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Online since: July 2019
Authors: Wen Teng Wang, Yu Chen Lin
., Huwei Township, Yunlin County 632, Taiwan Department of Mechanical and Computer-aided Engineering, National Formosa University awtwang@nfu.edu.tw, ba5540112@gmail.com Keywords: Absorbable Bone-Plates, In-mold Heat Treatment, Biodegradable Thermoplastics, Crystallinity Abstract.
Introduction As time progresses, continuous development, material used in medical devices is more various, such as metal, ceramic and plastic material.
International Journal of Materials, Mechanics and Manufacturing 2.2 (2014): 165-168
International Journal of Materials, Mechanics and Manufacturing 3.2 (2015): 125-128
Haarmana, “Tissue reaction on PLLA versus stainless steel interlocking nails for fracture fixation: An animal study”, Department of Traumatology, Free University Hospital, Amsterdam, The Netherlands, Biomaterials, Jan;16(2) (1995), p. 103-6 [6] Rong-Cheng Huang, Siang-An Wang, Chih-Liang Chang, Chih-Hau Chen “Analysis of Energy Consumption in High Mold Temperature Injection Molding Process Technology”, Journal of Taiwan Energy, 2.1 (2016), p. 79-87
Online since: July 2014
Authors: Dong Lai Xu, Jie Li
A Novel Multilayer Structure With Frequency Selected Surface for Electromagnetic Compatibility Jie Li 1, a, Donglai Xu 2,b 1 School of Electrical and Electronic Engineering, Wuhan Polytechnic University, Wuhan, China 2 School of Science and Engineering, Teesside University, Middlesbrough, TS1 3BA, UK a lijie_whpu@foxmail.com, b D.Xu@tees.ac.uk Keywords: Electromagnetic Compatibility; Multilayer Structure; Frequency Selected Surface.
Experiment details Hexagonal ferrite and Fe-Co alloy particles were prepared by a conventional ceramic process and a mechanical alloy method, respectively.
References [1] VIAU G, RAVEL F, ACHER O,FIEVET F: Journal of Magnetism and Magnetic Materials Vol. 140–144 (1995), p. 377–378
[2] OLMEDO L, CHATEAU G, DELEUZE C and FORVEILLE J L: Journal of Applied Physics Vol. 73 (1993), p. 6992–6994
Neo: IEEE Antennas and Propagation Society International Symposium Vol. 16-21 (2002), p. 576 – 579
Online since: April 2012
Authors: Ke Gao Liu, Nian Jing Ji, Zhong Quan Ma
Phases and Thermoelectric Properties of Bulk NiSb2 and Composite of NiSb2 and CoSb3 Prepared by Sintering Kegao Liua,*, Nianjing Jib, Zhongquan Mac School of Materials Science and Engineering, Shandong Jianzhu University, Fengming Road, Jinan 250101, China aliukg163@163.com(*corresponding author), bjnj33jnj@126.com,cmazhq0531@sdjzu.edu.cn Keywords: NiSb2; composite; thermoelectric properties; CoSb3 Abstract.
Moreno, Ceramics as new thermoelectric material for low temperature applications.
International Journal of Heat and Mass Transfer, Vol. 55, Issue 4, 31 January 2012, Pages 1363-1374
Journal of Alloys and Compounds, Vol. 390, Issues 1–2, 22 March 2005, Pages 208-211
Sun: Materials Science and Engineering: B, Vol.136, Iss.2-3, 25 Jan.2007, p.111-117
Online since: August 2013
Authors: Yan Jun Liu, Yong Chao Zheng, Qing Li
Belite cements obtained from ceramic wastes and the mineral pair CaF2/CaSO4, Cement & Concrete Composites. 33(2011)1063-1070
Synthesis of belite cement from lignite fly ash, Ceramics International. 35(2009)2415–2425
Hydration and paste structure of high belite Portland cement, Journal of the Chinese Ceramic Society. 28(2000,suppl)16-21
Utilizing Meishan iron-mine tailings instead of iron powder to produce high-quality cement clinker, Cement Engineering. 5 (2008)19-23
Proceedings of the 8th international congress on the chemistry of cement, Rio de Janeiro, Sub Theme 1.3, Vol.II(1986)363-371.
