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Online since: September 2013
Authors: Wen Hong Li, Xue Kun Li, Xiu Na Chen, Fang Fang Chen
Experimental
Materials and reagents The fructus ligustri lucidi was picked in Xi'an University of Arts and Science,China.
Isolation and purification of yellow pigment Took fructus ligustri lucidi as raw materials.
These materials were shattered into 80 mesh and extracted pigment for 1.5 hours, at the temperature 80˚C, with 70% (v%)ethanol, the ration of materials and solvent at 1:20, then repeated the extraction for 3 times.
Yang, S.H.Qian, Journal of Chinese Medicinal Materials, 30,5(2007).P538-540
Journal of Chromatography A, 1112(2006).P1–63
Isolation and purification of yellow pigment Took fructus ligustri lucidi as raw materials.
These materials were shattered into 80 mesh and extracted pigment for 1.5 hours, at the temperature 80˚C, with 70% (v%)ethanol, the ration of materials and solvent at 1:20, then repeated the extraction for 3 times.
Yang, S.H.Qian, Journal of Chinese Medicinal Materials, 30,5(2007).P538-540
Journal of Chromatography A, 1112(2006).P1–63
Online since: April 2014
Authors: Meng Zhao, Li Na Yi, Shan Lin Jiang, Cheng Jun Liu
Acknowledgement
This work is supported by the National Key Basic Research Program of China [grant numbers 2013CB035605]; the National Science foundation of China [grant numbers 50707005, 50977015]; and the Province Natural Science foundation of Heilongjiang [grant numbers E201156]and the Fundamental Research Funds for the Central Universities [grant numbers HIT.
Journal of Magnetism and Magnetic Materials. 2011, 323(10): 1314-1318
Experimental Thermal and Fluid Science. 2012, 39: 265-268
Journal of Magnetism and Magnetic Materials. 2012, 324(20):3238-3244
Beijing: Science Press. 2003, 103-109
Journal of Magnetism and Magnetic Materials. 2011, 323(10): 1314-1318
Experimental Thermal and Fluid Science. 2012, 39: 265-268
Journal of Magnetism and Magnetic Materials. 2012, 324(20):3238-3244
Beijing: Science Press. 2003, 103-109
Online since: March 2012
Authors: Bin Hong, Hong Mei Wang
System Principles
The system includes there subsystem, i.e. chemical reactor, control system and material conveying system and metering system.
Material Conveying System.
Material conveying system consists of liquid reactant feeding system, gaseous reactants feeding system, condensate returning system and distillation system.
[9] New Reactions and Strategies in Highly Selective Organic Synthesis, Bulletin of the Chinese Academy of Sciences Vol. 01(2011), p. 66-67
[10] Li Ke, Li Xiang-yu, Nie Xiao-an: Synthesis of Covalent Catalyst of Dibutyl Phthalate, Journal of Changshu Institute Technology (Natural Sciences) Vol. 24(2010), p. 86-89.
Material Conveying System.
Material conveying system consists of liquid reactant feeding system, gaseous reactants feeding system, condensate returning system and distillation system.
[9] New Reactions and Strategies in Highly Selective Organic Synthesis, Bulletin of the Chinese Academy of Sciences Vol. 01(2011), p. 66-67
[10] Li Ke, Li Xiang-yu, Nie Xiao-an: Synthesis of Covalent Catalyst of Dibutyl Phthalate, Journal of Changshu Institute Technology (Natural Sciences) Vol. 24(2010), p. 86-89.
Online since: May 2011
Authors: Zhi Heng Deng, Guang Xian Tang, Qian Lin, Zhi Chao Jia
According to the experimental data, this paper measured by the node of ultimate bearing capacity, getting rid of the stress of abdomen and stirrup based on actual strength of materials and theoretical formula calculation, after linear regression, gains.
Acknowledgement This paper sponsored by National Natural Science Foundation of China (Grant No. 50868001).
