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Online since: June 2014
Authors: Li Ying Qian, Wei Wei Zhang, Hui Ning Xiao
A feasible approach to improve the water or water vapour barrier properties is to combine hydrophobic lipid materials to form composite films in a form of emulsion coating or bilayer coating.
Water and Moisture Susceptibility of Chitosan and Paper-Based Materials: Structure–Property Relationships, Journal of Agricultural and Food Chemistry. 55(2007) 9479-9488
Biopolymer coatings on paper packaging materials, Comprehensive Reviews in Food Science and Food Safety. 9(2010) 82-91
Angeleno), Journal of Agricultural and Food Chemistry. 56(2008) 9502-9509
Whey Protein Emulsion Film Performance as Affected by Lipid Type and Amount, Journal of Food Science. 62(1997) 390-394
Online since: September 2011
Authors: Xiao Chu Liu, Hao Wang, Chuan Jian Liu, Ya Fei Ou, Wen Xiong Li
Through the discussion of the design studies of the injection system belongs to the device of bearing strengthening and polishing, a design of jet and recycling integrated system for the abrasive materials is proposed, during which the defect of traditional injection device is overcomed, the periodic duty of the strengthen strengthening and polishing material injection is achieved, and the bearing strengthening and polishing efficiency is greatly raised, the structural design and the calculation of essential parameter of the injection movement are also given .
With the instance, conclusions are drawn as below: (1) Such high-pressure injection and recycling integrated system for the abrasive materials, which is available, can produce and work continuously and safely; (2) The high-pressure injection and recycling integrated system, which is also can applied to other devices with jet movement, has been successfully applied to the strengthening and polishing machine and has great economic benefits.
Acknowledges The project is supported by National Natural Science Foundation of China (50875052).
References [1] S.E Deng,H.F Teng,Y.W Zhou,F.Q Ma,Z.H Zhang: Journal of Aerospace Power: Luster Polish Strengthening for Race Surface of the Mainshaft Bearings of Aeroengine: (2006): No.21: pp.545-549
[4] L.H Qi,J Luo,W.L Li,C.S Jiang,F Yang: Chinese Journal of Mechanical Engineering: Simulation and Experiment Research of the Uniform Drolet Spray Process:(2008):Vol.44: No.12: pp.86-92 [5] Jin.Xu and B.J.Chen.
Online since: May 2020
Authors: S.N. Golovin, A.A. Pykin, N.P. Lukutsova
Lkhasaranov, Composite binders on the basis of pearlite raw material of Transbaikalia, Research Journal of Applied Sciences. 9 (12) (2014) 1016-1020
Batarshin, Nature raw materials of Russian Primorsky Krai for concrete.
Shchukin, Constructive and Heat-Insulating Polystyrene Based on the Recycled Raw Materials, Stroitel'nye Materialy [Construction Materials]. 3 (2007) 50-54
Zajcev, Effective Fine-Grained Concrete with High-Dispersed Additive Based on the Natural Mineral Wollastonite, Materials Science Forum. 945 (2019) 85-90
Pykina, Lightweight Concrete Based on Gypseous Binding Materials, Modified with Microcrystalline Cellulose, and Cavitationly Processed Sawdust, Materials Science Forum. 945 (2019) 188-192
Online since: November 2011
Authors: Hui Ping Bai, Yuan Qiang Tu, Chang Fu Liu
The electrolytic tinplate is widely used as the food packaging materials [2~3].
Experiment The experimental materials were D T-2.5 BA electrolytic tinplates produced by different companies with the thickness of 0.23mm and the tin quantity 2.8/2.8g/m2.
[4] Zhong Xu, Xingqiao Huang, Ning Li and Deyu Li: Chinese journal of Materials Protection,Vol.11(2005), P.25
[5] Xingqiao Huang, Ning Li and Deyu Li: Chinese journal of Materials Protection, Vol.37, No.9(2004), P.1
Chinese journal of Material and Metallurgy Transaction, Vol.3(2005), P.15
Online since: July 2013
Authors: Da Zhi Qian, Zhi Hua Zhang, Bin Tang, Xiao Liu
Chinese Journal of Nuclear science and engineering,1989,9(3):237-250 [3] Yang Wendou.
Journal of Nuclear Materials,1993,204:1-13 [7] HU Yun,Xu Mi.
Journal of Nuclear Materials, 2003,321:210-220 [11] Meyer M, Hofman G, Hayes S, et al.
Journal of Nuclear Material,2002, 304:221-236 [12] Xiao Liu, Dazhi Qian, Tiecheng Lu.
Advanced Materials Research Vols 335-336(2011):1285-1292, [13] Yeon Soo Kim, G L Hofman.
Online since: July 2012
Authors: Bing Li, Xiao Xi Li, Ling Chen, Guo Qin Liu, Lin Li, Xia Zhang, Jian Rong Huang
Materials and Methods Materials.
Acknowledgement This work was supported by National Natural Science Fund (20976061), Guangdong National Natural Science Fund (9151063201000066) and the Fundamental Research Funds for the Central Universities, SCUT (2009ZM0326).
Coulon: Journal of biotechnology Vol. 101 (2003) p. 29 [7] B.
