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Online since: February 2014
Authors: Zhi Liu, Jing Liu, Shu Ri Cai
This paper mainly discusses the structural and material characteristics of this sensor, as well as the performance test analysis of this strain sensor.
This sensor is made up of quenched phosphor bronze, which improves the material’s strength, stiffiness, abrasivity, fatigue strength and toughness greatly.
And further research into the material’s anti-oxidation also needs to be carried out.
Journal of Chongqing Normal University (Natural Science), Vol. 26-4(2009) Vol. p.101-105 [3] Chen Guanghua, Ju Na, Yang Fei and Li Jianwe: Monitoring system for vehicle overloading base on paste-type strain sensor.
Journal of Beijing University of Aeronautics and Astronautics, Vol. 37-4(2011) p.409-414 [4] Jian Su, Shuri Cai, Jinquan Zhang et al.
This sensor is made up of quenched phosphor bronze, which improves the material’s strength, stiffiness, abrasivity, fatigue strength and toughness greatly.
And further research into the material’s anti-oxidation also needs to be carried out.
Journal of Chongqing Normal University (Natural Science), Vol. 26-4(2009) Vol. p.101-105 [3] Chen Guanghua, Ju Na, Yang Fei and Li Jianwe: Monitoring system for vehicle overloading base on paste-type strain sensor.
Journal of Beijing University of Aeronautics and Astronautics, Vol. 37-4(2011) p.409-414 [4] Jian Su, Shuri Cai, Jinquan Zhang et al.
Online since: September 2013
Authors: Darren Fraser, S.H. Masood, Mahnaz Jahedi, Afshin Mohammadhosseini
The particle size distribution, morphology, and chemical composition of the Ti6Al4V, which is one of the most common materials for biomedical implants because of its high strength to weight ratio, corrosion resistance, and its biocompatibility features, have been investigated.
The titanium alloy, Ti6Al4V, which is one of the most biocompatible materials, was used in this experiment.
The entire EBM process is conducted in a vacuum chamber which is appropriate for materials with a high affinity to oxygen [4].
Moreover, the hardness of the specimen was decreased after the compression testing for both as-built and machined samples and this can be attributed to the fact that the effect of the compression is to soften the material.
Journal 15/3 (2009) 171-178.
The titanium alloy, Ti6Al4V, which is one of the most biocompatible materials, was used in this experiment.
The entire EBM process is conducted in a vacuum chamber which is appropriate for materials with a high affinity to oxygen [4].
Moreover, the hardness of the specimen was decreased after the compression testing for both as-built and machined samples and this can be attributed to the fact that the effect of the compression is to soften the material.
Journal 15/3 (2009) 171-178.
Online since: October 2012
Authors: Su Fen Zhao, Xiao Yan Liu, Xin Fang Li
O: Meat Science, Vol.1(1996), pp.99 -109
G: Meat Science, Vol.24(1989), pp.43-58
Chen: Food Science, Vol.26(2005), pp.234-238
Brewer: Journal of Food Science, Vol.66(2006), pp1230-1320 [6] M.
Dai: Agricultural Engineering Journal, Vol.3(2003), pp.156-160
G: Meat Science, Vol.24(1989), pp.43-58
Chen: Food Science, Vol.26(2005), pp.234-238
Brewer: Journal of Food Science, Vol.66(2006), pp1230-1320 [6] M.
Dai: Agricultural Engineering Journal, Vol.3(2003), pp.156-160
Online since: May 2011
Authors: Kan Kang, Lang Ni Deng, Peng Zhang, Hua Chen
After the CFRP plates release, concrete in tensile region was uncracked, the strains in the reinforcement and concrete are directly proportional to the distance from the neutral axis, so beams can be calculated as homogeneous and elasticity material.
Acknowledgements This work was financially supported by the Guangxi Natural Science Foundation Key Project (0832002Z), Guangxi Natural Science Foundation (2010GXNSFB013006), Guangxi Science Research and Technology Development Project (0992001-13), and Guangxi University of Technology Science Foundation (040004).
References [1]R.G.Wight, M.F.Green, and M-A.Erki: Journal of composites for construction, Vol. 5(2001), No.4, pp.214-220
[2] R.J.Quantrill and L.C.Hollaway: Composites Science and Technology, Vol.58 (1998), No.8,pp. 1259-1275
[4] Hua Chen: Journal of Guilin University of Technology, Vol. 29 (2009) No.1, pp.81-84.
