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Online since: July 2013
Authors: Mian Ping Zheng, Zhen Zhang, Na Na Tan, Zhi Jie Zheng, Jian Jiao
Material Source Analysis of the Potash Deposit in Mengyejing, Yunnan
Jian Jiao1,2,a, Mianping Zheng*2,b, Zhen Zhang2, Nana Tan3, Zhijie Zheng4
1College of Geoscience and Surveying Engineering, China University of Mining and Technology, Beijing, China 100083
2Chinese Academy of Geological Sciences Institute of Mineral Resources, Beijing, China 100037
3College of Engineering and Technology, China University of Geosciences, Beijing, China 100083
4Nanjing University of Earth Science and Engineering, Nanjing, China 210093
ajtjj1999@163.com, bsjerr@163.com
Key words: Mengyejing; Potash; Material source
Abstract: The Mengyejing potash deposit is the only solid chloride type potash deposit in our country.
There has been divergence about the source material of this deposit.
Science, Vol. 189 (1975), p 419-426
Journal of Chengdu University of technology, Vol. 29, No. 5(2002)
Journal of Saltlake Research, Vol. 18, No. 4(2010)
There has been divergence about the source material of this deposit.
Science, Vol. 189 (1975), p 419-426
Journal of Chengdu University of technology, Vol. 29, No. 5(2002)
Journal of Saltlake Research, Vol. 18, No. 4(2010)
Online since: September 2013
Authors: Bin Li, Yue Xian Zhang
Modified the materials appropriately can effectively improve the electrical properties of the material.
Nano-modified materials have the physical and chemical properties which traditional materials do not have.
So add the nano-materials in composite materials can effectively improve the electrical properties[9-10].
Effect of Nano modifying materials on the conductive properties.
References [1] Geng Xinling, Liu Jun, Ren Yuzhu, et al.: Journal of Aeronautical Materials, No.3, Vol. 26 (2006), p. 283.
Nano-modified materials have the physical and chemical properties which traditional materials do not have.
So add the nano-materials in composite materials can effectively improve the electrical properties[9-10].
Effect of Nano modifying materials on the conductive properties.
References [1] Geng Xinling, Liu Jun, Ren Yuzhu, et al.: Journal of Aeronautical Materials, No.3, Vol. 26 (2006), p. 283.
Online since: April 2011
Authors: Ming Luo, Ding Hua Zhang, Bao Hai Wu, Ming Tang
Therefore, the machining of thin-walled workpiece is often time-consuming, and increase in efficiency of machining process is constrained by the highly demands regarding quality and functionality as well as use of difficult to cut materials.
Acknowledgements This project has been supported by the National Natural Science Foundation of China (Project number: 51005183) and the Science and Technology Innovation Fund of Northwestern Polytechnical University.
Aramendi: International Journal of Machining and Machinability of Materials Vol. 4 (2008), p. 377 [4] F.J.
Seguy: Journal of Advanced Manufacturing Technology (2010) [9] X.M.
Zhang: International Journal of Machine Tools and Manufacture Vol. 50 (2010), p. 502
Acknowledgements This project has been supported by the National Natural Science Foundation of China (Project number: 51005183) and the Science and Technology Innovation Fund of Northwestern Polytechnical University.
Aramendi: International Journal of Machining and Machinability of Materials Vol. 4 (2008), p. 377 [4] F.J.
Seguy: Journal of Advanced Manufacturing Technology (2010) [9] X.M.
Zhang: International Journal of Machine Tools and Manufacture Vol. 50 (2010), p. 502
Online since: May 2012
Authors: Guo Qiang Li, Fei Fei Sun, Su Wen Chen, Yan Bo Wang
It is important to note that the ductility of structures, in addition to the ductility of materials and members, also depends on the selection of structural systems.
Journal of Constructional Steel Research. 1992;23:73-96
Research progress on the mechanical property of high strength structural steels. 1st International Conference on Civil Engineering, Architecture and Building Materials, CEABM 2011, June 18, 2011 - June 20, 2011.
