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Online since: November 2025
Authors: Josef Kasl, Josef Duliškovič, David Aišman, Hana Jirková
Hydrogen degrades the mechanical properties of most structural metal materials, especially steel.
Due to the length of the pipeline, it is necessary to use economically inexpensive materials [5].
Journal of Natural Gas Science and Engineering. 101 (2022) 104534 [2] M.
Materials Science and Engineering A, 398 (2005) 37–46 [3] L.
AIMS Materials Science, 3(4) (2014) 1350-1364 [15] M.
Due to the length of the pipeline, it is necessary to use economically inexpensive materials [5].
Journal of Natural Gas Science and Engineering. 101 (2022) 104534 [2] M.
Materials Science and Engineering A, 398 (2005) 37–46 [3] L.
AIMS Materials Science, 3(4) (2014) 1350-1364 [15] M.
Online since: August 2014
Authors: Yuan Yuan Luan, Dan Dan Peng, Yi Fei Guo, Zhen Fu
Improvement on temperature susceptibility of matrix asphalt modified with natural rock asphalt
Zhen FU1, a, YuanYuan Luan2,b ,Dan Dan Peng1,c ,Yi Fei Guo1,d
1School of Materials Science and engineering , Chang' an University, Xi'an Shaanxi,710064, China
2 School of Highway , Chang' an University, Xi'an Shanxi,710064, China
afuzhen524@163.com, b luanyuanyuan427@163.com , c784514363@qq.com,
d250617333@qq.com
Keywords: Highway engineering, Natural rock asphalt, Matrix asphalt, Temperature susceptibility
Abstract.
Introduction The asphalt pavement using petroleum asphalt as binding material is the main form of pavement in China and other countries.
Materials and Test Methodology The matrix asphalt used in this study is West Petrochemical 70 # ,and the natural asphalt is natural rock asphalt from Sichuan in China.
Science and Technology Department of Shaanxi Province(2013KW24, 2013kjxx-94).The financial support is greatly appreciated.
Influence of Performance of Modified Asphalt by Native RockOasphalt [ J ]Journal of Building Materials, 2007, 10 ( 6) : 740- 7441.
Introduction The asphalt pavement using petroleum asphalt as binding material is the main form of pavement in China and other countries.
Materials and Test Methodology The matrix asphalt used in this study is West Petrochemical 70 # ,and the natural asphalt is natural rock asphalt from Sichuan in China.
Science and Technology Department of Shaanxi Province(2013KW24, 2013kjxx-94).The financial support is greatly appreciated.
Influence of Performance of Modified Asphalt by Native RockOasphalt [ J ]Journal of Building Materials, 2007, 10 ( 6) : 740- 7441.
Online since: March 2013
Authors: Ekmel Ozbay, Semih Cakmakyapan, Adil B. Turhan, Demet Ataman, Mehmet Mutlu
It is observable in materials with negative real and near-zero imaginary dielectric constant.
Materials and Methods Gold nanostructures were fabricated over sapphire substrates.
Ozbay: Science, 311(5758), 189-93 (2006)
Lyandres et al.: Nature Materials, 7(6), 442-453 (2008)
Royer: Surface Science, 601, 5057–5061 (2007)
Materials and Methods Gold nanostructures were fabricated over sapphire substrates.
Ozbay: Science, 311(5758), 189-93 (2006)
Lyandres et al.: Nature Materials, 7(6), 442-453 (2008)
Royer: Surface Science, 601, 5057–5061 (2007)
Design and Development of Integrated System on CAD/CAE /CAPP for Tube-Bending in Power Plants Boiler
Online since: October 2008
Authors: Yi Nan Lai, Sheng Le Ren, Y.T. Yu
Field: Journal of Materials processing technology, Vol. 168 (2005)
No.2, pp. 327-335
Liu: Journal of Harbin Institute of Technology, Vol. 15(2008) No.2, pp. 198-201
Liu: Submitted to Key Engineering Materials (2008)
Tang: Journal of System Simulation, Vol. 18 (2006) No.10, pp. 2936-2944
Yu: Applied mechanics and Materials, Vol. 10-12 (2008), pp. 172-176.
