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Online since: March 2013
Authors: Mohamad Rusop Mahmood, M. Maryam, M.S. Shamsudin, Suriani Abu Bakar
Rusop2,3,b 1School of Physics and Material Studies, Faculty of Applied Sciences, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia 2NANO-SciTech Centre, Institute Of Science, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia 3 NANO-ElecTronic Centre, Faculty of Electrical Engineering, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia 4 Department of Physics, Faculty of Science and Mathematics, Universiti Pendidikan Sultan Idris, 35900 Tanjung Malim, Perak, Malaysia.
Biró, Synthesis of Carbon Nanotubes by Spray Pyrolysis and their investigation by Electron Microscopy, Journal of Optoelectronics and Advanced Materials 7 (2005) 631 - 636
Rusop Mahmood, Effect of Temperature on the Growth of Vertically Aligned Carbon Nanotubes from Palm Oil, Defect and Diffusion Forum 312-315 (2011) 900-905
Rusop, Preparation of Palm Oil Based Carbon Nanotubes at Various Ferrocene Concentration, Advanced Materials Research 364 (2011) 408-411
Rusop, Temperature Effects on the Production of Carbon Nanotubes from Palm Oil by Thermal Chemical Vapor Deposition Method, Advanced Materials Research 364 (2011) 359-362.
Online since: December 2004
Authors: Jiu Hua Xu, Ning He, Liang Li
Materials Science Forum Vols. *** (2004) pp.414-417 online at http://scientific.net  2004 Trans Tech Publications, Switzerland Experimental Study on High Speed Milling of Ti Alloys L.
Tool rejection or failure was determined based on the following criteria: Materials Science Forum Vols. *** 415 Average flank wear = 0.30 mm; Maximum flank wear = 0.6 mm; Excessive chipping/flaking or fracture of the cutting edge.
: 275m/min) Fig.5 Tool wear pattern of high speed milling Ti6Al4V under various cutting speeds Slice fracture Adhesion Nubbly fracture Adhesion Notch wear Slice fracture Notch wear Adhesion Adhesion Crack Materials Science Forum Vols. *** 417 It seems that the machinability of β titanium alloy was poorer than that of α and α+β titanium alloys because of the higher anti-oxidation of the β Ti alloy.
Narutaki: Chinese Journal of Mechanical Engineering Vol. 20 (2002), p. 33 [3] E.
Zhang: Chinese Journal of Mechanical Engineering, Vol. 2 (1988), p. 28 [5] M.
Online since: December 2004
Authors: Fei Hu Zhang, Shen Dong, Gui Wen Kang
This kind of material has been used in many engineering applications.
Coupling these two technologies result in a complete fabrication system that will enable the affordable widespread use of alumina ceramics in engineering applications.
Luan: Key Engineering Materials Vols. 202-203 (2001), p. 103 [4] F.H.
Golini: Key Engineering Materials Vols. 238-239 (2002), p. 53 [6] F.
Zhang, et al: Optics and Precision Engineering Vol. 23 (1999), p. 1 [7] S.D.
Online since: May 2020
Authors: Wei Na Di, Gu Fan Zhao
Based on these understandings, it is necessary to conduct tech-mining research and potential application prospect analysis of functional materials, especially advanced smart materials, and to provide new ideas, new methods and new processes for the new generation of petroleum engineering technologies.
On the one hand, on-site demand drives the application of new advanced materials.
These advances in cutting-edge technology would certainly promote the rapid development of petroleum engineering technology [4-8].
Wang, Development and potential application of advanced functional materials in the oil field, Materials Science Forum, 944 (2019) 637–642
Nguyen, Piezoelectric biomaterials for sensors and actuators, Advanced Materials, 31 (2019) 1–15
Online since: December 2004
Authors: Dun Wen Zuo, Xiang Feng Li, Wen Zhuang Lu, X.Q. Chu, Min Wang
Materials Science Forum Vols. *** (2004) pp.644-648 online at http://scientific.net  2004 Trans Tech Publications, Switzerland Study on Hole Making in EACVD Thick Diamond Film D.W.
Wang 1,d 1 College of Electrical & Mechanical Engineering, Nanjing University of Aeronautics & Astronautics, Nanjing, 210016, China a dzuo@jlonline.com, bwzlu@nuaa.edu.cn, cfxli@nuaa.edu.cn, dimit505@nuaa.edu.cn Keywords: Holing, Thick diamond film, EACVD, YAG laser, EDM Abstract.
Introduction Thick diamond film has caught much attention from the both fields of academic research and engineering application, because of its special features that particle diamond or thin diamond film has not.
In this paper, pulsed YAG laser was used to make through-holes in the EACVD thick diamond film, where the Materials Science Forum Vols. *** 645 frequency was kept constant and the pulse power was changed from 2.1J to 4.5J.
