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Experimental Research on Engineering Properties of Natural Coarse Saline Soil as the Subgrade Filler
Online since: March 2015
Authors: Hong Bin Deng, Qiu Mei Zhang, Jin Tao Tang
The outer of hose for soil sample shall also be covered with a layer of insulating material.
Filling material before construction shall be uniformly mixed and cured.
China Journal of Highway and Transport, 1997,10(1), p:10–15 In Chinese
Chinese Journal of Geotechnical Engineering, 1996,18(3), p: 96–99 In Chinese
Journal of Colloid and Interface Science, 2001. 243(1).
Filling material before construction shall be uniformly mixed and cured.
China Journal of Highway and Transport, 1997,10(1), p:10–15 In Chinese
Chinese Journal of Geotechnical Engineering, 1996,18(3), p: 96–99 In Chinese
Journal of Colloid and Interface Science, 2001. 243(1).
Online since: June 2013
Authors: Zhao Xian Xiong, Jin Bao Huang, Qiang Zheng, Hao Xue, Guo Feng Zhang, Bai Qiang You
Experimental
MCT materials were prepared via the conventional solid-state reaction route with raw chemical reagents of MgO (AR, 98%), CaCO3 (AR, 99%) and TiO2 (AR, 99%).
Olds: Journal of the American Ceramic Society Vol. 56 (1973), p. 352
Baptista: Materials Research Bulletin Vol. 29 (1994), p.1017-1023
Chien: Journal of Alloys and Compounds Vol. 471 (2009), p. 347-351
Jiang: Advanced Materials Research Vol. 433-440 (2012), p. 3525-3530
Olds: Journal of the American Ceramic Society Vol. 56 (1973), p. 352
Baptista: Materials Research Bulletin Vol. 29 (1994), p.1017-1023
Chien: Journal of Alloys and Compounds Vol. 471 (2009), p. 347-351
Jiang: Advanced Materials Research Vol. 433-440 (2012), p. 3525-3530
Online since: October 2011
Authors: Roy Paily Palathinkal, N. Ramakrishnan, Harshal B. Nemade
When exposed to UV, SU-8's long molecular chains cross-link causes solidification of the material.
The materials, method used in the experiments and results on the morphology of the fabricated SU-8 pillars on piezoelectric substrates and SAW transducers are presented in the following sections.
Materials and Method Several trials are carried out to optimize the recipe to fabricate HAR SU-8 pillars on Lithium Niobate and Aluminium substrates.
Gale: Journal of Micromechanics and Microengineering Vol. 8 (2008), p. 045021
Palathinkal: IEEE Sensor Journal Vol. 11 (2011), p.430
The materials, method used in the experiments and results on the morphology of the fabricated SU-8 pillars on piezoelectric substrates and SAW transducers are presented in the following sections.
Materials and Method Several trials are carried out to optimize the recipe to fabricate HAR SU-8 pillars on Lithium Niobate and Aluminium substrates.
Gale: Journal of Micromechanics and Microengineering Vol. 8 (2008), p. 045021
Palathinkal: IEEE Sensor Journal Vol. 11 (2011), p.430
Online since: October 2014
Authors: Yong Hua Ding, Tao Yue, Peng Jing, Peng Lai Zuo, Chen Long Wang, Shu Fang Qi, Bin Jie Han
All of gypsum used for building materials should be FGD gypsum.
Journal of Hazardous Materials, 2011.192:1659–1666
Tsimas, Alternative Calcium-sulfate-bearing Materials as Cement Retarders: Part II.
Beijing Building Materials Academy of Sciences Research,115-121
New Building Materials, 1999. 12:37-40
Journal of Hazardous Materials, 2011.192:1659–1666
Tsimas, Alternative Calcium-sulfate-bearing Materials as Cement Retarders: Part II.
Beijing Building Materials Academy of Sciences Research,115-121
New Building Materials, 1999. 12:37-40
Online since: June 2013
Authors: Jun Liu, Yun Zhang, Run Qing Liu, Fang Zhi Lin, Zi Yan Huang
Experiments
Raw Materials.
