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Online since: October 2020
Authors: Pedro Paiva Brito, Carlos Trivellato de Carvalho Filho
Experimental Procedures
Materials.
Coating and substrate materials selected for this study were, respectively, AA6351 aluminium alloy and low carbon steel plate AISI 1020.
Santos: Journal of Material Processing Technology Vol. 214 (2014), p. 1062. doi: 10.1016/j.jmatprotec.2013.12.008
Carvalho: Journal of Material Processing Technology Vol. 245 (2017), p. 91. doi: 10.1016/j.jmatprotec.2017.02.016
Pyzalla: Advanced Engineering Materials Vol. 10 (2008), p. 961. doi: 10.1002/adem.200800028
Coating and substrate materials selected for this study were, respectively, AA6351 aluminium alloy and low carbon steel plate AISI 1020.
Santos: Journal of Material Processing Technology Vol. 214 (2014), p. 1062. doi: 10.1016/j.jmatprotec.2013.12.008
Carvalho: Journal of Material Processing Technology Vol. 245 (2017), p. 91. doi: 10.1016/j.jmatprotec.2017.02.016
Pyzalla: Advanced Engineering Materials Vol. 10 (2008), p. 961. doi: 10.1002/adem.200800028
Online since: May 2020
Authors: N.V. Romanova, Gulgena D. Shakirova, Lenar N. Shafigullin
Introduction
Polypropylene-based materials are widely used for truck parts.
Jones, Engineering materials, Published by Elsevier Ltd, 1 (2005) 672
Mohler, DSC on polymeric materials, NETZSCH Annual for Science and Industry, 1 (1991) 93
“Innovative machine building technologies, equipment and materials – 2017”.
Shafigullina, Investigation of UV resistance in polyurethane foam, Research journal of pharmaceutical and chemical science, 8(4) (2017) 373-378
Jones, Engineering materials, Published by Elsevier Ltd, 1 (2005) 672
Mohler, DSC on polymeric materials, NETZSCH Annual for Science and Industry, 1 (1991) 93
“Innovative machine building technologies, equipment and materials – 2017”.
Shafigullina, Investigation of UV resistance in polyurethane foam, Research journal of pharmaceutical and chemical science, 8(4) (2017) 373-378
Online since: February 2014
Authors: Na Sui, Guo Liang Han, Ming Li Liu
Materials and methods
Plant growth and salt treatment
A. littoralis which grown in the Yellow River Delta were used as material.
Acknowledgements We are grateful for financial support from the NSFC (National Natural Science Research Foundation of China, project No. 31300205), Natural Science Research Foundation of Shandong (ZR2013CQ009) and the Program for Scientific research innovation team in Colleges and universities of Shandong Province.
Journal of plant research 120.4 (2007): 529-537
Journal of the Linnean Society of London, Botany 60.383 (1968): 283-288
Journal of experimental botany 41.1 (1990): 41-46.
Acknowledgements We are grateful for financial support from the NSFC (National Natural Science Research Foundation of China, project No. 31300205), Natural Science Research Foundation of Shandong (ZR2013CQ009) and the Program for Scientific research innovation team in Colleges and universities of Shandong Province.
Journal of plant research 120.4 (2007): 529-537
Journal of the Linnean Society of London, Botany 60.383 (1968): 283-288
Journal of experimental botany 41.1 (1990): 41-46.
Online since: March 2013
Authors: Qing Yan Shuai, Ya Bo He
This subsystem is equipped with the management function from engineering archives to company information, including the receiving, distribution, storage, borrowing and return of relevant materials[6].
(in Chinese) [2] Guangshe Jia, Guangbin Wang: China Civil Engineering Journal, pp.7-10, March 2003.
Paulson: Journal of Construction Engineering and Management, October 1998
[6] Yuhua Liu, “Study on the Project Controlling for Rail Transit Engineering”, Wuhan: Huazhong University of Science and Technology, 2005.
(in Chinese) [7] Juan Liu, Qi Song, Li Haiyue: Science and Technology Progress and Policy, pp.126-127, 2005.
(in Chinese) [2] Guangshe Jia, Guangbin Wang: China Civil Engineering Journal, pp.7-10, March 2003.
Paulson: Journal of Construction Engineering and Management, October 1998
[6] Yuhua Liu, “Study on the Project Controlling for Rail Transit Engineering”, Wuhan: Huazhong University of Science and Technology, 2005.
(in Chinese) [7] Juan Liu, Qi Song, Li Haiyue: Science and Technology Progress and Policy, pp.126-127, 2005.
