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Online since: September 2013
Authors: Chang Lin Li, Xin Ze Wang, Hong Jian Gao, Zhong Xin Liu, Wen Zhi Song, Tian Li, Jing Liu
Journal of Materials Chemistry, 2009, 19, 489
Advanced Materials, 2009, 21, 4467
Advanced Functional Materials, 2011, 21, 4470-4477
Advanced Materials, 2010, 22, 3266-3271
Solid State Sciences, 2012, 14, 236-240
Advanced Materials, 2009, 21, 4467
Advanced Functional Materials, 2011, 21, 4470-4477
Advanced Materials, 2010, 22, 3266-3271
Solid State Sciences, 2012, 14, 236-240
Online since: August 2014
Authors: Iveta Plšková, Michal Matysík, Zdeněk Chobola
CZ.1.05/2.1.00/03.0097, as an activity of the regional Centre AdMaS "Advanced Materials, Structures and Technologies", with the financial support of the Czech Science Foundation project GA13-18870S and VUT FAST-S-13-2149 No. 23688.
Materials Evaluation. 1991. 49(10). 1312–1315
Ficker: Quasi-static compressive strength of cement-based materials.
Advanced Materials Research. 2014. 2014(897). p. 149 - 152.
Applied Mechanics and Materials. 2014. 2014(446). p. 1389 - 1394.
Materials Evaluation. 1991. 49(10). 1312–1315
Ficker: Quasi-static compressive strength of cement-based materials.
Advanced Materials Research. 2014. 2014(897). p. 149 - 152.
Applied Mechanics and Materials. 2014. 2014(446). p. 1389 - 1394.
Online since: September 2013
Authors: Irma Aswani Ahmad, Muhammad Wihardi Tjaronge, Rudy Djamaluddin, Herman Parung
One of the most promising materials is the rice husk ash (RHA).
Materials Cement.
Nanni: Construction and Building Materials Vol. 31 (2012), p. 220–225
Fayyadh: Australian Journal of Basic and Applied Sciences Vol. 3 No. 3 (2009), p. 1616-1622
Khan: Construction and Building Materials Vol. 30 (2012), p. 360–365
Materials Cement.
Nanni: Construction and Building Materials Vol. 31 (2012), p. 220–225
Fayyadh: Australian Journal of Basic and Applied Sciences Vol. 3 No. 3 (2009), p. 1616-1622
Khan: Construction and Building Materials Vol. 30 (2012), p. 360–365
Online since: July 2023
Authors: Nofriady Aziz, Kris Tri Basuki, Intan Nurhimawati, Septian Hardi, Ratih Langenati, Afiq Azfar Pratama, Muhammad Ilham Bayquni, Nizar Kamil Perwira
Rare Earth Metals (REEs) play an important role in the development of advanced materials technology in various fields, such as the use of high-purity Dy as dopants in TLD crystals for radiation workers [1].
Experimental Methods Materials & Equipment The tools and materials used were Rare Earth Hydroxide (REOH) product from PTBGN, Nitric Acid (HNO3), Sodium Carbonate (Na2CO3), Potassium Permanganate (KMnO4), Ammonium Hydroxide (NH4OH) and Inductively Coupled Plasma - Optical Emission Spectrometry (ICP-OES) Perkin Elmer Type Optima8300 for determine concentration of solution with volume 10 mL.
Eksplorium p-ISSN 0854-1418 Volume 42 No. 1, Mei 2021: 69–76 e-ISSN 2503-426X [17] Anisa Indriawati, Herman Aldila dan Verry Andre Fabiani Synthesis of Rare Earth Metal Oxides Based on Monazite Sand with pH Variations, Stannum : Jurnal Sains dan Terapan Kimia Website: https://journal.ubb.ac.id/index.php/stannum doi: 10.33019/jstk.v2i2.1953 Research paper [18] Suyanti dan MV Purwani, Pembuatan Konsentrat Neodimium dari Logam Tanah Jarang Hidroksida (REOH) Melalui Dijesti Ulang Prosiding Seminar Nasional Teknologi Energi Nuklir 2016 Batam, 4-5 Agustus 2016 ISSN: 2355-7524 [19] M.
