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Online since: July 2011
Authors: Zhan Shen Zheng, Rui Jiao Li, Biao Zhou, Li Qiang Zhang, Yong Huang
Research of Plasma Clad Al2O3 Coating Zhanshen Zheng1,a, Biao Zhou2,b, Liqiang Zhang2,c, Yong Huang2,d and Ruijiao Li1,e 1Hebei Province Key Laboratory of Inorganic Nonmetallic Materials, College of Materials Science and Engineering, Hebei United University, Tangshan, Hebei, 063009,China 2Tangshan Branch of China Coal Research Institute, Tangshan, Hebei, 063012, China azhengzhanshen@163.com, bsdkjzb@163.com, c mumuxw01@163.com dhuangyong0718@163.com,eqianjiaotong@163.com Keywords: Plasma Clad Coating, Corundum, Organization, Defect Abstract.
Kesavamoorthy, etc: Metallurgy and Materials Group (2004), p. 1-2
Zhou: Ceramic material science (Harbin Industrial University press, Harbin 1995)
Li, etc: Materials Serially Vol. 18 (2004), p. 194-197
Kolman, etc: Journal of Thermal Spray Technology Vol. 1(1992), p. 301-306.
Online since: May 2012
Authors: Jin Song Lei, Fei Hua Zheng, Ya Li Wang, Kang Lan Zhai
Its basic assumptions are as follows: first, assume that viscoelastic materials have linear stiffness in the shear strain within 200%.
Second, mostly in lower frequency range, the influence of properties of viscoelastic materials is not obvious.
Three, the internal temperature change of viscoelastic materials caused by vibrations can be ignored.
Materials were Q235B steel.
Journal of southeast university (natural science edition) 2004, 34(1), 86-88
Online since: December 2013
Authors: Gang Yan Li, Yuan Zhang, Le Li, Hui Zhou
The iterative process is gradually removing invalid or inefficient material, and keeping effective material.
The invalid or inefficient material of feasible design area is removed, the distribution shape of effective material is clear.
Acknowledgements We would like to give our acknowledgment to Wuhan University of Technology and Wuhan city, Hubei province, China because the research work reported here has been supported by “the Fundamental Research Funds for the Central Universities” (2012-IV-035),“Wuhan City International Science and Technology Cooperation Plan Project of Key Science and Technology Problem Project”(201231234463) and “Wuhan City Youth Science and Technology Chenguang Plan Project”(2013070104010004).
[3] CHEN Shuxun, WANG Sunuan, BAI Bin, YING Honglie and TANG Yong: Load Expression and Structural Optimization of Compressed Rubbish Vehicle, Chinese Journal of Mechanical Engineering, Vol. 44(2008), p.213-219
[4] Hui ZHOU, Gangyan LI, Hanwei BAO and Jiuqiang SUN: Compressing Equipment Control Method of Horizontal Preloading Domestic Waste Disposal Transfer Station and Its Implementation, Applied Mechanics and Materials, Vol. 345(2013), p.72-78.
Online since: July 2012
Authors: He Mao, Chang Jie Luo, Kai He, Ruxu Du
In the quasi-static tests, five tubes of material aluminum alloy 2Al2T4 were tested.
Two different types of LS-DYNA material models were used in the development of finite element models:   Material model 20 “MAT_RIGID”   Material model 24 “MAT_PIECEWISE_LINEAR_PLASTICITY” The particulars of these two material models are detailed in the LS-DYNA User’s Manuals [10, 11].
Material model 24 was used to model the expansion-tube and rigid material model 20 was used to model the conical-punch.
[5] Jialing Yang, Min Luo, Yunlong Hua, Guoxing Lu: International Journal of Mechanical Sciences Vol. 52 (2010), p. 716-725 [6] Chunsheng Ma, Jinhuan Zhang and Huiliang Du: Journal of Vibration and Shock (2009), in Chinese
[12] Guoxing Lu, Tongxi Yu: Energy absorption of structures and materials (Woodhead Publishing Limited , 2003).
Online since: November 2011
Authors: Mamoun Medraj, Mohammed Shamekh, Martin Pugh
Jiang: Materials Letters, Vol. 60(12) (2006), p. 1533 [4] L.Q.
Jiang: Journal of Materials Science, Vol. 40(17) (2005), p. 4501 [6] Z.
Naiheng: Materials Letters, Vol. 59(17) (2005), p. 2105 [7] Q.
Bi: Materials Letters, Vol. 58(6) (2004), p. 920 [8] D.
Skapin: Journal of Materials and Manufacturing Processes, Vol. 24 (2009), p. 1337 [10] S.
Online since: September 2013
Authors: Chang Qing Wang
Each year more than three billion metric tons of raw materials are used to manufacture construction materials and products worldwide [1, 2].
Calkins: Materials for sustainable sites: A complete guide to the evaluation, selection, and use of sustainable construction materials.
