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Online since: December 2011
Authors: Xiao Guang Yu, Ying Hua Xiang
Stress Analysis on Saw Blade of Hot Sawing Machine
Yinghua Xiang1, a, Xiaoguang Yu1, b
1University of Science and Technology Liaoning, Anshan, Liaoning, PR China, 114051
a yhxf726@sina.com, b yuxiaoguang58@163.com
Keywords: Hot Sawing Machine, saw blade, FEM, four bar mechanism
Abstract.
To customers of using saw blade, purchase saw blade Material cost is saved, smaller saw blades can be chosed and energy and equipment cost are all saved.
It’s widely used in many industries for modeling simple, fast, and convenient and plays a large role in national economic constructing and science and technology developing.
Analysis on the Tooth Shape of the Saw Blade, JOURNAL OF UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING, 2002, 24(1): 69-71 [3] Y Chen, X G Wang, C Sun, F Devine, C W De Silva.Active vibration control with state feedback in woodcutting[J], Journal of Vibration and Control, 2003, 9(6): 645 [4] Y.Xiang.Vibration of circular Mindlin plates with concentric elastic ring supports, International Journal of Mechanical Sciences, 2003, 45(5): 497-517 [5] Ni Dong, Duan Jin, Xu Jiucheng.
To customers of using saw blade, purchase saw blade Material cost is saved, smaller saw blades can be chosed and energy and equipment cost are all saved.
It’s widely used in many industries for modeling simple, fast, and convenient and plays a large role in national economic constructing and science and technology developing.
Analysis on the Tooth Shape of the Saw Blade, JOURNAL OF UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING, 2002, 24(1): 69-71 [3] Y Chen, X G Wang, C Sun, F Devine, C W De Silva.Active vibration control with state feedback in woodcutting[J], Journal of Vibration and Control, 2003, 9(6): 645 [4] Y.Xiang.Vibration of circular Mindlin plates with concentric elastic ring supports, International Journal of Mechanical Sciences, 2003, 45(5): 497-517 [5] Ni Dong, Duan Jin, Xu Jiucheng.
Online since: August 2013
Authors: Xue Yi You, Chun Xue Zhang, Li Lin Wang, Chao Wang, Shu Yi Yang
Industrial material secondary alkyl sulfate was selected as the typical pollutant because it is easily soluble in water and less volatile.
Estuarine, Coastal and Shelf Science, Vol. 73 (2007), p. 188-200
Journal of Computational Biology, Vol. 7 (2010), p. 895-906
Journal of Marine Systems, Vol. 96-97 (2012), p. 103-115
Journal of Hydrodynamic, Vol. 22 (2010), p. 760-772
Estuarine, Coastal and Shelf Science, Vol. 73 (2007), p. 188-200
Journal of Computational Biology, Vol. 7 (2010), p. 895-906
Journal of Marine Systems, Vol. 96-97 (2012), p. 103-115
Journal of Hydrodynamic, Vol. 22 (2010), p. 760-772
Online since: October 2013
Authors: Li Lin Wang, Shu Yi Yang, Chao Wang, Xue Yi You, Wei Liu, Chun Xue Zhang
Industrial material secondary alkyl sulfate was selected as the typical pollutant.
Lucie Estuary: Estuarine, Coastal and Shelf Science.
Modeling algae growth in an open-channel raceway: Journal of Computational Biology.
Journal of Marine Systems.
Fine silt particle pathline of dredging sediment in the Yangtze River deepwater navigation channel based on EFDC model: Journal of Hydrodynamic.
Lucie Estuary: Estuarine, Coastal and Shelf Science.
Modeling algae growth in an open-channel raceway: Journal of Computational Biology.
Journal of Marine Systems.
Fine silt particle pathline of dredging sediment in the Yangtze River deepwater navigation channel based on EFDC model: Journal of Hydrodynamic.
Online since: June 2013
Authors: Shui Guang Tong, Jian Zhang, Chao Wei Wu, Shuai Zhang
Acknowledgments
This study was partially supported by science and technology Major projects of Zhejiang province.
Journal of Mechanical Engineering: 2006, 42(3): 30~35 [2] Guo Bizhu.
Journal of Mechanical Engineering: 2009, 45(12): 89~93 [4] Ling Dan.
Chengdu:University of Electronic Science and Technology of China, 2010: 15~32 [5] Guo Peng,DAVID Infield,Yang Xiyun.
Journal of Zhejiang University: Engineering Science, 2011,45(10): 1815~1820 [7] Pan Difu,Liu Hui, Li Yanfei.
Journal of Mechanical Engineering: 2006, 42(3): 30~35 [2] Guo Bizhu.
Journal of Mechanical Engineering: 2009, 45(12): 89~93 [4] Ling Dan.
Chengdu:University of Electronic Science and Technology of China, 2010: 15~32 [5] Guo Peng,DAVID Infield,Yang Xiyun.
Journal of Zhejiang University: Engineering Science, 2011,45(10): 1815~1820 [7] Pan Difu,Liu Hui, Li Yanfei.