Acknowledgements This work was financially supported by the Guangxi Natural Science Foundation Key Project (0832002Z), Guangxi Natural Science Foundation (2010GXNSFB013006), Guangxi Science Research and Technology Development Project (0992001-13), and Guangxi University of Technology Science Foundation (040004).
References [1]R.G.Wight, M.F.Green, and M-A.Erki: Journal of composites for construction, Vol. 5(2001), No.4, pp.214-220
[2] R.J.Quantrill and L.C.Hollaway: Composites Science and Technology, Vol.58 (1998), No.8,pp. 1259-1275
[4] Hua Chen: Journal of Guilin University of Technology, Vol. 29 (2009) No.1, pp.81-84.
Online since: December 2014
Authors: Bao Yu Xiao, Wen Kai Zhang, Xiu Ling Chen
Research Site
Located in the science garden of Zhangpu County, Zhangzhou prefectural-level monopoly,south of Fujian Province,the research sites is 27km from Zhangpu County site.
Data and Method Soil particles size analysis is conductive to distinguish the depositional environment, judge the kinds of material handling and hydrodynamic conditions and the trend of particles change[1].
Choose the suit sites to begin fieldwork by the guidance of geography and soil science.
On the other hand, for the gentle and under fall of slope, especially the gradient under 25 °, the terrain is smooth, with plenty of water and heat, fine grains and good soil fertility, and convenient transportation, is the optimal area in the science garden.
References [1] C.X.Xiao,Z.Z.Li, Journal of Xinjiang Normal University(Natural Sciences).3(2006),p.118-123 [2] B.Quan, Master’s Degree Thesis of Fujian Normal University.(1999)35 [3] M.Zhang,H.J.Zhu, Journal of Fujian Teachers University(Natural Science).4(2000),p.98-103 [4] South Subtropical Crops’ Development Office of The Ministry of Agriculture, Fruit Tree of Tropical and Subtropical in China, China Agriculture Press,Beijing(1998)
Data and Method Soil particles size analysis is conductive to distinguish the depositional environment, judge the kinds of material handling and hydrodynamic conditions and the trend of particles change[1].
Choose the suit sites to begin fieldwork by the guidance of geography and soil science.
On the other hand, for the gentle and under fall of slope, especially the gradient under 25 °, the terrain is smooth, with plenty of water and heat, fine grains and good soil fertility, and convenient transportation, is the optimal area in the science garden.
References [1] C.X.Xiao,Z.Z.Li, Journal of Xinjiang Normal University(Natural Sciences).3(2006),p.118-123 [2] B.Quan, Master’s Degree Thesis of Fujian Normal University.(1999)35 [3] M.Zhang,H.J.Zhu, Journal of Fujian Teachers University(Natural Science).4(2000),p.98-103 [4] South Subtropical Crops’ Development Office of The Ministry of Agriculture, Fruit Tree of Tropical and Subtropical in China, China Agriculture Press,Beijing(1998)
Online since: November 2020
Authors: Dmitry V. Mashtalyar, Sergey V. Gnedenkov, Sergey L. Sinebryukhov, Igor M. Imshinetsky, Vladimir S. Egorkin, Konstantine V. Nadaraia, Igor E. Vyaliy, Alexander N. Minaev, Valeriia S. Filonina, Andrey S. Gnedenkov, Andrey P. German
In both cases, one of the key engineering solutions is the rational selection of materials.
Coatings obtained by PEO have high protective properties, high adhesion to the metal substrate, as well as a developed surface, which allows to modify such coatings with different materials, depending on the purpose of the oxidized part.
Materials and Methods The rectangular plates of the AMg3 aluminum alloy with size of the 20 mm×30 mm×1.5 mm were used for the experiments.
Journal of Colloid Science, 5(6), 514–531. https://doi.org/10.1016/0095-8522(50)90044-4
Progress in Materials Science.
Coatings obtained by PEO have high protective properties, high adhesion to the metal substrate, as well as a developed surface, which allows to modify such coatings with different materials, depending on the purpose of the oxidized part.
Materials and Methods The rectangular plates of the AMg3 aluminum alloy with size of the 20 mm×30 mm×1.5 mm were used for the experiments.
Journal of Colloid Science, 5(6), 514–531. https://doi.org/10.1016/0095-8522(50)90044-4
Progress in Materials Science.
