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Online since: October 2022
Authors: Ashish Meeruty, Seema Nihalani, Pritesh Mewada, M.N. Patel
Mohapatra, “Luminescence studies on the europium doped strontium metasilicate phosphor prepared by solid-state reaction method,” Journal of Science: Advanced Materials and Devices, vol. 2, no. 1, pp. 59–68, Mar. 2017
Tamrakar, “Luminescence behavior of europium activated [4] strontium aluminate phosphors by solid-state reaction method,” Journal of Materials Science: Materials in Electronics, vol. 27, no. 4, pp. 3443–3455, Dec. 2015
Banishev, “Structure, luminescence and mechano-optical properties of strontium aluminate doped with europium and dysprosium ions,” IOP Conference Series: Materials Science and Engineering, vol. 812, p. 012007, May 2020
Takao, “A New Smart Damage Sensor Using Mechanoluminescence Material,” Materials Science Forum, vol. 675–677, pp. 1081–1084, Feb. 2011
Xu, “Visualization of Stress Distribution Using Smart Mechanoluminescence Sensor,” Materials Science Forum, vol. 614, pp. 169–174, Mar. 2009
Tamrakar, “Luminescence behavior of europium activated [4] strontium aluminate phosphors by solid-state reaction method,” Journal of Materials Science: Materials in Electronics, vol. 27, no. 4, pp. 3443–3455, Dec. 2015
Banishev, “Structure, luminescence and mechano-optical properties of strontium aluminate doped with europium and dysprosium ions,” IOP Conference Series: Materials Science and Engineering, vol. 812, p. 012007, May 2020
Takao, “A New Smart Damage Sensor Using Mechanoluminescence Material,” Materials Science Forum, vol. 675–677, pp. 1081–1084, Feb. 2011
Xu, “Visualization of Stress Distribution Using Smart Mechanoluminescence Sensor,” Materials Science Forum, vol. 614, pp. 169–174, Mar. 2009
Online since: May 2014
Authors: Chao Chang Arthur Chen, Steve Hsueh Ming Wang, Yan Rui Qu, Shu Ping Chang
The ranges of strength of MAM tissues are below 50 Mpa for nonmetal materials and below 1000 Mpa for metal materials.
Material Science, 2013, 340(6128), 48-52
Progress in Materials Science. 2012;57:911-946
Journal of Materials Science : Materials in Medicine. 2013;24:241
Journal of Chromatographic Science. 2010;48:200-207
Material Science, 2013, 340(6128), 48-52
Progress in Materials Science. 2012;57:911-946
Journal of Materials Science : Materials in Medicine. 2013;24:241
Journal of Chromatographic Science. 2010;48:200-207
Online since: July 2024
Authors: Dan Yong Wang, Wen Fang Xing, Shu Hu Li, Hua Zhen Wei
Barbero, Journal of Composite Materials. 32(1998) 483
[2] E.J.
Saleh, Journal of Composite Materials. 27(1993) 83 [4] J.M.
Springer, Journal of Composite Materials. 21(1987) 421 [5] B.W.
Morals, Journal of composite materials. 30(1996) 1115 [8] A.S.
Argon A S, Treatise on Materials Science and Technology. 1(1972) 79 [9] B.
Saleh, Journal of Composite Materials. 27(1993) 83 [4] J.M.
Springer, Journal of Composite Materials. 21(1987) 421 [5] B.W.
Morals, Journal of composite materials. 30(1996) 1115 [8] A.S.
Argon A S, Treatise on Materials Science and Technology. 1(1972) 79 [9] B.
Online since: October 2013
Authors: Bo Huang
Since friction between the foot and the ground is an important force in most sports, modern athletic shoes are designed to maximize this force, and materials, such as rubber, are used.
Journal of Dance Medicine & Science 2011, Vol. 15 Issue 2, p61 [3] Griffiths, Ian.
Journal of Sports Sciences Feb 2011, Vol. 29 Issue 4, p373 [5] Hagen, Marco; Hennig, Ewald M.
