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Online since: April 2013
Authors: Linda Mosecker, Alireza Saeed-Akbari, Gerhard Hirt, Markus Bambach, Wolfgang Bleck, Alexander Göttmann
For production of aircraft components, titanium and its alloys are materials of interest due to their excellent properties such as high specific strength, toughness, corrosion resistance and fatigue behavior (Fig. 1).
In the past, ISF was usually used for processing of low-strength materials with high formability such as aluminum and mild steel grades.
Hence, materials formability must be analyzed on parts produced under real processing conditions.
De Baerdemaeker, “Improved SPIF performance through dynamic local heating,” International Journal of Machine Tools and Manufacture, vol. 48 (5), pp. 543-549, 2008
Albrecht (Hrsg.), “Ti-2003 – Science and Technology”, vol. 4, pp. 2659–2666.
In the past, ISF was usually used for processing of low-strength materials with high formability such as aluminum and mild steel grades.
Hence, materials formability must be analyzed on parts produced under real processing conditions.
De Baerdemaeker, “Improved SPIF performance through dynamic local heating,” International Journal of Machine Tools and Manufacture, vol. 48 (5), pp. 543-549, 2008
Albrecht (Hrsg.), “Ti-2003 – Science and Technology”, vol. 4, pp. 2659–2666.
Online since: May 2022
Authors: Muhammad Khurram, Sajid Iqbal, Syed Muhammad Fahad, Abdul Quddoos
After investigation, adoption of optimal conditions can produce improved or at least defects-free continuous cast steel billets production.
2 Materials and Methods
2.1 Materials
To better characterize the billet cross-section cut with specified dimensions (150 x 150 mm2).
Mahajan, "Continuous Casting, The Encyclopedia of Materials: Science and Technology," Elsevier Science Ltd., Oxford, UK, pp. 1591-1599, (2001)
Linon et al., "Influence of the chemical composition on steel casting performance," Journal of Materials Research and Technology, vol. 6, no. 1, pp. 50-56, (2017)
Weinberg, "Internal cracks in strand-cast billets," The Canadian Journal of Metallurgy and Materials Science, vol. 5, pp. 95-105, (1984)
Saxena, "Hot ductility and hot-shortness of steel and measurement techniques: A review," Journal of Metals, Materials, and Minerals, vol. 26, no. 2, pp. 1-11, (2016)
Mahajan, "Continuous Casting, The Encyclopedia of Materials: Science and Technology," Elsevier Science Ltd., Oxford, UK, pp. 1591-1599, (2001)
Linon et al., "Influence of the chemical composition on steel casting performance," Journal of Materials Research and Technology, vol. 6, no. 1, pp. 50-56, (2017)
Weinberg, "Internal cracks in strand-cast billets," The Canadian Journal of Metallurgy and Materials Science, vol. 5, pp. 95-105, (1984)
Saxena, "Hot ductility and hot-shortness of steel and measurement techniques: A review," Journal of Metals, Materials, and Minerals, vol. 26, no. 2, pp. 1-11, (2016)
Online since: September 2009
Authors: Pai Shan Pa
He found that ultrasonic
drilling can avoid the splitting and burrs that often happen with composite materials [9].
It takes a longer time to remove the material using a large gap because the electrochemical machining is less effective and the result is not as good either.
Acknowledgement The current study is supported by National Science Council, contract 96-2411-H-152-003 and 97-2410-H-152-016.
Hsu: Journal of Materials Processing Technology, Vol. 48 (1995), pp. 255-266
Pa: Journal of Materials Processing Technology, Vol. 195 (1-3) (2008), pp.44-52
It takes a longer time to remove the material using a large gap because the electrochemical machining is less effective and the result is not as good either.
Acknowledgement The current study is supported by National Science Council, contract 96-2411-H-152-003 and 97-2410-H-152-016.
Hsu: Journal of Materials Processing Technology, Vol. 48 (1995), pp. 255-266
Pa: Journal of Materials Processing Technology, Vol. 195 (1-3) (2008), pp.44-52
Online since: June 2011
Authors: Qun Feng Fu, Jian Gang Liu, Feng Jiao Du
Billet Continuous Casting Mold Oscillation System Oscillates Simulations and Swing Arm Strength Analysis
Qunfeng Fu1, a, Jiangang Liu2,b and Fengjiao Du3,c
1 Mechanical and Electronic Engineering College; Jiangxi University of Science and Technology, China
2 Mechanical and Electronic Engineering College; Jiangxi University of Science and Technology, China
3 Mechanical and Electronic Engineering College; Jiangxi University of Science and Technology, China
a Fqf9999@163.com, bliujiangang198703@126.com, cfengjiao19870426@126.com
Key words: Mold oscillation; Swinging arm; The finite element analysis; Optimization.
Fig.2 Swinging arm diagram The Finite-Element Analysis of Swing Arm From engineering sense brittle materials can be classified into two categories: Brittle broken and yield damage.
