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Online since: June 2022
Authors: Eyzaguirre Acosta Augusto Carlos, Jose Rodríguez, Jose Tello, Marlo Cabrera
Materials and Methods Materials (1) Soil.
Construction and Building Materials, vol.52, pp 71-78, (2014)
Effect of sugarcane fiber on the strength properties of soil blocks, Bio-based Building Materials, (2015)
Construction and Building Materials, 59, 161-168, (2014)
World Academy of Science, Engineering and Technology. 73. 51-57, (2011)
Online since: May 2020
Authors: Phasawat Chaiwutthinan, Anyaporn Boonmahitthisud, Woraporn Kiwjaroun, Saowaroj Chuayjuljit
Green Composites of Poly(Lactic Acid)/Epoxidized Natural Rubber Filled with Coir Fibers Woraporn Kiwjaroun1,a, Saowaroj Chuayjuljit 2,b, Phasawat Chaiwutthinan3,c and Anyaporn Boonmahitthisud2,4,d* 1Department of Petrochemical and Polymer Science, Faculty of Science, Chulalongkorn University, Pathumwan, Bangkok 10330, Thailand 2Department of Materials Science, Faculty of Science, Chulalongkorn University, Pathumwan, Bangkok 10330, Thailand 3MTEC, National Science and Technology Development Agency (NSTDA), 114 Thailand Science Park, Pathum Thani 12120, Thailand 4Green Materials for Industrial Application Research Unit, Faculty of Science, Chulalongkorn University, Pathumwan, Bangkok 10330, Thailand aworaporn.gun@gmail.com, bsaowaroj.c@chula.ac.th, cphasawc@mtec.or.th, danyaporn.b@chula.ac.th Keywords: Green Composites, Poly(lactic acid), Epoxidized natural rubber (ENR), Coir Fibers Abstract.
Materials and Methods Materials.
Potiyaraj: Journal of Applied Polymer Science, (2006), p. 3948-3955
Anuar: Materials Science and Engineeriingz, (2017), p. 1-7
Boonmahitthisud: Journal of Metals, Materials and Minerals, 25 (2015), p. 27-36
Online since: November 2010
Authors: Jian Qiang Wei, Jian Bo Wang, Fa Shen Li, Liang Qiao, Tao Wang
Therefore, they are good potential microwave absorption materials.
However, the permeability of the metallic materials will decease in the high frequency due to the eddy current effect.
To overcome this problem, smaller particles isolated by insulating materials can be used for microwave absorbers [3, 4].
These composites can be promising candidates for electromagnetic wave absorption materials.
Karimzadeh: Journal of Materials Science, 43 (2008) 132-138
Online since: June 2013
Authors: Hong Chao Kou, Hui Chang, Hai Song Li, Feng Xu
Semiatin: Journal of Materials Processing Technology vol. 190(2007), p. 387-392
Mossi: Journal of the Brazilian Society of Mechanical Sciences and Engineering Vol. 27(2005), p. 399-406
Guo: Materials Science and Engineering: A Vol. 365(2004), p. 311-317
Lalovic: Journal of Materials Processing Technology Vol. 160(2005), p. 156-159
Ganina: Materials Chemistry and Physics, Vol. 126(2011), p. 200-206
Online since: February 2021
Authors: Jameel M.A. Sulaiman, Suhad M. Hamdoon, Ghada Y. Abdulrahman
An alternative materials that exhibit improved magnetic features classified by a principle MFe2O4 where M indicates the metal (Cu2+, Mg2+, Zn2+, Co2+, Ni2+, Cr2+, etc.).
Nanoparticles of metal oxide are one of the best important novel materials target resistant microorganisms [17].
Materials and Methods Fe (NO3)3·9H2O) - Iron (III) Nitrate (SDH-USA), Cobalt (II)–nitrate {Co (NO3)2·6H2O}, Crist Purisino Germany, Citric Acid (C6H8O7·H2O) - (Romil Pure Chemistry, UK), ammonia solution (NH4OH) – Msccles field, Cheshire, UK).
El Danaf “Assessment of Photodynamic Therapy and Nanoparticles Effects on Caries Models” Journal of Medical Sciences, 6 (2018) 289-1295
Shokrollahi, “The role of cobalt ferrite magnetic nanoparticles in medical science”.
Online since: July 2020
Authors: Azwani Sofia Ahmad Khiar, M.S.M. Misenan
Conductivity studies on plasticized PEO/chitosan proton conducting polymer electrolyte, Materials Research Innovations. 13:191-194
Key Engineering Materials, 594-595: 818-822
Research Journal of Recent Science. 3(11):50-56
Maejo International Journal of Science and Technology. 4(2). 261-267
Journal of Physical Chemistry B.
Online since: February 2013
Authors: Jing Chen, Cui Ling Du, Bin Bin Cao, Lei Xu, Sheng Lu
Effects of Interaction of (NaPO3)6 and NaH2PO4 on Ca/P of MAO Bio-ceramic Coating of ZK60 Mg Alloy Cuiling Dua, Jing Chenb, Binbin Caoc, Lei Xud and Sheng Lue * School of Materials Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang, 212003 Jiangsu, China a205060502@163.com, bchenjing0612@yahoo.com.cn ,ccaobinbin0713@126.com , dyzx1989@163.com, e *lusheng119@yahoo.com.cn Keywords: ZK60 Mg alloy, Micro-arc oxidation, Bio-ceramic coating, Interaction.
Experimental Material preparation.
Zeng, Corrosion Behavior and Surface Protection of Magnesium Alloys, Materials Protection. 35 (2002) 110-123
Science Press. (2009) 21-27
Chinese Journal of Materials Research. 23 (2009) 220-224
Online since: October 2021
Authors: Mark Khazin, Rafail Apakashev, Sergey Krasikov
Bhaskar Rao: Materials Today: Proceedings Vol. 5 (2018), p. 254 [5] B.
Du: Materials & Design Vol. 120 (2017), p. 56 [6] R.A.
Akhlaghi: Journal of Composite Materials Vol. 47 (2013), p. 437 [8] J.
Zhu, et al.: Metals and Materials International Vol. 25 (2019), p. 416 [9] S.Y.
Bovand: Metals and Materials International Vol. 25 (2019), p. 1 [12] J.H.
Online since: September 2013
Authors: Li Zhou, Hui Jie Liu, Lin Zhi Wu, Duo Liu
Zielinski: Journal of Materials Processing Technology Vol. 109 (2001), p. 206 [5] O.N.
Olson: Materials Science and Engineering A Vol. 289 (2000), p. 41 [8] D.
Froes: Materials Science and Engineering A Vol. 280 (2000), p. 220 [9] F.H.
Li: Materials Science and Engineering A Vol. 500 (2009), p. 1 [11] T.K.
Froes: Materials Science and Engineering A Vol. 359 (2003), p. 137 [14] H.
Online since: June 2016
Authors: Muhammad Kusumawan Herliansyah, Muhammad Irfan Anshory
The other materials used as biodegradable bone substitute are Tri Calcium Phosphate (TCP).
The calcined bioceramics samples are being examined to determine the characterization of materials.
Materials Chemistry and Physics, 80, (2003) 409-420
Chakrabarti, Development of controlled strength-loss resorbable beta-tricalcium phosphate bioceramic structures, Materials Science and Engineering C 28 (2008) 392–398 [9].
Materials Letters, 57 (2002) 429- 433 [22].