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Online since: January 2012
Authors: Zhan Qiang Liu, Yi Wan, C. Li, R.R. Zhang
An extensive study on machining residual stress and their correlation with chip forming and tool geometries are available, but most researchers focus on the residual stress in turning and grinding all kinds of steel materials.
Experiment Experiment material.
Devor: Journal of Manufacturing Science and Engineering Vol. 123(2001), p. 748-752 [5] A.
Teti: Machining of composite materials.
Ai: Chinese Journal of Mechanical Engineering Vol. 43(4), p. 95-98
Experiment Experiment material.
Devor: Journal of Manufacturing Science and Engineering Vol. 123(2001), p. 748-752 [5] A.
Teti: Machining of composite materials.
Ai: Chinese Journal of Mechanical Engineering Vol. 43(4), p. 95-98
Online since: August 2014
Authors: Azura A. Rashid, Siti Rohana Yahya, Baharin Azahari
Preparations and Characterization of Sago Starch Dispersion and Modification, Advanced Materials Research, 620, pp 395-399
Transitional properties of starch colloid with particle reduction from micro- to nanometer, Journal of Colloid and Interface Science, 339, pp. 117 – 124
Preparation and Characterization of Amphiphilic Starch Nanocrystals, Journal of Applied Polymer Science, 107, pp 418 – 422
Mechanical and Morphological Properties of Films Based on Ultrasound Treated Titanium Dioxide Dispersion/Natural Rubber Latex, International Journal of Composite Materials, 1,1, pp 7-13
Reinforcement of Natural Rubber Latex Film by Ultrafine Calcium Carbonate, Journal of Applied Polymer Science, 87, pp 982–985
Transitional properties of starch colloid with particle reduction from micro- to nanometer, Journal of Colloid and Interface Science, 339, pp. 117 – 124
Preparation and Characterization of Amphiphilic Starch Nanocrystals, Journal of Applied Polymer Science, 107, pp 418 – 422
Mechanical and Morphological Properties of Films Based on Ultrasound Treated Titanium Dioxide Dispersion/Natural Rubber Latex, International Journal of Composite Materials, 1,1, pp 7-13
Reinforcement of Natural Rubber Latex Film by Ultrafine Calcium Carbonate, Journal of Applied Polymer Science, 87, pp 982–985
Online since: May 2011
Authors: Shao Yi Wu, Min Quan Kuang, Bo Tao Song, Li Li Li
China
2International Centre for Materials Physics, Chinese Academy of Sciences, Shenyang 110016,
P.R.
Coey: Applied Surface Science, 247 (2005) 493 [2] T.P.J.
Zhang: Journal of Alloys and Compounds, 492 (2010) 31 [4] S.
Kumar: Journal of Magnetism and Magnetic Materials, 320 (2008) L93 [5] X.Y.
Gemma: Journal of Physics C, 17 (1984) 2333
Coey: Applied Surface Science, 247 (2005) 493 [2] T.P.J.
Zhang: Journal of Alloys and Compounds, 492 (2010) 31 [4] S.
Kumar: Journal of Magnetism and Magnetic Materials, 320 (2008) L93 [5] X.Y.
Gemma: Journal of Physics C, 17 (1984) 2333
Online since: January 2010
Authors: Rolf Zehbe, Helmut Schubert, Ulrich Gross, Franziska Schmidt, Zahra Ghalanbor, Frank Thormann, Markus Kühbacher, Roland Bodmeier
Materials and Methods
Electrode assembly.
Lee, Journal of Biomedical Materials Research Part A 80 (3), 530-538, (2007) [7] A.L.
Maurício, Biomedical materials and engineering 17 (1), 39-52, (2007)
Windebank, Journal of Biomedical Materials Research Part A 84 (3), 643-651, (2008) [9] W.
Dai, Journal of biomedical materials research Part A 83 (4), 1054-1061, (2007) [10] K.
Lee, Journal of Biomedical Materials Research Part A 80 (3), 530-538, (2007) [7] A.L.
Maurício, Biomedical materials and engineering 17 (1), 39-52, (2007)
Windebank, Journal of Biomedical Materials Research Part A 84 (3), 643-651, (2008) [9] W.
Dai, Journal of biomedical materials research Part A 83 (4), 1054-1061, (2007) [10] K.
Online since: September 2011
Authors: Meng Shen Li, Qing Li, Xiao Long Wang, Xiao Lei Zhong, Zhi Gang Zhang
Large diameter HPB is mainly used for nonhomogeneous materials.
