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Online since: February 2014
Authors: Wei Rao, Hai Bin Yang
Introduction
Among various oxide semiconductor, Ti-based materials is the most promising and challenging investigated materials because of its characteristics of high chemical stability, nontoxic, low cost and unique photoinduced electron transfer.
The use of Ti-based photocatalyst materials such as energy sources [1,2], environment [3,4], biological sciences [5], medicine [6] and manufacture [7] is an attractive alternative.
Many different preparation methods have been reported for preparing Ti-based photocatalyst materials.
Journal of Power Sources,2013, 221(1):141-148
Journal of Solid State Chemistry,2012,196:435-440
The use of Ti-based photocatalyst materials such as energy sources [1,2], environment [3,4], biological sciences [5], medicine [6] and manufacture [7] is an attractive alternative.
Many different preparation methods have been reported for preparing Ti-based photocatalyst materials.
Journal of Power Sources,2013, 221(1):141-148
Journal of Solid State Chemistry,2012,196:435-440
Online since: January 2020
Authors: G.G. Zadykyan, R.V. Mendagaliev, R.S. Korsmik, Gleb A. Turichin
Journal of Material Processing Technology, 213 (2013) 791-800
Journal of Material Processing Technology, 240 (2017) 12-22
Progress in Materials Science, 92 (2018) 112-224
Klimova, High-speed direct laser deposition: technology, equipment and materials, IOP Conference Series: Materials Science and Engineering Current Problems and Solutions, 125 (2016) 012009
Journal of Materials Processing Technology, 254 (2018) 361-372.
Journal of Material Processing Technology, 240 (2017) 12-22
Progress in Materials Science, 92 (2018) 112-224
Klimova, High-speed direct laser deposition: technology, equipment and materials, IOP Conference Series: Materials Science and Engineering Current Problems and Solutions, 125 (2016) 012009
Journal of Materials Processing Technology, 254 (2018) 361-372.
Online since: November 2011
Authors: Wei Xia, Jian Min Zeng, Huan Yang
[2] Kichan Son: Journal of Materials Processing Technology Vol. 134(2003), p. 92-98
[3] Lei Li-Ping, Hwang Sang-Moon: Journal of Materials Processing Technology Vol. 27(2002), p. 22-26
[5] Zimniak Z: Journal of Materials Processing Technology Vol. 106(2000), p. 152-160
[7] Naceur H, Guo YQ: International Journal of Mechanical Sciences Vol. 43(2001), p. 2407-2434
[8] Daxin E: Journal of Materials Processing Technology Vol. 205(2008), p. 469-476
[3] Lei Li-Ping, Hwang Sang-Moon: Journal of Materials Processing Technology Vol. 27(2002), p. 22-26
[5] Zimniak Z: Journal of Materials Processing Technology Vol. 106(2000), p. 152-160
[7] Naceur H, Guo YQ: International Journal of Mechanical Sciences Vol. 43(2001), p. 2407-2434
[8] Daxin E: Journal of Materials Processing Technology Vol. 205(2008), p. 469-476
Online since: June 2017
Authors: Gürol Önal, Kevser Dincer, Mehmet Okan Erdal
Materials and Methods
Electrospinning Theory and Process.
Spruiell, Journal of Applied Polymer Science, Vol. 18:1053-78 (2010) [6] P.J.
Journal of Materials Science, Vol. 20:2281-302 (1974) [7] J.M.
Ramkumar, Electrospinning of Nanofibers, Journal of Applied Polymer Science, Vol. 96, 557-569 (2005) [11] Z.M.
Pasaogullari, Jeffrey McCutcheon World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering, Vol. 9, No: 12 (2015) [16] S.
Spruiell, Journal of Applied Polymer Science, Vol. 18:1053-78 (2010) [6] P.J.
Journal of Materials Science, Vol. 20:2281-302 (1974) [7] J.M.
Ramkumar, Electrospinning of Nanofibers, Journal of Applied Polymer Science, Vol. 96, 557-569 (2005) [11] Z.M.
Pasaogullari, Jeffrey McCutcheon World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering, Vol. 9, No: 12 (2015) [16] S.
Online since: October 2023
Authors: Leo Cristobal C. Ambolode II, Alfredo Q. Liboon Jr., Alvanh Alem G. Pido, Art Anthony Z. Munio, Mohamed Karouchi, Yhebron J. Lagud, Urbano B. Patayon
Reports revealed that candidate materials for the adsorbent of As are graphene-based materials, metal-oxides, and biopolymers[4,5-9].
Journal of Hazardous Materials Advances 2022, 5, 100052, doi:10.1016/j.hazadv.2022.100052
Materials (Basel) 2021, 14, 5398, doi:10.3390/ma14185398
Journal of Applied Polymer Science 2020, 137, 48959, doi:10.1002/app.48959
Computational Materials Science 2014, 95, 337–350, doi:10.1016/j.commatsci.2014.07.043
Journal of Hazardous Materials Advances 2022, 5, 100052, doi:10.1016/j.hazadv.2022.100052
Materials (Basel) 2021, 14, 5398, doi:10.3390/ma14185398
Journal of Applied Polymer Science 2020, 137, 48959, doi:10.1002/app.48959
Computational Materials Science 2014, 95, 337–350, doi:10.1016/j.commatsci.2014.07.043
Online since: August 2011
Authors: Ruo Yu Zhang, Za Kan, Xu Guang Yan, Wan Chao Hu
Fig.1 Schematic of tomato color sorting robot
Fig.2 High-speed camera system and tomato color sorting robot
Materials and methods
High-speed camera system and tomato color sorting robot.
