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Online since: June 2020
Authors: Jing Sun, Xin Liu, Qiu Lin Wang, Yi Chun Hao, Zi Ai Liu, Jin Long Song
H., Antimicrobial Sol–Gel Coatings | Springerlink, Journal of Sol-Gel Science and Technology. 32 (2004) 219-222
Dou, Progress in Fabrication and Application of Superhydrophobic Surfaces On Metal Substrates, Journal of Materials Engineering. volume 1 (5) (2011) 93-98
Liu, Control and Prepartion to Wettability of Material Surfaces, Journal of Materials Engineering. (4) (2008) 74-80
Advanced Materials Interfaces. 2018
Jiang, Effect of Lubricant Viscosity On the Self-Healing Properties and Electrically Driven Sliding of Droplets On Anisotropic Slippery Surfaces, JOURNAL OF MATERIALS CHEMISTRY A. 6 (8) (2018) 3414-3421
Dou, Progress in Fabrication and Application of Superhydrophobic Surfaces On Metal Substrates, Journal of Materials Engineering. volume 1 (5) (2011) 93-98
Liu, Control and Prepartion to Wettability of Material Surfaces, Journal of Materials Engineering. (4) (2008) 74-80
Advanced Materials Interfaces. 2018
Jiang, Effect of Lubricant Viscosity On the Self-Healing Properties and Electrically Driven Sliding of Droplets On Anisotropic Slippery Surfaces, JOURNAL OF MATERIALS CHEMISTRY A. 6 (8) (2018) 3414-3421
Online since: July 2021
Authors: Oleg Blazhko, Halyna Sakalova, Tamara Vasylinych, Myroslav Malovanyy
The main advantages of using adsorption materials are:
1.
After all, the utilization of sorption materials helps not only to reduce the man-made load on the environment, but also to improve the technology of creating alternative materials due to the use of high-quality clay material.
Materials and Methods In the leather industry, wastewater after tanning is considered to be the most concentrated, they make up 1% of total water consumption.
References [1] V.Iurchenko, M.Radionov, O.Melnikova, O.Rachkovskiy, L.Mykhailova, Influence on Environmental Safety of the Drinking Water of Nitrification in Water Reservoir Being a Source of Water Supply and Filter Filling Materials in Water Treatment Facilities, Problems of Emergency Situations: Materials and Technologies. 1006 (2020) 187-193
Series: Materials Science and Engineering 708 (2019) 012035 IOP Publishing
After all, the utilization of sorption materials helps not only to reduce the man-made load on the environment, but also to improve the technology of creating alternative materials due to the use of high-quality clay material.
Materials and Methods In the leather industry, wastewater after tanning is considered to be the most concentrated, they make up 1% of total water consumption.
References [1] V.Iurchenko, M.Radionov, O.Melnikova, O.Rachkovskiy, L.Mykhailova, Influence on Environmental Safety of the Drinking Water of Nitrification in Water Reservoir Being a Source of Water Supply and Filter Filling Materials in Water Treatment Facilities, Problems of Emergency Situations: Materials and Technologies. 1006 (2020) 187-193
Series: Materials Science and Engineering 708 (2019) 012035 IOP Publishing
Online since: December 2003
Authors: F.J. Monteiro, José D. Santos, M.A. Lopes, Rui A. Silva, M. Sousa, R. Barral
Bonfield, and P.A Revell: Journal of Materials Science:
Materials in Medicine, Vol. 8 (1997) p. 731-736,
[2] S.
Tetard, Journal of Materials Science: Materials in Medicine, Vol. 9, (1998), p. 221-227 [3] J Weng, X.
Chen: Journal of Biomedical Materials Research, Vol. 37, (1997), p. .335-345 [7] M.
Jansen: Journal of Biomedical Materials Research, Vol. 37, (1997), p. 60-67,
Jansen: Journal of Biomedical Materials Research, Vol. 39, (1998), p. 524-530
Tetard, Journal of Materials Science: Materials in Medicine, Vol. 9, (1998), p. 221-227 [3] J Weng, X.
Chen: Journal of Biomedical Materials Research, Vol. 37, (1997), p. .335-345 [7] M.
