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Online since: December 2012
Authors: A. Elayaperumal, V. Santhanam, M. Chandrasekaran, N. Venkateshwaran
Natural fiber-reinforced composite materials also have found wide use in the automotive industry.
Materials and Methods Raw materials.
Raw materials used for this experimental work are: 1.
Ambiental, Campina Grande, v3:367-379 [3] Mukherjee, K.G, Satyanrayana.K.G, (1984),” Structure and properties of some vegetable fibers”, Journal of Material Sciences v19: 3925-3934
Journal of Composite Science and technology, 63, 2003, 1259-1264
Materials and Methods Raw materials.
Raw materials used for this experimental work are: 1.
Ambiental, Campina Grande, v3:367-379 [3] Mukherjee, K.G, Satyanrayana.K.G, (1984),” Structure and properties of some vegetable fibers”, Journal of Material Sciences v19: 3925-3934
Journal of Composite Science and technology, 63, 2003, 1259-1264
Online since: January 2011
Authors: V. Swaminathan, M. Jayachandran, L.C. Nehru, C. Sanjeeviraja
Mulla, Journal of Materials Science Letters 19 (2000) 249– 252
[90] J.
Logana, Journal of Hazardous Materials 178 (2010) 29
XIAO, Materials Science-Poland, 26(3) (2008) 517
Li, Materials Science and Engineering A 426 (2006) 274
Morante, Materials Science and Engineering C 15 (2001) 203
Logana, Journal of Hazardous Materials 178 (2010) 29
XIAO, Materials Science-Poland, 26(3) (2008) 517
Li, Materials Science and Engineering A 426 (2006) 274
Morante, Materials Science and Engineering C 15 (2001) 203
Online since: January 2014
Authors: Yan Jun Wei, Jia Hui Qu
The widespread use of throat liner material includes: refractory metal[2], reinforced plastic[3-4], C/C material[5], high strength graphite materials[6-7]and ceramic matrix composites[8-10],including ceramic composite materials with high strength, high hardness, wear resistance, high temperature resistant properties and wide attention, is a hot issue in recent years research.The zirconia is not only a good new ceramic material, and is an ideal thermal barrier materials.
Solid Rocket Motor Throat Lining Material.Journal of Solid Rocket Technology. 1984,(3):7-18
Journal of Solid Rocket Technology. 1997,20(2):1-6
Ordnance Material Science and Engineeging.2006,29 (01):17-20
Journal of Astronautics.2006,26 (06):789-792
Solid Rocket Motor Throat Lining Material.Journal of Solid Rocket Technology. 1984,(3):7-18
Journal of Solid Rocket Technology. 1997,20(2):1-6
Ordnance Material Science and Engineeging.2006,29 (01):17-20
Journal of Astronautics.2006,26 (06):789-792
Online since: November 2013
Authors: Ahmad Razlan Yusoff, Muhammad Hatifi Mansor, Hazami Che Hussain, Muhammad Azwan Zainol Abidin
Variable helix/pitch suitable for a wide range of machines, and appropriate for suppressing chatter, as well as overcoming the active method problems, are also applicable for a wide range of spindle speeds, tools and work piece materials.
Transaction ASME Journal of Engineering Industry (1965), 87(4), 447-454
Journal of Manufacturing Science and Engineering, Transactions of the ASME (1999) 121 173 [5] Budak E An analytical design method for milling cutters with non-constant pitch to increase stability, Part 1: Theory and Part 2: Application Journal of Manufacturing Science and Engineering (2003) 125 29-38
Journal of Sound and Vibration, (2008), 317(3-5), 664-686
International Journal of Machine Tools and Manufacture, (2011), 51(2) 133-141
Transaction ASME Journal of Engineering Industry (1965), 87(4), 447-454
Journal of Manufacturing Science and Engineering, Transactions of the ASME (1999) 121 173 [5] Budak E An analytical design method for milling cutters with non-constant pitch to increase stability, Part 1: Theory and Part 2: Application Journal of Manufacturing Science and Engineering (2003) 125 29-38
Journal of Sound and Vibration, (2008), 317(3-5), 664-686
International Journal of Machine Tools and Manufacture, (2011), 51(2) 133-141
Online since: January 2012
Authors: Mohammad Javad Nategh, H. Soleimanimehr, Hamed Razavi
Andrew, A study on ultrasonic vibration cutting of low alloy steel, Journal of Materials Processing Technology Vol. 192–193 (2007), p. 159
[10] Chandra Nath, M.
Silberschmidt, Analysis of material response to ultrasonic vibration loading in turning Inconel 718, Materials Science and Engineering: A Vol. 424 (2006), p. 318 [14] Jerald L.
Silberschmidt, Finite element simulations of ultrasonically assisted turning, Computational Materials Science Vol. 28 (2003), p. 645 [17] A.V.
Silberschmidt, Finite element analysis of ultrasonically assisted turning of Inconel 718, Journal of Materials Processing Technology Vol. 153–154 (2004), p. 233 [18] V.I.
Silberschmidt, Thermomechanical finite element simulations of ultrasonically assisted turning, Computational Materials Science Vol. 32 (2005), p. 463 [21] N.
Silberschmidt, Analysis of material response to ultrasonic vibration loading in turning Inconel 718, Materials Science and Engineering: A Vol. 424 (2006), p. 318 [14] Jerald L.
Silberschmidt, Finite element simulations of ultrasonically assisted turning, Computational Materials Science Vol. 28 (2003), p. 645 [17] A.V.
