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Online since: October 2010
Authors: Qing Song Yan, Huan Yu, Zhi Feng Xu, Bo Wen Xiong, Chang Chun Cai
Xiong: Journal of Alloys and Compounds Vol.501 (2010), p.352
[2] Q.S.
Xu: The Chinese Journal of Nonferrous Metals Vol.18 (2008), p.1051 (In Chinese)
Stoehr: Journal of Materials Science and Technology Vol.4 (1988), p. 240
Daskalov: Journal of Materials Science and Technology Vol.4 (1996), p. 51
Campbell: Material Science and Technology Vol.4 (1988), p.194
Xu: The Chinese Journal of Nonferrous Metals Vol.18 (2008), p.1051 (In Chinese)
Stoehr: Journal of Materials Science and Technology Vol.4 (1988), p. 240
Daskalov: Journal of Materials Science and Technology Vol.4 (1996), p. 51
Campbell: Material Science and Technology Vol.4 (1988), p.194
Online since: October 2008
Authors: Stefano Spigarelli, Lorella Ceschini, Alessandro Morri, Giuliano Sambogna, Mohamad El Mehtedi
Higashi, Journal of Materials Science Vol. 34 (1999), p. 2255
Lee: Journal of Materials Processing Tech.
Langdon: Materials Science and Eng.
Tan: Materials Science and Eng.
Tan: Materials Science and Eng.
Lee: Journal of Materials Processing Tech.
Langdon: Materials Science and Eng.
Tan: Materials Science and Eng.
Tan: Materials Science and Eng.
Online since: June 2023
Authors: Alessandra Alberti, Giuseppe Fisicaro, Paolo Badalà, Antonino La Magna, Gabriele Bellocchi, Simone Rascunà, Marius Enachescu, Anna Bassi, Patrizia Vasquez, Daniele Pagano, Ioannis Deretzis, Corrado Bongiorno, Salvatore Sanzaro, Massimo Boscaglia, Fabiana Maria Pennisi
Saggio, Morphological and electrical properties of Nickel based Ohmic contacts formed by laser annealing process on n-type 4H-SiC, Materials Science in Semiconductor Processing, 97 (2019) 62-66
Alberti, Structural and electrical characterization of Ni-based ohmic contacts on 4H-SiC formed by solid-state laser annealing, Materials Science Forum 1062 (2022) 417-421
Michaud, Electrical, morphological and structural properties of Ti ohmic contacts formed on n-type 4H–SiC by laser thermal annealing, Materials Science in Semiconductor Processing, 151 (2022) 106983
Michaud, Optimisation of Ti Ohmic Contacts Formed by Laser Annealing on 4H-SiC, Materials Science Forum, 1062 (2022) 219-223
La Magna, Simulations of the ultra-fast kinetics in Ni-Si-C ternary systems under laser irradiation, Materials 14 (2021) 4769
Alberti, Structural and electrical characterization of Ni-based ohmic contacts on 4H-SiC formed by solid-state laser annealing, Materials Science Forum 1062 (2022) 417-421
Michaud, Electrical, morphological and structural properties of Ti ohmic contacts formed on n-type 4H–SiC by laser thermal annealing, Materials Science in Semiconductor Processing, 151 (2022) 106983
Michaud, Optimisation of Ti Ohmic Contacts Formed by Laser Annealing on 4H-SiC, Materials Science Forum, 1062 (2022) 219-223
La Magna, Simulations of the ultra-fast kinetics in Ni-Si-C ternary systems under laser irradiation, Materials 14 (2021) 4769
Online since: September 2013
Authors: Mohd Hanafiah Abidin, Ahmad Zafir Romli, M.A. Wahab, Mohd Zaki Nurul Ayunie
Abidin1, d
1Faculty of Applied Sciences, Universiti Teknologi MARA, 40450, Shah Alam, Selangor, Malaysia.
2Center of Polymer Composite Research and Technology, Institute of Science, Universiti Teknologi MARA, Malaysia.
3Petronas Research (PRSB), 43000, Kajang, Selangor, Malaysia.
Methods and Materials In this study, the main ingredients used are styrene butadiene rubber (SBR), epoxidized palm oil (EPO) and carbon black (FEF).
