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Online since: August 2012
Authors: Yuan Feng Liu, Jian Ping Xuan, Tie Lin Shi
So it is important to study the behavior of the crack and mechanical and electric of piezoelectric materials.
There are a lot of research on the behavior of the crack and mechanical and electric of piezoelectric materials with crack.
Shindo: Theoretical and Applied Fracture Mechanics.Vol. 29 (1998), p. 169-180 [7] Soon Man Kwon and Kang Yong Lee: Mechanics of Materials.
Vol. 29 (2002), p. 217-224 [9] Keqiang Hu and Zheng Zhong: International Journal of Mechanics and Materials in Design.
Vol. 2(2005), p. 61-79 [10] Jeong Woo Shin, Tae Uk Kim, Sung Joon Kim and In Hee Hwang: Journal of Mechanical Science and Technology.
There are a lot of research on the behavior of the crack and mechanical and electric of piezoelectric materials with crack.
Shindo: Theoretical and Applied Fracture Mechanics.Vol. 29 (1998), p. 169-180 [7] Soon Man Kwon and Kang Yong Lee: Mechanics of Materials.
Vol. 29 (2002), p. 217-224 [9] Keqiang Hu and Zheng Zhong: International Journal of Mechanics and Materials in Design.
Vol. 2(2005), p. 61-79 [10] Jeong Woo Shin, Tae Uk Kim, Sung Joon Kim and In Hee Hwang: Journal of Mechanical Science and Technology.
Online since: September 2011
Authors: Wei Feng, Hui Min Li
The sound insulation wall is built by the stone material demolition of the building, making full use of the abandoned building materials to save materials.
New wall materials are adopted, using slag and fly ash industrial waste, to protect land resources and reduce the pollution to the environment.
[3] Chongjie Wang, Wang yan: Journal of Shan Dong Jian Zhu University.
[5] Jiang yi: Architectural Journal (2007).
[8] Chenglin Guo, Jinyan Zhao: Architectural Journal, (2010).p.56.
New wall materials are adopted, using slag and fly ash industrial waste, to protect land resources and reduce the pollution to the environment.
[3] Chongjie Wang, Wang yan: Journal of Shan Dong Jian Zhu University.
[5] Jiang yi: Architectural Journal (2007).
[8] Chenglin Guo, Jinyan Zhao: Architectural Journal, (2010).p.56.
Online since: January 2025
Authors: Atik Widiyanti, Muchammad Tamyiz, Mohd Hanif Mohd Pisal
Journal of hazardous materials, 2018. 344: p. 758-769
Journal of Hazardous Materials, 2022. 423: p. 127207
Journal of Hazardous Materials, 2022. 421: p. 126703
Materials Chemistry and Physics, 2022: p. 125759
Materials Research Bulletin, 2022: p. 111789.
Journal of Hazardous Materials, 2022. 423: p. 127207
Journal of Hazardous Materials, 2022. 421: p. 126703
Materials Chemistry and Physics, 2022: p. 125759
Materials Research Bulletin, 2022: p. 111789.
Online since: July 2014
Authors: Hao Wang, Shao Hong Wang, Yu Tong Guan, Mei Han Wang, Zhao Xia Hou, Xiao Dan Hu, Hai Lin Fan, Ning Zhang
Materials and methods
1.1 Materials
The synthetic HAP was prepared using the standard procedure published in rare metal materials and engineering [8].
Journal of hazardous materials, 2008, 152(3): 1285-1292
Journal of Environmental Sciences, 2008, 20(10): 1168-1176
Journal of colloid and interface science, 2014, 416: 11-18
International Journal of Environmental Science & Technology, 2010, 7(2): 395-404
Journal of hazardous materials, 2008, 152(3): 1285-1292
Journal of Environmental Sciences, 2008, 20(10): 1168-1176
Journal of colloid and interface science, 2014, 416: 11-18
International Journal of Environmental Science & Technology, 2010, 7(2): 395-404
Online since: August 2014
Authors: Jin Yu Zhou, Fu Xian Zhu
Microscopic Stress Analysis of Body-centered Cubic Crystal under High Cycle Fatigue
Fuxian ZHU Jinyu ZHOU
School of Materials and Engineering Jiangsu University of Technology Changzhou China
glzhfx@sina.com.cn
Keywords Orthotropic material; Body-centered crystal; Microscopic stress analysis
Abstract Based on the constitutive equation of the orthotropic material, the relation between elasticity parameter and crystal orientation was analyzed.
Acknowledgements This work was supported by the National Natural Science Foundation of China (No.51275221) and the High Education Natural Science Foundation of Jiangsu Province of China (No.13KJD460004) References [1].
Tanaka K, Mura T: Journal Applied Mechanics-Transactions of the ASME, vol.48(1981), p. 97–103
Mc Clintock FA and Argon AS, in: Mechanical Behavior of Materials, edited by New Jersey: Addison-Wesley Publishing Company(1966)
Joachim Hünecke, Dieter Schöne and Dietmar Klingbeil: International Journal of Fatigue, vol.28 (2006), p.993-100
Acknowledgements This work was supported by the National Natural Science Foundation of China (No.51275221) and the High Education Natural Science Foundation of Jiangsu Province of China (No.13KJD460004) References [1].
Tanaka K, Mura T: Journal Applied Mechanics-Transactions of the ASME, vol.48(1981), p. 97–103
Mc Clintock FA and Argon AS, in: Mechanical Behavior of Materials, edited by New Jersey: Addison-Wesley Publishing Company(1966)
Joachim Hünecke, Dieter Schöne and Dietmar Klingbeil: International Journal of Fatigue, vol.28 (2006), p.993-100
Online since: October 2011
Authors: Ai Jun Han, Li Ya Zhang, Hou He Chen, Dong Sheng Hu, Ming Quan Ye
Chinese journal of energetic materials.