Liu: Journal of Harbin Institute of Technology, Vol. 15(2008) No.2, pp. 198-201
Liu: Submitted to Key Engineering Materials (2008)
Tang: Journal of System Simulation, Vol. 18 (2006) No.10, pp. 2936-2944
Yu: Applied mechanics and Materials, Vol. 10-12 (2008), pp. 172-176.
Online since: January 2012
Authors: Lian Xiang Ma, Jia Na Ke, Hai Quan Yan, Yan He
As a non-metallic material with high thermal conductivity, graphite filler can be used in rubber.
Experimental Materials.
Acknowledge The authors are grateful to National Natural Science Foundation of China (No. 51076070).
Ikuko: Journal of European Ceramics Society, Vol. 20(2000), p. 1197 [3] J.J.Wang and X.S.Yi: Composites Science and Technology, Vol. 64(2004), p.1623 [4] A.K.Yoong,H.Takuaya and E.Morinobu: Scripta Materialia, Vol, 54(2006), p.31 [5] Julia A King, Michael G.Miller and Rodwick L.Barton:Journal of Applied Polymer Science, Vol. 99(2006), p.1552 [6] Bernd Weidenfeller, Michael Hofer and Frank Schilling: Composites.Part A, Vol. 33(2002), p.1041 [7] J.R.Gaier, Y.Yodevandenberg and S.Berkebile: Carbon, Vol. 41(2003), p.2187 [8] D.Kumlutas and I.H.Tavman:Composites Science and Technology, Vol. 63(2003), p.113 [9] P.Giuseppe and K.Ikuko:Journal of the European Ceramic Society, Vol. 20(2000), p.1197 [10] D.D.Li,X.W.Han and B.Q.Shentu: Synthetic Rubber Industry, Vol. 33(2010), p.49 [11] J.Yang: PhD thesis, Beijing University of Chemical Technology,2008
[12] C.M.He,H.Z.Wang and W.Deng:Printing and Dyeing, (2004), p.9 [13] W.L.Xiao,M.Qiang and H.Zhou: Materials Review, Vol.12(2008), p.307 [14] L.Qin,Y.H.Zhou and F.L.Chen: Special Rubber Products, Vol.28(2007), p.7 [15] W.Li,Z.M.Xie and Z.M.Li: Journal of Sun Yat-Sen University, Vol.38(1999), p.40 [16] Y.He and L.X.Ma: Special Rubber Products, Vol.28(2007), p.50
Experimental Materials.
Acknowledge The authors are grateful to National Natural Science Foundation of China (No. 51076070).
Ikuko: Journal of European Ceramics Society, Vol. 20(2000), p. 1197 [3] J.J.Wang and X.S.Yi: Composites Science and Technology, Vol. 64(2004), p.1623 [4] A.K.Yoong,H.Takuaya and E.Morinobu: Scripta Materialia, Vol, 54(2006), p.31 [5] Julia A King, Michael G.Miller and Rodwick L.Barton:Journal of Applied Polymer Science, Vol. 99(2006), p.1552 [6] Bernd Weidenfeller, Michael Hofer and Frank Schilling: Composites.Part A, Vol. 33(2002), p.1041 [7] J.R.Gaier, Y.Yodevandenberg and S.Berkebile: Carbon, Vol. 41(2003), p.2187 [8] D.Kumlutas and I.H.Tavman:Composites Science and Technology, Vol. 63(2003), p.113 [9] P.Giuseppe and K.Ikuko:Journal of the European Ceramic Society, Vol. 20(2000), p.1197 [10] D.D.Li,X.W.Han and B.Q.Shentu: Synthetic Rubber Industry, Vol. 33(2010), p.49 [11] J.Yang: PhD thesis, Beijing University of Chemical Technology,2008
[12] C.M.He,H.Z.Wang and W.Deng:Printing and Dyeing, (2004), p.9 [13] W.L.Xiao,M.Qiang and H.Zhou: Materials Review, Vol.12(2008), p.307 [14] L.Qin,Y.H.Zhou and F.L.Chen: Special Rubber Products, Vol.28(2007), p.7 [15] W.Li,Z.M.Xie and Z.M.Li: Journal of Sun Yat-Sen University, Vol.38(1999), p.40 [16] Y.He and L.X.Ma: Special Rubber Products, Vol.28(2007), p.50
Online since: October 2023
Authors: Archana Kumari Singh, Khushi Singh, Satya Pal Singh
All materials were obtained from Sigma-Aldrich.