Song, College of Mechanical & Electrical Engineering, Nanjing University of Aeronautics & Astronautics for their help in the study.
Online since: February 2013
Authors: Xiao Chao Cui, Jin Bao Lin, Yan Xia Chen, Chao Wang, Li Feng Ma, Qing Xiang Liang
Kojima, Project of Platform Science and Technology for Advanced Magnesium Alloys, Materials Transactions. 42 (7) (2001) 1154-1159
Zhai, Improving the Mechanical Properties of AZ31 Mg Alloy by High Ratio Extrusion, Materials Science Forum. 503-504 (2006) 865-870
Yang, Study of Hydrostatic Extrusion Processes with Extra-High Extrusion Ratio, Key Engineering Materials. 233-236 (2003) 311-316
Hwang, Processing Fine-Grained and Superplastic AZ31 Mg Tubes for Hydroforming, Key Engineering Materials. 271-271 (2004) 289-294
Liu, Simulation of the FGH96 Superalloy Microstructural Changes under Different Deformation Conditions, Materials Science Forum. 575-578 (2008) 455-461
Online since: September 2025
Authors: Ulrich Schmid, Christopher Zellner, Georg Pfusterschmied, Priyank Parmar, Guenter Wedl, Manoj Kumar Yadav
Engineered substrates present a promising technological approach for achieving this challenging goal.
PCS polymers exhibit strong adhesion to a wide range of substrates, exceptional chemical resistance, UV stability, and thermal durability, making them highly suitable for advanced bonding applications.
PCS shows promise as a bonding interface for SiC substrates, paving the way for further research into doped SiC layers and their electrical properties for advanced power electronics applications.
Rouchier, et al., "150 Mm SiC Engineered Substrates for High-Voltage Power Devices.," Materials Science Forum, vol. 1062, pp. 131-135, 2022
Campbell, Manufacturing Processes for Advanced Composites, 2003
Online since: May 2021
Authors: Rif G. Rizvanov, O.A. Nasibullina, E.Sh. Gaysin
Gareev, Destruction patterns of X70 steel sample, possessing cracks of corrosion-mechanical origin, under cyclic loading, Materials Science Forum. 946 (2019) 20-24
Тokarev, Evaluation of the Possibility of Obtaining Tube-to-Tube Sheet Welded Joints of 15Cr5Mo Steel by Alternative Technological Process, 4th International Conference on Advanced Engineering and Technology (4th ICAET) IOP Publishing IOP Conf.
Series: Materials Science and Engineering 317 (2018) 01207
Karetnikov, Conditions of Possible Application of Vibration Processing in the Course of Welding, Materials Science Forum. 946 (2019) 883-888
Chemical and Petroleum Engineering. 51 № 3 (2015) 283-285
Online since: October 2007
Authors: Giin Shan Chen, Pee Yew Lee, Hong Ming Lin
Microstructure and Properties of Vacuum Hot-Pressing SiC/ Ti-Cu-Ni-Sn Bulk Metallic Glass Composites Hong- Ming Lina , Giin-Shan Chenb and Pee-Yew Leec,* a Department of Materials Engineering, Tatung University, Taipei, Taiwan, China bDepartment of Materials Science, Feng-Chia University, Taichung, Taiwan, China cInstitute of Materials Engineering, National Taiwan Ocean University, Keelung, Taiwan, China a hmlin@ttu.edu.tw, bgschen@fcu.edu.tw, cpylee@mail.ntou.edu.tw Keywords: Mechanical alloying; Bulk metallic glass composite; Supercooled liquid region; Vacuum hot pressing; SiC Abstract.
References [1] A.Inoue: Mater Sci Forum Vol. 312-314 (1999), p.307
Lee: Mater Sci Forum Vol. 475-479 (2005), p.3443
Schultz: Advanced Engineering Materials Vol.3 (2001), p.41
Online since: November 2013
Authors: Iulia Florea, Vasile Soare, Ioan Carcea, Costel Roman, Oana Bălţătescu, Raluca Maria Florea
Mangeron, No. 59A, 700050, Iasi, Romania 2Technical University “Gheorghe Asachi” of Iasi-Romania, Department of Materials Science and Engineering, Blvd.
Mangeron, No. 59A, 700050, Iasi, Romania 3Technical University “Gheorghe Asachi” of Iasi-Romania, Department of Materials Science and Engineering, Blvd.
Mangeron, No. 59A, 700050, Iasi, Romania 6Technical University “Gheorghe Asachi” of Iasi-Romania, Department of Materials Science and Engineering, Blvd.
[5] Zhang Li-Sheng et al., Recent Progress in High-entropy Alloys, Advanced Materials Research Vols. 631-632, pp. 227-232, (2013)
Zhou, J.P.Lin, et al., Solid-Solution Phase Formation Rules for Multi-component Alloys, Advanced Engineering Materials 6, pp. 534-538, (2008)
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