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Online since: May 2022
Authors: Ya Nan Li, Wei Cai Ren, Zhi Hui Li, Feng Chun Wang, Rui Shuai Gao
., Beijing 100088, China
2GRIMAT Engineering Institute Co., LTD., Beijing 101407, China
3General Research Institute for Nonferrous Metals, Beijing 100088, China
4Northeast Light Alloy Co., LTD., Harbin 150060, China
agruishuai@gmail.com, blzh@grinm.com, cliyanan@grinm.com, drenweicai@nela.com.cn, ewangfengchun@nela.com.cn
Keywords: Al-Zn-Mg-Cu alloy; Fracture toughness; Finite element analysis; Model Prediction
Abstract.
Soutis, Recent developments in advanced aircraft aluminium alloys, Mater.
Taheri, Recent advances in ageing of 7xxx series aluminum alloys: A physical metallurgy perspective, J.
Forum. 217-222 (1996) 1539-1546
Soutis, Recent developments in advanced aircraft aluminium alloys, Mater.
Taheri, Recent advances in ageing of 7xxx series aluminum alloys: A physical metallurgy perspective, J.
Forum. 217-222 (1996) 1539-1546
Online since: April 2022
Authors: Pilin Hankhuntod, Tanakorn Phoo-Ngernkham, Bundit Krittacom
Microstructure and Mechanical Properties of Gypsum Board
Produced from Water Hyacinth Fiber
Pilin Hankhuntod1,a, Tanakorn Phoo- Ngernkham2,b and Bundit Krittacom1,c,*
1Development in Technology of Porous Materials Research Laboratory (DiTo-Lab), Department of Mechanical Engineering, Faculty of Engineering and Architecture, Rajamangala University of Technology Isan, Nakhonratchasima 30000, Thailand
2Sustainable Construction Materials and Technology, Department of Civil Engineering, Faculty of Engineering and Architecture Rajamangala University of Technology Isan, Nakhonratchasima 30000, Thailand
apilin.ha@rmuti.ac.th, btanakorn.ph@rmuti.ac.th, cbundit.kr@rmuti.ac.th
Keywords: Gypsum Board, Water Hyacinth Fiber, Scanning Electron Microscope (SEM)
Abstract.
The findings of this study would be significantly advanced our understanding of water hyacinth's application as a reinforcing material in gypsum boards.
Veranukul, Coconut coir ceiling board product with thermal insulation property, Journal of Engineering RMUTT, 16 (2), 129-138 (2018).
Ishak, Effect of alkalization on mechanical properties of water hyacinth fibers-unsaturated polyester composites, Polymer-Plastics Technology and Engineering, 52 (5), 446-451 (2013)
Simbolon, Manufacture of gypsum board from eggshell waste material, ARPN Journal of Engineering and Applied Sciences, 11 (16), 9933-9940 (2016)
The findings of this study would be significantly advanced our understanding of water hyacinth's application as a reinforcing material in gypsum boards.
Veranukul, Coconut coir ceiling board product with thermal insulation property, Journal of Engineering RMUTT, 16 (2), 129-138 (2018).