Noor: Journal of Fundamental Sciences Vol. 6 (2010)
Kolisis: European Journal of Lipid Science and Technology Vol. 103(2001) p. 655
Online since: January 2012
Authors: Zhi Rong Tang, Ming Bo Ma, Hai Xiang Li, Xiao Shuang Zhao, Wen Long Zhou
Ultrasonic wave contributes to pigment extraction, and supercritical CO2 treatment promotes pigment movement outward causing color deepening, which will help the color fixation finish of naturally colored cotton and enrich the color spectrum under certain technological conditions. 1 Experimental 1.1 Materials Naturally green cotton was supplied by Zhejiang Academy of Agricultural Sciences.
FTIR-ATR is sensitive to the surface structure of materials.
[5] Zhu Yuping, Cao Qiuling, Chen Xiao, et al, Study on Crystallinity and Degree of Orientation of Naturally Colored Cottons, Journal of Donghua University (Natural Science). 35-6 (2009) 626-631
Journal of Textile Research. 30-6(2009) 76-79
Journal of Applied Polymer Science.76 (2000) 1466-1471
Online since: April 2025
Authors: H.M. Mamun Al Rashed, Aninda Nafis Ahmed, Md Nahid Rahman Nafi
Journal of Materials Science. 2022 Feb;57(6):4334-53.
Journal of Materials Science: Materials in Medicine. 2020 Dec; 31:1-2.
Materials Science and Technology. 2021 Apr;37(6):624-31.
Computational Materials Science. 2021 Dec 1; 200:110858.
Materials Science and Technology. 2017 Jan 1.
Online since: March 2017
Authors: Mohamed H. Gabr, Kiyoshi Uzawa
Experiments Materials.
Journal of Materials Science 2013; 48(17): 6039 – 6047
Materials and Design 2013;47: 624 - 632 
Journal of materials science 2010; 45: 3841–3850
Nature Materials 2016; 15: 141-153
Online since: May 2011
Authors: Ying Wang, Hong Gao, Gang Li, Yan Sheng Li, Zhen Shu Nan
References [1] Bin Zhao, Huilan Chen.Synthesis novel multi-petals ZnO nano-structure by a cyclodextrin assisted solution route.Materials Letters, 61 (2007) ,4890–4893 [2] Yanghai Gui, Changsheng Xie,Qinyi Zhang, Mulin Hu, Jun Yu, Zhe Weng.Synthesis and characterization of ZnO nanostructures by two-step oxidation of Zn nano- and microparticles.Journal of Crystal Growth ,289 (2006), 663–669 [3] X.M.
Zhou.Seed-mediated synthesis of uniform ZnOnanorods in the presence of polyethylene glycol.Journal of Crystal Growth, 270 (2004), 527–534 [4] Xiao Li Zhang, Young Hwan Kim, Young Soo Kang.Low-temperature synthesis and shape control of ZnO nanorods.Current Applied Physics ,6 (2006) ,796–800 [5] Huiying Wei, Youshi Wu, Ning Lun, Chunxia Hu.Hydrothermal synthesis and characterization of ZnO nanorods.Materials Science and Engineering, A 393 (2005), 80–82 [6] Tarek Alammar, Anja-Verena Mudring.Facile ultrasound-assisted synthesis of ZnO nanorods in an ionic liquid.Materials Letters, 63 (2009) ,732–735 [7] Rizwan Wahab, S.G.
Ansari, Young-Soon Kim, Hyung-Kee Seo, Hyung-Shik Shin.Room temperature synthesis of needle-shaped ZnO nanorods via sonochemical method.Applied Surface Science ,253 (2007) ,7622–7626 [8] Fanfei BaiT, Ping He, Zhijie Jia, Xintang Huang, Yun He.Size-controlled preparation of monodispersed ZnO nanorods.Materials Letters ,59 (2005) ,1687– 1690 [9] BAI Fan-fei, HE Ping, JIA Zhi-jie, HUANG Xin-tang, HE Yun.One Step Synthesis of Monodispersed ZnO Nanorods by in-Situ Reaction.Journal of Materials Science&Engineerin,23(2005),580-583 [10] Kuo-Liang Ying, Tsung-Eong Hsieh,Yi-Feng Hsieh.Colloidal dispersion of nano-scale ZnO powders using amphibious and anionic polyelectrolytes.Ceramics International,35(2009) 1165–1171 [11] Y.
Tan.PREPARATION AND CHARACTERIZATION OF NANO-ZnO FLAKES PREPARED BY REACTIVE ION EXCHANGE METHOD.Journal of Thermal Analysis and Calorimetry, 95 (2009) 2, 671–674 [12] G Nagaraju,S.Ashoka,P.Chithaiah,C.N.Tharamani,G.T.Chandrappa .Surfactant free hydrother mally derived ZnO nanowires,nanorods, microrods and their characterization.Materials Science in Semiconductor Processing, 13 (2010), 21–28 [13] LI Xiao- he1, FENG Ping, HE Yue- hui.Probe into Dispersion of Nano Size Powder in Water.Nanoscience & Nanotechnology,2007,1,17-21 [14] Guolin Song, Sude Ma, Guoyi Tang, Xiaowei Wang.Ultrasonic-assisted synthesis of hydrophobic magnesium hydroxide Nanoparticles.Colloids and Surfaces A: Physicochem.
Materials Letters, 61 (2007), 4890–4893