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Online since: September 2023
Authors: Folahan Okeola Ayodele, Oluborode Kayode Dele, Ige Samuel Ayeni
Journal of Composites Science., https://doi.org/10.3390/jcs6100320, 2022, 6, 320
Journal of Chemical and Pharmaceutical Sciences, 9(4), (2016), 2791–2795
Journal of Materials in Civil Engineering, 30(3), 04018008. https://doi.org/10.1061/(ASCE)mt.1943-5533.0002174, (2018)
International Journal of Science Technology and Management, 5(2), (2016), 1104–1110
Nigeria Journal of Basic and Applied Science, 17(2), (2009), 252-256
Journal of Chemical and Pharmaceutical Sciences, 9(4), (2016), 2791–2795
Journal of Materials in Civil Engineering, 30(3), 04018008. https://doi.org/10.1061/(ASCE)mt.1943-5533.0002174, (2018)
International Journal of Science Technology and Management, 5(2), (2016), 1104–1110
Nigeria Journal of Basic and Applied Science, 17(2), (2009), 252-256
Online since: December 2018
Authors: Md. Mainul Islam, Jayantha Ananda Epaarachchi, Zulzamri Salleh
Materials Science and Engineering A, 427, 331-342
Materials Letters, 63, 1964-1967
Journal of Materials Science, 47, 5596-5604
Journal of Materials Science, 42, 5398-5405
Materials Science and Engineering: A 402, Issues 1–2, 335-340
Materials Letters, 63, 1964-1967
Journal of Materials Science, 47, 5596-5604
Journal of Materials Science, 42, 5398-5405
Materials Science and Engineering: A 402, Issues 1–2, 335-340
Online since: August 2012
Authors: Mei Qin Wu, Wei Hua Chen
Acknowledgements
This work was financially supported by the Guangxi University of Technology Natural Science (1074018) and the Education Department of Guangxi Province Natural Science Foundation (201010LX205).
ACI Structural Journal , 1986 , 83 : 386 - 394
ACI Structural Journal , 2001 , 98(3) :386 - 394
ACI Structural Journal ,1992 , 89 :284 - 289
ACI Structural Journal ,1998 ,95(2) :386 - 394.
ACI Structural Journal , 1986 , 83 : 386 - 394
ACI Structural Journal , 2001 , 98(3) :386 - 394
ACI Structural Journal ,1992 , 89 :284 - 289
ACI Structural Journal ,1998 ,95(2) :386 - 394.
Online since: June 2015
Authors: N. Azhagesan, M. Sivapragash, P. Mohan, M. Kathirvel
The widely used reinforcing materials for these composites are silicon carbide, aluminium oxide and graphite in the form of particles or whiskers.
The mechanical stir casting route also ensures that undamaged reinforcement materials are attained.
Table 1 are presented the chemical composition of matrix and materials.
[4] Zhigiang Yu, Gaohui Wu, Longtao Jiang, Dongli Sun, “Effect of coating Al2O3 reinforcing particles on the interface and mechanical properties of 6061 alloy aluminium matrix composites”, Journal of Materials Letters 59(2005) 2281-2284
[7] Wang Hong-ming, Li Gui-rong, ZHAO Yu-tao, CHEN Gang “ In Situ fabrication and microstructure of Al2O3 particles reinforce aluminium matrix composite”, Material science and Engineering.
The mechanical stir casting route also ensures that undamaged reinforcement materials are attained.
Table 1 are presented the chemical composition of matrix and materials.
[4] Zhigiang Yu, Gaohui Wu, Longtao Jiang, Dongli Sun, “Effect of coating Al2O3 reinforcing particles on the interface and mechanical properties of 6061 alloy aluminium matrix composites”, Journal of Materials Letters 59(2005) 2281-2284
[7] Wang Hong-ming, Li Gui-rong, ZHAO Yu-tao, CHEN Gang “ In Situ fabrication and microstructure of Al2O3 particles reinforce aluminium matrix composite”, Material science and Engineering.
