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Online since: March 2016
Authors: Yu Fei Tang, Kang Zhao, Cong Wu, Ji Yuan Ma
Preparation and Properties of SiC/Phenolic Resin for the Heat of LED Cong Wua, Kang Zhaob, Yufei Tangc and Jiyuan Mad* School of Materials Science and Engineering, Xi’an University of Technology, Xi’an 710048, China a18702960259@163.com, bkzhao@xaut.edu.cn, cyftang@xaut.edu.cn, d121611018@qq.com Keywords: Silicon carbide, Phenolic resin, Heat dissipating material, Thermal conductivity.
Compared to the diameter of 50µm composite materials, thermal conductivity of composite material increased.
This work demonstrated that the problem of low coefficient of thermal conductivity of materials used in the LED industry can be solved, and has very high reference value to obtain high performance LED heat dissipation materials.
Journal of Human Light Industry college, 2002, 14(4): 20-24
[13] Zhang Xiaohui, Research for thermal properties and Mechanism of electric polymer materials.
Online since: February 2026
Authors: Hayrettin Ahlatçı, Bünyamin Çiçek, Özcan Büyükgenç, Levent Elen, Büşra Moran Moran, Yunus Türen
Witte, Biodegradable metals, Materials Science and Engineering: R: Reports, 77 (2014) 1-34
Solidification and age hardening behaviour of Mg-Zn-Gd Alloys. in IOP Conference Series: Materials Science and Engineering. 2012.
Vojtěch, Structural characteristics and corrosion behavior of biodegradable Mg–Zn, Mg–Zn–Gd alloys, Journal of Materials Science: Materials in Medicine, 24 (2013) 1615-1626
Effects of Ca addition on microstructure and mechanical properties of Mg-RE-Zn casting alloy. in Materials Science Forum. 2005.
[35] Murni, N., et al., Cytotoxicity evaluation of biodegradable Zn–3Mg alloy toward normal human osteoblast cells, Materials Science and Engineering: C, 49 (2015) 560-566
Online since: November 2013
Authors: Ce Guo, Rui Qiao, Zhen Dong Dai, Chun Sheng Zhu, Xiao Ting Jiang
Introduction In nature,creatures experience thousands of years surive and evolution, ultimately obtaining many excellent structures and properities.With the increasing development of technology, people have highly demand for the using performance of materials in order to use in different environment ,such as specific strength,specific modulus, wear resistant and thermal protection etc[1].But the traditional structures and materials are unable to meet these requirement.Therefore,the composite materials become the preferred design thinking and preparation method to satisfy the adove-mentioned requirement.Meanwhile the scientists gained the compound design inspiration from the structures ,the materials quality and the properties of the creatures.Scientists have made use of the inspiration of the creature’s structures to fabricate lots of engineering materials and structures,like the honeycomb composite materials refer to the unique characters of the honeycomb structure,with the advantages
Reference [1]Wang Liduo,Sun Wenzhen,Liang Tongxiang,Wang Yinghua,Li Hengde.Research status of biomimetic materials[J].Materials Engineering, 17,2 (1996) 3-5
Mechanical Science and Technology, 10 (2010) 23-26
[5] Chen JingXiang,Dai GuangZe,Xu YingLian,et al.Basic study of biomimetic composite materials in the forewings of beetles[J].Materials Science and engineering, 483/484 (2008) 625-628
Engineering Materials Manual Blackmetal volume.BeiJing Publishing House,2002-972
Online since: July 2014
Authors: Xin Guo, Yan Dong Wang, Qiao Zhi Sun, Jing Wei Zhang, Shuang Jiang, Jun Cai
The CLAM steel has been also considered as a candidate material for the cladding materials of the future fusion reactor.
Chinese Journal of Nuclear Science and Engineering, 2007, 27:41-50
Journal of Nuclear Materials, 2007, 367–370: 142–146
Chinese Journal of Nuclear Science and Engineering, 2007, 1(3):59-63
Journal of Nuclear Materials, 1996, 233-237: 985-990
Online since: April 2021
Authors: Qin Xing, Zhong Xun Wang, Shu Ai Zhang, Bao Shan Liu, Gang Zhang
Study on Coating Material and Preparation Technology of Aluminum Alloy Tube by Low Temperature Self-Propagating Molding WANG Zhongxun1,a,*, ZHANG Shuai1,b, XING Qin1,c, LIU Baoshan2,d, ZHANG Gang2,e 1Department of Mechanical Engineering, Yantai Vocational College, Yantai, Shandong, China, 264670 2College of Materials Science and Chemical Engineering, Harbin Institute of Technology, Harbin 150001 aemail: zhxwang1980@163.com, bemail: nvrensihua 2008@163.com, cemail: 45521300@qq.com, demail: 13534528794@163.com, eemail: zhanggang8769@126.com Keywords: Aluminum alloy cylinder type parts; Low temperature self-propagating material; Process parameters; coating Abstract: Low temperature self-propagating forming coating material system for aluminum alloy cylinder parts was designed with Al, Fe2O3, Mo, Cu, Ni and Ti powders as raw materials.