Materials and Structures, Vol. 11, No. 65, (1978), p. 371-378
ACI Material Journal, Vol. 99, No. 3, (2002), p. 300-325
Materials and Structures, Vol.39,( 2006), p. 655-664
Online since: March 2004
Authors: Cheng Yong Wang, Ying Ning Hu, H.N. Ding
The properties of materials and the structural parameters of diamond saw blade in this paper are shown in Table 1 [3] and Table 2 [4].
Table 1 Properties of materials of diamond circular saw blade Yong’s modulus E [N/m2] Poisson’s ratio µ Density � [kg/m3] Blade core (65Mn ) 2×10 11 0.3 7800 Segment 5.6×10 11 0.25 8100 Table 2 Structural parameters of diamond circular saw blade [unit: mm] Outer diameter Base diameter Inner hole diameter Number of sawtooths Base thickness Segment thickness Water groove depth Water groove width 500 486 50 36 2.8 4.2 15 3 350 336 50 24 2 3 15 3 Diamond Saw Blade with Slit Filled Damping Materials One typical structure of diamond saw blade which can reduce noise is to make several thin slits on the surface of saw blades, which are filled damping materials [5].
The cutting material is cement concrete.
Ma, et al: Mechanical Science & Technology Vol. 18 (3) (1999), p. 366 [7] C.X.
Li: Journal of Jiling Forestry University Vol. 12(4) (1996), p. 218 [8] Q.H.
Online since: January 2009
Authors: Xue Gang Luo, Jian Zhou
It can be realized that the key point to utilize lignin in polymer material is to obtain effective intermediate to improve the compatibility between lignin and polymer materials [5].
In the present work, we choose a new intermediate LDPE-g-MAH (MAH: maleic anhydride) as compatibilizer in lignin filled with LDPE/EVA polymer materials and the rheological properties, and FT-IR is used to characterize its processing and intermolecular interactions. 2.
Experimental Material.
COMPOSITES Part A: applied science and manufacturing, 35 (2004): 395-400 [2] G.
Journal of Applied Polymer Science, 729 (1999):1321-1326
Online since: May 2011
Authors: Xiu Lan Yu, Song Tao Tian, Li Qing Zhang
This method has been applied in direct determination of trace Europium in Baotou rare earth oxide materials.
Vol. 21(2008),p. 165 [2] Qizheng Li, Yu Zuo, Jingmao Zhao, Yuming Tang, Xuhui Zhao and Jinping Xiong: Anti-Corrosion Methods and Materials .
Vol. 57(2010),p. 238 [3] Yongfeng Liu, Yanhui Cao, Li Huang, Mingxia Gao and Hongge Pan: Journal of Alloys and Compounds.
Vol. 27(2007),p. 64 (in chinese) [12] Zhen Chen,Liang Zhao,Zhonglin Du:Journal of Kunming University of Science and Technology (Science and Technology).
Guangxi Sciences.
Online since: December 2024
Authors: Khairunisak Abdul Razak, Nur Hamizah Mohd Zainudin, Muhammad Hafiqrul Zuhair Husri, Suffian Mohamad Tajudin, Juliana Mohd Radzi, Nurul Syazwina Mohamed, Wan Nordiana Wan Abdul Rahman
Evaluation of Bismuth Oxide Nanoparticles (BiONPs) as a Potential Contrast Agent in Computed Tomography (CT) Imaging Muhammad Hafiqrul Zuhair Husri1,a, Suffian Mohamad Tajudin1,b, Juliana Mohd Radzi1,c, Nurul Syazwina Mohamed1,d, Wan Nordiana Wan Abdul Rahman2,e, Khairunisak Abdul Razak3,f, Nur Hamizah Mohd Zainudin1,g* 1School of Medical Imaging, Faculty of Health Sciences, Universiti Sultan Zainal Abidin, Gong Badak Campus, 21300 Kuala Nerus, Terengganu, Malaysia 2Department of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, Malaysia 3School of Materials & Mineral Resources Engineering, Universiti Sains Malaysia, 14300 Nibong Tebal, Pulau Pinang, Malaysia ahafiqrulz@gmail.com, bsuffian@unisza.edu.my, cjulianamradzi@unisza.edu.my, dnurulsyazwina@unisza.edu.my, ewnordiana@ukm.edu.my, fkhairunisak@usm.my, gnurhamizahmz@unisza.edu.my Keywords: Bismuth Oxide Nanoparticles; Iodine Contrast Agent; Image Contrast
Journal of Nanomaterials & Molecular Nanotechnology 2017;06:2–10. https://doi.org/10.4172/2324-8777.1000222
Polish Journal of Medical Physics and Engineering 2019;25:79–85. https://doi.org/10.2478/pjmpe-2019-0011
Chemical Engineering Journal 2019;375:122000. https://doi.org/10.1016/j.cej.2019.122000
Chemistry of Materials 2014;26:2266–74. https://doi.org/10.1021/cm500077z