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Online since: April 2019
Authors: Augustín Görög, Ingrid Görögová, Maroš Martinkovič
Materials and Methodology of Experiment
Four types of a sintered carbide die (fig. 1) were used: bearing surface diameter 25 mm (length of bearing surface 2 mm), nominal reduction semi-angles 6°, 8°, 10°, 12° and nominal exit semi-angle 15°.
In: Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
Journal of Materials Processing Technology.
In Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
In Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
In: Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
Journal of Materials Processing Technology.
In Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
In Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
Online since: September 2013
Authors: Guo Xin Wang, Yan Yan, Qian Sang, Jing Jun Du
Acknowledgements
This research is supported by the National Natural Science Foundation, China (No. 51105039).
Journal of the Operational Research Society.
International Journal of Production Research.
International Journal of Production Research.
International Journal of Production Research.
Journal of the Operational Research Society.
International Journal of Production Research.
International Journal of Production Research.
International Journal of Production Research.
Online since: August 2004
Authors: Youn Ho Cho, J.M. Galan
J., 2002 "Guided Wave Resonance Tuning for Pipe
Inspection," Transactions of the ASME, Journal of Pressure Vessel Technology, 124, pp. 303-310
M., 2003 "The Magnetostrictive Sensor Technology for Long Range Guided Wave Testing and Monitoring of Structures," Materials Evaluation, 61, pp. 80-84
N., Pavlakovic, B. , Wilcox, P., 2003, "Practical Long Range Guided Wave Testing: Application to Pipes and Rails," Materials Evaluation, 61, pp. 66-74
I., 1980, "Diffraction of Lamb Waves by a Finite Crack in an Elastic Layer," Journal of the Acoustical Society of America, 67(4), pp. 1157-1165
L., 1996, "A Boundary Element Solution for a Mode Conversion Study on the Edge Reflection of Lamb Waves," Journal of the Acoustical Society of America, 99(3), pp. 147-155
M., 2003 "The Magnetostrictive Sensor Technology for Long Range Guided Wave Testing and Monitoring of Structures," Materials Evaluation, 61, pp. 80-84
N., Pavlakovic, B. , Wilcox, P., 2003, "Practical Long Range Guided Wave Testing: Application to Pipes and Rails," Materials Evaluation, 61, pp. 66-74
I., 1980, "Diffraction of Lamb Waves by a Finite Crack in an Elastic Layer," Journal of the Acoustical Society of America, 67(4), pp. 1157-1165
L., 1996, "A Boundary Element Solution for a Mode Conversion Study on the Edge Reflection of Lamb Waves," Journal of the Acoustical Society of America, 99(3), pp. 147-155
Online since: January 2014
Authors: Hui Min Li, Sheng Xing Yin, Ao Jun Wang, Meng Sha
The assessment made by LEED system on building projects mainly from the five aspects, which are sustainable construction site materials and resources, water saving, energy and atmospheric environment, indoor environmental quality, respectively.
2.
The content of the evaluation has six categories, including the community environment planning and design, energy and environment, indoor environment quality, community water environment, of materials and resources. 2) Beijing Olympic Construction Assessment System[6] Green Beijing Olympics Construction Assessment System (GBCAS) was published in August 2008.
Journal of Construction Technology ,Vol.23(2004), p.28-29 [7] Guo Jinyu, Research and Application of the Analytic Hierarchy Process [J].
Chinese Journal of Safety Science ,Vol.5, (2008), p.149-153 [8] Liao Hongqiang,Qiu Yong, Study on the AHP to Determine the Weight Coefficient [J].
Journal of Mechanical Engineer, Vol.6,(2012), p.22-24
The content of the evaluation has six categories, including the community environment planning and design, energy and environment, indoor environment quality, community water environment, of materials and resources. 2) Beijing Olympic Construction Assessment System[6] Green Beijing Olympics Construction Assessment System (GBCAS) was published in August 2008.
Journal of Construction Technology ,Vol.23(2004), p.28-29 [7] Guo Jinyu, Research and Application of the Analytic Hierarchy Process [J].
Chinese Journal of Safety Science ,Vol.5, (2008), p.149-153 [8] Liao Hongqiang,Qiu Yong, Study on the AHP to Determine the Weight Coefficient [J].
Journal of Mechanical Engineer, Vol.6,(2012), p.22-24
Online since: December 2012
Authors: Jie Cheng, Yan Xu, Yue Hua Wen, Gao Ping Cao, Han Min Liu
A B
Fig.2 The curves of efficiency vs. cycle number (A) and voltage vs. time (B) for the last 100 hours during charge-discharge, initial electrolyte: 1.55M V(IV)+4M H2SO4 solution, current density: 60mAcm-2
Conclusion
It is found that a minor amount of impurities may be introduced into vanadium electrolyte from framework materials or pipelines of vanadium flow batteries during charge and discharge cycling.
Acknowledgements This work is supported by the National Basic Research Program (973 Program) of China (2010CB227201) and the National Science & Technology Pillar Program (2011BAA07B07).