Online since: July 2011
Authors: Peng Dong, Hai Liang Wang, Xin Lei Yang, Quan Chang Ren
Tang Ming et al used the BF as reinforced materials to explore the BF in enhancing effect.
The purpose of this paper is to arouse the domestic bridge workers’ attention of the importance of the BF and make this new, high performance fiber materials can be widely used as soon as possible in the construction of the bridge.
Wang: Progress in Textile Science & Technology, 2010 (1):40-41.
Li: Journal of Hebei Institute of Architecture and Civil Engineering, 2008, 26(3):7-8.
Yang: Journal of Huaqiao University (Natural Science). 2010, 31(4):443-447.
The purpose of this paper is to arouse the domestic bridge workers’ attention of the importance of the BF and make this new, high performance fiber materials can be widely used as soon as possible in the construction of the bridge.
Wang: Progress in Textile Science & Technology, 2010 (1):40-41.
Li: Journal of Hebei Institute of Architecture and Civil Engineering, 2008, 26(3):7-8.
Yang: Journal of Huaqiao University (Natural Science). 2010, 31(4):443-447.
Online since: October 2012
Authors: Jian Long Zheng, Jun Hui Zhang, Zhi Yong Yin
Fig.1 Pile layout and finite modeling of sparse pile to control settlement
Five materials are included in the analysis, the embankment fill, the cushion, the soft clay, substratum soil, pile and geosynthetic.
We use Duncan-Chang hyperbolic model to describe the choice of embankment fill, cushion, soft clay and substratum soil .The pile and geosynthetic are linear elastic materials.
Each material parameters is as Table 1.
In existed design methods[8], regulations BS8006 of England about reinforced soil engineering synthetic materials, arching effect analysis method which was put forward by Hewlett&Randolph and Guido both didn’t consider the change of pile and geosynthetic modulus, which can effect the development of differential settlement and then effect the degree of soil arching effect.
References [1] W.G Rao, H.H Jiang, Q.H Hou: Journal of Hydraulic Engineering, Vol.4( 2002), p.23 [2] Y.M Chen, N.Jia, R.P Chen: China Journal of Highway and Transport, Vol.17(2004), p.1 [3] Hibbitt, Karlsson&Sorensen: ABAQUS Analysis User′s Manual, Ver6.2, HKS, USA, Vol.13 (2001) [4] Jiangsu Province Shanghai-Nanjing Expressway Extension Project Headquarters.
We use Duncan-Chang hyperbolic model to describe the choice of embankment fill, cushion, soft clay and substratum soil .The pile and geosynthetic are linear elastic materials.
Each material parameters is as Table 1.
In existed design methods[8], regulations BS8006 of England about reinforced soil engineering synthetic materials, arching effect analysis method which was put forward by Hewlett&Randolph and Guido both didn’t consider the change of pile and geosynthetic modulus, which can effect the development of differential settlement and then effect the degree of soil arching effect.
References [1] W.G Rao, H.H Jiang, Q.H Hou: Journal of Hydraulic Engineering, Vol.4( 2002), p.23 [2] Y.M Chen, N.Jia, R.P Chen: China Journal of Highway and Transport, Vol.17(2004), p.1 [3] Hibbitt, Karlsson&Sorensen: ABAQUS Analysis User′s Manual, Ver6.2, HKS, USA, Vol.13 (2001) [4] Jiangsu Province Shanghai-Nanjing Expressway Extension Project Headquarters.
Online since: May 2020
Authors: E.I. Titov, E.V. Litvinova, Alexander Yu. Sokolov
Introduction
Russian science and the science of other countries has gained some experience in the development of a wide range of various preparations based on animal proteins, protein films, sponges, prosthetic materials, artificial leather, and edible protective coatings.
The texture of the materials was determined organoleptically by the generally accepted method.
Collagen-containing soft raw materials usually include animal skin contouring waste, tendon fragments, etc.
Veis), reference publications on the processing of by-product raw materials of the meat industry (A.B.
