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Online since: July 2013
Authors: Hai Yang Wang, Xin Hua Zhang, Gang Wang
High level borehole of 3-219 was set in material roadway.
The horizontal distance between borehole bottom location and materials roadway was be controlled in the range of 5~23 m and the height from the roof will be controlled in the range of 15~25 m.
The specific laying route of pipeline: drilling field of 219 material roadway→219 material roadway→219 pump station→219 material roadway →Return airway of No 2 mining area→219 dedicated Release roadway for gas drainage.
Shandong: Shandong University of Science and Technology, 2012
Beijing: Science Press, 2009
The horizontal distance between borehole bottom location and materials roadway was be controlled in the range of 5~23 m and the height from the roof will be controlled in the range of 15~25 m.
The specific laying route of pipeline: drilling field of 219 material roadway→219 material roadway→219 pump station→219 material roadway →Return airway of No 2 mining area→219 dedicated Release roadway for gas drainage.
Shandong: Shandong University of Science and Technology, 2012
Beijing: Science Press, 2009
Online since: September 2009
Authors: Shi Chun Yang, Chun Hua Song
For the conveniences of calculation, the spherical particles with different materials and different
sizes were chosen as the abrasive particles and workpieces, the dynamics model of abrasive
particles and workpieces on finishing process were built by 3D DEM.
Liu: Mechanical Science and Technology, Vol. 22 (2003) No.3, pp.386-388.
Wang: Journal of Tianjin Institute of Textile Science and Technology, Vol. 13 (1994) No.4, pp.104-108.
Yang: Journal of Tianjin Institute of Textile Science and Technology, Vol. 19 (2000) No.4, pp.17-20.
Wang: Journal of Tianjin University of Light Industry.
Liu: Mechanical Science and Technology, Vol. 22 (2003) No.3, pp.386-388.
Wang: Journal of Tianjin Institute of Textile Science and Technology, Vol. 13 (1994) No.4, pp.104-108.
Yang: Journal of Tianjin Institute of Textile Science and Technology, Vol. 19 (2000) No.4, pp.17-20.
Wang: Journal of Tianjin University of Light Industry.
Online since: October 2011
Authors: Hong Liang Yu, Hui Xing, Shu Lin Duan, Qin An Liu
China Safety Science Journal, 2010, 20(3):156-160.
Science of the Total Environment, 408(2010):5775–5783
Journal of Hazardous Materials, 107(2004): 59-66
China Safety Science Journal, 2010, 20(8):165-169.
China Safety Science Journal, 2009, 19(3):149-154.
Science of the Total Environment, 408(2010):5775–5783
Journal of Hazardous Materials, 107(2004): 59-66
China Safety Science Journal, 2010, 20(8):165-169.
China Safety Science Journal, 2009, 19(3):149-154.
Online since: February 2014
Authors: Lei Lei Xiao, Jun Hua Liu, Mei Ling Liu, Min Hui Fu, Yu Jun Zhang
Corrosion behavior of Incoloy 800 in molten nitrate salt
Zhang Yujun 1, a, Xiao Leilei 1, Liu Junhua 1, Liu Meiling 1, Fu Minhui 1
1 Material Science and Engineering School, Xi’an University of Science and Technology, Xi’an 710043, China
a zhangyuxiou_dl@163.com
Keywords: Incoloy 800; Corrosion; Oxidation; Molten salts.
For the safety of the molten salts STP plant, the corrosion behavior of candidate receiver tube materials used in such an aggressive environment needs to be understood well [5-6].
High nickel alloys have been considered as one kind of candidate materials due to their combined good corrosion resistance and mechanical properties in high temperature molten salts.
Zhang: Journal of Shaanxi University of Science & Technology, Vol. 26 (2008), p. 21
Gencheva: Materials Chemistry and Physics, Vol. 83 (2003), p.897
For the safety of the molten salts STP plant, the corrosion behavior of candidate receiver tube materials used in such an aggressive environment needs to be understood well [5-6].
