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Online since: March 2022
Authors: Olanrewaju Seun Adesina, Adebayo Felix Owa, Abayomi Adewale Akinwande, Oluwatosin Abiodun Balogun, Akeem Oladele Ademati, Ajisegiri Emmanuel, Bayode Julius Olorunfemi, Adeolu Adesoji Adediran
Manikumaran, "Cement stabilized soil blocks admixed with sugarcane bagasse ash," Journal of Engineering, vol. 2016, no.
Journal of Civil Engineering, vol. 22, pp. 1-9. https://doi.org/10.1007/s12205-017-1968-9, 2017
Abdeldjebar, "The porosity of stabilized earth blocks with the addition plant fibers of the date palm," Civil Engineering Journal, vol. 6, no. 3, pp. 478-494. https://doi.org/10.28991/cej-2020-03091485, 2020
Building Engineering, p. in print. https://doi.org/10.1016/j.jobe.2020.101867, 2020
Engineering and Technology, vol. 7, no. 3.12, pp. 201-204, 2018
Online since: March 2023
Authors: Waleed R. Abdullah
I., Development of a Rot-Oscillatory Particle Size Analysis Device, American Journal of Engineering Research (AJER), Volume-8, Issue-5, pp-378-385, 2019
Michael, Civil Engineering Dedan Kimathi, University of Technology, 2017
[10] Al-Maghrabi M.N.H., Improvement of low-grade silica sand deposits in Jeddah area, Engineering Science, Vol.15, No.2, 113-128, 2004
[11] Zhang Z., Li J., Li X., Huang H., Zhou L., Xiong T., High-efficiency iron removal from quartz sand using phosphoric acid, International Journal of Mineral Processing, Vol. 114, No. 117, 30-34, 2012
Minerals Engineering, 18, 219-224, 2005.
Online since: September 2013
Authors: Choung Lii Chao, Kung Jeng Ma, Hsi Hsin Chien, Su Wei Huang, Shi Chang Chen
Crack Filling of Cover Glasses by Sol-gel Coatings Kung-Jeng Ma1,a, Hsi-Hsin Chien1,b, Su-Wei Huang1,c, Shi-Chang Chen1,d and Choung-Lii Chao2,e 1College of Engineering, Chung Hua University, No. 707, Sec. 2, Wu Fu Rd., Hsin-Chu, Taiwan 2 Department of Mechanical and Electro-Mechanical Engineering, Tam-Kang University, No.151 Ying-Chuan Road, Tamsui, New Taipei City, Taiwan a kjma@chu.edu.tw, bhhchien@chu.edu.tw, cfunpeev8@hotmail.com, bm10008034@chu.edu.tw, eclchao@mail.tku.edu.tw Keywords: Cover glass, sol-gel coating, edge strengthening, crack repair Abstract.
Gy, “Ion Exchange for Glass Strengthening”, Materials Science and Engineering:B, Vols. 149, pp. 159-165, 2008
[9] Jaroslav Menčík, “Strength and Fracture of Glass and Ceramics”, Elsevier, 1992
Doremus, “Fracture Strength of Soda-Lime Glass After Etching”, Journal of Materials Science, Vols. 9, pp. 1803-1808, 1974
Zuccelli, “Oxy Combustion for Glass Conditioning and Fire Polishing”, International Glass Journal, No. 133, pp. 26–31, 2004
Online since: February 2011
Authors: Mohan Trada, Harry Ku, Peter Wong, J. Huang, H. Fung
Tensile Tests of Glass Powder Reinforced Epoxy Composites: Pilot Study H Ku, 1, a, P Wong2,b, J Huang3,c ,H Fung4,d and T Mohan5,e 1, 2, 3, 4, 5 Faculty of Engineering and Surveying, University of Southern Queensland, West Street, Toowoomba, 4350, Australia aku@usq.edu.au, bkywong@vtc.edu.hk, cjolbert99@yahoo.com.hkdj07239155d@polyu.edu.hketradam@usq.edu.au Keywords: Yield strength, tensile strength, Young’s modulus, epoxy resin, and glass powder.
