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Online since: June 2014
Authors: Mohd Hanafiah Mat Jamlus, Zainal Ambri Abdul Karim
Electromagnetic waves heating utilises electromagnetic radiation to induce electric field in a conductive material that causes the material to be heated.
Electromagnetic waves energy is converted into heat due to the interactions of the delocalized π-electrons in carbon materials with the electromagnetic waves [9].
The work by Abdul Karim et al. [13] to determine the temperature when micro plasma occurred when using electromagnetic waves found that materials such as aluminium and brass achieved high spark temperatures at low microwaves levels as compared to mild steel and stainless steel.
Matti Maricq, Ning Xu: Aerosol Science Vol. 35 (2004) p. 1251-1274. [2] K.
Mat Jamlus: Journal of Applied Sciences Vol. 12 (2012) p. 2338-2345. [10] M.
Electromagnetic waves energy is converted into heat due to the interactions of the delocalized π-electrons in carbon materials with the electromagnetic waves [9].
The work by Abdul Karim et al. [13] to determine the temperature when micro plasma occurred when using electromagnetic waves found that materials such as aluminium and brass achieved high spark temperatures at low microwaves levels as compared to mild steel and stainless steel.
Matti Maricq, Ning Xu: Aerosol Science Vol. 35 (2004) p. 1251-1274. [2] K.
Mat Jamlus: Journal of Applied Sciences Vol. 12 (2012) p. 2338-2345. [10] M.
Online since: August 2023
Authors: Ahmed Samir Naje, Tholfekar Habeeb Hussain, Ayad Saddam Alwan, Ameer J. Al-Shammari, Tameem Mohammed Hashim
These materials are also renewable in nature [2].
Materials and Methods 2.1 Materials properties The used materials were: micro silica, sand, water, superplasticizer and Iraqi palmdate fibers.
,Sustainable Processing of Cellulose Fiber Cement Composites, ACI Materials Journal, 110 (2013 ) 3
Wood: Effect of Particles Treatment, International Journal of Composite Materials, 4 2 (2014) 146-149
Tighe, State-of-the-art report on use of nano-materials in concrete, Int.
Materials and Methods 2.1 Materials properties The used materials were: micro silica, sand, water, superplasticizer and Iraqi palmdate fibers.
,Sustainable Processing of Cellulose Fiber Cement Composites, ACI Materials Journal, 110 (2013 ) 3
Wood: Effect of Particles Treatment, International Journal of Composite Materials, 4 2 (2014) 146-149
Tighe, State-of-the-art report on use of nano-materials in concrete, Int.
Online since: October 2013
Authors: Su Yang, Shun Bo Zhao, Mei Jun Lu, Xue Zhen Feng
Song: Applied Mechanics and Materials Vols. 99-100 (2011), p676-679
Ma: Advanced Materials Research Vols. 123-125 (2010), p843-846
Yang: Advanced Materials Research Vols. 152-153 (2011), p395-398
[10] Agari.Y, Ueda A, Nagai S.: Journal of Applied Polymer Science, No.42 (1992), p1665-1669
[11] Chen Z., Qian J. and Ye Y.: Journal of China University of Science and Technology, No. 4 (1992), p.461-423
Ma: Advanced Materials Research Vols. 123-125 (2010), p843-846
Yang: Advanced Materials Research Vols. 152-153 (2011), p395-398
[10] Agari.Y, Ueda A, Nagai S.: Journal of Applied Polymer Science, No.42 (1992), p1665-1669
[11] Chen Z., Qian J. and Ye Y.: Journal of China University of Science and Technology, No. 4 (1992), p.461-423
Online since: August 2013
Authors: Ling Yuh Sheu, Ying Lin Lee, Shaw Bing Wen, Yun Hwei Shen, Jui Lin Chang
When the bed load moves, the sorting phenomenon occurs; thus, the bed load is covered by coarse materials.
In the design and planning process, the questions mostly concerned the use of man-made structures to create a specific type of habitat, construction difficulty, safety of the structures, and selection of construction materials.
Since the Kobe Earthquake in Japan, ordinary bridge construction materials have changed to use lightweight concrete.
E., in: Applied Clay Mineralogy, McGraw Hill (1962) [9] Hsu, H.L., in: Studies on Fired Construction Materials out of Silts from Shimen Reservoir by adding Charcoal and Ashes, Master’s thesis, Department of Resource Engineering, National Cheng Gung University (1998) [10] Huang, C.H., Reservoirs in Taiwan, Walkers Cultural Ltd.
