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Online since: July 2011
Authors: Andrzej Kot
Phenomena Occurring During the Electro-dynamic Forming
of Non-ferrous Pipe Elements
Andrzej Kot
Department of Process Control, AGH University of Science and Technology
Al.
Głuch: „Determination of pressures acting on sheet metal in the process of electrodynamic forming by means of spiral inductors”, Advances in Materials and Processing Technologies, Dublin, (2003)
Negishi: „Local deformation and buckling of a cylindrical Al tube under magnetic impulsive pressure”, Journal of Materials Processing Technology Vol. 85, (1999)
International Journal of Mechanichal Science, (1978) No 5
[9] Jun Shen, Jianguo Li, Hengzhi Fu: „Electromagnetic confinement and shaping for a plate-form part”, Journal of Materials Processing Technology Vol. 102, (2000)
Głuch: „Determination of pressures acting on sheet metal in the process of electrodynamic forming by means of spiral inductors”, Advances in Materials and Processing Technologies, Dublin, (2003)
Negishi: „Local deformation and buckling of a cylindrical Al tube under magnetic impulsive pressure”, Journal of Materials Processing Technology Vol. 85, (1999)
International Journal of Mechanichal Science, (1978) No 5
[9] Jun Shen, Jianguo Li, Hengzhi Fu: „Electromagnetic confinement and shaping for a plate-form part”, Journal of Materials Processing Technology Vol. 102, (2000)
Online since: October 2011
Authors: Qing Ge Feng, Zheng Chen, Lu Feng Yang, Qin Gao, Yi Wang
Experimental
Materials.
These materials were used to prepare concrete (water/binder ratio: 32.5%; fly ash replacement ratio: 0, 30, 50 and 70%; sand ratio: 40%), and the mix proportions of concrete are presented in Table 2.
Zhang: Journal of the Chinese Ceramic Society Vol. 35 (2007), p. 801 (in Chinese) [7] C.
Hazrati: Advanced Cement Based Materials Vol. 6 (1997), p. 28 [9] L.
Chen: Journal of the Chinese Ceramic Society Vol. 34 (2006), p. 47 (in Chinese) [12] Z.
These materials were used to prepare concrete (water/binder ratio: 32.5%; fly ash replacement ratio: 0, 30, 50 and 70%; sand ratio: 40%), and the mix proportions of concrete are presented in Table 2.
Zhang: Journal of the Chinese Ceramic Society Vol. 35 (2007), p. 801 (in Chinese) [7] C.
Hazrati: Advanced Cement Based Materials Vol. 6 (1997), p. 28 [9] L.
Chen: Journal of the Chinese Ceramic Society Vol. 34 (2006), p. 47 (in Chinese) [12] Z.
Online since: October 2012
Authors: Jing Qian, Yun Zhang, Feng Chen
Solid-liquid phase change materials mainly include inorganic PCMs and organic ones.
Raw Materials and Methods Raw Materials.
Burgess: Packaging Technology and Science, Vol. 20 (2007), pp.369-380
Zhang: Phase Change Materials and Phase Change Energy Storage (Beijing Science Press, China 2009).
Kim: International Journal of Refrigeration, Vol. 27 (2004), pp.360-366.
Raw Materials and Methods Raw Materials.
Burgess: Packaging Technology and Science, Vol. 20 (2007), pp.369-380
Zhang: Phase Change Materials and Phase Change Energy Storage (Beijing Science Press, China 2009).
Kim: International Journal of Refrigeration, Vol. 27 (2004), pp.360-366.
Online since: October 2023
Authors: Dwinanto Sukamto, Dhika Farhan Yusvia, Rizqi Fauzi, Ni Ketut Caturwati
In addition, this material has good electrical stability and properties.
This material is also the basis for several high-temperature superconductors and GMR (giant magneto resistance) materials.
Preparation of a solar single-slope distillation apparatus The activity begins with preparing the necessary tools and materials and coating the bottom of the basin with paint that has been mixed with copper (II) oxide (CuO). 2.
In SN Applied Sciences (Vol. 2, Issue 3).
Journal of Energy Storage, 42. https://doi.org/10.1016/j.est.2021.103061
This material is also the basis for several high-temperature superconductors and GMR (giant magneto resistance) materials.
Preparation of a solar single-slope distillation apparatus The activity begins with preparing the necessary tools and materials and coating the bottom of the basin with paint that has been mixed with copper (II) oxide (CuO). 2.
In SN Applied Sciences (Vol. 2, Issue 3).
Journal of Energy Storage, 42. https://doi.org/10.1016/j.est.2021.103061
Online since: November 2007
Authors: Dun Wen Zuo, Min Wang, Rong Fa Chen, Feng Xu, Wen Zhuang Lu
Chemical vapor deposited (CVD) diamond film is a good materials for cutting tools as its
a series of excellent properties.
Xiang and et al: Key Engineering Materials, Vol.258-259 (2004), pp.517
Wang and et al: Journal of Synthetic Crystals, Vol.33 (2003), pp.436.
Wu and et al: Diamond and Related Materials, Vol.14 (2005), pp.622
Cong and et al: Journal of Applied Physics, Vol.69 (1991), pp.2231.
Xiang and et al: Key Engineering Materials, Vol.258-259 (2004), pp.517
Wang and et al: Journal of Synthetic Crystals, Vol.33 (2003), pp.436.
Wu and et al: Diamond and Related Materials, Vol.14 (2005), pp.622
Cong and et al: Journal of Applied Physics, Vol.69 (1991), pp.2231.
Online since: June 2013
Authors: Tie Jun Wu, Long Gen Li, Hui Yuan Cao
Wu: Journal of Convergence Information Technology Vol.7 (2012), p.268
[8] Y.D.
