Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: September 2017
Authors: Marcelo A.S. Torres, Milton Sergio Fernandes Lima, H.V. Ribeiro, C.A.R.P. Baptista, D.H.S. Costa
Min: Journal of Materials Processing Technology Vol. 103 (2000), p.218
Ranninger: Journal of Materials Processing Technology Vol. 68 (1997), p.68
Lee: Materials Science and Engng.
Speer: Journal of Materials Processing Technology Vol. 117 (2001), p. 324
Naylor: Materials Science Forum Vol. 284 (1998), p. 83
Ranninger: Journal of Materials Processing Technology Vol. 68 (1997), p.68
Lee: Materials Science and Engng.
Speer: Journal of Materials Processing Technology Vol. 117 (2001), p. 324
Naylor: Materials Science Forum Vol. 284 (1998), p. 83
Characteristic of a Novel Composite Inorganic Polymer Coagulant-PAZF Prepared from Industrial Wastes
Online since: June 2014
Authors: Yan Zhen Yu, Ming Li, Juan Ting Wang
However, the preparation of IPF often utilizes expensive industrial-grade materials.
Materials and methods Materials.
Journal of hazardous materials, 2010, 182(1): 928-932
Journal of Hazardous Materials, 2011,185(2~3):1536-1542
Journal of Hazardous Materials, 2009, 169(1): 351-359
Materials and methods Materials.
Journal of hazardous materials, 2010, 182(1): 928-932
Journal of Hazardous Materials, 2011,185(2~3):1536-1542
Journal of Hazardous Materials, 2009, 169(1): 351-359
Online since: October 2010
Authors: Jia Lu Li, Li Chen, Qi Wei Guo, Guo Li Zhang, Ye Hong He, Ming Zhang
Hence, it is necessary to characterize the tensile behavior of 3D braided composites with BMI matrix under high temperature thermal ageing if such materials are to be used with any confidence.
Experiments Materials.
The matrix material was a 6421 BMI resin, kindly provided by Beijing Institute of Aeronautical Materials, Beijing, China.
Zhang and H.J.Li: Computational Materials Science Vol. 39 (2007), p. 836–841
Li: International Journal of Solids and Structures Vol. 46 (2009), p.3422–3432
Experiments Materials.
The matrix material was a 6421 BMI resin, kindly provided by Beijing Institute of Aeronautical Materials, Beijing, China.
Zhang and H.J.Li: Computational Materials Science Vol. 39 (2007), p. 836–841
Li: International Journal of Solids and Structures Vol. 46 (2009), p.3422–3432
Online since: October 2011
Authors: Wen Xiao Zhang, Guo Dong Gao, Guang Yu Mu
Therefore, the fatigue research of petrochemical material 2.25Cr-1Mo steel under complex stress state has important theoretical and engineering significance.
Test Condition and Method Test Material.
The material tested is the low content alloy refractory steel “2.25Cr—1Mo” whose mechanical properties under room and high temperatures are listed in Table 1.
References [1] Hongsheng Li, Chengfang Zhou: Engineering Fracture Mechanics (Dalian University of Technology Press, 1990) [2] Ren Wang, Zhuhua Xiong, Wenbin Huang: The basis of plasticity (Science Press, 1982) [3] Ryjichi Ohtani, Comai Cangirou.
Environment and high temperature strength (Tokyo Ohm Press, 1984) [4] Chengbi Guo, Wenxiao Zhang, Hongfa Huang, Shali Liang and Hua Ni: submitted to Journal of Dalian University of Technology (1996) [5] Dingyun Hu, Ming Pang, Jianping Wang and Bo Wu: submitted to Machinery Design & Manufacture (2010) [6] Maillot V, Fismlo A: submitted to International Journal of solids and Structures (2005)
Test Condition and Method Test Material.
The material tested is the low content alloy refractory steel “2.25Cr—1Mo” whose mechanical properties under room and high temperatures are listed in Table 1.
References [1] Hongsheng Li, Chengfang Zhou: Engineering Fracture Mechanics (Dalian University of Technology Press, 1990) [2] Ren Wang, Zhuhua Xiong, Wenbin Huang: The basis of plasticity (Science Press, 1982) [3] Ryjichi Ohtani, Comai Cangirou.
