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Online since: October 2014
Authors: Ming Sheng Zhao, En An Chi, Qiang Kang, Jian Hua Zhang, Tie Jun Tao
Currently, there are three main methods of emulsion explosive sensitization[3-5]: air bubbles trapped by porous material, mechanical aeration and chemical foaming.
Acknowledgements This work was supported by the grants from the Guizhou Science and Technology Plan Project (No.
Explosive Materials, 2005, 34 (4): 10-12
Journal of Hanna Vocational & Technical College, 2004, 4 (3): 82-83
Chinese Journal of Explosives& Propellants, 2002, 2 (1): 36-40.
Acknowledgements This work was supported by the grants from the Guizhou Science and Technology Plan Project (No.
Explosive Materials, 2005, 34 (4): 10-12
Journal of Hanna Vocational & Technical College, 2004, 4 (3): 82-83
Chinese Journal of Explosives& Propellants, 2002, 2 (1): 36-40.
Online since: September 2014
Authors: Pan Nan, Ze Quang Yi
Research of Multi-channel Vehicle Brake Performance Testing System
Yi Zeguanga, Pan Nanb*
Faculty of Mechanical & Electrical Engineering, Kunming University of Science & Technology, Kunming, P.R.
Such sounds are low frequency noise, the frequency of 100 ~ 1KHz, mainly due to the stick-slip vibration between the brake disc and the friction surface of the material causing the brakes and chassis
Acknowledgement The research work was supported by National Natural Science Foundation of China under Grant No. 51305186 & 51265018.
Clem: submitted to Journal of Materials Research (2003) [3] P.G.
Study on Pumping Station’s Remote Condition Monitoring and Fault Diagnosis System Based on Internet Journal of Vibration Engineering, 17(z2):.633-636, (2004)
Such sounds are low frequency noise, the frequency of 100 ~ 1KHz, mainly due to the stick-slip vibration between the brake disc and the friction surface of the material causing the brakes and chassis
Acknowledgement The research work was supported by National Natural Science Foundation of China under Grant No. 51305186 & 51265018.
Clem: submitted to Journal of Materials Research (2003) [3] P.G.
Study on Pumping Station’s Remote Condition Monitoring and Fault Diagnosis System Based on Internet Journal of Vibration Engineering, 17(z2):.633-636, (2004)
Online since: November 2013
Authors: Gui Ping Wang, Chun Yan Cao, Gui Yan Wang
Adsorption Characteristics of Directly Modified Bentonite
Guiping WANG 1,a, Guiyan WANG 2,b,Chunyan CAO 3,c
1School of Equipment Engineering, Shenyang Ligong University, Shenyang 110159, China;
2 School of Pharmaceutical Engineering, Shenyang Pharmaceutical University, Shenyang110016, China;
3School of Material Science and Engineering, Shenyang Ligong University, Shenyang110159, China
a1138588096@qq.com, b921151572@qq.com ,c563728083@qq.com
Keywords: bentonite,;adsorption; methyl orange,;methylene blue.
Journal of Shandong University of Architecture and Engineering.Vol21(3)(2006),pp.234-238
The Adsorption of Four Pesticides in Wastewater by Cetyltrimethylammonium Bromide(CTMAB)Modified Bentonites.Chinese Journal of Pesticide Science.Vol2(3)(2000),pp.80-84
[6]Martinez-Ortiz M.J.Catalytic Hydrotreating of Heavy Vacuum Gas Oil on AI-and Ti-pillared Clays Prepared by Cconventional and Microwave Irradiation Methods.Microporous and Mesoporous Materials, (58) (2003),pp73-80
Journal of Shandong University of Architecture and Engineering.Vol21(3)(2006),pp.234-238
The Adsorption of Four Pesticides in Wastewater by Cetyltrimethylammonium Bromide(CTMAB)Modified Bentonites.Chinese Journal of Pesticide Science.Vol2(3)(2000),pp.80-84
[6]Martinez-Ortiz M.J.Catalytic Hydrotreating of Heavy Vacuum Gas Oil on AI-and Ti-pillared Clays Prepared by Cconventional and Microwave Irradiation Methods.Microporous and Mesoporous Materials, (58) (2003),pp73-80
Online since: April 2013
Authors: Dionys Van Gemert
Polymers represent rather a small share of construction materials, but they can influence the properties of cementitious materials to a great extent.