Journal of Sports Sciences Feb 2009, Vol. 27 Issue 3, p267 [6] Hennig, Ewald M.
Journal of Sports Science & Medicine Dec2009, Vol. 8 Issue 4, p607 [8] Odebiyi, Daniel O.; Ajiboye, Eyitola O.; Jaja, Smith I.
Journal of Dance Medicine & Science 2011, Vol. 15 Issue 2, p61 [3] Griffiths, Ian.
Journal of Sports Sciences Feb 2011, Vol. 29 Issue 4, p373 [5] Hagen, Marco; Hennig, Ewald M.
Journal of Sports Sciences Feb 2009, Vol. 27 Issue 3, p267 [6] Hennig, Ewald M.
Journal of Sports Science & Medicine Dec2009, Vol. 8 Issue 4, p607 [8] Odebiyi, Daniel O.; Ajiboye, Eyitola O.; Jaja, Smith I.
Online since: February 2012
Authors: Song Yang, Ke Feng Xiang
Study Of Intelligent Punch System
XIANG Ke-feng1,a, Yang Song2,b
1School of Manufacturing Science and Engineering, Southwest University of Science and Technology, Mianyang, China
2School of Manufacturing Science and Engineering.
The intelligent control punch system is completely new and comprehensive technology that combines control-science, computer science, material science and metal forming theory.
Stelson, “Real time identification of workpiece material characteristics from measurements during brakeforming”, ASME Journal of Engineering for Industry, 105 (1983) 45-53
Yang, “Intelligent technology on sheet metal forming”, Journal of the JSTP, 387 (34) (1993) 398-404
[5] Zhao Jun, “On-line identification of material parameters and friction coefficient during intelligent control of conical workpieces deep drawing”, Journal of Plasticity Engineering, 8 (3) (2001) 48-52
The intelligent control punch system is completely new and comprehensive technology that combines control-science, computer science, material science and metal forming theory.
Stelson, “Real time identification of workpiece material characteristics from measurements during brakeforming”, ASME Journal of Engineering for Industry, 105 (1983) 45-53
Yang, “Intelligent technology on sheet metal forming”, Journal of the JSTP, 387 (34) (1993) 398-404
[5] Zhao Jun, “On-line identification of material parameters and friction coefficient during intelligent control of conical workpieces deep drawing”, Journal of Plasticity Engineering, 8 (3) (2001) 48-52
Online since: October 2005
Authors: Ying Zhang, Zeng Liang Yu, Yue Jin Wu, Wang Yu, Mei Song
By using ion implantation, extensive researches had been made in different
materials including plant, animal and microorganism on different levels.
As a new technological way for crop variety improvement, the ion beam application has created a batch of new characteristic genotype materials.
Plant Research Institute of South China of Chinese Academy of Science repeated this test, has also obtained high frequency apomixes materials.
From 1990's, they have bred two varieties and a patch of fine genotype materials.
the Journal of Jiangsu Agricultural sciences, 2001, 4: 3·7 [19].
As a new technological way for crop variety improvement, the ion beam application has created a batch of new characteristic genotype materials.
Plant Research Institute of South China of Chinese Academy of Science repeated this test, has also obtained high frequency apomixes materials.
From 1990's, they have bred two varieties and a patch of fine genotype materials.
the Journal of Jiangsu Agricultural sciences, 2001, 4: 3·7 [19].
Online since: November 2011
Authors: Xiao Xiu Hao, Cheng Sun, Na Wei, Xing Yin
Studies on the Synthesis and its Properties of Reversible
Red-thermochromic Materials
HAO Xiaoxiua, WEI Nab, YIN Xingc, SUN Chengd
Tianjin Vocational Institute, China
ahaoxx888@sina.com; bweina209@163.com; cyvette8030@163.com; dchengsun55@sina.com
Key words: Red-thermochromic materials; Reversible materials; Procrypsis dye
Abstract.
Mass ratio between them affect the property of thermochromism materials.
Results and Discussion The Compose of Organic Red-thermochromic Materials.
