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Online since: June 2014
Authors: Hong Wang, Jin Qu, Jin Xiang Miao, Cai Xia Li, Xin Chen, Qin Chang Song
Xu: submitted to Journal of Computers & Geosciences(2011), Vol.37, p.1909-1916
Ba: submitted to Journal of Advanced Materials Research(2013), Vol.734 , p.257-264
J.Y: submitted to Journal of Value engineering(2014), Vol.33(2), p.294-295, in Chinese
B: submitted to Earth Science-Journal of China University of Geosciences(2011), Vol. 36(2) , p.360-366, in Chinese
D: submitted to Journal of Geological Science and Technology Information(2001) , Vol.20(3) , p.83-90, in Chinese
Ba: submitted to Journal of Advanced Materials Research(2013), Vol.734 , p.257-264
J.Y: submitted to Journal of Value engineering(2014), Vol.33(2), p.294-295, in Chinese
B: submitted to Earth Science-Journal of China University of Geosciences(2011), Vol. 36(2) , p.360-366, in Chinese
D: submitted to Journal of Geological Science and Technology Information(2001) , Vol.20(3) , p.83-90, in Chinese
Online since: July 2015
Authors: Matteo Strano, Lionel Fourment, Lorenzo Iorio, Stephane Marie
Moulin, Implementing the Kalai-Smorodinsky bargaining solution, Journal of Economic Theory, Elsevier, vol. 33, No. 1, 1984, pp. 32-45
Management Science, Vol. 35, No. 6, 1989, pp. 693-707
Swindlehurst, Bargaining and the miso interference channel, EURASIP Journal on Advances in Signal Processing, Vol. 2009, No.2, 2009
[13] Marie Stephane et al., Inverse Analysis of Forming Processes Based on FORGE Environment, Key Engineering Materials, Vol. 611-612, 2014, pp.1494-1502 [14] T.
Fourment, The optimal die semi-angle concept in wire drawing, examined using automatic optimization techniques, International Journal of Material Forming, Vol. 6, No. 3, 2013, pp 377-389.
Management Science, Vol. 35, No. 6, 1989, pp. 693-707
Swindlehurst, Bargaining and the miso interference channel, EURASIP Journal on Advances in Signal Processing, Vol. 2009, No.2, 2009
[13] Marie Stephane et al., Inverse Analysis of Forming Processes Based on FORGE Environment, Key Engineering Materials, Vol. 611-612, 2014, pp.1494-1502 [14] T.
Fourment, The optimal die semi-angle concept in wire drawing, examined using automatic optimization techniques, International Journal of Material Forming, Vol. 6, No. 3, 2013, pp 377-389.
Online since: March 2011
Authors: Rosanna Di Lorenzo, Giuseppina Ambrogio, Giuseppe Ingarao, Fabrizio Micari
All of these issues imply manufacturing choices concerning materials to be used (for instance the use of the so called light weight materials, LWM) and their primary production impacts, processes to be utilized to manufacture such materials, the possibility to improve process design procedures to lessen environmental impacts and so on.
Thiede: CIRP Journal of Manufacturing Science and Technology Vol. 1 (2009), p. 221
Kuzman: Key Engeneering Materials Vol. 344 (2007), p. 931
Vanherck: Journal of Materials Processing Technology Vol. 189 (2007), p. 65
Ashby: Materials and the Environment: Eco-informed Material Choice (Butterworth-Heinemann, 2009)
Thiede: CIRP Journal of Manufacturing Science and Technology Vol. 1 (2009), p. 221
Kuzman: Key Engeneering Materials Vol. 344 (2007), p. 931
Vanherck: Journal of Materials Processing Technology Vol. 189 (2007), p. 65
Ashby: Materials and the Environment: Eco-informed Material Choice (Butterworth-Heinemann, 2009)
Online since: October 2014
Authors: Rafał Burdzik, Łukasz Konieczny, Piotr Folęga
Krupiński, Computer aided method for evaluation of failure class of materials working in creep conditions, Journal of Materials Processing Technology, Vol. 157 (2004) 102-106
Bogusław, Analysis of properties of automotive vehicle suspension arm depending on different materials used in the MSC.Adams environment, Archives of Materials Science and Engineering.
Journal of Achievements in Material and Manufacturing Engineering, 2013 59 (1) [14] W.
Zaclona, The modelling of high-speed steels' properties using neural networks, Journal Of Materials Processing Technology, 2004 157 pp 245-249
Dobrzański, Application of genetic methods in materials' design, Journal Of Materials Processing Technology, 2005 164 pp 1607-1611
Bogusław, Analysis of properties of automotive vehicle suspension arm depending on different materials used in the MSC.Adams environment, Archives of Materials Science and Engineering.
Journal of Achievements in Material and Manufacturing Engineering, 2013 59 (1) [14] W.