Firstly, high energy filler powder materials with low reaction temperature were developed.
Materials Protection,2019,52(08):15-23+44
The Chinese Journal of Nonferrous Metals, 2014, 24(11): 2805-2812
Study on Laser Ignition Self-propagating Sintering and Products of Al-C-Ti Powder Materials[D].
Online since: November 2011
Authors: Ling Zhang, Zhi Xian Chang, De Liang Li
Tai: Silicone Materials.
Qin: Journal of Wuhan University of Science and Technoogy (Natural Science Edition).
Nie: Journal of Inorganic Materials, Vol. 22(5) (2007), p. 949 [10] A.S.M.
Li: Chinese Journal of Materials Research.
Xie: Journal of Functional Materials.
Online since: April 2015
Authors: Rozana Aina Maulat Osman, Mohd Sobri Idris, Y.M. Chin
LiCoO2 is the most common cathode materials used in commercial rechargeable Li-ion batteries.
Meng, Recent progress in cathode materials research for advanced lithium ion batteries, Materials Science and Engineering R, 73 (2012) 51 – 65
Ariyoshi, High-capacity lithium insertion materials of lithium nickel manganese oxides for advanced lithium-ion batteries: toward rechargeable capacity more than 300 mA h g−1, Journal of Materials Chemistry, 21, (2011) 10179 – 10188
Journal of Applied Crystallography 34 (2001) 210-213
[8] Idris, M.S., Synthesis and characterization of lithium nickel manganese cobalt oxide as cathode material, PhD thesis, Department of Materials Science and Engineering, The University of Sheffield (2011).
Online since: March 2014
Authors: Xing Ao Li, Wei Wei Mao, Xing Fu Wang, Yong Tao Li, Tao Yang, Jian Ping Yang, Xi Wang Wang
Effects of Single-Substitution and Co-Substitution on BiFeO3 Nanoparticles Xing’ao Li1, 3, a*, Weiwei Mao2, 3,Xingfu Wang1, 3, Xiwang Wang2, Yongtao Li3, Tao Yang1, Jianping Yang3, b* 1Key Laboratory for Organic Electronics & Information Displays (KLOEID), Institute of Advanced Materials (IAM), School of Materials Science and Engieering(SMSE), Nanjing University of Posts and Telecommunications (NUPT), Nanjing 210046, P.
Appropriate proportions of Pr6O11, Bi2O3, Co(NO3)2·6H2O and Fe(NO3)3·9H2O were used as starting materials and were dissolved in dilute nitric acid.
IRT1148), the National Natural Science Foundation of China (51172110, 61106116), and the National Science Foundation of Jiangsu Province (BK2010525).
Scott, Physics and applications of bismuth ferrite, Advanced Materials, 21 (2009) 2463-2485
Paixão, Structural and magnetic phase transitions in Bi1−xPrxFeO3 perovskites, Journal of Materials Science, 47 (2012) 1578-1581
Online since: September 2017
Authors: A. Zhilenkov
GaN Materials Nanostructures Growth Control in the Epitaxial Units A.
Metal Organic Vapour Phase Epitaxy of Group III Elements Nitrides Today metal organic vapour phase epitaxy (MOVPE) of group III elements nitrides is the main method for obtaining the device structures based on these materials.
Faurie, Nitrogen precursors in metalorganic vapor phase epitaxy of (Al,Ga), Journal of Crystal Growth, 156 (1995) 140-146
Trankle, Freestanding 2-in GaN layers using lateral overgrowth with FTVTE, Journal of Crystal Growth, 310 (2008) 911-915
Damilano, Surface kinetics of GaN evaporation and growth by molecular-beam epitaxy, Surface Science, 450 (2000) 191-203
Online since: January 2022
Authors: Razak Wahab, Mohamad Saiful Sulaiman, N. Mokhtar, T. Edin, S.M. Razali
Materials and Methods Sample Preparation.
Journal of Biological Science 4(5), (2004) 658–663
Journal of Agricultural Science. 2(2) (2010)
Journal of Science Malaysiana 41(2): (2012) 163-169
Journal of Polymer Science: Part C, 6: (1964) 65-81