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Online since: January 2013
Authors: Wu Yao, Man Jian Wu
Solubility Behavior of the Hydration Products in the Pore Solution of Hydrated Cement Pastes
Wu Yaoa, Manjian Wub
Institute of Smart Construction Materials, School of Materials Science and Engineering,
Tongji University, Shanghai 201804, China
ayaowuk@tongji.edu.cn, b08wumanjian@tongji.edu.cn
Keywords: Solubility; Pore solution; Hydrated cement paste
Abstract.
Barbara, Thermodynamic equilibrium calculations in cementitious systems, Materials and Structures, 43 (2010) 1413-1433
Journal of the American Ceramic Society,69 (1986) 614-618
Journal of the American Ceramic Society,70 (1987) 743-749
Environmental Science & Technology, 30 (1996) 2286-2293
Barbara, Thermodynamic equilibrium calculations in cementitious systems, Materials and Structures, 43 (2010) 1413-1433
Journal of the American Ceramic Society,69 (1986) 614-618
Journal of the American Ceramic Society,70 (1987) 743-749
Environmental Science & Technology, 30 (1996) 2286-2293
Online since: January 2019
Authors: Xiao Ze Jiang, Jia Ming Xu, Han Tong, Dan Yue Wang, Mei Fang Zhu
Preparation and Characterization of pH Responsive Complex Micelles with Dynamic Boronate Cross-Linking
Jiaming Xua, Danyue Wangb, Han Tongc, Xiaoze Jiangd* and Meifang Zhue
College of Materials Science and Engineering, State Key Laboratory for Modification of Chemical
Fibers and Polymer Materials, Donghua University, Shanghai 201620, China
a18021054459@163.com, bwang.danyue@163.com, c15000768276@163.com d*xiaozejiang@dhu.edu.cn, ezhumf@dhu.edu.cn
Keywords: pH responsive, complex micelles, boronate, dynamic covalent cross-linking
Abstract.
Experimental Section Materials.
Acknowledgments This work was financially supported by the National Natural Science Foundation of China (No.51473035 and No.21204010), the Research Program of Shanghai Science and Technology Commission (No. 13NM1400102), the Fundamental Research Funds for the Central Universities, and the Program for Changjiang Scholars and the Innovative Research Team in University (T2011079 and IRT1221).
Amiji, A review of stimuli-responsive nanocarriers for drug and gene delivery, Journal of Controlled Release. 126 (2008) 187-204
Gao, Research Progress of Nanoparticle Carriers and Their Biological Effects, Chinese Pharmaceutical Journal. 52 (2017) 814-818
Experimental Section Materials.
Acknowledgments This work was financially supported by the National Natural Science Foundation of China (No.51473035 and No.21204010), the Research Program of Shanghai Science and Technology Commission (No. 13NM1400102), the Fundamental Research Funds for the Central Universities, and the Program for Changjiang Scholars and the Innovative Research Team in University (T2011079 and IRT1221).
Amiji, A review of stimuli-responsive nanocarriers for drug and gene delivery, Journal of Controlled Release. 126 (2008) 187-204
Gao, Research Progress of Nanoparticle Carriers and Their Biological Effects, Chinese Pharmaceutical Journal. 52 (2017) 814-818
Online since: March 2011
Authors: Fang Hong Sun, Bin Shen, Liang Wang, Jian Guo Zhang
To evaluate the cutting performances of as-fabricated CVD diamond coated endmills, dry milling tests are conducted using aluminum alloy as the workpiece material.
The result suggests that depositing diamond coating on WC-Co endmills is a viable way to improve their cutting performances in machining of aluminum alloy materials.
The cobalt cemented tungsten carbide (WC-Co) ,which has long been acknowledged as cutting tool materials of choice, is one of the most suitable substrate materials for producing diamond-coated tools.[1-3] Aluminum alloy has a good machinability for its low hardness and strength, high thermal conductivity, and has been widely used in many industrial products.
Acknowledgements This research is sponsored by the National Natural Science Foundation of China (no. 50975177), the Shanghai Science and Technology Commission (0952nm01700).
Thompson, Journal of Applied Metalworking Vol.1 (1980) p.76
The result suggests that depositing diamond coating on WC-Co endmills is a viable way to improve their cutting performances in machining of aluminum alloy materials.
The cobalt cemented tungsten carbide (WC-Co) ,which has long been acknowledged as cutting tool materials of choice, is one of the most suitable substrate materials for producing diamond-coated tools.[1-3] Aluminum alloy has a good machinability for its low hardness and strength, high thermal conductivity, and has been widely used in many industrial products.