National Science Council: Engineering Properties and Practice in Overconsolidated Clays, Transportation Research Board (1995) [15] Wen, S.B., Huang C.Y., in: Studies on Firing Construction Materials out of the Mixture of Charcoals and Ashes with Reservoir Silts, 1998 Report on Cooperative Research Scheme of Power Science and Technology in the Industry and Academy (1999) [16] Wen, S.B., Lei, T.T., Huang, C.Y., in: Investigation into Geographical Background and Feature of the Liquified Zone of Earthquake Soil, Collections of Papers on Seminar on Application of Land Engineering in the Assessment on Land Liquefactions (2001) [17] Wen, S.B, Hsih, H.L, Lee, Y.C and Ye, J.Z., in: Preparation of Construction Materials from the Mixture of Coal Fly Ash and Reservoir Sludge, Proceedings of The Fifth International Symposium on East Asian Resources Recycling Technology, Tsukuba, Japan, 240-243. (1999) [18] Wu, J.M., in: Silts and Sands Movement Studies, Association of China Civil Engineering and
In the design and planning process, the questions mostly concerned the use of man-made structures to create a specific type of habitat, construction difficulty, safety of the structures, and selection of construction materials.
Since the Kobe Earthquake in Japan, ordinary bridge construction materials have changed to use lightweight concrete.
E., in: Applied Clay Mineralogy, McGraw Hill (1962) [9] Hsu, H.L., in: Studies on Fired Construction Materials out of Silts from Shimen Reservoir by adding Charcoal and Ashes, Master’s thesis, Department of Resource Engineering, National Cheng Gung University (1998) [10] Huang, C.H., Reservoirs in Taiwan, Walkers Cultural Ltd.
National Science Council: Engineering Properties and Practice in Overconsolidated Clays, Transportation Research Board (1995) [15] Wen, S.B., Huang C.Y., in: Studies on Firing Construction Materials out of the Mixture of Charcoals and Ashes with Reservoir Silts, 1998 Report on Cooperative Research Scheme of Power Science and Technology in the Industry and Academy (1999) [16] Wen, S.B., Lei, T.T., Huang, C.Y., in: Investigation into Geographical Background and Feature of the Liquified Zone of Earthquake Soil, Collections of Papers on Seminar on Application of Land Engineering in the Assessment on Land Liquefactions (2001) [17] Wen, S.B, Hsih, H.L, Lee, Y.C and Ye, J.Z., in: Preparation of Construction Materials from the Mixture of Coal Fly Ash and Reservoir Sludge, Proceedings of The Fifth International Symposium on East Asian Resources Recycling Technology, Tsukuba, Japan, 240-243. (1999) [18] Wu, J.M., in: Silts and Sands Movement Studies, Association of China Civil Engineering and
Online since: March 2021
Authors: Khansaa Al Essa, Alexandra Navrotsky, A V Radha
Therefore, silver oxide nanocrystals have been intensively pursued for promising applications as a catalyst [1,2], sensor [3–6], photovoltaic materials [7–9], its important components in optical memories [10], all-optical switching devices [11], plasmon photonic devices [12], or as active cathode materials in silver oxide/zinc alkaline batteries [13,14], and fuel cells [15].
Many of these materials have been prepared using doping techniques [18].
They are also play very important roles in phenomena related to production and properties of materials, such as powder consolidation, grain growth, diffusion, melt filtration and deformation.
[18] Hu Z, Chan W, and Shan Szeto Y 2008 Journal of Applied Polymer Science 108 52–56
[29] Costa G, Ushakov S, Castro R, Navrotsky A and Muccillo R 2010 Chemistry of Materials 22 2937–2945
Many of these materials have been prepared using doping techniques [18].
They are also play very important roles in phenomena related to production and properties of materials, such as powder consolidation, grain growth, diffusion, melt filtration and deformation.
[18] Hu Z, Chan W, and Shan Szeto Y 2008 Journal of Applied Polymer Science 108 52–56
[29] Costa G, Ushakov S, Castro R, Navrotsky A and Muccillo R 2010 Chemistry of Materials 22 2937–2945
Online since: May 2013
Authors: Wei Xu, Zhao Ming Liu
Manufacturers are suggested to make use of reproducible or renewable raw materials and low energy value materials as much as possible.
Recycle of raw materials of waste products.
At the primary level of recycle, materials are recycled in line with its original use; at the second level of recycle, the use level of materials is lowered after recycle; at the third level of recycle, materials are reused after processing, for example, plastic resolved to be other raw materials.
The result is the maximal use of materials and energy.
Beijing:Science Press,2005.1(in Chinese)
Recycle of raw materials of waste products.
At the primary level of recycle, materials are recycled in line with its original use; at the second level of recycle, the use level of materials is lowered after recycle; at the third level of recycle, materials are reused after processing, for example, plastic resolved to be other raw materials.
The result is the maximal use of materials and energy.
Beijing:Science Press,2005.1(in Chinese)
Online since: June 2012
Authors: Jin Yong Xu, Yan Tang, Peng Gao, Bo Gao, Wei Heng Mo, Yuan Ming Li, Feng Tang, Cheng Gao
Introduction
The double glow plasma surface metallurgy technology [1] is an advanced method for surface alloying with self-dependent intellectual property by Chinese scholars, which has great advantages in diffusion speed, bonding strength, energy consumption, materials saving and so on [2].
