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Online since: May 2026
Authors: Edy Herianto Majlan, Muhamad Fitri, Dedik Romahadi, Alfian Noviyanto, Muhammad Aziz, Dwi Pudji Susilo, Samir Sani Abdulmalik, Stenlly Damar Surya Jati
Introduction
In the world of materials science and engineering, research on mechanical properties has been extensively conducted by researchers of materials, including metals [1, 2] and composite materials [3,4].
The large number of studies related to the mechanical properties of composite materials is due to the widespread use of composite materials to replace metal materials [5].
Composite materials demonstrate significant improvements in tensile strength and hardness compared to conventional single-polymer materials.
International Journal of Advanced Technology in Mechanical, Mechatronics and Materials. 2020 Jan;1(3):125–33
International Journal of Innovation in Mechanical Engineering and Advanced Materials [Internet]. 2024 Oct 5; 6(3):144.
The large number of studies related to the mechanical properties of composite materials is due to the widespread use of composite materials to replace metal materials [5].
Composite materials demonstrate significant improvements in tensile strength and hardness compared to conventional single-polymer materials.
International Journal of Advanced Technology in Mechanical, Mechatronics and Materials. 2020 Jan;1(3):125–33
International Journal of Innovation in Mechanical Engineering and Advanced Materials [Internet]. 2024 Oct 5; 6(3):144.
Online since: January 2011
Authors: Yu Cheng Wu, Xin Yi Zhang, Yan Wang, Guang Qing Xu, Jie Wu Cui
The authors are grateful to Hefei Institutes of Physical Science, Chinese Academy of Sciences for providing characterization of materials.
Liu and Martin Moskovits: Journal of Materials Research Vol. 9(1994), p. 1014 [3] Jung Sang Suh and Jin Seung Lee: Chemical Physics Letters Vol. 281(1997), p. 384 [4] Dongsheng Xu, Yajie Xu, Dapeng Chen, Guolin Guo, Linlin Gui and Youqi Tang: Chemical Physics Letters Vol. 325(2000), p. 340 [5] Y.
Phillipp: Applied Physics Letters Vol. 76(2000), p. 2011 [6] X.Y.Zhang, L.D.Zhang, Y.Lei, L.X.Zhao and Y.Q.Mao: Journal of Materials Chemistry Vol. 11 (2001), p. 1732 [7] Xinyi Zhang, Dan Li, Laure Bourgeois, Huanting Wang and Paul A.
A. de Saja:Journal of Membrane Science Vol. 137(1997), p. 89 [10] Takashi Kyotani, WeiHua Xua, Yu Yokoyamab, Junichi Inaharab, Hidekazu Touharab and Akira Tomitaa:Journal of Membrane Science Vol. 196(2002), p. 231 [11] H.
Osak: Journal of Applied Physics Vol. 37(1998), p. 1340 [13] M.
Liu and Martin Moskovits: Journal of Materials Research Vol. 9(1994), p. 1014 [3] Jung Sang Suh and Jin Seung Lee: Chemical Physics Letters Vol. 281(1997), p. 384 [4] Dongsheng Xu, Yajie Xu, Dapeng Chen, Guolin Guo, Linlin Gui and Youqi Tang: Chemical Physics Letters Vol. 325(2000), p. 340 [5] Y.
Phillipp: Applied Physics Letters Vol. 76(2000), p. 2011 [6] X.Y.Zhang, L.D.Zhang, Y.Lei, L.X.Zhao and Y.Q.Mao: Journal of Materials Chemistry Vol. 11 (2001), p. 1732 [7] Xinyi Zhang, Dan Li, Laure Bourgeois, Huanting Wang and Paul A.
A. de Saja:Journal of Membrane Science Vol. 137(1997), p. 89 [10] Takashi Kyotani, WeiHua Xua, Yu Yokoyamab, Junichi Inaharab, Hidekazu Touharab and Akira Tomitaa:Journal of Membrane Science Vol. 196(2002), p. 231 [11] H.
Osak: Journal of Applied Physics Vol. 37(1998), p. 1340 [13] M.
