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Online since: February 2023
Authors: Prantasi Harmi Tjahjanti, Edi Widodo, Iswanto Iswanto, Sholeh Pamuji
Examination of Thermoplastic Polymers for Splicing and Bending Prantasi Harmi Tjahjanti1,a*, Iswanto2,b, Edi Widodo3,c and Sholeh Pamuji4,d 1-4Department of Mechanical Engineering, Universitas Muhammadiyah Sidoarjo, Indonesia aprantasiharmi@umsida.ac.id , biswanto@umsida.ac.id cediwidodo@umsida.ac.id , dsholehpamungkas@gmail.com Keywords: Thermoplastic polymers, Polyethylene (PE), Polypropylene (PP), Polyvinyl chloride (PVC), hot gas welding, bending test Abstract.
Laxmana Naik, B.Yogesha, 2016, Processing Techniques of Polymer Matrix Composites – A Review, International Journal of Engineering Research and General Science Volume 4, Issue 3, May-June, 2016, ISSN 2091-2730357 www.ijergs.org [5] Md Shakibul Haque, Mohd.
Anees Siddiqui, 2016, Plastic Welding: Important Facts and Developments, American Journal of Mechanical and Industrial Engineering; 1(2): 15-19 http://www.sciencepublishinggroup.com/j/ajmie, doi: 10.11648/j.ajmie.20160102.12 [6] Firas Awaja, Shengnan Zhang, Manoj Tripathi, Anton Nikiforov, Nicola Pugno, 2016, Cracks, microcracks and fracture in polymer structures:Formation, detection, autonomic repair, Progress in Materials Science 83 (2016) 536–573, www.elsevier.com/locate/pmatsci
IJSRD - International Journal for Scientific Research & Development, 6
American Journal of Mechanical and Industrial Engineering , 5
Online since: June 2016
Authors: A.G. Barbosa de Lima, C.M. Rufino Franco
Guiné: Journal of Food Engineering.134 (2014)30-36
Cao: Journal of Food Engineering.97 (2010)161-167
Ece: Journal of Food Engineering. 49 (2001) 327-331
Cao: Journal of Food Engineering.91 (2009)126-132
Li: Journal of Food Engineering.76 (2006)272-279
Online since: December 2013
Authors: Zazuli Mohid, Abdullah Wagiman, Md. Saidin bin Wahab, AZUDDIN BIN MAMAT
Yin, Microstructure and mechanical properties of three porous Si3N4 ceramics fabricated by different techniques, Materials Science and Engineering A 549 (2012) 43-49 [3] Y.
Yang, Novel drug delivery devices for providing linear release profiles fabricated by 3DP, International Journal of Pharmaceutics 370 (2009) 160-166 [6] M Saidin Wahab, Abdullah Wagiman, Mustaffa Ibrahim, Development of wood-based composites material for 3d printing process, Applied Mechanics and Materials 315 (2013) 987-991 [7] G.
Docchio, Three-dimensional optical measurements and reverse engineering for automotive applications, Robotics and Computer-Integrated Manufacturing 20 (2004) 359-367
Lucknow, High quality large components ‘‘shape welded’’ by a SAW process, Welding Journal 62 (9) (1983) 17–24
Wang, The arc characteristics and metal transfer behaviour of cold metal transfer and its use in joining aluminium to zinc-coated steel, Materials Science and Engineering A 499 (2009) 111–113
Online since: May 2020
Authors: Masayoshi Fuji, Gasidit Panomsuwan, Napat Kaewtrakulchai, Apiluck Eiad-Ua, Panupong Verasarut, Tanatorn Liamprawat
Horse Manure Derived Nitrogen-Doped Porous Carbon via Hydrothermal Carbonization for Promising Applications Tanatorn Liamprawat1,a, Panupong Verasarut1,b, Napat Kaewtrakulchai1,c, Gasidit Panomsuwan2,d, Masayoshi Fuji3,e and Apiluck Eiad-Ua1,f 1College of Nanotechnology, King Mongkut’s Institute of Technology, Bangkok, 10520 2Department of Materials Engineering, Faculty of Engineering, Kasetsart University, Bangkok, Thailand 3Advanced Ceramic Research Center, Nagoya Institute of Technology, Tajimi, Gifu 507-0033, Japan aatomatmoz014@gmail.com, bpanupong331@gmail.com, cknapat.kara@gmail.com, dgasidit.p@ku.ac.th, efuji@nitech.ac.jp, fapiluck.ei@kmitl.ac.th Keywords: Horse manure, Hydrothermal Carbonization, Nitrogen-doped porous carbon, electrochemical performance.
