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Online since: August 2005
Authors: D.M. Babic, Andrew Torrance, D.B. Murray
Results and discussion
The tests were performed using AISI 1020 mild steel as the workpiece material.
Shaw: Principles of abrasive processing, Oxford Science Publications, (1996)
Schmid: Manufacturing processes for engineering materials, Prentice Hall, New Jersey, (2003)
Shaw: Interrupted grinding principle, Instn Engrs (India), Journal of Production Engng Vol. 66, (1985), pp. 29
ASME-ZSIS International Thermal Science Seminar II, Bled Slovenia, (2004), pp. 399-406
Shaw: Principles of abrasive processing, Oxford Science Publications, (1996)
Schmid: Manufacturing processes for engineering materials, Prentice Hall, New Jersey, (2003)
Shaw: Interrupted grinding principle, Instn Engrs (India), Journal of Production Engng Vol. 66, (1985), pp. 29
ASME-ZSIS International Thermal Science Seminar II, Bled Slovenia, (2004), pp. 399-406
Online since: October 2011
Authors: Ali Shokuhfar, P. Heydari
To increase sensitivity of microcantilever a number of methods have been developed that can be categorized into: (1) using more precise detection methods to detect cantilever bending [1]; (2) improve the biological binding for increase exerted biological force [10,12,16]; (3) improve the materials, which use in fabrication of sensor [13-15]; (4) the geometric optimization of sensor [4-5].
They show is only about a factor of 2 in sensitivity in favour of silicon [15] and even can increase sensitivity of the SU-8-based piezoresistive cantilever by integrating material with higher gauge factor.
Dravid; "MOSFET-Embedded Microcantilevers for Measuring Deflection in Biomolecular Sensors"; Science 311 (2006) 1592–1595 [2] D.R.
Hunt, "Rapid Detection of Bacterial Spores Using a Quartz Crystal Microbalance (QCM) Immunoassay",IEEE SENSORS JOURNAL, VOL. 5, NO. 4, Pg. 737-743, 2005 [13] S.
Rao; "Fabrication and Characterization of a Polymeric Microcantilever With an Encapsulated Hotwire CVD Polysilicon", Journal Of Microeletromechanical Systems, vol. 18, n.1, pp. 79-87, 2009 [16] D.
They show is only about a factor of 2 in sensitivity in favour of silicon [15] and even can increase sensitivity of the SU-8-based piezoresistive cantilever by integrating material with higher gauge factor.
Dravid; "MOSFET-Embedded Microcantilevers for Measuring Deflection in Biomolecular Sensors"; Science 311 (2006) 1592–1595 [2] D.R.
Hunt, "Rapid Detection of Bacterial Spores Using a Quartz Crystal Microbalance (QCM) Immunoassay",IEEE SENSORS JOURNAL, VOL. 5, NO. 4, Pg. 737-743, 2005 [13] S.
Rao; "Fabrication and Characterization of a Polymeric Microcantilever With an Encapsulated Hotwire CVD Polysilicon", Journal Of Microeletromechanical Systems, vol. 18, n.1, pp. 79-87, 2009 [16] D.
Online since: November 2011
Authors: Wei Guo, Di Hui Lai, Xin Hua Hou
Studies In Science of Science,Vol.23(2005), p.253-257
[5] Jun-wen ZHANG,Hai-wen CHEN,Chang-jia CHEN:Study on Source of Multifractal Nature of Internet Traffic.Journal of Software.Vol.13(2002), p.470-474
[6] Balsara N J, Chen G, Zheng L:The Chinese stock market:an examination of the random walk model and technical trading rules.Quarterly Journal of Finance and Accounting, Vol.46(2007),p.43-63
[8] Wickens,M.R.and R.Motto:Estimating shocks and impulse response functions.Journal of Applied Economics,Vol.16(2001), p.371-387
[9] Zhou WX and D.Sornette.Self-organizing Ising model of financial markets.European Physical Journal Vol.55(2007),p.175-181
[5] Jun-wen ZHANG,Hai-wen CHEN,Chang-jia CHEN:Study on Source of Multifractal Nature of Internet Traffic.Journal of Software.Vol.13(2002), p.470-474
[6] Balsara N J, Chen G, Zheng L:The Chinese stock market:an examination of the random walk model and technical trading rules.Quarterly Journal of Finance and Accounting, Vol.46(2007),p.43-63
[8] Wickens,M.R.and R.Motto:Estimating shocks and impulse response functions.Journal of Applied Economics,Vol.16(2001), p.371-387
[9] Zhou WX and D.Sornette.Self-organizing Ising model of financial markets.European Physical Journal Vol.55(2007),p.175-181
Online since: November 2013
Authors: Carmen Biniuc Papatoiu, Constantin Paulin, Alexandru Bârcă, Corneliu Munteanu, Geanina Laura Pintilei, Sorin Iacob Strugaru
Both temperatures (the samples and the reference materials) are measured with thermocouples.