The need for raw materials is reduced and the environment is spared.
Polymer-modified mortar and concrete are very attractive repair materials because of their excellent adhesion to old concrete and other mineral materials.
Journal of Cement and Concrete Composites,Vol 27: 926-933
New trends in concrete-polymer composite materials and systems.
The need for raw materials is reduced and the environment is spared.
Polymer-modified mortar and concrete are very attractive repair materials because of their excellent adhesion to old concrete and other mineral materials.
Journal of Cement and Concrete Composites,Vol 27: 926-933
New trends in concrete-polymer composite materials and systems.
Online since: September 2020
Authors: Jian Huang, Zhe Lei, Qian Zhang, Mei Juan Su, Liang Liu
Especially, silver (Ag) nanostructures have been intensively studied and widely applied in many fields, because they were found to be the most effective materials for SERS since 1974 reported by Fleischman et al[9].
Experimental Section Chemicals and Materials: Sodium chloride (NaCl), ammonium chloride (NH4Cl), and R6G were purchased from Sigma-Aldrich.
Other materials were provided by Shanghai Aladdin Chemical Reagent Company.
YCS18111007), and National Natural Science Foundation of China (No. 11847140).
Arrays of cone-shaped ZnO nanorods decorated with Ag nanoparticles as 3D surface-enhanced Raman scattering substrates for rapid detection of trace polychlorinated biphenyls, Advanced Functional Materials, 22 (2012) 218-224
Experimental Section Chemicals and Materials: Sodium chloride (NaCl), ammonium chloride (NH4Cl), and R6G were purchased from Sigma-Aldrich.
Other materials were provided by Shanghai Aladdin Chemical Reagent Company.
YCS18111007), and National Natural Science Foundation of China (No. 11847140).
Arrays of cone-shaped ZnO nanorods decorated with Ag nanoparticles as 3D surface-enhanced Raman scattering substrates for rapid detection of trace polychlorinated biphenyls, Advanced Functional Materials, 22 (2012) 218-224
Online since: August 2014
Authors: Fusahito Yoshida, Tetsuo Naka, Takeshi Uemori, Michihiro Takiguchi, Hiroshi Miyake
Consistent tangent modulus for elasto-plastic materials.
Mechanical Sciences, 19 (1979), pp. 505-520
Uemori, A Model of Large-Strain Cyclic Plasticity and its Application to Springback Simulation, Key Engineering Materials, Vols. 233-236, 2003, pp.47-58
Abe, Modeling of Large-Strain Cyclic Plasticity for Accurate Springback Simulation, Key Engineering Materials Vols. 340-341, 2007, pp. 811-816
Yoshida, Plastic Deformation Behavior of High Strength Steel Sheet under Non-proportional Loading and Its Modeling, Key Engineering Materials Vols. 340-341, 2007, pp. 895-900
Mechanical Sciences, 19 (1979), pp. 505-520
Uemori, A Model of Large-Strain Cyclic Plasticity and its Application to Springback Simulation, Key Engineering Materials, Vols. 233-236, 2003, pp.47-58
Abe, Modeling of Large-Strain Cyclic Plasticity for Accurate Springback Simulation, Key Engineering Materials Vols. 340-341, 2007, pp. 811-816
Yoshida, Plastic Deformation Behavior of High Strength Steel Sheet under Non-proportional Loading and Its Modeling, Key Engineering Materials Vols. 340-341, 2007, pp. 895-900
Online since: June 2014
Authors: Xin Sheng Xu, Yu Ling Zhao, Guo Ming Wang
We have carried out the random sampling inspection for raw materials.
In addition to the supervision of the whole process of construction site, reinforcing materials are tested for mechanical properties test.
[2] Structure of carbon fiber reinforced technical manuals, civil defense science institute of Shanghai, Shanghai Gilgamesh solid building materials co., LTD
Experimental Research on Shear Behavior of RC Beams Strengthened with BFRP Sheets [J].Journal of Hebei Institute of Architecture and Civil Engineering. 2008 (3)
Journal of Tongji University, 2009, 37(9): 1153-1156.
In addition to the supervision of the whole process of construction site, reinforcing materials are tested for mechanical properties test.