Results and Discussion Therefore, based on the study of the composition, structure, and rheological properties of both protein-containing raw materials and biocoatings, the expediency of manufacturing materials for various purposes was established.
The texture of the materials was determined organoleptically by the generally accepted method.
Collagen-containing soft raw materials usually include animal skin contouring waste, tendon fragments, etc.
Veis), reference publications on the processing of by-product raw materials of the meat industry (A.B.
Results and Discussion Therefore, based on the study of the composition, structure, and rheological properties of both protein-containing raw materials and biocoatings, the expediency of manufacturing materials for various purposes was established.
Online since: April 2021
Authors: Peng Gang Jin, Hong Bin Li, Xi Bo Jiang, Xiao Feng Wang, Hong Tao Xu, Song Tao Ren
In China, the focus of research on thermal safety of energetic materials is material safety [3-6].
Chinese Journal of Energetic Materials, 2015, Vol.23 No.6, 548-552
Chinese Journal of Energetic Materials, 2012, 20(6): 735-738
China Safety Science Journal, 2010.20(5): 67-74
Chinese Journal of Energetic Materials, 2010, 18(6): 706-710
Chinese Journal of Energetic Materials, 2015, Vol.23 No.6, 548-552
Chinese Journal of Energetic Materials, 2012, 20(6): 735-738
China Safety Science Journal, 2010.20(5): 67-74
Chinese Journal of Energetic Materials, 2010, 18(6): 706-710
Online since: February 2021
Authors: Pavel Shishkin, Sergey L. Ivanov
Data on the gears made of cast iron materials are presented.
The strength characteristics of gear wheel materials and their chemical composition are given.
The basic geometry was adopted for all pairs for the ranking of materials 1BG25, 1BGNL2, 1BGVL1 and 1BGVL2 by wear resistance.
Chechurin, On osmondite nature Journal of Mining Institute 227 (2017) 554-557 DOI: 10.25515/pmi.2017.5.554 [10] Analysis, testing and examination of metal from professionals: Collection of microstructures of materials and alloys, available at: https://metall-expertiza.ru/articles/349921 [11] K.P.
Series "Advances in modern materials science" (Moscow: "Metallurgy"), 1972.
The strength characteristics of gear wheel materials and their chemical composition are given.
The basic geometry was adopted for all pairs for the ranking of materials 1BG25, 1BGNL2, 1BGVL1 and 1BGVL2 by wear resistance.
Chechurin, On osmondite nature Journal of Mining Institute 227 (2017) 554-557 DOI: 10.25515/pmi.2017.5.554 [10] Analysis, testing and examination of metal from professionals: Collection of microstructures of materials and alloys, available at: https://metall-expertiza.ru/articles/349921 [11] K.P.
Series "Advances in modern materials science" (Moscow: "Metallurgy"), 1972.
Online since: October 2013
Authors: Xiang Gou, Zi Fang Wang, Guang Yang, Jin Xiang Wu, En Yu Wang, Wen Yong Liu, Lian Sheng Liu, Kai Zhang
Jiang: Journal of Hazardous Materials, Vol.193 (2011), p330
[14] R.
Bin: Journal of Combustion Science and Technology, Vol.18(2012), 73 (In Chinese) [19] C.
Nam: Microporous and Mesoporous Materials, Vol.141 (2011), p8 [21] W.
Haneda: Microporous and Mesoporous Materials, Vol.111 (2008), p488 [26] J.H.
Zhang: Microporous and Mesoporous Materials, Vol.109 (2008), p298 [31] M.
Bin: Journal of Combustion Science and Technology, Vol.18(2012), 73 (In Chinese) [19] C.
Nam: Microporous and Mesoporous Materials, Vol.141 (2011), p8 [21] W.
Haneda: Microporous and Mesoporous Materials, Vol.111 (2008), p488 [26] J.H.
Zhang: Microporous and Mesoporous Materials, Vol.109 (2008), p298 [31] M.