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Online since: March 2019
Authors: Thi My Hoa Le, Xiao Wei Zhang, Thi Hong Nga Pham
EVA is an elastomeric polymer that produces materials which are "rubber-like" in softness and flexibility.
Figure 1: Sample size of the tensile test The analogous test to determine bending strength of materials in the ISO system is ISO 178.
The testing device was used in this method which is the Instron 5566 Materials Testing Machine with load capacity is 10 kN (2250 lbf); maximum power is 200 VA; weight of load frame is 136 kg (300 lb).
Compatibility of Low-Density Polyethylene/Poly (ethyleneco-vinyl acetate) Binary Blends Prepared by Melt Mixing, Journal of Applied Polymer Science, 90 (2003) 841-852 [3] A.
Amrollahi, Effects of High-Energy Electron Beam on Low-Density Polyethylene Materials Containing EVA, Journal of Applied Polymer Science, 92 (2004) 1049-1052 [8] M.
Figure 1: Sample size of the tensile test The analogous test to determine bending strength of materials in the ISO system is ISO 178.
The testing device was used in this method which is the Instron 5566 Materials Testing Machine with load capacity is 10 kN (2250 lbf); maximum power is 200 VA; weight of load frame is 136 kg (300 lb).
Compatibility of Low-Density Polyethylene/Poly (ethyleneco-vinyl acetate) Binary Blends Prepared by Melt Mixing, Journal of Applied Polymer Science, 90 (2003) 841-852 [3] A.
Amrollahi, Effects of High-Energy Electron Beam on Low-Density Polyethylene Materials Containing EVA, Journal of Applied Polymer Science, 92 (2004) 1049-1052 [8] M.
Online since: October 2014
Authors: Shan Jiang, Xia Qian Li, Qiang Yu
Synthesis and Characterization of pH and Temperature-Sensitive Semi-IPN Hydrogels
Shan Jianga, Xiaqian Lib, Qiang Yuc*
Department of Materials Science and Engineering, Changzhou University, Changzhou 213164, China
ajiangshan@cczu.edu.cn, b37632005@qq.com, cyuqiang@cczu.edu.cn
Keywords: semi-IPN hydrogels, pH-sensitivity, temperature-sensitivity, swelling kinetics
Abstract.
Wang, Current status of superporous hydrogels[J], Materials Review, 27(2013)90-93
Dong, Preparation and properties of temperature and pH-sensitive semi-IPN hydrogels[J], Polymer Materials Science & Engineering, 27(2011)131-134
Ma, The latest advance in the research on pH and temperature-sensitive polymer gels [J], Materials Review, 5(2007) 44-47
Liang, Synthesis and characterization of Poly(N-isopropyl -acrylamide)/Poly(acrylic acid) semi-IPN nanocomposite microgels[J], Journal of Colloid and Interface Science, 341(2010)88-93
Wang, Current status of superporous hydrogels[J], Materials Review, 27(2013)90-93
Dong, Preparation and properties of temperature and pH-sensitive semi-IPN hydrogels[J], Polymer Materials Science & Engineering, 27(2011)131-134
Ma, The latest advance in the research on pH and temperature-sensitive polymer gels [J], Materials Review, 5(2007) 44-47
Liang, Synthesis and characterization of Poly(N-isopropyl -acrylamide)/Poly(acrylic acid) semi-IPN nanocomposite microgels[J], Journal of Colloid and Interface Science, 341(2010)88-93
Online since: June 2011
Authors: Roberto Martínez-Sánchez, Ivanovich Estrada-Guel, J. Martin Herrera-Ramírez, Mario Miki-Yoshida, J. I. Barajas-Villaruel, R. Pérez-Bustamante, F. Pérez-Bustamante, Patricia Amézaga-Madrid
Materials and methods
CNTs were produced by chemical vapor deposition technique and the 2024 aluminum alloy was prepared from elemental powders.