Online since: June 2019
Authors: Zhen Fa Liu, Ai Jia Wei, Wen Li, Li Hui Zhang
Liu, Ceramics International, 2018, 44: 4603−4610
Wang, Journal of Rare Earths, 2017, 35: 887–895
Roh, Journal of Industrial and Engineering Chemistry, 2015, 21: 731–735 [11] W.
Xu, Industrial & Engineering Chemistry Research, 2017, 56: 175−182 [18] J.
Nan, Journal of Materiomics, 2016, 2: 265–272
Online since: November 2011
Authors: Ling Zhang, Zhi Xian Chang, De Liang Li
Qin: Chemical Industry and Engineering Process.
Xie: Chemical Engineering.
Liang: Chemical Engineer.
Liu: Journal of Chemical Industry and Engineering.
Hoang: Proceedings of the SPIE-The International Society for Optical Engineering, 2008, p. 727017 [49] N.
Online since: March 2016
Authors: Jian Sheng Chen, Yang Wang, Zhi Qiang Tao
Most polymers have low thermal conductivities, usually 1 to 3 orders of magnitudes lower than those of ceramics and metals.
Bai, Fabrication and characterization of aluminum nitride polymer matrix composites with high thermal conductivity and low dielectric constant for electronic packaging, Materials Science and Engineering: B. 11(2012) 892-896
Cannon, Enhanced thermal conductivity of polymer matrix composite via high solids loading of aluminum nitride in epoxy resin, Journal of the American Ceramic Society. 4(2008) 1169-1174
Journal of Applied Polymer Science, 16(2015) Web published DOI: 10.1002/APP.41889
Pipe, High thermal conductivity in amorphous polymer blends by engineered interchain interactions, Nature Materials. 14(2015) 295-300
Online since: January 2019
Authors: Yi Han Zhou
Chang, et al, ZnO nanoflakes on silver wires with antibacterial effects, Ceramics International, 42(6) (2016) 7848-7851
Preparation characterization and bacteriostatic properties of punicalagin reducing chitosan/nano silver sol, Transactions of the Chinese Society of Agricultural Engineering, 257(9) (2018) 4524-4528
Rare Metal Materials & Engineering, 33(5) (2004) 558-560
Preparation of Nano-Silver Flake by Chemical Reduction Method, Rare Metal Materials & Engineering, 39(3) (2010) 401-404
The European Physical Journal D-Atomic, Molecular, Optical and Plasma Physics, 34(1-3) (2005) 263-269.
Online since: October 2015
Authors: Boris Ya. Mokritskii, Dmitriy A. Pustovalov, Alexey Anatolevich Vereschaka
Russian Engineering Research, 33 (2), pp. 74-78
Russian Engineering Research, 30 (10), pp. 1026-1028
Chemical and Petroleum Engineering, 49 (9-10), pp. 639-640
Nano-scale multilayered-composite coatings for the cutting tools.International Journal of Advanced Manufacturing Technology, Vol. 72, Iss.1 (2014), р. 303-317 [8] Alexey A Vereschaka, Sergey N Grigoriev, Anatoly S Vereschaka, Alexey Yu Popov and Batako A.
Journal of Friction and Wear, 2013, Vol. 34, No. 3, 2013, pp. 208–213
Online since: August 2014
Authors: Zhao Yao Zhou, Fei Wu, Meng Long Dong, Bi Bo Yao
Introduction Induction heated sintering is a new rapid sintering method which was developed recently for the fabrication of ceramics and composites [1].
Enhanced mechanical properties of nanostructured WSi2-NbSi2 composite synthesized and sintered by high-frequency induction heating [J].Materials Science and engineering A, 606 (2014) 228-232
International Journal of Refractory Metals and Hard Materials, 26(2008) 48-54
Korean Journal of Chemical Engineering, 12(1995) 488-490
Powder metallurgy international [J]. 18(1986)
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