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Online since: May 2015
Authors: Marian Gheorghe, Ion Diaconu, Ion Mateias, Dragoș Iliescu
A more advanced specialization, often found in the virtual organisations, gives a plus in terms of efficiency and productivity by an optimized business process.
The general schema is intended for the case of a multi-org enterprise in the field of a manufacturing-to-order, engineering-to-order or a project based enterprise.
Buchanan, Usage Guide for the STEP PDM Schema V1.2, Release 4.3, PDM Implementor Forum, Darmstadt, 2002
The general schema is intended for the case of a multi-org enterprise in the field of a manufacturing-to-order, engineering-to-order or a project based enterprise.
Buchanan, Usage Guide for the STEP PDM Schema V1.2, Release 4.3, PDM Implementor Forum, Darmstadt, 2002
Online since: January 2014
Authors: Chen Jun, Quan An Li
Microstructure and Mechanical Properties of Magnesium Alloy AZ61with 1%Sn addition
CHEN Juna, LI Quan-anb
School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471023, China
achenjun318822200@163.com, bq-ali@163.com
Keywords: Sn, Magnesium Alloy, Microstructure, Mechanical Properties
Abstract: The microstructure and mechanical properties of magnesium alloy AZ61wtih1% Sn addition has been studied in this paper.
The phase analysis was performed by D8 Advance X-ray diffract meter (XRD) and energy dispersive spectroscopy (EDS).
Materials Science and Engineering A, Vol. 302(2001), p. 37 [2] A.A.
Materials Science Forum, Vol. 419-422(2003), p. 57 [3] J.C.
The phase analysis was performed by D8 Advance X-ray diffract meter (XRD) and energy dispersive spectroscopy (EDS).
Materials Science and Engineering A, Vol. 302(2001), p. 37 [2] A.A.
Materials Science Forum, Vol. 419-422(2003), p. 57 [3] J.C.
Online since: October 2020
Authors: Antônio Augusto Couto, Mauricio Silva Nascimento, Vinícius Torres dos Santos, Gilmar Ferreira Batalha, Ricardo Aparecido da Cruz, Márcio Rodrigues da Silva, Carlos Frajuca, Givanildo Alves dos Santos, Francisco Yastami Nakamoto
., São Bernardo do Campo, SP, Brazil
3Polytechnic School of Engineering of the University of Sao Paulo, São Paulo, SP, Brazil
4Institute of Nuclear and Energy Research, IPEN, São Paulo, SP, Brazil
aricardoapcruz@ifsp.edu.br, bgivanildo@ifsp.edu.br, cmauriciofisico@gmail.com, dfrajuca@gmail.com, enakamoto@ifsp.edu.br, fmarcio.rdrgs.slv@gmail.com, gvinicius.ts1@hotmail.com, hgfbatalha@gmail.com, iacouto@ipen.br
Keywords: Cu-8.5 wt% Sn alloy; solidification, microstructure, microsegregation, eutectoid.
The effects of manufacturing processes on microstructure of engineering materials have been highlighted in various studies [1-7].
Miranda et al.: Materials Science Forum Vol. 899 (2017), p. 424. https://doi.org/10.4028/ www.scientific.net/MSF.899.424 [2] F.
Miranda et al.: Materials Science Forum Vol. 371 (2016), p. 78. https://doi.org/10.4028/ www.scientific.net/DDF.371.78 [3] G.A.
Garcia: Advanced Structured Materials Vol. 33 (2017). https://doi.org/10.1007/978-981-10-1602-8_19 [4] W.R.
The effects of manufacturing processes on microstructure of engineering materials have been highlighted in various studies [1-7].
Miranda et al.: Materials Science Forum Vol. 899 (2017), p. 424. https://doi.org/10.4028/ www.scientific.net/MSF.899.424 [2] F.
Miranda et al.: Materials Science Forum Vol. 371 (2016), p. 78. https://doi.org/10.4028/ www.scientific.net/DDF.371.78 [3] G.A.
Garcia: Advanced Structured Materials Vol. 33 (2017). https://doi.org/10.1007/978-981-10-1602-8_19 [4] W.R.
Online since: July 2015
Authors: C.M. Mardziah, Nor Azrina Resali, M.N. Berhan, Koay Mei Hyie
Introduction
Engineering materials are heat treated under controlled sequence of heating and cooling to alter
their physical and mechanical properties to meet desired engineering applications.
