Sung 1, Gil-Su Hong1, Won-Yong Kim 2, Mok-Soon Kim1† , Sun-Keun Hwang 1, Akihiko Chiba 3 1School of Materials Science and Engineering, Inha University #253, Yonghyun-dong, Nam-gu, Incheon 402-751, Korea 2 Advanced Materials R&D Center, Korea Institute of Industrial Technology #472, Kajwa-dong, Suh-gu, Incheon 404-254, Korea 3 Department of Welfara and System Engineering, Iwate University 3-18-8 Ueda, Morioka, Iwate 020-8550, Japan Keywords: Co-Based Alloys, Superalloy, Mechanical Property, Cold Working, Recrystallization, Deformation Twinning Abstract.
Concerning the yield strength, the alloy with 28 µm is Journal Title and Volume Number (to be inserted by the publisher) 3 observed to have higher strength than that of 238 µm.
Journal Title and Volume Number (to be inserted by the publisher) 5 [2] M.
Online since: December 2013
Authors: Tao Li, Fei Long Du
The selection of Low VOC emitting(non-toxic) paints, adhesives, carpets, and the other building materials, etc. can be exploited to improve indoor air quality.
Small-sized apartments decorated with diverse materials as the chance of changes coming finally will be provided to both the general users and designers.
[5] Zhenyu Li : Journal of Engineering Studies Vol. 03(2011)
[6] Xiaoming Wang, Xiao-gang Chen ,Li Xiong and De Yang: Southwest China Journal Of a Agricultural Sciences Vol.19(2006).
Online since: February 2014
Authors: Rong Feng Sun, Kai Wang, Jian Guo Jiang
Experimental research of the fast pyrolysis characteristics for lignite at medium temperature Kai Wang1, a, Jianguo Jiang1, b, Rongfeng Sun1,c 1 Energy Research Institute of Shandong Academy Sciences, Jinan 250014, China awangk@sderi.cn, bjiangjg@sderi.cn, csunrf@sderi.cn Keywords: Lignite, Medium temperature pyrolysis, component analyze Abstract The lignite fast pyrolysis characteristics at medium temperature was tested ranging from 400℃ to 700℃, and the pyrolysis product component was on-line analyzed by using gas chromatograph-mass spectrometer computer and fourier transform infrared spectroscopy.
Synergistic effects on co-pyrolysis of lignite and high-sulfur swelling lignite[J], Journal of Analytical and Applied Pyrolysis, 2012, 95: 61-67
Coal pyrolysis to acetylene in thermal plasma reactor from fundamental study to industrial demonstration[C], International Symposium on Plasma for Catalyses and Energy Materials, 2012
Coal pyrolysis to acetylene and hydrogen in hydrogen plasma: A density functional theory study [C], International Symposium on Plasma for Catalyses and Energy Materials, 2012
Investigation of the evolved gases from Sulcis-coal during pyrolysis under N2 and H2 atmospheres[J], Journal of Analytical and Applied Pyrolysis, 2012, 98: 45-50.
Online since: April 2014
Authors: Hai Ying Hu, Yu Cheng Zhang, Zhong Ming Huang
This technology uses resin materials to fiber material bonded to the structure or component surface, forming FRP Composites.
ASCE,Journal of Structural Engineering,1991,117(11):3417-3433
New Material Technology of Glass Fiber Reinforced Concrete Structure.
Huaqiao University (Natural Science), 2001, 22(1): 44-47
ASCE,Journal of Structural Engineering,1991,117(11):3417-3455
Online since: September 2018
Authors: Ana Helena Almeida Bressiani, Ivana Conte Cosentino, Walter Kenji Yoshito, Flávia Rodrigues de Oliveira Silva, Nelson B. Lima
Bressiani:Journal of Luminescence Vol. 180 (2016), p. 177. ], Bow et al [2] have developed a route for synthesizing nano-sized β-TCP at room temperature, in methanol solvent, wherein an intermediate amorphous calcium phosphate, CaHPO4 phase, is formed and the incorporation of carbonate during the synthesis process favors a β-TCP phase after 8h of aging stage.
Kumta: Materials Science and Engineering C Vol. 29 (2009), p. 69. ] β-TCP using 50% magnesium (β-TCMP) substituted brushite as a precursor in a method of several digestion/boiling steps.
Materials and Methods The Mg:β-TCP powders were synthesized by co-precipitation method, wherein the phosphoric acid (H3PO4, Synth – Brazil) diluted in deionized water (0.3 M) was slowly added drop by drop (8 mL/min rate) into a suspension of calcium hydroxide (Ca(OH)2, Synth- Brazil) and magnesium hydroxide (Mg(OH)2, Synth Brazil) (0.5 M).
Bressiani:Journal of Luminescence Vol. 187 (2017), p. 240. ].