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Online since: February 2012
Authors: Meng Wei Liu, Ming Xin Xue, Xin Li, Jun Hong Li
In this paper, the material parameters , and of the thin plate can be estimated depending on the material thickness ratio of the LTO/ZnO/LTO/Si3N4 (0.2:1:2:0.5) multilayered composite plate.
Table 2 shows the material and thickness parameters of the MEMS FPW device.
Table 2 Material parameters of LTO/ZnO/LTO/Si3N4 multilayered plate [12,13] Materials Thickness (μm) Young’s modulus E(GPa) Poisson’s ratio density (Kg/m3) Si3N4 0.5 146 0.25 3000 LTO 2.2 73 0.17 2660 ZnO 1 120 0.446 5610 multilayered plate 3.7 95.6 0.26 3503 Conclusion In this work, a MEMS FPW device based on LTO/ZnO/LTO/Si3N4 multilayered thin plate was designed and fabricated.
Racine, et al: Journal of Microelectromechanical Systems Vol. 6 (1997), p.337 [9] S.W.
Kovac: Micromachined Transducers Sourcebook (McGraw-Hill Science, New York 1998)
Table 2 shows the material and thickness parameters of the MEMS FPW device.
Table 2 Material parameters of LTO/ZnO/LTO/Si3N4 multilayered plate [12,13] Materials Thickness (μm) Young’s modulus E(GPa) Poisson’s ratio density (Kg/m3) Si3N4 0.5 146 0.25 3000 LTO 2.2 73 0.17 2660 ZnO 1 120 0.446 5610 multilayered plate 3.7 95.6 0.26 3503 Conclusion In this work, a MEMS FPW device based on LTO/ZnO/LTO/Si3N4 multilayered thin plate was designed and fabricated.
Racine, et al: Journal of Microelectromechanical Systems Vol. 6 (1997), p.337 [9] S.W.
Kovac: Micromachined Transducers Sourcebook (McGraw-Hill Science, New York 1998)
Online since: September 2011
Authors: Gang Xian Zhang, Feng Xiu Zhang, Wei Hu, Nan Han
Materials and methods
Materials.
Acknowledgements This study was supported by Chongqing science fund(CSTC.2010AA1002), Chongqing natural science fund (CSTC,2008BB4250).
Proceedings of 2005 International Conference on Advanced Fibers and Polymer Materials.
Biomaterials,2009,30(25), 4136-4142 [4] Chen J.P., and Yi-Ping Chiang: Journal of Membrane Science, 270(2006), P. 212 [5] Y.X Liu., He T., and C.Y Gao.
Acknowledgements This study was supported by Chongqing science fund(CSTC.2010AA1002), Chongqing natural science fund (CSTC,2008BB4250).
Proceedings of 2005 International Conference on Advanced Fibers and Polymer Materials.
Biomaterials,2009,30(25), 4136-4142 [4] Chen J.P., and Yi-Ping Chiang: Journal of Membrane Science, 270(2006), P. 212 [5] Y.X Liu., He T., and C.Y Gao.
Online since: May 2011
Authors: Bo Cui, Na Zhao, Cong Ping Tan, Zheng Yu Jin
Introduction
Jam is an intermediate moisture food prepared by boiling fruit pulp with sugar, starch, acid, and other ingredients (preservative, coloring, and flavoring materials) to a reasonably thick consistency, firm enough to hold the fruit tissues in position[1,2].
Materials and methods Jam Manufacturing Apple jam was prepared using 20% starch,15% sugar at pulp pH about 3.5. 100g apple pulp was weighed using a balance(least count ± 0.1 mg), and total soluble solids (TSS) (±1ºBrix) was measured using a hand refractometer .
Steady-state relationship between shear stress and shear rate of food materials is expressed in terms of Herschel-Bulkey model[5].
Santanu: Journal of Food Engineering.
Advances in Polymer Science, Vol. 83(1987), pp. 57-192.
Materials and methods Jam Manufacturing Apple jam was prepared using 20% starch,15% sugar at pulp pH about 3.5. 100g apple pulp was weighed using a balance(least count ± 0.1 mg), and total soluble solids (TSS) (±1ºBrix) was measured using a hand refractometer .
Steady-state relationship between shear stress and shear rate of food materials is expressed in terms of Herschel-Bulkey model[5].
Santanu: Journal of Food Engineering.
Advances in Polymer Science, Vol. 83(1987), pp. 57-192.
Online since: April 2010
Authors: Nobuyoshi Yashiro, Akihiro Yauchi, Kazuhiko Kusunoki, Kazuhito Kamei
Nishino: Materials Science Forum Vols.