The density of the hollow glass powder used in this research is 0.6 g/cc because the other filler, ceramic hollow spheres or SLG used in similar study is 0.7 g/cc; this will give a better basis for comparison of results obtained in the future.
Huang, AIAA 57th International Astronautical Congress, IAC 2006, v 8, pp. 5237-5240 [2] W.D.
Callister, Materials Science and Engineering: An Introduction, Wiley, 2003, pp. 505, 550
Matsumoto, T, Journal of Applied Polymer Science, Vol. 45, Issue 7, pp. 1281-1289.
Online since: May 2019
Authors: Anak Khantachawana, Goratouch Ongtrakulkij
Influence of Fine Shot Peening on Mechanical Properties of Orthopedic Plate and Screw Goratouch Ongtrakulkij1, Anak Khantachawana1,2,a 1Department of Mechanical Engineering, King Mongkut’s University of Technology Thonburi (KMUTT), 126 PrachaUthit Rd., Bang Mod, ThungKhru, Bangkok, Thailand 2Biological Engineering Program, King Mongkut’s University of Technology Thonburi (KMUTT), 126 PrachaUthit Rd., Bang Mod, ThungKhru, Bangkok, Thailand Email: aanak.kha@kmutt.ac.th Keywords: Fine shot peening, Othopedic plate and screw, Hardness, Bending strength, Coefficient of friction, Pull-out force Abstract.
FSP media could be in form of metal, ceramic or glass.
References [1] Johnell O and Kanis JA, An estimate of the worldwide prevalence and disability associated with osteoporotic fractures,OsteoporosInt 17:1726, 2006 [2] G Chen, B Schmutz, M Wullschleger, M J Pearcy, and M A Schuetz, Computational investigations of mechanical failures of internal plate fixation, Proc Inst Mech Eng H, Vol. 224, pp. 119-126, 2009 [3] M.A.STorres and H.J.CVoorwald, An evaluation of shot peening, residual stress and stress relaxation on the fatigue life of AISI 4340 steel, International Journal of Fatigue, Vol. 24, pp. 887-886, 2002 [4] Slobodan Mitrovic, Dragan Adamovic, Fatima Zivic, Dragan Dzunic and MarkoPantic, Friction and wear behavior of shot peened surfaces of 36CrNiMo4 and 36NiCrMo16 alloyed steels under dry and lubricated contact conditions, Applied Surface Science, Vol. 290, pp. 223-232, 2014 [5] Metal Improvement Company, Shot Peening Applications, Curtiss - Wright Corporation, USA, Ninth edition, pp. 4-40, 2005 [6] Qiang Feng, Chuanhai Jiang
Online since: June 2016
Authors: Adam Barylski, Norbert Piotrowski
Analysis of abrasive particle trajectories during single-sided lapping process with driven conditioning ring Adam Barylski1, a, Norbert Piotrowski1,b * 1 Gdańsk University of Technology, Faculty of Mechanical Engineering, Department of Manufacturing Engineering and Automation, ul.
It has become an indispensable process in the manufacture of many parts and it can be applied in technical ceramics, medical devices, electro optics, data storages, aerospace and automotive industries [1].
Zheng: Design and analysis on kinematics of the lap-polisher with planet movement for optical fiber end-face, The International Journal of Advanced Manufacturing Technology, Vol. 50, Issue 5, pp 651-658, September 2010 [9] A.
Online since: October 2013
Authors: Yu Can Fu, Jiu Hua Xu, Lin Tian, Lu Yang, Jia Yan Zhao
Forces and Chip Morphology of Nickel-based superalloy Inconel 718 during High Speed Grinding with Single Grain Jiayan Zhao1,a, Yucan Fu1,b, Jiuhua Xu1,c, Lin Tian1,d and Lu Yang1,e 1College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China azhao0508105@163.com, byucanfu@nuaa.edu.cn, cjhxu@nuaa.edu.cn, dtianlinb0905101@foxmail.com, eyang5718457@126.com Keywords: High speed grinding; Single grain, Superalloy; Chip morphology; Grinding forces Abstract.
