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Online since: July 2017
Authors: Markus Kaestner, Volker Ulbricht, Joseph Goldmann
Possible applications span from apparently homogeneous materials like metals, whose microscopic grain structure is examined, to obviously hierarchically organized fiberreinforced polymers, on to porous materials, bio materials, etc.
Mechanics of Materials, 39(6):580-595, 2007
Mechanics of Materials, 52(0):40-57, 2012
Computational Materials Science, 62(0):79 - 86, 2012
Materials Science and Engineering: A, 480(1-2):549-557, 2008
Online since: April 2009
Authors: Jerzy Kaleta, Daniel Lewandowski, Rafał Mech, Paweł Gąsior
Introduction Nowadays researches over new kind of materials mainly concern over so called SMART materials (SM).
They include magnetorheological materials, materials with gigantic magnetostriction, materials of gigantic magnetoresitivity, magnetocaloric materials and others [1].
Material fabrication In the study magnetostrictive composite (hereafter referred to as GMM composite) developed in the Institute of Materials Science and Applied Mechanics in Wroclaw University of Technology was used.
Journal of Applied Physics, Volume 101, year 2007
Carman ,,Magneto-thermo-mechanical characterization of 1-3 type polymer-bonded Terfenol-D composites'' Journal of Magnetism and Magnetic Materials, 263, 2003, pages 101-112.
Online since: July 2017
Authors: S. Arun Kumar, M. Muralidharan, A. Bala Kumaran, S. Nishanth, P. Ashoka Varthanan, C. Vigneshkumaran
Materials with even higher tensile strength are found to fail at less number of cycles after welding.
The performance of components in any application depends on the life of the materials.
Hill “The effects of laser peening and shot peening on high cycle fatigue in 7050-T7451 aluminum alloy”, Journal of Materials Science and Engineering ,2010, pp 699–707 [13] S.
Nemati “The effects of deep rolling and shot peening on fretting fatigue resistance of Aluminum-7075-T6”, Materials Science and Engineering A 516 (2009) 235–247 [15] A.L.M.
Korsunsky “An eigenstrain-based finite element model and the evolution of shot peening residual stresses during fatigue of GW103 magnesium alloy”, International Journal of Fatigue 42 (2012) 284–295 [17] Kyun Taek Cho, Kyung Song, Sang Ho Oh, Young-Kook Lee, Kyoung Mook Lim, Won Beom Lee “Surface hardening of aluminum alloy by shot peening treatment with Zn based ball”, Journal of Materials Science and Engineering A 543 (2012) 44– 49 [18] S.
Online since: November 2011
Authors: Yun Hai Jia
Table 1 shows two electrode materials characteristic.
[3] Luis.C.J, Puertas.I and Villa.G: Journal of Materials Processing Technology.
[5] Eckart Uhlmann, Markus Roehner: CIRP Journal of Manufacuring Science and Technology.
[6] J.P.Davim, C.Maranhão, G.Cabral and J.Grácio: Journal of Refractory Metals & Hard Materials.
[7] Hwa-Tang Lee, Fu-Chuan Hsu and Tzu-Yao Tai: Materials Science and Engineering.
Online since: November 2025
Authors: Alexandru Cazacu, Andrei Christian Bucur
Materials Science Forum, 1069, 172-179. doi:10.4028/www.scientific.net/MSF.1069.172 [2] Kumar, A., & Bhattacharya, A. (2023).
Journal of Materials Science, 56(4), 2941-2950. doi:10.1007/s10853-020-05135-y [11] Sang, W., et al. (2020).
Materials Science and Engineering: A, 746, 100-112. doi:10.1016/j.msea.2018.12.065 [14] Gupta, N., & Shukla, R. (2019).
Journal of Materials Research and Technology, 7(1), 51-60. doi:10.1016/j.jmrt.2017.09.002 [16] Qin, J., & Li, X. (2018).
Journal of Materials Science & Technology, 32(6), 559-564. doi:10.1016/j.jmst.2016.03.009
Online since: January 2017
Authors: Hong Zhi Yue, Chun Cheng Wei, Zan Zhong Yang, Xin Wang
Dynamic Hydrothermal Synthesis of Super-Low Density Xonotlite Thermal Insulation Materials from Industrial Quartz Powder Hongzhi Yue1, a *, Xin Wang2,b , Zanzhong Yang1,c, Chuncheng Wei1,d 1 School of Materials Science and Engineering, Shandong University of Technology, Zibo, China 2 Institute of Materials Science and Engineering, Ocean University of China, Qingdao, China a zbyhz@163.com, b wangxin.hd@163.com, c yzz@sdut.edu.cn, dchun_cheng@sdut.edu.cn Keywords: xonotlite;dynamic hydrothermal synthesis;thermal insulation materials Abstract.
To widen the application of xonotlite materials needs a very extensive resource of silceous raw materials.
Experimental Materials.
New Building Materials. 6(2006):55-58
International Journal of Thermal Sciences. 50(2011):1838-1844.
Online since: September 2013
Authors: Chun Hui Zhang, Yan Wang, Hong Liang Yue
The general stage and key stage for quasi-brittle materials can be effectively captured by the software.
Introduction Rock and concrete are as heterogeneous materials as other quasi-brittle materials [1-5], mechanical properties and fracture mechanism of which are particularly complex.
Mechanical experiment [5-7] is an important method to study mechanical behavior of the quasi-brittle materials.
The mechanical properties of materials in the localization band has great difference with out-band, similarly, stress and deformation in-band also are greatly different with out-band.
High-speed camera is applied to capture image in experimental research [11-13], the method is available for dynamical capturing image in deformation or failure process of quasi-brittle materials.
Online since: August 2018
Authors: Hassan El-Hofy, Mohab Hossam, Mohamed Yassin
However, most of these materials such as glass and ceramics are considered difficult-to-cut materials due to their high hardness.
Currently, Vibration-Assisted Machining (VAM) is found to be effective for machining difficult-to-cut materials.
Introduction Difficult-to-cut materials can be found in many vital applications such as optics and aerospace.
Choi, "Micro surface phenomenon of ductile cutting in the ultrasonic vibration cutting of optical plastics," Journal of Materials Processing Technology, vol. 68, pp. 89-98, 1997
Zhang, "Ultrasonic elliptical vibration transducer driven by single actuator and its application in precision cutting," Journal of Materials Processing Technology, vol. 180, 2006
Online since: March 2016
Authors: Jing De Zhang, Jun Peng Luan, Chag Ku Ding, Ya Lei Liu, Fei Li
The Bi2O3 doping can improve the ionic conductivity of 3YSZ materials.
J Advanced Energy Materials. 1(2011) 314-332
J ACS applied materials & interfaces. 6(2014) 19990-19996
J Journal of Materials Science: Materials in Electronics. 5(1994) 260-266
J Chemistry of materials. 8(1996) 1287-1291
Online since: September 2024
Authors: Ádám Vida, Ferenc Hareancz, Enikő Réka Fábián, Gergely Juhász
In the 21st century a new chapter in materials science has been opened with the appearance of high-entropy alloys (HEA).
Introduction High-Entropy Alloy (HEA) has emerged in the field of materials science in the last decade.
Materials Research-ibero-american Journal of Materials, 25. (2022) https://doi.org/10.1590/1980-5373-mr-2021-0442 [9] Liu, Y., Xiang, D., Wang, K., & Yu, T.
Jena, “Materials for hydrogen Storage: Past, present, and future,” The Journal of Physical Chemistry Letters, vol. 2, no. 3 (2011) pp. 206–211 doi: 10.1021/jz1015372
Lai et al., “How to design hydrogen storage Materials?