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Online since: October 2025
Authors: Jantima Upan, Benjatham Sukkaneewat, Narongrit Sosa, Yutthana Wongnongwa, Nathapong Sukhawipat
Dou et al., “Adsorption of copper (II) and cadmium (II) ions by in situ doped nano-calcium carbonate high-intensity chitin hydrogels,” Journal of Hazardous Materials, vol. 423, p. 127137, 2022
Wang, “Removal of copper and cadmium ions from alkaline solutions using chitosan-tannin functional paper materials as adsorbent,” Chemosphere, vol. 236, p. 124370, 2019
Yingshataporn-A-Nan et al., “A Novel Elastomeric Dielectric Materials: Natural Rubber/ Copper-Modified Activated Carbon,” Materials Science Forum, vol. 1129, pp. 11–17, 2024
Pasetto, “Preparation and Characterization of a Novel Additive for Elastomeric Polymer from Oligoisoprene Modified Mesoporous Silica,” Materials Science Forum, vol. 1100, pp. 103–108, 2023
Hiranobe et al., “Cross-Linked Density Determination of Natural Rubber Compounds by Different Analytical Techniques,” Materials Research, vol. 24, Jul. 2021.
Online since: April 2016
Authors: Hai Liang Chu, Yong Jin Zou, Fen Xu, Long Yang, Li Xian Sun
Modulated Synthesis of UiO-67 for High Resistance to CH2Cl2 Long Yang, Li-xian Suna, Fen Xub, Yong-Jin Zou and Hai-Liang Chu Guangxi Key Laboratory of Information Materials, School of Material Science & Engineering, Guilin University of Electronic Technology, Guilin 541004, China asunlx@guet.edu.cn, bxufen@guet.edu.cn Keywords: Metal-organic framework, UiO-67, Modulated synthesis Abstract.
Compared to UiO-66, UiO-67 had higher BET surface area and micropore volume, and reduced the density of the materials[10].
All materials show an octahedral shape with sharp edges.
Yaghi: Journal of Materials Chemistry, Vol. 17 (2007), p. 3197
Walton: Journal of Materials Chemistry A, Vol. 1 (2013), p.5642
Online since: January 2019
Authors: Yu Sun, Sen Yang, Vannghia Tran, Dao Zhang, Wen Bin Wang
Materials and Methods In-situ Preparetion of Cu/TiB2 Composite Coating.
XRD and SEM experiments were performed at the Materials Characterization Facility of Nanjing University of Science and Technology.
Materials Science and Engineering: A. 2005, 393(1-2): 213-222
Journal Of Materials Science & Technology. 2008, 24(2): 197-201
Materials Science and Engineering: A. 2005, 393(1-2): 213-222.
Online since: March 2022
Authors: Hafizuddin Wan Yussof, Salwanis Md. Zain, Suhaila Omar, Nurul Aliaa Rahman, Jefri Jaapar
Although there is a successful recovery process with 98.7 % of the percentages adsorbed, it is only significant for raw material of sugarcane bagasse [3].
Experimental Materials.
Ou, "Studies on the preparation of ferulic acid from maize bran by alkaline hydrolysis," Journal of Chinese Institute of Food Science and Technology, vol. 7, no. 5, pp. 97-101, 2007
Row, "Application of anion‐exchange imidazolium silica for the multiphase dispersive extraction of phenolic acids," Journal of separation science, vol. 36, no. 16, pp. 2621-2628, 2013
Fang, "Antimicrobial activity and cytotoxicity of piperazinium-and guanidinium-based ionic liquids," Journal of hazardous materials, vol. 307, pp. 73-81, 2016
Online since: December 2010
Authors: Ding Han, Bing Gen Zhan, Xiao Ming Huang
Generally, road materials do not exert their compressive resistance limit, so it can be considered that the compression stress do not produce a damage.
Road materials can withstand a mass of cyclic loading, namely, single loading produces a tiny damage.
(2) Both the fracture toughness and the ultimate tension strain can be used as the control index to describe the deterioration level of road materials.
Ravelling investigation of porous asphalt concrete based on fatigue characteristics of bitumen-stone adhesion and mortar.Materials and Design, Vol.30, 2009, pp.170-179
Journal of Chang’an University(Natural Science Edition) (in chinese), Vol.24, No.1, 2004, pp.5-8 [5] GE Zhe-sheng, HUANG Xiao-ming.