Acknowledgment The authors would like to acknowledge to the College of Nanotechnology, King Mongkut’s Institute of Technology Ladkrabang and Department of Materials Engineering, Faculty of Engineering, Kasetsart University for their assistance for facility supports.
[3] Hasan, S.; Fuat, G., Journal of Cleaner Production, 113, 2016, 995-1004
[4] Imran, J.R.; Rajalakshmi, N.; Dhathathreyan, K.S.; Ramaprabhu, S., international journal of hydrogen energy 2015, 1-12 [5] Melike, D.O.; Uday, K.V.; Claudiu, T.L., Industrial Crops and Products, 95, 2017 583–590
[6] Thomas, E.R.; Denisa, H.J.; Kiran, K.; Zhonghua, Z.; Gao, Q.L., Journal of Power Sources, 195, 2010, 912–918
Online since: January 2012
Authors: De Dong Hu, Jian Bin Zhuang, Ming Lei Ding
J. of the American Ceramic Society Vol. 72 (1989), p. 3-15 [4] Y.
Materials For Mechanical Engineering Vol. 28 (2004), p. 38-41 [13] H.J.
Journal of Hefei Union University Vol. 13 (2003), p. 77-82 [25] K.
International Journal of Pharmaceutics Vol. 369 (2009), p. 85-91 [27] M.
Jiangsu Ceramics, Vol. 35 (2002), p. 32-33 [30] Y.
Online since: July 2022
Authors: Jürgen Fleischer, Nikolas Matkovic, Adrian Schäfer, Marcel Waldhof, Tristan Schlotthauer, Marco Friedmann, Peter Middendorf, Nejila Parspour, Marlies Springmann
Open Engineering 11 (2021) 1, pp. 639–649 [6] Ngo, T.
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 229 (2015) 12, pp. 2238–2249 [16] Chakraborty, D.
T., A novel process planning approach for hybrid manufacturing consisting of additive, subtractive and inspection processes. 2012 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM), Hong Kong, China, 2012 - 2012, pp. 1617–1621 [19] Dilberoglu, U.
Procedia Engineering 184 (2017) 4, pp. 163–170 [22] Tomal, A.
IOP Conference Series: Materials Science and Engineering 260 (2017), pp. 12031 [23] Kim, H.
Online since: October 2011
Authors: Abhay M. Khalatkar, Rakesh H. Haldkar, V.K. Gupta
Zubair Khan, “Recent Developments In Piezoelectric Ceramics Materials and Deteriorations of their Properties”2nd International Conference On Frontiers Of Advanced Engineering Materials(FAEM-2006) 04-06 ,December, 2006,Lahore
Khan, “Estimate the Thermo mechanical Fatigue Life of Two Flip Chip Packages, 9th International Symposium On Advance Materials(ISAM- 2005), 05-205
Zou “Active Vibration Damping of Composite Beam using Smart Sensors and Actuators” [12] Journal of Aerospace Engineering, Vol. 15, No.3, July 1, 2002.
Online since: March 2014
Authors: Rui Zhang, Biao Zhao, Hao Chen, Chen Yang Wang, Bing Bing Fan, Xiao Xuan Pian, Bin Bin Wang, Wen Li, Bing Sun
Effect of Ni Coated SiC on Mechanical Properties of SiC/Fe Composites Binbin Wang 1,a, Bingbing Fan1, Wen Li1, Chenyang Wang1, Bing Sun1, Biao Zhao1, Xiaoxuan Pian1, Hao Chen1 and Rui Zhang1,2,* 1 School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 450001, China 2 Laboratory of Aeronautical Composites, Zhengzhou Institute of Aeronautical Industry Management, Zhengzhou 450046, China awbblmy168@163.com, *zhangray@zzia.edu.cn Keywords: Ni coated SiC; SiC/Fe composites; Interface modification Abstract: A facile one–step in situ chemical deposition method was introduced to synthesize Ni coated SiC composite powders, which used NiCl2·6H2O as nickel source and N2H4·H2O as reductant, respectively.