He used the device to study the dynamic mechanical properties of materials under high strain rate for the first time.
While due to the civil and military requirement, the hot studies on materials with complicated or nonhomogeneity components demand innovation in SHPB technology.
Hopkinson: Mathematical, Physical and Engineering Sciences A213(1914), p.437-452
Hunter: Journal of Mechanics and Physics of Solids Vol. 11(1997), p.155-179
He used the device to study the dynamic mechanical properties of materials under high strain rate for the first time.
While due to the civil and military requirement, the hot studies on materials with complicated or nonhomogeneity components demand innovation in SHPB technology.
Hopkinson: Mathematical, Physical and Engineering Sciences A213(1914), p.437-452
Hunter: Journal of Mechanics and Physics of Solids Vol. 11(1997), p.155-179
Online since: August 2017
Authors: A. Akila, S. Chandra Mohan, S. Karuppusamy, K. Jothivenkatachalam
The recent development of nanoparticles in commercial media has great attention due to uniformity and stability of the materials.
The value of Eg increases after encapsulation due to the diminished size of nanoparticles that confines the supercages of the host materials [8, 20].
[15] Rui Peng, Dan Zhao, Jonas Baltrusatitis, Chia-Ming Wu and Ranjit T.Koodali, “visible light driven photocatalytic evolution of hydrogen from water over CdS encapsulated MCM-48 materials”, RSC Advances, (2012)
Optical Study’, Journal of Dispersion Science and Technology
Natarajan, “Photoprocesses of molecules encapsulated in porous solids XI: Excited state dynamics of proflavin and photosensitization of TiO2 in nanoporous materials”, Microporous and Mesoporous Materials (2014)
The value of Eg increases after encapsulation due to the diminished size of nanoparticles that confines the supercages of the host materials [8, 20].
[15] Rui Peng, Dan Zhao, Jonas Baltrusatitis, Chia-Ming Wu and Ranjit T.Koodali, “visible light driven photocatalytic evolution of hydrogen from water over CdS encapsulated MCM-48 materials”, RSC Advances, (2012)
Optical Study’, Journal of Dispersion Science and Technology
Natarajan, “Photoprocesses of molecules encapsulated in porous solids XI: Excited state dynamics of proflavin and photosensitization of TiO2 in nanoporous materials”, Microporous and Mesoporous Materials (2014)
Online since: August 2014
Authors: Alexandru Pascu, Ionut Claudiu Roată, Camelia Maria Hanea, Radu Iovanas
Experimental procedure
In order to weld the two materials, two welding materials were used, namely SupraMIG wire for the root layer and OUTERSHIELD 71E-H wire for the filling layers (table 1).
Line Welding procedure Size of filler materials Intensity of current A Voltage V Current type/ polarity Wire feed rate m/min Rate of welding* cm/min.
LIU, Microstructures and Properties of X60 Grade Pipeline Strip Steel in CSP Plant, Journal of Iron and Steel Research, Volume 15, Issue 2, March 2008, pp. 71–75
Mohammadyani, Characterisation of weldment hardness, impact energy and microstructure in API X65 steel, International Journal of Pressure Vessels and Piping, Volume 98, October 2012, pp. 8–15
[5] S.H Hashemi, Strength–hardness statistical correlation in API X65 steel, Materials Science and Engineering: A, Volume 528, Issue 3, 25 January 2011, pp. 1648–1655.
Line Welding procedure Size of filler materials Intensity of current A Voltage V Current type/ polarity Wire feed rate m/min Rate of welding* cm/min.
LIU, Microstructures and Properties of X60 Grade Pipeline Strip Steel in CSP Plant, Journal of Iron and Steel Research, Volume 15, Issue 2, March 2008, pp. 71–75
Mohammadyani, Characterisation of weldment hardness, impact energy and microstructure in API X65 steel, International Journal of Pressure Vessels and Piping, Volume 98, October 2012, pp. 8–15
[5] S.H Hashemi, Strength–hardness statistical correlation in API X65 steel, Materials Science and Engineering: A, Volume 528, Issue 3, 25 January 2011, pp. 1648–1655.
