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Online since: September 2013
Authors: Zhi Feng Fu, Bing Bing Yang, Yan Shi
Experimental Section
Materials.
Goodman, I., Ed.; Applied Science Publishers, London (1982); Vol. 1, p.39 [2] A.
Eisenberg: Science Vol. 268(1995), p.1728 - 1731 [5] Y.
Eisenberg: Macromolecules Vol. 31, p.1144 [6] Haizhou Yu, Jintao Zhu and Wei Jiang: Journal of Polymer Science: Part B: Polymer Physics, Vol. 46(2008), p.1536–1545 [7] Jianjun Yuan and Lei Jiang.
Journal of Applied Polymer Science, Vol. 89(2003), p.1017–1025 [8] O.
Goodman, I., Ed.; Applied Science Publishers, London (1982); Vol. 1, p.39 [2] A.
Eisenberg: Science Vol. 268(1995), p.1728 - 1731 [5] Y.
Eisenberg: Macromolecules Vol. 31, p.1144 [6] Haizhou Yu, Jintao Zhu and Wei Jiang: Journal of Polymer Science: Part B: Polymer Physics, Vol. 46(2008), p.1536–1545 [7] Jianjun Yuan and Lei Jiang.
Journal of Applied Polymer Science, Vol. 89(2003), p.1017–1025 [8] O.
Online since: January 2013
Authors: Jian Weng, Richard Happson Joseph Massawe, Shu Bin Cai, Heng Sun
Study on Component Library for Storing Mechanical Devices with Mechanical Properties
Heng Sun1,a, Shubin Cai2,3,b, Jian Weng1,c,
Richard Happson Joseph Massawe4,d
1Department of Computer Science, Jinan University, Guangzhou, 510632, China
2Software Engineering Department, Shenzhen University, Shenzhen, 518060, China
3Shenzhen Key Laboratory of High Performance Data Mining, Shenzhen, 518055, China
4International School, Jinan University, Guangzhou, 510632, China
atsunheng@jnu.edu.cn, bshubin@szu.edu.cn, ccryptjweng@gmail.com, dPiratte@live.com
Keywords: Mechanical device, component modeling, mechanical property, assembly library
Abstract.
Acknowledgement This work was supported by the National Science Foundation of China (No.60903178), the Guangdong Natural Science Foundation (No.9451063201002934), the Start-up Research Fund for Introduced Talents in Jinan University, the Thirteenth Teaching Reform and Research Project of Jinan University (The Experimental Teaching of Software Processes and Project Management Course), the Seventh Thousand-Hundred-Ten Talent Project (University Level), the Shenzhen Science and Technology Plan (No.
European Journal of Agronomy, Vol. 24 (2006), p. 186-192
Advanced Materials Research, Vol. 121-122 (2010). p. 232-236
International Journal of Advanced Manufacturing Technology, Vol. 22 (2003). p. 611-618
Acknowledgement This work was supported by the National Science Foundation of China (No.60903178), the Guangdong Natural Science Foundation (No.9451063201002934), the Start-up Research Fund for Introduced Talents in Jinan University, the Thirteenth Teaching Reform and Research Project of Jinan University (The Experimental Teaching of Software Processes and Project Management Course), the Seventh Thousand-Hundred-Ten Talent Project (University Level), the Shenzhen Science and Technology Plan (No.
European Journal of Agronomy, Vol. 24 (2006), p. 186-192
Advanced Materials Research, Vol. 121-122 (2010). p. 232-236
International Journal of Advanced Manufacturing Technology, Vol. 22 (2003). p. 611-618
Online since: January 2013
Authors: T.H. Ueng, Ching Chyi Chen, Hsieh Kuo Cheng
Calcium oxide-containing materials, such as de-sulfur slag produced from steel manufacturing process, are used as stabilizing agents for secondary aluminum dross.
Journal of the American Ceramic Society (2004), 87(3), 496-499
Materials at High Temperatures (2003), 20(3), 453-460
[4] Maschio, R.D. etc., Refractory Products obtained Using Aluminum rich recovered raw materials, Ceramic Developments - Edited by C.C.