Jansen: Journal of Biomedical Materials Research, Vol. 37, (1997), p. 60-67,
Jansen: Journal of Biomedical Materials Research, Vol. 39, (1998), p. 524-530
Online since: March 2017
Authors: Samya Dahbi, Latifa Ezzine, Haj El Moussami
Tarng, Design optimization of cutting parameters for turning operations based on the Taguchi method, Journal of Materials Processing Technology, 84 (1998) 122-129
Groover, Fundamentals of Modern Manufacturing: Materials, Processes, and Systems, fourth ed., John Wiley & Sons, New Jersey, 2010
Siddiqueed, RSM based study of cutting temperature during hard turning with Multilayer Coated Carbide Insert, Procedia Materials Science, 6 (2014) 1233-1242
Dolinsek, Tribology of coated tools in conventional and HSC machining, Journal of Materials Processing Technology, 118 (2001) 377-384
Melkote, Effect of cutting edge geometry and work piece hardness on surface generation in the finish hard turning of AISI 52100 steel, Journal of Materials Processing Technology, 94 (1999) 216-226
Groover, Fundamentals of Modern Manufacturing: Materials, Processes, and Systems, fourth ed., John Wiley & Sons, New Jersey, 2010
Siddiqueed, RSM based study of cutting temperature during hard turning with Multilayer Coated Carbide Insert, Procedia Materials Science, 6 (2014) 1233-1242
Dolinsek, Tribology of coated tools in conventional and HSC machining, Journal of Materials Processing Technology, 118 (2001) 377-384
Melkote, Effect of cutting edge geometry and work piece hardness on surface generation in the finish hard turning of AISI 52100 steel, Journal of Materials Processing Technology, 94 (1999) 216-226
Online since: December 2006
Authors: Zhi Wei Wang, Ju Long Yuan, Ying Xue Yao, Bing Hai Lv
The experiment process is introduced in this
paper, and material remove mode is also discussed.
Komanduri: Key Engineering Materials, Vol.202-203 (2001), pp.1-14
Kirtane and et al: International Journal of Machine Tools & Manufacture, Vol.46 (2006), pp.151-169
Lu and et al: Journal of Materials Processing Technology, Vol.129 (2002), pp.171-175
Yao: Key Engineering Material, Vol.304-305 (2006), pp.71-75.
Komanduri: Key Engineering Materials, Vol.202-203 (2001), pp.1-14
Kirtane and et al: International Journal of Machine Tools & Manufacture, Vol.46 (2006), pp.151-169
Lu and et al: Journal of Materials Processing Technology, Vol.129 (2002), pp.171-175
Yao: Key Engineering Material, Vol.304-305 (2006), pp.71-75.
Online since: October 2013
Authors: Huan Lao Liu, Guang Yu Tan, Bao Yue Chen, Xiao Li Li
But Cutting force induced error has been more important as the hard cutting and hard cutting material used.
Acknowledgements: The authors would like thank to the following supports: The National Natural Science Fund Project (50975053), The State Key Laboratory Project (0810176), Guangdong Ocean University Natural Science Fund Project (1012145) and (XJG201205) References [1] R.Ramesh, M.A.Mannan, A.N.Poo: International Journal of Machine Tools & Manufacture Vol.40 (2000), p.1235 [2] H.Schwenke, W.Knapp, H.Haitjema, et al: Manufacturing Technology Vol.57 (2) (2008), p.660 [3] H.Schwenke, W.Knapp, H.Haitjema, et al: Manufacturing Technology Vol.57 (2) (2008), p. 675 [4] Eyüp Sabri Topal, Can C: Materials Processing Technology Vol. 170(2005), p.192 [5] X.Li: Inter.
,Manukid P: International Journal of Machine Tools and Manufacture Vol.44(2004), p. 1283 [9] S.Ratchev, S.
Huang, et al: International Journal of Machine Tools & Manufacture Vol. 46 (2006), p. 542 [10] T.C.
Rao: Journal of Materials Processing Technology Vol.211 (2011), p. 24 [11] Jiliweisi, Yang Jianguo, Wu Hao: Transaction of Nanjing University of Aeronautics and Astronautics Vol.37 (2005), p. 118 [12] Wu Hao, Yang Jianguo, Zhang Hangtao: Journal of Si Chuan university (engineering science edition) Vol. 40 (2008), p. 165 [13] Chen Zhijun.
