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Online since: September 2011
Authors: Shu Bin Shen, Heng Yong Wei, Li Xue Yu, Jing Long Bu, Zhi Fa Wang, Shu Long Liu
Experimental Raw Materials.
Zhou: Rare Metal Materials and Engineering.
Zhou: Materials Science and Technology.
Huang: Journal of Inorganic Materials.
Bu, et al: Advanced Materials Research, Vol. 97-101 (2010), p. 880-883
Online since: October 2010
Authors: Thomaz Augusto Guisard Restivo, Sonia Regina Homem de Mello-Castanho
Hong et al.: Materials Science Forum Vols. 486-487 (2005), p. 662
Wilkenhoener: Journal of Materials Science Vol. 34 (1999), p. 257
Materials Science Forum Vol. 591-593 (2008), p. 514
Nuclear Materials Vol. 334 ( (2004), p. 189
Yan et al.: Materials Letters Vol. 60 (2006), p. 3605
Online since: May 2011
Authors: Hua Yu, Ke Ke Zhang, Hong Xin Shi, Ran Feng Qiu, Xin Zhang
Joining phenomena of resistance spot welded joint between titanium and aluminum alloy Ranfeng Qiu1,2, a, Xin Zhang1,b , Hongxin Shi1,c Hua Yu1,d and Keke Zhang1,e 1School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang, 471003, China 2Henan Key Laboratory of Advanced Non-ferrous Metals, Henan University of Science and Technology, Luoyang 471003, China a qiurf1221@163.com, b zhangxin_sdha@163.com, c hyhx66@163.com, d kedayuhua@126.com, e zhkeke@mail.haust.edu.cn Key words: Resistance spot welding, Titanium, Aluminum Alloy, Interface, Strength.
However, the joining between titanium and aluminum alloy accompanies some difficulties, because of the large difference in physical and thermal properties between the two kinds of materials, and the formation of brittle intermetallic phases at the welding interface.
Tokisue: Journal of Japan Institute of Light Metals , Vol. 54-10 (2004), p. 430-435
Satonaka: Journal of Materials Processing Technology, Vol. 209 (2009), p. 4186-4193
Sakamoto: Quarterly Journal of the Japan Welding Society, Vol. 22-2 (2004), p. 254-260.
Online since: December 2010
Authors: Guo Chang Li, Cheng Yi Di, Shu Jie Li
With the development of computer science, the finite element method has been used widely.
CFRP employs composite material shell unit of four node reduced integration scheme (S4R).
Yang: [J].Jounal of shenyang jianzhu uiniversity:natingnal science, ,Vol.1(24)(2008), p.62. in chinese [2] S.T.
Journal of Constructional Steel Research, Vol. 57(2007): p.1041 [4] Y.F.
ACI Structure Journal, Vol. 98(3)(2001): p.377 [9] ACI Committee 440.
Online since: September 2013
Authors: Abd Aziz Noor Zuhaira, Mohamed Rahmah
Effects of Calcium Carbonate on Melt Flow and Mechanical Properties of Rice Husk/HDPE and Kenaf/HDPE Hybrid Composites Noor Zuhaira Abd Aziz1,a, Rahmah Mohamed2,b 1 Polymer Technology Programme, Faculty of Applied Sciences (FSG), Universiti Teknologi Mara (UiTM) Shah Alam, 40450 Selangor, Malaysia 2 Head, Green Polymer Research Group, Faculty of Applied Sciences (FSG), Universiti Teknologi Mara (UiTM) Shah Alam, 40450 Selangor, Malaysia a noorzuhaira@gmail.com (corresponding author), b greenkayangan@gmail.com Keywords: Hybrid Composites, Natural materials, Calcium carbonate, Melt Flow Index, Mechanical properties.
Method Material and sample preparation.
Acknowledgement The author gratefully acknowledges Faculty of Applied Sciences (FSG) and also Universiti Teknologi Mara (UiTM) for the facilities and equipment in making this studies success.
