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Online since: May 2020
Authors: Jin Hui Xu, Lin Wu, Yu Xiao Yang, Xiang Kang, Ya Hu, Sha Sha Shu, Ying Liu, Jia Ming Liu
Compounding CeO2 with graphene materials improve its charge and discharge stability.
Preparation of Electrode Materials and Electrochemical Characterization.
As can be seen in Figure 5c, the performance of the CeO2/rGO material is far superior to that of the CeO2 or rGO materials.
Zhang and W.J.Zhang, Effect of reduced graphene oxide content on electrochemical performance of LVP/C@rGO composites, Journal of Heilongjiang University of Science and Technology. 28(2018) 267-272
[12] Sarpoushi MR, Nasibi M and Golozar MA, Electrochemical investigation of graphene/cerium oxide nanoparticles as an electrode material for supercapacitors, Materials Science in Semiconductor Processing. 26(2014) 374-378
Preparation of Electrode Materials and Electrochemical Characterization.
As can be seen in Figure 5c, the performance of the CeO2/rGO material is far superior to that of the CeO2 or rGO materials.
Zhang and W.J.Zhang, Effect of reduced graphene oxide content on electrochemical performance of LVP/C@rGO composites, Journal of Heilongjiang University of Science and Technology. 28(2018) 267-272
[12] Sarpoushi MR, Nasibi M and Golozar MA, Electrochemical investigation of graphene/cerium oxide nanoparticles as an electrode material for supercapacitors, Materials Science in Semiconductor Processing. 26(2014) 374-378
Online since: September 2017
Authors: Slobodna Mitrovic, Emanuele Savini, Dragan Dzunic
The Strange Case of Compacted Graphite Iron: A Remarkable Option with Unique Material Properties or an Unusable Alloy?
Moreover, instead of magnesium, it is also possible to control the shape of graphite with other materials (e.g. rare earths).
Fragassa: Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science Vol 231.1 (2017), p. 18-30. … [10] G.
Fragassa: International Journal of Quality Research 10.1, p. 143-158
Schumacher: Materials Science and Engineering A, 413-414 (2005), p. 339-345.
Moreover, instead of magnesium, it is also possible to control the shape of graphite with other materials (e.g. rare earths).
Fragassa: Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science Vol 231.1 (2017), p. 18-30. … [10] G.
Fragassa: International Journal of Quality Research 10.1, p. 143-158
Schumacher: Materials Science and Engineering A, 413-414 (2005), p. 339-345.
Online since: September 2013
Authors: Haruyama Shigeyuki, Didik Nurhadiyanto, Kazuya Ushijima, Ken Kaminishi, Dai Heng Chen
Introduction
As a replacement for gaskets containing asbestos material, many researchers have studied the use of metal gasket materials.
Material and Method Stainless steel was used as a gasket material because of its effectiveness at high temperature and its resistance to corrosion.
References [1] Saeed, H.A, Izumi, S., Sakai, S., Haruyama, S., Nagawa, M., Noda, H., Development of New Metallic Gasket and its Optimum Design for Leakage Performance, Journal of Solid Mechanics and Material Engineering, Vol. 2, No. 1 (2008), 105–114
[5] Ushijima, K., Haruyama, S., Kaminishi, K., Study on Deformed Mode of Metal Seal Materials Using Elastic Effect, Proceeding of the 8th International Conference on Innovation and Management, (2011)
[6] JIS Z2241, Metallic materials-Tensile testing-Method of test at room Temperature, Japanese Standards Association, (2011).
Material and Method Stainless steel was used as a gasket material because of its effectiveness at high temperature and its resistance to corrosion.
References [1] Saeed, H.A, Izumi, S., Sakai, S., Haruyama, S., Nagawa, M., Noda, H., Development of New Metallic Gasket and its Optimum Design for Leakage Performance, Journal of Solid Mechanics and Material Engineering, Vol. 2, No. 1 (2008), 105–114
[5] Ushijima, K., Haruyama, S., Kaminishi, K., Study on Deformed Mode of Metal Seal Materials Using Elastic Effect, Proceeding of the 8th International Conference on Innovation and Management, (2011)
[6] JIS Z2241, Metallic materials-Tensile testing-Method of test at room Temperature, Japanese Standards Association, (2011).
Online since: December 2014
Authors: V.O. Oladokun, F.T. Olagunju
MRPII integrates human resources, equipment and raw materials requirements into the overall financial and cash flow management.
In a situation where effective capacity is less than the required capacity, the enterprise avoids implementing the material plans until a realistic schedule is made which prevents waste of raw materials.
