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Online since: May 2022
Authors: Wei Sun, Chang Kui Liu, Chen Yang Sun, Jiang Yan Meng, Jin Juan Fan
Materials Research and Application,2018,12(3):5-11
Journal of Chongqing Jiaotong University(Natural Science), 2019, 38(8): 70-74
Erosion tests of steam turbine blade materials[J] .
Journal of Biomedical Materials Research
Materials Science and Engineering, 2004(385):74-82
Journal of Chongqing Jiaotong University(Natural Science), 2019, 38(8): 70-74
Erosion tests of steam turbine blade materials[J] .
Journal of Biomedical Materials Research
Materials Science and Engineering, 2004(385):74-82
Online since: July 2013
Authors: Wen Rui Ma, Guang He, Ya Jun Wang
The nickel material specimen’s size is ø2×1mm, produced by the LIGA method in Institute of High Energy Physics Chinese Academy of Sciences.
Materials Letters. 59 (2005) 1511-1515
Journal of Experimental Mechanics. 18 (2003) 39-44
Polymer Engineering and Science. 50 (2010) 780-788
Chinese Journal of High Pressure Physics. 23 (2009) 46-49
Materials Letters. 59 (2005) 1511-1515
Journal of Experimental Mechanics. 18 (2003) 39-44
Polymer Engineering and Science. 50 (2010) 780-788
Chinese Journal of High Pressure Physics. 23 (2009) 46-49
Online since: June 2017
Authors: S.N. Larin, G.A. Nuzgdin, Valeriy Ivanovich Platonov
Materials Science and Engineering. 477 (2008) 69–79
Materials Science and Engineering: 456 (2007) 236–242
Materials Science and Engineering. 404 (2005) 108–116
Journal of Materials Processing Technology. 72 (1997) 429-433
Materials Science and Engineering. 478 (2008) 130–139
Materials Science and Engineering: 456 (2007) 236–242
Materials Science and Engineering. 404 (2005) 108–116
Journal of Materials Processing Technology. 72 (1997) 429-433
Materials Science and Engineering. 478 (2008) 130–139
Online since: February 2016
Authors: Jacek Pawlicki, Piotr Amrogowicz, Anna Urbańczyk-Gucwa
The rolling with cyclic movement of rolls (RCMR) method allows us
to accumulate very large strains into materials.
This mean that the material underwent very low strain.
Journal of Materials Science and Technology, Vol. 27, (2011), 1083-1088
Journal of Materials Processing Technology, Vol. 134, (2003) 120–134
Materials Characterization, Vol 94, (2014), 37–45.
This mean that the material underwent very low strain.
Journal of Materials Science and Technology, Vol. 27, (2011), 1083-1088
Journal of Materials Processing Technology, Vol. 134, (2003) 120–134
Materials Characterization, Vol 94, (2014), 37–45.
Online since: October 2014
Authors: Iulia Florea, Ioan Carcea, Costel Roman, Oana Bălţătescu, Gheorghe Buluc
Fu, Microstructure and compressive properties of AlCrFeCoNi high entropy alloy, Materials Science and Engineering A, 491, 2008, pp. 154–158
[3] Jien-Wei Yeh, Yu-Liang Chen, Su-Jien Lin and Swe-Kai Chen High-Entropy Alloys – A New Era of Exploitation, Materials Science Forum Vol. 560, 2007, pp. 1-9, Trans Tech Publications, Switzerland
Munitz, M.J.Kaufman, J.P.Chandler, H.Kalaantari, R.Abbaschian, Melt separation phenomena in CoNiCuAlCr high entropy alloy containing silver, Materials Science & Engineering A 560, 2013, pp.633–642
„Solid Solution Formation Criteria in the Multi- component Alloys with High Entropy of Mixing” Chinese Materials Science Technology & Equipment, Volumes 561 – 565, 2007, pp. 1337-1339
Carcea, High entropy alloys, Journal of Optoelectronics and Advanced Materials Vol. 15, No. 7- 8, 2013, pp.761 – 767.
[3] Jien-Wei Yeh, Yu-Liang Chen, Su-Jien Lin and Swe-Kai Chen High-Entropy Alloys – A New Era of Exploitation, Materials Science Forum Vol. 560, 2007, pp. 1-9, Trans Tech Publications, Switzerland
Munitz, M.J.Kaufman, J.P.Chandler, H.Kalaantari, R.Abbaschian, Melt separation phenomena in CoNiCuAlCr high entropy alloy containing silver, Materials Science & Engineering A 560, 2013, pp.633–642
„Solid Solution Formation Criteria in the Multi- component Alloys with High Entropy of Mixing” Chinese Materials Science Technology & Equipment, Volumes 561 – 565, 2007, pp. 1337-1339
Carcea, High entropy alloys, Journal of Optoelectronics and Advanced Materials Vol. 15, No. 7- 8, 2013, pp.761 – 767.
