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Online since: July 2014
Authors: M. Venkatesan, V. Harshavardhan Reddy, Shaik Sadiq, S. Arunkumar
Journal of the atmospheric sciences, 62(2005) 431
[2] Z.Tamura and Y.Tanasawa, 7th Symp.
International Journal of Heat and Mass Transfer, 51(19) (2008), 4728-4742
Journal of colloid and interface science, 313(2) (2007), 454-460
Fest-Santini ,X-Ray computed microtomography for drop shape analysis and contact angle measurement,Journal of colloid and interface science,Vol.409, (2013), 204-210
Venkatesan, International Conference on Advances in Manufacturing and Materials Engineering, NITK Surathkal, India, ICAMME – ME91(2014) [12] K.
International Journal of Heat and Mass Transfer, 51(19) (2008), 4728-4742
Journal of colloid and interface science, 313(2) (2007), 454-460
Fest-Santini ,X-Ray computed microtomography for drop shape analysis and contact angle measurement,Journal of colloid and interface science,Vol.409, (2013), 204-210
Venkatesan, International Conference on Advances in Manufacturing and Materials Engineering, NITK Surathkal, India, ICAMME – ME91(2014) [12] K.
Online since: March 2014
Authors: Yu Jie Liu, Bin Qiang
Therefore metallic foams are not continuous materials in the strict sense of definition.
Materials Letters, Vol.58 (2004), p.2574 [5] O.B.
Materials Science and Engineering A, Vol.291 (2000), p. 136
International Journal of Fatigue, Vol.23 (2001), p. 499
Qiang, Applied Mechanics and Materials, Vol. 464(2014), p. 69.
Materials Letters, Vol.58 (2004), p.2574 [5] O.B.
Materials Science and Engineering A, Vol.291 (2000), p. 136
International Journal of Fatigue, Vol.23 (2001), p. 499
Qiang, Applied Mechanics and Materials, Vol. 464(2014), p. 69.
Online since: July 2015
Authors: Chobin Makabe, Anggit Murdani, Maskuri Maskuri, Profiyanti Hermin Suharti
In composite materials, local deformation causes fiber breakage and matrix damage [4-6].
Abu Bakar: Materials and Design 32, 4107–4121 (2011) [2] M.
Avinca: Journal of Materials Processing Technology 209 (2009) 3358-3365 [8] G.
Frasca: Composites Science and Technology 66, (2006) [9] J.
Rani: Journal of Applied Science and Engineering, Vol. 15, No. 3, pp. 275280 (2012)
Abu Bakar: Materials and Design 32, 4107–4121 (2011) [2] M.
Avinca: Journal of Materials Processing Technology 209 (2009) 3358-3365 [8] G.
Frasca: Composites Science and Technology 66, (2006) [9] J.
Rani: Journal of Applied Science and Engineering, Vol. 15, No. 3, pp. 275280 (2012)
Online since: August 2013
Authors: Jacques Persello, Nicolas Bosq, Nathanaël Guigo, Nicolas Sbirrazzuoli
Sbirrazzuoli, New insights on the thermal degradation pathways of neat poly(furfuryl alcohol) and poly(furfuryl alcohol)/SiO2 hybrid materials, Polymer Degradation and Stability 94 (2009) 908-913.
]
Among the short list of biobased thermosetting resins, the PolyFurfurylAlcohol (PFA) is obtained under cationic polycondensation of Furfuryl Alcohol (FA).
Eklund, Catalytic polymerisation and facile grafting of poly(furfuryl alcohol) to single-wall carbon nanotube: preparation of nanocomposite carbon, Journal of the American Chemical Society 128 (2006) 11307-11313. ] In the present context, the research interest is to elaborate new materials from furfuryl alcohol then preferred as host matrix.[[] N.
Res. 45 (2006) 6393-6404. ] Because the ultimate aim of fabricating high performance nanocomposites is to disperse functionalized particles in the polymer matrix, these new materials were modified with the insertion of silica nanoparticles in order to highlight the enhancement of their thermal, mechanical and structural properties.
Bohn, Controlled growth of monodisperse Silica Spheres in the micron Size Range Journal of colloïd and interface science 26 (1968) 62-69. ].Their diameter is about 100 nm with a specific surface of 30 m2/g and a density of 1 OH/nm2.
On the other hand the insertion of SiO2s has no effect on the material degradation.
