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Online since: March 2016
Authors: Jian Sheng Chen, Yang Wang, Zhi Qiang Tao
Conventional thermal conductive filler include oxide materials, such as Al2O3, MgO, ZnO, etc; nitride materials, such as AlN, BN, Si3N4, etc; and carbide materials, such as SiC, B4C, etc.
Luo, Application of Thermally Conductive Filler in Insulating Polymer Materials, Insulating Materials. 46(2013) 26-28
Uno, Thermal conductivity of polymer filled with carbon materials: effect of conductive particle chains on thermal conductivity, Journal of Applied Polymer Science. 30(1985) 2225-2235
Journal of Applied Polymer Science, 16(2015) Web published DOI: 10.1002/APP.41889
Takezawa, Study of high thermal conductive epoxy resins containing controlled high-order structures, Journal of Applied Polymer Science. 9(2003) 2464-2467
Luo, Application of Thermally Conductive Filler in Insulating Polymer Materials, Insulating Materials. 46(2013) 26-28
Uno, Thermal conductivity of polymer filled with carbon materials: effect of conductive particle chains on thermal conductivity, Journal of Applied Polymer Science. 30(1985) 2225-2235
Journal of Applied Polymer Science, 16(2015) Web published DOI: 10.1002/APP.41889
Takezawa, Study of high thermal conductive epoxy resins containing controlled high-order structures, Journal of Applied Polymer Science. 9(2003) 2464-2467
Online since: July 2011
Authors: Sheng Qiang, Yang Zhang
Judging from the effect of these materials application, the materials selection has achieved the goal of crack prevention.
In every area, different covering materials are used to cover the full area.
All the thermal insulation materials covered 15 days.
Cao: Journal of Hydraulic Engineering, Vol. 37(2006), p. 963 (In Chinese) [2] S.
Xie : Chinese Journal of Geotechnical Engineering, Vol. 24(2002), p175 (In Chinese) [8] S.
In every area, different covering materials are used to cover the full area.
All the thermal insulation materials covered 15 days.
Cao: Journal of Hydraulic Engineering, Vol. 37(2006), p. 963 (In Chinese) [2] S.
Xie : Chinese Journal of Geotechnical Engineering, Vol. 24(2002), p175 (In Chinese) [8] S.
Online since: June 2006
Authors: Jie Cai Han, Bao Lin Wang
awangbl2001@hotmail.com, bhanjc@hit.edu.cn
Keywords: Functionally graded materials, Cracks, Fracture mechanics, Dynamic fracture
mechanics
Abstract.
Introduction In non-homogeneous materials such as functionally graded materials, the response has a strong dependence on the spatial variation of thermal and mechanical properties [1].
Conclusions A theoretical model is developed for the interactions of an array of cracks periodically located in functionally graded materials.
Miyamoto et al.: Functionally Graded Materials: Design, Processing and Applications.
Erdogan: International Journal of Engineering Science Vol.26 (1988), p. 559
Introduction In non-homogeneous materials such as functionally graded materials, the response has a strong dependence on the spatial variation of thermal and mechanical properties [1].
Conclusions A theoretical model is developed for the interactions of an array of cracks periodically located in functionally graded materials.
Miyamoto et al.: Functionally Graded Materials: Design, Processing and Applications.
Erdogan: International Journal of Engineering Science Vol.26 (1988), p. 559
Online since: July 2014
Authors: Swamy R. Narayana, Prabhu K. Narayan
The use of thermal interface materials reduced the contact resistance between the hot source and cold sink materials.
The factors considered in ANOVA are materials in contact, load and interface materials.
Seetharaamu: ASEAN Journal of Science and Technology for Development ,18 (2001) p. 15
Wu, Experimental Thermal and Fluid Science, 25 (2001) p. 349
Dusel: Applied Surface Science, 246 (2004) p. 290.
The factors considered in ANOVA are materials in contact, load and interface materials.
Seetharaamu: ASEAN Journal of Science and Technology for Development ,18 (2001) p. 15
Wu, Experimental Thermal and Fluid Science, 25 (2001) p. 349
Dusel: Applied Surface Science, 246 (2004) p. 290.