Online since: February 2011
Authors: Yun Yan Hu, Hui Xia Wang, Yu Feng Zhang, Jun Wang
Weld internal resistance in welding area was the resistance of metal material itself.
The major effect factors are: thermophysical properties of metallic materials, mechanical properties, parameters and characteristics of spot welding specification and weld thickness, etc.
With the increasing of electrode pressure, the contact resistance and the heat of melting materials reduced, eventually the nugget size decreased.
[2] D.Q.Sun, B.Lang, D.X.Sun and J.B.Li: Material Science and Engineering: A (2007), p.494-498
[3] E.Feulation, V.Robin and J.M.Bergheau: Journal of Materials Processing Technology.11 (2004), p. 436-441
The major effect factors are: thermophysical properties of metallic materials, mechanical properties, parameters and characteristics of spot welding specification and weld thickness, etc.
With the increasing of electrode pressure, the contact resistance and the heat of melting materials reduced, eventually the nugget size decreased.
[2] D.Q.Sun, B.Lang, D.X.Sun and J.B.Li: Material Science and Engineering: A (2007), p.494-498
[3] E.Feulation, V.Robin and J.M.Bergheau: Journal of Materials Processing Technology.11 (2004), p. 436-441
Online since: August 2005
Authors: K.X. Fu, Y.M. Zhou, Cheng Yong Wang, Feng Lin Zhang, Hui Yuan
Introduction
Diamond tools are used in the cutting, grinding and polishing for hard and brittle materials such as
ceramic, glass, granite and so on.
The self-propagating high-temperature synthesis is a novel process that can fabricated various materials such as NiAl, TiNi, AlTi, TiC, TiN, Ni3Si and TiB2 etc. that used in the fields of surface coating, jointing and tool materials and so on [1-3].
Acknowledgement: The Authors thank Nature Science Foundation of China ( Grant No. 50145015 ) and Nature Science Foundation of Guangdong Province ( Grant No. 20000059 ) for the financial support.
Reaction mechanism of combustion synthesis of NiAl, Materials Science and Engineering A, 2002,(329-331):57-68 [3] C.L.
Self-propagating high-temperature synthesis: A new method for the production of diamond-containing materials, Diamond and Related Materials, 1993(2)207-210 [6] M.Ohyanagi, Y.
The self-propagating high-temperature synthesis is a novel process that can fabricated various materials such as NiAl, TiNi, AlTi, TiC, TiN, Ni3Si and TiB2 etc. that used in the fields of surface coating, jointing and tool materials and so on [1-3].
Acknowledgement: The Authors thank Nature Science Foundation of China ( Grant No. 50145015 ) and Nature Science Foundation of Guangdong Province ( Grant No. 20000059 ) for the financial support.
Reaction mechanism of combustion synthesis of NiAl, Materials Science and Engineering A, 2002,(329-331):57-68 [3] C.L.
Self-propagating high-temperature synthesis: A new method for the production of diamond-containing materials, Diamond and Related Materials, 1993(2)207-210 [6] M.Ohyanagi, Y.
Online since: October 2023
Authors: Iván Iglesias, Gustavo Peláez, Enrique Ares, Madalena Araujo
Methods and Materials
The I3.0 was a multi-pole process, led by the European Union, the United States and Japan, and represented the "intelligence revolution", a concept proposed by Jeremy Rifkin [Rifkin, J. (2011).
Systems Research and Behavioral Science, 18(6), 523–543. ].
International Journal of Managing Projects in Business
Systems Research and Behavioral Science, 18(6), 523–543
Project Management Journal, 41(2), 73–80
Systems Research and Behavioral Science, 18(6), 523–543. ].
International Journal of Managing Projects in Business
Systems Research and Behavioral Science, 18(6), 523–543
Project Management Journal, 41(2), 73–80
Online since: June 2022
Authors: Malik N. Hawas, Ali Hussein Fahem
Fire Safety Journal, (1987) 12, 139–152
Journal of Structural Engineering, (2004) 130, 991–1000
Journal of Constructional Steel Research, (2011) 65, 1995–2010
Journal of Constructional Steel Research, (2009) 65, 1216–1224
Fire Safety Journal, (2009) 44, 219–229
Journal of Structural Engineering, (2004) 130, 991–1000
Journal of Constructional Steel Research, (2011) 65, 1995–2010
Journal of Constructional Steel Research, (2009) 65, 1216–1224
Fire Safety Journal, (2009) 44, 219–229