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Online since: January 2013
Authors: Yao Mian Wang, Cong Hui Zhang
Benson: Progress in Materials Science Vol. 51 (2006), p. 427
[3] H.W.
Lu: Materials Science and Engineering A Vol. 375-377 (2004), p. 38 [5] N.R.
Lu: Journal of Materials Science and Technology Vol. 19 (2003), p. 563 [8] L.
Fu: Materials Science and Engineering A Vol. 322 (2002), p. 194 [15] X.H.
Francois: Materials Science and Engineering A Vol. 536 (2012), p. 124 [18] M.
Lu: Materials Science and Engineering A Vol. 375-377 (2004), p. 38 [5] N.R.
Lu: Journal of Materials Science and Technology Vol. 19 (2003), p. 563 [8] L.
Fu: Materials Science and Engineering A Vol. 322 (2002), p. 194 [15] X.H.
Francois: Materials Science and Engineering A Vol. 536 (2012), p. 124 [18] M.
Online since: January 2013
Authors: Yue Feng Li, Dong Zhang
Research on thermal character of Inorganic High Temperature Phase Change Materials
Yue Feng Li1,2,a, Dong Zhang1*,b
1School of Materials Science and Engineering, Tongji University, Shanghai, China
2College of Science, Shanghai Institute of Technology, Shanghai, China
aflywoud@gmail.com, bzhangdng@tongji.edu.cn(*Corresponding author)
KeyWords: phase change material; energy storage; inorganic salt; thermal properties; high temperature.
Introduction Phase change materials (PCMs) are an energy storage materials that can store and release energy for different purposes.
Inorganic salt high temperature PCM is one of the solid-liquid phase change materials.
Experimental Materials.
Journal of Tongji University (Natural Science), 34(7) (2006) 928-932
Introduction Phase change materials (PCMs) are an energy storage materials that can store and release energy for different purposes.
Inorganic salt high temperature PCM is one of the solid-liquid phase change materials.
Experimental Materials.
Journal of Tongji University (Natural Science), 34(7) (2006) 928-932
Online since: July 2021
Authors: Oleg Semkiv, Elena V. Lavrova, Vitaliy Ivanov, Fedor Morgay
The chemical compositions of the materials used.
Rudakov, Investigation of the Gas Sensitive Properties of Tin Dioxide Films Obtained by Magnetron Sputtering, In Materials Science Forum.
Man, Pitting and galvanic corrosion behaviour of laser-welded stainless steels, Journal of Materials Processing Technology 176 (2006) 168–178
Rui, A dynamic welding heat source model in pulsed current gas tungsten arc welding, Journal of Materials Processing Technology. 213 (2013) 2329-2338
Kang, Advancements in pulse gas metal arc welding, Journal of Materials Processing Technology. 164/165 (2005) 1113-1119
Rudakov, Investigation of the Gas Sensitive Properties of Tin Dioxide Films Obtained by Magnetron Sputtering, In Materials Science Forum.
Man, Pitting and galvanic corrosion behaviour of laser-welded stainless steels, Journal of Materials Processing Technology 176 (2006) 168–178
Rui, A dynamic welding heat source model in pulsed current gas tungsten arc welding, Journal of Materials Processing Technology. 213 (2013) 2329-2338
Kang, Advancements in pulse gas metal arc welding, Journal of Materials Processing Technology. 164/165 (2005) 1113-1119
Online since: February 2014
Authors: Shuang You, Xiang Jun Yu, Zuo Xin Li, Ke Nan Shen, An Jun Wu
Zhang: Journal of Hydrodynamics.
Zhan: Journal of Hydrodynamics.
Zulehner: Lecture Notes in Computer Science.
Li: Advances in Materials Manufacturing Science and Technology XII Materials Science Forum.
Wui: Journal of Anshan University of Science and Technology.
Zhan: Journal of Hydrodynamics.
Zulehner: Lecture Notes in Computer Science.
Li: Advances in Materials Manufacturing Science and Technology XII Materials Science Forum.
Wui: Journal of Anshan University of Science and Technology.