Online since: December 2014
Authors: Hong Ling Liu, Wu Zhang, Xiao Liu, Xue Mei Li, Wen Zheng Cheng
Introduction
La1-xSrxMO3 nanoparticles have attracted increasing interest to material science due to their special magnetic and electrical properties [1-3].
In this process, high purity acetates of La(CH3COO)3. xH2O, Mn (CH3COO)2. 4H2O, and Sr(CH3COO)2 were used as starting materials.
Fig. 2 Representation of typical procedure applied for the bilayer OA coating on LSMO Surface functionalization with inorganic materials Core shell types of La1-xSrxMO3 nanoparticles have been investigated by several researchers, these nanoparticles have La1-xSrxMO3 core with an outer shell of inorganic materials.
References [1] Daengsakul S, Thomas C and Thomas I: Nanoscale research letters (2009) [2] Kačenka M, Kaman O and Kotek J: Journal of Materials Chemistry (2011) [3] Louguet S, Rousseau B and Epherre R: Polymer Chemistry (2012) [4] Zhang K and Holloway T: Journal of nanoscience and nanotechnology, (2010) [5] Manh D H, Phong P T and Nam P H : Physica B: Condensed Matter (2014) [6] Jadhav S V, Nikam D S and Khot V M: New Journal of Chemistry (2013) [7]Thorat N D, Patil R M and Khot V M : New Journal of Chemistry (2013) [8] Thorat N D and Khot V M: Journal of Physics D: Applied Physics, (2013) [9] Prasad N K and Hardel L: Journal of Magnetism and Magnetic Materials (2009) [10] Moradi J and Ghazi M E: Journal of Solid State Chemistry France, (2014) [11] Giri A, Makhal A and Ghosh B: Nanoscale (2010) [12] Thorat N D and Khot V M: Colloids and Surfaces B: Biointerfaces (2013) [13] Sun S, Wei C and Zhu Z: Chinese Physics B (2014) [14] Ren Q, Zhang Y and Chen Y: Journal of sol-gel science
and technology (2013) [15] Nguyen H N and Duong T M: Ieee Transactions On Magnetics (2014) [16] Rostam A and Salamati H: Journal of Magnetism and Magnetic Materials (2009) [17] Cheng Y L, Dai J M and Zhu X B : Nanoscale research letters (2009) [18] Pana O and Turcu R: Journal of Physics: Conference Series. (2009) [19] Eshraghi M and Kameli P: Journal of Materials Science Research (2014) [20] Thorat N D, Shinde K P and Pawar S H: Dalton Transactions (2012) [21] Epherre R, Duguet E and Mornet S : Journal of Materials Chemistry (2011) [22] Kaman O, Pollert E and Veverka P: Nanotechnology (2009)
In this process, high purity acetates of La(CH3COO)3. xH2O, Mn (CH3COO)2. 4H2O, and Sr(CH3COO)2 were used as starting materials.
Fig. 2 Representation of typical procedure applied for the bilayer OA coating on LSMO Surface functionalization with inorganic materials Core shell types of La1-xSrxMO3 nanoparticles have been investigated by several researchers, these nanoparticles have La1-xSrxMO3 core with an outer shell of inorganic materials.