Zaclona, The modelling of high-speed steels' properties using neural networks, Journal Of Materials Processing Technology, 2004 157 pp 245-249
Dobrzański, Application of genetic methods in materials' design, Journal Of Materials Processing Technology, 2005 164 pp 1607-1611
Online since: December 2013
Authors: Chia Ju Liu, Ming Chi Lu, Chia Yi Chou, Chin Fei Huang, Ming Chung Ho, Chen Hsieh
Materials and methods
The data of three age groups were analyzed in this study which included children aged 7 years (N = 18; mean age = 7.68± .67 years; school years = 1; nine girls and nine boys), children aged 11 years (N = 18; mean age = 11.24± .58 years; school years = 5; nine girls and nine boys), and adults (N = 18; mean age = 25.20± 2.34 years; 9 female and 9 male).
Ornitz: Cognitive science, and clinical science (1999) 245-266
Kolev: Journal of Psychophysiology 23 (2009) 174-182
Sejnowski: Science 295 (2002) 690-694
Kolev Journal of Psychophysiology 12 (1998) 113-126
Ornitz: Cognitive science, and clinical science (1999) 245-266
Kolev: Journal of Psychophysiology 23 (2009) 174-182
Sejnowski: Science 295 (2002) 690-694
Kolev Journal of Psychophysiology 12 (1998) 113-126
Online since: July 2011
Authors: Jie Sun
The matrix could not bear the stress and fiber could bear the full load of the composite materials in the split cross section.
With the increasing of load in the composite materials, bond stress would be transferred into the matrix through the fiber.
As far as the fiber concrete, the average spacing of fiber would determine the performance of linear elastic materials.
ACI Journal Proceedings.61 (1964):p.657-670
Journal of Luoyang institute of science and technology (natural science edition). 12(2009),p.19-22(in Chinese) [3] Jun Zhao and Danying Gao.
With the increasing of load in the composite materials, bond stress would be transferred into the matrix through the fiber.
As far as the fiber concrete, the average spacing of fiber would determine the performance of linear elastic materials.
ACI Journal Proceedings.61 (1964):p.657-670
Journal of Luoyang institute of science and technology (natural science edition). 12(2009),p.19-22(in Chinese) [3] Jun Zhao and Danying Gao.
Online since: February 2012
Authors: Lin Jian Shang Guan, Yang Yang, Jie Yang
To analyse glass fiber-reinforced polypropylene, three scales can be analyzed: ①macroscopic scale, it belongs to continuum mechanics that occurred in the composite material synthesis and processing of polymer flow , it can be described by he basic macro-flow equations, including the continuity equation, the equations of motion and energy equations. ②microscopic scale, dumbbell model equations can be used to describe the evolution of micro-structural dynamics of molecular-level status, by statistical physics and continuum mechanics approach. the microscopic information is reflected in the macroscopic equation, then solve the macroeconomic impact of the phenomenon is not affected by the microstructure characterization of the problem. ③mesoscopic scale, for macroscopic flow field and molecular dumbbell configuration model, fibers suspending in complicated polymer solution is mesoscopic material , can be expressed using second-order tensor.
According to Kim[11] and Angelloz[12] research result , its nucleation equation can be expressed as follow: (10) Where is the nucleation density, and are constants of different materials.
References [1] T.S.Gates,G.M.Odegard,S.J.V.Frankland,et al: Composites Science and Technology, 2005(65): 2416~2434 [2] Seok Won Lee, Jae Ryoun, Jae Chun Hyun: Mat Res Innovat, 2002,6:189~197 [3] E.
Journal of Materials Processing Technology, 2001,111(1-3): 225-232 [4] Maurizio Fermeglia, Sabrina Pricl: Progress in Organic Coatings,2007,58(2): 187~199 [5] Q.H.
Lu: Progress in Polymer Science, 2008,33(2): 191~269 [6] Zhou Yingguo,Shen changyu,Chen Jingbo: Journal of University of Science and Technology Bejing,2007,29(2): 186~191
According to Kim[11] and Angelloz[12] research result , its nucleation equation can be expressed as follow: (10) Where is the nucleation density, and are constants of different materials.
References [1] T.S.Gates,G.M.Odegard,S.J.V.Frankland,et al: Composites Science and Technology, 2005(65): 2416~2434 [2] Seok Won Lee, Jae Ryoun, Jae Chun Hyun: Mat Res Innovat, 2002,6:189~197 [3] E.
Journal of Materials Processing Technology, 2001,111(1-3): 225-232 [4] Maurizio Fermeglia, Sabrina Pricl: Progress in Organic Coatings,2007,58(2): 187~199 [5] Q.H.
Lu: Progress in Polymer Science, 2008,33(2): 191~269 [6] Zhou Yingguo,Shen changyu,Chen Jingbo: Journal of University of Science and Technology Bejing,2007,29(2): 186~191
Online since: February 2014
Authors: Jin Hong Ma, Xiao Han Yao, Bin Tao
The material of rolling piece is seen as elastic and plastic, however, that of the roller as rigid.
Fig.1 Continuous rolling model Fig.2 FEM model of rolling piece Fig.3 Stress–strain model The material of rolling piece is 25 steel, the sectional strengthen material model is used. deformation resistance is as Eq. 1
The roller is seen as rigid material modal, three material parameters needed to input are density, Modulus of elasticity and Poisson's ratio.