Ishak, Effect of alkalization on mechanical properties of water hyacinth fibers-unsaturated polyester composites, Polymer-Plastics Technology and Engineering, 52 (5), 446-451 (2013)
Simbolon, Manufacture of gypsum board from eggshell waste material, ARPN Journal of Engineering and Applied Sciences, 11 (16), 9933-9940 (2016)
Online since: July 2021
Authors: Oleksandr Haidachuk, Anton Tsaritsynskyi, Andrii Kondratiev
International Journal of Impact Engineering. 34, 2 (2007) 264–276
Kardomateas, Review of current trends in research and applications of sandwich structures, Composites Part B: Engineering. 142 (2018) 221–240
DSMIE 2020, Lecture Notes in Mechanical Engineering. (2020) 191–200
Hattel, A Review on the mechanical modeling of composite manufacturing processes, Archives of Computational Methods in Engineering. 24 (2017) 365–395
Loos, Low-cost fabrication of advanced polymeric composites by resin infusion processes, Advanced Composite Materials. 10, 2–3 (2012) 99–106
Kardomateas, Review of current trends in research and applications of sandwich structures, Composites Part B: Engineering. 142 (2018) 221–240
DSMIE 2020, Lecture Notes in Mechanical Engineering. (2020) 191–200
Hattel, A Review on the mechanical modeling of composite manufacturing processes, Archives of Computational Methods in Engineering. 24 (2017) 365–395
Loos, Low-cost fabrication of advanced polymeric composites by resin infusion processes, Advanced Composite Materials. 10, 2–3 (2012) 99–106
Online since: October 2017
Authors: G. Korotcenkov, B.K. Cho, Vladimir Brinzari, I.A. Pronin, M.H. Ham
Cho1,e
1School of Material Science and Engineering, Gwangju Institute of Science and Technology, Gwangju, Rep. of Korea
2Department of Theoretical Physics, State University of Moldova, Chisinau, Rep. of Moldova
3Department of Nano- and Microelectronics, Penza State University, Penza, Russian Federation
aghkoro@yahoo.com, bvbrinzari@mail.ru, cpronin_i90@mail.ru, dmhham@gist.ac.kr, echobk@gist.ac.kr
Keywords: electronic configuration, conductivity, band gap, surface properties, morphology, doping, surface modification, stability, manufacturability
Abstract.
This article gives a brief description of metal oxides, acceptable for using in advanced conductometric gas sensors, as well as a consideration of approaches, that can be used to select metal oxides for the manufacture of devices intended to sensor market.
For resolving this problem, we need new advanced technologies, which are expensive enough and are not accessible for a wide use.
Forum Vol. 872 (2016), p. 223
This article gives a brief description of metal oxides, acceptable for using in advanced conductometric gas sensors, as well as a consideration of approaches, that can be used to select metal oxides for the manufacture of devices intended to sensor market.
For resolving this problem, we need new advanced technologies, which are expensive enough and are not accessible for a wide use.
Forum Vol. 872 (2016), p. 223
Online since: May 2020
Authors: R.A. Abd-Alhameed, Gbeminiyi Sobamowo, Ahmed Yinusa, GEORGE OGUNTALA
ABD-ALHAMEED1,d
1Department of Biomedical and Electronics Engineering, Faculty of Engineering and Informatics, University of Bradford, West Yorkshire, United Kingdom
2Department of Mechanical Engineering, Faculty of Engineering, University of Lagos, Akoka, Lagos, Nigeria
ag.a.oguntala@bradford.ac.uk, bmikegbeminiyi@gmail.com, cmynotebook2010@yahoo.com, dr.a.a.abd@bradford.ac.uk
Keywords: analytical solution, convective-radiative fin, effective length, functionally graded material, Kummel function, moving fin
Abstract.
Atay, Fin efficiency analysis of convective straight fins with temperature-dependent thermal conductivity using variational iteration method, Applied Thermal Engineering, 28 (2008) 2345-2352
Sobamowo, Analysis of convective longitudinal fin with temperature-dependent thermal conductivity and internal heat generation, Alexandria Engineering Journal, 56 (2017) 1-11
Mujumdar, Transient cooling of electronics using phase change material (PCM)-based heat sinks, Applied Thermal Engineering, 28 (2008) 1047-1057
Bilgili, Improvement of thermal efficiency in computer heat sink using functionally graded materials, Communications on Advanced Computational Science with Applications, 2014 (2014) 13 Pages
Atay, Fin efficiency analysis of convective straight fins with temperature-dependent thermal conductivity using variational iteration method, Applied Thermal Engineering, 28 (2008) 2345-2352