Acknowledgement The project supported by the National Natural Science Foundation of China (NO.51072122).
Journal of the Chinese Ceramic Society (2007), pp.167-171
Materials review B (2012),pp.114-117
Journal of the Chinese ceramic society (1996), pp.466-469
Acknowledgement The project supported by the National Natural Science Foundation of China (NO.51072122).
Journal of the Chinese Ceramic Society (2007), pp.167-171
Materials review B (2012),pp.114-117
Journal of the Chinese ceramic society (1996), pp.466-469
Online since: March 2010
Authors: Cheng Jun Han, Xin Bo Lin, Yan Bo Li
Fig.1 General process o sheet metal forming based on Dynaform
Simulation of aluminum alloy hemispherical components
Geometrical shape and material.
The material of aluminum alloy sheets used in the research is 5754-O/H32 and its main ingredient is shown in Table 1.
Tab.2 Experimental scheme of simulation Tab.1 Material ingredient of 5754-O/H32/% Fig.3 Simulation model Simulation results analysis.
References [1] Jian Cai, Chunyan Feng: Journal of MaoMing University, Vol.18(3)(2008), p. 40 (In Chinese) [2] Hongzhou Lu, Mingtu Ma, Jianghai You and Zhigang Li: World Nonferrous Metals, (03)(2008),p. 66 (In Chinese) [3] Bailing Wang: Auto Industry Research, (06)(2000),p. 31 (In Chinese) [4] Information on http://natt.pnl.gov/technologies.htm [5] Halil.Ibrahim Demirci,Cemal Esner,Mustafa Yasar: Journal of materials processing technology,(206)(2008),p.152-160 [6] Shuixian Chen, Hui Zhang, Xinxiang Zeng and Deng Xuefeng: Forging & Stamping Technology, vol.33(2)(2008), p. 128 (In Chinese) [7] Xiaoyong Qiao: Enterprise Science and Technology & Development, (16)(2007),p. 75 (In Chinese) [8] Zaimei Zhang, Chenbo Yin and Zhiyuan Lu: Manufacture Information Engineering of China, Vol. 36(05)(2007),p. 25 (In Chinese) [9] Wang Xiufeng, Liang Lihui: Blank forming CAE design and application based on DYNAFORM ( Beihang University Press, China 2008) (In Chinese)
The material of aluminum alloy sheets used in the research is 5754-O/H32 and its main ingredient is shown in Table 1.
Tab.2 Experimental scheme of simulation Tab.1 Material ingredient of 5754-O/H32/% Fig.3 Simulation model Simulation results analysis.
References [1] Jian Cai, Chunyan Feng: Journal of MaoMing University, Vol.18(3)(2008), p. 40 (In Chinese) [2] Hongzhou Lu, Mingtu Ma, Jianghai You and Zhigang Li: World Nonferrous Metals, (03)(2008),p. 66 (In Chinese) [3] Bailing Wang: Auto Industry Research, (06)(2000),p. 31 (In Chinese) [4] Information on http://natt.pnl.gov/technologies.htm [5] Halil.Ibrahim Demirci,Cemal Esner,Mustafa Yasar: Journal of materials processing technology,(206)(2008),p.152-160 [6] Shuixian Chen, Hui Zhang, Xinxiang Zeng and Deng Xuefeng: Forging & Stamping Technology, vol.33(2)(2008), p. 128 (In Chinese) [7] Xiaoyong Qiao: Enterprise Science and Technology & Development, (16)(2007),p. 75 (In Chinese) [8] Zaimei Zhang, Chenbo Yin and Zhiyuan Lu: Manufacture Information Engineering of China, Vol. 36(05)(2007),p. 25 (In Chinese) [9] Wang Xiufeng, Liang Lihui: Blank forming CAE design and application based on DYNAFORM ( Beihang University Press, China 2008) (In Chinese)
Online since: July 2011
Authors: Young Shin Lee, Hyun Seung Lee
(a) Geometric model (b) FE-model and Boundary condition
Fig. 3 Analysis model of end coupling for structural analysis
Table 1 Mechanical properties of top spindle assembly for structurla analysis[6,7]
Material
SNCM-8
ALBC-3
Part
Spindle, Coupling
Slipper metal
Young's Modulus
205 GPa
100 GPa
Poisson's ratio
0.29
0.23
Density
7850 kg/m3
8930 kg/m3
Parameter study
The dimension of initial model is shown in Figure 5.
