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Online since: April 2023
Authors: Surakit Tuampoemsab, Pornsri Sapsrithong, Apaipan Rattanapan, Thritima Sritapunya, Manit Nithitanakul
Similar results were also reported by Shuangqiao Yang et al. [1], who showed that printed circuit boards (Non-metallic PCB) could be used as reinforcing fillers in the HDPE composites and significant improvements in phase morphology (between HDPE matrix and NPCB filler) and mechanical properties were observed by using LDPE-g-MAH as a compatibilizer.
Yang, S.
Yang, S.
Tian, H.
Yang, S.
Yang, S.
Tian, H.
Online since: November 2013
Authors: Yang Yu, Wen Bin Li, Yao Qi Yang, Peng Fei Wang, Hai Juan Wang
Research Review of Coal mining on the coal Village
WenBin LI a, Yaoqi YANG b, Yang YU, Pengfei WANG, Haijuan WANG
Institute of Land Reclamation and Ecological Reconstruction, China University of Mining & Technology (Beijing), Beijing 100083, China
Introduction
China is a country with rich coal, coal mining plays an important role in our country's energy security.
[7] Zhao Y L, Peng P, Liang S, Tian Y, Gan Y X.
[7] Zhao Y L, Peng P, Liang S, Tian Y, Gan Y X.
Online since: September 2023
Authors: Hammadi Larbi, Amira Aguenarous, Nassima Moussaoui-Khedam
From their part, Tian et al [14] sought to improve the stability of water-in-oil-in-water multiple emulsions by including the mixture of xanthan gum (GX) and locust bean gum (LBG).
As can be observed from Table 4, the increase of the quantity of xanthan in W/O/W emulsions causes an increase in the yield stress τ0 and the infinite shear rate viscosity ŋ∞ According to Tian et al [14] the viscosity of emulsions can be explained by the increase in the hydrodynamic interaction between polymers chains leading to the formation of a hydro cluster which in turn causes an increase in yield stress and the viscosity of emulsions.
Yang, K.
Tian, D.
Yang, Encapsulation of amino acids in water-in-oil-in-water emulsions stabilized by gum arabic and xanthan gum, Int J Biol Macromol. 220 (2022) 1493–1500. https://doi.org/10.1016/j.ijbiomac.2022.09.150
As can be observed from Table 4, the increase of the quantity of xanthan in W/O/W emulsions causes an increase in the yield stress τ0 and the infinite shear rate viscosity ŋ∞ According to Tian et al [14] the viscosity of emulsions can be explained by the increase in the hydrodynamic interaction between polymers chains leading to the formation of a hydro cluster which in turn causes an increase in yield stress and the viscosity of emulsions.
Yang, K.
Tian, D.
Yang, Encapsulation of amino acids in water-in-oil-in-water emulsions stabilized by gum arabic and xanthan gum, Int J Biol Macromol. 220 (2022) 1493–1500. https://doi.org/10.1016/j.ijbiomac.2022.09.150
Online since: December 2012
Authors: Shui Lin Tu, Zhen Yi Wu, Zheng Yang Wu
References
[1] Tian JIN,Hua ZHANG:SCIENCE CHINA Information Sciences, 2011,Vol.54, pp.2324-2337
[2] Liu Q Z, SongW Q.In:Computational Science and Its Applications(ICCSA 2009), Berlin:Springer, 2009.685–692
[3] Li Y,Yang B J, Shi Y W:Acta Phys Sinica,2003,52:526–530 (inChinese)
[4] Wang G Y, Chen D J, Lin J Y:Acta Electronica Sinica,1998,10:38–44(in Chinese)
[5] Wei HE, Zhinong JIANG,Qiang QIN:Journal of Mechanical Science and Technology,2010,Vol.
24, pp.1709-1716
[6] Rongbiao ZHANG, Haiyan HU, Youbing FONG:Chinese Journal of Scientific Instrument,2007,
28 (11):2078-2084(in Chinese)
[7] S.U.Uvaisov, I.S.Grodzenskaya:Measurement Techniques,2006,Vol.49,pp.395-399
[8] Jianying WANG, Zhongke YIN:Journal of the China Railway Society,2007,29(2):116-119 (in Chinese)
[9] A.S.Asdi,A.Tewfik.in: Proc.
Online since: January 2014
Authors: Hai Li Yang, Yun Gang Li, Lei Shang, Hong Xu
The Influence Factors of Silicon Steel Magnetic Property
Lei Shang, Haili Yang*, Hong Xu and Yungang Li
Hebei Key Laboratory of Modern Metallurgy Technology, College of Metallurgy and Energy, Hebei United University, Tangshan, 063009, China
*sjmsxmhl@126.com
Key words: silicon steel, iron loss, magnetic induction
Abstract.
[9] Xiuhua Gao, En LIU, Chunlin QIU, Kemin QI and Yanwen TIAN: Rare Metals, Vol. 25 (2006), p. 454-457
[9] Xiuhua Gao, En LIU, Chunlin QIU, Kemin QI and Yanwen TIAN: Rare Metals, Vol. 25 (2006), p. 454-457
Online since: December 2012
Authors: Xia Chen, Hua Quan Yang, Yong Zhen Zuo
Interfacial Transition Zone Meso-structure of MgO Concrete Loaded to Failure by Computed Tomography
YANG Huaquan1,a, CHEN Xia1,b and ZUO Yongzhen2,c
1 Department of Materials and Structure, Changjiang River Scientific Research Institute, Wuhan, 430010, P.R.China
2 Key Laboratory of Geotechnical Mechanics and Engineering of China Ministry of Water Resources, Wuhan, 430072, P.R.China
ayanghq@mail.crsri.cn, bchenxia@mail.crsri.cn, czuoyz@mail.crsri.cn
Keywords: Concrete, MgO, Interfacial transition zone, Meso structure, crack.
[15] Tian W,Dang F N, Chen H Q, etal.
[15] Tian W,Dang F N, Chen H Q, etal.
Online since: July 2011
Authors: Zhong Dong Yang, Di Wu, Meng Fei Liu
Electroless Ni-P-PTFE Composite Coatings on Titanium Alloy and Their Tribological Properties
Zhongdong Yang 1, a, Di Wu 1, b and Mengfei Liu 1, a
1 School of Materials and Metallurgy, Northeastern University, Shenyang 110004, China
ayangzd@smm.neu.edu.cn, bwutongyu68@126.com
Keywords: Titanium Alloy; Ni-P-PTFE; Electroless; Friction and wear
Abstract.
References [1] Shuyan Zhang; Sanyuan Hu Technological investigation of Ni-P-PTFE electroless composite plating [J] Journal of China Agricultural University 2006, 11(2):70 -73 [2]Yanping Peng, Current Status and Trends in Application of Military-purpose Materials [J], 2000, 14(1): 13 [3] Baogang Guo, Jun Liang,Jun Tian, The Effect of Anodic Voltage on the Performance of Micro-arc Oxidation Film on Titanium Alloy [J], Plating and Finishing, 2005, 27(3): 1~4
References [1] Shuyan Zhang; Sanyuan Hu Technological investigation of Ni-P-PTFE electroless composite plating [J] Journal of China Agricultural University 2006, 11(2):70 -73 [2]Yanping Peng, Current Status and Trends in Application of Military-purpose Materials [J], 2000, 14(1): 13 [3] Baogang Guo, Jun Liang,Jun Tian, The Effect of Anodic Voltage on the Performance of Micro-arc Oxidation Film on Titanium Alloy [J], Plating and Finishing, 2005, 27(3): 1~4