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Online since: June 2008
Authors: Bernhard Wielage, Gert Alisch, Matthias Hockauf, Thomas Lampke, Daniela Nickel, Harry Podlesak, Samer Darwich
Langdon, Progress in Materials Science 51 (2006) 881-981
Alexandrov, Progress in Materials Science 45 (2000) 103- 189
Tsuzaki, Journal of Solid State Electrochemistry (2007) 1-6
Lee, Materials Science and Engineering A A366 (2004) 282-291
Krüger, submitted to Journal of Materials Science (2008).
Alexandrov, Progress in Materials Science 45 (2000) 103- 189
Tsuzaki, Journal of Solid State Electrochemistry (2007) 1-6
Lee, Materials Science and Engineering A A366 (2004) 282-291
Krüger, submitted to Journal of Materials Science (2008).
Online since: October 2013
Authors: Jun Yan Yao, Yu Jie Li, Loogn Tak Lim
According to polymer physical sciences, polymer molecular weight and molecular weight distribution are the internal factors which impact the molecular structure and properties of the material.
Contact angle is used to characterize the wetting degree of solid materials with water.
Advanced Materials Research, Vol. 12(2000), p. 1841 [3] F Pavia, C La, V Brucato.
Advanced Materials Research, Vol. 2011 (2011), p. 1741 [7] M Viljanmaa, R Mattila, et al.
Journal of Materials Science: Materials in Medicine, Vol. 11(2000), p.393
Contact angle is used to characterize the wetting degree of solid materials with water.
Advanced Materials Research, Vol. 12(2000), p. 1841 [3] F Pavia, C La, V Brucato.
Advanced Materials Research, Vol. 2011 (2011), p. 1741 [7] M Viljanmaa, R Mattila, et al.
Journal of Materials Science: Materials in Medicine, Vol. 11(2000), p.393
Online since: November 2012
Authors: Qiang Li, Hui Yu, Li Gang Liu, Yu Hui Wang, Yu Dong Yang, Cong Tao Liang
Introduction
The development trend of cast rollers is the application of the compound roller, which is made of two metal materials with different properties.
The characteristics of compound rollers are as follows: the surface layer is made of wear resistant materials, while the core is ductile materials, which make the compound rollers have both good strength and toughness.
International Journal of Mechanical Sciences, 2001, 43: 1243-1257 [4] Sergey V. shepel, Samuel Paolucci.
Journal of Materials Processing Technology, 2005, 168: 10-15 [6] Lei Zhang, Houfa Shen, Yiming Rong, Tianyou Huang.
Materials Science and Engineering A, 2007, 466: 71-78
The characteristics of compound rollers are as follows: the surface layer is made of wear resistant materials, while the core is ductile materials, which make the compound rollers have both good strength and toughness.
International Journal of Mechanical Sciences, 2001, 43: 1243-1257 [4] Sergey V. shepel, Samuel Paolucci.
Journal of Materials Processing Technology, 2005, 168: 10-15 [6] Lei Zhang, Houfa Shen, Yiming Rong, Tianyou Huang.