Environment and high temperature strength (Tokyo Ohm Press, 1984) [4] Chengbi Guo, Wenxiao Zhang, Hongfa Huang, Shali Liang and Hua Ni: submitted to Journal of Dalian University of Technology (1996) [5] Dingyun Hu, Ming Pang, Jianping Wang and Bo Wu: submitted to Machinery Design & Manufacture (2010) [6] Maillot V, Fismlo A: submitted to International Journal of solids and Structures (2005)
Online since: December 2013
Authors: Li Ping Song, Xian Yi Tong, Chun Lei Zhao, Guo Chang Zhao
The thermoelectric device is made up of two legs of different materials, freely suspends across two heat sinks (also electrodes) kept at the initial temperature, which act as the cold end.
Due to the Seebeck effect of the thermoelectric materials, the temperature difference between thermoelectric component and heatsink surface will generate a DC thermoelectric potential.
Ballico: International Journal of Thermophysics Vol.28(2007), p. 1822 [14] J.
Ballico: International Journal of Thermophysics Vol.32(2011), p. 361 [17] X.
Miao et al : Journal of Vacuum Science and Technology Vol.30(2012), p. 051804-1 [20] T.
Due to the Seebeck effect of the thermoelectric materials, the temperature difference between thermoelectric component and heatsink surface will generate a DC thermoelectric potential.
Ballico: International Journal of Thermophysics Vol.28(2007), p. 1822 [14] J.
Ballico: International Journal of Thermophysics Vol.32(2011), p. 361 [17] X.
Miao et al : Journal of Vacuum Science and Technology Vol.30(2012), p. 051804-1 [20] T.
Online since: February 2011
Authors: Zhi Huai Yang
Liu, Acta Materialia. 55 (2007). 361
[7] Soo-moon Park, Jeong-hee Oh, Materials Science and Engineering A . 438-440 (2006). 695
[8] G.P.
Chang, S.K.Wu, H.Kimura, Materials Science and Engineering A. 476(2008). 316 [12] Y.X.
Xie, Materials Letters. 61 (2007). 5175 [14] G.P.
Liu, Materials Science and Engineerings A. 425 (2006). 268 [15] Y.
Liu, Materials Science and Engineering A. 354 (2003). 286 [17] X.
Chang, S.K.Wu, H.Kimura, Materials Science and Engineering A. 476(2008). 316 [12] Y.X.
Xie, Materials Letters. 61 (2007). 5175 [14] G.P.
Liu, Materials Science and Engineerings A. 425 (2006). 268 [15] Y.
Liu, Materials Science and Engineering A. 354 (2003). 286 [17] X.
Online since: July 2015
This conference was organised by Department of Metallurgical Engineering,
Chulalongkorn University, together with National Metal and Materials Technology Center
(MTEC) and Metallurgy and Materials Science Research Institute (MMRI), to celebrate the
40th anniversary of the Metallurgical Engineering department.
It is our pleasure to thank the editorial board of the Journal of Key Engineering Materials for the readiness to publish this volume devoted to TMETC-8.
Amnuaysak Chianpairot National Metal and Materials Technology Center Dr.
Thanaporn Korad National Metal and Materials Technology Center Mr.
Peerapong Pinwanich National Metal and Materials Technology Center Jointly organisers: Department of Metallurgical Engineering, Faculty of Engineering, Chulalongkorn University Metallurgy and Materials Science Research Institute, Chulalongkorn University National Metal and Materials Technology Center Sponsors: Thai Parkerizing Company Limited Thai Tohken Thermo Company Limited POSCO-Thainox Public Company Limited Sahaviriya Steel Industries PLC EDAX Inc.
It is our pleasure to thank the editorial board of the Journal of Key Engineering Materials for the readiness to publish this volume devoted to TMETC-8.
Amnuaysak Chianpairot National Metal and Materials Technology Center Dr.
Thanaporn Korad National Metal and Materials Technology Center Mr.