Karunanayake, "Study on natural oils as alternative processing aids and activator in carbon black filled natural rubber," Journal of the National Science Foundation of Sri Lanka, p. 7, 2009
George, Sabu Thomas,"Effect of nature an crosslinking on swelling and mechanical behaviour of styrene-butadiene rubber membranes.," Journal of Membrane Science, vol. 163, pp. 1-17, 1999
Kundu, "Improvement of filler-rubber interction by the coupling action of vegetables oil in carbon black reinforced rubber," Journal of Applied Polymer Sciences vol. 75, 1999
Methods and Materials In this study, the main ingredients used are styrene butadiene rubber (SBR), epoxidized palm oil (EPO) and carbon black (FEF).
Karunanayake, "Study on natural oils as alternative processing aids and activator in carbon black filled natural rubber," Journal of the National Science Foundation of Sri Lanka, p. 7, 2009
George, Sabu Thomas,"Effect of nature an crosslinking on swelling and mechanical behaviour of styrene-butadiene rubber membranes.," Journal of Membrane Science, vol. 163, pp. 1-17, 1999
Kundu, "Improvement of filler-rubber interction by the coupling action of vegetables oil in carbon black reinforced rubber," Journal of Applied Polymer Sciences vol. 75, 1999
Online since: February 2012
Authors: Zi Tian Fan, Xuan Pu Dong, Hang Chen, Xiao Qing Xiong, Rong Ma, Shu Qun Chen
Higashi: Materials Science Forum Vol. 419-222 (2003)
[3] Z.Y.
Ding, Materials Science and Engineering A Vol. 392, (2005), p. 150 [4] S.B.
Shu: Materials Science and Engineering A, Vol. 515 (2009), p. 152 [10] G.H.
Mitchell: An introduction to Materials Engineering and Science: for Chemical and Materials Engineers (Jone Wiley & Sons, Inc., USA, 2004) [13] Q.M.
Pan: Materials Science and Engineering A Vol 528 (2011), p. 5914 [16] R.
Ding, Materials Science and Engineering A Vol. 392, (2005), p. 150 [4] S.B.
Shu: Materials Science and Engineering A, Vol. 515 (2009), p. 152 [10] G.H.
Mitchell: An introduction to Materials Engineering and Science: for Chemical and Materials Engineers (Jone Wiley & Sons, Inc., USA, 2004) [13] Q.M.
Pan: Materials Science and Engineering A Vol 528 (2011), p. 5914 [16] R.
Online since: September 2015
Authors: J. Srinath, S.C. Sharma, Koshy M. George, G. Sudarshan Rao, G. Nagamalleswara Rao, Joji J. Chaman, P. Ramesh Narayanan
Watkins, Materials Science and Engineering A, 344 (2003), 125-131
[2] Y.H.
Deng, Materials Science and Engineering A 358 (2003) 37-43 [3] L.
Lu, Materials Science and Technology March 1991 Vol. 7, 239-248 [4] Habib Sidhom, Farhat Ghanem, Tidiane Amadou, Gonzalo Gonzalez, Chedly Braham, International Journal of Advanced Manufacturing Technology, 2013, 65(1-4), 141-153 [5] O.A.
Abu Zeid, Journal of Materials Processing Technology 68 (1997), 27-32 [6] W.C.
Pharr, Journal of Materials research, Vol. 7, 6 (1992), 1564-1583
Deng, Materials Science and Engineering A 358 (2003) 37-43 [3] L.
Lu, Materials Science and Technology March 1991 Vol. 7, 239-248 [4] Habib Sidhom, Farhat Ghanem, Tidiane Amadou, Gonzalo Gonzalez, Chedly Braham, International Journal of Advanced Manufacturing Technology, 2013, 65(1-4), 141-153 [5] O.A.
Abu Zeid, Journal of Materials Processing Technology 68 (1997), 27-32 [6] W.C.
Pharr, Journal of Materials research, Vol. 7, 6 (1992), 1564-1583
Online since: January 2022
Authors: Pavan Chandrasekar, Dhanya Sathyan, Anjala Nourin, Addepalli Sri Naga Bhushana Aravind Gupta, Bavineni Venkata Jyoshna
International Journal of Mining Science and Technology
Journal of Materials in Civil Engineering, 30(9), 04018221
Materials Journal, 98(5), 394-401
Construction and Building Materials, 25(11), 4105-4111
Construction and Building Materials, 23(2), 910-917
Journal of Materials in Civil Engineering, 30(9), 04018221
Materials Journal, 98(5), 394-401
Construction and Building Materials, 25(11), 4105-4111
Construction and Building Materials, 23(2), 910-917
Online since: February 2019
Authors: Nikita S. Deryabin
The refractory alloys, being difficult-to-form materials in the narrow temperature range should provide requirement grain size and mechanical behavior according technological documents in finished products.
