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Online since: August 2013
Authors: Ikuo Ihara, Akira Kosugi, Iwao Matsuya
In the fields of materials science and engineering, measuring temperature has become one of the most fundamental and important issues.
Ultrasound is expected to be an alternative for monitoring the internal temperature and its gradient in materials because of its capability to probe the interior of materials and its high sensitivity to temperature [2-7].
Measurement Science Technology, 16 (2005) 548-555
Ihara, Ultrasonic monitoring of internal temperature distribution in a heated material, Japanese Journal of Applied Physics 47 (2008) 3894-3898
Ihara, (2009), Quantitative evaluation of one-dimensional temperature distribution on material surface using surface acoustic wave, Japanese Journal of Applied Physics, 48, (2009) 07GB04-1-5
Online since: November 2013
Authors: Bei Hai He, Yan Na Lv, Jian Zhi Ou, Ya Li Wu
However the strength of the materials will drop a lot accordingly [6-8].
Ilieva: Journal of Cellular Plastics Vol. 45 (2009), p.17-32
Gun’ko, I.F.Mironyuk, V.I.Zarko, E.F.Voronin, and V.V.Turov: Journal of Colloid and Interface Science Vol. 289 (2005), p.427-445
Testing Method of Static Compression for Package Cushioning Materials.
[17] Q.W.Xue, Z.Z.Li, and Z.S.Tai: Journal of Cellulose Science and Technology Vol. 5 (1997), p.41-47
Online since: November 2012
Authors: Ya Juan Zhang, Jing Qiu, Shan Shan Niu, Yin Fang Zhou
Ltd., China,Shaanxi,Yan’an727406 3DEBL Environmental Science & Technology Development Co., Ltd , China,Shanghai ,200127 a 86681702@qq.com, b 121239140@qq.com, c 357315944 @qq.com Key words: Weihe River ; The Water Quality; Environmental materials Abstract.
So research on the economic development of Guanzhong region has great significance to improve the Weihe River’s water quality and play the purpose of the environmental protection. 1.The concept of environmental materials Environmental materials can be defined as follows: in the whole process of the materials’ life cycle, the material had a smaller impact on the environment load in the same functional and economic conditions.
Therefore, promoting environmental materials from the source is very important to solve the pollution problem.
Zero-waste and zero-emission are important researches in the field of environmental materials.
Quaterly Journal of Economics 110(2):353一377
Online since: August 2018
Authors: Fu Tian Liu, Lu Ping Yang, Yang Wang, Kai Jiang, Fang Hong Yang, Chang Ling Zhou, Yan Yan Wang
Materials Science and Engineering A 485 (2008) 415-421
Journal of the European Ceramic Society 33 (2013) 423–432
Journal of Materials Research 25 (11) (2010) 2150-2158
Journal of the European Ceramic Society 26 (3) (2006) 337-341
Composites Science and Technology 64 (2) (2004) 155-170
Online since: July 2015
Authors: Ali Abd El-Aty, Ahmad Farooq
Centre of Panel Thermal Conductivity Performance Analysis of Aerocor-centrifugal Hybrid Ultrafine Glass Fiber VIP Core Materials Ahmad FAROOQ1,a* and Ali Abd El-Aty1,2,b,* 1Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, 72 Wenhua Road, Shenyang 110016, People’s Republic of China 2Department of Mechanical Engineering, Faculty of Engineering, Helwan University, Cairo, Egypt afarooq14b@imr.ac.cn, babdelaty14b@imr.ac.cn *Corresponding author Keywords: vacuum insulation panel, glass fiber, pore size, insulation materials Abstract.
International Journal of Heat and Mass Transfer 64 (2013): 783-791
Advances in Civil Engineering and Building Materials, 2012: p. 77
Advanced Materials Research, 2012. 446: p. 3753-3756
Advanced Materials Research, 2012. 430: p. 1343-1347.
Online since: January 2020
Authors: Pavel V. Matyukhin
These materials are polymer and liquid glass composites, intermetallic and layer composites, metal concrete and antifriction composite materials, titanium-aluminum and titanium-steel composites, magnesium and concrete containing aluminum composites, sulfur and barium containing composites, lightweight and other composite materials [1-25] including hematite iron ore based concentrate and aluminum matrix [26].