Online since: October 2011
Authors: Di Tao Niu, Feng Qu
Gas diffusion.Based on the pore size of porous materials, gas diffusion mainly included ordinary diffusion (Fick diffusion), Knudsen diffusion and transition zone diffusion.
ACI Journal Proceedings.1954,51(3):285-296
[5] Ameriean Society for Testing and Materials C671.standard test method for critical ditation of conerete specimens subjected to freezing,1995
,Huang Y.Y..Journal of Wuhan University of Technology,Vol.24,No12.
,Cao J.G..Lin L..Guan Y.S..Journal of Hydraulic Engineering,No1.P41-49,1999.
Online since: September 2014
Authors: Yi Tang Zhou, Luo Ke Li, Xiu Ying Fan, Ting Zhang
Test Materials.
Beijing: Science Press, 2003: 16-20.
Journal of Materials Science and Engineering, 2003, 21(5): 727-730.
,Shrinkage Cracking in Fully Restrained Concrete Members.ACI Structural Journal,Vol.89(1992),No.2,pp.141-149
A Method to Predict Shrinkage Cracking of Concrete.ACI Materials Journal.
Online since: February 2012
Authors: Y.W. Du, K. Peng, Y.J. Yao, M. Lai, Xiao Long Jiang
Cutoff Frequency Study on Nanocrystalline FeNbB Thin Films X.L.Jiang1, Y.J.Yao1, M.Lai1, K.Peng2, Y.W.Du2 1College of Mathematics & Physics, Nanjing University of Information Science & Technology, Nanjing, China 210044, 2National Laboratory of Solid State Microstructures, Nanjing University, Nanjing, China 210093 Key words: cutoff frequency, nanocrystalline, FeNbB, film Abstract.
Introduction Nanocrystalline magnetic materials have attracted a great deal of attention from scientists over the last decade.
This work was also supported by the Project for Basic Research under Grant No.20080292 and 20080117, Nanjing University of Information Science & Technology.
[4] H.C.kim,S.C.Yu,C.G.Kim,H.S.Han,W.K.Cho, Journal of Magnetism and Magnetic Materials 215-216 (2000) 355-358 [5] H.C.kim,S.C.Yu,C.G.Kim,H.S.Han,W.K.Cho, Materials Science and Engineering A304-306(2001) 1030-1033 [6] R.Valenzuela and J.T.Irvine,J.Appl.Phys.72 (1992) 1486-1489 [7] G.Aguilar-Sahagun,P.Quintana,E.Amano,J.T.S.Irvine and R.Valenzuela, J.Appl.Phys.75 (1994) 7000-7002 [8] I.
Journal of Magnetism and Magnetic Materials 203 (1999) 226-228 [9] Won Jae Lee, B.K.Min, J.S.Song and J.S.Heo, Journal of Magnetism and Magnetic Materials 232(2001) 189-193
Online since: May 2018
Authors: Mochamad Chalid, Ghiska Ramahdita, Jaka Fajar Fatriansyah, Evana Yuanita
Experimental Materials.
Zheng, Materials & Design 69 (2015) 56-63
Ou, European Polymer Journal 38 (2002) 467-473
Pratama, Materials Science Forum, vol 827, 2015, pp. 326-331
Avrami, The Journal of chemical physics 9 (1941) 177-184
Online since: March 2014
Authors: Ping Yang, Hu Wei Cui, Can Shen, Liang Zhou, Xiao Jing Chen
The curve of the material properties of Non-HAZ and HAZ is shown in Figure 2.
Table 1 The material properties of the aluminum stiffened plates Material Young’s modulus Poisson's ratio Non-HAZ material yield stress HAZ material yield stress 6082-T6 aluminum alloy 70475MPa 0.3 260MPa 130Mpa Fig. 1 Geometry model and dimensions of aluminum stiffened plate Fig. 2 The curve of the material properties of the Non-HAZ and HAZ Finite Element Model and Boundary Conditions of Aluminum Stiffened Plates In this paper, nonlinear finite element software ANSYS was used to analyze the aluminum stiffened plates.
Journal of Structural Engineering, 2003, 129(2):160–8
Journal. of Huazhong University of Science and Technology, 1994 (04): 36-41
Journal of Huazhong University of Science and Technology, 1996 (03): 39-42