[5] Dayong, C., Wenchang, L., Rongbin, L., Weihong, Z. and Mei, Y. (2004) ‘On the accuracy of the X-ray diffraction quantitative phases analysis method in Inconel 718’, J. of Materials Science, Vol. 39, No. 2, pp.719–721
[6] Ganesh, P., Kaul, R., Paul, C.P., Tiwari, P., Rai, S.K., Prasad, R.C. and Kukreja, L.M. (2010) ‘Fatigue and fracture toughness characteristics of laser rapid manufactured Inconel 625 structures’, Materials Science and Engineering A, Vol. 527, Nos. 29–30, pp.7490–7497
[7] Khana, Z.A., Hadfield, M., Tobe, S. and Wang, Y. (2005) ‘Ceramic rolling elements with ring crack defects – a residual stress approach’, Materials Science and Engineering A, Vol. 404, Nos. 1–2, pp.221–226
Armstrong, Dislocation-mechanics-based constitutive relations for material dynamics calculations, Journal of Applied Physics. 61 (5) (1987) 1816-1825
[5] Dayong, C., Wenchang, L., Rongbin, L., Weihong, Z. and Mei, Y. (2004) ‘On the accuracy of the X-ray diffraction quantitative phases analysis method in Inconel 718’, J. of Materials Science, Vol. 39, No. 2, pp.719–721
[6] Ganesh, P., Kaul, R., Paul, C.P., Tiwari, P., Rai, S.K., Prasad, R.C. and Kukreja, L.M. (2010) ‘Fatigue and fracture toughness characteristics of laser rapid manufactured Inconel 625 structures’, Materials Science and Engineering A, Vol. 527, Nos. 29–30, pp.7490–7497
[7] Khana, Z.A., Hadfield, M., Tobe, S. and Wang, Y. (2005) ‘Ceramic rolling elements with ring crack defects – a residual stress approach’, Materials Science and Engineering A, Vol. 404, Nos. 1–2, pp.221–226
Armstrong, Dislocation-mechanics-based constitutive relations for material dynamics calculations, Journal of Applied Physics. 61 (5) (1987) 1816-1825
Online since: January 2013
Authors: Fang Zhu, Jun Fang Wei, He Zhang
The monodisperse spherical particles used as raw materials to prepare photonic crystal materials and multifunctional catalysts with core-shell structure have attracted wide attention and become the research hotspot in chemistry, materials science, and many other disciplines and cross-cutting areas [5].
Experimental Materials and Instrumentation.
Vol.72 (2004), p.175 [8] G.H Bogush and C.F Zukoski IV: Journal of Colloid And Interface Science.
Journal of Colloid and Interface Science.
Electronic Components & Materials.
Experimental Materials and Instrumentation.
Vol.72 (2004), p.175 [8] G.H Bogush and C.F Zukoski IV: Journal of Colloid And Interface Science.
Journal of Colloid and Interface Science.
Electronic Components & Materials.
Online since: October 2010
Authors: Zhi Wang, Jian Fei Liu, Yin Sen Ding, Guo Pu Shi
Functional gradient materials are a kind of non-homogeneous composites with excellent mechanical properties.
Zhang: Journal of Materials Processing Technology, Vol.134 (2003), p.206 [5] J.D.
Li: Journal of Materials Engineering, Vol.48 (2003), p.6 (in Chinese) [6] Y.S.
Zhang: Journal of Aeronautical Materials, Vol.25 (2005), p.5 (in Chinese) [8] F.T.
Xu: Fundamentals of materials science (Beijing Industrial University Press, China 2001) (in Chinese) [10] J.L.
Zhang: Journal of Materials Processing Technology, Vol.134 (2003), p.206 [5] J.D.
Li: Journal of Materials Engineering, Vol.48 (2003), p.6 (in Chinese) [6] Y.S.
Zhang: Journal of Aeronautical Materials, Vol.25 (2005), p.5 (in Chinese) [8] F.T.
Xu: Fundamentals of materials science (Beijing Industrial University Press, China 2001) (in Chinese) [10] J.L.