Journal of Constructional Steel Research. 1990;17:33-94 [10] Kato B.
Journal of Structural Engineering. 2000;126:1268-1278 [12] Fukumoto Y.
Journal of Constructional Steel Research. 1992;23:73-96
Research progress on the mechanical property of high strength structural steels. 1st International Conference on Civil Engineering, Architecture and Building Materials, CEABM 2011, June 18, 2011 - June 20, 2011.
Journal of Constructional Steel Research. 1990;17:33-94 [10] Kato B.
Journal of Structural Engineering. 2000;126:1268-1278 [12] Fukumoto Y.
Online since: October 2014
Authors: Yong Lian Sun, Bo Zhu, Shan Shan Zhou, Bao Lei Chen, Jian Gao, Yong Wei Li
It can be used as cross-linking agent, adhesive, paint, selective adsorption and separation materials biological materials and so on.
Above all else, we can prepare some other functional polymer materials such as polymer brush, organic/inorganic hybrid materials and so on.
We can synthesize all kinds of new types of high polymer compound and materials.
Journal of Polymer Science Part A: Polymer Chemistry, Vol.38 (2000), p.337
Journal of Applied Polymer Science, Vol.78 (2000) No.11, p.1992
Above all else, we can prepare some other functional polymer materials such as polymer brush, organic/inorganic hybrid materials and so on.
We can synthesize all kinds of new types of high polymer compound and materials.
Journal of Polymer Science Part A: Polymer Chemistry, Vol.38 (2000), p.337
Journal of Applied Polymer Science, Vol.78 (2000) No.11, p.1992
Online since: March 2010
Authors: Richard Curtis, Fadi K. Abu-Farha, Mohammed A. Nazzal
The Effects of Specimen Geometry on the Accuracy of Tensile Testing
of Metallic Superplastic Materials
Fadi Abu-Farha1, a, Mohammed Nazzal2,b and Richard Curtis3,c
1
Department of Mechanical Engineering, Penn State Erie, Erie, PA 16510, USA
2
School of Technological Sciences, German Jordanian University, Amman, Jordan
3
King's College Dental Institute, Guy's Tower, King's College London, London, UK
a
fka10@psu.edu, bmohammad.nazzal@gju.edu.jo, crichard.curtis@kcl.ac.uk
Keywords: Superplastic Materials, Tensile Testing, Specimen Geometry, Material Flow.
It is such disparities that call for a unified standard specimen for testing superplastic materials.
Sotoudeh: Materials Science and Technology, Vol. 24 (2008), p. 1265 [5] K.
Hamilton: Materials Science Forum, Vols. 170-172 (1994), p. 627 [6] F.
Khraisheh: Journal of Advanced Engineering Materials, Vol. 9 (2007), p. 777 [8] Y.
It is such disparities that call for a unified standard specimen for testing superplastic materials.
Sotoudeh: Materials Science and Technology, Vol. 24 (2008), p. 1265 [5] K.
Hamilton: Materials Science Forum, Vols. 170-172 (1994), p. 627 [6] F.
Khraisheh: Journal of Advanced Engineering Materials, Vol. 9 (2007), p. 777 [8] Y.
Online since: January 2018
Authors: Dong Yan Shi, Feng Chun Jiang, Diaa El Din Fouad, Mohamed Osman, Wasim M.K. Helal
Table 1 Mechanical properties of the materials used in the current analysis.
Dental Materials : Official Publication of the Academy of Dental Materials. 21(8): 709-715, 2005
Materials Letters. 29:215-220, 1996 [28] G.H.
Dental Materials Journal. 31(2): 171-179, 2012 [30] Hong, S.Y, Lisa, A.L.
Journal of Prosthetic Dentistry. 85: 558-567,2001
Dental Materials : Official Publication of the Academy of Dental Materials. 21(8): 709-715, 2005
Materials Letters. 29:215-220, 1996 [28] G.H.
