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Online since: May 2012
Authors: Guo Hao Yang, Li Hui Yan, Fa Dong Qiao
Gras: Journal of the Science of Food and Agriculture Vol. 58, (1992), p. 403
].
Gadan: Journal of Cereal Science Vol. 5, (1987), p. 263 ,[] H.
Jiang: Journal of Agronomy and Crop Science Vol. 194, (2008), p. 47 ].
Bauman: Journal of Dairy Science, Vol. 89, (2006), p. 2320 ], moisture[[] C.
Materials and methods 2.1 Samples It is important to select samples with uniform distribution of the constituent or constituents to be determined because accuracy of prediction and the robustness of calibration model depend on the range of the flour quality parameters[[] M.
Gadan: Journal of Cereal Science Vol. 5, (1987), p. 263 ,[] H.
Jiang: Journal of Agronomy and Crop Science Vol. 194, (2008), p. 47 ].
Bauman: Journal of Dairy Science, Vol. 89, (2006), p. 2320 ], moisture[[] C.
Materials and methods 2.1 Samples It is important to select samples with uniform distribution of the constituent or constituents to be determined because accuracy of prediction and the robustness of calibration model depend on the range of the flour quality parameters[[] M.
Online since: December 2011
Authors: Qing Kai Han, Jiao Wang, Xing Zhan Li, Bo Ping Wang
The material used for the modeling of blade-disc is Titanium Alloy Ti-6Al-4V with Young’s modulus, Poisson’s ratio, and density.
N090603007) and Natural Science Foundation of China (Grant No. 51175070).
ASME Journal of Turbo machinery. 125 (2003) 372–379
Journal of Aerospace Power. 25 (2010) 407-411
Journal of Propulsion Technology. 4 (2010) 473-477
N090603007) and Natural Science Foundation of China (Grant No. 51175070).
ASME Journal of Turbo machinery. 125 (2003) 372–379
Journal of Aerospace Power. 25 (2010) 407-411
Journal of Propulsion Technology. 4 (2010) 473-477
Online since: September 2012
Authors: Yan Yan Shi, Lin Li, Xiang Feng Kong, Jin Hua Li, Hong Sun
Study on the steady state thermal analysis method of accessory transmission system
SHI Yanyan1, LI Lin2, KONG Xiangfeng1, LI Jinhua1 and SUN Hong1
1 Aviation Key Laboratory of Science and Technology on Power Transmission of Aeroengine, Shenyang, 110015, China
2 School of Mechanical Engineering and Automation, Northeastern University, 110006, China
yanming7802@163.com
Keywords: thermal analysis ; accessory transmission system; variation principle; finite element
Abstract.
Mathematical Model Hypothesis. (1) The heat transfer process is steady heat transfer process in accessory transmission system, the temperature difference among the components of the transmission system is not big, and the radiation heat transfer can be ignored; the temperature of each gear tooth of the same gear is identical; the material of metal components in the transmission system is isotropic[2]; the steady temperature field of gear has nothing to do with instantaneous engagement position. (2) The accessory gearbox is filled with oil and gas mixture, which has the same thermal equilibrium temperature.
References [1] Chen Xiaoling, Zhang Wugao, Huang ZhiYong: Journal of System Simulation, Vol.19(2007),p. 546 [2] Zhang Yonghong, Su Hua: Acta Aeronautica et Astronautica Sinica, Vol. 21(2009), p. 431 [3] Qian zuoqin, Li haixiang: Wuhan Shipbuilding, Vol. 24 (2009), P. 20 [4] Wang Liqin, Chen Guanci, Gu Le: Journal of Aerospace Power,Vol. 23 (2007), p.179 [5] Wang Tong.: Journal of Shanghai Jiaotong University, Vol. 24 (2001) P.53 [6] Liu Kai, Li Xuhong, Li Yanping.: Journal of Xi'an University of Technology, Vol. 16(2003), p. 221 [7] Zhang Chaohui.
Mathematical Model Hypothesis. (1) The heat transfer process is steady heat transfer process in accessory transmission system, the temperature difference among the components of the transmission system is not big, and the radiation heat transfer can be ignored; the temperature of each gear tooth of the same gear is identical; the material of metal components in the transmission system is isotropic[2]; the steady temperature field of gear has nothing to do with instantaneous engagement position. (2) The accessory gearbox is filled with oil and gas mixture, which has the same thermal equilibrium temperature.
References [1] Chen Xiaoling, Zhang Wugao, Huang ZhiYong: Journal of System Simulation, Vol.19(2007),p. 546 [2] Zhang Yonghong, Su Hua: Acta Aeronautica et Astronautica Sinica, Vol. 21(2009), p. 431 [3] Qian zuoqin, Li haixiang: Wuhan Shipbuilding, Vol. 24 (2009), P. 20 [4] Wang Liqin, Chen Guanci, Gu Le: Journal of Aerospace Power,Vol. 23 (2007), p.179 [5] Wang Tong.: Journal of Shanghai Jiaotong University, Vol. 24 (2001) P.53 [6] Liu Kai, Li Xuhong, Li Yanping.: Journal of Xi'an University of Technology, Vol. 16(2003), p. 221 [7] Zhang Chaohui.