And the strain energy start off to study material strength, then, using the fourth strength theory in material mechanics book to analyze the deformation of Swinging arm.
Modern Applied science.Vol.3(January 2009),p.117-125 [5] Wang Kai, Zhao Yudong:Finite Element Strength Analysis on Cylinder.
Internal Combustion Engine.Vol.6( Dec.2008),p.1-6 [6] Xu Rui:Finite Element Strength Analysis for Motorcycle Franie.Journal of Chong Qing Institute of Technology (Natural Science Edition) .Vol.2l(November 2007), p.1-4 [7] Chen Yihou.Li jianwen:Analysis of Important Components of YC 450Traveling Block with Finite Element Method.Machine Building 8 Automation.Vol.39( Apr.2010),p.76—79
Fig.2 Swinging arm diagram The Finite-Element Analysis of Swing Arm From engineering sense brittle materials can be classified into two categories: Brittle broken and yield damage.
And the strain energy start off to study material strength, then, using the fourth strength theory in material mechanics book to analyze the deformation of Swinging arm.
Modern Applied science.Vol.3(January 2009),p.117-125 [5] Wang Kai, Zhao Yudong:Finite Element Strength Analysis on Cylinder.
Internal Combustion Engine.Vol.6( Dec.2008),p.1-6 [6] Xu Rui:Finite Element Strength Analysis for Motorcycle Franie.Journal of Chong Qing Institute of Technology (Natural Science Edition) .Vol.2l(November 2007), p.1-4 [7] Chen Yihou.Li jianwen:Analysis of Important Components of YC 450Traveling Block with Finite Element Method.Machine Building 8 Automation.Vol.39( Apr.2010),p.76—79
Online since: June 2011
Authors: Guo Qin Huang, Xi Peng Xu
Acknowledgement
This research was supported by Grant No.50825505 from the National Natural Science Foundation of China, by Grant No.2010J01296 from the Natural Science Foundation of Fujian Province/China, and by Projects from the Department of Science and Technology in Fujian Province/China (2008H2004).
Sung: Diamond and Related Materials, Vol. 8 (1999), pp.1540-1543
Sung: Materials Science Forum, Vol. 534-536, (2007), pp.1101-1104
Transactions of the ASME: Journal of Manufacturing Science and Engineering, Vol.123 (2001), pp.13-22
Key Engineering Materials, Vol.250 (2003), pp.187-193
Sung: Diamond and Related Materials, Vol. 8 (1999), pp.1540-1543
Sung: Materials Science Forum, Vol. 534-536, (2007), pp.1101-1104
Transactions of the ASME: Journal of Manufacturing Science and Engineering, Vol.123 (2001), pp.13-22
Key Engineering Materials, Vol.250 (2003), pp.187-193
Online since: July 2011
Authors: Su Yu Wang, Tao Yu, Yun Xiao Fan
The diamond particles, being the hardest material known to man and more than twice as hard as tungsten carbide which is the material of honing rings, provide a superior wear resistance surface and sharp cutting edges.
Acknowledgments This project is sponsored by the National Natural Science Foundation of China (No.50875158), Shandong Natural Science Foundation(ZR2010EM072), Shandong Natural Science Foundation for Excellent young Scientist (No.
JQ200816) and Shandong Education Department Science and Technology Plan(No.
Hipke: CIRP Annals - Manufacturing Technology 57, p.621-640 (2008) [2] T.Yu, Y.X.Qian, K.Dong and S.Y.Wang: Advanced Materials Research Vol. 135 (2010) pp 111-115 [3] Information on http:// www.hermesabrasives.com [4]Yu T., Wang S.Y., Chen X.L. and Fan Y.X., Key Engineering Materials Vols. 407-408 (2009) pp 28-32 [5]G.
Neubert: Surface & Coatings Technology 202 (2008) 5151–5157 [7]Liao Qiang, Du Nan, Zhao Qing, Zhou Hai-Fei: Journal of Materials Engineering, n SUPPL., p 334-337, July 2006
Acknowledgments This project is sponsored by the National Natural Science Foundation of China (No.50875158), Shandong Natural Science Foundation(ZR2010EM072), Shandong Natural Science Foundation for Excellent young Scientist (No.
JQ200816) and Shandong Education Department Science and Technology Plan(No.
Hipke: CIRP Annals - Manufacturing Technology 57, p.621-640 (2008) [2] T.Yu, Y.X.Qian, K.Dong and S.Y.Wang: Advanced Materials Research Vol. 135 (2010) pp 111-115 [3] Information on http:// www.hermesabrasives.com [4]Yu T., Wang S.Y., Chen X.L. and Fan Y.X., Key Engineering Materials Vols. 407-408 (2009) pp 28-32 [5]G.