Robins, Journal of the Electrochemical Society, 133(1986) 1057
Huang, Journal of inorganic materials, 25 (2010)641
Sui, Journal of Chinese power sources, 28(2004) 94
Acknowledgements This work is supported by the National Basic Research Program (973 Program) of China (2010CB227201) and the National Science & Technology Pillar Program (2011BAA07B07).
Robins, Journal of the Electrochemical Society, 133(1986) 1057
Huang, Journal of inorganic materials, 25 (2010)641
Sui, Journal of Chinese power sources, 28(2004) 94
Online since: December 2012
Authors: Jia Quan Lin, Zong Shuai Li, Xiu Yan Wang, Cui Fang Li
Material: mainly the material quality of cable, isolation transformers and cable connectors;
b.
Construction management: mainly including process management, materials management, technology management and construction and operation management.
Basic method of Gray System[M].Wuhan: Huzhong University of Science and Technology Press,1987
Chinese Geological Hazard and Control Journal, 2007, 18(4):66-69
Introduction to Grey System Theory[J].The Journal of Grey System,1989(1):1-24
Construction management: mainly including process management, materials management, technology management and construction and operation management.
Basic method of Gray System[M].Wuhan: Huzhong University of Science and Technology Press,1987
Chinese Geological Hazard and Control Journal, 2007, 18(4):66-69
Introduction to Grey System Theory[J].The Journal of Grey System,1989(1):1-24
Online since: April 2015
Authors: Che Zulzikrami Azner Abidin, Muhammad Ridwan Fahmi, Umi Fazara Md Ali, M.N. Nasruddin
Umi Fazarad
1 School of Environmental Engineering, University Malaysia Perlis, Komplek Pusat Pengajian Jejawi 3, Arau, Perlis (02600), Malaysia
2Faculty of Mathematics and Natural Science, University of Sumatera Utara, Jalan Almamater Kampus USU (20155) Indonesia
adrfahmi@unimap.edu.my, bnasnoer@yahoo.com, czulzikrami@unimap.edu.my, dumifazara@unimap.edu.my
Keywords: Carbon regeneration, Decolourization, Adsorption isotherm, pyrolysis, chemical regeneration
Abstract.
Materials and Method.
Journal of Hazardous Materials, 182 (2010), 544-551
Journal of the Taiwan Institute of Chemical Engineers, 42 (2011), 305-311
Chemical Engineering Journal, 152 (2009), 464-470
Materials and Method.
Journal of Hazardous Materials, 182 (2010), 544-551
Journal of the Taiwan Institute of Chemical Engineers, 42 (2011), 305-311
Chemical Engineering Journal, 152 (2009), 464-470
Online since: December 2018
Authors: Hai Yan Zhao, Pu Xie
Material used in this work including hot-forging of Ti-6Al-4V alloy, Ti-17 alloy and Ti-2Al-Nb alloy.
Table 1 The yield strength of Titanium alloys Material Ti-6Al-4V Ti-17 Ti-2Al-Nb Yield Strength / MPa 890 1030 1080 (a) 50mm EBW welded of Ti-6Al-4V (b) 10mm EBW welded of Ti-6Al-4V (c) 20mm LFW welded of Ti-17 (d) 3.5mm EBW welded of Ti-2Al-Nb Fig.1 Dimensions of specimen of different welded Titanium alloy Modeling and Measurement The residual stresses were simulated by 3D finite model in ABAQUS software.
Materials Science and Engineering: A, 1996, 213(1): 103-114
Journal of Engineering Materials and Technology, 2001, 123: 162-168
Science and Technology of Welding and Joining, 2016, 21(5): 351-357.
Table 1 The yield strength of Titanium alloys Material Ti-6Al-4V Ti-17 Ti-2Al-Nb Yield Strength / MPa 890 1030 1080 (a) 50mm EBW welded of Ti-6Al-4V (b) 10mm EBW welded of Ti-6Al-4V (c) 20mm LFW welded of Ti-17 (d) 3.5mm EBW welded of Ti-2Al-Nb Fig.1 Dimensions of specimen of different welded Titanium alloy Modeling and Measurement The residual stresses were simulated by 3D finite model in ABAQUS software.
Materials Science and Engineering: A, 1996, 213(1): 103-114
Journal of Engineering Materials and Technology, 2001, 123: 162-168
Science and Technology of Welding and Joining, 2016, 21(5): 351-357.
Online since: May 2010
Authors: Y.K. Kim, Rong Shan Qin
However in this two-liquid
casting method, heat removal occur not only the interface of alloy but also the inside of the bulk
material by heat transfer between droplets has higher and lower liquidus temperature.
Therefore even in large scale applications, it is possible to achieve undercooling effect at the inside of bulk material.
Two sets of experiments were carried out for the same materials under the similar quench condition.
The materials are mixture of 50 wt % pure Sn and 50 wt % Sn60Pb40 alloy.
Vonnegut, Journal of Colloid Science 3 (1948) 563-569
Therefore even in large scale applications, it is possible to achieve undercooling effect at the inside of bulk material.
Two sets of experiments were carried out for the same materials under the similar quench condition.
The materials are mixture of 50 wt % pure Sn and 50 wt % Sn60Pb40 alloy.
Vonnegut, Journal of Colloid Science 3 (1948) 563-569