Online since: October 2020
Authors: Luiz Antonio Fonseca Peçanha Jr., Ana Lucia Diegues Skury, Luis Carlos da Silva, Sergio Neves Monteiro, Michel Picanço Oliveira, Fabio da Costa Garcia Filho, Raphael Henrique Morais Reis
Nayar, S.K Singhal, A.J Dhar, R Chopra: Journal of Materials Science Vol. 21(1986), p. 4347
Etourneau: Materials Science and Engineering Vol. 10 (1991), p. 149
Houivet: Universal Journal of Materials Science Vol. 6 (4) (2018), p. 119
Satoh: Journal of Materials Science Vol. 35 (2000), p. 1181
Journal of Refractory Metals and Hard Materials Vol. 50 (2015), p. 178
Etourneau: Materials Science and Engineering Vol. 10 (1991), p. 149
Houivet: Universal Journal of Materials Science Vol. 6 (4) (2018), p. 119
Satoh: Journal of Materials Science Vol. 35 (2000), p. 1181
Journal of Refractory Metals and Hard Materials Vol. 50 (2015), p. 178
Online since: August 2023
Authors: Rossen Radev, Danail Gospodinov, Ivo Draganov, Nikolay Ferdinandov
Materials Science and Engineering 564 (2019), pp 1-9
Materials and Design 55 (2014), pp 619-632
Materials Science and Engineering A 405 (2005), pp 333-338
Materials Science and Engineering A 419 (2006), pp 389-396
Journal of Material Processing Technology 203 (2008), pp 411-419
Materials and Design 55 (2014), pp 619-632
Materials Science and Engineering A 405 (2005), pp 333-338
Materials Science and Engineering A 419 (2006), pp 389-396
Journal of Material Processing Technology 203 (2008), pp 411-419
Online since: September 2011
Authors: Yuan Ping Li, Wei Zhang
The fractional dynamics equation of a viscoelastic two-member truss system, in which fractional derivative model introduced to simulate the materials’ characteristics, is proposed.
With the rapid development of materials science, a large number of new polymer material or polymer matrix composites are widely used in civil, mechanical, aerospace and other engineering fields in these years, and it is formed a special kind of intelligent viscoelastic structure.
E., et al.: Journal of Applied Polymer Science, 2008. 108(2): p. 731-737
R.: Journal of Sound and Vibration, 1998. 218(5): p. 749-767
A.: Application of Fractional Calculus in Engineering Sciences. 2008: p. 11-14
With the rapid development of materials science, a large number of new polymer material or polymer matrix composites are widely used in civil, mechanical, aerospace and other engineering fields in these years, and it is formed a special kind of intelligent viscoelastic structure.
E., et al.: Journal of Applied Polymer Science, 2008. 108(2): p. 731-737
R.: Journal of Sound and Vibration, 1998. 218(5): p. 749-767
A.: Application of Fractional Calculus in Engineering Sciences. 2008: p. 11-14
Online since: November 2013
Authors: Tuomas Katajarinne, Seppo Kivivuori
Materials and Methods
Materials.
Bréchet, Strenghtening via the formation of strain induced martensite in stainless steels, Materials Science and Engineering A. 387-389 (2004) 873-881
Srinivas, Effect of grain size on deformation induced martensite formation in 304 and 316 stainless steels during room temperature tensile testing, Journal of Materials Science Letters. 13 (1994) 107-111
Tisza, General overview of sheet incremental forming, Journal of Achievements in Materials and Manufacturing Engineering. 55 (2012) 113-120
Llewellyn, Work hardening effects in austenitic stainless steels, Materials Science and Technology. 13 (1997) 389-400
Bréchet, Strenghtening via the formation of strain induced martensite in stainless steels, Materials Science and Engineering A. 387-389 (2004) 873-881
Srinivas, Effect of grain size on deformation induced martensite formation in 304 and 316 stainless steels during room temperature tensile testing, Journal of Materials Science Letters. 13 (1994) 107-111
Tisza, General overview of sheet incremental forming, Journal of Achievements in Materials and Manufacturing Engineering. 55 (2012) 113-120
Llewellyn, Work hardening effects in austenitic stainless steels, Materials Science and Technology. 13 (1997) 389-400
Online since: February 2012
Authors: Zeng Wu Zhao, Bao Wei Li, Zhang Yin Xu, Yin Ju Jiang
Experiment
Experimental materials and equipments
The re-concentration mineral powders of RE dressing tailings in Bayan-Obo mine( Hereinafter referred to as re-concentration minerals) and semi-coke powders were used as experimental materials, in which the particle sizes of re-concentration minerals were ground to smaller than 150 mesh and the particle sizes of Semi-coke powders ranged from 1mm to 5mm.
The materials were taken out, and the sponge iron in materials was weighed.
(2) In direct reduction process of re-concentration mineral powders, fluorine compounds evaporated from the materials, meanwhile, potassium compounds evaporated or were reduced obviously.