Olaitan, “Development of a Materials Requirements Planning (MRP) Software,” The Pacific Journal of Science and Technology, vol. 13, no. 1, pp. 251-257, 2012
Charles-Owaba, “Solving the Machine Set-Up Problem: A Case with a University Production Workshop.,” Global Journal of Science and Technology, vol. 2, no. 2, pp. 237-242, 2009
Ogbeifun, “Developed Personal Record Software,” Pacific Journal of Science and Technology, vol. 9, no. 2, pp. 407-412, 2008
In a situation where effective capacity is less than the required capacity, the enterprise avoids implementing the material plans until a realistic schedule is made which prevents waste of raw materials.
Olaitan, “Development of a Materials Requirements Planning (MRP) Software,” The Pacific Journal of Science and Technology, vol. 13, no. 1, pp. 251-257, 2012
Charles-Owaba, “Solving the Machine Set-Up Problem: A Case with a University Production Workshop.,” Global Journal of Science and Technology, vol. 2, no. 2, pp. 237-242, 2009
Ogbeifun, “Developed Personal Record Software,” Pacific Journal of Science and Technology, vol. 9, no. 2, pp. 407-412, 2008
Online since: November 2018
Authors: Dong Yan Shi, Feng Chun Jiang, Wasim M.K. Helal
Australian Journal of Basic and Applied Sciences. 2012, 6(12):492-498
Indian Journal of Materials Science. 2014, 2014:7 P
Dental Materials Journal. 2009, 28(6): 671-678
Dental Materials: Official Publication of the Academy of Dental Materials. 2007, 23(8):983-993
Dental Materials: Official Publication of the Academy of Dental Materials. 2006, 22(11):1035-1044
Indian Journal of Materials Science. 2014, 2014:7 P
Dental Materials Journal. 2009, 28(6): 671-678
Dental Materials: Official Publication of the Academy of Dental Materials. 2007, 23(8):983-993
Dental Materials: Official Publication of the Academy of Dental Materials. 2006, 22(11):1035-1044
Online since: September 2013
Authors: Zhi Wu Yu, Zi Guo Wang, Yu Yan Sun, Qing Yuan Li
The study for producing similar type of bond in cementitious materials to directly affect suitability of materials under impact loading might have promising prospects.
Schadler: Chemistry of Materials.
Jaeger, Nature Materials.
Stein, AIChE Journal.
Jeelani, Materials Science and Engineering A.
Schadler: Chemistry of Materials.
Jaeger, Nature Materials.
Stein, AIChE Journal.
Jeelani, Materials Science and Engineering A.
Online since: February 2026
Authors: Oleksandr Mykhailovych Dolgov, Andriy Oleksandrovich Mametyev, Serhiy Pavlovych Panchenko, Dmytro Leonidovych Kolosov, Serhii Valeriyovych Onyshchenko
The progress in materials science, development of new sterilization methods has again changed the attitude towards biomaterial implants and has attracted the attention of clinicians.
Multidisciplinary Materials Chronicles. (2024).
Key Engineering Materials. (2013). (587). 387-390.
Journal of Materials Science: Materials in Medicine (2009); 20(6):1255–1262.
Journal of the Mechanical Behavior of Biomedical Materials
Multidisciplinary Materials Chronicles. (2024).
Key Engineering Materials. (2013). (587). 387-390.
Journal of Materials Science: Materials in Medicine (2009); 20(6):1255–1262.
Journal of the Mechanical Behavior of Biomedical Materials
Online since: May 2014
Authors: Emin Bayraktar, Nikolay Dishovsky, Dhurata Katundi, Diana Zaimova, Ibrahim Miskioglu
Bayraktar, Damage initiation mechanisms of rubber, JAMME journal of archives of materials science and engineering, 28 1 (2007) 19-26
Pharr, An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments, Journal of Materials Research 7 (1992) 1564-1583
Dishovsky, State of cure evaluation by different experimental methods in thick rubber parts, JAMME, Journal of Achievements in Materials and Manufacturing Engineering, 44 2 (2011) 161-167
Krystyn, Contact Creep Compliance of viscoelastic materials via nanoindentation, Journal of Materials Research 21 6 (2006) [13] D.
Craig, Viscoelastic properties of elastomeric impression materials: polysulphide, silicone and polyether rubbers, Journal of Oral Rehabilitation 5 (1978) 121-128
Pharr, An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments, Journal of Materials Research 7 (1992) 1564-1583
Dishovsky, State of cure evaluation by different experimental methods in thick rubber parts, JAMME, Journal of Achievements in Materials and Manufacturing Engineering, 44 2 (2011) 161-167
Krystyn, Contact Creep Compliance of viscoelastic materials via nanoindentation, Journal of Materials Research 21 6 (2006) [13] D.
Craig, Viscoelastic properties of elastomeric impression materials: polysulphide, silicone and polyether rubbers, Journal of Oral Rehabilitation 5 (1978) 121-128
Online since: December 2012
Authors: A.R. Toibah, Jariah Mohd Juoi, Zulkifli Mohd Rosli, Dilip Arudra, Siti Rahmah Shamsuri, Japper Jaafar Azuraien
Glass Composite Material (GCM) sintering
Batch of powder mixtures is formulated according to weight ratios.