Materials Science and Engineering A, 2007, 466: 71-78
Online since: August 2015
Authors: Tadeusz Mikolajczyk
Applied Mechanics and Materials, 186 (2012) 50-57
Journal of Solid Mechanics and Materials Engineering 1/1 (2007)
Applied Mechanics and Materials, 613 (2014) 350-356
Applied Mechanics and Materials, 436 (2013) 382-389
Applied Mechanics and Materials, 555 (2014) 155-162
Journal of Solid Mechanics and Materials Engineering 1/1 (2007)
Applied Mechanics and Materials, 613 (2014) 350-356
Applied Mechanics and Materials, 436 (2013) 382-389
Applied Mechanics and Materials, 555 (2014) 155-162
Online since: June 2013
Authors: Valentino Paradiso, Antonino Squillace, Fabio Scherillo, Carla Velotti, Pasquale Buonadonna, Gennaro Dionoro, Antonio Langella, Umberto Prisco, Antonello Astarita, Aurelio Tronci
Prisco, On the Critical Technological Issues of Friction Stir Welding T-Joints of Dissimilar Aluminum Alloys Journal of Materials Engineering and Performance 2011 - DOI: 10.1007/s11665-011-0073-3
Palmeri, FSW of AA2139-T8 Butt joints for aeronautical applications, Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications April 2011 vol. 225 no. 2 87-101
Astarita, Effect of welding parameters on morphology and mechanical properties of Ti–6Al–4V laser beam welded butt joints, Journal of Materials Processing Technology 212 (2012) 427– 436
Nogi, Tensile properties and fracture locations of friction-stir-welded joints of 2017-T351 aluminum alloy, Journal of Materials Processing Technology 142 (2003) 692–696
Eberlb, The effect of silver on microstructural evolution in two 2xxx series Al-alloys with a high Cu:Mg ratio during ageing to a T8 temper, Materials Science and Engineering A 491 (2008) 214–223
Palmeri, FSW of AA2139-T8 Butt joints for aeronautical applications, Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications April 2011 vol. 225 no. 2 87-101
Astarita, Effect of welding parameters on morphology and mechanical properties of Ti–6Al–4V laser beam welded butt joints, Journal of Materials Processing Technology 212 (2012) 427– 436
Nogi, Tensile properties and fracture locations of friction-stir-welded joints of 2017-T351 aluminum alloy, Journal of Materials Processing Technology 142 (2003) 692–696
Eberlb, The effect of silver on microstructural evolution in two 2xxx series Al-alloys with a high Cu:Mg ratio during ageing to a T8 temper, Materials Science and Engineering A 491 (2008) 214–223
Online since: December 2025
Authors: Amged El Hassan, Waleed Ahmed, F.K.S. Al Jahwari, Khalifa Harib, Kubilay Aslantas, Hour Alhefeiti
International Journal of Science Engineering and Advance Technology, IJSEAT, Vol 2, Issue. https://doi.org/oai:ojs.www.ijseat.com:article/241
Journal of Composite Materials, 42(3), 229-256
Materials & Design, 178, 107858
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 14644207231188827
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 235(6), 1382-1400
Journal of Composite Materials, 42(3), 229-256
Materials & Design, 178, 107858
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 14644207231188827
Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications, 235(6), 1382-1400
Online since: August 2014
Authors: Hu Jia, Wan Fen Pu, Ke Xing Li, Ke Yu Wang, Zai Guang Yang, Bin Li
Experimental Materials and Methods
Materials.
Mahmood: Journal of Petroleum Technology, Vol. 40 (1988), p.963-966
Civan: Journal of Petroleum Science and Engineering, Vol. 36 (2002), p.33-44
Tayfun: Journal of Petroleum Science and Engineering, Vol. 59 (2007), p.27-42
Yanqing:Petroleum Science and Technology, Vol. 31 (2013), p.2191-2201
Mahmood: Journal of Petroleum Technology, Vol. 40 (1988), p.963-966
Civan: Journal of Petroleum Science and Engineering, Vol. 36 (2002), p.33-44
Tayfun: Journal of Petroleum Science and Engineering, Vol. 59 (2007), p.27-42
Yanqing:Petroleum Science and Technology, Vol. 31 (2013), p.2191-2201
Online since: January 2026
Authors: Gen Sasaki, Kenjiro Sugio, Yuuki Shinohara, Yoshikazu Hayashi
Introduction
Materials informatics [1-4] is a field in which materials development is carried out using data science, including technology based on statistical mathematics, etc., and has attracted attention in recent years as an epoch-making method that will significantly change the materials development process.