Sorrell et al.., Materials Science Forum (1988), Volumes 34-36, P735.
Journal of the American Ceramic Society (2004), 87(3), 496-499
Materials at High Temperatures (2003), 20(3), 453-460
[4] Maschio, R.D. etc., Refractory Products obtained Using Aluminum rich recovered raw materials, Ceramic Developments - Edited by C.C.
Sorrell et al.., Materials Science Forum (1988), Volumes 34-36, P735.
Online since: August 2018
Authors: Wirunya Keawwattana, Waraphorn Buakhlee, Pimsiree Suwanna
Materials and Method
Materials.
The authors are grateful to Center of Excellence-Oil Palm, Kasetsart University and Specialized center of Rubber and Polymer Materials for agriculture and industry (RPM), Faculty of Science, Kasetsart University for the publication support.
Niedermeien, New reinforcing materials for rising tire performance demands.
Journal of Applied Polymer Science, 2010. 118(1): p. 566-573
Journal of King Saud University - Science, 2013. 25(4): p. 331-339
The authors are grateful to Center of Excellence-Oil Palm, Kasetsart University and Specialized center of Rubber and Polymer Materials for agriculture and industry (RPM), Faculty of Science, Kasetsart University for the publication support.
Niedermeien, New reinforcing materials for rising tire performance demands.
Journal of Applied Polymer Science, 2010. 118(1): p. 566-573
Journal of King Saud University - Science, 2013. 25(4): p. 331-339
Online since: January 2013
Authors: Qing Wang, Yong Dan
The elastic module of the material , Poisson Ratio , shell thickness and weight .
[2] Bogner F.K, Fox R.L.: submitted to Journal of ALAA (1967)
[3] Gills Gantin: submitted to Journal of ALAA (1968)
[4] Gills Gantin: submitted to Journal of ALAA(1970)
Sabira B. : submitted to Journal of Mechanical Sciences (1973)
[2] Bogner F.K, Fox R.L.: submitted to Journal of ALAA (1967)
[3] Gills Gantin: submitted to Journal of ALAA (1968)
[4] Gills Gantin: submitted to Journal of ALAA(1970)
Sabira B. : submitted to Journal of Mechanical Sciences (1973)
Online since: November 2016
Authors: Qing Liu, Bai Feng Luan, Chun Hong Li, Zhi Qiang Li, Wei Jun He
Li, Improvement of interface and mechanical properties in carbon nanotube reinforced Cu–Cr matrix composites, Materials & Desig. 45 (2013) 407-411
Peng, Synthesis of aligned carbon nanotube composite fibers with high performances by electrochemical deposition, Journal of Materials Chemistry A. 1 (2013) 2211-2216
Wen, Carbon Nanotube Reinforced Titanium Metal Matrix Composites Prepared by Powder Metallurgy––A Review, Critical Reviews in Solid State and Materials Sciences. (2014) 1-18
Li, Processing and properties of carbon nanotubes reinforced aluminum composites, Materials Science and Engineering: A. 444 (2007) 138-145
Benson, Mechanical properties of nanocrystalline materials, Progress in Materials Science. 51 (2006) 427-556
Peng, Synthesis of aligned carbon nanotube composite fibers with high performances by electrochemical deposition, Journal of Materials Chemistry A. 1 (2013) 2211-2216
Wen, Carbon Nanotube Reinforced Titanium Metal Matrix Composites Prepared by Powder Metallurgy––A Review, Critical Reviews in Solid State and Materials Sciences. (2014) 1-18
Li, Processing and properties of carbon nanotubes reinforced aluminum composites, Materials Science and Engineering: A. 444 (2007) 138-145
Benson, Mechanical properties of nanocrystalline materials, Progress in Materials Science. 51 (2006) 427-556
Online since: May 2010
Authors: Carl J. Boehlert, Wei Chen
Experimental
Materials Processing.
