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Online since: June 2010
Authors: Ying Mei Ma, Rui Zhang, Zhong Ling Jin, Gui Zhen Fang, Yan Li Ma
Enhanced Photocatalytic Activity for Titanium Dioxide in Sunlight by a Kind of Squarylium Cyanine Dye Ma Yanlia, Fang Guizhenb,* , Ma Yingmeic, Zhang Ruid, Jin Zhonglinge College of Material Science and Engineering, Northeast Forestry University, Harbin-150040, China a myl219@sohu.com,b fanggz_0@163.com,cmym4182003@yahoo.com.cn, d ronnie_907.student@sina.com,e jinzl020@sina.com Keywords: Squarylium cyanine; Photosensitive; TiO2.
[9] Experiments Materials and Instrument TiO2 (Degusts P25); the data of diffuse reflectance spectra were obtained by TU-1901 UV-vis spectrophotometer.
Journal of Hazardous Materials. 155(2008),p. 45-50
Journal of the European Ceramic Society. 26(2006),p. 2231-2239
Chinese Journal of Inorganic Chemistry. 24 No.2 (2008) , p. 253-259.
Online since: March 2006
Authors: Hong Gun Kim, J.C. Huang, G.E. Yang, H.K. Lee
A relationship of residual stress distribution and surface molding states on polymeric materials is presented in thin-walled injection molding.
Materials for the thin wall applications requires good flow properties.
However, the crystalline polymer has the more stable stress distribution by their material structure.
Li, Analysis of thermal residual stresses in plastic injection molding, Journal of Materials Processing Technology, Vol. 101, (2000), pp. 275-280 [9] Shen YK, Liao JH, Zhao WX, Study on warpage and shrinkage of flip chip encapsulation process, INT COMMUN HEAT MASS, Vol. 31, No. 5, (2004), pp.693-702 [10]Cho k, Jeon I, Numerical analysis of the warpage problem in TSOP, MICROELECTRON RELIAB, Vol. 44, No. 4, (2004), pp.621-626 [11]Kong JWY, Kim jK, Yuen MMF, Warpage in plastic packages: Effect of process conditions, geometry and materials, IEEE TELETRON PACK , Vol. 26, No. 3, (2003), pp.245-252 [12]M.L.
Pawlak, et al, Residual stresses in epoxy system by 3D photoelastic method, polymer engineering and science, Vol. 36, No. 22,(1996), pp. 2727-2735
Online since: October 2015
Authors: Rusdi Nur, Asmeati Asmeati, Muhammad Arsyad Suyuti
International Journal of Mechanical Sciences. 40(7) (1998), p. 631-650
Materials & Design. 30(2) (2009), p. 418-423
Journal of Materials Processing Technology. 153 (2004), p. 464-471
Schmid, Manufacturing Processes for Engineering Materials. 2008, New York: Persons Prentice Hall
Journal of Materials Processing Technology. 117 (2001), p. 262-268.
Online since: February 2014
Authors: Gang Li, Kai Pang, Lan Chi, Chang Xiang Liu, Li Jiang, Li Qun Mo
The characteristics of phase change materials is with the temperature change from one phase to another phase change, can absorb or release a large number of latent heat, and the temperature of the material itself in front of the phase transformation completed almost unchanged, it is actually a constant energy storage.
After the completion of phase change material filling, sealed and covered with a layer of plastic film, and then covered with a layer of gypsum board in each galvanized steel flat box, so that the completion of phase change materials package.
Journal of HV&AC, 1999, 29(5):35-38.In Chinese
[4] Khudhair Amar M,Farid Mohammed M.A review on energy conservation in building applications with thermal storage by latent heat using phase change materials[J].Energy conversation and management,2004, 45(2):263-275
Materials Research and Application, 2008,2(2): 89-92.
Online since: April 2012
Authors: Jun Wang, Chuan Zhen Huang, Han Lian Liu, Yu Huan Fei, Bin Zou, Yan Zhao, Hong Tao Zhu
Some scholars also studied TiB2-Ti(C0.5N0.5) ceramics composite materials, but there is little research of TiB2-Ti(C0.5N0.5)-WC composite materials.
Fig.2 XRD pattern of TiB2-Ti(C0.5N0.5)-WC composite materials Microstructure Fig.3 is the SEM photographs of the microstructure of TiB2-Ti(C0.5N0.5)-WC composite materials.
Mo2C is also found in materials.
(2)Heating mode can affect the microstructure of materials.
Journal of Refractory Metals and Hard Materials (2011) [5] P.
