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Online since: March 2016
Authors: Kai Wang, Jiang Long Yi, Shi Da Zheng, Chun Fu Guo, He Xin Chen, Xin Xin Wang, Ben Niu
The dense and ceramic-like structure formed by the reaction of Al2O3, TiO2, and MnO2 might be the reason for the easiness of removing
Journal of Materials Processing Technology (2006),171(2), 223-231
Welding Journal (2008), 87(3), 65S-75S
Welding Journal (2000), 79(10), 295S-303S
Journal of Power Sources (1998),70(1), 1-7
Online since: July 2013
Authors: Nan Li, Dong Tang, Chang Yuan Li, Lie Chen
Research on development and application of New particulate matter sensor Nan Li1, a, Dong Tang2, b, Changyuan Li3, c and Lie Chen4, d 1School of Automotive and Traffic Engineering, Jiangsu University, China 2 School of Automotive and Traffic Engineering, Jiangsu University, China 3 School of Automotive and Traffic Engineering, Jiangsu University, China 4 Jintan Jonssen Electric Tech Corp, China alinan111111@126.com, bdtang@ujs.edu.cn, clichangyuan1192@126.com, d13306140036@126.com Keywords: Diesel; OBD; particulate matter (PM) sensor Abstract.
Capacitance PM sensor The sensor element of sensor is mainly made of alumina ceramics processed using tape casting technology.
Analysis of fractal particles from diesel exhaust using a scanning-mobility particle sizer and laser-induced incandescence, Journal of Aerosol Science, 2010, 41: 531–540
Calculation of mass-weighted distribution of diesel particulate matters using primary particle density, Journal of Aerosol Science 2011, 42: 419–427
Particlate Matter Sensor for On Board Diagnostics (OBD) of Diesel Particulate Filters (DPF), SAE International, 2010
Online since: March 2017
Authors: Hasmaliza Mohamad, Nurul Farhana Ibrahim, Siti Noor Fazliah Mohd Noor
Zanotto, The effect of a novel crystallised bioactive glass-ceramic powder on dentine hypersensitivity: a long-term clinical study, Journal of Oral Rehabilitation. 38(4) (2011) 253-262
Pyare, Characterization of ZnO substituted 45S5 bioactive glasses and glass – ceramics, Journal of Materials Science Research. 1(2) (2012) 207-220
Antoni, Bioactive glass in tissue engineering, Acta Biomater. 7(6) (2011) 2355-2373
Larry, Hierarchical porous materials for tissue engineering, Phylosofical transaction of the royal society A. 364(1838) (2006) 263-281
Singh, Studies on preparation and characterizations of CaO-Na2O-SiO2-P2O5 bioglass ceramics substituted with Li2O, K2O, ZnO, MgO, and B2O3, International Journal of Scientific & Engineering Research. 2(9) (2011) 2229-5518
Online since: April 2018
Authors: Thanakorn Wasanapiarnpong, Charusporn Mongkolkachit, Nithiwach Nawaukkaratharnant, Thanataon Pornphatdetaudom
Preparation of Porous Cylindrical Tubes Substrates from Zeolite and Clay for TiO2 Photocatalyst Coating Nithiwach Nawaukkaratharnant1,a, Thanakorn Wasanapiarnpong1,2,b*, Charusporn Mongkolkachit3,c, Thanataon Pornphatdetaudom4,d 1Research Unit of Advanced Ceramics, Department of Materials Science, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand 2Center of Excellence on Petrochemical and Materials Technology, Bangkok, 10330, Thailand 3National Metal and Materials Technology Center (MTEC), National Science and Technology- Development Agency (NSTDA), Pathum Thani 12120, Thailand 4Nuclear Ceramic Laboratory, Department of Nuclear Engineering, Graduate School of Science and Engineering, Tokyo Institute of Technology, Tokyo, Japan anithiwach.n@hotmail.com, bthanakorn.w@chula.ac.th, ccharuspm@mtec.or.th, dpornphatdetaudom.t.aa@m.titech.ac.jp Keywords: Porous substrate, TiO2 coating, Lignin degradation, Photocatalyst.
Yan, Electrochemical oxidation of lignin by two typical electrodes: Ti/SbSnO2 and Ti/PbO2, Chemical Engineering Journal, 244 (2014) 288-295
Elaloui, Photodegradation of lignin from black liquor using a UV/TiO2 system, Journal of Photochemistry and Photobiology A: Chemistry, 154 (2003) 211-218
Mongkolkachit, Fabrication and photocatalytic degradation of TiO2/porous activated carbon-zeolite composite cylinder, Key Engineering Materials, 659 (2015) 294-298
Holanda, Densification behaviour of a red firing Brazilian kaolinitic clay, Ceramics International, 31 (2005) 757-763.
Online since: February 2024
Authors: Ulhas Annigeri, Sekharam Charan Simha
Annigeri1,a*, Sekharam Charan Simha2,b 1Department of Mechanical Engineering, Amrita School of Engineering, Bengaluru Campus, Amrita Vishwa Vidyapeetham, India 2Department of Mechanical Engineering, Amrita School of Engineering, Bengaluru Campus, Amrita Vishwa Vidyapeetham, India auk_annigeri@blr.amrita.edu, bsekharamcharansimha@gmail.com Keywords: microstructure, stir casting, particulate, hardness Abstract.
Because of its enhanced density, great hardness, and thermal stability, ceramic reinforcement is the most used.