Acknowledgements: The authors would like thank to the following supports: The National Natural Science Fund Project (50975053), The State Key Laboratory Project (0810176), Guangdong Ocean University Natural Science Fund Project (1012145) and (XJG201205) References [1] R.Ramesh, M.A.Mannan, A.N.Poo: International Journal of Machine Tools & Manufacture Vol.40 (2000), p.1235 [2] H.Schwenke, W.Knapp, H.Haitjema, et al: Manufacturing Technology Vol.57 (2) (2008), p.660 [3] H.Schwenke, W.Knapp, H.Haitjema, et al: Manufacturing Technology Vol.57 (2) (2008), p. 675 [4] Eyüp Sabri Topal, Can C: Materials Processing Technology Vol. 170(2005), p.192 [5] X.Li: Inter.
,Manukid P: International Journal of Machine Tools and Manufacture Vol.44(2004), p. 1283 [9] S.Ratchev, S.
Huang, et al: International Journal of Machine Tools & Manufacture Vol. 46 (2006), p. 542 [10] T.C.
Rao: Journal of Materials Processing Technology Vol.211 (2011), p. 24 [11] Jiliweisi, Yang Jianguo, Wu Hao: Transaction of Nanjing University of Aeronautics and Astronautics Vol.37 (2005), p. 118 [12] Wu Hao, Yang Jianguo, Zhang Hangtao: Journal of Si Chuan university (engineering science edition) Vol. 40 (2008), p. 165 [13] Chen Zhijun.
Online since: June 2012
Authors: Xu Dong Zhou, Zheng Xin Tang
McQueen, “New formula for calculating flow curves from high temperature constitutive data for 300 austenitic steels,” Journal of Materials Processing Technology Vol. 36(1), p. 31-42, 1992
Ruana, “Prediction of the flow stress of high-speed steel during hot deformation using a BP artificial neural network,” Journal of Materials Processing Technology Vol. 103 p. 200–205, 2000
Ruan, “Prediction of the flow stress of 0.4C–1.9Cr–1.5Mn–1.0Ni–0.2Mo steel during hot deformation,” Journal of Materials Processing Technology Vol. 116, p. 211-218, 2001
Lahiri, “Constitutive equation for elevated temperature flow behavior of plain carbon steels using dimensional analysis,” Journal of Materials Processing Technology Vol. 141, p. 219–227, 2003
Sun, “An ANFIS model for the prediction of flow stress of Ti600 alloy during hot deformation process,” Computational Materials Science Vol. 50, p. 2273–2279, 2011.
Ruana, “Prediction of the flow stress of high-speed steel during hot deformation using a BP artificial neural network,” Journal of Materials Processing Technology Vol. 103 p. 200–205, 2000
Ruan, “Prediction of the flow stress of 0.4C–1.9Cr–1.5Mn–1.0Ni–0.2Mo steel during hot deformation,” Journal of Materials Processing Technology Vol. 116, p. 211-218, 2001
Lahiri, “Constitutive equation for elevated temperature flow behavior of plain carbon steels using dimensional analysis,” Journal of Materials Processing Technology Vol. 141, p. 219–227, 2003
Sun, “An ANFIS model for the prediction of flow stress of Ti600 alloy during hot deformation process,” Computational Materials Science Vol. 50, p. 2273–2279, 2011.
Online since: November 2015
Authors: Predrag Dašić, Valery V. Kuzin, Mike Portnoy, Sergey Fedorov
The laser processing has the ability for effective machining of ceramic materials because of high energy beam acting on a very small area.
Martelli, Development and characterization of nanophase Si3N4-based ceramics, Materials Science Forum 235-238 (1997) 255-260
Shin, Chapter 9.10 - Laser machining and laser-assisted machining of ceramics, in: Comprehensive Materials Processing.
