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Online since: July 2012
Authors: Mahdi Amiriyan, Ranna Tolouei, Ramesh Singh, Chou Yong Tan, Lai Kuan Lee Samuel, Boon Kar Yap
De Groot: Journal of Materials Science: Materials in Medicine Vol. 4 (1993), p. 83 – 85
Chaki: Journal of Material Science: Materials in Medicine Vol. 4 (1993), p. 150 – 158
Sevostianov: Materials Science and Engineering A Vol. 431 (2006), p. 218 – 227
Teng: submitted to International Symposium of Materials on Regenerative Medicine (2010) [10] S.
Teng: The Medical Journal of Malaysia Vol 63 (2008), p. 89 – 90.
Chaki: Journal of Material Science: Materials in Medicine Vol. 4 (1993), p. 150 – 158
Sevostianov: Materials Science and Engineering A Vol. 431 (2006), p. 218 – 227
Teng: submitted to International Symposium of Materials on Regenerative Medicine (2010) [10] S.
Teng: The Medical Journal of Malaysia Vol 63 (2008), p. 89 – 90.
Online since: July 2008
Authors: Hai Jun Qu, Qin Xi Shen, Gui Cheng Wang, Hong Jie Pei, Yun Ming Zhu
Materials to be cut seem to be bended around this point area as the tool moves
toward the woekpiece edge.
The workpieces materials were 6-4 brass.
Dornfeld: Journal of Manufacturing Science and Engineering, Vol. 121 (1999), p.1-7 [2] S.
Dornfeld: Journal of Materials Processing Technology, Vol. 62(1996), p.24-36 [3] G.
Dornfeld: Journal of Engineering Materials and Technology, Vol. 118 (1996), p. 201-206 [4] G.
The workpieces materials were 6-4 brass.
Dornfeld: Journal of Manufacturing Science and Engineering, Vol. 121 (1999), p.1-7 [2] S.
Dornfeld: Journal of Materials Processing Technology, Vol. 62(1996), p.24-36 [3] G.
Dornfeld: Journal of Engineering Materials and Technology, Vol. 118 (1996), p. 201-206 [4] G.
Online since: February 2011
Authors: En Zhi Chen, Tao Gao, Ming Chu Yin
Experiment
Experimental Material.
Experimental materials are TC6 titanium alloy rods in diameter 23 to 250mm, its main chemical compositions and standard contents as shown in the table 1.
References [1] Committee for Handbook of Engineering Materials: Handbook of Engineering Materials (3): aluminum alloys, magnesium alloys and titanium alloys.
Paulo Dayim and Rosária Cardoso: Journal of Materials Processing Technology. vol. 189 (2007), p. 374
[7] Fang Li, Yaxin Chen and Xiaojing Wan: Journal of Acta Metallurgica Sinica.
Experimental materials are TC6 titanium alloy rods in diameter 23 to 250mm, its main chemical compositions and standard contents as shown in the table 1.
References [1] Committee for Handbook of Engineering Materials: Handbook of Engineering Materials (3): aluminum alloys, magnesium alloys and titanium alloys.
Paulo Dayim and Rosária Cardoso: Journal of Materials Processing Technology. vol. 189 (2007), p. 374
[7] Fang Li, Yaxin Chen and Xiaojing Wan: Journal of Acta Metallurgica Sinica.
Online since: May 2011
Authors: Yuan Chi Dong, Yun Zhou, Hai Chuan Wang, Shi Jun Wang, Zhi You Liao
These advantages include efficient and instantaneous generation of heat throughout the materials, selective heating of materials and even selective stimulation of certain chemical reactions.
About 8~11 percent of CaF2 was added into the mixtures as fluxing materials. 9.8~12.2 g samples are weighted and well mixed were provided for the experiments.