Online since: August 2011
Authors: Xiao Ma, Li Chen, Huan Kun Xu, Sha Lei, Qin Hua Lin, Bei He Ma
It makes the material produce corresponding strain (deformation).
(6) Piezoelectric constant measuring methods For piezoelectric materials, piezoelectric constant is a very important performance parameter.
ESPI has great applications in measuring small displacement of inorganic materials (such as the giant magnetostrictive material strained in the magnetic field, the thermal expansion coefficient of inorganic materials, etc.) . 4.Even if the method of ESPI has high precision,some error still exists.We summarize the reasons and the influencing factors: (1) the measurement geometric dimensioning and the readings (2) vibrations (3) noises (4) errors caused by the welded parts, duing to air gap In order to improve the accuracy of measurement,it is important to overcome these unsystematic errors.
Acknowledgements This work was supported by the Guangdong Science and Technology Program Foundation (090193).
Leendertz:Optics & Laser Technology,Vol.3(1971),p.26-30 [10] Bruck HA, McNeil1 SR and Sutton MA:Exp Mech.(1989),Vol 29 (No.3),p.26l-267 [11] Zhong-Jin Wang and Yan Liu:Journal of Materials Processing Technology,Vol.210.(2010),p.1536-1544.
(6) Piezoelectric constant measuring methods For piezoelectric materials, piezoelectric constant is a very important performance parameter.
ESPI has great applications in measuring small displacement of inorganic materials (such as the giant magnetostrictive material strained in the magnetic field, the thermal expansion coefficient of inorganic materials, etc.) . 4.Even if the method of ESPI has high precision,some error still exists.We summarize the reasons and the influencing factors: (1) the measurement geometric dimensioning and the readings (2) vibrations (3) noises (4) errors caused by the welded parts, duing to air gap In order to improve the accuracy of measurement,it is important to overcome these unsystematic errors.
Acknowledgements This work was supported by the Guangdong Science and Technology Program Foundation (090193).
Leendertz:Optics & Laser Technology,Vol.3(1971),p.26-30 [10] Bruck HA, McNeil1 SR and Sutton MA:Exp Mech.(1989),Vol 29 (No.3),p.26l-267 [11] Zhong-Jin Wang and Yan Liu:Journal of Materials Processing Technology,Vol.210.(2010),p.1536-1544.
Online since: May 2024
Authors: Sachin Kumar, Hari Om Sharma, Dinesh Kumar Patel, Shiv Ranjan Kumar
Automotive sound-absorbing materials, building materials, paper products, panels, tiles, and thermal insulation materials all use biodegradable ingredients.
Matrix Material Characteristics of the composite material depend on the combination of the fibers and matrix materials.
Brito J, “Mechanical, thermal and acoustic behavior of polymer-based composite materials produced with rice husk and expanded cork,” Construction and Building Materials Vol. 239, April 2020, 117851
Rani, “Rice husk as a fibre in composites: A review,” Journal of the Mechanical Behavior of Materials, vol. 29, 2020, pp.147–162
James, “Investigating the effects of Fiber concentration and fiber size on mechanical properties of Rice Husk Fiber Reinforced polyester composites,” International Journal of Composite Materials, vol. 8(5), 2018, pp.105-15
Matrix Material Characteristics of the composite material depend on the combination of the fibers and matrix materials.
Brito J, “Mechanical, thermal and acoustic behavior of polymer-based composite materials produced with rice husk and expanded cork,” Construction and Building Materials Vol. 239, April 2020, 117851
Rani, “Rice husk as a fibre in composites: A review,” Journal of the Mechanical Behavior of Materials, vol. 29, 2020, pp.147–162
James, “Investigating the effects of Fiber concentration and fiber size on mechanical properties of Rice Husk Fiber Reinforced polyester composites,” International Journal of Composite Materials, vol. 8(5), 2018, pp.105-15
Vanadium Dioxide Thin Films Deposited on ZnO Buffer Layer for Smart Thermochromic Glazing of Windows
Online since: August 2013
Authors: Lei Miao, Gang Xu, Jian Wei Ma, Ya Rui Song
Vanadium dioxide thin films deposited on ZnO buffer layer for smart thermochromic glazing of windows
Jianwei Ma1, 2,a, Yarui Song1,a, Gang Xu2, b, Lei Miao2,c
1Civil Engineering College,Northest Petroleum University,Daqing 163318,China
2 Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, China
amajw@ms.giec.ac.cn, bxugang@ms.giec.ac.cn, cmiaolei@ms.giec.ac.cn
Keywords: VO2; ZnO; thermochromic materials; RF-magnetron sputtering; smart windows
Abstract.