Online since: February 2013
Authors: Ji Gang Wu, Zeng Zeng Yang, Bin Qin, Yao Zhou Li
Through the bearing material and size data and bearing load to calculate the above four value [4].
Acknowledgment Project supported by National Natural Science Foundation of China (51205122), National Defense Basic Research Program of China (613124-9), Pre-research project (625010339), Science and Technology Planning Project of Hunan Province (2011SK3124), Ph.D Start Fund (E50925), also from CEEUSRO Special Plan of Hunan Province (2010XK6066), Aid program for Science and Technology Innovative Research Team in Higher Educational Institutions of Hunan Province, are gratefully acknowledged.
[2] Zongzheng Liu, Ken Chen, Zhenhua Chen, Yan Chen, Yuanlin Huang: Measure and analysis about vibration characteristic of roller bearing fault Machinery Journal of Design & Manufacture. (03) (2009), p. 103-105 [3] Huayong Wu, Xiuhua Xu: Study on Contact Forces of Deep Groove Ball Bearing Based on ADAMS.
Journal of Bearing. (02) (2009), p. 1-4 [4] Lijun Zhu, Jing Tan, Dishan Huang, Yang Xu, Huiyan Fu: Simulation Analysis of Deep Groove Ball Bearings Based on ADAMS.
Journal of Bearing, (02) (2011), p. 3-6 [5] Binglin Zhong, ren Huang: Introduction to machine fault diagnosis. beijing China Machine PRESS (2007).
Acknowledgment Project supported by National Natural Science Foundation of China (51205122), National Defense Basic Research Program of China (613124-9), Pre-research project (625010339), Science and Technology Planning Project of Hunan Province (2011SK3124), Ph.D Start Fund (E50925), also from CEEUSRO Special Plan of Hunan Province (2010XK6066), Aid program for Science and Technology Innovative Research Team in Higher Educational Institutions of Hunan Province, are gratefully acknowledged.
[2] Zongzheng Liu, Ken Chen, Zhenhua Chen, Yan Chen, Yuanlin Huang: Measure and analysis about vibration characteristic of roller bearing fault Machinery Journal of Design & Manufacture. (03) (2009), p. 103-105 [3] Huayong Wu, Xiuhua Xu: Study on Contact Forces of Deep Groove Ball Bearing Based on ADAMS.
Journal of Bearing. (02) (2009), p. 1-4 [4] Lijun Zhu, Jing Tan, Dishan Huang, Yang Xu, Huiyan Fu: Simulation Analysis of Deep Groove Ball Bearings Based on ADAMS.
Journal of Bearing, (02) (2011), p. 3-6 [5] Binglin Zhong, ren Huang: Introduction to machine fault diagnosis. beijing China Machine PRESS (2007).
Online since: December 2012
Authors: W.S. Yeo, Z. Nur Amirah, H.S.C. Metselaar, T.H. Ong
Matyja: Nanostructured Materials Vol. 12 (1999), p.159
[2] Z.
Gleiter: Nanostructured Materials Vol. 6 (1995), p.3 [4] O.
Lu: Nanostructure Materials Vol. 6 (1995), p.723 [9] J.Y.
Roy: Journal of Materials Science Vol. 36 (2001) p.3745 [11] Amir A.
Betteridge: Progress in Materials Science Vol.24 (1979), p.51.
Gleiter: Nanostructured Materials Vol. 6 (1995), p.3 [4] O.
Lu: Nanostructure Materials Vol. 6 (1995), p.723 [9] J.Y.
Roy: Journal of Materials Science Vol. 36 (2001) p.3745 [11] Amir A.
Betteridge: Progress in Materials Science Vol.24 (1979), p.51.
Online since: March 2016
Authors: Xiao Ya Li, Ye Feng Bao, Ju Yi Wang
Thermoelectric Properties of Mn Dopbed Cu12-xMnxSb4S13 Tetrahedrites
Juyi Wang1, 2, Xiaoya Li 2, a and Yefeng Bao1
1School of Mechanical and Electrical Engineering, Hohai University, Changzhou 213022, China.
2CAS Key Laboratory for Energy Conversion Materials, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.
High performance of TE materials can be realized by improving the power factor (S2s) or reducing thermal conductivity.
Tetrahedrites (Cu10Tr2Sb4S13, Tr = Mn, Fe, Co, Ni, Cu, Zn) are a new class of thermoelectric materials consisting of environmentally friendly and cost effective elements copper and sulfur.
So thermoelectric transport properties of transition metal doped synthetic tetrahedrite materials Cu12-xTrxSb4S13 (Tr = Mn, Fe, Co, Ni, Cu, and Zn) were studied [1-7].
Morelli, The effect of Te substitution for Sb on thermoelectric properties of trtrahedrite, Journal of Electronic Materials 43 (2014) 1983-1987.
High performance of TE materials can be realized by improving the power factor (S2s) or reducing thermal conductivity.