[2] Structure of carbon fiber reinforced technical manuals, civil defense science institute of Shanghai, Shanghai Gilgamesh solid building materials co., LTD
Experimental Research on Shear Behavior of RC Beams Strengthened with BFRP Sheets [J].Journal of Hebei Institute of Architecture and Civil Engineering. 2008 (3)
Journal of Tongji University, 2009, 37(9): 1153-1156.
Online since: January 2015
Authors: Pavlo Maruschak, Andriy Pylypenko, Mykola Chausov, Valentyn Berezin, Kateryna Volyanska, Olegas Prentkovskis
Introduction
It is known that some distance away from thermodynamic equilibrium, a few new, at times unique physical and mechanical properties of materials are found [1].
In general, experimental investigations into the effect of dynamic non-equilibrium processes (DNPs) on the mechanical behaviour of various structural materials are of particular importance [3–5].
These newly formed dissipative structures account for a noticeable variation in the initial mechanical properties of materials under further static and cyclic deformation [6].
Turchak, et al., Peculiarities of structural transformation in plastic materials under abrupt changes in loading conditions, Phys.
Student, Effect of high-force impulse loads on the modification of mechanical properties of heat-resistant steel after service, Estonian Journal of Engineering 18 (2012) 251–258
In general, experimental investigations into the effect of dynamic non-equilibrium processes (DNPs) on the mechanical behaviour of various structural materials are of particular importance [3–5].
These newly formed dissipative structures account for a noticeable variation in the initial mechanical properties of materials under further static and cyclic deformation [6].
Turchak, et al., Peculiarities of structural transformation in plastic materials under abrupt changes in loading conditions, Phys.
Student, Effect of high-force impulse loads on the modification of mechanical properties of heat-resistant steel after service, Estonian Journal of Engineering 18 (2012) 251–258
Online since: December 2004
Authors: S.Z. Li, Jian Cheng, W.Q. Ma
Materials Science Forum Vols. *** (2004) pp.358-361
online at http://scientific.net
2004 Trans Tech Publications, Switzerland
A Method to Forecast the Cohesive Zone of Blast Furnace
S.Z.
Materials Science Forum Vols. *** 359 r(k-1) ---the inner radius of a homocentric circle Fig. 2 the calculated r(k) ---the outer radius of a homocentric circle shape of the cohesive zone R(k) --the radius of this homocentric circle's center of gravity Fig.1 The divided blast furnace The Mass Conservation Equations in Each Homocentric Circle.
From this heat Advances in Materials Manufacturing Science and Technology 360 conservation equation, we find out the differential equation relationship[3] between the height and the temperature in the inner blast furnace as follows: SRH TTSH dZ Twd sg gs gg ××∆×−+−××= )1()( )( β ( 5 ) SRH TTSH dZ Twd s g gs ss ××∆×+−××= β) ( )( (6) In these two equations, Z means the height variable; Tg ,Ts mean the temperatures of blast furnace gas and blast furnace ore respectively.
As a whole, this method can estimate the shape and height of the Materials Science Forum Vols. *** 361 blast furnace's cohesive zone.
Qiu, et al: Journal of Wuhan Yejin University of Science and Technology Vol. 21 (1998), p. 264 (in Chinese) [3] T.J.
Materials Science Forum Vols. *** 359 r(k-1) ---the inner radius of a homocentric circle Fig. 2 the calculated r(k) ---the outer radius of a homocentric circle shape of the cohesive zone R(k) --the radius of this homocentric circle's center of gravity Fig.1 The divided blast furnace The Mass Conservation Equations in Each Homocentric Circle.
From this heat Advances in Materials Manufacturing Science and Technology 360 conservation equation, we find out the differential equation relationship[3] between the height and the temperature in the inner blast furnace as follows: SRH TTSH dZ Twd sg gs gg ××∆×−+−××= )1()( )( β ( 5 ) SRH TTSH dZ Twd s g gs ss ××∆×+−××= β) ( )( (6) In these two equations, Z means the height variable; Tg ,Ts mean the temperatures of blast furnace gas and blast furnace ore respectively.
As a whole, this method can estimate the shape and height of the Materials Science Forum Vols. *** 361 blast furnace's cohesive zone.
Qiu, et al: Journal of Wuhan Yejin University of Science and Technology Vol. 21 (1998), p. 264 (in Chinese) [3] T.J.