Online since: May 2014
Authors: Shuai Xia Liu, Liang Chen, Yu Mei Gao
Hexavalent chromium leaching influenced factors in the weathering chrome slag
Shuaixia Liua,b,*, Liang Chena, Yumei Gaoc
aSchool of Environmental Science and Engineering, Donghua University, Shanghai 201602 ,China
bFaculty of Environmental Engineering, Henan Institute of Engineering, Zhengzhou 450007,China
cFaculty of Material and Chemical Engineering, Henan Institute of Engineering, Zhengzhou 450007,China
alsx94528@163.com
Keywords: weathering chromium slag; hexavalent chromium; leaching factors;
Abstract.The distribution of hexavalent chromium in the weathering slag was studied, as well as the influenced factors of aqueous agent leaching chromium.
Iron calcium aluminate solid solution of calcium 5 indissolvable Experiment Materials The experimental chromium slag is from a previous Wulibao Chemical Factory in Zhengzhou province.
Journal of Safety, 2003, (06):33-35 [2] U.S.
Journal of Environmental Science and Research, 2005,18,(S1):8-11 [4] Burke, T; Fagliano, J; Goldoft, M; et al.
Journal of Inorganic Salt Industry. 2006,(09):8-12 [6]HillierS·Role of quantitative mineralogical analysis in the investigation of sites contaminated by chromite ore processing residue[J]·Science of the Total Enviroment, 2003, 308(1~3): 195-210
Iron calcium aluminate solid solution of calcium 5 indissolvable Experiment Materials The experimental chromium slag is from a previous Wulibao Chemical Factory in Zhengzhou province.
Journal of Safety, 2003, (06):33-35 [2] U.S.
Journal of Environmental Science and Research, 2005,18,(S1):8-11 [4] Burke, T; Fagliano, J; Goldoft, M; et al.
Journal of Inorganic Salt Industry. 2006,(09):8-12 [6]HillierS·Role of quantitative mineralogical analysis in the investigation of sites contaminated by chromite ore processing residue[J]·Science of the Total Enviroment, 2003, 308(1~3): 195-210
Online since: November 2015
Authors: R. Padmanaban, Saikiran Samudrala, G. Venkata Koteswara Rao, R. Sudheer Chowdry, K. Venkata Raman
The specific acoustical impedance of a material is defined as the product of its density (r) and Ultrasonic velocity (U).
Acoustic impedance is crucial in the determination of acoustic transmission and reflection at the boundary of two materials having different acoustic impedances, the design of ultrasonic transducers and assessing absorption of sound in a medium.
References [1] VN Ariharan, VN Meena Devi, P Nagendra Prasad, Physio- Chemical Characterization of Cotton seed Oil for its Potential use as Biodiesel, Research Journal of Pharmaceutical, Biological and Chemical Sciences Volume 4 Issue 2, April-June 2013 ,ISSN: 0975-8585
[2]Mariceli da Silva Machado, Virginia Coimbra Zuvanov, Edwin Elard Garcia, Thermophysical Properties Of Biodiesel Obtained From Vegetable Oils: Corn, Soy, Canola and Sunflower Enciclopédia Biosfera, Centro Científico Conhecer , 9 17-2012, Goiânia, v.8, N.14 [3] Amit Kumar Jain, Amit suhane, Research Approach & Prospects of Non Edible Vegetable Oil as a Potential Resource for Bio lubricant, Advanced Engineering and Applied Sciences: An International Journal December 2012 ,(1):23-32, [4] Chen Boshui, Sun Yaqui, Fang Jianhua, Wang Jiu.
Progress in Energy and Combustion Science, 1998 Vol. 24, pp. 125–16.
Acoustic impedance is crucial in the determination of acoustic transmission and reflection at the boundary of two materials having different acoustic impedances, the design of ultrasonic transducers and assessing absorption of sound in a medium.
References [1] VN Ariharan, VN Meena Devi, P Nagendra Prasad, Physio- Chemical Characterization of Cotton seed Oil for its Potential use as Biodiesel, Research Journal of Pharmaceutical, Biological and Chemical Sciences Volume 4 Issue 2, April-June 2013 ,ISSN: 0975-8585
[2]Mariceli da Silva Machado, Virginia Coimbra Zuvanov, Edwin Elard Garcia, Thermophysical Properties Of Biodiesel Obtained From Vegetable Oils: Corn, Soy, Canola and Sunflower Enciclopédia Biosfera, Centro Científico Conhecer , 9 17-2012, Goiânia, v.8, N.14 [3] Amit Kumar Jain, Amit suhane, Research Approach & Prospects of Non Edible Vegetable Oil as a Potential Resource for Bio lubricant, Advanced Engineering and Applied Sciences: An International Journal December 2012 ,(1):23-32, [4] Chen Boshui, Sun Yaqui, Fang Jianhua, Wang Jiu.
Progress in Energy and Combustion Science, 1998 Vol. 24, pp. 125–16.