Online since: February 2014
Authors: Xi Geng Miao, Zhi Ya Zhao, Ruo Peng Liu, Fabrizia Ghezzo, Yu Rui Qu, Yu Tao Yue, Xiao Wei Fang
Cheng: Gong Neng Cai Liao (Finctional Materials) Vol.35 (2004), p.1700
Yuan: Key Engineering Materials Vol. 336-338 II (2007), p.1005
Yan, Master degree thesis, 2012, The Huazhong University of Science and Technology
Tan: Advanced Materials Research Vol. 412 (2012), p.129
Yu: Key Engineering Materials 249 (2003), p.159
Yuan: Key Engineering Materials Vol. 336-338 II (2007), p.1005
Yan, Master degree thesis, 2012, The Huazhong University of Science and Technology
Tan: Advanced Materials Research Vol. 412 (2012), p.129
Yu: Key Engineering Materials 249 (2003), p.159
Online since: January 2013
Authors: Wei Dong Yang, Rui Rui Li, Zhi Hao Yu
(2) The damper model is able to capture both the “strain increase stiffness drop” and “strain decrease stiffness drop” phenomenon of different elastomeric materials, it shows good adaptability to dampers that made of different elastomeric materials.
Journal of the American Helicopter Society, 2008, 53(2): 193-209
International Journal of Modern Physics, 2005, 19(7): 1527-1533
[ 7] Longwei Yuan, Rheology, Science Press, Beijing, 1986: 49-92.
Journal of Intelligent Material Systems and Structures, 2011, 22[11]: 1161-1176
Journal of the American Helicopter Society, 2008, 53(2): 193-209
International Journal of Modern Physics, 2005, 19(7): 1527-1533
[ 7] Longwei Yuan, Rheology, Science Press, Beijing, 1986: 49-92.
Journal of Intelligent Material Systems and Structures, 2011, 22[11]: 1161-1176
Online since: January 2013
Authors: Jie Li, Cheng Ling Ge, Chang Cheng Zhou, Guo Liang Wang, Xiao Lan Wang
Experimental material and Method
Experimental material and equipment
Ferrous sulfide is mixed with a low carbon steel ([C] = 0.015~0.02%, [Si] = 0.40~0.43%, [Mn] = 0.13~0.17%, [P] = 0.012~0.016%, [S] = 0.004~0.008%) and heated to 1570˚C for 30 minutes to make Fe-S alloy ([S] = 0.022~0.033%) in a ceramic fiber muffle furnace.
Acknowledgements This work was financially supported by the National Natural Science Foundation for Young Scholars of China (50804001).
References [1] J.Zheng, Q.C.Le, Z.Q.Zhang, et al: Rare metal materials and engineering, Vol.41-5(2012), p.914 [2] L.Zhang, D.G.Eskin, L.Katgerman: Journal of materials science, Vol.46-15(2011), p.5252 [3] F.P.Qi, H.B.Zhang, S.L.Gao, et al: Journal of shanghai university (English edition), Vol.9-1(2005), p.74 [4] W.Kong, D.Q.Cang, J.H.Song: Materials transactions, Vol.52-9(2011), p.1844 [5] T.V.Atamanenko, D.G.Eskin, L.Zhang, et al: Metallurgical and materials transactions a-physical metallurgy and materials science, Vol.41A-8(2010), p.2056 [6] Z.Jia, J.W.Li, Z.G.Gu, et al: Hot Working Technology, Vol.38-5(2009), p.57 In Chinese [7] J.W.Li, Y.Fu, T.Momono: Foundry Technology, Vol.27-10(2006), p.1063 In Chinese
Acknowledgements This work was financially supported by the National Natural Science Foundation for Young Scholars of China (50804001).
References [1] J.Zheng, Q.C.Le, Z.Q.Zhang, et al: Rare metal materials and engineering, Vol.41-5(2012), p.914 [2] L.Zhang, D.G.Eskin, L.Katgerman: Journal of materials science, Vol.46-15(2011), p.5252 [3] F.P.Qi, H.B.Zhang, S.L.Gao, et al: Journal of shanghai university (English edition), Vol.9-1(2005), p.74 [4] W.Kong, D.Q.Cang, J.H.Song: Materials transactions, Vol.52-9(2011), p.1844 [5] T.V.Atamanenko, D.G.Eskin, L.Zhang, et al: Metallurgical and materials transactions a-physical metallurgy and materials science, Vol.41A-8(2010), p.2056 [6] Z.Jia, J.W.Li, Z.G.Gu, et al: Hot Working Technology, Vol.38-5(2009), p.57 In Chinese [7] J.W.Li, Y.Fu, T.Momono: Foundry Technology, Vol.27-10(2006), p.1063 In Chinese