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Online since: March 2014
Authors: Maksim Antonov, Jaan Kers, Andres Krumme, Aare Aruniit
Experimental Materials.
It enables quick and simple ranking of materials by surface hardness [11].
The main value of this test method is the relative ranking of materials.
Oleiwi, A Study Of Wear Rate Behavior Of Polyester Reinforced By Silica ( SiO2 ) Particles, The Iraqi Journal For Mechanical And Material Engineering. 10 (2010) 108–118
Tall, Preliminary Study of the Influence of Post Curing Parameters to the Particle Reinforced Composite’s Mechanical and Physical Properties, Materials Science. 18 (2012) [13] K.
Online since: October 2015
Authors: Igor Štubňa, Anton Trník, Ján Ondruška, Tomáš Húlan, Daniel Antal
Hlinku 1, 94974 Nitra, Slovakia 2Department of Materials Engineering and Chemistry, Faculty of Civil Engineering, Czech Technical University, Thakurova 7, 16629 Prague, Czech Republic aantal@fnnitra.sk, btomas.hulan@ukf.sk, catrnik@ukf.sk, distubna@ukf.sk, ejondruska@ukf.sk *corresponding author Keywords: illite, texture, dimension changes, Young modulus, thermal diffusivity, firing, ceramics.
Nur, Elastic properties of dry clay mineral aggregates, suspensions and sandstones, Geophysical Journal International, 155 (2003) 319-326
Montealegre Contreras, Study of the raw materials used in the manufacture of ceramic in Fran Ali (Oued Lau.
Hahn, Thermal diffusivity of semitransparent materials determined by the laser-flash method applying a new analytical model, International Journal of Thermophysics, 19(3) (1998) 941-949
Vozár, Thermomechanical analysis of illite from Fuzérradvány, Materials Science (Medžiagotyra), accepted manuscript [15] V.A.
Online since: January 2010
Authors: E. Candan, Hayrettin Ahlatci, A. Durmaz, A. Balta, M. Acarer
Chung: Journal of Materials Science, 29 (1994), p. 3128 [3] Georg Frommeyer, Stephan Beer and Kertsen von Oldenburg: Z.Metallkunde, 85 (1994), p.372 [4] Jian Zhang, Zhongyun Fan, Yuqing Wang, Benlian Zhou: Materials and Design 21 (2000), p. 149 [5] X.
S.C.Tjong, Z.Y.Ma: Materials Science and Engineering R, 29 (2000), p.49 [6] A.
Wright: Metallurgical and Materials Transaction 35A (2004), p.435 [8] H.
Uchil:Corrosion Science 44 (2002), p. 917 [10] N.
Buchheit: Corrosion and Materials, 29 (2004), p. 4 [11] N.
Online since: September 2018
Authors: Sandra Raquel Kunst, Henrique Carvalho de Oliveira, Oscar de Almeida Neuwald, Lilian Vanessa Rossa Beltrami, Gunther Johannes Lewczuk Gerhardt
Materials and Methods The used substrate was ZAR 230 galvanized steel (GS) and Sigma-Aldrich 3-glycidoxypropyltrimethoxysilane (GPTMS) was used as alkoxy precursor.
Adriaens: Materials Chemistry and Physics Vol. 145 (2014), p. 450
Azambuja: Corrosion Science Vol. 92 (2015), p. 200
Malfatti: Materials Research Vol. 18 (2015), p. 1140
Malfatti: Materials Research Vol. 18 (2015), p. 138
Online since: May 2019
Authors: Truong Di Ha Le, Meng Ting Tsai
Introduction Hybrid systems with various structures of different materials are commonly found in the construction.
In addition, the economic and ecologic benefits have made the mixture of these two materials become an important objective in the modern multi-story buildings [1].
To evaluate fire resistance ability of combusted elements, charring rate has also been investigated in various materials such as pine, acacia, bamboo or plywood throughout the process under Fire [6,7].
Fire Safety Journal 40 (2005) 528–554 [8] Fire resistance tests—elements of building construction (ISO 834).
Fire Safety Journal (2005); 40, 528–54
Online since: July 2014
Authors: Xue Hui Wang, Can Zhao, Yang Yang Shi, Wang Xi, Zi Biao Wang
Research on cutting vibration in high-speed milling nickel-base superalloy Can Zhao1,a*,Zibiao Wang1,b,Xuehui Wang1,Wang Xi1,Yangyang Shi1 1School of Mechanical Engineering, Heilongjiang University of Science Technology,NO.2468 PuyuanRoad, Harbin 150022, China azhaocan_hist@163.com,bbiao0529@sina.cn Keywords:Ceramics Tool; High-speed; Milling; Superalloy; Vibration Abstract: Nickel-base superalloy GH4169 is a kind of alloy with high intensity, heat-stability and heat-fatigability, so that is often used to aerospace field, but which has poor machinability.