[2] Tang, Hong ; MacLaren, Douglas ;White.: Canadian Journal of Chemistry.
[3] Maclaren, D C ; White, M A :Journal of Materials Science.
Mass ratio between them affect the property of thermochromism materials.
Results and Discussion The Compose of Organic Red-thermochromic Materials.
[2] Tang, Hong ; MacLaren, Douglas ;White.: Canadian Journal of Chemistry.
[3] Maclaren, D C ; White, M A :Journal of Materials Science.
Online since: November 2011
Authors: Jian Yong Feng, Jian Chun Zhang, Hua Zhang, Da Xiang Yang
Experiment
Filtration materials.The four different types of filtration materials and manufacturing place as is shown in table 1.
References [1]Sang Young Yeo,Dae young Lim,Sung Won Byun,et al.Design of filter bag media with high collection efficiency.Journal Matter Science,Vol.42,8040-8046,2007
Design and performance of foulresistant poly (vinylidene fluoride) membranes prepared in a single-step by surface segregation.Journal of Membrance Science,Vol.202, 119-135,2002
;Hill,A.J.Ultrapermeable, reverse-selective nanocomposite membranes.Science,Vol.296,519-522,2002
Study on gradual porous metallic membranes obtained by powder sedimentation.Journal of Porous Materials,Vol.12,934-942,2010
References [1]Sang Young Yeo,Dae young Lim,Sung Won Byun,et al.Design of filter bag media with high collection efficiency.Journal Matter Science,Vol.42,8040-8046,2007
Design and performance of foulresistant poly (vinylidene fluoride) membranes prepared in a single-step by surface segregation.Journal of Membrance Science,Vol.202, 119-135,2002
;Hill,A.J.Ultrapermeable, reverse-selective nanocomposite membranes.Science,Vol.296,519-522,2002
Study on gradual porous metallic membranes obtained by powder sedimentation.Journal of Porous Materials,Vol.12,934-942,2010
Online since: February 2012
Authors: Ying Xu, Yan Qing Cai, Gong Yue Dong
Preparation of Al-N based material by Ti-bearing
blast furnace slag
Ying XU1,a, Yanqing CAI1,b, Gongyue DONG2,c
1College of Materials Science and Engineering, Hebei United University, Tangshan,063009,China
2College of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China
ayuyingdd@yahoo.com.cn, bcaiyanqing126@126.com, chl2010dgy@163.com
Keywords: Ti-bearing blast furnace slag, Al-N based materials, carbonitriding reaction
Abstract.
Eventually Al-N based materials that meet the design requirements were obtained.
Composition of raw materials and process route Composition of raw materials.
Flow diagram of preparation of Al-N based materials by Titanium slag was shown in Fig.1.
Journal of Anhui University of Technology (Natural Science), Vol. 25(1), 2008, p.1671- 7872 [5] X.X.
Eventually Al-N based materials that meet the design requirements were obtained.
Composition of raw materials and process route Composition of raw materials.
Flow diagram of preparation of Al-N based materials by Titanium slag was shown in Fig.1.
Journal of Anhui University of Technology (Natural Science), Vol. 25(1), 2008, p.1671- 7872 [5] X.X.
Online since: July 2014
Authors: Tong Tong Xie, Yu Jie Liu, Li Li Wang
With the development of science and technology and rapidly changing times, people have developed more new material on the basis of traditional materials.
The article made a main study to structural materials and functional materials.
New modeling structure material, have many kinds, such as a new type of metal materials, new high polymer material, new type of composite materials, a new type of glass material and so on.
Some new materials were introduced here.
(In Chinese) [5] Jianning Su, Heqi Li: Journal of Gansu University of Technology, (2003).
The article made a main study to structural materials and functional materials.
New modeling structure material, have many kinds, such as a new type of metal materials, new high polymer material, new type of composite materials, a new type of glass material and so on.
Some new materials were introduced here.
(In Chinese) [5] Jianning Su, Heqi Li: Journal of Gansu University of Technology, (2003).