Originally, MAS was used exclusively to analysis images of material movement in blasting process.
[3] Huang yong, Zhang Ruoyu, Jiang Yinglan: Journal of Shihezi University(Natural Science).
[9] Yang Dantong, Ou Yinggang, Huang Shixing: Journal of Agricultural Mechanization Research.
[12] Liu Dejun, Zhao Mingyu, Wang Ruili: Journal of Agricultural Mechanization Research.
Originally, MAS was used exclusively to analysis images of material movement in blasting process.
[3] Huang yong, Zhang Ruoyu, Jiang Yinglan: Journal of Shihezi University(Natural Science).
[9] Yang Dantong, Ou Yinggang, Huang Shixing: Journal of Agricultural Mechanization Research.
[12] Liu Dejun, Zhao Mingyu, Wang Ruili: Journal of Agricultural Mechanization Research.
Online since: September 2014
Authors: Wei Jia Li, Lian Fa Yang
The mechanical joining of dissimilar materials is a key technology in the automotive industry as it enables the realization of car bodies that incorporate multiple materials.
Daidie: Journal of Materials Processing Technology.
Benedictus: International Journal of Fatigue.
Costello: Journal of Materials Processing Technology.
Ko: Journal of Materials Processing Technology (2014), http://dx.doi.org/10.1016/j.jmatprotec.2014.03.032
Daidie: Journal of Materials Processing Technology.
Benedictus: International Journal of Fatigue.
Costello: Journal of Materials Processing Technology.
Ko: Journal of Materials Processing Technology (2014), http://dx.doi.org/10.1016/j.jmatprotec.2014.03.032
Online since: October 2013
Authors: Yu Can Fu, Hua Li, Zi Yang Cao, Zhen Yin
The various parts of the material properties of the geometric model and unit type were defined, the five kinds of element types and five kinds of material parameters are given in Table 1, and the area of the SSFUT and air field were meshed with proper mesh density, the finite element model is shown in Fig. 5.
Foundation item: Project supported by National Natural Science Foundation of China (51075288), Natural Science Foundation of Provincial universities (12KJB460010) and Jiangsu Natural Science Foundation (BK2011314) Reference [1] R.
[2] S.Yoshizawa, T.Ikeda, A.Ito: submitted to Journal of Med Biol Eng Comput (2009) [3] T.
Kanda: submitted to Journal of Sensors and Actuators (2009) [4] S.Yuan, Z.Zhou, G.Wang: submitted to Journal of Microelectronic Engineering (2003) [5] L.QIN, L.LI, L.K.WANG: submitted to Journal of Functional Materials (2007) [6] X.P MO.: submitted to Journal of Technical Acoustics (2007) [7] G.ZHOU, W.SHOU: submitted to Journal of Technical Acoustics (2002) [8] P.ZHANG, X.P.
HE: submitted to Journal of Shaanxi Normal University (2009)
Foundation item: Project supported by National Natural Science Foundation of China (51075288), Natural Science Foundation of Provincial universities (12KJB460010) and Jiangsu Natural Science Foundation (BK2011314) Reference [1] R.
[2] S.Yoshizawa, T.Ikeda, A.Ito: submitted to Journal of Med Biol Eng Comput (2009) [3] T.
Kanda: submitted to Journal of Sensors and Actuators (2009) [4] S.Yuan, Z.Zhou, G.Wang: submitted to Journal of Microelectronic Engineering (2003) [5] L.QIN, L.LI, L.K.WANG: submitted to Journal of Functional Materials (2007) [6] X.P MO.: submitted to Journal of Technical Acoustics (2007) [7] G.ZHOU, W.SHOU: submitted to Journal of Technical Acoustics (2002) [8] P.ZHANG, X.P.
HE: submitted to Journal of Shaanxi Normal University (2009)
Online since: October 2015
Authors: Byeong Soo Kim, Byung Young Moon
Thus, its use has been expanded gradually over time in many industrial areas such as aerospace, automotive, construction materials and sports goods.
But the application is only for low value waste such as filler, reinforcement, or construction materials.
Nitric acid solutions can decompose carbon fiber in the composite materials.
For this reason, they can dissolve organic materials.
The epoxy resin materials are manufactured by condensation polymerization, releasing small molecules such as water and alcohol.
But the application is only for low value waste such as filler, reinforcement, or construction materials.
Nitric acid solutions can decompose carbon fiber in the composite materials.
For this reason, they can dissolve organic materials.
The epoxy resin materials are manufactured by condensation polymerization, releasing small molecules such as water and alcohol.
Online since: October 2023
Authors: Svitlana Davydivna Lapovska, Sergii G. Guzii, Olena Prysiazhna, Oleksiy Khodakovskyy, Viktor Pokaliuk
Bakul Institute for Superhard materials National Science Academy Ukraine III-7-22 (0784) "Development of new composite materials with ceramic and polymer matrices with a high level of absorption of electromagnetic radiation in a wide frequency range for the needs of electronic instrumentation, the Internet, mobile communications, etc."
Journal of Nano- and Electronic Physics. 9(5), (2017) 05014-1-05014-5
Bogush, et al., Novel materials for electromagnetic shields.
Texture of dispersed and porous materials.
Thermography of building materials.
Journal of Nano- and Electronic Physics. 9(5), (2017) 05014-1-05014-5
Bogush, et al., Novel materials for electromagnetic shields.
Texture of dispersed and porous materials.
Thermography of building materials.