Acknowledgements This research is sponsored by the National Natural Science Foundation of China (no. 50975177), the Shanghai Science and Technology Commission (0952nm01700).
Thompson, Journal of Applied Metalworking Vol.1 (1980) p.76
Online since: July 2014
Authors: Jun Hong Jin, Sheng Lin Yang, Rong Rong Hao
The requirement is strict to the heat resistance and dielectric properties of the related materials [4, 5].
It indicated that carbon nanotubes play an important role in terms of reducing dielectric materials.
Materials Review, 2003, 6: 015
Review of polymer materials with low dielectric constant [J].
Journal of Polymer Science Part A: Polymer Chemistry, 2008, 46(24): 8159-8169.
It indicated that carbon nanotubes play an important role in terms of reducing dielectric materials.
Materials Review, 2003, 6: 015
Review of polymer materials with low dielectric constant [J].
Journal of Polymer Science Part A: Polymer Chemistry, 2008, 46(24): 8159-8169.
Online since: June 2008
Authors: Young Eui Shin, S.W. Han, Il Je Cho, J.G. Han, M.G. Choi, Y.T. Kim, Jong Min Kim, Kyong Ho Chang
Considering the environmental restriction such as
ROHS, the QFP Cu LF (Lead-frame) was coated with lead-free materials (Sn, Sn-3Bi).
The QFP lead (Cu) was plated with two kind of lead-free materials (Sn and Sn-3Bi).
Wang, Journal of Alloys and Compounds Vol. 381 (2004) p. 202-207
Feng, Journal of Alloys and Compounds Vol. 397 (2005) p. 260-264
Kobayashi, Science and Technology of Advanced Materials Vol. 5 (2004) p. 267-276
The QFP lead (Cu) was plated with two kind of lead-free materials (Sn and Sn-3Bi).
Wang, Journal of Alloys and Compounds Vol. 381 (2004) p. 202-207
Feng, Journal of Alloys and Compounds Vol. 397 (2005) p. 260-264
Kobayashi, Science and Technology of Advanced Materials Vol. 5 (2004) p. 267-276
Online since: June 2010
Authors: Yoshisato Kimura, Yoshinao Mishima, Chihiro Asami, Yaw Wang Chai
Thermoelectric Performance of Half-Heusler TiNiSn Alloys
Fabricated by Solid-Liquid Reaction Sintering
Yoshisato Kimura1,a, Chihiro Asami2,b, Yaw-Wang Chai1,c
and Yoshinao Mishima1,d
1
Tokyo Institute of Technology, Materials Science and Engineering, 4259-G3-23 Nagatsuta,
Midori-ku, Yokohama 226-8502, Japan.
2
Graduate Student, now with Nippon Steel Corporation.
a kimura.y.ac@m.titech.ac.jp, basami.c.ac@m.titech.ac.jp, cchai.y.aa@m.titech.ac.jp, d mishima.y.ab@m.titech.ac.jp Keywords: Thermoelectric materials, half-Heusler compounds, diffusion path, phase equilibrium, solid-liquid reaction sintering.
Acknowledgment The present work is partially supported by Grant-in-Aid for Scientific Research category A 19206073 (FY2007-2009) from the Japan Society for the Promotion of Science.
Proc., Vol. 886, Materials and Technologies for Direct Thermal-to-Electric Energy Conversion, Mater.
Yamanaka: Journal of Alloys and Compounds, Vol. 469 (2009), p 50
a kimura.y.ac@m.titech.ac.jp, basami.c.ac@m.titech.ac.jp, cchai.y.aa@m.titech.ac.jp, d mishima.y.ab@m.titech.ac.jp Keywords: Thermoelectric materials, half-Heusler compounds, diffusion path, phase equilibrium, solid-liquid reaction sintering.
Acknowledgment The present work is partially supported by Grant-in-Aid for Scientific Research category A 19206073 (FY2007-2009) from the Japan Society for the Promotion of Science.
Proc., Vol. 886, Materials and Technologies for Direct Thermal-to-Electric Energy Conversion, Mater.
Yamanaka: Journal of Alloys and Compounds, Vol. 469 (2009), p 50
Online since: December 2011
Authors: Jun Min Chen
The infiltration media of column 3# is a kind of composite material, which is the homogeneous mixture of 1/6 sponge iron and 5/6 sand; The infiltration media of column 4# is another kind of composite material, which consists of 150mm-thick sand, 50mm-thick sponge iron and 100mm-thick sand from the top to the bottom.
According to comparative experiment results about the total phosphorus removal efficiency of 4 kinds of infiltration media combinations, the phosphorus removal efficiency of the infiltration media including 1/6 sponge iron is much better than the infiltration media only including sand, and the phosphorus removal efficiency of the composite material with the same weight of sponge iron mixing homogeneously with sand, is better than the one of the composite material with the same weight of sponge iron concentrated.
