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Online since: August 2014
Authors: Tomáš Chrebet, Jozef Martinka
Obtained data could find application in identifying the causes of fires and exact assessment of fire risk not only for materials but also for buildings in which the materials form an important part of the fire risk.
For completeness it should be added that the comprehensive assessment of fire risk of certain materials (e.g. construction materials with static or fire separating function) is necessary to know the change of mechanical properties during fire.
According to [19-20] is an important factor affecting the thermal resistance of wood and wood materials the density of materials.
European Journal of Environmental and Safety Sciences.
European Journal of Environmental and Safety Sciences.
Online since: September 2020
Authors: Ismail Hanafi, Ikhwan Yusuff, Norshahida Sariffudin, Afifah Ali, S. Norbahiyah
Materials and Methods Sample Preparation.
Biofiber Reinforcements in Composite Materials, 86–103
Research Journal of Engineering Science, 2(3), 46–53
Conf. on Structure, Processing, and Properties of materials
American International Journal of Research in Science, 14–164
Online since: April 2017
Authors: Shang Lei Yang, Yan Wang, Yi Shuai Jiang, Zhi Hua Yang
Materials Science & Engineering, 2000, 280(1):37-49 [2] Dursun T, Soutis C.
Journal of Materials Processing Technology, 2011.211(1): 95-102
Materials Science & Engineering A, 2010,527(7-8):2057-2064
Materials Science & Engineering A, 2014, 594 (594): 168-177
Materials Science & Engineering A, 2009, 518(1):144-149
Online since: October 2017
Authors: Inyoman Nyoman Sudiana, Seitaro Mitsudo, Prima Endang Susilowati, Dahlia Dahlia, Wulan Purnama Sari, La Ode Ngkoimani
Recently, the use of microwaves as a substitute for the conventional heating has been reported for various materials such as silica ceramic [7-12], alumina materials [14-18] or for speeding up a chemical reaction and drying [19-20].
Aripin, Effect of High-Frequency Microwave on Micro Hardness of Alumina Ceramic, Material Science Forum , Vo. 872, 2016, pp.114-117 [11] M.
Sudiana, Properties of 2.45 GHz microwave sintered SiO2 from rice husk ash and Al2O3, ARPN Journal of Engineering and Applied Sciences   Vol. 12  No. 19, 2016, pp. 11595-11598 [12] I.
Kuwayama, Grain Growth in Millimeter Wave Sintered Alumina Ceramics , Advanced Materials Research, Vol.789 (2013), pp. 279-282 [17] M.
Sudiana, 2.45 GHz microwave drying of cocoa bean, ARPN Journal of Engineering and Applied Sciences   Vol. 12  No. 19, 2016, pp. 11595-11598 [21] Kingston, H.M.S., H.J.
Online since: October 2010
Authors: Xing Fang Wang
Experimental 45 galvanized steel is the substrate, the solution for the 320 heads of granular materials zinc, 4% alcohol solution of nitric acid, chemical pure copper sulfate crystals, such as cupric hydroxide.
Thus, the use of film materials to meet the performance requirements under the premise of the preparation of the zinc film thickness should be as small as possible.
From Eq.(2), it can be seen that (1) film material melting point temperature and the temperature of the matrix material is the intrinsic difference of the major factors of stress; (2) intrinsic stress and film materials related to the elastic modulus of matrix material on the almost no sign of stress have an impact.
