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Online since: July 2017
Authors: Dmitrii Leonidovich Skuratov, Alexander I. Khaimovich, S.R. Abul’hanov
According to the authors, studies of this engineering-technology related problem have remained individual so far [1 - 3].
Guzanovà, The Study of Parameters of Surface Roughness by the Correlation Analysis, Materials Science Forum. 818 (2015) 15-18
Santolaria, Conformal polishing approach: Tool footprint analysis, Advances in Mechanical Engineering. 8 (2016) 1–14
Kazakova, Manufacture of diffractive optical elements by cutting on numerically controlled machine tools, Russian Engineering Research. 31 (2011) 1268-1272
Tregub, Synthesis of nanoporous structures in metallic materials under laser action, Optics and Lasers in Engineering. 49 (2011) 1264-1267.
Guzanovà, The Study of Parameters of Surface Roughness by the Correlation Analysis, Materials Science Forum. 818 (2015) 15-18
Santolaria, Conformal polishing approach: Tool footprint analysis, Advances in Mechanical Engineering. 8 (2016) 1–14
Kazakova, Manufacture of diffractive optical elements by cutting on numerically controlled machine tools, Russian Engineering Research. 31 (2011) 1268-1272
Tregub, Synthesis of nanoporous structures in metallic materials under laser action, Optics and Lasers in Engineering. 49 (2011) 1264-1267.
Online since: February 2024
Authors: John Ryan C. Dizon
Dizon1,2,*
1DR3AM Center, Bataan Peninsula State University, Balanga City, Bataan, Philippines 2100
2Department of Industrial Engineering, College of Engineering and Architecture, Bataan Peninsula State University, Balanga City, Bataan, Philippines 2100
jrcdizon@bpsu.edu.ph
Keywords: 3D printing, spare parts, polymers, fused filament fabrication
Abstract. 3D-printed polymer component parts and spare parts are now being widely used in various applications.
Maalihan, “On the progress of 3D‑printed hydrogels for tissue engineering,” MRS Commun., vol. 11, pp. 539–553, 2021, doi: https://doi.org/10.1557/s43579-021-00069-1
Advincula, “Advances in 3D printing of thermoplastic polymer composites and nanocomposites,” Prog.
Forum, vol. 1005, pp. 150–156, 2020, doi: https://doi.org/10.4028/www.scientific.net/MSF.1005.150
Maalihan, “On the progress of 3D‑printed hydrogels for tissue engineering,” MRS Commun., vol. 11, pp. 539–553, 2021, doi: https://doi.org/10.1557/s43579-021-00069-1
Advincula, “Advances in 3D printing of thermoplastic polymer composites and nanocomposites,” Prog.
Forum, vol. 1005, pp. 150–156, 2020, doi: https://doi.org/10.4028/www.scientific.net/MSF.1005.150
Online since: June 2024
Authors: Awanish Sharma, Sulaxna Sharma, Suriaya Hassan, Ankita Tripathi
Electroless Ni-P/-CNT nanocomposite depositing has found ample relevance in the contemporary electronic and electrical engineering industry [32, 33].
Microelectronic Engineering 206 (2019): 25-44
Journal of Materials Engineering and Performance 32.18 (2023): 8503-8515
Materials Science Forum.
Journal of Advanced Materials in Engineering (Esteghlal) 34.1 (2022): 105-121
Microelectronic Engineering 206 (2019): 25-44
Journal of Materials Engineering and Performance 32.18 (2023): 8503-8515
Materials Science Forum.
Journal of Advanced Materials in Engineering (Esteghlal) 34.1 (2022): 105-121
Online since: April 2026
Authors: Steffen Gabsa, Werner Homberg
Bris, Proposing a carbon reduction engineering framework for product design: a multiscenario perspective, Research in engineering design, 2025. https://doi.org/10.1007/s00163-025-00458-w
Zhong, Solid-state recycling of light metals: A review, Advances in mechanical engineering, 2016-08, Vol.8 (8), p.1-23, 2016. https://doi.org/10.1177/1687814016661921
Rui, Experimental and numerical investigations on process-performance for steel-aluminum Riv-Bonding joints, Engineering failure analysis, 2025-08, Vol.177, p.109666, 2025. https://doi.org/10.1016/j.engfailanal.2025.109666
Günther, Expanding Lightweight Design Potential by Hybrid Joining of Aluminum Sheets with Aluminum Casting Through Compound Sand Casting and Induction Heating, Advanced Engineering Materials, 2024. https://doi.org/10.1002/adem.202400549
Behrens, Microstructure analysis of hybrid aluminum parts from recycled EN AW-6082 and EN AW-7075 chips, Materials Research Forum LLC, 2023. https://doi.org/10.21741/9781644902479-213
Zhong, Solid-state recycling of light metals: A review, Advances in mechanical engineering, 2016-08, Vol.8 (8), p.1-23, 2016. https://doi.org/10.1177/1687814016661921
Rui, Experimental and numerical investigations on process-performance for steel-aluminum Riv-Bonding joints, Engineering failure analysis, 2025-08, Vol.177, p.109666, 2025. https://doi.org/10.1016/j.engfailanal.2025.109666