Swangsak, Yuttanant Boonyongmaneerat and Patama Visuttipitukul, Effects of Heat Treatment on the Interfacial Structure of Nickel-Aluminum Coating Composites, Advanced Materials Research. 154-155 (2011) 1462-1467
Al-Qura'n., Effect of heat treatment on the microstructure and hardness of ChromiumNickel steel, Contemporary Engineering Sciences. 8 (2009) 355-359
Al Qura'n, Effect of Heat Treatment on the Microstructure and Hardness of Chromium - Nickel steel, Contemporary Engineering Sciences. 2 (8) (2009) 355 - 359
Abdullah, Study of Alloys Addition to the Electrodeposited Nanocrystalline Cobalt, Advanced Materials Research, 486 (2012) 108- 113
Swangsak, Yuttanant Boonyongmaneerat and Patama Visuttipitukul, Effects of Heat Treatment on the Interfacial Structure of Nickel-Aluminum Coating Composites, Advanced Materials Research. 154-155 (2011) 1462-1467
Al-Qura'n., Effect of heat treatment on the microstructure and hardness of ChromiumNickel steel, Contemporary Engineering Sciences. 8 (2009) 355-359
Al Qura'n, Effect of Heat Treatment on the Microstructure and Hardness of Chromium - Nickel steel, Contemporary Engineering Sciences. 2 (8) (2009) 355 - 359
Abdullah, Study of Alloys Addition to the Electrodeposited Nanocrystalline Cobalt, Advanced Materials Research, 486 (2012) 108- 113
Online since: December 2014
Authors: Zhi Gang Zhu, Wei Dong Wang
Applications of BIM&RFID technology in electromechanical equipment management and maintenance
Weidong Wang 1, a, Zhigang Zhu2,b
1China Electric Power Research Institute, Beijing China
2Tianzhi(Beijing) International Engineering project management Co.
(3) The Completeness of information In addition to the engineering objects description of the 3D geometry information and topology relations, also it includes the complete engineering information description, such as the design information (it includes object name, structure types, building materials, engineering properties, construction information(it includes construction process, schedule, cost, quality and human, machine, material resources),maintenance information(it includes project safety performance, durable material performance), and the engineering logic of relations between objects[2]. 2.2 The RFID technology 2.2.1 The definition of RFID RFID stands for Radio Frequency Identification.
The RFID system Conclusion (1) The BIM technology is very advance in construction field and brings lot of benefit to the project implementation, including saving investment, improving quality and ensuring progress
Forum Vol. 83-87 (2012), p. 43 [2] Chuck Eastman: BIM Handbook second Edition (John Wiley &Sons, inc, American 2010)
(3) The Completeness of information In addition to the engineering objects description of the 3D geometry information and topology relations, also it includes the complete engineering information description, such as the design information (it includes object name, structure types, building materials, engineering properties, construction information(it includes construction process, schedule, cost, quality and human, machine, material resources),maintenance information(it includes project safety performance, durable material performance), and the engineering logic of relations between objects[2]. 2.2 The RFID technology 2.2.1 The definition of RFID RFID stands for Radio Frequency Identification.
The RFID system Conclusion (1) The BIM technology is very advance in construction field and brings lot of benefit to the project implementation, including saving investment, improving quality and ensuring progress
Forum Vol. 83-87 (2012), p. 43 [2] Chuck Eastman: BIM Handbook second Edition (John Wiley &Sons, inc, American 2010)
Online since: May 2014
Authors: L. Pentti Karjalainen, David A. Porter, Pasi Suikkanen, R.D.K. Misra, Mahesh C. Somani
Misra3,e
1University of Oulu, Dept. of Mechanical Engineering, P.O.
Box 93, 92101 Raahe, Finland 3University of Louisiana at Lafayette, Dept. of Chemical Engineering & Centre for Structural and Functional Materials, P.O.
Acknowledgements The research was carried out under the auspices of Finnish Metals and Engineering Competence Cluster (FIMECC)’s Light and Efficient Solutions Program.
Forum Vols. 706-709 (2012), p. 2824 [2] M.C.
Forum Vol. 762 (2013), p. 88 [4] J.G.