Ser. 1198 032003 Journal of Physics: Conference Series Separation of Ce, La and Nd in rare earth hydroxide (REOH) by oxidation with potassium permanganate and precipitation [22] Renata D A and Carlos A M 2010 “Purification of Rare Earth Elements from Monazite Sulphuric Acid Leach Liquor and The Production of High-purity Ceric Oxide” Minerals Engineering 23 536–540 [23] Seana Brennan Theses and Dissertations (Comprehensive) 2020 Determination of Samarium and Dysprosium Solubility Wilfrid Laurier University, bren5440@mylaurier.ca [24] Dissolution of cerium from cerium-based conversion coatings on Al 7075-T6 in 0.1 M NaCl solutions Simon Joshi ⇑, Elizabeth A.
O’Keefe Materials Research Centre, Missouri University of Science and Technology, Rolla, MO 65409, USA Corrosion Science 60 (2012) 290–295.
Experimental Methods Materials & Equipment The tools and materials used were Rare Earth Hydroxide (REOH) product from PTBGN, Nitric Acid (HNO3), Sodium Carbonate (Na2CO3), Potassium Permanganate (KMnO4), Ammonium Hydroxide (NH4OH) and Inductively Coupled Plasma - Optical Emission Spectrometry (ICP-OES) Perkin Elmer Type Optima8300 for determine concentration of solution with volume 10 mL.
Eksplorium p-ISSN 0854-1418 Volume 42 No. 1, Mei 2021: 69–76 e-ISSN 2503-426X [17] Anisa Indriawati, Herman Aldila dan Verry Andre Fabiani Synthesis of Rare Earth Metal Oxides Based on Monazite Sand with pH Variations, Stannum : Jurnal Sains dan Terapan Kimia Website: https://journal.ubb.ac.id/index.php/stannum doi: 10.33019/jstk.v2i2.1953 Research paper [18] Suyanti dan MV Purwani, Pembuatan Konsentrat Neodimium dari Logam Tanah Jarang Hidroksida (REOH) Melalui Dijesti Ulang Prosiding Seminar Nasional Teknologi Energi Nuklir 2016 Batam, 4-5 Agustus 2016 ISSN: 2355-7524 [19] M.
Ser. 1198 032003 Journal of Physics: Conference Series Separation of Ce, La and Nd in rare earth hydroxide (REOH) by oxidation with potassium permanganate and precipitation [22] Renata D A and Carlos A M 2010 “Purification of Rare Earth Elements from Monazite Sulphuric Acid Leach Liquor and The Production of High-purity Ceric Oxide” Minerals Engineering 23 536–540 [23] Seana Brennan Theses and Dissertations (Comprehensive) 2020 Determination of Samarium and Dysprosium Solubility Wilfrid Laurier University, bren5440@mylaurier.ca [24] Dissolution of cerium from cerium-based conversion coatings on Al 7075-T6 in 0.1 M NaCl solutions Simon Joshi ⇑, Elizabeth A.
O’Keefe Materials Research Centre, Missouri University of Science and Technology, Rolla, MO 65409, USA Corrosion Science 60 (2012) 290–295.
Online since: June 2010
Authors: Yong Feng Li, Yong Ming Hui, Xin Yao, Lu Wang, Qian Wen Song, Sha Liu, Shi Miao Dong
Generally, it is a kind of
honeyed sugar which is formed during the progress that raw materials for sugar is juice expressed,
simply treated and concentrated.
Materials and Methods Substrate The experimental substrate is common available brown sugar in bulk.
Journal of Harbin Institute of Technology, 2009, 41(4): 72-76
Journal of Harbin Institute of Technology (New Series), 2005, 12(6): 603-607
Harbin: Press of Heilongjiang Science & Technology, 1994.
Materials and Methods Substrate The experimental substrate is common available brown sugar in bulk.
Journal of Harbin Institute of Technology, 2009, 41(4): 72-76
Journal of Harbin Institute of Technology (New Series), 2005, 12(6): 603-607
Harbin: Press of Heilongjiang Science & Technology, 1994.
Online since: August 2016
Authors: Dinesh K. Kanchan, Prajakta Joge, Poonam Sharma, Manish Jayswal, D.K. Awasthi
Awasthi2,e
1Department of Physics, Faculty of Science, The M.