Wu: Journal of Convergence Information Technology, Vol.6 (2011), p.169 [9] T.J.
Lou: Advanced Science Letter, Vol.4 (2011), p.3088 [10] T.J.
Man: Key Engineering Materials, Vol.458 (2011), p.48 [11] G.H.
Lu: Advanced Science Letters Vol.4 (2011), p.3067
Wu: Journal of Convergence Information Technology, Vol.6 (2011), p.169 [9] T.J.
Lou: Advanced Science Letter, Vol.4 (2011), p.3088 [10] T.J.
Man: Key Engineering Materials, Vol.458 (2011), p.48 [11] G.H.
Lu: Advanced Science Letters Vol.4 (2011), p.3067
Online since: December 2012
Authors: Kai Fu Zhang, Feng Guo, Hui Cheng, Yuan Li
Table 1 The paremeters of panel
Part
Material
Diameter(mm)
Thickness(mm)
Rivets
2117-T4
5.8
/
Skin
7055-T7751
/
4
Stringer
7055-T7651
/
3
The final deformation analyzed by our method (1000 silumation) is shown in fig 6, and the comparison of analysis and expriments result (4 times) is shown in table 2.
Acknowledgements We gratefully acknowledge the support of National Natural Science Foundation of China (51175433), Aeronautical Science Foundation of China (2010ZE53050) and Postdoctoral Science Foundation funded project of China (2011M501478).
ASME Journal of manufacturing science and engineering, Vol. 126 (2004), p. 355-360
Daidie: Riveted assembly modelling: Study and numerical characterisation of a riveting process, Journal of Materials Processing Technology Vol. 180 (2006), p. 201-209
Bajracharya: Effect of Variations in the Riveting Process on the Quality of Riveted Joints, International Journal of Advanced Manufacturing Technology Vol. 39 (2008), p. 1144-1155.
Acknowledgements We gratefully acknowledge the support of National Natural Science Foundation of China (51175433), Aeronautical Science Foundation of China (2010ZE53050) and Postdoctoral Science Foundation funded project of China (2011M501478).
ASME Journal of manufacturing science and engineering, Vol. 126 (2004), p. 355-360
Daidie: Riveted assembly modelling: Study and numerical characterisation of a riveting process, Journal of Materials Processing Technology Vol. 180 (2006), p. 201-209
Bajracharya: Effect of Variations in the Riveting Process on the Quality of Riveted Joints, International Journal of Advanced Manufacturing Technology Vol. 39 (2008), p. 1144-1155.
Online since: October 2023
Authors: Catherine Therese J. Quiñones, Vanessa V. Destura, Reynaldo M. Vequizo
Journal of Applied Polymer
Science, Vol. 119, 1952-1960 (2011) doi:10.1002/app.32910
[6] Simões, C.
Journal of Applied Polymer Science, Vol. 112, 345-352 (2009) doi:10.1002/app.29425 [7] Feng, F., Ye, L. (2010).
Journal of Applied Polymer Science, Vol. 119, 2778-2783 (2011) doi:10.1002/app.32863 [8] Li, R.K.Y., et al. (2008).
International Journal of Polymer Science [11] Panthapulakkal, S., et al. (2005).
Journal of Thermoplastic Composite Materials. 2005 Sage; 18(5): 445-58
Journal of Applied Polymer Science, Vol. 112, 345-352 (2009) doi:10.1002/app.29425 [7] Feng, F., Ye, L. (2010).
Journal of Applied Polymer Science, Vol. 119, 2778-2783 (2011) doi:10.1002/app.32863 [8] Li, R.K.Y., et al. (2008).
International Journal of Polymer Science [11] Panthapulakkal, S., et al. (2005).
Journal of Thermoplastic Composite Materials. 2005 Sage; 18(5): 445-58
Online since: December 2013
Authors: Yakup Parida, Eslamjan Diwani
Zhu: China Environmental Science (in Chinese).
Charlie and Q Shi: International Social Science Journal (in Chinese). 1984, Vol, 7(1984). p. 53 [6] Z.G.
Wei: China Environmental Science (in Chinese).
Zhuang: Chinese Journal of Analytical Chemistry (in Chinese). vol. 27(1999).p. 140 [14] Z.H.
Chen: Chinese Journal of Environmental Engineering ( in Chinese). 1(2007).
Charlie and Q Shi: International Social Science Journal (in Chinese). 1984, Vol, 7(1984). p. 53 [6] Z.G.
Wei: China Environmental Science (in Chinese).
Zhuang: Chinese Journal of Analytical Chemistry (in Chinese). vol. 27(1999).p. 140 [14] Z.H.
Chen: Chinese Journal of Environmental Engineering ( in Chinese). 1(2007).
Online since: October 2008
Authors: J. Subrahmanyam, T.S. Kannan, A. Udayakumar, R. Bhuvana, M. Balasubramanian, S. Kalyanasundaram
To
achieve these goals, novel or advanced materials are required.
Choy, Chemical vapour deposition of coatings, Progress in Materials Science 48 (2003) 57- 170
Journal of material science
Journal of nuclear materials, 289(2001) 23-29
Effect of fibre coating on interfacial shear strength of SiC/SiC by nano-indentation technique, Journal of Nuclear materials, 258-263 (1998) 1567-2571 [28] M.
Choy, Chemical vapour deposition of coatings, Progress in Materials Science 48 (2003) 57- 170
Journal of material science
Journal of nuclear materials, 289(2001) 23-29
Effect of fibre coating on interfacial shear strength of SiC/SiC by nano-indentation technique, Journal of Nuclear materials, 258-263 (1998) 1567-2571 [28] M.