Choudhary, Perspective: Materials informatics and big data: Realization of the fourth paradigm of science in materials science, APL MATERIALS 4(5) (2016) 053208
Wolverton, A general-purpose machine learning framework for predicting properties of inorganic materials, npj Computational Materials 2 (2016), 16028
Ward et al., Matminer: An open source toolkit for materials data mining, Computational Materials Science 152, 60-69 (2018)
Sundmacher, Big Data Creates New Opportunities for Materials Research, A Review on Methods and Applications of Machine Learning for Materials Design, Engineering 5 (2019), 1017-1026
Choudhary, Perspective: Materials informatics and big data: Realization of the fourth paradigm of science in materials science, APL MATERIALS 4(5) (2016) 053208
Wolverton, A general-purpose machine learning framework for predicting properties of inorganic materials, npj Computational Materials 2 (2016), 16028
Ward et al., Matminer: An open source toolkit for materials data mining, Computational Materials Science 152, 60-69 (2018)
Sundmacher, Big Data Creates New Opportunities for Materials Research, A Review on Methods and Applications of Machine Learning for Materials Design, Engineering 5 (2019), 1017-1026
Online since: December 2014
Authors: Rogério Hermida Quintella, Roberto Brito Velame, Lisa Sahadia de Oliveira Carvalho, Bárbara Ariela da Silva Leite, Rosana Muñoz
The final quantities of materials used in the concreting are presented in Table 2.
Balaguru, Contribution of fibers to crack reduction of cement composites during the initial and final setting period, in: ACI Materials Journal, American Concrete Institute, Vol. 91, Nº 3, May-June (1994), pp. 280-288
Zollo, Effect of synthetic fibers on volume stability and cracking of Portland Cement Concrete and Mortar, in: ACI Materials Journal, American Concrete Institute, Vol. 87, Nº 4, July-August (1990), pp. 327-332
Canellas, Reciclagem de PET, visando a substituição de agregado miúdo em argamassas, Pontifícia Catholic University in Rio de Janeiro (Master’s in Materials Science and Metallurgy), Rio de Janeiro (2005) [13] F.
Gomes, Materiais de Construção II (practical class handout), Federal University of Bahia, Polytechnic School, Department of Materials Science and Technology (DCTM), Salvador (2008) [33] Brazilian Association of Technical Standards, NBR NM 67.
Balaguru, Contribution of fibers to crack reduction of cement composites during the initial and final setting period, in: ACI Materials Journal, American Concrete Institute, Vol. 91, Nº 3, May-June (1994), pp. 280-288
Zollo, Effect of synthetic fibers on volume stability and cracking of Portland Cement Concrete and Mortar, in: ACI Materials Journal, American Concrete Institute, Vol. 87, Nº 4, July-August (1990), pp. 327-332
Canellas, Reciclagem de PET, visando a substituição de agregado miúdo em argamassas, Pontifícia Catholic University in Rio de Janeiro (Master’s in Materials Science and Metallurgy), Rio de Janeiro (2005) [13] F.
Gomes, Materiais de Construção II (practical class handout), Federal University of Bahia, Polytechnic School, Department of Materials Science and Technology (DCTM), Salvador (2008) [33] Brazilian Association of Technical Standards, NBR NM 67.
Online since: November 2015
Authors: Cristina Ștefana Miron-Borzan, Paul Bere, Adrian Popescu, Liana Livia Hancu
Introduction
The materials analyzed in the paper are from the reinforced polymers class, namely polyamide.
Borzan, Development of Environmental Technology for Carbon Fibre Reinforced Materials Recycling - Revista Materiale Plastice Bucuresti, (2013), pp. 79-83
Published in Academic Journal of Manufacturing Engineering, AJME-2012, Vol.
Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
Popan, Analysis of aluminum parts for accuracy improvement in vacuum casting process, Academic Journal of Manufacturing Engineering, AJME-, Vol.
Borzan, Development of Environmental Technology for Carbon Fibre Reinforced Materials Recycling - Revista Materiale Plastice Bucuresti, (2013), pp. 79-83
Published in Academic Journal of Manufacturing Engineering, AJME-2012, Vol.
Research papers Faculty of Materials Science and Technology Slovak University of Technology in Trnava.
Popan, Analysis of aluminum parts for accuracy improvement in vacuum casting process, Academic Journal of Manufacturing Engineering, AJME-, Vol.