457-460 (2004), p. 107
[3] M.
Yauchi: Materials Science Forum Vols. 556-557 (2007), p. 303 [5] K.
Yauchi: Journal of Crystal Growth Vol. 311 (2009), p. 855 [6] K.
Nakajima: Materials Science Forum Vols. 527-529 (2006), p. 119 50 μm 0 50 Height [nm] Fig.7 AFM image showing the spiral growth at the plateau region Fig. 6 (a) Optical microscopic image of the plateau after the motlen KOH etching, and (b) Optical microscopic image of the example area with minimum EPD ~ 8.7×103 cm -2 100μm (b) <11-20> Central area [11-20] [1-100] 1mm (a) Low EPD region
Yauchi: Materials Science Forum Vols. 556-557 (2007), p. 303 [5] K.
Yauchi: Journal of Crystal Growth Vol. 311 (2009), p. 855 [6] K.
Nakajima: Materials Science Forum Vols. 527-529 (2006), p. 119 50 μm 0 50 Height [nm] Fig.7 AFM image showing the spiral growth at the plateau region Fig. 6 (a) Optical microscopic image of the plateau after the motlen KOH etching, and (b) Optical microscopic image of the example area with minimum EPD ~ 8.7×103 cm -2 100μm (b) <11-20> Central area [11-20] [1-100] 1mm (a) Low EPD region
Online since: December 2012
Authors: Li Fang Deng, Hong Yu Huang, Hao Ran Yuan, Yong Chen
The leachate was rich in organic materials which could provide enough carbon and nitrogen for microbial growth.
So, the study of new kinds of cathode materials, new kinds of cathode catalysts and domestication of anode microbial will be the main development directions of MFC technology for landfill leachates treatment.
Acknowledgements This research was financially supported by the Chinese Academy of Sciences (No.
KSCX2-EW-G-1-5), National 973 project of China (No. 2011CB201501) and The Program of Guangdong Province - Chinese Academy of sciences strategic cooperation(No: 2010A090100035) Reference [1] P.
Marta: Journal of Hazardous Materials.
So, the study of new kinds of cathode materials, new kinds of cathode catalysts and domestication of anode microbial will be the main development directions of MFC technology for landfill leachates treatment.
Acknowledgements This research was financially supported by the Chinese Academy of Sciences (No.
KSCX2-EW-G-1-5), National 973 project of China (No. 2011CB201501) and The Program of Guangdong Province - Chinese Academy of sciences strategic cooperation(No: 2010A090100035) Reference [1] P.
Marta: Journal of Hazardous Materials.
Online since: May 2014
Authors: Christian Bernhard, Susanne K. Michelic, Denise Loder, Gregor Arth
Thus, it is possible to reproduce solidification and subsequent cooling of the cast material in casting-rolling processes and to characterize the microstructure and the mechanical properties of the solidified samples.
Acknowledgements The authors are grateful for the financial supports from the Federal Ministry for Transport, Innovation and Technology (bmvit) and the Austrian Science Fund (FWF): [TRP 266-N19].
Olson, The Influence of Inclusion Chemical Composition on Weld Metal Microstructure, Journal Materials Engineering 9 (1987) 237-251
Hoffmeister, Effect of high energy density welding processes on inclusion and microstructure formation in steel welds, Science and Technology of Welding and Joining 4, 2 (1999) 63-73
Farrar, Role of non-metallic inclusions in formation of acicular ferrite in low alloy weld metals, Materials Science and Technology 12 (1996) 237-260
Acknowledgements The authors are grateful for the financial supports from the Federal Ministry for Transport, Innovation and Technology (bmvit) and the Austrian Science Fund (FWF): [TRP 266-N19].
Olson, The Influence of Inclusion Chemical Composition on Weld Metal Microstructure, Journal Materials Engineering 9 (1987) 237-251
Hoffmeister, Effect of high energy density welding processes on inclusion and microstructure formation in steel welds, Science and Technology of Welding and Joining 4, 2 (1999) 63-73
Farrar, Role of non-metallic inclusions in formation of acicular ferrite in low alloy weld metals, Materials Science and Technology 12 (1996) 237-260
Online since: January 2012
Authors: Yasuhiro Uetani, Kenji Matsuda, Susumu Ikeno, Takahisa Kose, Katsuyuki Nakajima
Young : Materials Science and Engnineering, Vol.25, (1976), p.103
Ikeno : Materials Science Forum Vol. 654-656, (2010), p. 1389
Ikeno : Materials Science Forum Vol. 561-565 (2007), p. 291
Sugiyama : Journal of Japan Foundry Engineering Society Vol. 49, (1977), p.287 – 293.