Ma, Materials Science and Engineering: R: Reports 29 (3–4) (2000) 49-113
Lloyd, International Materials Reviews 39 (1994) 1-23
Chen, Journal of Nanoscience and Nanotechnology 13 (2) (2013) 1456-1460
Rui Zhang, Jingkun Guo, Ceramics International 30 (2004) 401-404
Online since: October 2014
Authors: Robert Černý, Eva Vejmelková, Dana Koňáková, Monika Čáchová, Veronika Špedlová
Influence of Basalt Fibres and Aggregates on the Thermal Expansion of Cement-Based Composites KOŇÁKOVÁ Dana1,a *, ŠPEDLOVÁ Veronika1,b, ČÁCHOVÁ Monika1,c, VEJMELKOVÁ Eva1,d and ČERNÝ Robert1,e 1Czech Technical University in Prague, Faculty of Civil Engineering, Department of Materials Engineering and Chemistry, Thákurova 7, 166 29 Prague 6, Czech Republic adana.konakova@fsv.cvut.cz, bveronika.spedlova@fsv.cvut.cz, cmonika.cachova@fsv.cvut.cz, deva.vejmelkova@fsv.cvut.cz, ecernyr@fsv.cvut.cz Keywords: Concrete, basalt fibres, basalt aggregates, basic physical properties, thermal expansion.
Although concrete is one of the most utilized materials in civil engineering, just little attention was focused on research of this material in high temperature conditions.
[3] Li, Z.J., Zhou, X.M., Shen, B., Fiber-cement extrudates with perlite subjected to high temperatures, Journal of Materials in Civil Engineering. 16 (2004) 221-229
[11] Štubna, A., Trník A., Vozár L., Thermomechanical analysis of quartz porcelain in temperature cycles, Ceramics International. 33 (2007) 1287-1291
O., Brocken, H., Černý, R., Pavlík, Z., Hall, C., Kumaran, K., Pel, L., Plagge, R., Interlaboratory Comparison of Hygric Properties of Porous Building Materials, Journal of Thermal Envelope and Building Science. 27 (2004) 307-325.
Online since: February 2021
Authors: Petr Urban, Jesus Cintas Físico, Rosa María Aranda Louvier, Raquel Astacio Lopez, Fátima Ternero Fernández
Solid State Amorphization of Ti60Si40 Alloy via Mechanical Alloying Petr Urban1,a*, Fátima Ternero Fernández1,b, Rosa María Aranda Louvier2,c, Raquel Astacio López1,d and Jesús Cintas Físico1,e 1Advanced Materials Engineering Group, Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, 41092 Sevilla, Spain 2Department of Chemical Engineering, Physical Chemistry and Materials Science, Escuela Técnica Superior de Ingeniería, Universidad de Huelva, 21071 Huelva, Spain apurban@us.es, bfternero@us.es, crosamaria.aranda@dqcm.uhu.es, drastacio@us.es, ejcintas@us.es Keywords: amorphization; crystallization; titanium, silicon, mechanical alloying Abstract.
All the DSC results were obtained with heating rates of 40ºC /min up to a maximum temperature of 1000ºC using ceramic (alumina) cup to prevent reaction with the sample.
Smarsly, Microstructures and properties of high melting point intermetallic Ti5Si3 and TiSi2 compounds, Materials Science and Engineering A152 (1992) 288-294, [4] R.
Mitra, Mechanical behaviour and oxidation resistance of structural silicides, International Materials Reviews 51(1) (2013) 13-64 [5] T.
Cuevas, Amorphous phase formation and heat treating evolution in mechanically alloyed Al-Ti, Key Engineering Materials 772 (2018) 118-122
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