Journal of inorganic materials.
Journal of Magnetism and Magnetic Materials.
Functional Materials.
[21] Lianmeng Zhang, Xuehui Huang, Xiaolan Song: Fundamentals of Materials Science(Wuhan University of Science and Technology Press, china 2004)
Journal of inorganic materials.
Journal of Magnetism and Magnetic Materials.
Functional Materials.
[21] Lianmeng Zhang, Xuehui Huang, Xiaolan Song: Fundamentals of Materials Science(Wuhan University of Science and Technology Press, china 2004)
Online since: October 2014
Authors: Alexander Thömmes, S.I Bysyina, T.S. Sameyshcheva
Morsi, Review reaction synthesis processing of Ni-Al intermetallic materials.
Liu, Reaction mechanism of combustion synthesis of NiAl / Materials Science and Engineering, A329-331, (2002), 57–68
Perry, Crack initiation in laminated metal-intermetallic composites, Journal of Material Science, 31 (1996) 901 – 1906
Hong, Reaction synthesis and microstructures of NiAl/Ni micro-laminated composites, Materials Science and Engineering A 396 (2005) 376–384 [7] P.Zhu , J.C.M.
Liu, Combustion reaction in multilayered nickel and aluminum foils, Materials Science and Engineering A239–240 (1997) 532–539
Liu, Reaction mechanism of combustion synthesis of NiAl / Materials Science and Engineering, A329-331, (2002), 57–68
Perry, Crack initiation in laminated metal-intermetallic composites, Journal of Material Science, 31 (1996) 901 – 1906
Hong, Reaction synthesis and microstructures of NiAl/Ni micro-laminated composites, Materials Science and Engineering A 396 (2005) 376–384 [7] P.Zhu , J.C.M.
Liu, Combustion reaction in multilayered nickel and aluminum foils, Materials Science and Engineering A239–240 (1997) 532–539
Online since: November 2025
Authors: Ahmet Saygın Öğülmüş, Yusuf Şahin
Endrino, Modern coating in high performance cutting applications, International Journal of Refractory Metals and Materials 24 (2006) 399-404
Ser.: Materials Science&Engineering 491(2019) 012032:1-6
Series: Materials Science and Engineering 377 (2018) 012078
Navya Geethika, Optimization of cutting parameters in CNC turning of stainless steel 304 with TiAlN nano coated carbide cutting tool, IOP Conference Series: Materials Science and Engineering 310 (2018) 012109
Fawad, Influence of cutting conditions on chip formation when turning ASSAB DF3 hardened tool steel, International Journal of Materials, Mechanics and Manufacturing 1 (2013) 76-79
Ser.: Materials Science&Engineering 491(2019) 012032:1-6
Series: Materials Science and Engineering 377 (2018) 012078
Navya Geethika, Optimization of cutting parameters in CNC turning of stainless steel 304 with TiAlN nano coated carbide cutting tool, IOP Conference Series: Materials Science and Engineering 310 (2018) 012109
Fawad, Influence of cutting conditions on chip formation when turning ASSAB DF3 hardened tool steel, International Journal of Materials, Mechanics and Manufacturing 1 (2013) 76-79
Online since: February 2014
Authors: He Li Ma, Jia Meng Guo, Lei Yi, Ke Wu Peng, Ren Chen
Experimental
Experiment Materials.
The CeO2 raw materials are offered by Baotou Steel Rare-Earth Hi-Tech Co.
The grain size of CeO2 is 10μm, and the purity of the CeO2 raw materials is 99.9wt%.
Materials Review,1994,(4):69~72 [2] Thevenot F.
Journal of Material Science Letter, 2002, 21: 703~706
The CeO2 raw materials are offered by Baotou Steel Rare-Earth Hi-Tech Co.
The grain size of CeO2 is 10μm, and the purity of the CeO2 raw materials is 99.9wt%.
Materials Review,1994,(4):69~72 [2] Thevenot F.
Journal of Material Science Letter, 2002, 21: 703~706
Online since: August 2013
Authors: Zhi Qiang Yang, Yong Liu, Bao Hong Tian, Yi Zhang
Hot compression performance of TiC10/Cu-Al2O3 composite prepared by vacuum hot-pressed sintering
Zhiqiang Yang1,a, Yong Liu1,2,b, Baohong Tian 1,2, Yi Zhang1,2
1School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, henan China
2 Henan Key Laboratory of Advanced Non-Ferrous Materials, Luoyang 471023, China
ayzq871024@163.com, bliuyong@haust.edu.cn
Keywords: vacuum-pressed sintering; TiC10/Cu-Al2O3 composite; microstructure; flow stress
Abstract.
Fu, Journal of Materials Processing Technology, Vol. 113 (2001), p. 63 [2] Tiejun Wang , Sigui Qin, Wuping.Zhou, et al.
Ordnance Material Science and Engineering Vol. 29(2006), p. 37 (In Chinese) [3] S.
Materials Science and Engineering A, Vol. 502 (2009), p. 91 [4] Qingguo Xiao, Feng Duan, Qunhu Xue, et al.
Materials Science and Engineerin A,Vol. 502 (2009), p. 91
Fu, Journal of Materials Processing Technology, Vol. 113 (2001), p. 63 [2] Tiejun Wang , Sigui Qin, Wuping.Zhou, et al.
Ordnance Material Science and Engineering Vol. 29(2006), p. 37 (In Chinese) [3] S.
Materials Science and Engineering A, Vol. 502 (2009), p. 91 [4] Qingguo Xiao, Feng Duan, Qunhu Xue, et al.
Materials Science and Engineerin A,Vol. 502 (2009), p. 91