Eklund, Catalytic polymerisation and facile grafting of poly(furfuryl alcohol) to single-wall carbon nanotube: preparation of nanocomposite carbon, Journal of the American Chemical Society 128 (2006) 11307-11313. ] In the present context, the research interest is to elaborate new materials from furfuryl alcohol then preferred as host matrix.[[] N.
Res. 45 (2006) 6393-6404. ] Because the ultimate aim of fabricating high performance nanocomposites is to disperse functionalized particles in the polymer matrix, these new materials were modified with the insertion of silica nanoparticles in order to highlight the enhancement of their thermal, mechanical and structural properties.
Bohn, Controlled growth of monodisperse Silica Spheres in the micron Size Range Journal of colloïd and interface science 26 (1968) 62-69. ].Their diameter is about 100 nm with a specific surface of 30 m2/g and a density of 1 OH/nm2.
On the other hand the insertion of SiO2s has no effect on the material degradation.
Experimental Study for Performance Influence of Various pH Values on Pavement Straw Composite Fibers
Online since: August 2009
Authors: Xia Ting Feng, Qiang Xue, Jing Wang, Xiao Li Liu
Pavement straw composite fiber (PSCF) material, which is
independently developed by agricultural waste straw, is an effective way to consume a large amount
of straw resource [1].PSCF material is affected by chemical damage of precipitation, acid rain and sediments.
By direct shear test, chemical analysis experiments and SEM test, performance influence of PSCF material was studied under different pH values.
Material and Method Preparation of Chemical Solution.
Patent 200810047388.5, (2008) [2] Lian Hailan,ect: Journal of Nanjing Forestry University (Natural Sciences), Vol. 32(2008), p. 1-5 [3] Zhai.
H.M, Lee.Z.Z: Journal of Wood Chemistry and Technology, Vol. 9 (1989), p. 387-406 [4] Zhang Jiru, and Zhu Jie,etc: .Journal of Hydraulic Engineering, Vol. 39 (2008), p. 394-397
By direct shear test, chemical analysis experiments and SEM test, performance influence of PSCF material was studied under different pH values.
Material and Method Preparation of Chemical Solution.
Patent 200810047388.5, (2008) [2] Lian Hailan,ect: Journal of Nanjing Forestry University (Natural Sciences), Vol. 32(2008), p. 1-5 [3] Zhai.
H.M, Lee.Z.Z: Journal of Wood Chemistry and Technology, Vol. 9 (1989), p. 387-406 [4] Zhang Jiru, and Zhu Jie,etc: .Journal of Hydraulic Engineering, Vol. 39 (2008), p. 394-397
Online since: September 2016
Authors: Robert Jankowski, Tomasz Falborski, Barbara Sołtysik
Jankowski: Key Engineering Materials Vol. 293-294 (2005), p. 711
[6] S.
Jankowski: Journal of Applied Sciences Vol. 9 (2009), p. 3250
Jankowski: International Journal of Earth Sciences and Engineering Vol. 6, no. 3 (2013), p. 429 [8] S.A.
Jankowski: Iranian Journal of Science and Technology Vol. 35, no.
Jankowski: Journal of Earthquake and Tsunami Vol. 11 (2015), paper no. 1550012 [13] H.
Jankowski: Journal of Applied Sciences Vol. 9 (2009), p. 3250
Jankowski: International Journal of Earth Sciences and Engineering Vol. 6, no. 3 (2013), p. 429 [8] S.A.
Jankowski: Iranian Journal of Science and Technology Vol. 35, no.
Jankowski: Journal of Earthquake and Tsunami Vol. 11 (2015), paper no. 1550012 [13] H.
Online since: July 2020
Authors: Ahlam H. Jasim, Wafaa M. Joudi, Amir N. Saud, Nabaa S. Radhi
Effect on Mechanical Properties of Aluminium Alloy Composites on Adding Ash as Reinforcement, Material, Journal of Metals, Materials and Minerals. 25 (2015) 1-7
Rabiezadeh, Wear properties of Al–Al2O3/TiB2 surface hybrid composite layer prepared by friction stir process, Journal of Composite Materials .50(2016)1457-1466
Nanostructured Materials and Nanotechnology V: Ceramic Engineering and Science Proceedings, 32(2011) 165-175
Materials & Design, 37(2012)458-464 [16] I.Lee ,P.
Materials Science and Engineering: A 550 (2012): 279-285
Rabiezadeh, Wear properties of Al–Al2O3/TiB2 surface hybrid composite layer prepared by friction stir process, Journal of Composite Materials .50(2016)1457-1466
Nanostructured Materials and Nanotechnology V: Ceramic Engineering and Science Proceedings, 32(2011) 165-175
Materials & Design, 37(2012)458-464 [16] I.Lee ,P.
