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Online since: October 2012
Authors: Xue Mei Liu, Fu Xin Yang, Feng Xian Wang
Lee: Journal of Membrance Science, Vol. 109 (1996) No.2, pp. 257-265
Mallapragada: Journal of Membrance Science, Vol. 176 (2000) No.1, pp. 87-95
Peppas: Journal of Membrance Science, Vol. 107 (1995) No.3, pp. 239-248
Peppas: Journal of Membrance Science, Vol. 107 (1995) No.3, pp. 229-237
Urano: Journal of Membrance Science, Vol. 126 (1997) No.1, pp. 151-160
Online since: August 2020
Authors: Tuan Anh Nguyen, Ky Phuong Ha Huynh, Thi Yen Mai, Truong Xuan Minh Nguyen, Minh Vien Le, T. Anh Nga Nguyen
The starting materials were zinc acetate dihydrate and sodium hydroxide.
Methodology Materials.
Hungund, Surfactant assisted solvothermal synthesis of ZnO nanoparticles and study of their antimicrobial and antioxidant properties, Journal of Materials Science & Technology 34 (2018) 1035-1043
Uskokovic, Synthesis of ZnO and ZrO2 Powders by Mechanochemical Processing, Materials Science Forum 555 (2007) 279-284
Bose, Recent developments in materials synthesis in surfactant systems, Current Opinion in Colloid & Interface Science 7 (2002) 288-295
Online since: July 2012
Authors: Yang Jian Ou, Yi Qiu Tan, Xiang Bing Gong, Lei Zhang
J Journal Of Materials In Civil Engineering, 2004, 16(1), 45-53
J Journal of Tongji University(Natural Science), 2006(11), 1470-1474
J Journal Of Composite Materials, 2009, 43(25), 3091-3105
J Materials And Structures, 2009, 42(5), 677-689
J Construction and Building Materials, 2012.
Online since: October 2014
Authors: S.S. Ordanyan, S.V. Vikhman, D.D. Nesmelov, D.P. Danilovich, I.B. Panteleev
Nonoxide High-melting Point Compounds as Materials for Extreme Conditions S.S.
All these systems may be used as a basis for development of composite materials.
Kuznetsova, Promising Ultra-High Temperature Ceramic Materials for Aerospace Applications, Russian Journal of Inorganic Chemistry, 58[14](2013)1669-1693
Cao, Comparison of Reactive and Non-Reactive Spark Plasma Sintering Routes for the Fabrication ofMonolithic and Composite Ultra High Temperature Ceramics (UHTC) Materials, Materials 6 (2013)1566-1583
Vikhman, Phase Relations in the SiC–LaB6 System, Inorganic Materials, 40 [6](2004) 600-603
Online since: July 2014
Authors: N. Rajesh Jesudoss Hynes, P. Thanga Kumar, P. Nagaraj
Abstract: Friction plug welding, a recent variation of friction welding is a process of joining of two similar or dissimilar materials.
Heat flux generation at intermediate surface is computed due to friction between the materials considering the co-efficient of friction.
Pre-heating of materials is varied in the certain range to find its effect on the temperature profile in the work piece.
Angela Jennifa Sujana, Numerical Simulation of Heat Flow in Friction Stud Welding of Dissimilar Metals, Arabian Journal for Science and Engineering, DOI 10.1007/s13369-013-0932-3
Meby Selvaraj, Finite element based thermal modelling of friction welding of dissimilar materials, International Journal of Modern Physics. 22 (2013) 196–202
Online since: December 2006
Authors: Wan Sheng Zhao, Zhen Long Wang, Bai Dong Jin, Kai Xiao, Guo Hui Cao
Measurements show that deposited material has obvious delaminating structure and is corrosion resistant, whose components depend on those of the tool electrode material.
From polarity effect, the tool electrode should be anode, and discharge duration should decrease to get both more removal of tool electrode material and less removal of workpiece material, which is good for deposited material.
Acknowledgements This study is supported by China National Natural Science Funds (No.50275038).
Nakamura and et al: Journal of JSPE, Vol.66 (2000), pp. 1943-1947
Wang and et al: Journal of Tsinghua University (Science and Technology), Vol.39 (1999), pp. 45-48
Online since: November 2013
Authors: Pavel Hutař, Zdeněk Knésl, Luboš Náhlík, Zdeněk Majer, Petr Marcián
In recent years, particle reinforced composites are widely used due their mechanical properties as construction materials, high-performance engineering materials or protective organic coatings.
Gorenberg: Journal of Materials Science Vol. 32 (1997), p. 1613-1622 [3] O.K.
Knesl: Key Engineering Materials Vol. 465 (2011), p. 564-567 [12] J.
Lefebvre: Journal of Applied Polymer Science Vol. 114 (2009), p. 3274-3291 [16] J.
Majer: Key Engineering Materials Vol. 525-526 (2013), p. 173-176 [20] F.
Online since: June 2023
Authors: Alvanh Alem G. Pido, Art Anthony Z. Munio
Moreover, all materials were isolated by introducing vacuum slabs of 12.5 Å perpendicular to the tube axis.
Results and Discussion Fig.3a shows the isolated C39N-acid system and the binding mechanism between the two materials.
Wohlstadter, Carbon nanotube‐based biosensor, Advanced Materials, 15(14) (2003) 1184-1187
Li, Synthesis, properties, and applications of carbon nanotubes filled with foreign materials: a review, Materials Today Physics, 7 (2018) 7-34
Wentzcovitch, QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materialsJournal of physics: Condensed matter, 21(39) (2009) 395502
Online since: August 2013
Authors: Tao Ping Yan
Intelligent functional ceramic materials.
Intelligent functional ceramic materials, including environmentally sensitive and can make a sensitive response of the material to environmental change,has been become the bright spot in the field of materials science and engineering research.Intelligent functional ceramics, include the a combination of smart material systems or structures of functional materials, drive systems and feedback systems.Because of play to its comprehensive functionality, it has the properties of timely to perceive and respond to changes of the external environment, to achieve self-monitoring, self-diagnosis, self-protection, self-adaptation .
Recently proposed a functionally gradient materials can also be seen as a special class of composite materials.
Vol. 8 (2007),p.53 (In Chinese) [4] Xia Zou etc:Journal of Inorganic Materials.
Vol. 10 (2010),p.112 (In Chinese) [5] Jun Zhao etc:Journal of Ceramics .
Online since: January 2012
Authors: Le Miao Qiu, Zhong Kai Li, Tao Bai
Romanowski and Nagi [5] presented a data mining approach to forming generic bill of materials with the components and parts classification and coding.
Its length usually varies with the different types of materials.
In the area of mechanical products, different materials, such as products, modules, parts, etc, have different coding rules.
R & D Program of China under grant number 2009AA04Z415, the National Natural Science Foundation of China under grant number 51005237 and 50905195 and the Postdoctoral Science Foundation of China under grant number 20100471407.
Nagi, “A data mining approach to forming generic bills of materials in support of variant design activities,” Journal of Computing and Information Science in Engineering, vol. 4, Apr. 2004, pp. 316-328
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