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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: February 2013
Authors: Ji Wen Fang, Jian Dong Cai, Long Sheng Nian, Lu Fan Zhang, Xue Li Li, Wei Jun Luo
Thermal Analysis of Heating System in Thermosonic Bonding Process Lufan Zhang1,2, a, Xueli Li3,b, Jiwen Fang1, c, Jiandong Cai4,d, Longsheng Nian1, e, Weijun Luo2,f 1State Key Lab for Manufacturing Systems Engineering, Xi’an Jiaotong University, Xi’an, 710049, China gt 2Dongguan Huazhong University of Science and Technology Manufacturing Engineering Institute, Dongguan, Guangdong, 523808, China 3School of Mechanical & Electronic Engineering, Zhongyuan University of Technology, Zhengzhou 450007, China 4Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Hong Kong, China azzzhanglufan@163.com, bShirley34580@126.com, cfjt_617@163.com, djdcai@mae.cuhk.edu.hk, enianlong1989@126.com, fassise@sina.com Keywords: Heating system, Thermosonic bonding process, Thermal analysis, ANSYS.
Vol. 42 (1995), p. 31 [4] Cheng-Li Chuang, Huang-Feng Fan: Microelectronic Engineering.
Vol. 52 (2012), p. 2754 [9] Chunyan Nan, Michael Mayer, Norman Zhou, John Persic: Microelectronic Engineering.
Holmes: 2012 13th International Conference on Thermal.
Vol. 32(2011), p. 1435 [15] Gurbinder Singh, Othman Mamat: Journal of Surface Engineered Materials and Advanced Technology.
Online since: September 2013
Authors: Choung Lii Chao, Hsi Hsin Chien, Su Wei Huang, Shi Chang Chen, Kung Jeng Ma
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: August 2021
Authors: Olusola Olaitan Ayeleru, Sisanda Dlova, Peter Apata Olubambi, Feyisayo Victoria Adams, Messai A. Mamo
Deionized water was obtained from the University of Johannesburg (UJ) Chemical Engineering Laboratory.
The CNTs were synthesized by introducing a ceramic boat with 1g of PP as shown in Figure 3.2 (a) below.
Acknowledgements The authors would like to thank the National Research Foundation (NRF) for funding the studies, Department of Chemical Engineering, University of Johannesburg for providing a platform to carry out research and Mr.
Tourism Review International, 2017. 21(2): p. 193-211
International Journal of Computational Engineering Research, 2012. 2(5).10.
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: M.N. Sivalneva, Yulia N. Ogurtsova, Viktoriya V. Nelyubova, Valeria V. Strokova, Pei Qi Zhao
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
Online since: November 2013
Authors: N.A. Edama, A. Sulaiman, K.H. Ku Hamid, M.N. Muhd Rodhi, Mohibah Musa, S.N. Abd. Rahim
Rahim1,f 1Faculty of Plantation and Agrotechnology, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia. 2Faculty of Chemical Engineering, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia.
It is widely used in modern industry such as ceramics, paper coating, paper filling, paint extender, rubber filler, cracking catalysts, cements as well as traditional “Labu Sayong” cottage industry.
Adefila, Immobilization of cassava linamerase on kankara kaolinite clay, Journal of Natural Science Research 41 (2006) 1864-1874
[12] R.O Ajemba, Enhancement of physicochemical properties of Nteje clay to increase its bleaching performance using acid activation, International Journal of Engineering Reseach and Applications, 2 (4) (2012) 281-288
Rigi, Effect of acid activation on structural and bleaching properties of a bentonite, Iranian Journal of Materials Science & Engineering, 8 (4) (2011) 50-56
Online since: May 2014
Authors: Guo Quan Liu, Hao Wang
Study on Grain Topology with Potts Model Monte Carlo Simulation Hao Wang1, a and Guoquan Liu1, 2 1School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China; 2State Key Laboratory for Advanced Metals and Materials, Beijing 100083, China axiaohao_2001@163.com Keywords: Topology, Monte Carlo simulation, Aboav–Weaire law, Liu-Yu law.
Introduction Most engineered materials, including metals and ceramics, are polycrystalline- that is, they are composed of myriad, small, crystalline grains, separated by interfaces or boundaries [1, 2].
Qin: International Journal of Minerals, Metallurgy and Materials, Vol. 16 (2009), No.1, p 37-42
Online since: October 2015
Authors: Farzad Ferdowsian, Adel Ghorani Azam, Safoura Soleymani, Mahtab Mofidi, Hadi Zare-Zardini, Leila Ebrahimi, Masoud Zare-Shehneh, Hossein Soltaninejad, Roya Rafati
Nanotechnology is a multidisciplinary knowledge, and it has a tendency to different subjects such as medicine, pharmacy, drug design, veterinary medicine, biology, applied physics, materials engineering, semiconductor devices, supper-molecule chemistry, mechanical, electrical and chemical engineering [9-13].
Advanced Engineering Informatics, 2011. 25(2): p. 390-398
International Journal of Nanomedicine, 2008. 3(2): p. 151-167
International Journal of Nanomedicine, 2007. 2(3): p. 277-288
Ceramics International, 2014. 40(5): p. 7487-7493
Online since: February 2011
Authors: Hong Mei Ai, Jing Wei, Jun ying Bai, Pu Guang Lu
Properties of Recycled-Cement Produced from Waste Concrete Hongmei Ai, Jing Wei, Junying Bai and Puguang Lu Faculty of Infrastructure Engineering, Dalian University of Technology, Dalian 116024, P R China Keywords: Waste Concrete; Thermal Treatment; Sintering; Recycled-Cement Abstract.
The detailed process for the preparation of cement specimens was carried out with several steps, which are as follows: (1) The briquettes were placed in a ceramic crucible and sent into a high temperature furnace which had been preheated to 950 [12] for half an hour, imitating the stage of industrial predissociation.
The Indian Concrete Journal, January. 1998 [6] Castellote M, Alonso C, Andrade C, Turrillas X, Campo J.Composition and microstructural changes of cement pastes upon heating, as studied by neutron diffraction.
New York: ASTM International; 1978. p.394
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