Firstov: Materials Science and Engineering A, Vol 402, (2005), p. 76-83
Ward-Close: Materials Science and Engineering A, Vol. 282, (2000), p. 240-250
Boehlert: Materials Science and Engineering A, Vol 494, (2008), p. 132-138
Boehlert: Materials Science and Engineering A, Vol. 510-511 (2009), p. 434-439
Firstov: Materials Science and Engineering A, Vol 402, (2005), p. 76-83
Ward-Close: Materials Science and Engineering A, Vol. 282, (2000), p. 240-250
Boehlert: Materials Science and Engineering A, Vol 494, (2008), p. 132-138
Boehlert: Materials Science and Engineering A, Vol. 510-511 (2009), p. 434-439
Online since: February 2015
Authors: André Luis Christoforo, Francisco Antonio Rocco Lahr, Luiz A. Melgaço N. Branco, Ivaldo D. Valarelli, Eduardo Chahud, Rosane A.G. Battistelle, Barbara Stolte Bezerra, Aline de Lima Zuim
In this research the aim was produce a particleboard with alternative materials and evaluated its physical and mechanical characteristics.
The raw materials used are residues from sucarcane bagasse (SC) (Saccharum officinarum) and stem leaves of bamboo (B) (Dendrocalamus giganteus), bonded with a bi component adhesive based on castor oil.
The materials are mix accordingly to description presented in Table 1.
All this materials were mixed manually and later, placed in a horizontal mixer with rotating shovels, during five minutes.
Journal of Wood Science, vol 51 (6) (2005); p. 648-654
The raw materials used are residues from sucarcane bagasse (SC) (Saccharum officinarum) and stem leaves of bamboo (B) (Dendrocalamus giganteus), bonded with a bi component adhesive based on castor oil.
The materials are mix accordingly to description presented in Table 1.
All this materials were mixed manually and later, placed in a horizontal mixer with rotating shovels, during five minutes.
Journal of Wood Science, vol 51 (6) (2005); p. 648-654
Online since: January 2012
Authors: Qiang Yang, Wen Jun Yan, Zhi Peng Liu
Introduction
Pre-grinding system is one of the key components in the operation of cement plants which significantly promotes the energy utilization efficiency, reduces the time for the materials in the mill and makes the material particle size more uniform.
Ball Mill Elevator Bin Roller Press Feeding Circulating Fan Qualified Materials Unqualified Materials Figure 2.
The structure of Bin Weight-Keeping System (BWKS) Unqualified Materials Circulating Fan Qualified Materials Qualified Materials Elevator Classifier Ball Mill Figure 3.
Zou, “Pre-grinding technology and analysis of its application key points,” Science and Technology of Cement, no.4, pp.17-21, 2008
Materials Processing Technology, vol.187, pp.715–719, 2007
Ball Mill Elevator Bin Roller Press Feeding Circulating Fan Qualified Materials Unqualified Materials Figure 2.
The structure of Bin Weight-Keeping System (BWKS) Unqualified Materials Circulating Fan Qualified Materials Qualified Materials Elevator Classifier Ball Mill Figure 3.
Zou, “Pre-grinding technology and analysis of its application key points,” Science and Technology of Cement, no.4, pp.17-21, 2008
Materials Processing Technology, vol.187, pp.715–719, 2007
Online since: November 2011
Authors: Diego Mantovani, Lucie Levesque
Materials and methods
Mechanical stimulation system.
Berry: The Journal of Pathology Vol. 190 (2000), p. 292-299
Conte: The FASEB Journal Vol. 12 (1998), p. 43
Jiang: Biophysical journal Vol. 94 (2008), p. 1497-1507
Oka: ASAIO journal Vol. 39 (1993), p.
Berry: The Journal of Pathology Vol. 190 (2000), p. 292-299
Conte: The FASEB Journal Vol. 12 (1998), p. 43
Jiang: Biophysical journal Vol. 94 (2008), p. 1497-1507
Oka: ASAIO journal Vol. 39 (1993), p.