[6] Mohammad Shahnor Bani,Zulkifli Abdul Rashid,Ku Halim Ku Hamid,Implementation of Decision Support System for Scheduled Waste Management in Malaysia,Journal of Applied Science 11 (13) (2011) 2358-2363 [7] Hauwa ISA, A review of glass-ceramics production from silicate Wastes , International Journal of the Physical Sciences Vol. 6(30) (2011) 6781 – 6790 [8] Sivakumar Naganathan, Hashim Abdul Razak, Siti Nadzriah Abdul Hamid, Properties of controlled low-strength material made using industrial waste incineration bottom ash and quarry dust, Journal Materials and Design 33 (2012) 56–63 [9] Tarnkamol Tarvornpanich, Guilherme P.
Schiller, Sintering of glass matrix composites with small rigid inclusions, Journal of the European Ceramic Society 29 (2009) 2469–2479 [12] Richards A.
Chen, Characterisation of glass ceramics made from incinerator fly ash, Journal Ceramics International 30 (2004) 343–349 [14] Dinh-Hieu Vu, Kuen-Sheng Wang, Bui Xuan Nam, Bui Hoang Bac, Tien-Chun Chu, Preparation of humidity-controlling porous ceramics from volcanic ash and waste glass, Journal Ceramics International 37 (2011) 2845–2853 [15] Bianka V.
Sci. & Technol. 18 (2) (2010) 223 – 229 [21] Young Jun Park, Jong Heo, Conversion to glass-ceramics from glasses made by MSW incinerator fly ash for recycling, Ceramics International 28 (2002) 689–694 [22] M I Ojovan, J M Juoi, W E Lee, Application Of Glass Composite Materials For Nuclear Waste Immobilization, J Pak Mater Soc 2(2) (2008) 72-76
[6] Mohammad Shahnor Bani,Zulkifli Abdul Rashid,Ku Halim Ku Hamid,Implementation of Decision Support System for Scheduled Waste Management in Malaysia,Journal of Applied Science 11 (13) (2011) 2358-2363 [7] Hauwa ISA, A review of glass-ceramics production from silicate Wastes , International Journal of the Physical Sciences Vol. 6(30) (2011) 6781 – 6790 [8] Sivakumar Naganathan, Hashim Abdul Razak, Siti Nadzriah Abdul Hamid, Properties of controlled low-strength material made using industrial waste incineration bottom ash and quarry dust, Journal Materials and Design 33 (2012) 56–63 [9] Tarnkamol Tarvornpanich, Guilherme P.
Schiller, Sintering of glass matrix composites with small rigid inclusions, Journal of the European Ceramic Society 29 (2009) 2469–2479 [12] Richards A.
Chen, Characterisation of glass ceramics made from incinerator fly ash, Journal Ceramics International 30 (2004) 343–349 [14] Dinh-Hieu Vu, Kuen-Sheng Wang, Bui Xuan Nam, Bui Hoang Bac, Tien-Chun Chu, Preparation of humidity-controlling porous ceramics from volcanic ash and waste glass, Journal Ceramics International 37 (2011) 2845–2853 [15] Bianka V.
Sci. & Technol. 18 (2) (2010) 223 – 229 [21] Young Jun Park, Jong Heo, Conversion to glass-ceramics from glasses made by MSW incinerator fly ash for recycling, Ceramics International 28 (2002) 689–694 [22] M I Ojovan, J M Juoi, W E Lee, Application Of Glass Composite Materials For Nuclear Waste Immobilization, J Pak Mater Soc 2(2) (2008) 72-76
Online since: February 2021
Authors: Vu Ngoc Pi, Vu Trung Tuyen, Tran Ngoc Giang, Nguyen Anh Tuan, Luu Anh Tung, Thanh Tu Nguyen, Thi Hong Tran, Thanh Danh Bui
Materials Science Forum, 977, 3–11. https://doi.org/10.4028/www.scientific.net/ msf.977.3
Materials Science Forum, 977, 18–26. https://doi.org/10.4028/www.scientific.net/msf.977.18
Materials Science Forum, 950, 24–31. https://doi.org/10.4028/www.scientific.net/msf.950.24
In IOP Conference Series: Materials Science and Engineering. (2018).
Journal of Mechanical Science and Technology 31 (4) (2017).
Materials Science Forum, 977, 18–26. https://doi.org/10.4028/www.scientific.net/msf.977.18
Materials Science Forum, 950, 24–31. https://doi.org/10.4028/www.scientific.net/msf.950.24
In IOP Conference Series: Materials Science and Engineering. (2018).
Journal of Mechanical Science and Technology 31 (4) (2017).