Compositing structures of steel and concrete .( Science Press, China 2001) [3] Xingu Zhong, Xiaojuan Shu:Civil engineering journal, Vol.35(2002),P.73-78.
(in Chinese) [5] Zhiheng Deng, Hegong Chen, Shaoming Lin:Journal of Guangxi University (Natural science edition), Vol.35(2010) ,P.12-16(in Chinese) [6] Liu Wei.
[10] ASCE Guidelines:Journal of Structural Engineering,Vol.120(1994),P.2330-2357.
Acknowledgement This paper sponsored by National Natural Science Foundation of China (Grant No. 50868001).
Compositing structures of steel and concrete .( Science Press, China 2001) [3] Xingu Zhong, Xiaojuan Shu:Civil engineering journal, Vol.35(2002),P.73-78.
(in Chinese) [5] Zhiheng Deng, Hegong Chen, Shaoming Lin:Journal of Guangxi University (Natural science edition), Vol.35(2010) ,P.12-16(in Chinese) [6] Liu Wei.
[10] ASCE Guidelines:Journal of Structural Engineering,Vol.120(1994),P.2330-2357.
Online since: October 2018
Authors: A.R. Ibragimov, A.I. Saifutdinov, Lenar N. Shafigullin
Konakova, The structure and mechanical properties of single-crystal nickel alloys with Re and Ru after high-temperature holds, Materials Science & Engineering, A 642 (2015) 304–308
Kashapov, IOP Conference Series: Materials Science and Engineering 86012005, 2015
Lozhkin, Structure and properties of composite materials «aluminum- nicelaluminide» prodused by the SPS method.
Series: Journal of Physics: Conf.
Series: Journal of Physics: Conf.
Kashapov, IOP Conference Series: Materials Science and Engineering 86012005, 2015
Lozhkin, Structure and properties of composite materials «aluminum- nicelaluminide» prodused by the SPS method.
Series: Journal of Physics: Conf.
Series: Journal of Physics: Conf.
Online since: June 2012
Authors: Xiao Yan Zhang, Xi Wei Qi, Jian Quan Qi, Xuan Wang, Huan Huan Chen, Gui Fang Sun, Rui Xia Zhong
Introduction
Multiferroic materials are described to compounds in which two or more of the primary ferroic properties occur in the same phase.
Hill: Journal of Physical Chemistry B Vol. 104 (2000), p. 6694 [3] X.
Hill and A Filippetti: Journal of magnetism and magnetic materials Vol. 242-245 (2002), p.976 [5] S.
Ramesh: Science Vol. 303(2004), p. 661 [7] K.
Ramesh: Science Vol. 299 (2003), p. 1719 [10] S.
Hill: Journal of Physical Chemistry B Vol. 104 (2000), p. 6694 [3] X.
Hill and A Filippetti: Journal of magnetism and magnetic materials Vol. 242-245 (2002), p.976 [5] S.
Ramesh: Science Vol. 303(2004), p. 661 [7] K.
Ramesh: Science Vol. 299 (2003), p. 1719 [10] S.
Online since: May 2020
Authors: A. Nikolaev, Elena Nikolaeva
Nikolaeva, Structure investigation of the constructional steel St3ps after argon-arc plasma treatment, Materials Science Forum. 870 (2016) 500-506
Residual stress Part II – nature and origins, Materials Science and Technology. 17 (2001) 366-375
Materials & Processes. 2002
Shaw, Magnetic Barkhausen Noise Profile Analysis: Effect of Excitation Field Strength and Detection Coil Sensitivity in Case Carburized Steel Materials Sciences and Applications. 5 (2014) 258-266
(eds), Nondestructive Characterization of Materials IV.
Residual stress Part II – nature and origins, Materials Science and Technology. 17 (2001) 366-375
Materials & Processes. 2002
Shaw, Magnetic Barkhausen Noise Profile Analysis: Effect of Excitation Field Strength and Detection Coil Sensitivity in Case Carburized Steel Materials Sciences and Applications. 5 (2014) 258-266
(eds), Nondestructive Characterization of Materials IV.