Neubert: Surface & Coatings Technology 202 (2008) 5151–5157 [7]Liao Qiang, Du Nan, Zhao Qing, Zhou Hai-Fei: Journal of Materials Engineering, n SUPPL., p 334-337, July 2006
Online since: December 2013
Authors: Dong Keun Lee, Jae Mean Koo, Sung Hyuk Kim, Chang Sung Seok
Properties of materials[8,9,10]
Substrate
BC
TC
Density
7860
7700
6037
Specific heat(J/Kg℃)
456
628
500
Young's
modulus(GPa)
225
225
53
Poisson's ratio
0.27
0.27
0.25
Results of analysis
Effect of vertical crack length
Fig.3.
Jordan, Maurice Gell, “Fallure mechanisms of dense vertically-cracked thermal barrier coatings”, Materials Science and Engineering A, Vol 384, pp. 151-161, (2004) [3] A.
Petrus, "Modeling oxidation induced stresses in thermal barrier coatings", Materials Science and Engineering A, Vol. 245, 182-190, (1998)
Popel, “Simulation of Moter-Driven Cochlear Outer Hair Cell Electromotility”, Biophysical Journal, Vol. 81, 11-24, (20010
A Cairo, " Thermal conductivity investigation of zirconia co-doped with yttria and niobia EB-PVD TBCs", Materials Science and Engineering A, Vol. 443, 60-65, (2007) [9] Arnold, Steven M.
Jordan, Maurice Gell, “Fallure mechanisms of dense vertically-cracked thermal barrier coatings”, Materials Science and Engineering A, Vol 384, pp. 151-161, (2004) [3] A.
Petrus, "Modeling oxidation induced stresses in thermal barrier coatings", Materials Science and Engineering A, Vol. 245, 182-190, (1998)
Popel, “Simulation of Moter-Driven Cochlear Outer Hair Cell Electromotility”, Biophysical Journal, Vol. 81, 11-24, (20010
A Cairo, " Thermal conductivity investigation of zirconia co-doped with yttria and niobia EB-PVD TBCs", Materials Science and Engineering A, Vol. 443, 60-65, (2007) [9] Arnold, Steven M.
Online since: July 2011
Authors: Yan Peng Wu, Xiao Qi Peng, Jian Zhi Zhang
Balance Calculation
Calculation of system material balance.
Table 4 lists results of system material balance calculation.
Table 4: Results of system material balance calculation.
Acknowledgment This work was supported by the National Natural Science Foundation of China under Grant No.60634020 and Hunan Provincial Natural Science Foundation of China under Grant No. 2010FJ3056.
Journal of Thermal Science and Technology, 2009, 8(1): 64-68
Table 4 lists results of system material balance calculation.
Table 4: Results of system material balance calculation.
Acknowledgment This work was supported by the National Natural Science Foundation of China under Grant No.60634020 and Hunan Provincial Natural Science Foundation of China under Grant No. 2010FJ3056.
Journal of Thermal Science and Technology, 2009, 8(1): 64-68
Online since: December 2012
Authors: Deng Feng Wang, Zhi Yuan Wei, Zhi Ping Qi
Materials and method
Study area.
Stringent quality control was assured by the use of duplicates and certified standard reference materials.
The reason was that there is a close relationship between content of total P and the soil parent materials.
Such a distribution characteristic is properly related to distribution of parent materials.
Tang: Chinese Journal of Soil Science.
Stringent quality control was assured by the use of duplicates and certified standard reference materials.
The reason was that there is a close relationship between content of total P and the soil parent materials.
Such a distribution characteristic is properly related to distribution of parent materials.
Tang: Chinese Journal of Soil Science.
Online since: April 2008
Authors: Zhi Yong He, Hong Yan Wu, Gao Hui Zhang, Ping Ze Zhang, Xing Fu Rong, Zhong Xu
Acknowledgement
This work is supported by the Nature science foundation of China (50271045) and the
Aeronautics Science Foundation ( 2007ZE52057).
The Chinese Journal of Nonferrous Metals, 15(2005),111-115
[4] Zhang Pingze, Xu Zhong, Zhang Gaohui , He Zhiyong, Study of surface burn-resistant Ti-Cu titanium alloy, Rare Metal Materials And Engineering, 34(2005),162-165
[9] Li Zhonghou, Study on the temperature distribution of double glow plasma surface alloying furnace for hacksaw blade, Materials science and technology, 6(1998), 83-86
of vacuum science and technology, 18(1998),15-19.
The Chinese Journal of Nonferrous Metals, 15(2005),111-115
[4] Zhang Pingze, Xu Zhong, Zhang Gaohui , He Zhiyong, Study of surface burn-resistant Ti-Cu titanium alloy, Rare Metal Materials And Engineering, 34(2005),162-165
[9] Li Zhonghou, Study on the temperature distribution of double glow plasma surface alloying furnace for hacksaw blade, Materials science and technology, 6(1998), 83-86
of vacuum science and technology, 18(1998),15-19.