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Online since: February 2016
Authors: Dong Yan Shi, Wasim M.K. Helal
Materials
Many post materials are available in the market.
References [1] Mohamed Zaazou, Mohamed El-Anwar, Mohamed El-Zawahry and Mohamed Abou Elnaga, The Effect of Post Materials on stress Distribution on Endodontically Treated Lower first premolar: Finite Element Analysis study, Australian Journal of Basic and Applied Sciences, 6(12): 492-498, 2012
Restorative Dental Materials. 10th Ed.
Bimodal structured Ti-base alloy with large elasticity and low Young‟s modulus”, Materials Science and Engineering C, Vol. 25 PP. 290 -295, 2005
Applied Mechanics and Materials Vols. 752-753 (2015) pp 39-43
References [1] Mohamed Zaazou, Mohamed El-Anwar, Mohamed El-Zawahry and Mohamed Abou Elnaga, The Effect of Post Materials on stress Distribution on Endodontically Treated Lower first premolar: Finite Element Analysis study, Australian Journal of Basic and Applied Sciences, 6(12): 492-498, 2012
Restorative Dental Materials. 10th Ed.
Bimodal structured Ti-base alloy with large elasticity and low Young‟s modulus”, Materials Science and Engineering C, Vol. 25 PP. 290 -295, 2005
Applied Mechanics and Materials Vols. 752-753 (2015) pp 39-43
Online since: October 2014
Authors: Piotr Deuszkiewicz, Maciej Zawisza, Jacek Dziurdź, Jarosław Pankiewicz
Konieczny, Research on structure, propagation and exposure to general vibration in passenger car for different damping parameters, Journal of Vibroengineering 15 (4) (2013) 1680-1688
Berlin : Springer, 2013, (Communications in Computer and Information Science ; vol. 395) [10] A.
Folęga, FEM analysis of the options of using composite materials in flexsplines, Archives of Materials Science and Engineering, 51(1) (2011) 55-60
Siwiec, Numerical analysis of selected materials for flexsplines, Archives of Metallurgy and Materials, 57(1) (2012) 185-191
Folęga, The study of the dynamic properties of some structural components of harmonic drive, Journal of Vibroengineering, 15(4) (2013) 2096-2102.
Berlin : Springer, 2013, (Communications in Computer and Information Science ; vol. 395) [10] A.
Folęga, FEM analysis of the options of using composite materials in flexsplines, Archives of Materials Science and Engineering, 51(1) (2011) 55-60
Siwiec, Numerical analysis of selected materials for flexsplines, Archives of Metallurgy and Materials, 57(1) (2012) 185-191
Folęga, The study of the dynamic properties of some structural components of harmonic drive, Journal of Vibroengineering, 15(4) (2013) 2096-2102.
Online since: May 2020
Authors: Michal Bachratý, František Horvát, Branislav Hučko, Michal Čekan, Marek Čambal
Some common materials are EN X38Cr13 (AISI 420 equivalent).
Both materials are suitable for injection molding without the need for further manufacturing processes.
M., The strain-rate and temperature dependence of the mechanical properties of polyetherketone and polyetheretherketone, Journal of Materials Science, Vol. 31, no. 6, pp. 1415–1423, 1996
In Interdisciplinary Journal of Engineering Sciences.
[10] Panayotov, I.V., Orti V., Cuisinier F., Yachouh J., Polyetheretherketone (PEEK) for medical applications, Journal of Materials Science: Materials in Medicine, Vol. 27, pp. 118, 2016
Both materials are suitable for injection molding without the need for further manufacturing processes.
M., The strain-rate and temperature dependence of the mechanical properties of polyetherketone and polyetheretherketone, Journal of Materials Science, Vol. 31, no. 6, pp. 1415–1423, 1996
In Interdisciplinary Journal of Engineering Sciences.
[10] Panayotov, I.V., Orti V., Cuisinier F., Yachouh J., Polyetheretherketone (PEEK) for medical applications, Journal of Materials Science: Materials in Medicine, Vol. 27, pp. 118, 2016
Online since: January 2014
Authors: Loanda Raquel Cumba, U.O. Bicalho, D.R. Carmo
Currently procedures for the preparation of the base materials of Ti (IV) and hydrogen syntheses of metal are being widely studied.
Raman Spectra: Raman spectroscopy was carried out in the Micro Raman Horiban Jobin Yvon LabHR with laser in 632 nm, for measurements an amount around of 20 mg of modified materials samples was added and pressed on a Pyrex glass surface.
Hussain et al.: Chemical Engineering Journal Vol. 157 (2010), p. 45
Ortiz-Islas, et al.: Journal of Sol-Gel Science and Technology Vol. 37 (2006), p. 165
Carmo: Journal of Applied Electrochemistry Vol. 41 (2011), p. 787
Raman Spectra: Raman spectroscopy was carried out in the Micro Raman Horiban Jobin Yvon LabHR with laser in 632 nm, for measurements an amount around of 20 mg of modified materials samples was added and pressed on a Pyrex glass surface.
Hussain et al.: Chemical Engineering Journal Vol. 157 (2010), p. 45
Ortiz-Islas, et al.: Journal of Sol-Gel Science and Technology Vol. 37 (2006), p. 165
Carmo: Journal of Applied Electrochemistry Vol. 41 (2011), p. 787
Online since: October 2011
Authors: Jing Pei Xie, Gao Lu, W.Y. WANG
The Thermal Fatigue Performance for Cast Iron Brake Drum of Large Trucks
Gao Lu1,a,Wen yan Wang2,b,Jing pei Xie3,c
1Material Science and Technology Institution, Henan University of Science and Technology, Luoyang 471003, China
aluoyanglugao@163.com,bwangwy1963@163.com, cxiejp@mail.haust.edu.cn
Keywords: cast iron,thermal fatigue,crack initiation and propagation
Abstract:This paper studies the application in different cast iron brake drum the thermal fatigue properties of materials.