Online since: August 2011
Authors: Jian Hua Cui
Introduction
Since the 1960s the United States announced ASMEIII and ASME VIII-2 pressure vessels stress analysis and design standard, many scholars since international conducted extensive research work, many countries successively formulated for pressure vessels stress analysis and design standard, especially in the last 20 years, due to the rapid development of computers for finite element stress analysis, provides hardware conditions, at the same time because manufacturing pressure vessel materials, welding technology and inspection means to improve the design of pressure vessels calculation precision put forward higher request [1,2].
The description of pressure vessel Review and analysis the example simulation test plate model, model using epoxy resin materials, 6mm plate thickness, including reinforcement bar and loading board are respectively binding into a whole processing then.
Acknowledgement This project supported by Anhui Province National Natural Science Foundation through grant No. 090414149,ZD2008001-1,2009Z047 and KJ2008A144.
,Transactions of the ASME, 111(1989):58-63 [7] Q.X.Quan, Pressure Vessel Technology, 13(1996):32-36 [8] R.L.Cai,Y.L.Zhang, Process Equipment & Piping, 20(2002):12-16 [9] Y.H.Zheng, L.L.Cai, Journal of Shenyang Institute of Aeronautical Engineering,18(2001),12-16 [10] L.Yang,S.J.Qian, Machine Design and Manufacturing Engineering,230(2001),29-30 [11] S.YU,R.Wang, Journal of Qingdao Institute of Chemical Technology,22(2001,)361-363 [12] L.Wang, Chemical Engineering & Machinery,31(2004),307-311(In Chinese) [13] J.H.Cui, Journal of Anhui Institute of Architecture,3(1995), 36-39(In Chinese) [14] J.H.Cui, Journal of Hefei University of Technology, 22(1999),88-91(In Chinese)
The description of pressure vessel Review and analysis the example simulation test plate model, model using epoxy resin materials, 6mm plate thickness, including reinforcement bar and loading board are respectively binding into a whole processing then.
Acknowledgement This project supported by Anhui Province National Natural Science Foundation through grant No. 090414149,ZD2008001-1,2009Z047 and KJ2008A144.
,Transactions of the ASME, 111(1989):58-63 [7] Q.X.Quan, Pressure Vessel Technology, 13(1996):32-36 [8] R.L.Cai,Y.L.Zhang, Process Equipment & Piping, 20(2002):12-16 [9] Y.H.Zheng, L.L.Cai, Journal of Shenyang Institute of Aeronautical Engineering,18(2001),12-16 [10] L.Yang,S.J.Qian, Machine Design and Manufacturing Engineering,230(2001),29-30 [11] S.YU,R.Wang, Journal of Qingdao Institute of Chemical Technology,22(2001,)361-363 [12] L.Wang, Chemical Engineering & Machinery,31(2004),307-311(In Chinese) [13] J.H.Cui, Journal of Anhui Institute of Architecture,3(1995), 36-39(In Chinese) [14] J.H.Cui, Journal of Hefei University of Technology, 22(1999),88-91(In Chinese)
Online since: August 2017
Authors: Hatsuhiko Usami, Toshiki Sato, Yasuyuki Kanda, Satoru Nishio
Applicability of Interrupted Micro Cutting Process “Tilling”
as Surface Texturing
Hatsuhiko Usami1,a*, Toshiki Sato2,b, Yasuyuki Kanda2,c and Satoru Nishio2,d
1 Materials Science and Engineering Department, Meijo University,
1-501, Shiogamaguchi, Tenpaku, Nagoya, 468-8502 Japan
2 Kanefusa Corporation, 1-1 Nakaoguchi, Ohguchi, Niwa-gun, Aichi, 480-0192 Japan
ausami@meijo-u.ac.jp, bt-sato@kanefusa.co.jp,
cy-kanda@kanefusa.co.jp, d s-nishio@kanefusa.co.jp
Keywords: Tribology, Interrupted micro cutting process, Surface texture, Surface modification, Aluminum cast alloy
Abstract: Tribological properties of textured surfaces fabricated using a interrupted microcutting process were investigated.