Materials Science and Engineering: A 550 (2012): 279-285
Online since: June 2023
Authors: Kateryna Borysovska
Introduction
Computer modeling is widely used in material science [1-6], since it allows us to take into account all the subtleties of interaction between dislocations and its effect on the mechanical characteristics of the material.
Mecking Physics and phenomenology of strain hardening: the FCC case, Progress in materials science 48 (2003) 171-273
Kurzydlowski Influence of the dislocation structure on the crack tip in highly deformed iron, MATERIALS SCIENCE-WROCLAW 23 (2005) 521
Firstov Critical density of dislocations during their rearrangement into polygonization walls, Electron Microscopy and Strength of Materials 25 (2019) 3/in Russian http://www.materials.kiev.ua/article/2896 [29] K.
Firstov Dislocation dynamics in the polycrystal in the presence of disclination wall, Electron Microscopy and Strength of Materials 21 (2015) 7/in Russian http://www.materials.kiev.ua/article/1725 [30] K.
Mecking Physics and phenomenology of strain hardening: the FCC case, Progress in materials science 48 (2003) 171-273
Kurzydlowski Influence of the dislocation structure on the crack tip in highly deformed iron, MATERIALS SCIENCE-WROCLAW 23 (2005) 521
Firstov Critical density of dislocations during their rearrangement into polygonization walls, Electron Microscopy and Strength of Materials 25 (2019) 3/in Russian http://www.materials.kiev.ua/article/2896 [29] K.
Firstov Dislocation dynamics in the polycrystal in the presence of disclination wall, Electron Microscopy and Strength of Materials 21 (2015) 7/in Russian http://www.materials.kiev.ua/article/1725 [30] K.
Online since: June 2013
Authors: Fusahito Yoshida, Takeshi Uemori, Hirotaka Kano, Jiro Hiramoto, Toru Inazumi
Uemori, A model of large-strain cyclic plasticity describing the Bauschinger effect and workhardening stagnation, International Journal of Plasticity 18 (2002) 661-686
Uemori, A model of large-strain cyclic plasticity and its application to springback simulation, International Journal of Mechanical Sciences 45 (2003) 1687-1702
Hill, Constitutive Modeling of Orthotropic Plasticity in Sheet Metals, Journal of the Mechanics and Physics of Solids (1990) 405-417
Chu, , Plane stress yield function for aluminum alloy sheets - part 1: theory , International Journal of Plasticity 19 (2003) 1297-1319
Toropov, Identification of material parameters in constitutive model for sheet metals from cyclic bending tests, International Journal of Mechanical Sciences 40, 2-3 (1998) 237-249.
Uemori, A model of large-strain cyclic plasticity and its application to springback simulation, International Journal of Mechanical Sciences 45 (2003) 1687-1702
Hill, Constitutive Modeling of Orthotropic Plasticity in Sheet Metals, Journal of the Mechanics and Physics of Solids (1990) 405-417
Chu, , Plane stress yield function for aluminum alloy sheets - part 1: theory , International Journal of Plasticity 19 (2003) 1297-1319
Toropov, Identification of material parameters in constitutive model for sheet metals from cyclic bending tests, International Journal of Mechanical Sciences 40, 2-3 (1998) 237-249.
Online since: September 2011
Authors: Xi Wen Zhang, Xiao Wei Tang, Qi Shao, Xu Bai
Acknowledgements
This work was financially supported by the Natural Science Foundation of China (51078062).
Wakamatsu: submitted to Journal of Soils and Foundations (1996) [3] H.B.
-C.Kan&.Iai: submitted to Journal of Physical Modelling in Geotechnics (2010) [7] Huabei Liu, Erxiang Song: submitted to Journal of Computers and Geotechnics (2005) [8] F.
Shibata, et al: submitted to Journal of Applied Scientific Research (1994) [9] K.
Brekke: submitted to Journal of Soil Mechanics & Foundations (1968)
Wakamatsu: submitted to Journal of Soils and Foundations (1996) [3] H.B.
-C.Kan&.Iai: submitted to Journal of Physical Modelling in Geotechnics (2010) [7] Huabei Liu, Erxiang Song: submitted to Journal of Computers and Geotechnics (2005) [8] F.
Shibata, et al: submitted to Journal of Applied Scientific Research (1994) [9] K.
Brekke: submitted to Journal of Soil Mechanics & Foundations (1968)