Langella: Dimensional analysis of a new type of groove for steel rebar rolling, Journal of Materials Processing Technology, PROTEC-9261.
Lee: Contact Damage Analysis of Hot Mill Spindle Assembly with Kinematics Simulation, Key Engineering Materials, Vols. 326-328 (2005), pp. 1121-1124
[7] Hyun-Seung Lee and Young-Shin Lee: Optimal Contact Design and Allowable Limit on Spindle Assembly of AL Hot Rolling Process, Journal of Mechanical Science and Technology, Vol. 22(2008), No. 2, pp. 350~246
Langella: Dimensional analysis of a new type of groove for steel rebar rolling, Journal of Materials Processing Technology, PROTEC-9261.
Lee: Contact Damage Analysis of Hot Mill Spindle Assembly with Kinematics Simulation, Key Engineering Materials, Vols. 326-328 (2005), pp. 1121-1124
[7] Hyun-Seung Lee and Young-Shin Lee: Optimal Contact Design and Allowable Limit on Spindle Assembly of AL Hot Rolling Process, Journal of Mechanical Science and Technology, Vol. 22(2008), No. 2, pp. 350~246
Online since: July 2008
Authors: G.Y. Xiong, H.L. Chen, Wen Hui Li, Shi Chun Yang, Jian Mei Wang
China
2 Taiyuan University of Science and Technology
3 College of Electrical & Power Engineering, Taiyuan University of Technology,
No.138, Waliu road, Taiyuan. 030024, P.
Material type Al2O3+Fe, particle diameter 125μm, fill amount (10-30) g.
So, such type was mainly applied in finishing work piece of nonmagnetic inductive materials.
Yang: Chinese Journal of Mechanical Engineering.
Yamaguchi: J. of JSME International Journal.
Material type Al2O3+Fe, particle diameter 125μm, fill amount (10-30) g.
So, such type was mainly applied in finishing work piece of nonmagnetic inductive materials.
Yang: Chinese Journal of Mechanical Engineering.
Yamaguchi: J. of JSME International Journal.
Online since: February 2018
Authors: Ling Xin Zhang, Tao Wang, Bai Jie Zhu
Journal of Structural Engineering 2006; 132(3): 478-483
Journal of Structural Engineering 2008; 54: 372-381
Journal of Constructional Steel Research 2012; 75:38-44
Journal of Constructional Steel Research 2012; 75(7): 116-130
Journal of Constructional Steel Research 2014; 99(8): 187-193
Journal of Structural Engineering 2008; 54: 372-381
Journal of Constructional Steel Research 2012; 75:38-44
Journal of Constructional Steel Research 2012; 75(7): 116-130
Journal of Constructional Steel Research 2014; 99(8): 187-193
Online since: June 2012
Authors: Yong Liu, Wei Zhang, Tian Hang Yao, Ming Yang Zhang, Di Ni Wang
Journal of the Graduate School of the Chinese Academy of Science 22 (2005) 230-238
Journal of Metsis 10 (1956) 1348-1353
Gamma titanium aluminides as prospective structural materials.
Comparative Structural Studies of nanocrystalline Materials Processed by Different Techniques.
Materials Science Forum, 235-238 (1996) 497-506
Journal of Metsis 10 (1956) 1348-1353
Gamma titanium aluminides as prospective structural materials.
Comparative Structural Studies of nanocrystalline Materials Processed by Different Techniques.
Materials Science Forum, 235-238 (1996) 497-506