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Online since: October 2010
Authors: Bin Guo, Peng Zhang, Gang Chen, Shu Kang Cheng
Porous membrane materials have the universal use, so it is widely considered as one of the most promising high-tech.
The sol-gel process using metal alkoxides as starting materials has a high potential for preparing inorganic oxide ceramics.
Fig.5 shows SEM photos of porous membrane materials.
IMXK57080026, the Science Foundation of HIT at Weihai, Grant No.
Teofil: Journal of Materials Processing Technology Vol. 203 (2008), pp.121 [10] J.
Online since: July 2012
Authors: Guo Zhi Xu, Hong Kai Ni, Biao Yang, Hui Sun
Kim: Journal of Applied Polymer Science, Vol. 97 (2005), p. 1513 [7] E K.
Han: Journal of Applied Polymer Science, Vol. 80 (2001), p. 1388 [8] J.J.
Ge: The biodegradable polymer materials and its application, Chemical Industry Press, China (2002), in press
Park: Journal of Applied Polymer Science, Vol. 106 (2007), p. 2485 [10] L.
Wang: Polymer Materials Science and Engineering, Vol. 15 (1999), p. 93 [14] B.
Online since: October 2023
Authors: Eva María Rubio, Amabel Garcia-Dominguez, Marta María Marín, Beatriz de Agustina, M.A. Rabalo
It is observed that articles framed in the Material Sciences and Engineering areas predominate, of a transversal nature for manufacturing technologies and processes.
Processes and materials.
Karunakaran, Hybrid layered manufacturing of turbine blades, Materials today proceedings. 4(8) (2017) 8837-8847
Alberdi, Analysis of the machining process of inconel 718 parts manufactured by laser metal deposition, Materials. 12(13) (2019) 2159-2173
Zhang, Repairing surface defects of metal parts by groove machining and wire + arc based filling, Journal of Materials Processing Technology. 274 (2019) 116268
Online since: July 2024
Authors: Taiwo Ebenezer Abioye, Olawale Ibrahim Kolapo, Ayodeji David Olatise, Emmanuel Oluwadunsin Idowu, Segun Weyinmi Omejalile, Buliaminu Kareem
Journal King Saud UniversityEngineering Sciences
Journal of Materials Research and Technology, 2(2), 188-194
International Journal of Engineering Materials and Manufacture, 6(3), 176-186
In IOP Conference Series: Materials Science and Engineering (Vol. 413, No. 1, p. 012063).
Open Journal of Composite Materials, 9(03), 312
Online since: September 2012
Authors: Min Zhang, Jin Chen, Xiao Gang Wang, Ai Xia Guo, Lei Tang
New materials, 2003,5: 60-62
[4] LO T Y,CUI H Z.Materials Letters, 2004, 58(6): 916-919
[5] Xin X G, Xu Z Z, Journal of Building Materials, 2010,1: 86-89
[6] Huang X H, Cao X F, et al, Journal of Wuhan University of Science and Technology [7] Li Y, HU Yanpin g, HU Chunjing.
Advanced Materials Research, 2008, 33: 553-558.
Online since: December 2013
Authors: A. Mimi Mazira, M.T. Ramlah, A. Sharifah, Nor Munirah Abdullah
Normally, ultrafiltration membranes are made from polymeric materials and some type may be prepared by using an inorganic materials [3].
In this study, cellulose acetate will be used as one of the materials in membrane fabrication.
Cellulose acetate hollow fiber ultrafiltration membranes made from CA/PVP 360 K/NMP/water, Journal of Membrane Science, 218, 173-183
Preparation characterization and performance studies of ultrafiltration membranes with polymeric additive, Journal of Membrane Science, 350, 130-138
Preparation, morphologies and properties for flat sheet PPESK ultrafiltration membranes, Journal of Membrane Science, 270, 146-153
Online since: December 2024
Authors: K. Lalusab, M. Munichandu, L. Keerthi, K. Pavan Kumar Reddy, G. Sai Pradeep, N. Meghana, E. Narasimhulu
This study aims to give valuable insights to the construction industry regarding sustainable practices by utilizing waste materials in concrete production.