Khonsari, An experimental investigation of dimple effect on the stribeck curve of journal bearings, Tribology letters, 27, 2(2007)169-176 [7] M.
Yasuda, Effect of surface texturing on friction reduction between ceramic and steel materials under lubricated sliding contact, Wear, 254, 3‐4 (2003)356-363 [8] H.
Hara, Five axis control machining of surface texture with regular pattern, JSPE Journal, 75, 12 (2009)1459-1463, in Japanese [10] H.
Shinka, Hydrodynamic lubrication effect of textured surface, Journal of IHI technologies, 50, 1 (2010)22-26, in Japanese
Khonsari, An experimental investigation of dimple effect on the stribeck curve of journal bearings, Tribology letters, 27, 2(2007)169-176 [7] M.
Yasuda, Effect of surface texturing on friction reduction between ceramic and steel materials under lubricated sliding contact, Wear, 254, 3‐4 (2003)356-363 [8] H.
Hara, Five axis control machining of surface texture with regular pattern, JSPE Journal, 75, 12 (2009)1459-1463, in Japanese [10] H.
Shinka, Hydrodynamic lubrication effect of textured surface, Journal of IHI technologies, 50, 1 (2010)22-26, in Japanese
Online since: July 2011
Authors: Xin Liu, Dian Li Qu, Zhi Jian Li
The Limitation of Evaluating Thermal Shock Resistance of Al2O3-SiO2 Refractory By Measuring Strength Loss Rate
Xin Liu1, a, Dianli Qu1, b, Zhijian Li 1, c
1School of High temperature materials and Magnesite resources Engineering of University of Science and technology Liaoning, Anshan 114044, China
axinxin822@yeah.net, bqudianli@126.com, caskj5212086@163.com
Keywords: Thermal shock resistance, Test and evaluation, Strength loss rate, Supersonic testing
Abstract.
This paper deeply studied the loss rate of cold crushing strength to evaluate the TSR for A-S refractory after the thermal shock experiment, seeked the refractory material series which was inadequate to be evaluated by this method, and research the reason which led to this situation, so as to provide reference in evaluating TSR correctly for A-S refractory.
References [1] Refractory Standard Assembly, edited by China Standards Press, Beijing (2003), p. 158 [2] Refractory Standard Assembly, edited by China Standards Press, Beijing (2003), p. 160 [3] Huabai Yao:Journal of Foreign Refractory.
Vol.27(2002),P.116 [4] Xiaonian Wang et al: Journal of Baotou Technology.Vol.29(2003),P.101 [5] Chun Li: Journal of Foreign Refractory.
Vol.15(2001),P.57 [6] Ling Zhang et al: Journal of Anshan iron.Vol.24(2001),P.171
This paper deeply studied the loss rate of cold crushing strength to evaluate the TSR for A-S refractory after the thermal shock experiment, seeked the refractory material series which was inadequate to be evaluated by this method, and research the reason which led to this situation, so as to provide reference in evaluating TSR correctly for A-S refractory.
References [1] Refractory Standard Assembly, edited by China Standards Press, Beijing (2003), p. 158 [2] Refractory Standard Assembly, edited by China Standards Press, Beijing (2003), p. 160 [3] Huabai Yao:Journal of Foreign Refractory.
Vol.27(2002),P.116 [4] Xiaonian Wang et al: Journal of Baotou Technology.Vol.29(2003),P.101 [5] Chun Li: Journal of Foreign Refractory.
Vol.15(2001),P.57 [6] Ling Zhang et al: Journal of Anshan iron.Vol.24(2001),P.171