References [1] Daengsakul S, Thomas C and Thomas I: Nanoscale research letters (2009) [2] Kačenka M, Kaman O and Kotek J: Journal of Materials Chemistry (2011) [3] Louguet S, Rousseau B and Epherre R: Polymer Chemistry (2012) [4] Zhang K and Holloway T: Journal of nanoscience and nanotechnology, (2010) [5] Manh D H, Phong P T and Nam P H : Physica B: Condensed Matter (2014) [6] Jadhav S V, Nikam D S and Khot V M: New Journal of Chemistry (2013) [7]Thorat N D, Patil R M and Khot V M : New Journal of Chemistry (2013) [8] Thorat N D and Khot V M: Journal of Physics D: Applied Physics, (2013) [9] Prasad N K and Hardel L: Journal of Magnetism and Magnetic Materials (2009) [10] Moradi J and Ghazi M E: Journal of Solid State Chemistry France, (2014) [11] Giri A, Makhal A and Ghosh B: Nanoscale (2010) [12] Thorat N D and Khot V M: Colloids and Surfaces B: Biointerfaces (2013) [13] Sun S, Wei C and Zhu Z: Chinese Physics B (2014) [14] Ren Q, Zhang Y and Chen Y: Journal of sol-gel science
and technology (2013) [15] Nguyen H N and Duong T M: Ieee Transactions On Magnetics (2014) [16] Rostam A and Salamati H: Journal of Magnetism and Magnetic Materials (2009) [17] Cheng Y L, Dai J M and Zhu X B : Nanoscale research letters (2009) [18] Pana O and Turcu R: Journal of Physics: Conference Series. (2009) [19] Eshraghi M and Kameli P: Journal of Materials Science Research (2014) [20] Thorat N D, Shinde K P and Pawar S H: Dalton Transactions (2012) [21] Epherre R, Duguet E and Mornet S : Journal of Materials Chemistry (2011) [22] Kaman O, Pollert E and Veverka P: Nanotechnology (2009)
Online since: August 2014
Authors: Noor Amira Sarani, A.M. Leman, A.A. Kadir
Clay brick is one of the building materials that have been used in the construction field for thousand years.
Journal of Hazardous Materials, 137 (2006), pp. 1810-1816
Leonardo Journal of Sciences, 14 (2009), pp. 74-77
Material Sciences, 589 (2008)
Advanced Materials Research.
Journal of Hazardous Materials, 137 (2006), pp. 1810-1816
Leonardo Journal of Sciences, 14 (2009), pp. 74-77
Material Sciences, 589 (2008)
Advanced Materials Research.
Online since: August 2014
Authors: J. Temuujin, A. Minjigmaa, U. Bayarzul, Ts. Zolzaya, B. Davaabal, J. Amgalan
Fundamentals of Geopolymers and Related Alkali Activated Materials
J.Temuujin, A.Minjigmaa, U.Bayarzul, Ts.Zolzaya, B.Davaabal, J.Amgalan
Institute of Chemistry and Chemical Technology, Mongolian Academy of Sciences
Ulaanbaatar 51, Mongolia
Keywords: Geopolymer binder, alkali-activated materials, coal combustion by products,
Abstract.With the increasing rate of depletion of natural raw materials for production of building materials, their sustainable usage is clearly an important topic for consideration.
Therefore, the development of new, sustainable, low carbon footprint construction materials is an important task for materials scientists and civil engineers.
Preparation of alkali activated materials from pond ashes.
Journal of Materials Science, 42 (2007) 2917–33
, Construction and Building Materials, 30 (2012) 400–05 [6] J.Davidovits and Sawyer, US Patent 4,509,985 [7] J.Davidovits, Geopolymers: Inorganic polymeric new materials, Journal of thermal analysis, 37 (1991) 1633-1656 [8] V.Glukhovskii, “Soil silicates”, Gosstroiizdat, 1959.
Therefore, the development of new, sustainable, low carbon footprint construction materials is an important task for materials scientists and civil engineers.
Preparation of alkali activated materials from pond ashes.
Journal of Materials Science, 42 (2007) 2917–33
, Construction and Building Materials, 30 (2012) 400–05 [6] J.Davidovits and Sawyer, US Patent 4,509,985 [7] J.Davidovits, Geopolymers: Inorganic polymeric new materials, Journal of thermal analysis, 37 (1991) 1633-1656 [8] V.Glukhovskii, “Soil silicates”, Gosstroiizdat, 1959.
Online since: June 2019
Authors: Yi Qiang Wu, Xin Li Zhang, Ying Feng Zuo, Jian Wang, Jun Hua Xiao, Ming Liu, Hong Jun Chen
Materials and Methods
Materials.
China Building Materials.
Journal of materials science, 2011, 46(20): 6726
Journal of Wuhan University of Technology--Materials Science Edition, 2006, 21(1): 138-142
Journal of Building Materials, 2018,21(03):394-401.
