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Online since: July 2015
Authors: Maria-Diana Vrânceanu, Florin Miculescu, Mihai Cosmin Cotrut, Mihai Tarcolea, Ana Iulia Gherghilescu
Dong, Corrosion properties of S-phase layers formed on medical grade austenitic stainless steel , Journal of Materials Science: Materials in Medicine, 23 (2012), 271 – 281;
[10] J.O.M.
White, Electrochemical materials science: comprehensive treatise of electrochemistry, vol. 4.
Materials Science and Engineering: A, Vol. 432, Iss. 1, (2006), 1-11; [14] C.
Lemons, Biomaterials Science: An Introduction to Materials in Medicine, Second Edition, ed.
An in vitro study, Materials Science and Engineering: C, 47(2015), 384-393; [27] A.S.
White, Electrochemical materials science: comprehensive treatise of electrochemistry, vol. 4.
Materials Science and Engineering: A, Vol. 432, Iss. 1, (2006), 1-11; [14] C.
Lemons, Biomaterials Science: An Introduction to Materials in Medicine, Second Edition, ed.
An in vitro study, Materials Science and Engineering: C, 47(2015), 384-393; [27] A.S.
Research of Surfactants Effect on Methane Hydrate Formation with Properties of Biochemical Materials
Online since: March 2013
Authors: Hui Gao, Lei Ren, Bin Dou
Research of Surfactants Effect on Methane Hydrate Formation with Properties of Biochemical Materials
Bin Dou1, a, Hui Gao1,b and Lei Ren1,c
1Faculty of Engineering, China University of Geosciences, Wuhan 430074, China
abriandou@163.com,bgaohui@21C.com,crenlei@163.com
Keywords: sodium dodecyl sulfate, methane hydrate, biochemical materials, formation
Abstract.
Experiment materials In this experiment, the main materials were used are Sodium dodecyl sulfate and methane.
Journal of Petroleum Technology, (1989), 41(3): 297-301
Journal of Petroleum Science and Engineering, (2005), 46:23-36
The Canadian Journal of Chemical Engineering, (2003), 81; 973–980
Experiment materials In this experiment, the main materials were used are Sodium dodecyl sulfate and methane.
Journal of Petroleum Technology, (1989), 41(3): 297-301
Journal of Petroleum Science and Engineering, (2005), 46:23-36
The Canadian Journal of Chemical Engineering, (2003), 81; 973–980
Online since: September 2013
Authors: Qiu Ju Zheng
Analysis of new materials of computer memory
Zheng Qiuju
Harbin Finance University, Harbin, Heilongjiang, 150000
Keywords: external memory; phase change memory; magnetic materials; crystal form materials
Abstract: Modern computer memory, in addition to cache memory, is mainly divided into two categories: internal memory and external memory.
In this paper, based on a lot of information the author makes a brief analysis of the new material of the external memory, that is, the phase change storage materials, titanium oxide crystals form materials, magnetic materials and organic ferroelectric materials, and comprehensively promote the new research and new development of computer storage materials.
New phase-change memory and the improvement of materials 1-1.
The Ge2Sb2Te5 (GST) phase change materials research has more than 20 years of time.
In short, Ge2Sb2Te5 is the most ideal materials found for phase change.
In this paper, based on a lot of information the author makes a brief analysis of the new material of the external memory, that is, the phase change storage materials, titanium oxide crystals form materials, magnetic materials and organic ferroelectric materials, and comprehensively promote the new research and new development of computer storage materials.
New phase-change memory and the improvement of materials 1-1.
The Ge2Sb2Te5 (GST) phase change materials research has more than 20 years of time.
In short, Ge2Sb2Te5 is the most ideal materials found for phase change.
Online since: September 2013
Authors: Wahyu Kuntjoro, Mohd Kamil Abd Rahman, Ramzyzan Ramly
Illustration of Airbus A380 showing the components made from composite materials [8].