Suresh, N Shenbaga Vinayaga Moorthi, Process development by stir casting and investigation on microstructures and wear behaviour of TiB2 on Al6061 MMC, Proceedia Engineering 64 (2013) 1183–1190 [18] J.
Hashmi, Metal matrix composites: Production by the stir casting method, Journal of Materials Processing Technology 92–93 (1999) 1–7 [19] Annigeri U.K, Veeresh Kumar G B, Effect of reinforcement on density, hardness, and wear behaviour of Aluminium metal matrix composites: A Review, Materials Today: Proceedings 5 (2017) 11233-11237 [20] Pardeep Sharma, Satpal Sharma, Dinesh Khanduja, A study on microstructure of aluminium matrix composites, Journal of Asian Ceramic Societies 3 (2015) 240–244 [21] G.
Annigeri, Physical, Mechanical, and Fracture Studies of Al6061-B4C MMCs, International Conference on Materials Research in Science and Engineering, AIP Conf.
Online since: July 2008
Authors: Dermot Brabazon, Sumsun Naher, Patrick Biggs
Fischer, Steel Research International, Verlag, 2004 [5] M.Z.
Chang, Materials Science and Engineering A 416 (2006) 181-186 [8] M.
Aerospace Engineering, IMechE, 220, Part G (2006)
Bandyopadhyay, Materials Science and Engineering A379 (2004) [16] K.
Li, Journal of Non-Crystalline Solids 354 (2008) 970-974 [38] C.Y.
Online since: June 2013
Authors: Sen Kai Lu, Yi Wei Qin
Materials of Mechanical Engineering 29(12), (2005) p.1–3 [2] Yu L., Jiang Y.
Materials of Mechanical Engineering 39(1),93–96 (2003) [6] Kainer K.
Q.: 2011 International Conference on Remote Sensing, Environment and Transportation Engineering ,p.5970-5973
R.: 2011 SREE Conference on Engineering Modelling and Simulation (CEMS 2011), p.242–247
H.: 2011 SREE Conference on Engineering Modelling and Simulation (CEMS 2011), p.35–40
Online since: October 2023
Authors: Lenka Nevřivová, Jana Majerová, Dorothea Sklenářová, Alice Kohutová
The Effect of the Gelling Agent on the Gelation Rate and the Formed Sol-Gel Structure SKLENÁŘOVÁ Dorothea1,a*, MAJEROVÁ Jana1,b, KOHUTOVÁ Alice1,c, NEVŘIVOVÁ Lenka1,d 1Brno University of Technology, Faculty of Civil Engineering, Veveří 331/95, 602 00 Brno, Czech Republic asklenarova.d@fce.vutbr.cz, bmajerova.j@fce.vutbr.cz, ckohutova.a@fce.vutbr.cz, dnevrivova.l@fce.vutbr.cz Keywords: Colloidal silica, Sol-gel processes, Gelling agent, SiO2, Al2O3 Abstract.
Tokarz, Silica sols as refractory fibre binders, Journal of The European Ceramic Society, 21 (2001) 795-808
Souri, Microstructure and properties of colloidal silica bonded magnesite castable refractories, Iranian Journal of Material Science and Engineering, 8 (1) (2011) 25-31
Nano–Bonded Refractory Castables, Ceramics International, 39 (2013) 3479–3497
Singh, Study on the effect of different sols on high alumina castable refractory, (2017) Dissertation, Department of Ceramic Engineering, National Institute of Technology, Rourkela, Odisha, India [9] M.R.
Online since: August 2018
Authors: Zhi Wang, Zhi Hao Wang, Qian Liu, Jun Yan Wu
Cryomilling and Characterization of Ti/Al2O3 Powders Junyan Wu1,a*, Qian Liu1,b, Zhihao Wang2,c, Zhi Wang1,d 1School of Material Science and Engineering, University of Jinan, Jinan 250022, China 2School of Material Science and Engineering, Qilu University of Technology, Jinan 250353, China amse_wujunyan@ujn.edu.cn, b2274375284@qq.com, cwangzhihao0805@126.com, dwangzhi@ujn.edu.cn Keywords: Cryomilling; Ti/Al2O3 cermet; Ti-Al intermetallic Abstract.
Guo, Reactive hot-pressing of platelet-like ZrB2-ZrC-Zr cermets: Processing and microstructure, Ceramics International. 40 (2014)12693-12702
Yin, Research advance on brittleness of Ti-Al intermetallics, Materials Science and Engineering of Powder Metallurgy 12 (2007) 330-336
Horita, et al, Unusual hardening in Ti/Al2O3 nanocomposites produced by high-pressure torsion followed by annealing, Materials Science and Engineering A. 529 (2011) 435-441
Effects of electric field on interfacial microstructure and shear strength of diffusion bonded a-Al2O3/Ti joints, Journal of the European Ceramic Society. 35 (2015) 219-226.
Online since: March 2012
Authors: Abderrahim Boudenne, Boudjemaa Agoudjil, Manel Haddadi
Fig.4: Tensile strength comparison of common engineering materials.
Jacobi, "A review on polymer heat exchangers for HVAC&R applications," International journal of refrigeration, vol. 32, pp. 7 6 3 – 7 7 9, 2009
Thompson, "Thermal properties," Encyclopedia of polymer science and engineering, vol. 16, pp. 711-747, 1989
Bose, "Carbon Nanotube Based Composites- A Review," Journal of Minerals & Materials Characterization & Engineering, vol. 4, pp. 31-46, 2005
Popov, "Carbon nanotubes: properties and application," Materials Science and Engineering, vol. 43, pp. 61–102, 2004
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