China Building Materials.
Journal of materials science, 2011, 46(20): 6726
Journal of Wuhan University of Technology--Materials Science Edition, 2006, 21(1): 138-142
Journal of Building Materials, 2018,21(03):394-401.
Online since: August 2014
Authors: Jozef Harangozó, Karol Balog, Mária Draxlerová
Effects of retardants on the ignition of wood materials
MÁRIA DRAXLEROVÁ, JOZEF HARANGOZÓ, KAROL BALOG
Mária DRAXLEROVÁ, Ing., Institute of Safety, Environment, and Quality, maria.draxlerova@stuba.sk
Jozef HARANGOZÓ, Ing.
European Journal of Environmental and Safety Sciences.
Journal of Thermal Analysis and Calorimetry an International Forum for Thermal Studies. 110/1. 2012.
Europen Journal of Environmental and Safety Sciences. (1/1): 1-7. 2013 [7] Košík, M. et al.1986.
(Polymeric Materials and Their Fire Protection) Bratislava:ALFA, p.54 [8] Osvald, A.: Požiarno-technické vlastnosti dreva a materiálov na báze dreva (Fire-technical Characteristics of Wood and Wood-Based Materials), 8/97/A, ES TU Zvolen, 1997, ISBN 80-228-0656-0 [9] Harangozó, J., Sledovanie vplyvu retardérov horenia na proces iniciácie plameňového a bezplameňového horenia tuhých materiálov(Study of the Effects of Flame Retardants on the Initiation Process of the Flame and Flameless Combustion of Solids), Dissertation, Trnava, 2011 [10] Draxlerová, M., Vplyv retardérov na iniciáciu horenia tuhých materiálov (Effects of Retardants on the Ignition of Solid Materials), Diploma Work, Trnava, 2013
European Journal of Environmental and Safety Sciences.
Journal of Thermal Analysis and Calorimetry an International Forum for Thermal Studies. 110/1. 2012.
Europen Journal of Environmental and Safety Sciences. (1/1): 1-7. 2013 [7] Košík, M. et al.1986.
(Polymeric Materials and Their Fire Protection) Bratislava:ALFA, p.54 [8] Osvald, A.: Požiarno-technické vlastnosti dreva a materiálov na báze dreva (Fire-technical Characteristics of Wood and Wood-Based Materials), 8/97/A, ES TU Zvolen, 1997, ISBN 80-228-0656-0 [9] Harangozó, J., Sledovanie vplyvu retardérov horenia na proces iniciácie plameňového a bezplameňového horenia tuhých materiálov(Study of the Effects of Flame Retardants on the Initiation Process of the Flame and Flameless Combustion of Solids), Dissertation, Trnava, 2011 [10] Draxlerová, M., Vplyv retardérov na iniciáciu horenia tuhých materiálov (Effects of Retardants on the Ignition of Solid Materials), Diploma Work, Trnava, 2013
Online since: July 2011
Authors: Jian Hua Du, Yan Zang, Xiao Ying Zhu
The copper matrix of both friction materials are continuous,which make the bond strength of the friction materials high.
Acknowledgements The work was financially supported by the National Natural Science Foundation of China (51001117).
Yin: Journal of Central South University (Science and Technology) Vol. 39 (2008), p. 517, in Chinese [3] Y.
Deng: Journal of Academy of Armored Force Engineering Vol. 23 (2009), p. 19, in Chinese [6] R.X.
Li: The Chinese Journal of Nonferrous Metals Vol. 18 (2008), p. 1453, in Chinese
Acknowledgements The work was financially supported by the National Natural Science Foundation of China (51001117).
Yin: Journal of Central South University (Science and Technology) Vol. 39 (2008), p. 517, in Chinese [3] Y.
Deng: Journal of Academy of Armored Force Engineering Vol. 23 (2009), p. 19, in Chinese [6] R.X.
Li: The Chinese Journal of Nonferrous Metals Vol. 18 (2008), p. 1453, in Chinese