Online since: July 2013
Authors: Jing Xin Su, Zhao Hui Ji, Zhi Yong Han, Hua Zhang
The material parameters of the TCC, TGO and BC are considered varied with temperature [6-8].
Jordan, Thermal Barrier Coatings for Gas-Turbine Engine Applications[J], Science, 296, (2002), p. 280-284
Lifetime of Plasma-Sprayed Thermal Barrier Coatings: Comparison of Numerical and Experimental Results[J], Journal of Thermal Spray Technology, 18(5-6), 2009, p. 835-845
Journal of Thermal Spray Technology, 19(5), 2010, p. 1054-1061
Journal of Thermal Spray Technology, 17(5-6), 2008, p. 858-864
Jordan, Thermal Barrier Coatings for Gas-Turbine Engine Applications[J], Science, 296, (2002), p. 280-284
Lifetime of Plasma-Sprayed Thermal Barrier Coatings: Comparison of Numerical and Experimental Results[J], Journal of Thermal Spray Technology, 18(5-6), 2009, p. 835-845
Journal of Thermal Spray Technology, 19(5), 2010, p. 1054-1061
Journal of Thermal Spray Technology, 17(5-6), 2008, p. 858-864
Online since: December 2014
Authors: Si Tian Chen, Hong Hui Xie, Jie Xu
Material density was set as 650 kg/m3, modulus of elasticity as 1x104 Mpa, and poisson ratio as 0.266 [6].
Journal of Vibration and Shock, 2009, 28 (7): 175.
Shenyang Jianzhu University (Natural Science Edition), 2011, 26 (6): 1111-1118.
Journal of Structural Engineering, 1992, 118(2):545-566
Journal of South China University of Technology(Natural Science Edition), 2010,vol(38),40-46.
Journal of Vibration and Shock, 2009, 28 (7): 175.
Shenyang Jianzhu University (Natural Science Edition), 2011, 26 (6): 1111-1118.
Journal of Structural Engineering, 1992, 118(2):545-566
Journal of South China University of Technology(Natural Science Edition), 2010,vol(38),40-46.
Online since: November 2006
Authors: Chun Sheng Wang, Jian Guo Nie, Ai Rong Chen, Wei Zhen Chen, Yue Xu
Acknowledgements
The writers gratefully acknowledge the financial support provided by National Natural Science
Foundation of China (Grant No. 50408028) and Chang'an University Science Foundation.
[2] ASCE Committee on Fatigue and Fracture Reliability of the Committee on Structural Safety and Reliability of the Structural Division: Fatigue Reliability 1-4, ASCE Journal of Structural Engineering Vol.108 (1982), p. 3
Mahadevan: Fatigue Reliability Analysis using Nondestructive Inspection, ASCE Journal of Structural Engineering Vol.127 (2001), p. 957
Breen: Fatigue Reliability Evaluation of Steel Bridges, ASCE Journal of Structural Engineering Vol.120 (1994), p. 1608
Albrecht: Risk Analysis of Fatigue Failure of Highway Steel Bridges, ASCE Journal of Structural Engineering Vol.113 (1987), p. 483. 3 4 5 1.5 2.0 2.5 t [year] β Caculated Fatigue Reliability Target Fatigue Reliability Fig.7 System fatigue reliability evaluation.
[2] ASCE Committee on Fatigue and Fracture Reliability of the Committee on Structural Safety and Reliability of the Structural Division: Fatigue Reliability 1-4, ASCE Journal of Structural Engineering Vol.108 (1982), p. 3
Mahadevan: Fatigue Reliability Analysis using Nondestructive Inspection, ASCE Journal of Structural Engineering Vol.127 (2001), p. 957
Breen: Fatigue Reliability Evaluation of Steel Bridges, ASCE Journal of Structural Engineering Vol.120 (1994), p. 1608
Albrecht: Risk Analysis of Fatigue Failure of Highway Steel Bridges, ASCE Journal of Structural Engineering Vol.113 (1987), p. 483. 3 4 5 1.5 2.0 2.5 t [year] β Caculated Fatigue Reliability Target Fatigue Reliability Fig.7 System fatigue reliability evaluation.
Online since: November 2015
Authors: Thangavel Balusamy, Varghese M. John, J. Prabahar
Coating with black paint can increase the heat absorbing capacity of a material.
[4] Raj Thundil Karuppa R, Pavan P and Reddy Rajeev D, Experimental Investigation of a New Solar Flat Plate Collector, Research Journal of Engineering Sciences, Vol. 1, pp.1-8, 2012
[5] Shanmugan Sengottain, Janarathanan Balasundaram and Chandrasekaran Joseph, Thermal Asymmetry Model of Single Slope Single Basin Solar Still with Sponge Liner, Thermal Science, Vol. 18, pp.
