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Online since: September 2013
Authors: Tian Feng Zhao, Han Pin Luo, Jian Bo Cao, Shi Ju E, Rui Kun Wang, Xin Xin Tang
Through analysing the principle of existed electric boilers and the advantages of nanotechnology heating materials, a new electric boiler was designed based on nano-electric film as the heating element.
In this design, a new type of semiconductor nano-electric film will be used as heating materials in order to study the feasibility of electric boiler [6].
Acknowledgement The work was supported by Zhejiang Provincial Natural Science Foundation of China (No.
Zhu: Journal of Zhejiang Normal University (Natural Sciences), Vol. 34 (2011) No. 4, pp.429-435
Xu: Journal of Jiangxi University of Electricity Workers, Vol. 15 (2002) No. 4, pp.32-33
In this design, a new type of semiconductor nano-electric film will be used as heating materials in order to study the feasibility of electric boiler [6].
Acknowledgement The work was supported by Zhejiang Provincial Natural Science Foundation of China (No.
Zhu: Journal of Zhejiang Normal University (Natural Sciences), Vol. 34 (2011) No. 4, pp.429-435
Xu: Journal of Jiangxi University of Electricity Workers, Vol. 15 (2002) No. 4, pp.32-33
Online since: October 2006
Authors: Fa Yun Zhang, Hong Yan
Experimental procedure
In this study the experimental materials were AZ61 magnesium alloys.
Le: Materials Science and Engineering Vol.
Liu: Journal of Materials Processing Technology Vol. 137 (2003), p. 195 [3] S.Y.
Oh: Journal of Materials Processing Technology Vol. 130-131 (2002), p. 587 [4] H.K.
Kang: Journal of Materials Processing Technology Vol. 104 (2000), p. 244 [5] YAN Hong and F.
Le: Materials Science and Engineering Vol.
Liu: Journal of Materials Processing Technology Vol. 137 (2003), p. 195 [3] S.Y.
Oh: Journal of Materials Processing Technology Vol. 130-131 (2002), p. 587 [4] H.K.
Kang: Journal of Materials Processing Technology Vol. 104 (2000), p. 244 [5] YAN Hong and F.
Online since: July 2014
Authors: Chun Lian Hu
Introduction
Ni-based superalloy with superior mechanical performance, surface stability, and corrosion resistance, has been widely acknowledged to be the excellent candidates as base materials for hot components, e.g., hot parts of aerospace turbine engines [1].
Ni-based self-fluxing alloy powders are amongst the most important protective coating materials applied to counteract mechanical properties and high temperature oxidation.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 61167005 and 61367007) and the Natural Science Foundation of Gansu province of China (Grant No. 1112RJZA018).
Journal of Materials Processing Technology, 2008, 204: 147−151
Rare Metal Materials and Engineering, 2011, 40(6): 0973-0977.
Ni-based self-fluxing alloy powders are amongst the most important protective coating materials applied to counteract mechanical properties and high temperature oxidation.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 61167005 and 61367007) and the Natural Science Foundation of Gansu province of China (Grant No. 1112RJZA018).
Journal of Materials Processing Technology, 2008, 204: 147−151
Rare Metal Materials and Engineering, 2011, 40(6): 0973-0977.
Online since: September 2014
Authors: Ryo Matsumoto, Hiroshi Utsunomiya, Shohei Harada
Lenard, The effect of scaling on interfacial friction in hot rolling of steels, Journal of Materials Processing Technology, 88-1-3 (1999) 105-113
Colás, R., A model for heat conduction through the oxide layer of steel during hot rolling, Journal of Materials Processing Technology, 105-3 (2000) 258-263
Utsunomiya, Reduction of friction of steel covered with oxide scale in hot forging, Journal of Materials Processing Technology, 214-3 (2014) 651-659
Kuhlmann, Guidelines for precision hot forging with applications, Journal of Materials Processing Technology, 98-2 (2000) 182-188
Specker, Precision forging processes for high-duty automotive components, Journal of Materials Processing Technology, 185-1-3 (2007) 139-146
Colás, R., A model for heat conduction through the oxide layer of steel during hot rolling, Journal of Materials Processing Technology, 105-3 (2000) 258-263
Utsunomiya, Reduction of friction of steel covered with oxide scale in hot forging, Journal of Materials Processing Technology, 214-3 (2014) 651-659
Kuhlmann, Guidelines for precision hot forging with applications, Journal of Materials Processing Technology, 98-2 (2000) 182-188
Specker, Precision forging processes for high-duty automotive components, Journal of Materials Processing Technology, 185-1-3 (2007) 139-146
Online since: October 2024
Authors: Muhammad Abid Amin, Azaz Nigah, Muhammad Ali
Ceramic dielectric materials are associated with high energy densities required for pulsed power electronics [1-2].
Barium Strontium Titanate (BST) ceramics are commonly used as dielectric materials for development of high energy storage applications.
There are different dopants that can alter the structure and properties of BST materials.
Materials and Process Raw Materials: High purity and ultra-fine powders i.e.
Cell Reports Physical Science 3, no. 11 (2022)
Barium Strontium Titanate (BST) ceramics are commonly used as dielectric materials for development of high energy storage applications.