Online since: January 2012
Authors: Jun Tao Fei, Yun Mei Fang
Tan [2] developed the control strategies and hysteresis model for the piezoceramic materials.
Ball et al [7] proposed a stress-dependent hysteresis model for ferroelectric materials.
Acknowledgments This work is partially supported by National Science Foundation of China under Grant No. 61074056, The Natural Science Foundation of Jiangsu Province under Grant No.BK2010201.
Park , G.Washington, H.Yoon: A Hybrid Approach to Model Hysteretic Behavior of PZT Stack Actuators, Journal of Intelligent Material Systems and Structures,Vol. 20(2009), p.467-480 [4] M.
Seelecke: A Stress-Dependent Hysteresis Model for Ferroelectric Materials, Journal of Intelligent Material Systems and Structures, Vol. 8(2007), p. 69–88
Ball et al [7] proposed a stress-dependent hysteresis model for ferroelectric materials.
Acknowledgments This work is partially supported by National Science Foundation of China under Grant No. 61074056, The Natural Science Foundation of Jiangsu Province under Grant No.BK2010201.
Park , G.Washington, H.Yoon: A Hybrid Approach to Model Hysteretic Behavior of PZT Stack Actuators, Journal of Intelligent Material Systems and Structures,Vol. 20(2009), p.467-480 [4] M.
Seelecke: A Stress-Dependent Hysteresis Model for Ferroelectric Materials, Journal of Intelligent Material Systems and Structures, Vol. 8(2007), p. 69–88
Online since: January 2014
Authors: Shao Hui Zhang, Yong Tao Zhao, Jun Wei Zhou
The effect of welding materials on 1Cr18Ni9Ti and 2Cr13 steel welding joints fracture Microstructure pattern
Zhang Shaohui1,a ,Zhao Yongtao1,a , Zhou Junwei2,b
1Material and Metallurgy School, Inner Mongolia university of Science and technology, Baotou,014010,China
2Steel-making factory, Iron and steel group company, Baotou,014010,China
a 438809496@qq.com, b zyt0011@126.com, czhoujunwei@126.com
Keywords: 1Cr18Ni9Ti;2Cr13;welding materials; fracture pattern
Abstract.
Table 1 Experiment materials chemical composition (wt % ) Material C Si Mn S P Cr Ni Ti Fe 1Cr18Ni9Ti ≤0.12 ≤1.00 ≤2.00 ≤0.030 ≤0.035 17.0~19.0 8.0~11.0 0.5~0.8 other 2Cr13 0.16~0.25 ≤1.00 ≤1.00 ≤0.030 ≤0.035 12.0~14.0 — — other 1.2 Welding materials in the experiment H1Cr21Ni10Mn7Mo, H0Cr21Ni10 welding wire were selected as welding materials,their chemical composition were shown as table 2.
References [1]MAITA, SPOWAGE A C,in:Materials Science and Engineering A, (2004), p.374: 224−233
[3]Changheui Jang, Jounghoon Lee, Jong Sung Kim, et.al,in:International Journal of Pressure Vessels and Piping,2007, doi:10.1016/j.ijpvp. 2007.08.004
[5] Yajiang Li, Haijun Ma, Juan Wang: submitted to Materials Science and EngineeringA, (2011), p.4343-4347.
Table 1 Experiment materials chemical composition (wt % ) Material C Si Mn S P Cr Ni Ti Fe 1Cr18Ni9Ti ≤0.12 ≤1.00 ≤2.00 ≤0.030 ≤0.035 17.0~19.0 8.0~11.0 0.5~0.8 other 2Cr13 0.16~0.25 ≤1.00 ≤1.00 ≤0.030 ≤0.035 12.0~14.0 — — other 1.2 Welding materials in the experiment H1Cr21Ni10Mn7Mo, H0Cr21Ni10 welding wire were selected as welding materials,their chemical composition were shown as table 2.
