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Online since: July 2014
Authors: Zhong Lv
Science assessment to air material suppliers is an effective measure that insures cost controlling and safety operating of an airline.
In this paper, combined with the actual situation of air materials suppliers, established assessment indicator system of selection air material suppliers, according to the fuzziness of assessment indicators of air material suppliers, the fuzzy comprehensive assessment theory is introduced to assess air material suppliers.
The fuzzy comprehensive assessment theory is applied to the assessment of air material suppliers to establish a comprehensive assessment based on fuzzy mathematical assessment of air material suppliers and aircraft materials applied to a vendor assessment.
Introduce the fuzzy comprehensive assessment method of the assessment of air materials suppliers, for the condition of air material suppliers assessment provides a new way of thinking.
Bai: Journal of Mechanical Science and Technology, Vol.25 (2006), p.1404-1407.
Online since: May 2017
Authors: Shui Hua Zheng, Yunqing Gu, Deng Hao Wu, Tao Liu, Pei Jian Zhou, Jie Gang Mou, Xiao Hong Zhou
This analysis of the use the new materials, existing decisions in bionics and intelligent control technology can be used in the development and design of the bionic thrusters for underwater robots. 1.
Such as the energy power problem, because most of the bionic underwater vehicles are powered by battery and their working hours are very limited, the development of intelligent bionic materials[49] with higher performance is a key to improve the bionic performance of underwater robot.
Journal of Marine Science and Application. 32 (2011) 650-656
Science China Technological Sciences. 53 (2010) 2966-2971
Smart Structures and Materials: International Society for Optics and Photonics. (2004) 305-312
Online since: May 2013
Authors: Arvind Kumar, Jaspreet Kaur Rajput
Salahuddin, Nanocomposite Materials Based on Polyurethane Intercalated into Montmorillonite Clay, Materials Science and Engineering A 399 (2005) 368–376
Pilato, Polymer Nanostructured Materials for High Temperature Applications, SAMPE Journal (2005) 41
Journal of Inorganic and Organometallic Polymers and Materials 20(2010) 380-386
Thermo Analytical and Mechanical Analyses, Journal of Applied Polymer Science 79 (2001)125–133
Broda, Polymorphism in Polypropylene Fibers, Journal of Applied Polymer Science 89(2003)3364–3370
Online since: August 2015
Authors: Mazlee Mohd Noor, W.H. Chan, J.B. Shamsul, Yuriz Yasmin, Azmi Rahmat
Solid adsorbent can be classified into two types of materials which are non-carbonaceous and carbonaceous materials.
Applied clay science
Decomposition study of calcium carbonate in cockle shell.Journal of Engineering Science and Technology, 7(1), 1-10
Journal of hazardous materials, 270, 92-101
Journal of hazardous materials,176,1044 - 1050
Online since: October 2010
Authors: Li Jun Wang, Xiao Kang Yan, Fei Hu Li, Zi Xin Dong
Journal of mechanical engineering, 2010,46(5):74-79 [3] L.
Ferrofluid squeeze film in a long journal bearing.
International Journal of Mechanical Sciences, 2002, 44:2495–2502
Journal of magnetism and magnetic materials, 2002;252:336–40
Journal of Tribology, 2008,130:0318011–0318015 [11] L.
Online since: September 2013
Authors: Hui Qiang Cheng, Wen Yang Zhao
CS unit producing cost that saves when using recycling materials or components compared with using new raw materials, CS=CM-CN.
(3) CS, unit producing cost that saves when using recycling materials or components compared with using new raw materials.
Journal of Cleaner Production, 19(2011):680-686
Journal of Northeastern University (Natural Science), 2010, 31(12):1794-1797
Journal of Cleaner Production, 12 (2004):37-45
Online since: June 2010
Authors: Liang Gao, Wei Dong Li, Colin Page, G.Q. Jin, K. Popplewell
Kaysser: Materials Science and Engineering, A362 (2003), p. 17-39
Dutta: Rapid Prototyping Journal, Vol. 6 (2000), p. 18-35
Langrana, et al: Materials and Design, Vol. 21 (2000), p. 75-82
Qiu, et al: Rapid Prototyping Journal, Vol. 7 (2001), p. 18-24
Tan: Rapid Prototyping Journal, Vol. 15(2009), p. 5-18.
Online since: December 2012
Authors: Qiu Zhong, Guo Qing Shi
K11 Material for composting including human’s and animal’s feces.
Journal of Environmental Psychology 19, (1999), p. 369-382
Van Liere, Journal of Environmental Education Vol. 9 (1978), p.10-19 [15] M.P.
Aldrich, Journal of Social Issues Vol. 56 (2000), p.443-457 [19] M.
Scherer, The Journal of Environmental Education Vol.34 (2003), p.22-28 [20] L.M.
Online since: May 2011
Authors: Hai Zhang, Jing Ma, Li Jiao
Tab. 4 Three basic materials' splitting strength Test materials splitting strength of materials (MPa) allowable tensile stress of materials (MPa) CR-0 0.43 0.297 CR-20 0.45 0.310 CR-40 0.48 0.330 The analysis of the relationship between fatigue life and allowable tensile stress of the cold-recycled materials.
Journal of Henan University of Science and Technology Natural Science,2006.26(2):23-27 [4] Specifications for Design of Highway Asphalt Pavement of China (JTG D50-2006).
Journal of Sichuan University,2001,33(2):22-26 [7] Shaohuai Wang.
Journal of Tongji University,2004,32(4):475-479 [9] Weidong LIAO,Xiaoxiong WANG.Full-scale-fatigue test on anti-reflective cracking of asphalt overlay[J].Journal of Chang’an University: Natural Science Edition,2006,26(5):9-12 [10]Aimin Sha,Kan Jia,Jianqing Lu,Liqun Hu.Deterioration laws of dynamic modulus of semi-rigid base course materials[J].
China Journal of Highway and Transport,2009,22(3):1-6.
Online since: January 2014
Authors: Xiao Zhen Liu, Xiao Zhou Liu, Jie Chen, Guang Jian Lu, Han Zhang Xiao
Pr doped SnO2 particles as negative electrode material of lithium-ion battery are synthesized by the coprecipitation method with SnCl4·5H2O and Pr2O3 as raw materials.
The initial specific discharge capacity of Pr doped SnO2 the negative electrode materials is 676.3mAh/g.
In this paper, Pr doped SnO2 particles as negative electrode material of lithium-ion battery are synthesized by the coprecipitation method with SnCl4·5H2O and Pr2O3 as raw materials.
The initial specific discharge capacity of Pr doped SnO2 the negative electrode materials is 676.3mAh/g.
Suganthi: Solid State Sciences Vol. 21 (2013), p. 91 [10] P.S.