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Online since: January 2017
Authors: Xin Yu Ye, Yang Luo, Di Wu, Jian Zhou, Xin Hua Yang, Xiao Qiang Wen, Shi Yong Xie
Han: Materials Research Bulletin, vol. 48 (2013) No.2, p. 512
Lin: Optical Materials, vol. 27 (2005) No.8, p. 1426
, Luminescent Materials, Springer, 1994, pp. 10
Kijima: Chemistry of Materials, vol. 19 (2007) No.18, p. 4592
Mitomo: Chemistry of materials, vol. 18 (2006) No.23, p. 5578.
Online since: July 2017
Authors: Werner Theisen, Janis Kimm, Erkan Usta, Arne Röttger, Sebastian Brust
With respect to tribo-mechanical properties, Fe-alloys reinforced with oxide particles are promising compound materials to produce wear-resistant MMC with low-cost and readily available materials.
[3] European Commission, Report on critical raw materials for the EU, Report of the Ad-hoc Working Group on defining critical raw materials (2014)
Riedel, Handbook of ceramic hard materials, Wiley-VCH, Weinheim, Germany, 2000
Theisen, CVD Coating of Oxide Particles for the Production of Novel Particle-Reinforced Iron-Based Metal Matrix Composites, Open Journal of Applied Sciences 6 (2016) 260–269
Theisen, Supersolidus liquid-phase sintering of ultrahigh-boron high-carbon steels for wear-protection applications, Materials Science and Engineering: A (2012) 511–521
Online since: July 2015
Authors: Noorsuhada Md Nor, Soffian Noor Mat Saliah, Muhammad Izzahan Jamaludin
In the production of building materials, the TiO2 functions as an additive that significantly reduces the consumption of resources such as traditional energy.
However, the reviews on the inclusion of TiO2 in both materials are still limited.
Hence, the inclusion of TiO2 in the mortar composition can be used as decorative materials.
Xu, “The application of titanium dioxide of environment-friendly building materials,” Applied Mechanics and Materials, vol. 174-177, p.767-770, 2012
Abdalla, “Titanium dioxide as photocatalyses to create self-cleaning concrete and improve indoor air quality,” International Journal of the Physical Science, vol. 6 (29), p. 6767-6774, 2011
Online since: July 2015
Authors: Hui Juan Yang, Laura Targownik, Andrew Goertzen, William D. Leslie, Yun Hua Luo
Materials and Methods The ability of an engineering beam to withstand loadingis generally described by the bending stiffness (Kb), axial stiffness (Ka), shear stiffness (Ks), and torsional stiffness (Kt).
Journal of Biomechanics, 40:1745 – 1753, 2007
Journal of Biomechanics, 31(2):125 – 133, 1997
Journal of Biomechanics, 33:1325 – 1330, 2000
Journal of Biomechanics, 27:1159–1168, 1994
Online since: May 2015
Authors: Xiao Ping Ren, Jian Wang, Lei Dong, Ombati Wilson
Acknowledgement The grants that have been received from the National Natural Science Funds of China(51405459), National Science and Technology Support Program (2011BAK15B06) , Special-Funded Program on National Key Scientific Instruments and Equipment Development (2012YQ090208) are hereby acknowledged with much gratitude.
Advanced Materials Research, 2013(631-632):837-841
Key Engineering Materials, 2014, (Volumes 609 - 610),1473-1477 [3]M.
Journal of Huazhong university of science and technology (nature science edition), 2012, 40(II): 91-97
International Journal of Modern Physics: Conference Series on Measurement of Mass, Force and Torque (APMF 2013),24,1360003,1-6
Online since: September 2010
Authors: László A. Gömze
At present it is obvious the surface sizes, structures, activities and the internal chemical and crystal composition of materials can be modified by a controlled mechanical activation process [16-23] Materials and experimental procedures Nowadays, ceramic items are normally produced with materials having submicron and nanoparticles [24-28].
Lapides: Journal of Materials Synthesis and Processing Vol. 8 (2000), p. 223
Nogrega: Journal of the Brazilian Chemical Society Vol. 16 (2005), p. 108
Valdre: Applied Clay Science Vol. 38 (2005), p. 233
Mondonico: Applied Clay Science Vol. 42 (2009), p. 398
Online since: June 2015
Authors: Zhi Cheng Tan, Xian Zhi Shao, Feng Ma
Construction and Building Materials, 1996, 10(1): 39-43
Journal of Chang’an University (Natural Science Edition), 2003, 23(6): 36-39
Journal of the structural division, 1975, 101
Journal of Basic Science and Engineering, 1998, 6(1): 83-90
Journal of Sound and Vibration, 1994, 169(1): 3-17
Online since: December 2011
Authors: Jean Yves K'nevez, Alain Gerard, Claudiu Bisu, Mehdi Cherif
Knowing that the dynamic behavior of robots used in processing materials is poor in comparison with a CNC gantry, a detailed approach is required concerning the dynamical behavior induced by the cutting process.
Dombre, Modeling, Identification and Control of Robots, Hermes Science Publications, 2002
Girardin, Etude de l’usinage de matériaux performants et surveillance de l’usinage, L’Institut National de Sciences Appliquées de Lyon, 2010
Gérard, “New method to characterize a machining system: application in turning” International Journal of Material Forming. 2, (2), pp. 93-105, 2009, DOI : 10.1007/s12289-009-0395-y, [10] C.
[11] Shin-Ichi Metsouoka, Kazunori Schimizu, Nobuyuki Yamazaki, Yashunori Oki, High speed end milling of an articulated robot and its characteristics, Journal of Material Processing Technology, 95, (1-3), pp. 83-89, 1999
Online since: March 2014
Authors: Yu Tong Guo, Li Hui, Song Zhou, Liang Xu, Shao Hua Ma
The pre-corrosion experiment uses the standard G34-1 of American society of testing materials (ASTM).
International Journal of Fatigue. 26(2004)71-80
Journal of Aeronautical materials. 30(2010)59-64
The Chinese Journal of Nonferrous Metals. 19(2009) 346-352
International Journal of Fatigue. 26(2004) 629–640.
Online since: April 2011
Authors: Hédi Hamdi, Ferdinando Salvatore, Tarek Mabrouki
The workpiece material behavior is presented by Johnson and Cook law.
The cutting tool removes a specific layer of work material. f is the theoretical uncut thicknesses to remove with the tool, R is the cutting edge radius, f-fcr the real layer removed of work material.
For those reasons it is considered, in a first time, that it can be applied for different types of materials.
Rigal, A contribution to a qualitative understanding of thermo-mechanical effects during chip formation in hard turning, journal of material processing technology, n 176 p 214-221. (2006) [9] F.Zemzemi, Caractérisation de modèles de frottement aux interfaces pièce-outils-copeau en usinage: application au cas de l’usinage des aciers et de l’inconel 718, Phd Ecole centrale de Lyon. (2007) [10] F.Salvatore, T.Mabrouki, H.Hamdi, Analytical model of removal material in case of cutting and abrasion processes, Proceedings of the 4th international conference on tribology manufacturing processes.
International journal of mechanical science. (2007) [13] H.Hamdi, Contribution à l’étude de la physique de l’interface meule-pièce dans le cadre de la rectification conventionnelle et à grande vitesse.