CHEN Jin; LI Ning; WANG Shebin; YAN Hong; LIU Jinying,Temperature-rising characteristic of chromite ore fines containing coal in a microwave field,Journal of University of Science and Technology Beijing, 2007,08,29(09):880-884
Ma Guojun; Yin Xue; Su Weihou; Kuang Buxiao; Deng Guoquan; Wang Tian; Du Bo, Thermodynamics and experimental study of carbothermic reduction of electric arc furnace dust generated from stainless steel plant by microwave,Journal of Wuhan University of Science and Technology, 2010.08,33(04): 439-444
CHEN Jin; PAN Xiaojuan; ZHANG Meng; ZHAO Jing; LIN Yuansheng ,Heating Characteristics of Manganese Oxide Ore Fines Containing Coal under Microwave Irradiation,, Materials Review, 2007.11,21(11A):81-84
About 8~11 percent of CaF2 was added into the mixtures as fluxing materials. 9.8~12.2 g samples are weighted and well mixed were provided for the experiments.
CHEN Jin; LI Ning; WANG Shebin; YAN Hong; LIU Jinying,Temperature-rising characteristic of chromite ore fines containing coal in a microwave field,Journal of University of Science and Technology Beijing, 2007,08,29(09):880-884
Ma Guojun; Yin Xue; Su Weihou; Kuang Buxiao; Deng Guoquan; Wang Tian; Du Bo, Thermodynamics and experimental study of carbothermic reduction of electric arc furnace dust generated from stainless steel plant by microwave,Journal of Wuhan University of Science and Technology, 2010.08,33(04): 439-444
CHEN Jin; PAN Xiaojuan; ZHANG Meng; ZHAO Jing; LIN Yuansheng ,Heating Characteristics of Manganese Oxide Ore Fines Containing Coal under Microwave Irradiation,, Materials Review, 2007.11,21(11A):81-84
Online since: October 2012
Authors: Shun Hong Lin, Dai Chuan Chen, Jian Ping Ding, Ming Xu
The materials for bearings at both ends are the same: K=1.05×107[N/m],C=2000 [N·s/m].
Zhang: The Theoretical Basics of Rotor Dynamics (Science Press, P.R.
Meng: Journal of Vibration Engineering, Vol.15 (2002) No.1, pp.1-9 (in Chinese)
Lu: Journal of Computational Mechanics, Vol.20 (2003) No.6, pp.711-714 (in Chinese)
Zang: Journal of Aerospace Power, Vol.12 (1997) No.3, pp.243-246 (in Chinese)
Zhang: The Theoretical Basics of Rotor Dynamics (Science Press, P.R.
Meng: Journal of Vibration Engineering, Vol.15 (2002) No.1, pp.1-9 (in Chinese)
Lu: Journal of Computational Mechanics, Vol.20 (2003) No.6, pp.711-714 (in Chinese)
Zang: Journal of Aerospace Power, Vol.12 (1997) No.3, pp.243-246 (in Chinese)
Online since: June 2014
Authors: Dong Yang, Zai Qiang Lou, Hao Sen Sun, Yun Ting Zhang
On the basis of the existing water treatment equipment, we can replace the traditional craft and technology with advanced water treatment theory, new technology, new materials and new equipment.