Grigoriev, Method of investigation of the stress-strain state of surface layer of machine elements from a sintered nonuniform material, Applied Mechanics and Materials 486 (2014) 32-35
Ferrato, Tribological characterization of silicon carbide and carbon materials, Journal of the European Ceramic Society 35 (4) (2015) 1147-1159
Martelli, Development and characterization of nanophase Si3N4-based ceramics, Materials Science Forum 235-238 (1997) 255-260
Shin, Chapter 9.10 - Laser machining and laser-assisted machining of ceramics, in: Comprehensive Materials Processing.
Grigoriev, Method of investigation of the stress-strain state of surface layer of machine elements from a sintered nonuniform material, Applied Mechanics and Materials 486 (2014) 32-35
Ferrato, Tribological characterization of silicon carbide and carbon materials, Journal of the European Ceramic Society 35 (4) (2015) 1147-1159
Online since: January 2015
Authors: Fang Fang Wu, Lai Hao Li, Xian Qing Yang, Wan Ling Lin, Shu Xian Hao, Shao Ling Yang, Xiao Hu, Ya Wei, Jin Xu Wang
Materials and methods
Sample preparation The experimental material consisted of grass carp (GC) and crisp grass carp at different crisping time (30d, 50d, 70d, 90d and 120d) and above samples were named as CGC1-CGC5, respectively.
There were much more interstitial materials (tissues) among intermyofibrils in CGC (Fig. 2B, 2C) than in GC (Fig. 2A).
[3] B.S.Li, X.J.Leng, X.Q.Li, et al.: Journal of Fishery Sciences of China, Vol. 15 (2008), p.1042-1049
[9] K.Hatae, F.Yoshimatsu, J.J.Matsumoto: Journal of Food Science, Vol. 49 (1984), p.721-726
[10] K.Hatae, F.Yoshimatsu, J.J.Matsumoto: Journal of Food Science, Vol. 55 (1990), p.693-696
There were much more interstitial materials (tissues) among intermyofibrils in CGC (Fig. 2B, 2C) than in GC (Fig. 2A).
[3] B.S.Li, X.J.Leng, X.Q.Li, et al.: Journal of Fishery Sciences of China, Vol. 15 (2008), p.1042-1049
[9] K.Hatae, F.Yoshimatsu, J.J.Matsumoto: Journal of Food Science, Vol. 49 (1984), p.721-726
[10] K.Hatae, F.Yoshimatsu, J.J.Matsumoto: Journal of Food Science, Vol. 55 (1990), p.693-696
Online since: August 2016
Authors: Emie A. Salamangkit-Mirasol, Rinlee Butch M. Cervera
Salamangkit-Mirasol2,b
1Advanced Ceramics Lab, Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City, Philippines
2Department of Materials Science and Engineering (Ceramic Engineering Program), College of Engineering, Mariano Marcos State University, City of Batac, Philippines
arb.cervera@coe.upd.edu.ph, beasm022808@yahoo.com
Keywords: Rice hull, Agricultural waste, Amorphous, Nanosilica, Acid precipitation.
Cervera, Production of Amorphous and Crystalline Silica from Philippine Waste Rice Hull, Advanced Materials Research. 1098 (2015) 80-85
Banerjee, Investigation of combustion of raw and acid-leached rice husk for production of pure amorphous white silica, Journal of Materials Science 23 (1988) 21-24
Okutani, Silica in Rice Hulls as Raw Materials for Silicon Semiconductors, Journal of Metals, Materials and Minerals, Vol.19 No.2, 2009, pp.51-59
Cervera, Synthesis of Amorphous Fe-doped SiO2 Anode Nanomaterial via Sol-gel Method, Advanced Materials Research. 1119 (2015) 38-42
Cervera, Production of Amorphous and Crystalline Silica from Philippine Waste Rice Hull, Advanced Materials Research. 1098 (2015) 80-85
Banerjee, Investigation of combustion of raw and acid-leached rice husk for production of pure amorphous white silica, Journal of Materials Science 23 (1988) 21-24
Okutani, Silica in Rice Hulls as Raw Materials for Silicon Semiconductors, Journal of Metals, Materials and Minerals, Vol.19 No.2, 2009, pp.51-59
Cervera, Synthesis of Amorphous Fe-doped SiO2 Anode Nanomaterial via Sol-gel Method, Advanced Materials Research. 1119 (2015) 38-42