Okabe, "Smart composite sandwich structures for future aerospace application - Damage detection and suppression-: A review.," Journal of Solid Mechanics and Materials Engineering, vol. 1, pp. 3-17, 2007 2007
Ibrahim, "Application of Optical Fiber Bragg Grating Sensor for Structure Monitoring," Materials Science Forum, vol. 517, pp. 202-206, 2006 2006
Takeda, "Real-time detection of Debonding between honeycomb core and facesheet using a small-diameter FBG sensor embedded in adhesive layer," Journal of Sandwich Structures and Materials, vol. 9, pp. 9-33, 2007
Doyle, "Damage assessment of CFRP composite using a time-frequency approach," Journal of Intelligent Material Systems and Structures, 9 January 2012 2012
Okabe, "Smart composite sandwich structures for future aerospace application - Damage detection and suppression-: A review.," Journal of Solid Mechanics and Materials Engineering, vol. 1, pp. 3-17, 2007 2007
Ibrahim, "Application of Optical Fiber Bragg Grating Sensor for Structure Monitoring," Materials Science Forum, vol. 517, pp. 202-206, 2006 2006
Takeda, "Real-time detection of Debonding between honeycomb core and facesheet using a small-diameter FBG sensor embedded in adhesive layer," Journal of Sandwich Structures and Materials, vol. 9, pp. 9-33, 2007
Doyle, "Damage assessment of CFRP composite using a time-frequency approach," Journal of Intelligent Material Systems and Structures, 9 January 2012 2012
Online since: January 2022
Authors: Shi Ping Liu, Wen Jie Xia, Yuan Jing Huang, Zi Yan Ma
Analysis and Optimization of Forming Quality of 3D Concrete Printing Materials
Liu Shiping1,a, Ma Ziyan1,b*, Xia Wenjie1,c and Huang Yuanjing1,d
1School of Mechanical Science and Engineering, Huazhong University of Science and Technology, China
aliushiping@hust.edu.cn, bM202070771@hust.edu.cn, c M202078368@hust.edu.cn, dM201970371@hust.edu.cn
Keywords: 3D concrete printing; concrete material; forming quality
Abstract. 3D concrete printing is a kind of construction method that takes concrete as processing material for extrusion forming.
Rapid Prototyping Journal (2018)
Materials and structures 45.8 (2012): 1221-1232
Huazhong University of Science and Technology, MA thesis
Journal of Materials Processing Technology 271 (2019): 261-270.
Rapid Prototyping Journal (2018)
Materials and structures 45.8 (2012): 1221-1232
Huazhong University of Science and Technology, MA thesis
Journal of Materials Processing Technology 271 (2019): 261-270.
Online since: May 2010
Authors: Zhe Liu
Then, a concrete 'super fuzzy' feature model combined by four
cent-characteristics for fabric materials is obtained, and this model is optimized.
Finally, after some programs experiments, concrete effect of fabric materials defects denoted by 'super fuzzy' feature is validated.
Journal of Donghua University, Natural Science vol.28-2(2002),p.77
Journal of Donghua University, Natural Science vol.26-1(2000),p.6
Journal of Donghua University, Natural Science vol.34-1(2008),p.48
Finally, after some programs experiments, concrete effect of fabric materials defects denoted by 'super fuzzy' feature is validated.
Journal of Donghua University, Natural Science vol.28-2(2002),p.77
Journal of Donghua University, Natural Science vol.26-1(2000),p.6
Journal of Donghua University, Natural Science vol.34-1(2008),p.48
Online since: October 2012
Authors: Yan Rui Guo, Hui Yu Yan, Qing Gong Song
It is important to solve these problems for attaining desirable high-k materials.
So, adding La2O3 to Al2O3 or adding Al2O3 to La2O3 is considered the promising material engineering to get high dielectric constant and good thermal stability materials.
Accompanied by this structural phase transition is a change of the band gap, which is important for performance of high-k gate dielectric materials.
Our results provide a guideline how to adjust composition of such composite materials used as comprehensive performance high-k dielectrics.
Traverse, Materials Research Bulletin Vol. 14 (1979), 303-323
So, adding La2O3 to Al2O3 or adding Al2O3 to La2O3 is considered the promising material engineering to get high dielectric constant and good thermal stability materials.
Accompanied by this structural phase transition is a change of the band gap, which is important for performance of high-k gate dielectric materials.
Our results provide a guideline how to adjust composition of such composite materials used as comprehensive performance high-k dielectrics.
Traverse, Materials Research Bulletin Vol. 14 (1979), 303-323
Online since: June 2015
Authors: Lan Fang Jiang, Jie Gang Mou, Zhuang Zhi Sun, Dong Shun Dai, Evan Wang, Yun Qing Gu, Shui Hua Zheng
Applied Mechanics and Materials, 2014, 461, p 725-730
The measurement of dynamic properties of viscoelastic materials for turbulent drag reduction//European Drag Reduction Meeting, Emerging Techniques in Drag Reduction.