Tang: Earth Science Frontier Vol. 8 (2001), p. 155 In Chinese
Zhao: China Environmental Science Vol. 26 (2006), p. 500 In Chinese
Li: Chinese Journal of Ecology Vol. 27 (2008), p. 573 In Chinese
According to comparative experiment results about the total phosphorus removal efficiency of 4 kinds of infiltration media combinations, the phosphorus removal efficiency of the infiltration media including 1/6 sponge iron is much better than the infiltration media only including sand, and the phosphorus removal efficiency of the composite material with the same weight of sponge iron mixing homogeneously with sand, is better than the one of the composite material with the same weight of sponge iron concentrated.
Tang: Earth Science Frontier Vol. 8 (2001), p. 155 In Chinese
Zhao: China Environmental Science Vol. 26 (2006), p. 500 In Chinese
Li: Chinese Journal of Ecology Vol. 27 (2008), p. 573 In Chinese
Online since: February 2013
Authors: Ming Long, Guo Liang Hu, Shao Long Wang
Introduction
Magnetorheological (MR) materials are smart materials which have MR effects and many unique properties under magnetic fields.
Since their discovery by Rabinow in 1948 [1], MR materials have developed into a family with MR fluids (MRFs), MR foams and MR elastomers (MREs).
Dai: Smart Materials and Structures Vol. 13 (2004), p.1 [3] G.Y.
Wang: Smart Materials and Structures Vol. 15 (2006), p.787 [4] K.X.
Murthy: Journal of Sound and Vibration, Vol. 330 (2011) p.1837
Since their discovery by Rabinow in 1948 [1], MR materials have developed into a family with MR fluids (MRFs), MR foams and MR elastomers (MREs).
Dai: Smart Materials and Structures Vol. 13 (2004), p.1 [3] G.Y.
Wang: Smart Materials and Structures Vol. 15 (2006), p.787 [4] K.X.
Murthy: Journal of Sound and Vibration, Vol. 330 (2011) p.1837
Online since: December 2013
Authors: Yang Yang, Wen Wu Zhang, Xi Liang Chen
Development of Energy Finite Element Analysis in Vibration
Analysis of Composite Laminate Plate Structures
Yang Yang 1,a, Xiliang Chen 1,b and Wenwu Zhang 1,c
1 Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences,
Ningbo 315201, Zhejiang, China
ayangyang@nimte.ac.cn, bchenxl@nimte.ac.cn, czhangwenwu@nimte.ac.cn
Keywords: Energy Finite Element Analysis, High Frequency Vibration, Energy Transmission, Composite Laminate Plate, Energy Density.
Group speed of transverse wave propagation for isotropic materials can be expressed as cg =2(Dω2/ρh)1/4
The composite laminate plates were assumed to be equivalent isotropic materials using the average concept.
Journal of vibration Acoustics Stress and Reliability in Design-Transaction of the ASME.
Zhao: AIAA Journal.
Group speed of transverse wave propagation for isotropic materials can be expressed as cg =2(Dω2/ρh)1/4
The composite laminate plates were assumed to be equivalent isotropic materials using the average concept.
Journal of vibration Acoustics Stress and Reliability in Design-Transaction of the ASME.
Zhao: AIAA Journal.
Online since: August 2005
Authors: Bo Zhao, G.F. Gao, X.H. Zhang, C.S. Liu
Introduction
Materials are the very basis for our survival and development.
It indicates that cutting process of MMCs is not completely plastic but similar to that of brittle materials.
It leads to the differences from deformation mechanism of parent materials, so, plastic and semi-plastic segmental chips are obtained.
Materials Science and Engineering, 1992, A154:34-41 [2] Jeong-Du Kim, In-Hyu Choi, Micro surface phenomenon of ductile cutting in the ultrasonic vibration cutting of optical plastics, J of Materials Processing Technology, 1997, 68(1):89-98 [3] J.
Chinese Journal of Mechanical Engineering,1994,30(6)
It indicates that cutting process of MMCs is not completely plastic but similar to that of brittle materials.
It leads to the differences from deformation mechanism of parent materials, so, plastic and semi-plastic segmental chips are obtained.
Materials Science and Engineering, 1992, A154:34-41 [2] Jeong-Du Kim, In-Hyu Choi, Micro surface phenomenon of ductile cutting in the ultrasonic vibration cutting of optical plastics, J of Materials Processing Technology, 1997, 68(1):89-98 [3] J.
Chinese Journal of Mechanical Engineering,1994,30(6)