With comparatively small background noise, the high intensity sharp peaks, clearly indicates for the presence of bulk material (i.e., materials having sizes up-to a few microns owe properties very similar to purely bulk materials).
Micron size materials can be considered to have properties, intermediate between nanomaterials and bulk materials.
Reinforcement of Clay Material Doped with Metal-Oxide Nano-Material, International Journal for Research in Applied Science & Engineering Technology (IJRASET), 8 (2020) http://doi.org/10.22214/ijraset.2020.4191 [5] Km Sushama and S.
Zinc Oxide-From Synthesis to Application: A Review Materials, 7(4) (2014) 2833-2881
With comparatively small background noise, the high intensity sharp peaks, clearly indicates for the presence of bulk material (i.e., materials having sizes up-to a few microns owe properties very similar to purely bulk materials).
Micron size materials can be considered to have properties, intermediate between nanomaterials and bulk materials.
Reinforcement of Clay Material Doped with Metal-Oxide Nano-Material, International Journal for Research in Applied Science & Engineering Technology (IJRASET), 8 (2020) http://doi.org/10.22214/ijraset.2020.4191 [5] Km Sushama and S.
Zinc Oxide-From Synthesis to Application: A Review Materials, 7(4) (2014) 2833-2881
Online since: October 2013
Authors: Fu Qiang Chu, Chang Li Xu, Hui Wang, Yu Xin Liu, Ji Lei Chao
Introduction
Waterborne UV-curable resins are novel environmentally friendly materials.
In our previous research[4], waterborne lignin-based polyurethane (WLPU) was synthesized through a three-step reaction, which was a kind of water borne UV-curable materials.
Experimental Materials and Equipments Waterborne UV-curable lignin-based polyurethane (WLPU), 70% solid content, made in our lab.
Journal of Forest Research, Vol 20(2009), P. 161 [3].
Journal of Applied Polymer Science,Vol 98( 2005), P.1451 [4].
In our previous research[4], waterborne lignin-based polyurethane (WLPU) was synthesized through a three-step reaction, which was a kind of water borne UV-curable materials.
Experimental Materials and Equipments Waterborne UV-curable lignin-based polyurethane (WLPU), 70% solid content, made in our lab.
Journal of Forest Research, Vol 20(2009), P. 161 [3].
Journal of Applied Polymer Science,Vol 98( 2005), P.1451 [4].
Online since: June 2014
Authors: Xiao Ping Yu, Xiao Feng Liao
From the life-cycle analysis, BEE projects should consider the impact of the production, transportation and distribution from planning and design, construction, operation and transformation of raw materials throughout the course of the ecological environment.
In order to achieve a low-carbon energy resources, conservation and ecological environmental goals, they should be considered with building energy distribution and utilization impact on the ecological environment; building factor in the use of materials and equipment, reuse and maintenance and final disposal imMaterial (carbohydrates, water purification) Chemical energy Negative entropy BEE eco- Sys- tem Material (CO2, sewage, water vapor and other waste Thermal energy (or Work) Positive entropy pact on the environment [6].
Journal of Chongqing University Social Science Edition (Chinese), 2010,16(4):109~ 113 [3] Yin Ruiyu, Wang Yingluo, Li Bocong et al.
Journal of architecture, 2001-10 [5] Hao Liang Yong.