References [1] Q.Q.He ,Q H.Zhang,H.L.Zhang ,et.al: Forging &Stamping Technology,2009,34(3):88-91 [2] Q.Q.He HE J.Sun, B.M.Yuan, et.al:Journal of South China Universtity of Technology (Natural Science Edition), 2010,38(1):144-148 [3] G.T.Ma, Y.Zang:Journal of University of Science and Technology Beijing, 2008(2):165-168
[4] J.Z.Bai:Theoretical foundation and Case Analysis of LS-DYNA3D, Peking: science press, 2005:93-115
Fig.1 Continuous rolling model Fig.2 FEM model of rolling piece Fig.3 Stress–strain model The material of rolling piece is 25 steel, the sectional strengthen material model is used. deformation resistance is as Eq. 1
The roller is seen as rigid material modal, three material parameters needed to input are density, Modulus of elasticity and Poisson's ratio.
References [1] Q.Q.He ,Q H.Zhang,H.L.Zhang ,et.al: Forging &Stamping Technology,2009,34(3):88-91 [2] Q.Q.He HE J.Sun, B.M.Yuan, et.al:Journal of South China Universtity of Technology (Natural Science Edition), 2010,38(1):144-148 [3] G.T.Ma, Y.Zang:Journal of University of Science and Technology Beijing, 2008(2):165-168
[4] J.Z.Bai:Theoretical foundation and Case Analysis of LS-DYNA3D, Peking: science press, 2005:93-115
Online since: January 2013
Authors: Sin Mao Fu, Chyi Shyong Lee, Hsin Hsiung Huang, Juing Huei Su
The educational platforms like the maze robot [2][3][4], line following robot [2][3] and line maze robot [5][6] are used to train the students of the electronic engineering and computer science.
Fig. 1(a) is the hardware circuit and mechanic materials to perform the line maze robot.
The materials of this training course and the educational platform are applied to train the vocational senior high school teacher and students in a five-day workshop with total 40 hours.
The feedback from vocational high school students and teachers in the 5-day workshop Question Items Scores (1-5) The training materials are complete to help me learn to control line-maze robots effectively. 4.9 I am very happy to join this training course to attend the related course. 4.9 The materials contain the basic theory and the hands-on laboratory to help us learn the line maze robot. 4.8 The training course is very interesting and we are glad to learn the programming by seeing the robot in the map. 4.8 We know the source and target by using the sensor detection and the corresponding firmware programming. 4.9 Conclusions In this project, students focus on the firmware programming and learn the shortest path algorithm for the line maze map.
[4] Juing-Huei Su, Chyi-Shyong Lee, and Hsin-Hsiung Huang, “A Micromouse Kit for Teaching Autonomous Mobile Robots,” International Journal of Electrical Engineering Education, pp. 188- 201, 2011
Fig. 1(a) is the hardware circuit and mechanic materials to perform the line maze robot.
The materials of this training course and the educational platform are applied to train the vocational senior high school teacher and students in a five-day workshop with total 40 hours.
The feedback from vocational high school students and teachers in the 5-day workshop Question Items Scores (1-5) The training materials are complete to help me learn to control line-maze robots effectively. 4.9 I am very happy to join this training course to attend the related course. 4.9 The materials contain the basic theory and the hands-on laboratory to help us learn the line maze robot. 4.8 The training course is very interesting and we are glad to learn the programming by seeing the robot in the map. 4.8 We know the source and target by using the sensor detection and the corresponding firmware programming. 4.9 Conclusions In this project, students focus on the firmware programming and learn the shortest path algorithm for the line maze map.
[4] Juing-Huei Su, Chyi-Shyong Lee, and Hsin-Hsiung Huang, “A Micromouse Kit for Teaching Autonomous Mobile Robots,” International Journal of Electrical Engineering Education, pp. 188- 201, 2011
Online since: September 2013
Authors: Jin Wang, Nian Suo Xie
Experimental material and method
Experimental Material.
References [1] WU Li-zhi,XIE Nian-suo:Journal Shaanxi Univercity of Technoligy,Vol.27 (2011), p. 1-4 (In Chinese)
[3] Yaming, Wang:Applied Surface science, Vol. 223 (2004) p. 258-267
[5] Yaming Wang, Bailing Jiang etc:Materials Lellers,Vol. 58 (2004) p. 1907-1911
[6] Ishizawa H,Onino M:Journal of Material Science,Vol.34(1999), p. 5893-5896.
References [1] WU Li-zhi,XIE Nian-suo:Journal Shaanxi Univercity of Technoligy,Vol.27 (2011), p. 1-4 (In Chinese)
[3] Yaming, Wang:Applied Surface science, Vol. 223 (2004) p. 258-267
[5] Yaming Wang, Bailing Jiang etc:Materials Lellers,Vol. 58 (2004) p. 1907-1911
[6] Ishizawa H,Onino M:Journal of Material Science,Vol.34(1999), p. 5893-5896.