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Online since: November 2021
Authors: K. Ashwini, P. Srinivasa Rao
Saravana Raja Mohan, Strength and durability studies on Alccofine concrete with micro steel fibres, Romanian Journal of Materials. 48(1) (2018) 58 – 63
[15] Anwar M.Mohamed, Influence of nano materials on flexural behavior and compressive strength of concrete, HBRC Journal. 12(2) (2016) 212-225
Yehia, Mechanical properties of self-curing concrete (SCUC), HBRC Journal (2014). http://dx.doi.org/10.1016/j.hbrcj.2014.06.004 [35] Selim Pul, Experimental investigation of tensile behaviour of high strength concrete, Indian Journal of Engineering & Materials Sciences. 15 (2008) 467-472
Construction and Building Materials, 218, (2019), 8-27
Construction and Building Materials, 271, (2021), 121513
Online since: July 2019
Authors: Tri Wicaksono Sigit, Yohannes Marudut Tua Silaen, Hosta Ardyananta, Salma Halimah, Amaliya Rasyida, Haniffudin Nurdiansah
“PBAT based nanocomposites for medical and industrial applications” Materials Science and Engineering C 32 (2012) 1331–1351
Journal of Biomaterials Science , Time-Dependent Alginate / Polyvinyl Alcohol Hydrogels as Injectable Cell Carriers,” no.
Materials Science and Engineering C 63: 274–84. https://doi.org/10.1016/j.msec.2016.02.071
Series: Materials Science and Engineering 338 (2018) 012055 doi:10.1088/1757-899X/338/1/012055 [11] Yan Shi, Dangsheng Xiong, Jianliang Li, Kun Wang and Nan Wang.
Alginate-Based Hybrid Nanocomposite Materials.
Online since: June 2017
Authors: Jing Zhu, Jun Rong Yu, Zu Ming Hu, Jing Li, Guo Cheng Song, Yan Wang
Solution Blow Spun High Performance Co-Polyimide Nanofibers Jing Li1, Junrong Yu*1,a, Jing Zhu2, Yan Wang2, Zuming Hu*1,b and Guocheng Song1 1State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, 201620, Shanghai, China 2College of Material Science and Engineering, Donghua University, 201620, Shanghai, China ayjr@dhu.edu.cn, bhzm@dhu.edu.cn Keywords: Nanofibers, Solution blow spinning, Co-polyimide.
Nanofibers have larger specific surface area, smaller pores, nanoscale fiber diameters and other better performance compared to traditional polyimide materials[7-9].
Zhang, Structures and properties of polyimide fibers containing ether units, Journal of Materials Science 50 (2015) 4104-4114
Klamczynski, Solution blow spinning: A new method to produce micro - and nanofibers from polymer solutions, Journal of Applied Polymer Science 113 (2009) 2322-2330
Orts, Structural and Morphological Characterization of Micro and Nanofibers Produced by Electrospinning and Solution Blow Spinning: A Comparative Study, Advances in Materials Science and Engineering 1 (2013) 438-442
Online since: October 2013
Authors: Wei Hua Shen, Xioa Fei Wang, Chang Mei Huang
Materials and Methods Materials.
The Grey Relational Analysis on the split time of Men’s 100m Dash [J] Lecture Notes in Management Science Vols. 12, April 2013
On the Race Segmentation of Excellent Male Athletes of 100m Race[J]; Sports Sciences Research; 2006-04 [6] Shen Weihua et al.
Influence of Stride State on the Speed Structure of 100m Dash [J]; journal of China Sports Science;2002-02
Analysis of the Speed Features of World’s Top Sportsmen of 100m[J]; journal of Guangzhou institute of physical education; 2002-03
Online since: July 2013
Authors: Naratip Vittayakorn, Sagulthai Kahatta, Ban Jong Boonchom, Chesta Ruttanapun, Montree Thongkam, Samart Kongteweelert, Somsak Woramongkonchai, Pachenchaiput Chaiyasit
The TCO materials are depended on band energy gaps as corresponding to the region of visible light in the range of 1.59 eV to 3.26 eV.
Recently, the TCO materials in p-type conducting [4–6] are interesting to discover new compounds.
The aim of this paper, therefore, is to investigate the optical properties of Cu1-xPtxFe1-xSnxO2 compound for p-type TCO materials.
Totally, the Cu0.95Pt0.05Fe0.97Sn0.03O2 compund displays a materials of the p-type transparent conducting oxide (as p-type TCO).