Box 93, 92101 Raahe, Finland 3University of Louisiana at Lafayette, Dept. of Chemical Engineering & Centre for Structural and Functional Materials, P.O.
Acknowledgements The research was carried out under the auspices of Finnish Metals and Engineering Competence Cluster (FIMECC)’s Light and Efficient Solutions Program.
Forum Vols. 706-709 (2012), p. 2824 [2] M.C.
Forum Vol. 762 (2013), p. 88 [4] J.G.
Online since: October 2006
Authors: Toshitada Shimozaki, Takahisa Okino, Kenichi Takasaki, C.G. Lee
Lee
4, d
1
Center for Instrumental Analysis, Kyushu Institute of Technology,
Tobata, Kitakyushu 804-8550, Japan
2
Graduated student, Department Materials Science and Engineering,
Kyushu Institute of Technology, Tobata, Kitakyushu 804-8550, Japan,
Now: Mitsui High-Tech Inc.
Yahata-nisi Kitakyushu 807-8875, Japan 3 Department of Applied Mathematics, Faculty of Engineering, Oita University, Dannoharu, Oita 870-1192, Japan 4 School of Nano & Advanced materials engineering, Changwon National University, Changwon, Kyungnam, 541-773, Korea a shimozak@kitcia.kyutech.ac.jp, bkenichi-takasaki@mitsui-high-tec.com, cokino@cc.oita-u.ac.jp, d cglee@sarim.changwon.ac.kr Keywords: TiAl3, oxidation rate, Interdiffusion coefficient, Ti3Al, TiAl, multi-phase diffusion Abstract.
Onishi: Defect and Diffusion Forum Vols. 143-147 (1997), p.591 [14] Th.
Okino and C-G Lee: Defect and Diffusion Forum Vol. 237-240 (2004), p. 885
Yahata-nisi Kitakyushu 807-8875, Japan 3 Department of Applied Mathematics, Faculty of Engineering, Oita University, Dannoharu, Oita 870-1192, Japan 4 School of Nano & Advanced materials engineering, Changwon National University, Changwon, Kyungnam, 541-773, Korea a shimozak@kitcia.kyutech.ac.jp, bkenichi-takasaki@mitsui-high-tec.com, cokino@cc.oita-u.ac.jp, d cglee@sarim.changwon.ac.kr Keywords: TiAl3, oxidation rate, Interdiffusion coefficient, Ti3Al, TiAl, multi-phase diffusion Abstract.
Onishi: Defect and Diffusion Forum Vols. 143-147 (1997), p.591 [14] Th.
Okino and C-G Lee: Defect and Diffusion Forum Vol. 237-240 (2004), p. 885
Online since: October 2025
Authors: Nathapong Sukhawipat, Narongrit Sosa, Jantima Upan, Benjatham Sukkaneewat, Yutthana Wongnongwa
Enhanced Cadmium Adsorption Using Copper-Modified Biomass in Natural Rubber Latex Foam
Nathapong Sukhawipat1,a*, Jantima Upan2,b, Benjatham Sukkaneewat3,c, Yutthana Wongnongwa4,d, Narongrit Sosa5,e
1Division of Polymer Engineering and Rubber Industrial Technology, Department of Mechanical Engineering Technology, College of Industrial Technology, King Mongkut’s University of Technology North Bangkok, Bangkok 10800, Thailand.
2Department of Chemistry, Faculty of Science, Maha Sarakham University, Maha Sarakham 44150, Thailand.
3Division of Chemistry, Faculty of Science, Udon Thani Rajabhat University, Udon Thani, 41000, Thailand.
4NSTDA Supercomputer Center (ThaiSC), National Electronics and Computer Technology Center (NECTEC), National Science and Technology Development Agency (NSTDA), Klong Luang, Pathum Thani 12120, Thailand.
5Functional Materials and Nanotechnology Center of Excellence, Walailak University, Nakhon Si Thammarat, 80160, Thailand.
These findings demonstrate that 2%Cu/Ac is an effective additive for enhancing both the mechanical and adsorption properties of NRLF composites, making it a promising material for advanced applications.
Kazemzadeh, “Removing lead from aqueous solution by activated carbon nanoparticle impregnated on lightweight expanded clay aggregate,” Journal of Environmental Chemical Engineering, vol. 9, no. 1, p. 104478, 2021, doi: [5] T.