References [1] Shaojie Jiang and Zhimin Zuo: Journal of Chongqing University(Natutal Science Edition) Vol. 28 (2005), p. 114 [2] Information on http://www.mwr.gov.cn/zwzc/ldxx/zhh/zyjh/200601/t20060104_126050.html [3] Jinxiang Fu and Tongyan Li: Water & Wasterwater Engineering Vol. 29 (2003), p. 35 [4] Yuankui Sun, Mei Li and Cunguo Liu: Journal of Shandong Jianzhu University Vol. 24 (2009), p. 120 [5] Min Yan and Hongying Chen: Journal of Zhejiang University of Technology Vol. 32 (2004), p. 339 [6] Ping Yu and Qiang Kang: Journal of Anhui Institute of Architecture & Industry Vol. 17 (2009), p. 64 [7] Xiaojun Yan and Wei Chen: Shanxi Architecture Vol. 36 (2010), p. 201 [8] Sheng Lin and Xiaoru Cheng: Water Purification Technology Vol. 27 (2008), p. 29 [9] Bozhi Ren and Xiaobao Nie: China Safety Science Journal Vol. 16 (2006), p. 13
References [1] Shaojie Jiang and Zhimin Zuo: Journal of Chongqing University(Natutal Science Edition) Vol. 28 (2005), p. 114 [2] Information on http://www.mwr.gov.cn/zwzc/ldxx/zhh/zyjh/200601/t20060104_126050.html [3] Jinxiang Fu and Tongyan Li: Water & Wasterwater Engineering Vol. 29 (2003), p. 35 [4] Yuankui Sun, Mei Li and Cunguo Liu: Journal of Shandong Jianzhu University Vol. 24 (2009), p. 120 [5] Min Yan and Hongying Chen: Journal of Zhejiang University of Technology Vol. 32 (2004), p. 339 [6] Ping Yu and Qiang Kang: Journal of Anhui Institute of Architecture & Industry Vol. 17 (2009), p. 64 [7] Xiaojun Yan and Wei Chen: Shanxi Architecture Vol. 36 (2010), p. 201 [8] Sheng Lin and Xiaoru Cheng: Water Purification Technology Vol. 27 (2008), p. 29 [9] Bozhi Ren and Xiaobao Nie: China Safety Science Journal Vol. 16 (2006), p. 13
Online since: September 2014
Authors: Dae Hyun Jeong, Young Il Kwon
Furthermore, social network analysis offers a strong analytical method in the social science field to analyze informal connections between units, whose results can be applied to various fields such as psychology, health, and electronic communications.
Index of Diversity Fig. 1 Aggregated journal-journal citation matrix with citing and cited vectors for each journal, and six possible measures of “interdisciplinarity” Many studies have been conducted regarding convergence index and proposed network index (based on degree centrality), journal index (Shannon Entropy and Gini Index), and recently, Rao-Stirling measures.
Shannon Entropy and Gini Index measure journal citation statistics and citation index with co-occurrence matrix [5].
Typically, a polymer substance manufacturing (C08J-005) field and a conductor or conducting object (H01B-001) field comprising conducting materials had a high betweenness centrality.
Kwon: 2012 Green Technology Knowledge Map-Fuel Cell, Korea Institute of Science and Technology Information (2012), p.1 [2] S.J.
Index of Diversity Fig. 1 Aggregated journal-journal citation matrix with citing and cited vectors for each journal, and six possible measures of “interdisciplinarity” Many studies have been conducted regarding convergence index and proposed network index (based on degree centrality), journal index (Shannon Entropy and Gini Index), and recently, Rao-Stirling measures.
Shannon Entropy and Gini Index measure journal citation statistics and citation index with co-occurrence matrix [5].
Typically, a polymer substance manufacturing (C08J-005) field and a conductor or conducting object (H01B-001) field comprising conducting materials had a high betweenness centrality.
Kwon: 2012 Green Technology Knowledge Map-Fuel Cell, Korea Institute of Science and Technology Information (2012), p.1 [2] S.J.
Online since: December 2012
Authors: Cheng Fan, Geng Chen, Shan Shan Wang
Ceramic materials has approximate color and translucency with natural tooth, which is unmatched by other restorative materials.
However, due to the brittleness of ceramics and the stress mismatch between different materials, failure phenomenon is often observed during the service period of all-ceramic crowns.
Introduction Dental ceramic materials have similar color and translucency to natural tooth, performance, stability, good biocompatibility, corrosion resistance, aging and wear and tear, etc., which is favored deeply by the doctors and patients, is the most promising new materials of the oral prosthetics.
This is the metal materials and other macromolecule can not compared, and gradually been widely used in the field of prosthodontics.
The journal of prosthetic dentistry, v11, 2001, p495-510.
However, due to the brittleness of ceramics and the stress mismatch between different materials, failure phenomenon is often observed during the service period of all-ceramic crowns.
Introduction Dental ceramic materials have similar color and translucency to natural tooth, performance, stability, good biocompatibility, corrosion resistance, aging and wear and tear, etc., which is favored deeply by the doctors and patients, is the most promising new materials of the oral prosthetics.
This is the metal materials and other macromolecule can not compared, and gradually been widely used in the field of prosthodontics.
The journal of prosthetic dentistry, v11, 2001, p495-510.