High nickel alloys have been considered as one kind of candidate materials due to their combined good corrosion resistance and mechanical properties in high temperature molten salts.
Zhang: Journal of Shaanxi University of Science & Technology, Vol. 26 (2008), p. 21
Gencheva: Materials Chemistry and Physics, Vol. 83 (2003), p.897
Online since: July 2017
Authors: Elena S. Parfenova
Introduction
Each stage of technological and technical development is directly connected with the improvement of operational properties of materials.
We assume that a thin layer (material B) covers the target surface (material A).
The Russian Journal of Applied Physics, 46 No.11 (2001) 1465-1469
Radzhabov, Ion-stimulated and thermally activated secondary processes during ion-beam modification of the materials and coatings properties, Journal of surface investigation: X-Ray, synchrotron and neutron techniques, 5 (2004) 68-72
Knyazeva, Metal Surface Treatment with Particle Fluxes Taking into Account the Internal Boundary,Key Engineering Materials, 685 (2016) 413-416.
We assume that a thin layer (material B) covers the target surface (material A).
The Russian Journal of Applied Physics, 46 No.11 (2001) 1465-1469
Radzhabov, Ion-stimulated and thermally activated secondary processes during ion-beam modification of the materials and coatings properties, Journal of surface investigation: X-Ray, synchrotron and neutron techniques, 5 (2004) 68-72
Knyazeva, Metal Surface Treatment with Particle Fluxes Taking into Account the Internal Boundary,Key Engineering Materials, 685 (2016) 413-416.
Online since: September 2013
Authors: Peng Shang, Ling Xiong, You Lin Xu
Kollman: Journal of Mechanical Design Vol. 103 (1981), p. 61
[2] S.Sen and B.Aksakal: Materials and Design Vol. 25 (2004), p. 407-417
[3] D.
Patent 5,697,848. (1997) [7] Pierre-Daniel Pfister and Yves Perriard, in: Proc. 8th ICEMS, 3054-3059, Wuhan, China (2008) [8] Guoping Wang, Hualing Chen, Shemiao Qi et al, in: 3rd International Conference on Machinery, Materials Science and Engineering Applications, Wuhan, China (2013) [9] Peng Shang, Ying Zhan, Sheng Feng et al, Advanced Materials Research Vol. 744 (2013), p. 180-184 [10] In Chinese: Qi Teng, Zhongxia Xiang.
Journal of Machine Design Vol. 20, 2 (2003), p. 42-43 [12] Dincer Bozkaya, Sinan Müftü.
Journal of Biomechanics Vol. 36 (2003), p. 1649-1658 [13] Dincer Bozkaya, Sinan Müftü.
Journal of Mechanical Strength Vol. 33 (2011), p. 86-92
Patent 5,697,848. (1997) [7] Pierre-Daniel Pfister and Yves Perriard, in: Proc. 8th ICEMS, 3054-3059, Wuhan, China (2008) [8] Guoping Wang, Hualing Chen, Shemiao Qi et al, in: 3rd International Conference on Machinery, Materials Science and Engineering Applications, Wuhan, China (2013) [9] Peng Shang, Ying Zhan, Sheng Feng et al, Advanced Materials Research Vol. 744 (2013), p. 180-184 [10] In Chinese: Qi Teng, Zhongxia Xiang.
Journal of Machine Design Vol. 20, 2 (2003), p. 42-43 [12] Dincer Bozkaya, Sinan Müftü.
Journal of Biomechanics Vol. 36 (2003), p. 1649-1658 [13] Dincer Bozkaya, Sinan Müftü.
Journal of Mechanical Strength Vol. 33 (2011), p. 86-92
Online since: September 2014
Authors: Fu Sheng Ni, Lei Gu, De Yi Zhang, Hui Wang
Simulation
Material model.
Journal of Zhejiang University(Engineering Science). 2008,42:259-263(in chinese) [4] Ha H.
