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Online since: January 2014
Authors: Ji Wei Huang, Fang Jiang, Hai Tao Lin, Xin Xia Yue, Xin Long Ling, Ling Huang, Ji Wu Hong, Bi Quan Lin
Research on mechanical properties and appearance of mulberry silk soaked with clean water
Jiwei Huanga, Jiwu Hongb, Ling Huangc, Biquan Lind, Xinlong Linge*, Haitao Linf, Fang Jiangg and Xinxia Yueh
School of Biological and Chemical Engineering, Guangxi University of Science and Technology, Liuzhou, Guangxi, 545006, China
asjzs1190@qq.com, b531184801@qq.com, c641382998@qq.com, d821455674@qq.com, elxl29981@sina.com, flhthost@163.com, gjff126@126.com, hxinxiayue@126.com
*Corresponding author: Xinlong Ling, lxl29981@sina.com
Keywords: raw silk; silk soaking; mechanical properties; appearance
Abstract.
Experimental 2.1 Materials.
Xiong:Journal of suzhou institute of silk textile technology,Vol.16(1996) No.1,p 40-47.
Experimental 2.1 Materials.
Xiong:Journal of suzhou institute of silk textile technology,Vol.16(1996) No.1,p 40-47.
Online since: March 2010
Authors: Chun Jie Han, Tie Yan
The Study on Vibration of Marine Riser Under Deep Water
Chunjie Han1,a, Tie Yan
2,b
1
Daqing Petroleum Institute, Electronic Science College, Daqing, Heilongjiang, China
2
Daqing Petroleum Institute, Petroleum Engineering Institute, Daqing, Heilongjiang, China
a
email:hcjdqpi@163.com, b
email:yant@dqpi.edu.cn
Keywords: marine riser, lateral vibration, frequency.
Fig. 1 Model of marine riser Fig. 2 The pressure acted on the element Before the model of marine riser is built, the condition can be supposed for the marine riser: the material of marine riser is liner, elastic and isotropic; the section area is constant along the marine riser; the mud is full in the marine riser, during the process of drilling the drill string don't contact the marine riser; marine riser maybe have large deformation under platform swaying, wave force and current force.
The effect for the change of density of marine riser material.
Ven Elsacker: submitted to Journal of PetroleumTechnology Vol. 10(1988), p. 1608-1605 [3] Bernd Schmalhorst, Baker Hughes INTEQ, Eberhard Brommundt, Vol. 2(2000).
Fig. 1 Model of marine riser Fig. 2 The pressure acted on the element Before the model of marine riser is built, the condition can be supposed for the marine riser: the material of marine riser is liner, elastic and isotropic; the section area is constant along the marine riser; the mud is full in the marine riser, during the process of drilling the drill string don't contact the marine riser; marine riser maybe have large deformation under platform swaying, wave force and current force.
The effect for the change of density of marine riser material.
Ven Elsacker: submitted to Journal of PetroleumTechnology Vol. 10(1988), p. 1608-1605 [3] Bernd Schmalhorst, Baker Hughes INTEQ, Eberhard Brommundt, Vol. 2(2000).
Online since: September 2011
Authors: Qiang Zhao, Ji Gao, Tian Xia
Nozzle
Table 1 Turning titanium alloy TC11 cutting dosages
cutting
species
Cutting parameters
Tool materials
Tool brand
[mm]
[mm/r]
[m/min]
finishing
0.1-0.8
0.05-0.15
50-100
KC5510
Kennametal
Half finishing
0.5-1.5
0.1-0.3
30-80
KC5510
roughing
2
0.11
25
YG8
domestic
3
0.3
20
YD15
Experimental data analysis cutting titanium alloy TC11
Specimens: TC11
Tool: Rough machining YG8, Finishing and Half finishing Kennametal
Instruments and Equipment: The lathe CAK6150C YDC - 89 type three to force measurement instrument, TR200 type handheld roughness piezoelectric turning is realized, static cooling device.
Acknowledgements This project is in part supported by a grant (NO.2008537) for the Key Laboratory for Advanced Manufacturing Technology by the Education Department of Liaoning Province Natural Science and Technology Foundation.
Yao: Journal of manufacturing technology and machine tool,( 2003)No.1 pp: 65-68.
Acknowledgements This project is in part supported by a grant (NO.2008537) for the Key Laboratory for Advanced Manufacturing Technology by the Education Department of Liaoning Province Natural Science and Technology Foundation.
Yao: Journal of manufacturing technology and machine tool,( 2003)No.1 pp: 65-68.
Online since: September 2014
Authors: Chia Heng Tsai, Wen Hsiang Hsieh
ACKNOWLEDGMENT
The supports of the Ministry of Science and Technology, Republic of China (Taiwan) and Kai Hung Machinery Co., Ltd, under Grants NSC 97-2622-E-150-021-CC3 and 98AF28, respectively are gratefully acknowledged.
Y., “Acceleration Improvement for Coil Winders of RRRCC Type by Variable Input Speed Method,” Journal of Vibroengineering, Vol. 14, No. 4, pp. 1459-1468, 2012, [11] Hsieh, W.