Shinozaki, Materials Science and Engineering A Vol. 495 (2008), p. 282–287
Li, Materials Science and Engineering A Vol. 444 (2007), p. 138
Zhang, Materials Characterization Vol. 55 (2008), p. 211
Martínez-Sánchez, Materials Science and Engineering A Vol. 502 (2009), p. 159
Shinozaki, Materials Science and Engineering A Vol. 495 (2008), p. 282–287
Li, Materials Science and Engineering A Vol. 444 (2007), p. 138
Zhang, Materials Characterization Vol. 55 (2008), p. 211
Martínez-Sánchez, Materials Science and Engineering A Vol. 502 (2009), p. 159
Online since: April 2014
Authors: Xue Yu Xiong, Li Jun Wang, Rong Jun Xue, Sen Zhang
Typically, such concretes will have a low water-cementing materials ratio of 0.20 to 0.45.
Materials and Structures. 1995, 28(6): 357-365
Materials and Structures. 1995, 28(7): 415-430
Materials and Structures. 1995, 28(8): 488-495
ACI Materials Journal. 2001, 98(2): 159-167
Materials and Structures. 1995, 28(6): 357-365
Materials and Structures. 1995, 28(7): 415-430
Materials and Structures. 1995, 28(8): 488-495
ACI Materials Journal. 2001, 98(2): 159-167
Online since: September 2011
Authors: He Zhang, Zhu Xing Tang, Xia Zhao, Hui Hui Tan
Technology Research of Silicon Carbide by Extruding
Zhuxing Tang 1,a, Xia Zhao 1,b, Huihui Tan 1,c, He Zhang 1,d
1School of Materials Science and Engineering, Shandong University of Technology; China
atangzx@sdut.edu.cn,b xzhao126@126.com, ctan497977688@163.com, dzhanghe1215@163.com
Key words: Phenolic resin Extrusion molding Silicon Carbide
Abstract: The silicon carbide was extruded by the batch and sintered under Nitrogen atmosphere using phenolic resin as the main organic plasticizer.
Experiments Main materials α-SiC powders, carbon black, graphite, phenolic resin were used as raw materials.
References [1] Ungyu Paik, Hyeon Cheol Park, Sung Churl Choi: Materials Science and Engineering.
Vol. 36(2004), p.937 [4] Grida Imen, Evans Julian R G: Journal of the European Ceramic Society.
Vol.23 (2003), p.629 [5] Chou S, Sydow K, Martin P J: Journal of the European Ceramic Society.
Experiments Main materials α-SiC powders, carbon black, graphite, phenolic resin were used as raw materials.
References [1] Ungyu Paik, Hyeon Cheol Park, Sung Churl Choi: Materials Science and Engineering.
Vol. 36(2004), p.937 [4] Grida Imen, Evans Julian R G: Journal of the European Ceramic Society.
Vol.23 (2003), p.629 [5] Chou S, Sydow K, Martin P J: Journal of the European Ceramic Society.
Online since: November 2012
Authors: San Xing Liu, Hong Yuan
Reference case
The material and geometric properties are as following
=0.165mm, =25mm, =150mm, =150mm, =286000MPa, =0.16mm, =0.034mm =7.2MPa, =0.576N/mm, =190mm.
Acknowledgements The authors gratefully acknowledge the financial support provided by Natural Science Foundation of China (National Key Project No.11032005).
Zavarise, International Journal of Solids and Structures, 46(2009), 4181-4191
[14] G.M.Chen, J.F.Chen, J.G.Teng, Constructions and Building Materials, 28(2012), 584-591
[15] H.Diad, Z.S.Wu, Composites Science and Technology, 67(2007), 2323-2333
Acknowledgements The authors gratefully acknowledge the financial support provided by Natural Science Foundation of China (National Key Project No.11032005).
Zavarise, International Journal of Solids and Structures, 46(2009), 4181-4191
[14] G.M.Chen, J.F.Chen, J.G.Teng, Constructions and Building Materials, 28(2012), 584-591
[15] H.Diad, Z.S.Wu, Composites Science and Technology, 67(2007), 2323-2333
Online since: January 2012
Authors: Qing Song Yan, Shou Yin Zhang, Can Cheng Liu, Gang Lu, Xu Xiong, Hong Wan
Rapid Prototyping Journal. 11: 37-40 (2005)
Rapid Prototyping Journal. 8(4): 233-242 (2002)
Journal of Huazhong University of Science and Technology(Natural Science Edition). 29(6): 77-79 (2001).
