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Online since: June 2013
Authors: Chui You Kong, Yong Zhang, Mao Ting Li
Fig.2 The initial boundary condition
The definition of the characteristic of the material: The set of material properties of the sheet is isotropic, and rigid-plastic material.
Transport Aircraft —a Challenge for Aluminum Alloys for the 21st Century.The Aeronautical Journal, Apr.1998, 181 - 188
Advanced Materials &Processes, Oct.1997, 17 - 19
Journal of Materials Processing Technology, 2001, 117: 276-281
Materials Science Forum, 2000, 22: 19-28
Transport Aircraft —a Challenge for Aluminum Alloys for the 21st Century.The Aeronautical Journal, Apr.1998, 181 - 188
Advanced Materials &Processes, Oct.1997, 17 - 19
Journal of Materials Processing Technology, 2001, 117: 276-281
Materials Science Forum, 2000, 22: 19-28
Online since: April 2012
Authors: Jian Hua Yan, Su Ping Cui, Qi Dong Liu, Xin Du
The Influence of a Particle Shape Correcting Technique in Properties of Recycled Coarse Aggregate[J].Materials Science and Technology,2005,13(6):579-582.
] proposed a new technology that utilizing the inter-impact and friction of high-speed moving particle.
Experimental Research on Reinforce of Recycled Aggregate[J].New Building Materials,2002,3:6-8. ], water glass solution[[11] Haili CHENG, Caiyan WANG.
Experimental Research on Water Glass Reinforced Recycled Aggregate[J].New Building Materials,2004,12:12-14. ], organic solution[[12] Ye LI.
Microstructural Analysis of Recycled Aggregate Produced from Niño-Enhancement Approach[J].Rare metal Materials and Engineering, 2010,39 (Suppl.2):409-414. ], etc.
Application of Construction Waste in Chiba Cement Factory[J].21 Century Building Materials, 2011, 3:70-71. ].
Experimental Research on Reinforce of Recycled Aggregate[J].New Building Materials,2002,3:6-8. ], water glass solution[[11] Haili CHENG, Caiyan WANG.
Experimental Research on Water Glass Reinforced Recycled Aggregate[J].New Building Materials,2004,12:12-14. ], organic solution[[12] Ye LI.
Microstructural Analysis of Recycled Aggregate Produced from Niño-Enhancement Approach[J].Rare metal Materials and Engineering, 2010,39 (Suppl.2):409-414. ], etc.
Application of Construction Waste in Chiba Cement Factory[J].21 Century Building Materials, 2011, 3:70-71. ].
Online since: May 2017
Authors: Yi Dan Tang, Yun Bai, Xu Fang Zhang, Hua Jun Shen, Zhao Yang Peng, Fei Guo, Xin Yu Liu
One of the key technology issues currently limiting the performance of SiC electronic devices is ohmic contacts, particularly contacts to p-type material [3].
[3] Brian J, Johnson, Michael A.Capan, Journal of Applied Physics.
[4]Ryohei Konishi, Ryuichi Yasukochi, Osamu Nakatsuka, Yasuo Koide, Miki Moriyama, Masanori Murakami, Journal of Electronic Materials.
[7] S.Tsukimoto, K.Nitta, T.Sakai, M.Moriyama and Masanori Murakami, Journal of ELECTRONIC MATERIALS, Vol. 33, No. 5, (2004) 460-463
[8] M.Gao, S.Tsukimoto, S.H.Goss, S.P.Tumakha, T.Onishi, M.Murakami, and L.J.Brillson, Journal of Electronic Materials, Vol. 36, No. 4,(2007)277-284
[3] Brian J, Johnson, Michael A.Capan, Journal of Applied Physics.
[4]Ryohei Konishi, Ryuichi Yasukochi, Osamu Nakatsuka, Yasuo Koide, Miki Moriyama, Masanori Murakami, Journal of Electronic Materials.