Dental Materials Journal. 31(2): 171-179, 2012 [30] Hong, S.Y, Lisa, A.L.
Journal of Prosthetic Dentistry. 85: 558-567,2001
Online since: August 2012
Authors: Gui Lan Xie, Ye Hua Liu, Jin Guo, Shu Guang Gong
The efficiency of materials can be calculated by Eq.(1).
The light-weight design for aluminum honeycomb core materials is done to obtain higher efficiency of materials by suitable cell parameters chosen.
Acknowledgements The support by National Natural Science Foundation of China [50875223] and Provincial Natural Science Foundation of Hunan [09JJ9005,11JJ9017] is gratefully acknowledged.
Journal of Aerospace Engineering, ASCE Vol.18 (2005), p.42-50 [6] S.
Materials Science and Engineering Vol.11 (2011), p. 41-46.
The light-weight design for aluminum honeycomb core materials is done to obtain higher efficiency of materials by suitable cell parameters chosen.
Acknowledgements The support by National Natural Science Foundation of China [50875223] and Provincial Natural Science Foundation of Hunan [09JJ9005,11JJ9017] is gratefully acknowledged.
Journal of Aerospace Engineering, ASCE Vol.18 (2005), p.42-50 [6] S.
Materials Science and Engineering Vol.11 (2011), p. 41-46.
Online since: April 2009
Authors: V. Anil Kumar, M.K. Karthikeyan, P. Ramkumar, P.P. Sinha, Rohit Kumar Gupta
Gastón-Ochoa: Journal of Materials Processing
Technology, Vol. 153-154 (2004) , p.846
Gastón-Ochoa: Journal of Materials Processing Technology, Vol.143-144 (2003) , p.105
Shin: Materials Science & Engineering A, Vol. 293 (2000), p.165
Segal: Materials Science & Engineering A, Vol. 338 (2002), p.331
Langdon: Materials Science & Engineering A, Vol. 342 (2003), p. 294
Gastón-Ochoa: Journal of Materials Processing Technology, Vol.143-144 (2003) , p.105
Shin: Materials Science & Engineering A, Vol. 293 (2000), p.165
Segal: Materials Science & Engineering A, Vol. 338 (2002), p.331
Langdon: Materials Science & Engineering A, Vol. 342 (2003), p. 294
Online since: August 2016
Authors: Tadeusz Hryniewicz, Krzysztof Rokosz, Winfried Malorny
Malorny, SEM and EDS analysis of NITINOL surfaces treated by Plasma Electrolytic Oxidation, Advances in Materials Science, 15(3;45) (2015) 41-47
Rokosz, Polarization characteristics of magnetoelectropolishing stainless steels, Materials Chemistry and Physics, 122(1) (2010) 169–174
Rokosz, Corrosion resistance of magnetoelectropolished AISI 316L SS biomaterial, Anti-Corrosion Methods and Materials, 61(2) (2014) 57–64
Rokicki, Effect of magnetoelectropolishing on nanohardness and Young’s modulus of titanium biomaterial, Materials Letters, 83 (2012) 69–72
Ooi, Antibacterial efficacy andcytotoxicity studies of copper (II) and titanium (IV) substituted hydroxyapatite nanoparticles, Materials Science and Engineering C, 30(8) (2010) 1137–1144
Rokosz, Polarization characteristics of magnetoelectropolishing stainless steels, Materials Chemistry and Physics, 122(1) (2010) 169–174
Rokosz, Corrosion resistance of magnetoelectropolished AISI 316L SS biomaterial, Anti-Corrosion Methods and Materials, 61(2) (2014) 57–64
Rokicki, Effect of magnetoelectropolishing on nanohardness and Young’s modulus of titanium biomaterial, Materials Letters, 83 (2012) 69–72
Ooi, Antibacterial efficacy andcytotoxicity studies of copper (II) and titanium (IV) substituted hydroxyapatite nanoparticles, Materials Science and Engineering C, 30(8) (2010) 1137–1144