Experimental materials and procedure Experimental materials.
This experiment materials for grey cast iron, vermicularizing for 35% of vermicular cast iron, vermicularizing for 75% of vermicular iron and ductile cast iron.
The four kinds of materials cast into trial piece of processing into the sample.
Journal of Bionic Engineering Suppl., 2008,20(27):21-27 [2] Xin Tong, Hong Zhou,Wei Zhang etc..Journal of materials processing technology, 2008,206:473-480
Experimental materials and procedure Experimental materials.
This experiment materials for grey cast iron, vermicularizing for 35% of vermicular cast iron, vermicularizing for 75% of vermicular iron and ductile cast iron.
The four kinds of materials cast into trial piece of processing into the sample.
Journal of Bionic Engineering Suppl., 2008,20(27):21-27 [2] Xin Tong, Hong Zhou,Wei Zhang etc..Journal of materials processing technology, 2008,206:473-480
Online since: July 2011
Authors: Bi Fan He, Li'ao Wang, Da Yong Chen, Lei Lu, Zhi Peng Chen
The auxiliary materials were PFA and HS.
The characteristics of raw materials were shown in Table 1.
The raw materials aforementioned were all sieved to select the particle diameter range 0.10 mm to 0.20 mm.
Journal of Combustion Science and Technology 7(1):71-76
Beijing: Science Press
The characteristics of raw materials were shown in Table 1.
The raw materials aforementioned were all sieved to select the particle diameter range 0.10 mm to 0.20 mm.
Journal of Combustion Science and Technology 7(1):71-76
Beijing: Science Press
Online since: May 2012
Authors: Tao Duan, Wen Kun Zhu
Material and Methods
Materials: All chemicals were of analytical grade and used without further purification.
There was also new absorption peaks at 1656 cm-1, which was stretching vibration absorption peaks of amide I band and C-N-C or CO, the samples were mostly polypeptide organic materials.
Journal of Southwest University of Science and Technology Vol.24 (2009), p. 65-69
Journal of Southwest University of Science and Technology Vol.24 (2009), p. 87-93
Materials and Structures Vol.36 (2003), p. 342-352
There was also new absorption peaks at 1656 cm-1, which was stretching vibration absorption peaks of amide I band and C-N-C or CO, the samples were mostly polypeptide organic materials.
Journal of Southwest University of Science and Technology Vol.24 (2009), p. 65-69
Journal of Southwest University of Science and Technology Vol.24 (2009), p. 87-93
Materials and Structures Vol.36 (2003), p. 342-352
Online since: March 2018
Authors: Seyfettin Dalgıç, Harun Özkişi
Narayan, Current Opinion in Solid State and Materials Science, 18(1), 46-52, (2014)
Pearton, Material Science ve Engineering 33, 51-107, (2001)
Terashima, Materials Science and Engineering: B, 75(2), 207-209, (2000)
Matsumoto, Materials Science and Engineering: B, 93(1), 135-138, (2002)
Dalgic, Journal Of Optoelectronıcs And Advanced Materials, Vol. 13, No. 11-12, p. 1507- 1509, (2011).
Pearton, Material Science ve Engineering 33, 51-107, (2001)
Terashima, Materials Science and Engineering: B, 75(2), 207-209, (2000)
Matsumoto, Materials Science and Engineering: B, 93(1), 135-138, (2002)
Dalgic, Journal Of Optoelectronıcs And Advanced Materials, Vol. 13, No. 11-12, p. 1507- 1509, (2011).
Online since: January 2012
Authors: Yi Xia Zhang, Khin Soe, Phillip Hermes, Joel Bell
Hannant: Materials Science and Technology, Vol. 11 (1995), p. 853-861
Saito, ACI Materials Journal Vol. 101, (2004) p. 242-248
Wu, ACI Materials Journal Vol. 98 (2001), p. 483-492
Zhang: Journal of Materials in Civil Engineering Vol. 17 (2005), p.143-152
Quek: Journal of Materials in Civil Engineering Vol. 19 (2007), p. 855-863
Saito, ACI Materials Journal Vol. 101, (2004) p. 242-248
Wu, ACI Materials Journal Vol. 98 (2001), p. 483-492
Zhang: Journal of Materials in Civil Engineering Vol. 17 (2005), p.143-152
Quek: Journal of Materials in Civil Engineering Vol. 19 (2007), p. 855-863
Online since: December 2013
Authors: Rong Jia, Yu Xiu Zhang, Qi Zhang, Lu Wang, Wen Li Liu, Tuan Yao Chai, Mu Lan Wang
Introduction
Quinoline and its derivatives are typical representative of N-heterocyclic, they occurs widely in coal tar, oil shale, and petroleum, and serves as raw materials and solvents in the manufacture of dyes, paints, fungicides, and wood treatment chemicals.
Materials and Methods Isolation and characterization of the quinoline degradation bacteria.
Brilis: Journal of Chromatography.
Liua, LiFana, Jinren Ni: Journal of Hazardous Materials.
[11] Wang, J.L., Wu W.Z., Zhao X.: Biomedical and Environmental Sciences.
Materials and Methods Isolation and characterization of the quinoline degradation bacteria.
Brilis: Journal of Chromatography.
Liua, LiFana, Jinren Ni: Journal of Hazardous Materials.
[11] Wang, J.L., Wu W.Z., Zhao X.: Biomedical and Environmental Sciences.