There are different dopants that can alter the structure and properties of BST materials.
Materials and Process Raw Materials: High purity and ultra-fine powders i.e.
Cell Reports Physical Science 3, no. 11 (2022)
Online since: October 2012
Authors: Xiao Zhao
Ochoa-Perez: International Journal of Fatigue, Vol. 30 (2008), p. 2140-2146
Lee: Journal of Nuclear Materials, Vol. 340 (2005), p. 307-314
Cohen: Corrosion Science, Vol. 51(2009), p. 3014-3020
Mentez : Materials Science and Engineering A, Vol. 229 (1997), p. 87-94
Lee: International Journal of Fatigue, Vol. 25 (2003), p. 1293-1300.
Lee: Journal of Nuclear Materials, Vol. 340 (2005), p. 307-314
Cohen: Corrosion Science, Vol. 51(2009), p. 3014-3020
Mentez : Materials Science and Engineering A, Vol. 229 (1997), p. 87-94
Lee: International Journal of Fatigue, Vol. 25 (2003), p. 1293-1300.
Online since: July 2013
Authors: Addisson Salazar, Gonzalo Safont, Luis Vergara, Antonio Vidal, Alberto Gonzalez
Common materials employed in heritage buildings are stone, mortar and brick.
All of this information can be used for quality control and characterization of materials since physical properties of the material, such as porosity and density, have a definite influence on the propagation of the ultrasound [7].
[3] J.H Bungey, Sub-surface radar testing of concrete: a review, Construction and Building Materials, 18 (1) (2004), 1-8
Papayianni, Investigative methods for the characterisation of historic mortars - Part 2: Chemical characterisation, Materials and Structures/Materiaux et Constructions, 38 (282) (2005) 771-780
Vergara, Nonlinear Prediction Based on Independent Component Analysis Mixture Modelling, Lecture Notes in Computer Science, 6692 (2011), 508-515
All of this information can be used for quality control and characterization of materials since physical properties of the material, such as porosity and density, have a definite influence on the propagation of the ultrasound [7].
[3] J.H Bungey, Sub-surface radar testing of concrete: a review, Construction and Building Materials, 18 (1) (2004), 1-8
Papayianni, Investigative methods for the characterisation of historic mortars - Part 2: Chemical characterisation, Materials and Structures/Materiaux et Constructions, 38 (282) (2005) 771-780
Vergara, Nonlinear Prediction Based on Independent Component Analysis Mixture Modelling, Lecture Notes in Computer Science, 6692 (2011), 508-515
Online since: July 2013
Authors: Hui Mei Zhang, Hai Bo Cao, Xiang Miao Xie
Chinese Journal of Geotechnical Engineering, 1998, 20(l): l12-113.
Chinese Journal of Rock Mechanics and Engineering, 2011, 30(7): 1318–1336.
Journal of China University of Mining and Technology, 2011, 40(1): 140-145.
International Journal of Rock Mechanics and Mining Sciences, 2007, 44(3): 18–22
International Journal of Rock Mechanics and Mining Sciences, 2001, 38(7): 1029~1034
Chinese Journal of Rock Mechanics and Engineering, 2011, 30(7): 1318–1336.
Journal of China University of Mining and Technology, 2011, 40(1): 140-145.
International Journal of Rock Mechanics and Mining Sciences, 2007, 44(3): 18–22
International Journal of Rock Mechanics and Mining Sciences, 2001, 38(7): 1029~1034
Online since: April 2012
Authors: Jun Zhou, Xiao Ping Li, Pei Chao Liu, Saif Ullah, Shou Lei Li, Yun Feng Zhang
This article mainly introduces the materials of brain stimulated micro-electrode, the matched specifications and the evaluation on the compound functions in the developing course.
With the large number of mathematical science to penetrate into the brain science, people reveal the mystery of the brain step by step.
A detailed analysis will be given in the following sections about the materials, standards and its pros and cons.
The raw materials involved the palladium, tungsten and iridium.
The emerging flexible materials convince the 3D flexible multichannel microprobe array to be a better choice [7] , as shown in Fig. 4.
With the large number of mathematical science to penetrate into the brain science, people reveal the mystery of the brain step by step.
A detailed analysis will be given in the following sections about the materials, standards and its pros and cons.
The raw materials involved the palladium, tungsten and iridium.
The emerging flexible materials convince the 3D flexible multichannel microprobe array to be a better choice [7] , as shown in Fig. 4.
Online since: May 2021
Authors: Jing Guan, Xue Ting Jiang, Xing Cheng, Feng Yang, Jing Liu
Experimental Procedure
Test materials and process.
Materials Science & Engineering A, 2009, 499(1):482-488
Journal of Wuhan University of Technology (Materials Science Edition), 2015, 30(3):631-638
Advanced Engineering Materials, 2015, 17(7):995-1007
Materials Chemistry and Physics, 2013, 137(3):959-966.
Materials Science & Engineering A, 2009, 499(1):482-488
Journal of Wuhan University of Technology (Materials Science Edition), 2015, 30(3):631-638
Advanced Engineering Materials, 2015, 17(7):995-1007
Materials Chemistry and Physics, 2013, 137(3):959-966.