[7] S.Tsukimoto, K.Nitta, T.Sakai, M.Moriyama and Masanori Murakami, Journal of ELECTRONIC MATERIALS, Vol. 33, No. 5, (2004) 460-463
[8] M.Gao, S.Tsukimoto, S.H.Goss, S.P.Tumakha, T.Onishi, M.Murakami, and L.J.Brillson, Journal of Electronic Materials, Vol. 36, No. 4,(2007)277-284
Online since: December 2014
Authors: Ke Min Xue, Yu Sheng Liu, Ping Li, Tian Zong Gongzi
Effect of Pre-heating Temperature on Microstructure and Properties of 22MnB5 Steel Hot Stamping
Ping Lia, Yusheng Liub, Tianzong Gongzic and Kemin Xued,*
School of Materials Science and Engineering, Hefei University of Technology,
Hefei 230009, P.
References [1] Turetta A, Bruschi S and Ghiotti A, Investigation of 22MnB5 formability in hot stamping operations, Journal of Materials Processing Technology. 177 (2006) 396-400
[5] George R, Bardelcik A and Worswick M J, Hot forming of boron steels using heated and cooled tooling for tailored properties, Journal of Materials Processing Technology. 212 (2012) 2386-2399
[6] Bok H H, Lee M G and Pavlina E J, Comparative study of the prediction of microstructure and mechanical properties for a hot-stamped B-pillar reinforcing part, International Journal of Mechanical Sciences. 53 (2011) 744-752
[7] Karbasian H and Tekkaya A E, A review on hot stamping, Journal of Materials Processing Technology. 210 (2010) 2103-2118
References [1] Turetta A, Bruschi S and Ghiotti A, Investigation of 22MnB5 formability in hot stamping operations, Journal of Materials Processing Technology. 177 (2006) 396-400
[5] George R, Bardelcik A and Worswick M J, Hot forming of boron steels using heated and cooled tooling for tailored properties, Journal of Materials Processing Technology. 212 (2012) 2386-2399
[6] Bok H H, Lee M G and Pavlina E J, Comparative study of the prediction of microstructure and mechanical properties for a hot-stamped B-pillar reinforcing part, International Journal of Mechanical Sciences. 53 (2011) 744-752
[7] Karbasian H and Tekkaya A E, A review on hot stamping, Journal of Materials Processing Technology. 210 (2010) 2103-2118
Online since: October 2014
Authors: Song Lin Huang, Jian Zhong Cui
Ryu, B.Hong and J.Kwon: Journal of Computer Science and Technology, Vol. 27 (2012) No.1, p.213
Li: Science China(Technological Sciences), Vol. 55 (2012) No.7, p.1852
King: Journal of Computer Science and Technology,Vol. 22 (2007) No.3, p.438
Xu: Journal of Systems Science and Systems Engineering, Vol. 22 (2013) No.2, p.152
Li: Journal of Computer Science and Technology, Vol. 24 (2009) No.4, p.723
Li: Science China(Technological Sciences), Vol. 55 (2012) No.7, p.1852
King: Journal of Computer Science and Technology,Vol. 22 (2007) No.3, p.438
Xu: Journal of Systems Science and Systems Engineering, Vol. 22 (2013) No.2, p.152
Li: Journal of Computer Science and Technology, Vol. 24 (2009) No.4, p.723
Online since: January 2019
Authors: Natalia Perez-Ema, Monica Alvarez de Buergo
This nanoproduct was specifically designed for the conservation of stone materials, being this study the first one performed on stone materials of archaeological provenance.
Science, Technology and Cultural Heritage.
Materials and structures.
Journal of Geophysics and Engineering 9, pp. 108-117
Journal of Colloidal and Interface Science, 435, pp. 128-137 [14] VÁZQUEZ-CALVO, C., ÁLVAREZ DE BUERGO, M., FORT, R., VARAS-MURIEL, M.J. (2012) “The measurement of surface roughness to determine the suitability of different methods for stone cleaning”.
Science, Technology and Cultural Heritage.
Materials and structures.
Journal of Geophysics and Engineering 9, pp. 108-117
Journal of Colloidal and Interface Science, 435, pp. 128-137 [14] VÁZQUEZ-CALVO, C., ÁLVAREZ DE BUERGO, M., FORT, R., VARAS-MURIEL, M.J. (2012) “The measurement of surface roughness to determine the suitability of different methods for stone cleaning”.
Online since: August 2009
Authors: Qing Liu, Zhen Xing Yao, Xian Peng Zheng, Yan Ming Yang, Qin Wei, Bin Du
Acknowledgement
This study was supported by the Natural Science Foundation of China (No.20577016), the Natural
Science Foundation of Shandong Province (Y2006B36 and Y2008B44), and the Key Subject
Research Foundation of Shandong Province(XTD0705) and all the authors express their deep thanks.