Journal of Inner Mongolia University of Science and Technology, ,2010,29(3):207-209 [3] Han Yuexin Gao Peng Li Yanjun Sun Yongsheng Research on the Separation of Deoxidized Samples of Hematite Ore from Bayan Obo Modern Mining,2010,100(12),28-32
Catalysis in Extractive Metallurgy [J].Journal of Metals, 1983, (7):46-50.
The materials were taken out, and the sponge iron in materials was weighed.
(2) In direct reduction process of re-concentration mineral powders, fluorine compounds evaporated from the materials, meanwhile, potassium compounds evaporated or were reduced obviously.
Journal of Inner Mongolia University of Science and Technology, ,2010,29(3):207-209 [3] Han Yuexin Gao Peng Li Yanjun Sun Yongsheng Research on the Separation of Deoxidized Samples of Hematite Ore from Bayan Obo Modern Mining,2010,100(12),28-32
Catalysis in Extractive Metallurgy [J].Journal of Metals, 1983, (7):46-50.
Online since: October 2008
Authors: Dermot Brabazon, Tamas D. Szucs
Barralet Journal of Controlled Release Vol.
122 (2007), p. 173
Schnabelrauch Journal of Materials Science: Materials in Medicine Vol. 18 (2007), p. 909
Barralet Advanced Functional Materials Vol. 17 (2007), p. 3940
Suwanprateeb Materials Science and Engineering: C Vol. 27 (2007), p. 914
Seitz Journal of Materials Science: Materials in Medicine Vol. 16 (2005), p. 1121
Schnabelrauch Journal of Materials Science: Materials in Medicine Vol. 18 (2007), p. 909
Barralet Advanced Functional Materials Vol. 17 (2007), p. 3940
Suwanprateeb Materials Science and Engineering: C Vol. 27 (2007), p. 914
Seitz Journal of Materials Science: Materials in Medicine Vol. 16 (2005), p. 1121
Online since: September 2024
Authors: Mohsen A. Hassan, Wasiu Olakunle Makinde, Guoqing Guan, Ahmed S.G. Khalil
RS biochar can be synthesized from RS to serve as supercapacitor electrode materials.
Methodology 2.1 Materials: RS was obtained from a farm in New Borg El-Arab, Alexandria, Egypt.
The resulting biochar was washed with 2 M HCl to remove unreacted materials using a refluxing setup for 1 hour.
Patil et al., “Fabrication of a High-Energy Flexible All-Solid-State Supercapacitor Using Pseudocapacitive 2D-Ti3C2Tx-MXene and Battery-Type Reduced Graphene Oxide/Nickel- Cobalt Bimetal Oxide Electrode Materials,” ACS Applied Materials & Interfaces, vol. 12, no. 47, pp. 52749-52762, 2020
Dharmalingam, “Biomass derived activated carbon-based high-performance electrodes for supercapacitor applications,” Journal of Porous Materials, vol. 30, no. 1, pp. 289–301, Feb. 2023
Methodology 2.1 Materials: RS was obtained from a farm in New Borg El-Arab, Alexandria, Egypt.
The resulting biochar was washed with 2 M HCl to remove unreacted materials using a refluxing setup for 1 hour.
Patil et al., “Fabrication of a High-Energy Flexible All-Solid-State Supercapacitor Using Pseudocapacitive 2D-Ti3C2Tx-MXene and Battery-Type Reduced Graphene Oxide/Nickel- Cobalt Bimetal Oxide Electrode Materials,” ACS Applied Materials & Interfaces, vol. 12, no. 47, pp. 52749-52762, 2020
Dharmalingam, “Biomass derived activated carbon-based high-performance electrodes for supercapacitor applications,” Journal of Porous Materials, vol. 30, no. 1, pp. 289–301, Feb. 2023
Online since: October 2012
Authors: Ji Hua He
The study of the structures of these elementary particles will contribute to the use of nuclear energy material.
Kramer: The European Physical Journal H 36 (2011) 245
Law: Journal of Geometry and Physics 56 (2006) 2093
Trautman: Journal of Geometry and Physics 58 (2008) 238
Rinaldi: Journal of Geometry and Physics 6 (1989)651
Kramer: The European Physical Journal H 36 (2011) 245
Law: Journal of Geometry and Physics 56 (2006) 2093
Trautman: Journal of Geometry and Physics 58 (2008) 238
Rinaldi: Journal of Geometry and Physics 6 (1989)651