Ikeno : Materials Science Forum Vol. 654-656, (2010), p. 1389
Ikeno : Materials Science Forum Vol. 561-565 (2007), p. 291
Sugiyama : Journal of Japan Foundry Engineering Society Vol. 49, (1977), p.287 – 293.
Online since: January 2012
Authors: Chun Mu Chen, Guan Wang, Yong Jun Tang
UV-A pelleting, without using binder materials or high-temperature steam, can produce biomass pellets whose density is comparable to that processed by conventional pelleting methods [7].
Experimental setup and conditions Biomass material.
It was calculated by the ratio of the weight of moisture (water) in the biomass material to the total weight of biomass material.
Journal of manufacturing science and engineering 133. 011012-1-7
An Experimental Study on Temperature in Ultrasonic Vibration-Assisted Pelleting of Cellulosic Biomass, Proceedings of the ASME 2010 International Manufacturing Science and Engineering Conference(MSEC), Erie, Pennsylvania, USA.
Experimental setup and conditions Biomass material.
It was calculated by the ratio of the weight of moisture (water) in the biomass material to the total weight of biomass material.
Journal of manufacturing science and engineering 133. 011012-1-7
An Experimental Study on Temperature in Ultrasonic Vibration-Assisted Pelleting of Cellulosic Biomass, Proceedings of the ASME 2010 International Manufacturing Science and Engineering Conference(MSEC), Erie, Pennsylvania, USA.
Online since: October 2015
Authors: Anupong Wongchai, Prapawarin Areetrakul
Materials and Methods
Data Collection.
Net Present Value Approach: Method for Economic Assessment of Innovation Projects: submitted to Procedia - Social and Behavioral Sciences ( [3] A.
Project Cost Risk Analysis: A Bayesian Networks Approach for Modeling Dependencies between Cost Items: submitted to International Journal of Project Management (2014) [7] U.
Operating Efficiency Analysis of Energy Industries in Taiwan: Submitted to Advanced Materials Research (2014) [8] W.B.
Productive Performance Analysis in Taiwan Energy Companies: Application of DEA Malmquist Index: Submitted to Advanced Materials Research (2012) [9] N.
Net Present Value Approach: Method for Economic Assessment of Innovation Projects: submitted to Procedia - Social and Behavioral Sciences ( [3] A.
Project Cost Risk Analysis: A Bayesian Networks Approach for Modeling Dependencies between Cost Items: submitted to International Journal of Project Management (2014) [7] U.
Operating Efficiency Analysis of Energy Industries in Taiwan: Submitted to Advanced Materials Research (2014) [8] W.B.
Productive Performance Analysis in Taiwan Energy Companies: Application of DEA Malmquist Index: Submitted to Advanced Materials Research (2012) [9] N.
Online since: January 2012
Authors: Qing Ling Li, Yan Zhou, Wen Juan Zheng, Jun Chao, Xi Yan Fan
Numerical Study on Enhanced Paraffin/ Air Heat Transfer with Extended Surface
Yan Zhoua, Wen-juan Zhengb, Xi-yan Fanc,Jun Chaod and Qing-ling Lie
Shandong Provincial Key Laboratory of Polymer Material Advanced Manufacturing Technology
College of Electromechanical Engineering, Qingdao University of Science and Technology,
Qingdao 260061 China
azhouyanqd@163.com, bjuan.1103@163.com, cfxy9636@126.com,
dlxycjun@163.com, eedu@qust.edu.cn
Keywords: the paraffin heat storage; extended surface; the heat storing and releasing capacity; the solar chimney power plant system
Abstract.
Acknowledgement We would like to thank the financial support through National Natural Science Foundation of China (51176080).
Phase Change Materials and Phase Change Technology[M].
Bei Jing: Science Press, 2009 [2] Ismail KAR, Alves CLF, Modesto M S.
Journal of engineering thermophysics[J]. 2008, 29(10): 1768-1770 [6] Hu Ling-xiao, Fu Hai-ming, Liu Dong-dong, etc.
Acknowledgement We would like to thank the financial support through National Natural Science Foundation of China (51176080).
Phase Change Materials and Phase Change Technology[M].
Bei Jing: Science Press, 2009 [2] Ismail KAR, Alves CLF, Modesto M S.
Journal of engineering thermophysics[J]. 2008, 29(10): 1768-1770 [6] Hu Ling-xiao, Fu Hai-ming, Liu Dong-dong, etc.