Yingshataporn-A-Nan et al., “A Novel Elastomeric Dielectric Materials: Natural Rubber/ Copper-Modified Activated Carbon,” Materials Science Forum, vol. 1129, pp. 11–17, 2024
Pasetto, “Preparation and Characterization of a Novel Additive for Elastomeric Polymer from Oligoisoprene Modified Mesoporous Silica,” Materials Science Forum, vol. 1100, pp. 103–108, 2023
These findings demonstrate that 2%Cu/Ac is an effective additive for enhancing both the mechanical and adsorption properties of NRLF composites, making it a promising material for advanced applications.
Kazemzadeh, “Removing lead from aqueous solution by activated carbon nanoparticle impregnated on lightweight expanded clay aggregate,” Journal of Environmental Chemical Engineering, vol. 9, no. 1, p. 104478, 2021, doi: [5] T.
Yingshataporn-A-Nan et al., “A Novel Elastomeric Dielectric Materials: Natural Rubber/ Copper-Modified Activated Carbon,” Materials Science Forum, vol. 1129, pp. 11–17, 2024
Pasetto, “Preparation and Characterization of a Novel Additive for Elastomeric Polymer from Oligoisoprene Modified Mesoporous Silica,” Materials Science Forum, vol. 1100, pp. 103–108, 2023
Online since: November 2014
Authors: Rahman Saidur, Mohd Faizul Mohd Sabri, M.H. Sajid, Z. Said
Sabri1,d
1Department of Mechanical Engineering, Faculty of Engineering, University of
Malaya, 50603 Kuala Lumpur, Malaysia
2UM Power Energy Dedicated Advanced Center (UMPEDAC), University of Malaya,
59990 Kuala Lumpur, Malaysia
asaj0205037@yahoo.com, bzaffar_14@yahoo.com, csaidur@um.edu.my, dfaizul@um.edu.my
Keywords: Alumina; nanofluid; DASC; absorption; scattering; extinction.
Future possibility Approximation is not a good solution in the field of science and engineering.
Journal of Solar Energy Engineering. 131(4) (2009) 041004
Taylor, Solar energy harvesting using nanofluids-based concentrating solar collector, Journal of Nanotechnology in Engineering and Medicine. 3 (2012) 031003
Sarkar, Solar water heating using nanofluids-a comprehensive overview and environmental impact analysis, International Journal of Emerging Technology and Advanced Engineering, 3 (2013) 221-224
Future possibility Approximation is not a good solution in the field of science and engineering.
Journal of Solar Energy Engineering. 131(4) (2009) 041004
Taylor, Solar energy harvesting using nanofluids-based concentrating solar collector, Journal of Nanotechnology in Engineering and Medicine. 3 (2012) 031003
Sarkar, Solar water heating using nanofluids-a comprehensive overview and environmental impact analysis, International Journal of Emerging Technology and Advanced Engineering, 3 (2013) 221-224
Online since: September 2011
Authors: Jin Ling Zhang, Bing She Xu, She Bin Wang, Xiao Ye Qi
Effects of La on the Microstructures and Mechanical Properties of AZ91 Magnesium Alloy and Its Mechanism
Jinling Zhang 1,2,3,a, Shebin Wang 1,2,3,b, Xiaoye Qi 3,c , Bingshe Xu 1,2,3,d
1Key laboratory of interface science and engineering in advanced materials, ministry of education, Taiyuan P.R.China, 030024
2Shanxi research center of advanced materials science and technology, Taiyuan P.R.China, 030024
3Taiyuan University of technology, college of material science and technology, Taiyuan P.R.China, 030024
azhjinling008@sina.com, bshebinwang@163.com, cqi.xiaoye@163.com, dxubs@public.ty.sx.cn
Keywords: AZ91, Rare earth La, Degree of supcooling, Microstructure, Mechanical properties
Abstract.
Materials Science and Engineering, Vol.
Materil Engineering, (2009), No.S1, p.303.
Rare Metal Materials and Engineering, Vol. 34, (2005) No.7, p.1013.
Materials Science and Engineering, Vol.
Materials Science and Engineering, Vol.
Materil Engineering, (2009), No.S1, p.303.
Rare Metal Materials and Engineering, Vol. 34, (2005) No.7, p.1013.
Materials Science and Engineering, Vol.