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Online since: May 2015
Authors: Artur Chrobak, Dariusz Bochenek, Przemysław Niemiec
The combination of materials with high piezoelectric properties and materials with good magnetic properties, may allow obtaining a solid solutions (composites) with good magnetoelectric properties [6].
Murty: Materials Chemistry and Physics, Vol. 126 (2011), p. 295 [2] G.
Laoratanakul: Materials Science & Engineering B, Vol. 112 (2004), p.79 [5] D.
Błachowski: Materials Characterization, Vol. 87 (2014), p. 36
Bochenek: Journal de Physique IV, Vol. 137 (2006), p. 189
Murty: Materials Chemistry and Physics, Vol. 126 (2011), p. 295 [2] G.
Laoratanakul: Materials Science & Engineering B, Vol. 112 (2004), p.79 [5] D.
Błachowski: Materials Characterization, Vol. 87 (2014), p. 36
Bochenek: Journal de Physique IV, Vol. 137 (2006), p. 189
Online since: January 2013
Authors: Jiang Hua Deng, Chao Tang, Yan Ran Zhan, Xing Ying Jiang
The results show that 2A16 is a kind of strain rate and sensitive temperature materials.
Li: Materials Science and Engineering: A Vol. 499 (2009), p. 242 [2] Z.
Ghassaei: Journal of Materials Science Vol. 24 (1989), p. 599 [6] William, K.
Amodio: Materials Science and Engineering A, Vol.487 (2008), p. 289 [8] A.
Liu: Material Science and Engineering A, Vol.527 (2010), p. 6980
Li: Materials Science and Engineering: A Vol. 499 (2009), p. 242 [2] Z.
Ghassaei: Journal of Materials Science Vol. 24 (1989), p. 599 [6] William, K.
Amodio: Materials Science and Engineering A, Vol.487 (2008), p. 289 [8] A.
Liu: Material Science and Engineering A, Vol.527 (2010), p. 6980
Online since: February 2009
Authors: Takeshi Gonda, Katsumi Tao, Shigeru Otsuka, Masaki Yakabe
Introduction
Many porous materials, such as filter materials made of sintering metals, lagging materials, fireproof
materials and so on, are utilized for various fields.
The authors[5],[6] also have dealt with statical problems and dynamical ones of axisymmetrical shells made of porous materials.
Then in this paper the dynamic problems of non-homogeneous (the functionally graded) porous shells of revolution made of such materials are treated.
Jayaraman: Journal of Biomechanics Vol. 16 (1983), p. 833
Houbolt: Journal of Aeronautical Science Vol. 17, No. 9 (1950), p. 540.
The authors[5],[6] also have dealt with statical problems and dynamical ones of axisymmetrical shells made of porous materials.
Then in this paper the dynamic problems of non-homogeneous (the functionally graded) porous shells of revolution made of such materials are treated.
Jayaraman: Journal of Biomechanics Vol. 16 (1983), p. 833
Houbolt: Journal of Aeronautical Science Vol. 17, No. 9 (1950), p. 540.
Online since: December 2011
Authors: Wei Zhang, Dong Dong Wang, Guo Feng Jin, Yuan Jia Song
Especially, the amplitude must be higher when we detect composite materials, which conductivity is smaller than metal.
The excitation amplitude can change with different materials.
Journal of NDT.
International Journal of Fatigue.
Composites Science and Technology.
The excitation amplitude can change with different materials.
Journal of NDT.
International Journal of Fatigue.
Composites Science and Technology.
Online since: October 2023
Authors: Yusvardi Yusuf, Dhimas Satria, Mekro Permana Pinem, Dwinanto Sukamto, Nugroho Jati Pamungkas, Jefri Dharmesta, Kurniawan P. Yudha
Materials and Methods
Rice straw raw materials were collected from around Cilegon and Serang in Banten province.
Pizzi, Journal of Materials Research and Technology, 20, 4630–4658 (2022)
Aziz, Materials Science Forum, 888, 244–247 (2017)
Saipolbahri, Journal of the Korean Wood Science and Technology, 48, 22–31 (2020)
Vilaseca, Materials, 13, 2138 (2020)
Pizzi, Journal of Materials Research and Technology, 20, 4630–4658 (2022)
Aziz, Materials Science Forum, 888, 244–247 (2017)
Saipolbahri, Journal of the Korean Wood Science and Technology, 48, 22–31 (2020)
Vilaseca, Materials, 13, 2138 (2020)
Online since: September 2013
Authors: Junaidi Syarif, Zainuddin Sajuri, Amirhossein Baghdadi
Nair, Microstructural analysis and discontinuities in the brazed zone of copper tubes, Journal of Materials Processing Technology, 141 (2003) 302-312
Rethwisch, Fundamentals of Materials Science and Engineering, An Integrated Approach, Third ed., John Wiley & Sons Inc., Hoboken, 2008
Zhao, Experimental and FEM study on sinking of miniature inner grooved copper tube, Journal of Materials Processing Technology, 209 (2009) 5333-5340
Deng, Groove deformation analysis of a single plough on inner copper tube, Journal of Materials Processing Technology, 211 (2011) 1669-1677
Kim, Fabrication of aluminum/copper clad composite using hot hydrostatic extrusion process and its material characteristics, Materials Science and Engineering: A, 384 (2004) 70-76
Rethwisch, Fundamentals of Materials Science and Engineering, An Integrated Approach, Third ed., John Wiley & Sons Inc., Hoboken, 2008
Zhao, Experimental and FEM study on sinking of miniature inner grooved copper tube, Journal of Materials Processing Technology, 209 (2009) 5333-5340
Deng, Groove deformation analysis of a single plough on inner copper tube, Journal of Materials Processing Technology, 211 (2011) 1669-1677
Kim, Fabrication of aluminum/copper clad composite using hot hydrostatic extrusion process and its material characteristics, Materials Science and Engineering: A, 384 (2004) 70-76
Online since: September 2013
Authors: Yong Jun Ye, Zhong Feng Zhang
Black charcoal is difficult to dye, Materials Science, Yanshan University, successfully developed a white charcoal powder which can be added to the fiber and various composite materials to prepare a color variety of products.