Introduction The construction industry is continually seeking innovative solutions to enhance the sustainability of building materials and reduce environmental impact.
Materials and Methods Table 1.
Materials used details Water Portable water Cement Ultratech OPC (53 Grade) Fine Aggregate Zone-2 Coarse Aggregate 20mm Passing and 12.5mm Retained Ceramic Waste Obtained from nearby tile shops Ceramic waste, fine aggregate, coarse aggregate, and cement are the materials employed in the study.
Rakesh Kumar Singla, Utilization of waste ceramic tiles as coarse aggregate in concrete, Journal of Multidisciplinary Engineering Science and Technology, Vol. 2 Issue 11, November – 2015
Online since: July 2011
Authors: Yue Hong Qian, Jie Li, Da Peng Li
The rockburst experiment usage of similar material and the mechanism of the energy releasing Jie Li 1, a, Yuehong Qian1,b and Dapeng Li1,c 1Engineering Institute of Engineering Corps,PLA University of Science and Technology,Nanjing, Jiangsu 210007,China azerocoollj@163.com, bmacqduod@163.com, c Keywords: rockburst; simulation test; energy analysis.
Journal of Sichuan university(engineering science edition). 2008, 40(2), 26-31.
Research on the tests of rock burst of the underground chamber simulated by similar materials[J].
Chinese Journal of Geotechnical Engineering, 1997, 19(4): 49-56.
Dynamic fracture of solid[M]: Science, 1979.
Online since: July 2020
Authors: Yunasfi Yunasfi, Didin Sahidin Winatapura, Wisnu Ari Adi, Mashadi Mashadi, Yosef Sarwanto, Setyo Purwanto, Tria Madesa
In terms of raw materials, Nd2Fe14B is relatively easy to find because the majority contain Fe raw materials.
Journal of Magnetism and Magnetic Materials, Vol. 290, Part 2 (April 2005) 1251-1254
Materials Science and Technology, Vol. 26, No. 1 (January 2010) 5-19 [13] Kazuhiko Yamamoto1, and Ryo Murakami, Microstructural Analysis of NdFeB Ternary Alloy for Magnets Fabricated Using a Strip-Casting Method, Materials Transactions, Vol. 57, No. 8 (2016) pp. 1266 – 1271
[15] MV Purwani, Suyanti Suyanti, Wisnu Ari Adi, Thermal Decomposition Kinetics of Lanthanum Oxalate Hydrate Product Treatment From Monazite, 2019, Journal Jusami, Indonesian Journal of Materials Science, Volume 20, Issue 2, Pages 50-57, DOI: http://dx.doi.org/10.17146/jusami.2019.20.2.5295
Journal of Magnetism and Magnetic Materials, Vol. 128, No. 3 (December 1993) 302-306.
Online since: April 2012
Authors: Chang Qing Sun, Hua Wei, Hong Gao
Influence of Material Continuity of Functionally Graded Coating on Interface Crack Changqing Sun1, a, Hua Wei2,b , and Hong Gao1,c 1 Department of Mechanical Engineering, Shenyang Institute of Engineering, Shenyang, 110136, China 2 Institute of Metal Research,Chinese Academy of Sciences, Shenyang, 110016, China asunchangqing1977@163.com, bhwei@imr.ac.cn, cgaohong1960@163.com Keywords: functionally graded coating; material continuity; interface crack; fracture.
In this paper, aiming at three material parameter functions of functionally graded coating (FGC) which have different continuities, the influence of functionally gradient coating material continuity on the fracture behaviors of the crack on the interface between the base material and coating is studied.
Batra: Journal of the Mechanics and Physics Solids, Vol. 44 (1996) p.1221 [3] C.Q.
He: Advanced Materials Research, Vols. 472-475 (2012) p.1267 [4] N.P.
Sun: Advanced Materials Research, Vols. 47-50 (2008) p.1023