Chinese Journal of Environmental Science[J].
In order to achieve a low-carbon energy resources, conservation and ecological environmental goals, they should be considered with building energy distribution and utilization impact on the ecological environment; building factor in the use of materials and equipment, reuse and maintenance and final disposal imMaterial (carbohydrates, water purification) Chemical energy Negative entropy BEE eco- Sys- tem Material (CO2, sewage, water vapor and other waste Thermal energy (or Work) Positive entropy pact on the environment [6].
Journal of Chongqing University Social Science Edition (Chinese), 2010,16(4):109~ 113 [3] Yin Ruiyu, Wang Yingluo, Li Bocong et al.
Journal of architecture, 2001-10 [5] Hao Liang Yong.
Chinese Journal of Environmental Science[J].
Online since: February 2016
Authors: Shu Wang Duo, Hao Zhang, Jin Shang, Chen Gang Luo, Long Qing Wu
Among them, Chromium nitride (CrN) coatings, which possess high hardness, low friction coefficient and internal stress, good ductility, adhesion, corrosion and oxidation resistance and thermal stability and other advantages, are used in the cutting tools, moulds, mechanical components of aerospace and other fields as high temperature structure materials and protective materials[7-10].
Acknowledgements This work was supported by the National Natural Science Foundation of China (No. 51363007), Science and Technology Development Plan of Jiangxi Education Department (No.
KJLD13070), Young Scientists Training Plan of Jiangxi Department of Science and Technology (No. 20122BCB23031) and the assistance of the Nanchang Key Laboratory of Materials Corrosion and Protective Technology.
Comparison of TiAlN, AlCrN, and AlCrN/TiAlN coatings for cutting-tool applications, International Journal of Minerals, Metallurgy and Materials. 21:8 (2014) 796-805
Effect of N2 flow rate on structure and property of CrN coatings deposited by DC reactive magnetron sputtering, Materials for Mechanical Engineering. 34 (2010) 34-37
Acknowledgements This work was supported by the National Natural Science Foundation of China (No. 51363007), Science and Technology Development Plan of Jiangxi Education Department (No.
KJLD13070), Young Scientists Training Plan of Jiangxi Department of Science and Technology (No. 20122BCB23031) and the assistance of the Nanchang Key Laboratory of Materials Corrosion and Protective Technology.
Comparison of TiAlN, AlCrN, and AlCrN/TiAlN coatings for cutting-tool applications, International Journal of Minerals, Metallurgy and Materials. 21:8 (2014) 796-805
Effect of N2 flow rate on structure and property of CrN coatings deposited by DC reactive magnetron sputtering, Materials for Mechanical Engineering. 34 (2010) 34-37
Online since: October 2018
Authors: I.R. Kuzeev
Such substances could include bitumen, pitch, coke, fullerenes, carbon nanotubes and some composition materials.
Understanding of macrostructures formation mechanisms under condition of change of medium properties at nanolevel allows constructing new carbon-based constructional materials.
Park, Hussain Manafi, Asphaltene flocculation and collapse from petroleum fluids, Journal of Petroleum Science and Engineering, (2001) 217-230 [18] S.A.
Mansoori, An analysis of methods for determination of onsets of asphaltene phase separations, Journal of Petroleum Science and Engineering, (2004) 145-156
Bonart, Segmentierte Polyurethane, Macromolecular Materials and Engineering, (1977) 259-297 [28] V.B.
Understanding of macrostructures formation mechanisms under condition of change of medium properties at nanolevel allows constructing new carbon-based constructional materials.
Park, Hussain Manafi, Asphaltene flocculation and collapse from petroleum fluids, Journal of Petroleum Science and Engineering, (2001) 217-230 [18] S.A.
Mansoori, An analysis of methods for determination of onsets of asphaltene phase separations, Journal of Petroleum Science and Engineering, (2004) 145-156
Bonart, Segmentierte Polyurethane, Macromolecular Materials and Engineering, (1977) 259-297 [28] V.B.