References [1]MAITA, SPOWAGE A C,in:Materials Science and Engineering A, (2004), p.374: 224−233
[3]Changheui Jang, Jounghoon Lee, Jong Sung Kim, et.al,in:International Journal of Pressure Vessels and Piping,2007, doi:10.1016/j.ijpvp. 2007.08.004
[5] Yajiang Li, Haijun Ma, Juan Wang: submitted to Materials Science and EngineeringA, (2011), p.4343-4347.
Online since: June 2021
Authors: Ming Xie, Sai Bei Wang, Yong Tai Chen, Shang Qiang Zhao, Ji Heng Fang
Shubin, Synthesis of Ag/ZnO mixture for powdered contact materials, Russian Journal of Applied Chemistry. 87 (2014) 405-411
Yu, et al, Progresses in preparation of electrical contact materials by mechanical alloying, Materials Science & Engineering. 3 (2002) 457-460
Yin, Preparation of ZnO varistors by solution nano-coating technique, Materials Science & Engineering B.
[50] C.H Xu, D.Q Yi, C.P Wu, et al, Effects of additives on the structure and properties of Ag-ZnO contact materials, Journal of Functional Materials. 8 (2008) 1306-1309
Zhao, et al, Microstructure and properties of Ag/SnO2 functional material manufactured by selective laser melting, Nano Materials Science. 1 (2019) 208-214.
Yu, et al, Progresses in preparation of electrical contact materials by mechanical alloying, Materials Science & Engineering. 3 (2002) 457-460
Yin, Preparation of ZnO varistors by solution nano-coating technique, Materials Science & Engineering B.
[50] C.H Xu, D.Q Yi, C.P Wu, et al, Effects of additives on the structure and properties of Ag-ZnO contact materials, Journal of Functional Materials. 8 (2008) 1306-1309
Zhao, et al, Microstructure and properties of Ag/SnO2 functional material manufactured by selective laser melting, Nano Materials Science. 1 (2019) 208-214.
Online since: September 2017
Authors: Shamil R. Mukhametzyanov, Nour R. Galyavetdinov, Ruslan R. Safin
Use of Low-Grade Vegetable Raw Materials in Production of Composites by Preliminary Processing
R.R.
It is established that this type of processing of wood raw materials leads to improvement of its separate properties: wettability of material and adhesion to cement knitting increases.
To meet the constantly growing needs of wood raw materials such traditional breeds as spruce, pine and oak are cut down.
Chukhchin, Study of influence of low-enthalpy electron- beam plasma on peat, Lesnoy Journal, 5 (2003) 103-108
Ziatdinov, The technology for creating of decorative plywood with low formaldehyde emission, IOP Conference Series: Materials Science and Engineering, 93 (2015) 356-360.
It is established that this type of processing of wood raw materials leads to improvement of its separate properties: wettability of material and adhesion to cement knitting increases.
To meet the constantly growing needs of wood raw materials such traditional breeds as spruce, pine and oak are cut down.
Chukhchin, Study of influence of low-enthalpy electron- beam plasma on peat, Lesnoy Journal, 5 (2003) 103-108
Ziatdinov, The technology for creating of decorative plywood with low formaldehyde emission, IOP Conference Series: Materials Science and Engineering, 93 (2015) 356-360.
Online since: June 2016
Authors: Jatinder Kumar, Ravinder Kataria
Perevyazko, Influence of properties of abrasive materials on the effectiveness of ultrasonic machining of ceramics, Academy of Science of the Ukrainian SSR 283 (1986) 35–38
Materials Science and Engineering, 460–461(2007) 365–369
Journal of Manufacturing Science and Engineering. 127 (2005) 752–758
Xing, Combined machining of USM and EDM for advanced ceramics, Journal of Advanced Materials 26(3) (1995) 1620
Kim, Chemical-assisted ultrasonic machining of glass, Journal of Materials Processing Technology 191 (2007) 153–156.
Materials Science and Engineering, 460–461(2007) 365–369
Journal of Manufacturing Science and Engineering. 127 (2005) 752–758
Xing, Combined machining of USM and EDM for advanced ceramics, Journal of Advanced Materials 26(3) (1995) 1620
Kim, Chemical-assisted ultrasonic machining of glass, Journal of Materials Processing Technology 191 (2007) 153–156.