For ceramic materials, along with the temperature increase, a sintering effect occurs.
I give thanks to the Faculty of Mechanics and Faculty of Materials Science and Engineering from “Gh.
Cuza” University Iasi for the support and for making available the science of materials and Materials Science laboratories for performing the necessary tests for the paper.
Tsipas, (2005), Thermophysical Properties of Plasma Sprayed Thermal Barrier Coatings, UNIVERSITY OF CAMBRIDGE Department of Materials Science and Metallurgy.
For ceramic materials, along with the temperature increase, a sintering effect occurs.
I give thanks to the Faculty of Mechanics and Faculty of Materials Science and Engineering from “Gh.
Cuza” University Iasi for the support and for making available the science of materials and Materials Science laboratories for performing the necessary tests for the paper.
Tsipas, (2005), Thermophysical Properties of Plasma Sprayed Thermal Barrier Coatings, UNIVERSITY OF CAMBRIDGE Department of Materials Science and Metallurgy.
Online since: November 2011
Authors: Yi Sheng Zhang, Rui Ge, An Long, Li Bo Pan
., Wuhan,Hubei, 430080, China
2State Key Laboratory of Material Processing and Die and Mould Technology, Huazhong University of Science and Technology, Wuhan,Hubei, 430074, China
alongan@wisco.com.cn, bgerui@ wisco.com.cn,
czhangys@mail.hust.edu.cn, dpanlibo@wisco.com.cn
Keywords: Fine Blanking, Numerical Simulation, Processing Parameters, Optimization
Abstract.
Blanking Material and Processing Parameters.
[2] T.S.Kwak, Y.J.kim, M.K.Seo, W.B.Bae: Materials ProcessingTechnology, 2003. 143 – 144 (2003), p.656-661
[3] T.C.Lee, L.C.Chen, P.F.Zheng: Journal of gaterials Producing Technology, 1997, (63) , p.744-749
[5] Lee T.C, etc: Journal of Materials Processing Technology, 1997, (66), p.258-263
Blanking Material and Processing Parameters.
[2] T.S.Kwak, Y.J.kim, M.K.Seo, W.B.Bae: Materials ProcessingTechnology, 2003. 143 – 144 (2003), p.656-661
[3] T.C.Lee, L.C.Chen, P.F.Zheng: Journal of gaterials Producing Technology, 1997, (63) , p.744-749
[5] Lee T.C, etc: Journal of Materials Processing Technology, 1997, (66), p.258-263
Online since: March 2008
Authors: N.A. de Sánchez, Héctor Enrique Jaramillo Suárez (1), Z. Vivas, W. Aperador, C. Amaya, J.C. Caicedo
Caicedo4 ,
1 Science and Engineering of Materials Group, Department of Engineering Basic Science,
Department of Energetic and Mechanics Universidad Autónoma de Occidente, Cali-Colombia
2
Young Researchers, COLCIENCIAS, Cali-Colombia
3
Engineering and Materials Development Group, CDT ASTIN-SENA, Cali-Colombia
4
Excellence Center for Novel Materials - CENM, Colombia
*nalba@uao.edu.co, hjsuarez@uao.edu.co, zvivas@uao.edu.co, wiapch@yahoo.es,
canmayah@hotmail.com, jcesarca@calima.univalle.edu.co
Keywords: Bilayers, atomic force microscopy, corrosion, mechanical properties, magnetron
sputtering, stainless steel.
Journal of Optoelectronics and Advanced Materials vol. 5 (2003), p. 1399 - 1404
Kotru Indentation induced testing studies on lanthanum modified lead titanate ceramics Materials Science and Engineering B 110 (2004), 177-184
Journal of Applied Phisys.
Materials Science and Engineering B97 (2003), 46 -/53.
Journal of Optoelectronics and Advanced Materials vol. 5 (2003), p. 1399 - 1404
Kotru Indentation induced testing studies on lanthanum modified lead titanate ceramics Materials Science and Engineering B 110 (2004), 177-184
Journal of Applied Phisys.
Materials Science and Engineering B97 (2003), 46 -/53.
Online since: October 2012
Authors: Xiang Dong Gao, Liang Zheng Jiang
Since the material is stainless steel, at the front of the weld pool ,the violent electric arc will produce strong catoptric light, which may affect the feature extraction of the pool front-end.But it will not affect the feature extraction in this experiment.
Acknowledgements This work was supported in part by the Guangdong Provincial Natural Science Foundation of China (10251009001000001, 9151009001000020), the National Natural Science Foundation of China (51175095) and the Specialized Research Fund for the Doctoral Program of Higher Education of China (20104420110001).
Sensing: Science and Technology of Welding & Joining, Vol. 11 (2006) No.5, pp. 586-592
Wu: Chinese Journal of Mechanical Engineering, Vol. 42 (2006) No.10, pp. 203-214 (in Chinese)
WESTHOFF: Welding Journal, Vol. 69 (1990) No.9, pp. 346-361
Acknowledgements This work was supported in part by the Guangdong Provincial Natural Science Foundation of China (10251009001000001, 9151009001000020), the National Natural Science Foundation of China (51175095) and the Specialized Research Fund for the Doctoral Program of Higher Education of China (20104420110001).