Ship Science and Technology, 2012, 34(11), p 82-85
Smart Structures and Materials 2005: Modeling, Signal Processing, and Control, 2005, 5757, p 184-197
Journal of Functional Materials, 2012, 43(24), p 3351-3354
The measurement of dynamic properties of viscoelastic materials for turbulent drag reduction//European Drag Reduction Meeting, Emerging Techniques in Drag Reduction.
Ship Science and Technology, 2012, 34(11), p 82-85
Smart Structures and Materials 2005: Modeling, Signal Processing, and Control, 2005, 5757, p 184-197
Journal of Functional Materials, 2012, 43(24), p 3351-3354
Online since: February 2012
Authors: Jin Bao Chen, Fei Deng, Meng Chen, Ming Bo Yang
Theoretical analysis based on energy method is first presented, the buffering process of honeycomb material can be divided into three phases, honeycomb material can be equivalent to orthotropic material and the equivalent material properties are given.
Material properties of honeycomb material Honeycomb material has its special stress-strain curve as shown in Fig. 1.
Acknowledgment This work is supported by Natural Science Foundation of China (51105196), Natural Science Foundation of Jiangsu Province (BK2011733) and Open Project Foundation of Shanghai Key Laboratory of Spacecraft Mechanism.
References [1] Jinbao Chen, Key Technology Research Progress of Lunar Lander Landing Buffer Mechanism, Journal of Astronautics.
Vol. 29 (2008), in Chinese [2] Ying Zhang, Analysis of soft landing buffer materials of lunar lander, Master’s thesis of Nanjing University of Aeronautics and Astronautics, 2008, p. 19 [3] Xingrui Ma, Spacecraft Dynamics: Progress and Application of Several Problems (Science Press, China 2001), p. 192, in Chinese [4] SIMULIA, Abaqus 6.10 Documentation, 2010
Material properties of honeycomb material Honeycomb material has its special stress-strain curve as shown in Fig. 1.
Acknowledgment This work is supported by Natural Science Foundation of China (51105196), Natural Science Foundation of Jiangsu Province (BK2011733) and Open Project Foundation of Shanghai Key Laboratory of Spacecraft Mechanism.
References [1] Jinbao Chen, Key Technology Research Progress of Lunar Lander Landing Buffer Mechanism, Journal of Astronautics.
Vol. 29 (2008), in Chinese [2] Ying Zhang, Analysis of soft landing buffer materials of lunar lander, Master’s thesis of Nanjing University of Aeronautics and Astronautics, 2008, p. 19 [3] Xingrui Ma, Spacecraft Dynamics: Progress and Application of Several Problems (Science Press, China 2001), p. 192, in Chinese [4] SIMULIA, Abaqus 6.10 Documentation, 2010
Online since: April 2013
Authors: Ahmad Mohd Izzat, Liyana Jamaludin, Che Mohd Ruzaidi Ghazali, Mohd Mustafa Al Bakri Abdullah, Kamarudin Hussin, Mohammed Binhussain
Introduction
Geopolymers may represent new material types on the border among glass, ceramic materials and materials based on classical inorganic bonds [1].
Materials that use less natural resources, require less energy, and generate less CO2 are referred to as green materials.
Journal of Materials Science, Vol. 42 (2007) p. 2917-2933
Davidovits, Geopolymer: Inorganic polymeric new materials.: Journal of Thermal Analysis and Calorimetry, Vol. 37 (1991) p. 1633-1656
Izzat, Fly Ash Porous Material using Geopolymerization Process for High Temperature Exposure, International Journal of Molecular Science (2012) 13, p. 4388-4395
Materials that use less natural resources, require less energy, and generate less CO2 are referred to as green materials.
Journal of Materials Science, Vol. 42 (2007) p. 2917-2933
Davidovits, Geopolymer: Inorganic polymeric new materials.: Journal of Thermal Analysis and Calorimetry, Vol. 37 (1991) p. 1633-1656
Izzat, Fly Ash Porous Material using Geopolymerization Process for High Temperature Exposure, International Journal of Molecular Science (2012) 13, p. 4388-4395