Tetrahedrites (Cu10Tr2Sb4S13, Tr = Mn, Fe, Co, Ni, Cu, Zn) are a new class of thermoelectric materials consisting of environmentally friendly and cost effective elements copper and sulfur.
So thermoelectric transport properties of transition metal doped synthetic tetrahedrite materials Cu12-xTrxSb4S13 (Tr = Mn, Fe, Co, Ni, Cu, and Zn) were studied [1-7].
Morelli, The effect of Te substitution for Sb on thermoelectric properties of trtrahedrite, Journal of Electronic Materials 43 (2014) 1983-1987.
Online since: November 2007
Authors: Zhao Hui Deng, Ya Dong Gong, Zhong Wei Hu, Qi Jing
Grits produce a force
perpendicular to the surface of cutting materials which cause increased lateral and longitudinal sizes
of the grinding surface.
Effects of Material Removal Rate.
Gallois: Nanostrucrured Materials, Vol.10 (1998) No.5, pp.875-891
Deng: International Journal of Machine Tools & Manufacture, Vol.42 (2002) No.5, pp.1665-1676
Zhang: Journal of Materials Science, Vol.37 (2002) No.15, pp.3229-3239
Effects of Material Removal Rate.
Gallois: Nanostrucrured Materials, Vol.10 (1998) No.5, pp.875-891
Deng: International Journal of Machine Tools & Manufacture, Vol.42 (2002) No.5, pp.1665-1676
Zhang: Journal of Materials Science, Vol.37 (2002) No.15, pp.3229-3239
Online since: February 2013
Authors: Woon Bong Hwang, Dong Seob Kim, Jin Yul Kim
These are shown in Fig. 2 in an exploded view, which also specifies the materials chosen in each layer.
These are shown in Fig. 2 in an exploded view, which also specifies the materials chosen in each layer.
Goetz: 37th AIAA Structural Dynamics and Materials Conference Vol 1415 (1999), p. 836-843 [4] C.S.
Whang, Park H.C., Lee R.M. and Park W.S., Journal of Compos Materials Vol 37(2003) p. 351-364 [5] J.H.
Hwang and Eom S.Y., Smart Materials and Structures, Vol 14(2005), p. 441-448 [8] C.S.
These are shown in Fig. 2 in an exploded view, which also specifies the materials chosen in each layer.
Goetz: 37th AIAA Structural Dynamics and Materials Conference Vol 1415 (1999), p. 836-843 [4] C.S.
Whang, Park H.C., Lee R.M. and Park W.S., Journal of Compos Materials Vol 37(2003) p. 351-364 [5] J.H.
Hwang and Eom S.Y., Smart Materials and Structures, Vol 14(2005), p. 441-448 [8] C.S.
Online since: February 2013
Authors: Karol Velíšek, Nina Danišová, Roman Ružarovský
Karol Velíšek, CSc.3,c
1Institute of Production Systems and Applied Mechanics, Faculty of Material Science and Technology in Trnava, Slovak University of Technology in Bratislava, Razusova 2, 917 24 Trnava, Slovak Republic
2 Institute of Production Systems and Applied Mechanics, Faculty of Material Science and Technology in Trnava, Slovak University of Technology in Bratislava, Razusova 2, 917 24 Trnava, Slovak Republic
3 Institute of Production Systems and Applied Mechanics, Faculty of Material Science and Technology in Trnava, Slovak University of Technology in Bratislava, Razusova 2, 917 24 Trnava, Slovak Republic
aroman.ruzarovsky@stuba.sk, bnina.danisova@stuba.sk, ckarol.velisek@stuba.sk
Keywords: assembly process, assembly system, intelligent assembly, sensory, design.
Based to the acquired data the system will be able to adapt the material flow to the actual assembly conditions.
Matúšová, Automated design of assembly system with computer aided system help, in: Journal of Production Engineering, Vol. 14, Number 1, 2011, p. 31-34 ISSN 1821-4932 [9] D.R.
Vlášek, Introductory Design, Description and Analysis of the Material Flow at an Intelligent Manufacturing Cell, in: Future Management Science and Engineering : 2011 International Conference on Future Management Science and Engineering.
Charbulová, Optimalisation method of material flow at manufacturing process, in: Annals of Faculty of Engineering Hunedoara - Journal of Engineering. - ISSN 1584-2673. - Tom IX, Fasc. 4 (extra) (2011), s. 41-44
Based to the acquired data the system will be able to adapt the material flow to the actual assembly conditions.
Matúšová, Automated design of assembly system with computer aided system help, in: Journal of Production Engineering, Vol. 14, Number 1, 2011, p. 31-34 ISSN 1821-4932 [9] D.R.
Vlášek, Introductory Design, Description and Analysis of the Material Flow at an Intelligent Manufacturing Cell, in: Future Management Science and Engineering : 2011 International Conference on Future Management Science and Engineering.
Charbulová, Optimalisation method of material flow at manufacturing process, in: Annals of Faculty of Engineering Hunedoara - Journal of Engineering. - ISSN 1584-2673. - Tom IX, Fasc. 4 (extra) (2011), s. 41-44