Haghshenasfard, Numerical Analysis of Heat Transfer Performance of Flat Plate Solar Collectors, Journal of Fluid flow, Heat and Mass Transfer, Vol. 1, pp. 38-42, 2014
Patil, Solar Flat Plate Collector Analysis, IOSR Journal of Engineering (IOSRJEN), Vol. 2, pp.207-213,2012
[4] Raj Thundil Karuppa R, Pavan P and Reddy Rajeev D, Experimental Investigation of a New Solar Flat Plate Collector, Research Journal of Engineering Sciences, Vol. 1, pp.1-8, 2012
[5] Shanmugan Sengottain, Janarathanan Balasundaram and Chandrasekaran Joseph, Thermal Asymmetry Model of Single Slope Single Basin Solar Still with Sponge Liner, Thermal Science, Vol. 18, pp.
Haghshenasfard, Numerical Analysis of Heat Transfer Performance of Flat Plate Solar Collectors, Journal of Fluid flow, Heat and Mass Transfer, Vol. 1, pp. 38-42, 2014
Patil, Solar Flat Plate Collector Analysis, IOSR Journal of Engineering (IOSRJEN), Vol. 2, pp.207-213,2012
Online since: March 2017
Authors: Zainuriah Hassan, Naser Mahmoud Ahmed, Munirah Abdullah Almessiere, Fayroz A. Sabah
Another advantage of CuS is little cost because it is cheap and available in nature also it non-toxic material and eco-friendly [1].
Journal Vol. 11 (2014), p. 871
[5] Sheng-Po Chang and Tsung-Han Yang: International Journal of Electrochemical Science Vol. 7 (2012), p. 5020
[7] Jyh-Liang Wang, Po-Yu Yang, Tsang-Yen Hsieh, Chuan-Chou Hwang, and Miin-Horng Juang: Hindawi Publishing Corporation, Journal of Nanomaterials, 2013, Article ID 152079, 7 pages
[10] Yung-Chen Wu, Shang-Jing Wu, and Che-Hsin Lin: IEEE Sensors Journal Vol. 15 (2015), p. 6279
Journal Vol. 11 (2014), p. 871
[5] Sheng-Po Chang and Tsung-Han Yang: International Journal of Electrochemical Science Vol. 7 (2012), p. 5020
[7] Jyh-Liang Wang, Po-Yu Yang, Tsang-Yen Hsieh, Chuan-Chou Hwang, and Miin-Horng Juang: Hindawi Publishing Corporation, Journal of Nanomaterials, 2013, Article ID 152079, 7 pages
[10] Yung-Chen Wu, Shang-Jing Wu, and Che-Hsin Lin: IEEE Sensors Journal Vol. 15 (2015), p. 6279
Online since: August 2016
Authors: José Manoel Balthazar, Marcos Silveira, M. Ghandchi Tehrani
Kalkowski, Active control of parametrically excited systems, Journal of Intelligent Material Systems and Structures, 2015, 1-13
Balthazar, Vibration of a parametrically and self-excited system with ideal and non-ideal energy source, RBCM-Journal of the Brazilian Society, mechanical Sciences, 25(4),2003,413-420
Lenci, Dynamic interactions between parametric pendulum and electro-dynamical shaker – ZAMM, Journal of Applied Mathematics and Mechanics, 87, 2, 172-186, 2007
Cartmell, Rotating orbits of a parametrically-excited pendulum – Science Direct – Chaos, Solitons and Fractals, 1538-1548pp., June, 2004
Brasil, Chaos control and sensitivity analysis of a double pendulum arm excited by an rLC circuit based nonlinear shaker, Journal of vibration and control, 2015, 1-17
Balthazar, Vibration of a parametrically and self-excited system with ideal and non-ideal energy source, RBCM-Journal of the Brazilian Society, mechanical Sciences, 25(4),2003,413-420
Lenci, Dynamic interactions between parametric pendulum and electro-dynamical shaker – ZAMM, Journal of Applied Mathematics and Mechanics, 87, 2, 172-186, 2007
Cartmell, Rotating orbits of a parametrically-excited pendulum – Science Direct – Chaos, Solitons and Fractals, 1538-1548pp., June, 2004
Brasil, Chaos control and sensitivity analysis of a double pendulum arm excited by an rLC circuit based nonlinear shaker, Journal of vibration and control, 2015, 1-17
Online since: June 2015
Authors: Valeria C. Almeida, E.M. Gripa, R.L. Manfro, I.L.M. Gonçalves
As it happens in most industrial processes, feedstock’s particles size is very important in reuse processes of brick waste and it is directly related with formed materials’ behavior.
Materials and Methods In the presented study, it was used brick waste from construction industry.
The mechanical properties of ceramic materials are quite affected by the properties of crystalline phases present and how they are oriented in it.
Senapati: Journal American Ceramic Society Vol. 81 (1998), p. 3
Park et. al.: Materials Science andEngineering Vols. 454-455 (2007), p.518
Materials and Methods In the presented study, it was used brick waste from construction industry.
The mechanical properties of ceramic materials are quite affected by the properties of crystalline phases present and how they are oriented in it.
Senapati: Journal American Ceramic Society Vol. 81 (1998), p. 3
Park et. al.: Materials Science andEngineering Vols. 454-455 (2007), p.518