Movement of powder bed material during the selective laser sintering of bisphenol-A polycarbonate.
Rapid prototyping Journal. 11(4): 188-198 (2005)
Rapid Prototyping Journal. 8(4): 233-242 (2002)
Journal of Huazhong University of Science and Technology(Natural Science Edition). 29(6): 77-79 (2001).
Movement of powder bed material during the selective laser sintering of bisphenol-A polycarbonate.
Rapid prototyping Journal. 11(4): 188-198 (2005)
Online since: February 2014
Authors: Brigitte Bacroix, Alain Lodini, Mirosław Wróbel, Marcin Wronski, Krzysztof Wierzbanowski, Lucjan Pytlik, Andrzej Baczmański
Introduction
Symmetric rolling is commonly used in industrial practice and a huge majority of materials is formed in such a way.
N, Lee, Analysis of deformation textures of asymmetrically rolled steel sheets, International Journal of Mechanical Sciences, 43 (2001) 1997–2015 [3] S.
Baudin, Texture Evolution in Invar® Deformed by Asymmetrical Rolling, Materials Science Forum, 550 (2007) 551-556 [4] S.
Lodini, Internal Stresses in two Phase Polycrystalline Materials, Archives of Metallurgy, 44 (1999) 39- 50 [9] A.
Wierzbanowski, Incompatibility Stresses and Elastic Energy Stored in Polycrystalline Materials, Mater.
N, Lee, Analysis of deformation textures of asymmetrically rolled steel sheets, International Journal of Mechanical Sciences, 43 (2001) 1997–2015 [3] S.
Baudin, Texture Evolution in Invar® Deformed by Asymmetrical Rolling, Materials Science Forum, 550 (2007) 551-556 [4] S.
Lodini, Internal Stresses in two Phase Polycrystalline Materials, Archives of Metallurgy, 44 (1999) 39- 50 [9] A.
Wierzbanowski, Incompatibility Stresses and Elastic Energy Stored in Polycrystalline Materials, Mater.
Online since: January 2015
Authors: Vera Murgul, Viktor Pukhkal, Nikolay Vatin, Radinko Kostić
There are not any materials which considering the specifications, the cost and the environmental characteristics could be dangerous.
When contacting with open flame styrofoam is burnt and behaves like other organic building materials, such as wood pulp, paper etc..
Eco-building Material of Styrofoam Waste and Sugar Industry Fly-ash based on Nano-technology (2014) Procedia Environmental Sciences, Vol. 20, pp. 245-253
Advanced Materials Research, Vols. 941-944, (2014), pp. 786-799
Experimental analysis of timber-concrete composite beam strengthened with carbon fibres (2012) Construction & building materials, vol. 37, pp. 499-506
When contacting with open flame styrofoam is burnt and behaves like other organic building materials, such as wood pulp, paper etc..
Eco-building Material of Styrofoam Waste and Sugar Industry Fly-ash based on Nano-technology (2014) Procedia Environmental Sciences, Vol. 20, pp. 245-253
Advanced Materials Research, Vols. 941-944, (2014), pp. 786-799
Experimental analysis of timber-concrete composite beam strengthened with carbon fibres (2012) Construction & building materials, vol. 37, pp. 499-506
Online since: December 2004
Authors: Han Lian Liu, Chuan Zhen Huang, Lin He, Jing Sun
Materials Science Forum Vols. *** (2004) pp.348-352
online at http://scientific.net
Ó 2004 Trans Tech Publications, Switzerland
Microstructure and Mechanical Properties of Ti(C,N)-ZrO2-Ni-Mo
Composite Cermet
L.
Kang: Materials Science and Engineering, A: Structural Materials Vol. 291 (2000), p. 198 [2] S.G.
Metals & Hard Materials Vol. 18 (2000), p. 273 [4] N.
Metals & Hard Materials Vol. 35(1985), p.31 [6] W.H.
Hu: Material Science and Engineering Vol.
Kang: Materials Science and Engineering, A: Structural Materials Vol. 291 (2000), p. 198 [2] S.G.
Metals & Hard Materials Vol. 18 (2000), p. 273 [4] N.
Metals & Hard Materials Vol. 35(1985), p.31 [6] W.H.
Hu: Material Science and Engineering Vol.