Sensing: Science and Technology of Welding & Joining, Vol. 11 (2006) No.5, pp. 586-592
Wu: Chinese Journal of Mechanical Engineering, Vol. 42 (2006) No.10, pp. 203-214 (in Chinese)
WESTHOFF: Welding Journal, Vol. 69 (1990) No.9, pp. 346-361
Influence on the Microstructures and Properties of A356 with Vibration Pressure in Lost Form Casting
Online since: October 2014
Authors: Zi Tian Fan, Zhong Zhao
Influence on the microstructures and properties of A356 with vibration pressure in lost form casting
Zhong Zhao 1, a, Zitian Fan2,b
1School of Mechanical Engineering, Ningbo University of Technology, China 315016
2State Key Laboratory of Material Processing and Die & Mould Technology, Huazhong University of Science and Technology, Wuhan, China 430074
anb2502@163.com, bfanzt@mail.hust.edu.cn
Keywords: Lost foam casting; pressure; vibration; aluminum alloy
Abstract.
Acknowledgements This work was financially supported by the Zhejiang Natural Science Foundation (Y1110106), the Ningbo Natural Science Foundation (2011A610163) and the National High Technology Research and Development Program of China (2007AA03Z113).
Rev. 2 (1981), p.71 [4] Li J.Q., FAN Z.T., Wang Y.Q., Dong X.P.: The Chinese Journal of Nonferrous Metals, 7 (2007), p.1047 [5] Zhao Z., Fan Z.T., Cheng P., Jiang W.M., Dong X.P.: The Chinese Journal of Nonferrous Metals, 8 (2010), p.1520 [6] Wang QG, Jones P.: Advances in Aluminum Casting Technology II, 10 (2002), p.75 [7] Xia Z.J., Li F.: Special Casting & Nonferrous Alloys, 4(2000), p.43
Acknowledgements This work was financially supported by the Zhejiang Natural Science Foundation (Y1110106), the Ningbo Natural Science Foundation (2011A610163) and the National High Technology Research and Development Program of China (2007AA03Z113).
Rev. 2 (1981), p.71 [4] Li J.Q., FAN Z.T., Wang Y.Q., Dong X.P.: The Chinese Journal of Nonferrous Metals, 7 (2007), p.1047 [5] Zhao Z., Fan Z.T., Cheng P., Jiang W.M., Dong X.P.: The Chinese Journal of Nonferrous Metals, 8 (2010), p.1520 [6] Wang QG, Jones P.: Advances in Aluminum Casting Technology II, 10 (2002), p.75 [7] Xia Z.J., Li F.: Special Casting & Nonferrous Alloys, 4(2000), p.43
Online since: July 2013
Authors: Si Yu Wu, Zhi Hong Xiao, Qi Yuan An
Design of Ultrasonic Distance Measurement System Based on Microcontroller
Zhihong Xiao 1, a, Siyu Wu2, b and Qiyuan An 3, c
1 School of Electronic Engineering, Xi'an Shiyou University, Xi'an, China
2 School of Instrument Science and Opto-electronics Engineering, Hefei University of Technology, Hefei, China
3 School of Software & Microelectronics, Northwest Polytechnic University, Xi'an, China
axiaozhihong1969@126.com, b450891626@qq.com, canqiyuan@126.com
Keywords: ultrasonic sensor, microcontroller, distance measurement, high precision
Abstract.
Therefore it can be used in material level measuring, vehicles auto navigation, distinguishing and locating objects, vehicles assistant safety-driving system topography detection and many other fields. etc[3,4].
[2] Yang Yu, Jia Shi, Liang Chen, Yanju Liu: Chinese Journal of Sensors and Actuators, Vol.25 (November 2012), p.1623-1625.
,Vijayarekha,K., Venkatraman,B., Karthik,Durga: Research Journal of Applied Sciences, Engineering and Technology, v 4, n 24, p 5525-5533, 2012
[5] Information on http://www.osenon-group.com [6] Huang, Y.S., Young, M.S. : Instrumentation Science and Technology.
Therefore it can be used in material level measuring, vehicles auto navigation, distinguishing and locating objects, vehicles assistant safety-driving system topography detection and many other fields. etc[3,4].
[2] Yang Yu, Jia Shi, Liang Chen, Yanju Liu: Chinese Journal of Sensors and Actuators, Vol.25 (November 2012), p.1623-1625.
,Vijayarekha,K., Venkatraman,B., Karthik,Durga: Research Journal of Applied Sciences, Engineering and Technology, v 4, n 24, p 5525-5533, 2012
[5] Information on http://www.osenon-group.com [6] Huang, Y.S., Young, M.S. : Instrumentation Science and Technology.