Gurevich, Science basis of design and production of new class of construction materials – layer intermetallic composites, Construction of composite materials. 4 (2006) 132-134
Shutov, Radio protective cellular materials, Science Intensive Technologies. 17(2) (2016) 57-62
JOURNAL of Construction and Architecture. 4(41) (2013) 218-225
Voronov, Study of gamma radiation weakening properties of composite materials, Herald of construction sciences department of Russian academy of architecture and construction sciences. 9 (2005) 384-387
Online since: September 2013
Authors: Jian Hui Li, Zu Jian Yu, Da Zhi Xiao, Li Ping Zhang
Materials Science and Engineering: A. 2008, Vol.490: 171-180
Journal of Materials Processing Technology. 2006, Vol. 171: 480-487
Progress in Materials Science. 2000, Vol.45: 103-189
Materials Science and Engineering: A. 2011, Vol.528: 8198-8204
Materials Science and Engineering: A, 2007, 458(1-2): 226-234.
Online since: October 2014
Authors: Mohd Asri Selamat, M.F. Ismail, Z.J. Rusila, Talib Ria Jaafar
Friction and Wear Characteristics Cu-based P/M Brake Friction Materials with Addition of Fe and C 1,2,aR.J.
Introduction Powder metallurgy (P/M) friction materials are normally classified into three types; namely Cu-based, Fe-based and Cu-Fe-based materials [1].
Cu-based P/M friction materials were prepared and the effects of Fe and C friction components on the COF and wear behaviors of the materials were studied and discussed in this work.
Ariff, Wear Mechanism of TiN , TiAlN and TiCN Coated Drills During Drilling of Carbon Steel Journal of Physical Science, Vol 18(1) 2007, 75-85
Azhari, Microstructural characteristics on the surface and subsurface of semimetallic automotive friction materials during braking process Journal of Materials Processing Technology 140 (2003) 694–699
Online since: February 2012
Authors: Wen Tang Xia, Yue Bin Xiao, Xue Jiao Zhou, Lei Cao, Ya Gao, Da Liu, Ming Yuan
Recovery of copper and cobalt from spent aerospace material with pollution-free oxidant Yuebin Xiaoa, Xuejiao Zhoub, Lei Caoc, Ya Gaod, Da Liue, Ming Yuanf, Wentang Xiag School of Metallurgical and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China a xiaoyb540@126.com, bzxj040203017@126.com, ccaol540@126.com, dgaoy540@126.com, eliud540@126.com, fyuanm540@126.com, gwentangx@163.com Keywords: copper; cobalt; pollution-free oxidant; spent aerospace material Abstract: The acid leaching of spent aerospace material with pollution-free oxidation is discussed.
Spend aerospace material used in this work collected from an aerospace material company.
Once at this temperature, 50 g of spent aerospace materials were added with addition of 0.027 mol·L-1·min-1 of pollution-free oxidation.
Qi: Journal of Changchun University of Science and technology Vol. 30 3 (2000), p.310-312.
Yang: Journal of Metal in China Vol. 36 (2010), p16-17.
Online since: March 2025
Authors: Christopher Joyle Indor, Mohd Khairul Afiq, Hoo Tien Nicholas Kuan
Zhang, “Electrospun nanofiber: Emerging reinforcing filler in polymer matrix composite materials,” Progress in Polymer Science, vol. 75, pp. 73–107, Dec. 2017. doi:10.1016/j.progpolymsci.2017.08.002 [2] D.
Hassan, “Tensile properties characterisation of hybrid luffa/GCW fiber reinforced polymer composite,” Materials Science Forum, vol. 1111, pp. 77–82, Dec. 2023. doi:10.4028/p-tw3ujj [7] C.
Cantwell, “Damage characterisation on PP-hemp/aluminium fibre–metal laminates using acoustic emission,” Journal of Composite Materials, vol. 47, no. 18, pp. 2265–2274, Aug. 2012. doi:10.1177/0021998312457098 [8] R.
Sawawi, “The low velocity impact properties of pandanus fiber composites,” Materials Science Forum, vol. 895, pp. 56–60, Mar. 2017. doi:10.4028/www.scientific.net/msf.895.56 [17] "ASTM International", ASTM D3039.
Standard Test Method for Tensile Properties of Polymer Matrix Composite Materials.
Showing 1751 to 1760 of 96609 items