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Online since: April 2019
Authors: Elena Pivarčiová, Emil Škultéty, Ladislav Karrach
Advanced Materials Research, 1036 (2014), pp. 715–720
International Journal of Advanced Robotic Systems, 1–2(2018) 1–15
Advances in Production Engineering & Management 12, 3(2017), 233–244
International Research Journal of Engineering and Technology 3, 10(2016) 1238–1241
Procedia Engineering 132 (2015) 911–917
Online since: June 2014
Authors: Alfredo Sanz-Lobera, Ignacio Gonzalez, Gabriel Angulo, Justo Ureña
The paper starts from an existing FMS named CFF-ETSIA and implanted in the Aerospace Engineering School.
From the point of view of manufacturing process engineering, the interest of FMS is unquestionable, as evidenced the high number of related scientific papers written from FMS origins.
Both robots are operated by external controllers (C1 and C2) There are two Scorbot Controllers (C1 and C2) which contain the ACL (Advance Control Language) commands and programs that allow robots operations.
Manufacturing Processes by Virtual Reality Analysis, Materials Science Forum, vol 526, p139-144
Online since: July 2019
Authors: Anders Hallén, Margareta K. Linnarsson, Lasse Vines
Recent Advances in the Doping of 4H-SiC by Channeled Ion Implantation Anders Hallén1,a*, Margareta K.
Forum 338-342, p. 889 (2000) [7] US Patent Application Publication US 2015/0028351 A1, Jan. 29, 2015, Cree Inc
Strecker, Material Science and Engineering B71, 128-136 (2000) [17] E.
Online since: December 2024
Authors: Fernando M. Duarte, Manuela Almeida, Harish Daruari, Paulo Mendonca, Lucas Lopes
This paper outlines the processing of waste, material engineering, rapid prototyping, and digital fabrication.
This work was partly financed by FCT/MCTES through national funds (PIDDAC) under the R&D Unit Institute for Sustainability and Innovation in Structural Engineering (ISISE), under reference UIDB/04029/2020, and under the Associate Laboratory Advanced Production and Intelligent Systems ARISE under reference LA/P/0112/2020.
Dhengare, “Investigating the Application of Waste Plastic Bottle as a Construction Material: A Review,” Journal of Advance Research in Mechanical & Civil Engineering, vol. 2, no. 3, pp. 86–99, Mar. 2015, doi: 10.53555/NNMCE.V2I3.362
Hernandez, “A Review of Additive Manufacturing,” ISRN Mechanical Engineering, vol. 2012, pp. 1–10, Aug. 2012, doi: 10.5402/2012/208760
Knaack, “Additive Manufacturing for Future Facades: The potential of 3D printed parts for the building envelope,” Journal of Facade Design and Engineering, vol. 3, no. 3–4, pp. 225–235, Jun. 2016, doi: 10.3233/FDE-150042
Online since: July 2016
Authors: Harald Schmidt
.), High energy density lithium batteries: Materials, engineering, applications, Wiley-VCH, Weimheim, 2010
Chen, Recent Progress in Advanced Materials for Lithium Ion Batteries, Materials 6 (2013) 156–183
Forum 333 (2013) 33–38
Forum 363 (2015) 62–67
Song, Characterization and improvement of water compatibility of γ-LiAlO2 ceramic breeders, Fusion Engineering and Design 85 (2010) 1162–1166
Online since: November 2013
Authors: Paul Kah, Markku Pirinen, Raimo Suoranta, Jukka Martikainen
Quenched and Tempered steels (QT), Direct Quenched steels (DQ), Thermo-Mechanical Control Process steels (TMCP), High Strength and Ultra High Strength Low Alloy steels (HSLA) and some engineered UHSS called Advanced High Strength Steels (Dual Phase, Complex Phase, Martensitic steels etc.) are all steels which can be considered as belonging to the UHSS classification on the basis of their excellent tensile strength.
The higher crash energy absorption, high strength (lower weight) and enhanced formability of advanced high strength steels (AHSS) have attracted the attention of the automotive industry.