Silberschmidt, Finite element analysis of ultrasonically assisted turning of Inconel 718, Journal of Materials Processing Technology Vol. 153–154 (2004), p. 233 [18] V.I.
Silberschmidt, Thermomechanical finite element simulations of ultrasonically assisted turning, Computational Materials Science Vol. 32 (2005), p. 463 [21] N.
Online since: September 2014
Authors: Ye Kai Chen, Xiao Ning Zhang, Jiang Miao Yu
The aggregates were modeled as linear elastic materials.
The asphalt mastics were modeled as damaged plasticity materials.
Monismith: Road Materials and Pavement Design, vol. 13 (2012), p.501 [2] M.M.
Little: Journal of Materials in Civil Engineering, vol.17 (2005), p.477 [4] Z.
Somadevan: Journal of Engineering Mechanics, vol.128 (2002), p.1105
The asphalt mastics were modeled as damaged plasticity materials.
Monismith: Road Materials and Pavement Design, vol. 13 (2012), p.501 [2] M.M.
Little: Journal of Materials in Civil Engineering, vol.17 (2005), p.477 [4] Z.
Somadevan: Journal of Engineering Mechanics, vol.128 (2002), p.1105
Online since: January 2013
Authors: Pin Le Zhang
Restoring Force Models Investigation of Research Status and
Problems Analysis of RC Structure
Pinle Zhang
Department of Civil Engineering, Kunming University of Science and Technology, Kunming, China
*Correspondence to: Zhang Pin-le, Kunming University of Science and Technology, 650500, P.R.
Restoring force model investigation based on materials 2.1 Stress-strain hysteretic relations of steel Park and Kent (1972) [2] propose a restoring force model of steel in which unloading section is elastic and basuschinger effect is considered under the reverse loading, and that it is once one of the most widely used model.
Suggestions It is important to investigate restoring force model of RC members with high strength and axial compression ratio, for the strength of materials and axial compression of high-rise building is increasingly increased.
Journal of Structural Engineering, 1995,121(3):433-445
Journal of Structural Engineering, 1998,124(3):228-296
Restoring force model investigation based on materials 2.1 Stress-strain hysteretic relations of steel Park and Kent (1972) [2] propose a restoring force model of steel in which unloading section is elastic and basuschinger effect is considered under the reverse loading, and that it is once one of the most widely used model.
Suggestions It is important to investigate restoring force model of RC members with high strength and axial compression ratio, for the strength of materials and axial compression of high-rise building is increasingly increased.
Journal of Structural Engineering, 1995,121(3):433-445
Journal of Structural Engineering, 1998,124(3):228-296
Online since: May 2020
Authors: P.G. Shelenkov, P.V. Pantyukhov, A.A. Popov
Nikolaeva, Destruction of composite materials made of LDPE and lignocellulosic fillers, Journal of the Balkan Tribological Association. 19(3) (2013) 467-475
Sam, Current Research in Biodegradable Plastics, Applied Mechanics and Materials. 679 (2014) 273-280
Bledzki, Degradation and stability of green composites fabricated from oil palm empty fruit bunch fiber and polylactic acid: Effect of fiber length, Journal of Composite Materials. 49(25) (2015) 3103-3114
Ethylene vinyl acetate copolymers, Injection Molding of Thermoplastic Materials. 2 (1990) 49-59
Popov, Highly filled biocomposites based on ethylene-vinyl acetate copolymer and wood flour, IOP Conference Series: Materials Science and Engineering. 369(1) (2018) 012043
Sam, Current Research in Biodegradable Plastics, Applied Mechanics and Materials. 679 (2014) 273-280
Bledzki, Degradation and stability of green composites fabricated from oil palm empty fruit bunch fiber and polylactic acid: Effect of fiber length, Journal of Composite Materials. 49(25) (2015) 3103-3114
Ethylene vinyl acetate copolymers, Injection Molding of Thermoplastic Materials. 2 (1990) 49-59
Popov, Highly filled biocomposites based on ethylene-vinyl acetate copolymer and wood flour, IOP Conference Series: Materials Science and Engineering. 369(1) (2018) 012043
Online since: October 2011
Authors: Rui Duan
Aerogel is a highly porous material.
It has the best thermal insulation properties in all solid-state materials.
Journal of Non- crystalline Solids, vol.219, p.356-362, January 1992
“Transparent silica aerogels for window insulation”.Solar Energy Materials, vol.7, p.393, April 1983
Journal of Non-Crystalline Solids, vol.350, p.351-357, 2004
It has the best thermal insulation properties in all solid-state materials.
Journal of Non- crystalline Solids, vol.219, p.356-362, January 1992
“Transparent silica aerogels for window insulation”.Solar Energy Materials, vol.7, p.393, April 1983
Journal of Non-Crystalline Solids, vol.350, p.351-357, 2004
Online since: December 2013
Authors: Zhi Ya Zhang, Dong Chul Sung, Sukl Yun Hong
Lanzara: Nature Materials.
Hornekær: Nature Materials, Vol. 9 (2010) No.4, p.315
Rao: Advanced Materials, Vol. 21 (2009) No.46, p.4726
Liu: Advanced Materials, Vol. 23 (2011) No.18, p.1020
Wang: Journal of Materials Chemistry, Vol. 22 (2012) No.15, p.7484
Hornekær: Nature Materials, Vol. 9 (2010) No.4, p.315
Rao: Advanced Materials, Vol. 21 (2009) No.46, p.4726
Liu: Advanced Materials, Vol. 23 (2011) No.18, p.1020
Wang: Journal of Materials Chemistry, Vol. 22 (2012) No.15, p.7484