Journal of Huazhong Science and Technology University (Natural Science Edition), vol. 6 (2012), p.104-108.
Ye: Journal of Nanjing Forestry University (Natural Science Edition), vol. 26(2002) No.4, p.47.
Fei, etc.: New Carbon Materials, vol. 19(2004) No.4, p.249.
Yue: Journal of Beijing University of Chemical Technology (Natural Science Edition), vol. 2(2010), p.77-82.
Journal of Huazhong Science and Technology University (Natural Science Edition), vol. 6 (2012), p.104-108.
Ye: Journal of Nanjing Forestry University (Natural Science Edition), vol. 26(2002) No.4, p.47.
Fei, etc.: New Carbon Materials, vol. 19(2004) No.4, p.249.
Yue: Journal of Beijing University of Chemical Technology (Natural Science Edition), vol. 2(2010), p.77-82.
Online since: September 2013
Authors: Rong Zhen Jin, Nian Suo Xie, Jiao Jiao Li, Jing Che
Study on Compressive Properties of SiC Particle Reinforced ZAlCu5Mn Composite Foams
Rongzhen Jin 1, a, Niansuo Xie 2, b, Jiaojiao Li 3, c, Jing Che4,d
1School of Materials Science and Engineering, Shaanxi University of Technology, shaanxi , Hanzhong, 723003, China
2 School of Materials Science and Engineering, Shaanxi University of Technology, shaanxi , Hanzhong, 723003, China
3School of Materials Science and Engineering, Shaanxi University of Technology, shaanxi , Hanzhong, 723003, China
4School of Materials Science and Engineering, Shaanxi University of Technology, shaanxi , Hanzhong, 723003, China
afenmo163@163.com, bjrzh_style@outlook.com, c18391461835@139.com, dmycomputerjin@163.com
Keywords: SiCp/ZAlCu5Mn composite foams, Melt Foaming Technique, Compression Test, Composite Materials.
Introduction With the progress of science and technology, the requirements on new materials are higher and higher.
The research of mechanical property is the basic for the application of the structure materials[2].
The SiCp/ZAlCu5Mn composite materials were fabricated by melt mixing method.
The microstructure of SiCp/ AlCu5Mn composite materials is analyzed by EPIPHOT-300U inverted microscope model.
Introduction With the progress of science and technology, the requirements on new materials are higher and higher.
The research of mechanical property is the basic for the application of the structure materials[2].
The SiCp/ZAlCu5Mn composite materials were fabricated by melt mixing method.
The microstructure of SiCp/ AlCu5Mn composite materials is analyzed by EPIPHOT-300U inverted microscope model.
Online since: September 2013
Authors: Hendra Suherman, Abu Bakar Sulong, Jaafar Sahari, Mohd Yusuf Zakaria
EXPERIMENTAL PROCEDURE
Materials.
Grohens, Materials Letters, 57 (2002) 64-71
Zhou, Materials Science and Engineering: R: Reports, 49 (2005) 89-112
Tarng, Journal of Materials Processing Technology, 102 (2000) 48-55
Lee, Journal of Materials Processing Technology, 209 (2009) 3374-3383
Grohens, Materials Letters, 57 (2002) 64-71
Zhou, Materials Science and Engineering: R: Reports, 49 (2005) 89-112
Tarng, Journal of Materials Processing Technology, 102 (2000) 48-55
Lee, Journal of Materials Processing Technology, 209 (2009) 3374-3383
Online since: December 2025
Authors: Martin Vana
Introduction
Biocomposite materials are technical materials that represent a more environmentally friendly alternative to the more well-known carbon composites [1].
Journal of Thermoplastic Composite Materials. 2019, [2] ANDREW, J.
Drilling of biocomposite materials: Modelling and experimental validation.
Progress in Polymer Science. 2012, roč. 37, č. 11
Composites Part A: Applied Science and Manufacturing. 2016, roč. 83
Journal of Thermoplastic Composite Materials. 2019, [2] ANDREW, J.
Drilling of biocomposite materials: Modelling and experimental validation.
Progress in Polymer Science. 2012, roč. 37, č. 11
Composites Part A: Applied Science and Manufacturing. 2016, roč. 83