Some single grain tests have been carried out to analyze the real process of the high speed grinding for two decades, but most of them were performed on ceramic materials, not on superalloy [5-8].
Xu: Journal of Materials Processing Technology, 2002, 129,p118-122
[5] J.A.Kovach, P.Blau, S.Malkin, S.Srinivasan and B.Bandyopadhyay: SME 5th International Grinding Conference, 1993, 1
[8] Lin Sihuang, Huang Hui, Xu Xipeng: Diamond & Abrasives Engineering, 2008, 5: 21-24.
Online since: April 2020
Authors: Yuriy Sharkeev, Alexandr Saprykin, Natalya Saprykina, Egor Ibragimov
[4] Nan Xiang, Xian-Zhen Xin, Jie Chen, Bin Wei, Metal–ceramic bond strength of Co–Cr alloy fabricated by selective laser melting, J Dent. 4 (2012)453–7
Saprykina, Engineering support for improving quality of layer-by-layer laser sintering, 7th International Forum on Strategic Technology IFOST. (2012) 6357719
Babakova, Modeling the Temperature Fields of Copper Powder Melting in the Process of Selective Laser Melting, IOP Conference Series: Materials Science and Engineering. 142(1) (2016) 012061
Wang, Calibration of shrinkage and beam offset in CLS process, Rapid Prototyping Journal. 5 (3) (1999) 129-133
Online since: March 2025
Authors: Thomas Hutsch, Thomas Weißgärber, Johannes Trapp
Sintered Titanium Sponge Using Stop-Controlled SPS Technology Thomas Hutsch1,a*, Johannes Trapp1,b and Thomas Weißgärber1,2,c 1Fraunhofer Institute for Manufacturing Technology and Advanced Materials IFAM, 01277 Dresden, Germany 2TUD Dresden University of Technology, Faculty Mechanical Engineering, Institute of Materials Science, Chair Powder Metallurgy, 01062 Dresden, Germany aThomas.Hutsch@ifam-dd.fraunhofer.de, bJohannes.Trapp@ifam-dd.fraunhofer.de, cThomas.Weissgaerber@ifam-dd.fraunhofer.de Keywords: Powder metallurgy, Spark Plasma Sintering, capillary lift, titanium sponge, porosity, stop-controlled sintering.
Ohio, USA; ASM International 2000
Savich, Sintered metals and alloys, Porous materials from titanium powders: past, present, and future, Powder Metallurgy and Metal Ceramics, Vol. 52, Nos. 11-12, March, 2014 (Russian original Vol. 52, Nos. 11-12, Nov-Dec., 2013) [9] Feng, Q.; Lv, M.; Mao, L.; Duan, B.; Yang, Y.; Chen, G.; Lu, X.; Li, C.
Chen, Preparation of porous titanium materials by powder sintering process and use of space holder technique, Journal of Iron and Steel Research, International 24 (2017) 97-102
Dargush, Titanium sponge as a source of native nuclei in titanium alloys, Journal of Alloys and Compounds 818 (2020) 153352
Online since: January 2021
Authors: Viktoriya V. Nelyubova, Pei Qi Zhao, Valeria V. Strokova, M.N. Sivalneva, Yulia N. Ogurtsova
Liu, Fabrication and characterization of Eu2+-doped lanthanum-magnesium-gallium /TiO2-based composition as photocatalytic materials for cement concrete-related methyl orange (MO) degradation, Ceramics International. 45 (8) (2019) 10342-10347
Ogurtsova, Impact of epicrystallization modifying on characteristics of cement rock and concrete, International Journal of Applied Engineering Research. 10 (2015) 45169-45175
Solovyov, Full-profile refinement by derivative difference minimization, Journal of Applied Crystallography. 37 (2004) 743-749
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