Online since: August 2012
Authors: Luo Xing Li, Yan Lou
Zhao: Materials Science and Engineering A, Vol. 527(2010), pp.2022-2026
Wagner: Materials Science and Engineering A, Vol. 506(2009), pp.141-147
Jin and Z.S.Cui: Materials Science and Engineering A, Vol. 527(2010), pp.3111-3119
Luan: Advanced Materials Research, Vol. 263(2011), pp.1326-1330
Cui: Journal of Shanghai Jiaotong University, Vol. 44(2010), pp.437-441.
Wagner: Materials Science and Engineering A, Vol. 506(2009), pp.141-147
Jin and Z.S.Cui: Materials Science and Engineering A, Vol. 527(2010), pp.3111-3119
Luan: Advanced Materials Research, Vol. 263(2011), pp.1326-1330
Cui: Journal of Shanghai Jiaotong University, Vol. 44(2010), pp.437-441.
Preparation and Application Study of Nano-Sized Organic Bentonite Used for Composite Flame Retardant
Online since: November 2012
Authors: Shu Guang Liu, Zhen Yi Zhang, Hui Peng, Xu Wang
Preparation and Application Study of Nano-sized Organic Bentonite Used for Composite Flame Retardant
Shuguang Liu1, a, Zhenyi Zhang2, b , Hui Peng3,c, and Xu Wang4,d
1,2,3,4 College of materials science and engineering, shandong university of technology, 255049, Zibo, Shandong, P.R.
The flame retardancy and mechanical properties of these materials were characterized.
The LOI of nanocomposite materials decreased slightly when decreasing the dosage of flame retardant.
Journal of Contaminant Hydrology. 47 (2001) 255-264
European Polymer Journal. 43 (2007) 345-359
The flame retardancy and mechanical properties of these materials were characterized.
The LOI of nanocomposite materials decreased slightly when decreasing the dosage of flame retardant.
Journal of Contaminant Hydrology. 47 (2001) 255-264
European Polymer Journal. 43 (2007) 345-359
Online since: June 2023
Authors: Zulkifli Djafar, Taufiqqurrahman Zulkifli, Nasruddin Azis
Introduction
Composites from fiber materials are continuously researched and developed to become alternative materials to replace metal materials, due to the superior properties of fiber composites.
Sutapa Gentur, Ramie Woven Reinforced Epoxy Composite (RWREC): Tensile Strength Analysis, International Journal of Engineering and Science Applications (IJEScA). 1 (2014) 55–66
Shokrieh, Residual Stresses in Composite Materials, in: Residual Stresses in Composite Materials, Edited by S.
Ahmadi, Residual tensile strength monitoring of drilled composite materials by acoustic emission, Materials and Design. 40 (2012) 229–236. doi: 10.1016/j.matdes.2012.03.040
McCarthy, Comparison of open hole tension characteristics of high strength glass and carbon fibre-reinforced composite materials, Composites Science and Technology. 68 (2008) 2770-2778. doi: 10.1016/j.compscitech.2008.06.003
Sutapa Gentur, Ramie Woven Reinforced Epoxy Composite (RWREC): Tensile Strength Analysis, International Journal of Engineering and Science Applications (IJEScA). 1 (2014) 55–66
Shokrieh, Residual Stresses in Composite Materials, in: Residual Stresses in Composite Materials, Edited by S.
Ahmadi, Residual tensile strength monitoring of drilled composite materials by acoustic emission, Materials and Design. 40 (2012) 229–236. doi: 10.1016/j.matdes.2012.03.040
McCarthy, Comparison of open hole tension characteristics of high strength glass and carbon fibre-reinforced composite materials, Composites Science and Technology. 68 (2008) 2770-2778. doi: 10.1016/j.compscitech.2008.06.003
Online since: May 2020
Authors: Anatoliy I. Kupchishin, Marat N. Niyazov, Buvkhan G. Taipova
Introduction
The widespread use of polymer materials in various fields of science and technology is explained by the presence of a certain set of properties in them that are not possessed by most of traditional materials [1 – 7].
Geers, Micromechanical modelling of reversible and irreversible thermo-mechanical deformation of oriented polyethylene terephthalate, Computational Materials Science. 98 (2015) 189-200
Series: Material Science and Engineering. 110 012037 (2016) 1-5
Series: Material Science and Engineering 510 012025 (2019) 1-5
Series: Materials Science and Engineering. 81 012005 (2015) 1-4. (81 011002)
Geers, Micromechanical modelling of reversible and irreversible thermo-mechanical deformation of oriented polyethylene terephthalate, Computational Materials Science. 98 (2015) 189-200
Series: Material Science and Engineering. 110 012037 (2016) 1-5
Series: Material Science and Engineering 510 012025 (2019) 1-5
Series: Materials Science and Engineering. 81 012005 (2015) 1-4. (81 011002)