Vanadium dioxide (VO2) is one of the most promising materials for thermochromic window coating.
Acknowledgements This work was supported by Key Laboratory of Renewable Energy and Gas Hydrate,Chinese Academy of Sciences (No.y207k21001) References [1] C.G.
Tsuchiya: Journal of the Ceramic Society of Japan Vol. 118 (2010), p. 788 [3] Te-Wei Chin, Kazuhiko Tonooka, Naoto Kikuchi: Applied surface science Vol. 256 (2010), p. 6834 [4] Kazuhiro Kato, Pung Keum Song, Hidehumi Odaka and Yuzo Shigesato: Jpn.
Vanadium dioxide (VO2) is one of the most promising materials for thermochromic window coating.
Acknowledgements This work was supported by Key Laboratory of Renewable Energy and Gas Hydrate,Chinese Academy of Sciences (No.y207k21001) References [1] C.G.
Tsuchiya: Journal of the Ceramic Society of Japan Vol. 118 (2010), p. 788 [3] Te-Wei Chin, Kazuhiko Tonooka, Naoto Kikuchi: Applied surface science Vol. 256 (2010), p. 6834 [4] Kazuhiro Kato, Pung Keum Song, Hidehumi Odaka and Yuzo Shigesato: Jpn.
Online since: August 2013
Authors: Lei Miao, Gang Xu, Jian Wei Ma, Ya Rui Song
VO2 thin films deposited on ZnO buffer layer
Jianwei Ma1, 2,a, Yarui Song1,a , Gang Xu2, b, Lei Miao2,c
1Civil Engineering College,Northest Petroleum University,Daqing 163318,China
2 Key Laboratory of Renewable Energy and Gas Hydrate, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, China
amajw@ms.giec.ac.cn, bxugang@ms.giec.ac.cn, cmiaolei@ms.giec.ac.cn
Keywords: VO2; TiO2; thermochromic materials; RF-magnetron sputtering; smart windows
Abstract.
Vanadium dioxide (VO2) is one of the most promising materials for thermochromic window coating.
Acknowledgements This work was supported by Key Laboratory of Renewable Energy and Gas Hydrate,Chinese Academy of Sciences (No.y207k21001) References [1] C.G.
Tsuchiya: Journal of the Ceramic Society of Japan Vol. 118 (2010), p. 788 [3] Te-Wei Chin, Kazuhiko Tonooka, Naoto Kikuchi: Applied surface science Vol. 256 (2010), p. 6834 [4] Kazuhiro Kato, Pung Keum Song, Hidehumi Odaka and Yuzo Shigesato: Jpn.
Vanadium dioxide (VO2) is one of the most promising materials for thermochromic window coating.
Acknowledgements This work was supported by Key Laboratory of Renewable Energy and Gas Hydrate,Chinese Academy of Sciences (No.y207k21001) References [1] C.G.
Tsuchiya: Journal of the Ceramic Society of Japan Vol. 118 (2010), p. 788 [3] Te-Wei Chin, Kazuhiko Tonooka, Naoto Kikuchi: Applied surface science Vol. 256 (2010), p. 6834 [4] Kazuhiro Kato, Pung Keum Song, Hidehumi Odaka and Yuzo Shigesato: Jpn.
Online since: November 2010
Authors: Hai Fang Cheng, Dan Feng Zou, Shi Miao Jiang
The information of materials’ types, quantities and inventories, the activities of teams and members, and the equipments operation must be the sources of quality management.
Through an infrastructure project life cycle, infrastructure project state, team members’ action and state of equipments and materials are constantly changing.
The RFID tags stick on materials, equipments, members and traffic tools, etc.
In the infrastructure project, the data of materials’ type and quantity, members’ tasks, traffic lines, etc. can be saved in the chips of the RFID tags.
After any operation in project process, the information of the materials, members and traffics will be changed.
Through an infrastructure project life cycle, infrastructure project state, team members’ action and state of equipments and materials are constantly changing.
The RFID tags stick on materials, equipments, members and traffic tools, etc.
In the infrastructure project, the data of materials’ type and quantity, members’ tasks, traffic lines, etc. can be saved in the chips of the RFID tags.
After any operation in project process, the information of the materials, members and traffics will be changed.