Experimental Starting materials.
The materials used in the preparation of Blend-1 and Blend-2 of PVA:PEO:LiCF3SO3:EC system are polyvinyl alcohol (PVA) (mol. wt. = 115,000-Lobachemie), polyethylene oxide (PEO) (mol. wt. = 1000,000-Alfa Aesar), lithium trifluoromethane sulfonate (LiCF3SO3-Sigma Aldrich), ethylene carbonate (EC) (mol. wt
Gondaliya, Conductivity studies on filler free and filler doped PVA-PEO based blend polymer electrolytes, Advanced Materials Research 665 (2013) 227-232
Joge, Effect of Silicone Dioxide and Poly(ethylene glycol) on the Conductivity and Relaxation Dynamics of Poly(ethylene oxide)–Silver Triflate Solid Polymer Electrolyte, Journal of Applied Polymer Science 125 (2012) 1513-1520
Experimental Starting materials.
The materials used in the preparation of Blend-1 and Blend-2 of PVA:PEO:LiCF3SO3:EC system are polyvinyl alcohol (PVA) (mol. wt. = 115,000-Lobachemie), polyethylene oxide (PEO) (mol. wt. = 1000,000-Alfa Aesar), lithium trifluoromethane sulfonate (LiCF3SO3-Sigma Aldrich), ethylene carbonate (EC) (mol. wt
Gondaliya, Conductivity studies on filler free and filler doped PVA-PEO based blend polymer electrolytes, Advanced Materials Research 665 (2013) 227-232
Joge, Effect of Silicone Dioxide and Poly(ethylene glycol) on the Conductivity and Relaxation Dynamics of Poly(ethylene oxide)–Silver Triflate Solid Polymer Electrolyte, Journal of Applied Polymer Science 125 (2012) 1513-1520
Online since: August 2013
Authors: Cheng Bo Wu, Zhi Yuan Kang, Jin Shui Zuo, You You He, Jie Lei
Characterization Of Preparing Cold Bonded Carbon Bearing Pellets Of Metallurgical Dust For Direct Reduction
Jinshui ZUO1, Chengbo WU1, Zhiyuan KANG1, Jie LEI1, Youyou HE1
1College of Materials Science and Engineering, Chongqing University, Chongqing 400030, China
gtyj007@126.com
Keywords: dust, cold bonding, composite pellet, binder, simplex lattice method
Abstract: This paper involves the preparation of cold bonded carbon bearing pellets of metallurgical dust for direct reduction using binder.
Effects of the Composition of Residual Materials from Steelwork on the Crushing Strength of DRI [J].
Metal Science and Heat Treatment, 1984, 26(11-1): 901
International Journal of Food Engineering, 2012, 8(4): [13] Dipayan Das, Mukhopadhyay Samrat, Kaur Harpreet.
Journal of Composite Materials, 2012, 46(26): 3311
Effects of the Composition of Residual Materials from Steelwork on the Crushing Strength of DRI [J].
Metal Science and Heat Treatment, 1984, 26(11-1): 901
International Journal of Food Engineering, 2012, 8(4): [13] Dipayan Das, Mukhopadhyay Samrat, Kaur Harpreet.
Journal of Composite Materials, 2012, 46(26): 3311
Online since: September 2013
Authors: Ping Li, Tao Lv, Xue Hua Liao, Xiao Long Yang
Institute of Computer Science of Sichuan Normal University, Chengdu, Sichuan, China
2.