Sobamowo, Analysis of convective longitudinal fin with temperature-dependent thermal conductivity and internal heat generation, Alexandria Engineering Journal, 56 (2017) 1-11
Mujumdar, Transient cooling of electronics using phase change material (PCM)-based heat sinks, Applied Thermal Engineering, 28 (2008) 1047-1057
Bilgili, Improvement of thermal efficiency in computer heat sink using functionally graded materials, Communications on Advanced Computational Science with Applications, 2014 (2014) 13 Pages
Online since: October 2023
Authors: Afif Izwan A. Hamid, Noraini Kamizan, Mohd Firdaus Habarudin, Nurul Nazmin Zulkarnain, Nasir Shafiq
Aicha, "The superplasticizer effect on the rheological and mechanical properties of self-compacting concrete," in New Materials in Civil Engineering, Elsevier Inc. , 2020, pp. 315-331
Rao, "Formulation of geopolymer cement using mixture of slag and class f fly ash for oil well cementing," in 7th International Conference on Key Engineering Materials (ICKEM 2017), Penang, 2017
Ekaputri, "Addition of Superplasticizer on Geopolymer Concrete," APRN Journal of Engineering and Applied Sciences, vol. 11, no. 24, pp. 14456-14462, 2016
Dave, "Parametric Studies on Compressive Strength of Geopolymer Concrete," in Chemical, Civil and Mechanical Engineering Tracks of 3rd Nirma University International conference on Engineering (NUiCONE-2012), Ahmedabad, 2013
Alsadey, "Effect of Superplasticizer on Fresh and Hardened Properties of Concrete," Journal of Agricultural Science and Engineering, vol. 1, no. 2, pp. 70-74, 2015
Rao, "Formulation of geopolymer cement using mixture of slag and class f fly ash for oil well cementing," in 7th International Conference on Key Engineering Materials (ICKEM 2017), Penang, 2017
Ekaputri, "Addition of Superplasticizer on Geopolymer Concrete," APRN Journal of Engineering and Applied Sciences, vol. 11, no. 24, pp. 14456-14462, 2016
Dave, "Parametric Studies on Compressive Strength of Geopolymer Concrete," in Chemical, Civil and Mechanical Engineering Tracks of 3rd Nirma University International conference on Engineering (NUiCONE-2012), Ahmedabad, 2013
Alsadey, "Effect of Superplasticizer on Fresh and Hardened Properties of Concrete," Journal of Agricultural Science and Engineering, vol. 1, no. 2, pp. 70-74, 2015
Online since: April 2021
Authors: Elena N. Soldatkina, Renat V. Gavariev, Ksenia N. Gavarieva
Series: Materials Science and Engineering 570 (2019) 012072
Advanced casting methodologies: inert environment vacuum casting and solidification, die casting, compocasting, and roll casting, casting, semi-solid forming and hot metal forming, (2014) Comprehensive Materials Processing, vol. 5, Elsevier Ltd., pp. 3-37
IOP Conference Series: Materials Science and Engineering, 86 (1), 2015
Series: Materials Science and Engineering 240 (2017)
International Journal of Engineering and Technology(UAE) 7(4), 2018, pp. 71-73
Advanced casting methodologies: inert environment vacuum casting and solidification, die casting, compocasting, and roll casting, casting, semi-solid forming and hot metal forming, (2014) Comprehensive Materials Processing, vol. 5, Elsevier Ltd., pp. 3-37
IOP Conference Series: Materials Science and Engineering, 86 (1), 2015
Series: Materials Science and Engineering 240 (2017)
International Journal of Engineering and Technology(UAE) 7(4), 2018, pp. 71-73
Online since: December 2018
Authors: Jaksada Thumrongvut, Pavarate Tiwjantuk
Introduction
Concrete-filled tube (CFT) columns have been used increasingly in civil engineering and construction [1].
The authors are grateful to Faculty of Engineering and Architecture, Rajamangala University of Technology Isan for facilities and equipment provided.
Thumrongvut, Behaviors of square thin-walled steel tubed RC columns under direct axial compression on RC core, Procedia Engineering, 14 (2011) 513-520
Bjorhovde, Developments and advanced applications of concrete-filled steel tubular (CFST) structures: Members, Journal of Constructional Steel Research, 100 (2014) 211-228
Ning, Experimental research on properties of high-strength foamed concrete, Journal of Materials in Civil Engineering, 24(1) (2012) 113-118
The authors are grateful to Faculty of Engineering and Architecture, Rajamangala University of Technology Isan for facilities and equipment provided.