References [1] Guan YJ, Xia Y: Advances In Mechanics Vol. 34 (20042), p. 237 [2] Yoshiyuki N, Kazukiyo U, Manabu S: Journal of Nuclear Materials Vol. 258-263 (1998), p.1517 [3] Wang SM, He MY, Liu L and et al: Heat Treatment of Metals Vol. 29 (2004), p. 28 [4] Ma BX, Yao N, Jia Y, et al: Acta Physica Sinica Vol. 54 (2005), p. 2853 [5] Feng WR, Yan DR He JN: Acta Physica Sinica Vol. 54 (2005), p. 2399 [6] Li N, WuG, Li DY: Material Science and Technology Vol.9 (2001) No.4, p. 420 [7] Hiroshi H, Ken G, Shinya I: Journal of the European Ceramic Society Vol. 25 (2005), p. 535 [8] Yang YC: Surface and Films Technology Vol.201 (2007), p. 7187 [9] Shao SY, Fan ZX, Shao JD: Acta Physica Sinica Vol. 54 (2005), p. 3312 [10] Masashi K, Hiroshi H Hiroshi F: Carbon Vol. 43 (2005), p. 171 [11] Wang SM, Liu L, Zhao XJ: Materials Protection Vol. 36 (2003), p. 24 [12] Wang SM, He MY, Liu L: Heat Treatment of Metals Vol. 31 (2006), p. 71 [13] Kong DJ, Zhang YK, Chen ZG: Acta Physica Sinica Vol
Journal of Applied Sciences Vol. 13 (1995), p.74 [16] Kong DJ, Zhang YK, Lu JZ: Chinese Journal of Materials Research Vol. 21 (2007), p. 92
Online since: July 2013
Authors: Ill Soo Kim, Reenal Ritesh Chand, Ji Hye Lee, Ji Sun Kim
Deng: Materials and Design, 30 2, February, 359-366, 2009
Deng and H.Murakawa: Computational Materials Science, 43, August, 353-365, 2008
Long, and P.Maropoulos,: Journal of Materials Processing Technology, 167, 393-401, 2005
Liang, and H.Murakawa: Journal of Materials Processing Technology 2007; 183, 2-3: 219-225
Materials Pro.
Online since: May 2014
Authors: Michael P. Pietryga, Kai F. Karhausen, Markus Bambach, Gerhard Hirt, A. Mikloweit
In this paper, the role of relative motion of the materials to be roll-bonded is examined as a function of the difference in flow strength of both materials and the pass reduction.
Petersen and C. dos Santos, Journal of Materials Processing Technology 45 (1994) 1-6
Lee, Materials Science and Technology 7 (1991) 1042-1050
Taheri, Journal of Materials Processing Technology 166 (2005) 163-172
Wu, Journal of Materials Processing Technology 125-126 (2002) 664-669.
Online since: May 2006
Authors: Rui N. Correia, Paula A.A.P. Marques, Sandra C.P. Cachinho
Barecz, Journal of Materials Processing Technology 143-144 (2003), p. 158-163 [8] P.
Niedbala, Journal of Materials Processing Technology 9293 (1999), p.190-194 [10] K.
Fernandes, Journal of Materials Chemistry 14 (2004), p. 1861-1866 [13] E.
Caillard, Materials Science and Engineering C 24 (2004), p. 611-618 [14] B.
Gotman, Journal of Materials Science: Materials in Medicine 15 (2004), p. 1073-1077 [18] S.
Online since: August 2015
Authors: Piotr Malinowski, Agnieszka Banaszak-Piechowska
Journal of materials research, 1992. 7(07): p. 1606-1609
Advanced Engineering Materials, 2013. 15(10): p. 935-940
Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 2012. 177(15): p. 1352-1357
Diamond and Related Materials, 1992. 1(12): p. 1145-1155
Raman spectra of diamondlike amorphous carbon films. in Materials Science Forum. 1991.
Online since: December 2009
Authors: Jose Maria Manero, F.J. Gil, Marta González, J. Peña
Gil 1d 1 Department of Materials Science and Metallurgy, Universitat Politècnica de Catalunya, Avda.
Science and Technology of Advanced Materials 2003; 4(5):445-454
Materials Science and Engineering: A 2006; 425(1-2):278-285
Materials Science and Engineering A 1998; 253(1-2):151-159
Journal of Materials Engineering and Performance 2005; 14(6):747-754