The Study of Traffic Accident Reproduction System, IEEE International Conference on Computer Science and Automation Engineering,2011, 7:367-370
Application of OpenGL in Traffic Accident Reconstruction[J], Journal of Highway and Transportation Research and Development, 2001.18(14):112-115
Overview of Impact Models in Accident Reconstruction[J], Journal of Traffic and Transportation Engineering, 2001.12,1(4):75-78
Study and Trend of the Technology of Accident Reconstruction[J], Journal of Kunming University of Science and Technology, 2004.6,29(3):102-105
The Study of Traffic Accident Reproduction System, IEEE International Conference on Computer Science and Automation Engineering,2011, 7:367-370
Application of OpenGL in Traffic Accident Reconstruction[J], Journal of Highway and Transportation Research and Development, 2001.18(14):112-115
Overview of Impact Models in Accident Reconstruction[J], Journal of Traffic and Transportation Engineering, 2001.12,1(4):75-78
Study and Trend of the Technology of Accident Reconstruction[J], Journal of Kunming University of Science and Technology, 2004.6,29(3):102-105
Online since: November 2011
Authors: Chang Peng Chen, Mei Lan Qi
First principles calculations of electronic and optical properties of Al1-xLaxN
Changpeng Chen, Meilan Qi
School of Science ,Wuhan University of Technology, Wuhan Hubei 430070,China
16941612@qq.com
Keywords: First-principle calculations; electronic structure; optical properties; La doped AlN.
Soaresa et al[2] The research about the luminescence from Tm3+, Tb3+, Eu3+, and Tb3+ - Eu3+ couple in AlN powder samples were carried out [3]for the potential applications as the active layer in a heterostructure design or as a fluorescent material for converting the emission from a light-emitting diode to white light.
This work has been supported by the National Natural Science Foundation of China(No.10876014) References [1] J.
Soaresa, et al .Optical Materials Volume 33, Issue 7, May 2011, Pages 1055-1058
Journal of the electrochemical society 2007 Volume 154 , Issure 9 pages: J262-J266
Soaresa et al[2] The research about the luminescence from Tm3+, Tb3+, Eu3+, and Tb3+ - Eu3+ couple in AlN powder samples were carried out [3]for the potential applications as the active layer in a heterostructure design or as a fluorescent material for converting the emission from a light-emitting diode to white light.
This work has been supported by the National Natural Science Foundation of China(No.10876014) References [1] J.
Soaresa, et al .Optical Materials Volume 33, Issue 7, May 2011, Pages 1055-1058
Journal of the electrochemical society 2007 Volume 154 , Issure 9 pages: J262-J266
Online since: November 2012
Authors: Zheng Zhao Liang, Yan Wang
The Numerical Simulation Model
It is well known that rocks are inhomogeneous material that containing many types of micro cracks, joints and grains with different sizes, which leads to its anisotropic and nonlinear deformation behavior.
In order to describe the inhomogeneity of the rock material, we assume that the mechanical properties of the microstructural elements follow the Weibull distribution.
Table 1 Material parameters Material Density[g/cm3] Compressive strength[MPa] Internal friction angle φ[°] Elastic modulus[MPa] Poisson ratio Slate 2.7 29 28 9.2~10 0.3 In the following simulations, the model is meshed into 200×400=80,000 elements and the element size is 1mm×1mm.
Acknowledgements This work was supported by National Program on Key Basic Research Project of China (973 program) (Grant No. 2011CB013500), the Natural Science Foundation of China (Grant Nos. 51079017 and 51004020), the Foundation for the Author of National Excellent Doctoral Dissertation of PR China (No. 200960) and the Program for New Century Excellent Talents in University (NECT-09-0258).
[3] Liu H Y, Kou S Q, Lindqvist P A, Tang C A: International Journal of Rock Mechanics & Mining Sciences, Vol.39(2002), p.491-505
In order to describe the inhomogeneity of the rock material, we assume that the mechanical properties of the microstructural elements follow the Weibull distribution.
Table 1 Material parameters Material Density[g/cm3] Compressive strength[MPa] Internal friction angle φ[°] Elastic modulus[MPa] Poisson ratio Slate 2.7 29 28 9.2~10 0.3 In the following simulations, the model is meshed into 200×400=80,000 elements and the element size is 1mm×1mm.
Acknowledgements This work was supported by National Program on Key Basic Research Project of China (973 program) (Grant No. 2011CB013500), the Natural Science Foundation of China (Grant Nos. 51079017 and 51004020), the Foundation for the Author of National Excellent Doctoral Dissertation of PR China (No. 200960) and the Program for New Century Excellent Talents in University (NECT-09-0258).
[3] Liu H Y, Kou S Q, Lindqvist P A, Tang C A: International Journal of Rock Mechanics & Mining Sciences, Vol.39(2002), p.491-505