[3] World Auto Steel, 2009, "Projects: Advanced High Strength Steel Application Guidlines version 4.0," URL: http://www.worldautosteel.org/
K., 2008, "Influence of bainite/Martensite content on the tensile properties of low carbon dual phase steels," Material Science and Engineering, 474, (1-2) pp. 270-282
M., and Dilmore, M., 2006, 2006, "Steel with high strength and toughness," Advanced Materials & Processes, 164 (7) pp. 33-38
Online since: August 2013
Authors: Shao Quan Li, Yi Fu Liu, Feng Wang, Guo Hong Nie, Qing Song Li
Discussion on the Outburst Identification of Coal and Gas Shao-quan Li1,2,3,a, Yi-fu Liu4,b, Feng Wang4,c, Guo-hong Nie2,3,d, Qing-song Li2,3,e 1China University of Mining and Technology, Beijing 100083, China 2Guizhou Provincial Academy of Mine Safety Sciences, Guiyang, Guizhou 550025, China 3Guizhou Province Engineering Technology Research Center for Coal Gas Prevention ﹠ Control, Guiyang, Guizhou 550025,China 4Guizhou University, Guiyang, Guizhou 550025, China a1659428299@qq.com, b519008830@qq.com, c645971194@qq.com, d928660933@qq.com, e13608615@qq.com Keywords: Coal and gas outburst identification; Identification method; Identification Index; Authenticating method Abstract.
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: September 2021
Authors: Madalina Albu
References [1] Albu, Mădălina, Integrating Environment Component in Economical and Technical Decisions-Proceedings of the 5th International Conference on Applied Economics, Business and Development (AEBD ’13), 2013, Recent Research in Applied Economics and Management, volume II, August 27-29, Chania, Crete Island, Greece, ISBN: 978-960-474-324-7, p. 186-191 [2] Albu, Mădălina, Technical and Economic Contributions in the Field of Monitoring and Reducing the Impact of the Oil and Gas Industry on the Environmental Factors, Advanced Engineering Forum, PhD Thesis, 2007 [3] Avram L., Dobre Loredana, Onutu I., Pătraşcu C., Popa Maria, Zoican Codruţa, Depoluarea solurilor contaminate cu ţiţei prin tehnologii de bioremediere in situ, Buletinul Universităţii de Nord Baia Mare, 2005, pp. 459 [4] Ossai, I.C., Ahmed, A., Hassan, A., Fauziah, S.H, Remediation of soil and water contaminated with petroleum hydrocarbon: A review, Environmental Technology & Innovation, Volume 17, February 2020, https
Online since: August 2005
Authors: S.L. Ko, Jung Il Park, Y.H. Hanh, Yuri Mikhailovich Baron
., Konkuk University, Seoul, Korea Center for Advanced E-System Integration, Konkuk Univ. 2 Corresponding author, slko@konkuk.ac.kr, (82)2-450-3465 4 St.Petersburg State Polytech University, St.Petersburg, Russia Keywords: magnetic-abrasive finishing, burr, deburring, magnetic inductor, abrasive, electric gun.
Shinmura: Study of an internal magnetic abrasive finishing using a pole rotation system .Discussion of the characteristic abrasive behavior, Precision Engineering Journal of the International Societies (2000), pp.237-244 [4] Y.M.Baron , S.L.Ko and E.Repnikova: 2nd Asia Pacific Forum on Precision Surafce Finishing and Deburring Technology, 22-24, July, 2002, Seoul, Korea, pp166-178 [5] S.L.
Online since: May 2021
Authors: Daria P. Malysheva, Denis B. Solovev, O.V. Bashkov, A.A. Bryansky
., Advanced damage detection technique by integration of unsupervised clustering into acoustic emission, Engineering Fracture Mechanics. 210 (2019) 212-227
Khon et al., Failure Analysis of Polymer Blinder Using Acoustic Emission Method, Materials Science Forum, Trans Tech Publications Ltd. 992 (2020) 1030-1035.