GH4169 superalloy as workpiece material [4] (material properties are shown in Table 1), before processing the workpiece material through the solution and aging heat treatment, the testing process is the bottom of the workpiece clamping vise.
The main reason for this phenomenon is v = 500m/min ~ 864m/min range, with increasing speed, cutting heat improved but did not reach the critical temperature of the material to soften, resulting in vibration also increases; However, when v = 1037m/min may be just over a critical temperature, resulting in softening of the material in contact with the cutting edge, so the amplitude decreases.
Acknowledgements This work is supported by the National Science Foundation of Heilongjiang Province (Project No QC2012C029), Open Fund of State Key Laboratory of Digital Manufacturing Equipment and Technology (hust) (No.DMETKF2009004), and Heilongjiang Education Department Found Project of Revitalizing Old Industrial Bases (No. 1151gzd20).
Spatial Analysis of TheMechanical Model Milling[J].Journal of Nanjing UniversityofAeronautics &Astronautics,2002,34(6):553-556 [3] C.Eksioglu,Z.M.Kilic,Y.Altintas.Discrete-Time Prediction of Chatter Stabillity,Cutting Forces, and Surface Location Errors in Flexible Milling Systems [J].Journal of Manufacturing Science and Engineering,2012
Online since: December 2011
Authors: Zhen Yi Huang, Yi Qian Wang, You He Li, Ping Wang, Xiao Feng Zhang
Research on the Annealing Process of AISI4145H Steel Zhenyi Huang1, a, Yiqian Wang2,b and Youhe Li3,c Ping Wang, Xiaofeng Zhang 1School of material science and engineering, Anhui University of technology, China 2School of material science and engineering, Anhui University of technology, China 3Nanjing iron and steel Co.Ltd, China ahuangzhenyi@ahut.edu.cn, bYIQIANW@126.com, Keywords: List AISI4145H steel; simulated annealing; black box; hardness Abstract.
Material and experimental procedure This experimental material used was the steel for drill collar of the Medium-sized rolling mill procedures.
Materials Research Vol. 213 (2011) pp 143-146 [7] R.A.Renzetti, H.R.Z.Sandim and M.J.R.Sandim: Annealing effects on microstructure and coercive field of ferritic–martensitic ODS Eurofer steel.
Materials Science and Engineering A528 (2011) 1442-1447 [8] W.VanRenterghem, A.AlMazouzi and S.VanDyck: Influence of post irradiation annealing on the mechanical properties and defect structure of AISI304steel.
Journal of Nuclear Materials 413 (2011) 95–102
Online since: June 2012
Authors: Yong Jun Gu, Qian Li, Li Hua Li, Biao Jin, Jin Liang Huang
Preparation of Low-temperature Sintered Ba2Ti9O20 Ceramics Doped with B2O3 by Different Method Qian Li*a, Biao Jinb, Jin-liang Huangc, Yong-jun Gud, Li-hua Lie School of Materials Science & Engineering, Henan University of Science & Technology, Luoyang 471003, China aliqian@mail.haust.edu.cn,bjinbiao8732@163.com, chuangjl@mail.haust.edu.cn, dyjgu@mail.haust.edu.cn, elilihua7818@163.com Keywords: microwave dielectric ceramics; low temperature sintering;dielectric property; liquid coating.
Several ceramic materials have been developed for using as microwave resonators.
Some studies have reported that oxide dopants and the glasses exhibited pronounced effects on the microstructure and microwave dielectric properties of the materials.
BaCO3(≥99wt%) and TiO2(≥98wt%) were used as the starting materials.
Su: Materials Chemistry and Physics. 100(2006), p. 391
Online since: December 2018
Authors: Koshiro Mizobe, Katsuyuki Kida, Kohei Egawa
Sherby: Journal of material science Vol. 14 (1979) pp. 2688-2692
Kida: Applied Mechanics and Materials Vol. 620 (2014), pp 443-448
Kida: Material Research Innovations Vol. 18 S1 (2014), pp. 60-65
Rozwadowska: Advanced Materials Research Vols. 217-218 (2011), pp. 1266-1271 [11] K.
Kida: Materials Science Forum Vol. 904 (2017), pp 36-39
Online since: December 2011
Authors: Tao Xie, Xiao Biao Shan, Hong Yan Wang
Table 1 gives the material properties and structural parameters of the piezoelectric energy harvester.
Acknowledgements This project is supported by the National Natural Science Foundation of China (No. 51077018) and Science and Technology Planning Project of Qiqihar of China (GYGG2010-02-1).
Sodano: Smart Materials and Structures, vol. 16 (2007), p.
Inman: Journal of Vibration and Acoustics, vol. 130 (2008), p.1-14 [5] Y.
Inman: Journal of Intelligent Material System and Structures [8] B.