Peerapong Pinwanich National Metal and Materials Technology Center Jointly organisers: Department of Metallurgical Engineering, Faculty of Engineering, Chulalongkorn University Metallurgy and Materials Science Research Institute, Chulalongkorn University National Metal and Materials Technology Center Sponsors: Thai Parkerizing Company Limited Thai Tohken Thermo Company Limited POSCO-Thainox Public Company Limited Sahaviriya Steel Industries PLC EDAX Inc.
Online since: June 2019
Authors: Roland Haubner, Wolfgang Scheiblechner, Susanne Strobl
Dorweiler, Dimensional Behavior of Copper-Carbon Sintered Steels, International Journal of Powder Metallurgy 17 (1985) 279 - 282
Criado, Solid-state transformations during diffusion bonding of copper to iron, Journal of Materials Science 23, (1988) 1231 - 1236
Haubner, Microstructural features of bronze-coated iron coins from the Roman Empire, Materials Science Forum, 782 (2014) 629 - 634
Derby, Modern materials for Mokume Gane, Materials World 6 (1998) 213 - 214. ].
Kabir, Materials Science and Engineering A, 385, 2004, 220-228. ].
Criado, Solid-state transformations during diffusion bonding of copper to iron, Journal of Materials Science 23, (1988) 1231 - 1236
Haubner, Microstructural features of bronze-coated iron coins from the Roman Empire, Materials Science Forum, 782 (2014) 629 - 634
Derby, Modern materials for Mokume Gane, Materials World 6 (1998) 213 - 214. ].
Kabir, Materials Science and Engineering A, 385, 2004, 220-228. ].
Online since: August 2012
Authors: Dong Xu Li, Yi Zhang, Jing Yan Zhang, Bin Huang
Preparation and performance study of fatty acid diatomite composite phase change materials and light weight phase change gypsum wall materials
Yi Zhang1,a, Bin Huang1,b, Jingyan Zhang2,c, Dongxu Li1,d*
1 College of Material Science and Engineering, Nanjing University of Technology, Nanjing 210009, Jiangsu, China
2 Changzhou Architectural Scientific Research Institute Co.
Phase change building materials(PCBMs) is a kind of materials that incorporating PCMs into building materials in order to made building materials with a function of energy storage, the mainly preparation methods of PCBMs are as follows: direct admixing: PCMs admixed into building materials(cement, gypsum) directly[8]; immersion method[9], encapsulation[10].
Solar Energy Materials and Solar Cells1995; 36: 147-157
Journal of Building Materials 2003; 6(4): 374-380
Solar Energy Materials & Solar Cells 2006; 90: 1951-1960
Phase change building materials(PCBMs) is a kind of materials that incorporating PCMs into building materials in order to made building materials with a function of energy storage, the mainly preparation methods of PCBMs are as follows: direct admixing: PCMs admixed into building materials(cement, gypsum) directly[8]; immersion method[9], encapsulation[10].
Solar Energy Materials and Solar Cells1995; 36: 147-157
Journal of Building Materials 2003; 6(4): 374-380
Solar Energy Materials & Solar Cells 2006; 90: 1951-1960
Online since: July 2011
Authors: Qi Qing Huang, Wei Xie, Shao Wei Tu, Ya Zhi Li
The material mechanical property is given in Table 1.
References: [1] Tang Li, Qingyuan Wang: Journal of Southwest university of Science and Technology.
(In Chinese) [2] Zhiqiao Zheng, Yuanyuan Chen, etc: The Chinese Journal of Nonferrous Metals.
Vol. 314 (2001), p.118-130 [4] Srivatsan TS, Kolar D, Magnusen P: Materials and Design.
Vol. 21 (1999), p.2ll-2l9 [7] Jialin Guo, Zhiming Yin, etc.: Journal of Aeronautical Materials.
References: [1] Tang Li, Qingyuan Wang: Journal of Southwest university of Science and Technology.
(In Chinese) [2] Zhiqiao Zheng, Yuanyuan Chen, etc: The Chinese Journal of Nonferrous Metals.
Vol. 314 (2001), p.118-130 [4] Srivatsan TS, Kolar D, Magnusen P: Materials and Design.
Vol. 21 (1999), p.2ll-2l9 [7] Jialin Guo, Zhiming Yin, etc.: Journal of Aeronautical Materials.