Thumrongvut, Behaviors of square thin-walled steel tubed RC columns under direct axial compression on RC core, Procedia Engineering, 14 (2011) 513-520
Bjorhovde, Developments and advanced applications of concrete-filled steel tubular (CFST) structures: Members, Journal of Constructional Steel Research, 100 (2014) 211-228
Ning, Experimental research on properties of high-strength foamed concrete, Journal of Materials in Civil Engineering, 24(1) (2012) 113-118
Online since: April 2014
Authors: Ming Hsiung Wu, Chi Ching Chang
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Of American Society of Engineering Education
European Journal of Engineering Education, v33 n3 p283-295 Jun
Stillwater, Minnesota, New Forum Press
Global Journal of Engineering Education, Vol.9(2), p121-128.
Of American Society of Engineering Education
European Journal of Engineering Education, v33 n3 p283-295 Jun
Stillwater, Minnesota, New Forum Press
Global Journal of Engineering Education, Vol.9(2), p121-128.
Online since: July 2011
Authors: Guang Yong Wu, Yong Lian Zhang, Chong Hai Xu, Ming Dong Yi
Cutting-tool engineering plays a significant part in putting high speed dry cutting into application.
Functionally graded materials (FGMs) are a new class of advanced composites characterized by the gradual variation in composition, microstructure and material properties.
Ouyang, S.Sasaki, T.Murakami, K.Umeda: Materials Science and Engineering A Vol. 386 (2004), pp.234-243 [8] J.H.
Schipper: Wear Vol. 268 (2010), pp. 1072-1079 [15] Amit KC, Jeong-Ho Kim: Engineering Fracture Mechanics Vol. 75 (2008), pp. 2542-2565 [16] Ai Xing, Zhao Jun, Huang Chuanzhen, Zhang Jianhua: Materials Science and Engineering A Vol. 248 (1998), pp.125-131 [17] K.
Vleugels, O.Van der Biest: Materials Science Forum Vol. 492-493 (2005),pp. 705-710 [18] Jing Zhou, Xingjin Cao, Longping Zhang, Hulin Wu, Yunlong Wei: Surface Technology Vol. 31 (2002), pp.17-20 (In Chinese) [19] Yifei Zhang, Xinhui Zhang, Kang Jin: Materials for Mechanical Engineering Vol. 25 (2001), pp. 33-35 (In Chinese) [20] Xuefeng Liu, Jinsong Zhao, Jianxin Xie, Huadong Fu: Acta Materiae Compositae Sinica Vol.25 (2008), pp.131-136 (In Chinese) [21] Zhuoren Jin, Jigui Cheng, Yonghong Xia: Chinese Journal of Mechanical Engineering Vol.37 (2001), pp. 81-84 (In Chinese)
Functionally graded materials (FGMs) are a new class of advanced composites characterized by the gradual variation in composition, microstructure and material properties.
Ouyang, S.Sasaki, T.Murakami, K.Umeda: Materials Science and Engineering A Vol. 386 (2004), pp.234-243 [8] J.H.
Schipper: Wear Vol. 268 (2010), pp. 1072-1079 [15] Amit KC, Jeong-Ho Kim: Engineering Fracture Mechanics Vol. 75 (2008), pp. 2542-2565 [16] Ai Xing, Zhao Jun, Huang Chuanzhen, Zhang Jianhua: Materials Science and Engineering A Vol. 248 (1998), pp.125-131 [17] K.
Vleugels, O.Van der Biest: Materials Science Forum Vol. 492-493 (2005),pp. 705-710 [18] Jing Zhou, Xingjin Cao, Longping Zhang, Hulin Wu, Yunlong Wei: Surface Technology Vol. 31 (2002), pp.17-20 (In Chinese) [19] Yifei Zhang, Xinhui Zhang, Kang Jin: Materials for Mechanical Engineering Vol. 25 (2001), pp. 33-35 (In Chinese) [20] Xuefeng Liu, Jinsong Zhao, Jianxin Xie, Huadong Fu: Acta Materiae Compositae Sinica Vol.25 (2008), pp.131-136 (In Chinese) [21] Zhuoren Jin, Jigui Cheng, Yonghong Xia: Chinese Journal of Mechanical Engineering Vol.37 (2001), pp. 81-84 (In Chinese)