Journal of Terramechanics. 2007,44 :339–346 [5] Aderibigbe O O, Rajaratnam N.
Journal of Hydraulic Research, 1996,34(1):19–33 [6] Gordon R.
Journal of Computational Physics. 2003,191: 448–475
Journal of Zhejiang University(Engineering Science). 2008,42:259-263(in chinese) [4] Ha H.
Journal of Terramechanics. 2007,44 :339–346 [5] Aderibigbe O O, Rajaratnam N.
Journal of Hydraulic Research, 1996,34(1):19–33 [6] Gordon R.
Journal of Computational Physics. 2003,191: 448–475
Online since: August 2012
Authors: Guo Zhi Xu, Biao Yang, Sheng Wang, Fei Xin
The rheology of shear thickening fluid (STF) and the dynamic performance of an STF-filled damper Smart Materials and Structures, 2008, 17 (3):035027
[2] Young S.
Journal of materials and Science, 2003,38: 2825-2833
Materials Science and Engineering: A, 2010, 527(12): 2892-2899
International Journal of Solid and Structures, 2005, 42(5-6):1561-1576
Materials Science and Engineering of Powder Metallurgy, 2010, 15(1): 1-7.
Journal of materials and Science, 2003,38: 2825-2833
Materials Science and Engineering: A, 2010, 527(12): 2892-2899
International Journal of Solid and Structures, 2005, 42(5-6):1561-1576
Materials Science and Engineering of Powder Metallurgy, 2010, 15(1): 1-7.
Online since: August 2013
Authors: Yi Kun Su, Kui Xi, Zheng Bin Wu, Shan Shan Li
Piezoelectric Vibration Energy Harvester in Electric Vehicles
Shanshan Li 1, 2, Zhengbin Wu 2, a, Yikun Su 1 and Kui Xi 2
1 Shenzhen University, College of Materials Science and Engineering, China
2 Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, China
azb.wu@siat.ac.cn
Keywords: vibration energy harvester; piezoelectric vibrator; battery charging; electric vehicles.
Some of its material parameters are listed in Table 1.
Stainless steel is selected as support material due to its excellent elasticity, larger deformability, higher corrosion resistibility, and higher electrical conductivity compared to other metal materials.
Faaij: Performance of batteries for electric vehicles on short and longer term, Journal of Power Sources.
Vol. 20 (2013), p.82-102 [3] L Moro and D Benasciutti: Harvested power and sensitivity analysis of vibrating shoe-mounted piezoelectric cantilevers, Smart Materials and Structures.
Some of its material parameters are listed in Table 1.
Stainless steel is selected as support material due to its excellent elasticity, larger deformability, higher corrosion resistibility, and higher electrical conductivity compared to other metal materials.
Faaij: Performance of batteries for electric vehicles on short and longer term, Journal of Power Sources.
Vol. 20 (2013), p.82-102 [3] L Moro and D Benasciutti: Harvested power and sensitivity analysis of vibrating shoe-mounted piezoelectric cantilevers, Smart Materials and Structures.
Online since: December 2012
Authors: Zhuang Zhuang Liu, Guo Ping An, Zhifeng Liu
It is a branch of visual arts, contains any material that possible to build like plastic, wood or metal etc.
Mooson Kwauk[1] the Academician of the Chinese Academy of Sciences had done lots of research on Kinetic art Since 1986.
Its design covers mechanical analysis, model geometry, material properties, and many other factors.
More lightweight materials the systems using, larger the air damping emerge.
More heavyweight materials the systems using, smaller the air damping become or even can be ignored.
Mooson Kwauk[1] the Academician of the Chinese Academy of Sciences had done lots of research on Kinetic art Since 1986.
Its design covers mechanical analysis, model geometry, material properties, and many other factors.
More lightweight materials the systems using, larger the air damping emerge.
More heavyweight materials the systems using, smaller the air damping become or even can be ignored.