[4] Y.Gao, J.Y.Xu, Q.Gao, J.P.An and Z.Xu: Engineering Science Vol. 10 (2008), P. 27.
Xu: Plasma Surface Metallurgy (Science Publishing, China 2008).
[8] Z.H.Li, X.P.Liu and Z.Xu: Journal of Applied Sciences Vol. 18 (2000), P. 185.
[9] Y.Zheng and Y.Gao: Materials Review Vol. 22 (2008), P. 139.
[4] Y.Gao, J.Y.Xu, Q.Gao, J.P.An and Z.Xu: Engineering Science Vol. 10 (2008), P. 27.
Xu: Plasma Surface Metallurgy (Science Publishing, China 2008).
[8] Z.H.Li, X.P.Liu and Z.Xu: Journal of Applied Sciences Vol. 18 (2000), P. 185.
[9] Y.Zheng and Y.Gao: Materials Review Vol. 22 (2008), P. 139.
Online since: August 2012
Authors: Ana Lúcia Diegues Skury, Simone S.S. Oliveira, Sérgio Neves Monteiro
Bundy: Synthesis of Diamonds and Superhard Materials.
Caveney: Materials Science and Engineering Vol. 11 (1992), p. 197
Diamond and Related Materials Vol. 15(1) (2006), p.61
Tardim: Materials Science Forum Vols 660 - 661 (2010), p. 483
Azarko: Chemistry and Materials Science Vol. 42 (5) (2006), p. 484.
Caveney: Materials Science and Engineering Vol. 11 (1992), p. 197
Diamond and Related Materials Vol. 15(1) (2006), p.61
Tardim: Materials Science Forum Vols 660 - 661 (2010), p. 483
Azarko: Chemistry and Materials Science Vol. 42 (5) (2006), p. 484.
Online since: March 2021
Authors: Qing Dong Gu, Jia Hao Ge, Jin Kun Song, Chang Dong Yin
At present, metallographic examination, X-ray, locale specimen method, penetrant inspection and other methods are often used to detect hydrogen damage of materials.
The mechanical properties of materials can be easily obtained by measuring the propagation speed of the ultrasonic waves.
However, these studies only qualitatively analyze the changes in the mechanical properties of the materials, and do not explain how much the mechanical properties change with increasing hydrogen charging time.
International Journal of Precision Engineering and Manufacturing, 2014, 15(6):989-993
[4] Nagumo, M., “Hydrogen Related Failure of Steels-a New Aspect,” Materials Science and Technology, Vol. 20, No. 8, pp. 940-950, 2004
The mechanical properties of materials can be easily obtained by measuring the propagation speed of the ultrasonic waves.
However, these studies only qualitatively analyze the changes in the mechanical properties of the materials, and do not explain how much the mechanical properties change with increasing hydrogen charging time.
International Journal of Precision Engineering and Manufacturing, 2014, 15(6):989-993
[4] Nagumo, M., “Hydrogen Related Failure of Steels-a New Aspect,” Materials Science and Technology, Vol. 20, No. 8, pp. 940-950, 2004
Online since: February 2012
Authors: Bing Xin Sun, Yue Ting Wang, Yun Qiang Wang
The Forming for the Link Wheel Parts Library and the Corresponding Two-dimentional Engineering Drawings Based on Pro/E
Yueting Wang1,a Yunqiang Wang2,b Bingxin Sun3,c
1Department of mathematics and physics Hebei institute of architecture civil engineering, Zhangjiakou China
2Department of computer science Hebei institute of architecture civil engineering, Zhangjiakou China
3Department of mathematics and physics Hebei institute of architecture civil engineering, Zhangjiakou, China
awangyueting11@163.com, bzlg_33@163.com, csunbingxin1972@sina.com
Keywords: Parts library based on Pro/E, Family table, Two-dimensional engineering drawings
Abstract.
On the basis, use rotary tools and select datum plane of front and top, sketch cross-section screw, option button of remove material, create structure of the Link Wheel screw.
[2] Z.L.Wu, X.L.Huang, J.A.Zhu: Journal of Detection&Control, Vol.30(2008), p.48-56
Chinese Journal of Mechanical Engineering, Vol.43(2007).No.1, p.25-34
[6] J.Q.Li, J.Chen, C.J.Shi:Chinese Journal of Mechanical Engineering,Vol.45(2009).No.5, p.34-38.
On the basis, use rotary tools and select datum plane of front and top, sketch cross-section screw, option button of remove material, create structure of the Link Wheel screw.
[2] Z.L.Wu, X.L.Huang, J.A.Zhu: Journal of Detection&Control, Vol.30(2008), p.48-56
Chinese Journal of Mechanical Engineering, Vol.43(2007).No.1, p.25-34
[6] J.Q.Li, J.Chen, C.J.Shi:Chinese Journal of Mechanical Engineering,Vol.45(2009).No.5, p.34-38.