Ji, C.Wang, Central European Journal of Physics 5 (2007) 103–109
Online since: September 2013
Authors: Yu Luo, Cai Xia Li
The Mg-Al EAM potential data using in our simulation is acquired from the EAM potential data of Computational Materials Science Group at ASU.
Eda, Simulation and experimental analysis of super high-speed grinding of ductile material, Journal of Materials Processing Technology 129 (2002) 19-24
Lee, Large scale molecular dynamics study of nanometric machining of copper, Computational Materials Science 41 (2007) 177-185
Johnson, Modified embedded atom potentials for HCP metals, Modelling and Simulation in Materials Science and Engineering 2 (1994) 147-163
Zhang, A new scheme of many-body potentials for hcp metals, Computational Materials Science 29 (2004) 428-436
Online since: December 2014
Authors: Jing Hui Yang, Ting Liu, Wu Que Gong, Yan Jun Qin, Yan Jun Liu, Wei Zi Huang
Materials and methods Materials.
Acknowledgements We offer our thanks to National Agricultural Science and Technology Achievements Transformation Fund (Grant Number: 2012GB2A100015) and Major scientific and technological projects in Tianjin Science and Technology Commission (Grant Number: 12ZCDZNC04800) in the People's Republic of China.
[5] Qian Li, Cunxu Zhang, Ping Qin, Physiological and biochemical characteristics of Embryogenic Callus and Non2embryogenic Callus in Pinus bungeana,Journal of Northwest A &F University (Nat .
[6] Boying Miao, Yanjun Liu, Jinghui Yang, Study on the Induction Method of Blackberry Friable Embryogenic Callus, Journal of Shanxi Agricultural Sciences, Vol.42(2014),p. 209-212,216
[10] Tingting Qin, Studies on the Component and Spectra Characterization of Thylakoid Membrane and the Relative Enzymes in the Cotyledon of Oilseed Rapes during Senescence, Sichuan university, [D],2006 [11] Mei Wang, Xiang Ding, Sulan He, Quanlu Zhou, Lisha Liu, Yujuan Zhang, Yuming Li, The Anti-oxidant Activity Contents' Dynamics of Different Sweet Potatoes Varieties, Journal of China West Normal University ( Natural Sciences), Vol.33(2012),p. 330-337.
Online since: February 2019
Authors: D.G. Lodkov, A.I. Romantsov, M.A. Fedorov
A modern technology for joining materials welding is commonly used in various industries.
Clem: submitted to Journal of Materials Research (2003 Akselsen, O.M., Ren, X., Aas, S.K.
Ni, Investigation on microstructure and mechanical properties of NV E690 steel joint by laser-MIG hybrid welding, Materials and Design, (2017) 297-310
Collins, Microstructure model for the heat-affected zone of X80 linepipe steel, Materials Science and Technology (United Kingdom), 32 (7), (2016) 708-721 [20] L.A.
Kaplan, Deep penetration fiber laser-arc hybrid welding of thick HSLA steel, Journal of Materials Processing Technology, 256 (2018) 216-228
Online since: October 2013
Authors: Wen Hua Zeng, Qi Zhong, Xiao Yang Huang, Bo Liang Wang
MHVs are made of artificial materials such as titanium, cobalt, LTI carbon and so on.
Diverse materials correspond to different material parameters that are the important input of each model.
Wang, in Icmit 2007: Mechatronics, Mems, and Smart Materials, Pts 1 and 2, M.
Narracott: Computational Science–ICCS 2007 (2007), pp. 794-801
Holzapfel: Journal of the mechanical behavior of biomedical materials Vol.3 (2010), pp. 167-177
Online since: May 2011
Authors: Jin Dong Qu, Jia Hui Peng, Bai Zhan Li
Citric acid is one of high-efficient retardants usually used in gypsum-based materials due to its outstanding retarding effect even at a low dosage.
Experiment Materials.
Brockner: Zement-Kalk-Gips, 1990, (9): 219~220 [2] Dirk Bosbach, Michael F.Hochella Jr.: Chemical Geology, 1996, (132):227-236 [3] Manjit Singh and Mridul Garg: Cement and Concrete Research, 1997, (6): 947~950 [4] K.A.Pavlov, B.A.Dmitrevskii: Russian Journal of Applied Chemistry, 2003, 76(9): 1408-1413 [5] A.J.LEWRY: Journal of materials science, 1994, (29): 6085-6090
The science of binding materials [P].
[9] Weizhuo Zhong:Journal of inorganic materials, 1997, (1):11-16.