Hermason, "Prediction of the elastic modulus of wood flour/kenaffibre/polypropylene hybrid composites," Iranian Polymer Journal, vol. 16, pp. 271-278, 2007
Tang, "A study of the melt flow behaviour of ABS/calcium carbonate composites," Journal of Materials Processing Technology, vol. 138, pp. 408-410, 2003
Online since: December 2010
Authors: Yu Zheng, Yun Feng Pan
In the previous research, it was found that glass fibre reinforced polymer (FRP) reinforcement was a good alterative reinforcement material to replace steel in reinforced concrete [[] Clarke, J.L., The need for durable reinforcement, Alternative materials for reinforcement and prestressing of concrete, Chapman & Hall, 1993. ].
However, due to the material properties of GFRP, it could cause the high construction cost and complex design [[]A.C.
Russell, Construction and Cost Analysis of an FRP Reinforced Concrete Bridge Deck, Construction and Building Materials, Vol. 20, 2006, pp. 515-526. ].
Due to the incorporation of GFRP materials, the proposed theoretical method provided better prediction results with the comparisons of theoretical methods of steel reinforced structures. 3.
Acknowledge The authors wish to express their sincere appreciation of National Science Natural Science Foundation of China (50908055), Guangdong Natural Science Funding (10451170003004151), the Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry, Division of Transportation Guangdong Province (2009-02-017) and Dongguan Technology and Information Bureau (200910814049) in supporting this research.
Online since: June 2015
Authors: M. Rusop, M.H. Mamat, Mohd Husairi Fadzilah Suhaimi, Kevin Alvin Eswar, Haseeb A. Khan, Salman A.H. Alrokayan, J. Rouhi
Materials and method Zinc nitrate hexahydrate and Hexamethylenetetramine reagents were purchesed from Sigma-Aldrich.
Abdullah, Annealing heat treatment of ZnO nanoparticles grown on porous Si substrate using spin-coating method, Advances in Materials Science and Engineering, 2014 (2014) 6
Ong, Synthesis and size control of ZnO nanorods by conventional pulsed-laser deposition without catalyst, Materials Letters, 61 (2007) 3329-3333
Rouhi, The corrosion investigation of rebar embedded in the fibers reinforced concrete, Construction and Building Materials, 35 (2012) 564-570
Mahmodi, Enhanced optical and electrical stability of thermally carbonized porous silicon, Materials Science in Semiconductor Processing, 16 (2013) 542-546
Online since: April 2017
Authors: Karel Matocha, Roger Hurst
In particular the availability of the English translation of the Standard for Small Punch Creep Test of the Japanese Society of Materials Science is eagerly awaited.
LO1203 "Regional Materials Science and Technology Centre - Feasibility Program" funded by Ministry of Education, Youth and Sports of the Czech Republic.
Journal of Nuclear Materials, 103&104, North-Holland Publishing Company, 1981, p. 1545-1550
Journal of Nuclear Materials, 150, North-Holland Publishing Company, 1987, p. 42-52
Materials and Design 95 (2016), p. 623-631
Online since: June 2014
Authors: Jaromír Drápala, Miroslav Kvíčala, Michaela Štamborská
Journal of the Mechanical Behavior of Medical Materials 9 (2012) 34 – 44
Progress in Materials Science 58 (2013) 261–326
Journal of Biomedical Materials Research.
Materials Science & Engineering A 587 (2013) 123–131
Materials Science and Engineering C 33 (2013) 59–63
Online since: March 2023
Authors: Lyubov Yablon, Ivan Budzulyak, Mariia Khemii, Roman Ilnytskyi, Olha Popovych
ACS Applied Materials & Interfaces. 9 (2017) 17977-17991.
Journal of Materials Science: Materials in Electronics. 30 (2019) 3305-3315.
Journal of colloid and interface science. 426 (2014) 280-286.
Materials Science-Poland. 37 (2019) 547-553.
Materials Letters. 108 (2013) 164-167.
Showing 8741 to 8750 of 97196 items