Online since: June 2014
Authors: Michael J. Worswick, Ryan George, Alex Bardelcik, Luke Ten Kortenaar, Duane Detwiler
Fracture of the material has not been modeled in these simulations.
Worswick, “Hot forming of boron steels using heated and cooled tooling for tailored properties,” Journal of Materials Processing Technology, vol. 212, no. 11, pp. 2386–2399, Jul. 2012
Wells, “A strain rate sensitive constitutive model for quenched boron steel with tailored properties,” International Journal of Impact Engineering, vol. 50, pp. 49–62, 2012
[7] Bardelcik, A., Worswick, M.J., Wells, M., The Influence of Martensite, Bainite and Ferrite on the As-Quenched Constitutive Response of Simultaneously Quenched and Deformed Boron Steel - Experiments and Model, submitted to Materials and Design, July 4, 2013
Impact Testing of a Hot-Formed B-Pillar with Tailored Properties, SAE International Journal of Materials and Manufacturing, 2013-01-0608, 6, pp. 157-162, 2013 [10] L. ten Kortenaar, A.
Online since: February 2012
Authors: Xue Jian Zhang, Chun Li, Liang Gu, Jing He Liu, Guang Tian Zou
Considering from the current situation to the future, the application of practical laser material can be mainly divided into the blue, green and violet and visible light laser material for full-color displays, optical storage, lithography and other applications, or 2 ~ 5μm mid-infrared laser material for eye-safe, remote sensing, optical communications, medical and other applications, or 1μm-band high-power, high-energy laser material for advanced manufacturing technology, "new concept" laser weapons, or Diode-pumped laser (Diode pump Laser, DPL) and amplified ultrafast laser gain media materials.
Among the above high power, high efficiency, high-energy solid-state laser crystal materials and DPL speed laser crystal materials should be classified as the key problem with the common direction of basic science [1-4].
Progress and thinking of laser materials.
Journal of Synthetic Crystals, 1998, 27(3)229~232 [3] D.
Chinese Journal of Quantum Electronics. 2002,19(2):104~108.
Online since: December 2011
Authors: Mao Cai Wang, Chun Hua Zhang, Shuang Li, Lin Qi, Yu Hang Ren, Song Zhang
Fabrication of NiTi Alloy Coating on 2Cr13 Stainless Steel by Laser Cladding ZHANG Chunhua1, a, LI Shuang1, a, QI Lin1, a, REN Yuhang1, a, ZHANG Song1, a, WANG Maocai2, b 1School of Materials Science and Engineering, Shenyang University of Technology, China 2State Key Lab. of Corrosion and Protection, Institute of Metal Research Chinese Academy of Sciences, China asongzhang_sy@yahoo.com.cn Keywords: Laser cladding, NiTi alloy, microhardness, clad angle, dendrites Abstract.
At the same time, these materials also have the good cavitation erosion resistance[1,2].
Laser cladding is an important means of material surface remelting hardening technology, possesses higher accuracy and flexibility especially in the preparation of special coating materials.
Experimental procedure Materials and sample preparation.
Materials Science and Engineering, Vol. 459 (2007), p. 52 [6] J.L.
Online since: April 2016
Authors: Y. Şahin, Senai Yalcinkaya
Journal of Material Processing Technology, 125, (2006), 278-284
Külekci., Analysis of process parameters for a surface-grinding process based on the Taguchi method, Materials and Technology, 47, (2013), 105-109
Radhakrishnan., Analysis of process parameters in surface grinding with graphite as lubricant based on the Taguchi method, Journal of Materials Processing Technology, 141, (2003), 1, 51-59
Sluga., Design of grinding factors based on response surface methodology, Journal of Materials Processing Technology, 162, (2005), 629-636
Sekhon., Optimization of grinding process parameters using enumeration method, Journal of Materials Processing Technology, 112, (2001), 63-67
Online since: July 2014
Authors: Dong Lai Xu, Jie Li
Among various EMW absorbing materials, magnetic absorbing materials made by dispersing magnetic fillers in an insulating matrix continue to play a leading role in the investigation and application of thin broadband absorbers.
One advantage of magnetic absorbing materials is that they have both magnetic and dielectric losses.
In Ref. [10] and [11], the FSS screens were embedded in carbon fiber absorbing materials.
This work is concerned with the incorporation of FSS into magnetic absorbing materials, which is previously unreported.
References [1] VIAU G, RAVEL F, ACHER O,FIEVET F: Journal of Magnetism and Magnetic Materials Vol. 140–144 (1995), p. 377–378
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