Materials Letters Vol. 62 (2008), p. 1107 [8] Ruan LM, Wang H, Hao YY, Zhou H, Liu X and Xu B.
Journal of Luminescence Vol. 122 (2007), p. 467 [9] Guo DC, Shu WL, Zhou Y and Liu YN.
Journal of Rare Earth Vol. 22 (2004), p. 196 [10] Liu Q, Zheng XP, Xu YY, Yao ZX, Xin XD and Du B.
Journal of University of Jinan Vol. 22 (2008), p. 347 [11] Zhang SM, Wu HL, Zhang ZJ, Dang HX and Liu WM.
Materials Letters Vol. 62 (2008), p. 1107 [8] Ruan LM, Wang H, Hao YY, Zhou H, Liu X and Xu B.
Journal of Luminescence Vol. 122 (2007), p. 467 [9] Guo DC, Shu WL, Zhou Y and Liu YN.
Journal of Rare Earth Vol. 22 (2004), p. 196 [10] Liu Q, Zheng XP, Xu YY, Yao ZX, Xin XD and Du B.
Journal of University of Jinan Vol. 22 (2008), p. 347 [11] Zhang SM, Wu HL, Zhang ZJ, Dang HX and Liu WM.
Online since: April 2014
Authors: Yan Wei Yuan, Zheng Sun, Shu Jun Li, Xin Dong, Jun Ning Zhang, Li Ming Zhou
To detection the material position, photoelectric material position sensors were installed around the circumference of the roller cross-section, shown in Fig.3.
Fig.3 Sensor array layout The distance between air outlet and material can be derived out from Figure 3
African Journal of Plant Science, 2010, 4(9): 339-345
Journal of Harbin Institute of Technology, 2004.36(5): 631-634 (In Chinese)
Native Plants Journal, 2013, 14(2): 95-100
Fig.3 Sensor array layout The distance between air outlet and material can be derived out from Figure 3
African Journal of Plant Science, 2010, 4(9): 339-345
Journal of Harbin Institute of Technology, 2004.36(5): 631-634 (In Chinese)
Native Plants Journal, 2013, 14(2): 95-100
Online since: November 2010
Authors: Hyung Wook Park
Study of an Identification Method of the Mesoscale Tool Position
Hyung Wook Park1,a,*
1
School of Mechanical and Advanced Materials Engineering, Ulsan National Institute of Science and
Technology, South Korea
a
hwpark@unist.ac.kr
Keywords: Laser beam, Non-contact, Acoustic emission, Mesoscale tool position, Acoustic
emission
Abstract.
Assuming that both the mesoscale tool and the workpiece are made of conductive materials, then if a certain voltage is supplied at the end of the mesoscale tool, the current will flow from the tool to the workpiece.
Basically, when a material is subjected to stresses or external forces, mechanical waves are generated within the material.
Liang: International Journal of Machine Tools and Manufacture, Vol. 48 (2008), p. 1658 [2] D.
DeVor: Journal of Manufacturing Science and Engineering, Vol. 130 (2008)
Assuming that both the mesoscale tool and the workpiece are made of conductive materials, then if a certain voltage is supplied at the end of the mesoscale tool, the current will flow from the tool to the workpiece.
Basically, when a material is subjected to stresses or external forces, mechanical waves are generated within the material.
Liang: International Journal of Machine Tools and Manufacture, Vol. 48 (2008), p. 1658 [2] D.
DeVor: Journal of Manufacturing Science and Engineering, Vol. 130 (2008)
Online since: July 2015
Authors: N.M. Shaffiar, Erry Y.T. Adesta, Mohammad Riza, Amin M.F. Seder, Muataz Hazza Faizi Al Hazza
Advanced Materials Research, (2011). 264, 997-1002
Advanced Materials Research, 83, (2010). 1009-1015
Advanced Materials Research, 576, (2012).103-106
Journal of Achievements in Materials and Manufacturing Engineering, 22(2), 75-78
Science 220:671–680
Advanced Materials Research, 83, (2010). 1009-1015
Advanced Materials Research, 576, (2012).103-106
Journal of Achievements in Materials and Manufacturing Engineering, 22(2), 75-78
Science 220:671–680