Online since: September 2013
The conference scopes included but were not limited to: linear machine design and
analysis, linear motor drive systems and control, actuators, maglev linear systems, linear
motor applications, renewable energies associated with linear machines, and high-speed
or low-speed/high-torque rotary machines and drives, etc.
4 keynote speeches were delivered by outstanding researchers, and 1248 papers were
accepted for presentation at the conference, of which 386 papers are published by TTP, in
Applied Mechanics and Materials (AMM) Journal (ISSN: 1660-9336).
Moreover, it was supported by the Natural Science Foundation of China (NSFC).
Shi, Chinese Academy of Sciences, China Y.Y.
Parsa, Rensselaer Polytechnic Institute, USA Chenglin Gu, Huazhong University of Science and Technology, China Liucheng Jiao, Zhengzhou University, China Nengqiang Jin, Chinese Academy of Sciences, China Guangyou Li, Shandong University, China Deliang Liang, Xi'an Jiaotong University, China Guobin Lin, National Maglev Traffic Engineering Technology Research Center,China Mingyao Lin, Southeast University, China Shiying Yuan, Henan Polytechnic University,China Fengge Zhang, Shenyang University of Technology, China Rongxiang Zhao, Zhejiang University, China Zhengming Zhao, Tsinghua University, China Libin Zhou, Huazhong University of Science and Technology, China Jibin Zou, Harbin Institute of Technology, China LDIA 2013 Reviewers Baodong Bai, Shenyang University of Technology, China Baoquan Kou, Harbin Institute of Technology, China Chengzhi Fan, Zhejiang University, China Chenglin Gu, Huazhong University of Science and Technology, China Dan Sun,
Shi, Chinese Academy of Sciences, China Longya Xu, Ohio State University, USA Libin Zhou, Huazhong University of Science and Technology, China Liucheng Jiao ,Zhengzhou University, China Liang Guo, Zhejiang Sci-Tech University, China Ming Cheng, Southeast university, China Mingyao Lin, Southeast University, China M.C.Tsai, National Cheng Kung University, Taiwan Nengqiang Jin ,Chinese Academy of Sciences, China Ping Zheng, Harbin Institute of Technology, China Qinfen Lu, Zhejiang University, China Rongxiang Zhao, Zhejiang University, China Shiying Yuan, Henan Polytechnic University, China Shuhong Wang, Taiyuan University of Technology, China W.N.
Moreover, it was supported by the Natural Science Foundation of China (NSFC).
Shi, Chinese Academy of Sciences, China Y.Y.
Parsa, Rensselaer Polytechnic Institute, USA Chenglin Gu, Huazhong University of Science and Technology, China Liucheng Jiao, Zhengzhou University, China Nengqiang Jin, Chinese Academy of Sciences, China Guangyou Li, Shandong University, China Deliang Liang, Xi'an Jiaotong University, China Guobin Lin, National Maglev Traffic Engineering Technology Research Center,China Mingyao Lin, Southeast University, China Shiying Yuan, Henan Polytechnic University,China Fengge Zhang, Shenyang University of Technology, China Rongxiang Zhao, Zhejiang University, China Zhengming Zhao, Tsinghua University, China Libin Zhou, Huazhong University of Science and Technology, China Jibin Zou, Harbin Institute of Technology, China LDIA 2013 Reviewers Baodong Bai, Shenyang University of Technology, China Baoquan Kou, Harbin Institute of Technology, China Chengzhi Fan, Zhejiang University, China Chenglin Gu, Huazhong University of Science and Technology, China Dan Sun,
Shi, Chinese Academy of Sciences, China Longya Xu, Ohio State University, USA Libin Zhou, Huazhong University of Science and Technology, China Liucheng Jiao ,Zhengzhou University, China Liang Guo, Zhejiang Sci-Tech University, China Ming Cheng, Southeast university, China Mingyao Lin, Southeast University, China M.C.Tsai, National Cheng Kung University, Taiwan Nengqiang Jin ,Chinese Academy of Sciences, China Ping Zheng, Harbin Institute of Technology, China Qinfen Lu, Zhejiang University, China Rongxiang Zhao, Zhejiang University, China Shiying Yuan, Henan Polytechnic University, China Shuhong Wang, Taiyuan University of Technology, China W.N.