Y., “Structural Synthesis of Spatial 4-Link Mechanisms for Coil Winding,” Applied Mechanics and Materials, Vols. 423-426, pp. 1809-1812, 2013.
Y., “Acceleration Improvement for Coil Winders of RRRCC Type by Variable Input Speed Method,” Journal of Vibroengineering, Vol. 14, No. 4, pp. 1459-1468, 2012, [11] Hsieh, W.
Y., “Structural Synthesis of Spatial 4-Link Mechanisms for Coil Winding,” Applied Mechanics and Materials, Vols. 423-426, pp. 1809-1812, 2013.
Online since: September 2013
Authors: Li Juan He, Lai Yun Ji, Jian Chang Du
Acknowledgements
This work was financially supported by the Science and Technology Innovation Fund of Tianjin, China (Grant No. 12ZXCXGX36800) and the Technology Giant Growth Plan of Binhai, Tianjin, China (Grant No. 2011-XJR11020).
Wang, et al., "Design of symmetrical dual-spiral structure of high-temperature superconducting filter," Rare Metal Materials and Engineering, vol.37, suppl.4, pp.359-361, Oct.2008
Guo, et al.,, "Ultra-narrowband Superconducting Filter: design and tuning", Chinese Journal of Low Temperature Physics, vol.31, no.5, pp.166-169, 2009
Wang, et al., "Design of symmetrical dual-spiral structure of high-temperature superconducting filter," Rare Metal Materials and Engineering, vol.37, suppl.4, pp.359-361, Oct.2008
Guo, et al.,, "Ultra-narrowband Superconducting Filter: design and tuning", Chinese Journal of Low Temperature Physics, vol.31, no.5, pp.166-169, 2009
Online since: December 2014
Authors: Zheng Lin Feng, Yong Huan Luo, Jun Liu, Hong Feng Guo
The Structure and Properties Research for Sealing Capsule
Yonghuan Luo 1, a, Zhenglin Feng 1, b, Jun Liu 1, c , Hongfeng Guo 1,d
1ZhuZhou Times New Material Technology Co., Ltd., Zhuzhou, Hunan, 412007, China,
aluoyonghuan@teg. cn, bfengzhenglin@teg.cn, cliujun@teg.cn, dguohongfeng@teg. cn
Key word: Sealing; Sealing capsule; Rubber; Underwater cap;
Abstract.
The principle of sealing The main material of the sealing capsule is natural rubber, and the middle fiber layer is added to improve its voltage capacity.
Feng and J .Liu: submitted to Journal of Railway Engineering (2013) [3] Yu Dang, Y.F.
Gao: submitted to Tunnels and Underground Engineering (1994) [5] Charlton D J and J Yang: submitted to Rubber Chem. and Technol. (1994) [6] D Q Zhuang: submitted to Donghai Marine Science (2001) [7] M.X.
The principle of sealing The main material of the sealing capsule is natural rubber, and the middle fiber layer is added to improve its voltage capacity.
Feng and J .Liu: submitted to Journal of Railway Engineering (2013) [3] Yu Dang, Y.F.
Gao: submitted to Tunnels and Underground Engineering (1994) [5] Charlton D J and J Yang: submitted to Rubber Chem. and Technol. (1994) [6] D Q Zhuang: submitted to Donghai Marine Science (2001) [7] M.X.
Online since: May 2004
Authors: M. Lutfy Öveçoğlu, Burak Özkal, G. Özen, F. Altın, V. Kalem
Crystallization Behavior of Some TeO2-GeO2-ZnO Glasses
F.Altın
1, M.L.Öveçoğlu
1, V.Kalem
1, B.Özkal1, G.Özen
2
1
Dept. of Materials Science and Eng., Istanbul Technical University 34469, Istanbul, TURKEY
2
Dept. of Physics, Istanbul Technical University 34469, Istanbul, TURKEY
Keywords: TeO2-GeO2-ZnO glasses, crystallization behavior.
Kim : Etri Journal Vol. 23 (2001) p. 151
Kim : Etri Journal Vol. 23 (2001) p. 151
Online since: July 2011
Authors: Dong Wei Zhang, Nan Lv, Jun Tao, Sheng Li Li, Xin Gang Ai
Solidification Simulation of Huge Rectangular Ingot by different Intensive Cooling
Xingang Ai1,a, Shengli Li1,b, Nan Lv1,c, Dongwei Zhang2,d and Jun Tao1,e
1University of Science and Technology Liaoning, Anshan, Liaoning, China
2Anshan Iron and Steel Group Corporation, Anshan, Liaoning, China
aaixingang@126.com, blishengli66@sohu.com, clvnan999@yahoo.com,
dzdwhyc_2005@163.com, etaojun2288@126.com
Keywords: Huge rectangular ingot, Mould casting, Simulation, Intensive cooling
Abstract.
Yang: Journal of Materials Processing Technology, Vol. 67 (1999), p. 195
Yang: Journal of Materials Processing Technology, Vol. 67 (1999), p. 195