Günther, Expanding Lightweight Design Potential by Hybrid Joining of Aluminum Sheets with Aluminum Casting Through Compound Sand Casting and Induction Heating, Advanced Engineering Materials, 2024. https://doi.org/10.1002/adem.202400549
Behrens, Microstructure analysis of hybrid aluminum parts from recycled EN AW-6082 and EN AW-7075 chips, Materials Research Forum LLC, 2023. https://doi.org/10.21741/9781644902479-213
Online since: May 2025
Authors: Laxman B. Abhang, Amir Zaki Mubarak, Mohd Iqbal, Jihadul Qahhar
Key Engineering Materials, 951, 73-83
Key Engineering Materials, 930, 169-178
Key Engineering Materials, 951, 173-183
Key Engineering Materials, 892, 134-141
The International Journal of Advanced Manufacturing Technology, 129(11), 5541-5560
Key Engineering Materials, 930, 169-178
Key Engineering Materials, 951, 173-183
Key Engineering Materials, 892, 134-141
The International Journal of Advanced Manufacturing Technology, 129(11), 5541-5560
Online since: January 2022
Authors: Khairul Nizar Ismail, Abdullahi Ali Omar, Muhamad Zameel Hakim Ahmed Sabri
Interfacial Transition Zone (ITZ) Study of Concrete with Polyethylene Terephthalate (PET) Plastic
ABDULLAHI Ali Omar1,a*, MUHAMAD Zameel Hakim Ahmed Sabri2,b
and KHAIRUL Nizar Ismail3,c,
1,2&3Faculty of Civil Engineering Technology, Universiti Malaysia Perlis (UniMAP),
Kompleks Pusat Pengajian Jejawi 3, 02600 Arau, Perlis, Malaysia.
Acknowledgement The authors would like also to acknowledge Faculty of Civil Engineering Technology university Malaysia Perlis (Unimap) for their support and contribution.
In Materials Science Forum, vol. 514, p. 1753.
Advances in Civil Engineering 2019 (2019)
Acknowledgement The authors would like also to acknowledge Faculty of Civil Engineering Technology university Malaysia Perlis (Unimap) for their support and contribution.
In Materials Science Forum, vol. 514, p. 1753.
Advances in Civil Engineering 2019 (2019)
Online since: March 2013
Authors: Mária Svéda, András Roósz
The cooling rates also afforded by high power lasers [9,10] in local areas are certainly in the bounds of the quench rates necessary for “amorphisation”, and hence surface engineering by high power laser provides the chosen tool for this investigation into the formation of amorphous surface layers.
The phases of all samples were identified by X-ray diffraction (XRD) with a Bruker D8 Advance equipment using Co Kλ radiation (λ=0.1790 nm).
Solyom, A.Roosz: Glass forming ability of bulk amorphous materialsin Cu-Zr-Ag ternary alloy systems, Materials Science Forum Vol. 729 (2013) pp 373-378
Th.Hosson: Tribological and mechanical properties of high power laser surface-treated metallic glasses, Materials Science and Engineering A 471(2007) 155-164
Shabestari, et al.: Formation of bulk metallic glass in situ nanocomposite in (Cu50Zr43Al7)99Si1 alloy, Materials Science and Engineering A 553 (2012) 10–13.
The phases of all samples were identified by X-ray diffraction (XRD) with a Bruker D8 Advance equipment using Co Kλ radiation (λ=0.1790 nm).
Solyom, A.Roosz: Glass forming ability of bulk amorphous materialsin Cu-Zr-Ag ternary alloy systems, Materials Science Forum Vol. 729 (2013) pp 373-378
Th.Hosson: Tribological and mechanical properties of high power laser surface-treated metallic glasses, Materials Science and Engineering A 471(2007) 155-164
Shabestari, et al.: Formation of bulk metallic glass in situ nanocomposite in (Cu50Zr43Al7)99Si1 alloy, Materials Science and Engineering A 553 (2012) 10–13.
Online since: August 2017
Authors: Vincent Klosek, Mirosław Wróbel, Alain Lodini, Sebastian Wroński, Elżbieta Gadalińska, Christian Scheffzük, Andrzej Baczmański
Mickiewicza 30, 30-059 Kraków, Poland
3AGH University of Science and Technology, Faculty of Metals Engineering and Industrial Computer Science, al.
Lodini, Materials Science & Engineering A, 341, 74-86 (2003) [10] S.Wroński, A.
Lodini, M.Marciszko, Materials Science Forum, 772, 117-121 (2014) [11] A.
Baczmański, Materials Science and Engineering (A), 444, 6-17 (2007) [13] R.
Kelleher, Current Advances in Materials and Processes (Iron and Steel Institute of Japan – CAMP-ISIJ), 24, 539-542 (2011)
Lodini, Materials Science & Engineering A, 341, 74-86 (2003) [10] S.Wroński, A.
Lodini, M.Marciszko, Materials Science Forum, 772, 117-121 (2014) [11] A.
Baczmański, Materials Science and Engineering (A), 444, 6-17 (2007) [13] R.
Kelleher, Current Advances in Materials and Processes (Iron and Steel Institute of Japan – CAMP-ISIJ), 24, 539-542 (2011)
Online since: August 2021
Authors: Oleg V. Slautin, Valentin O. Kharlamov, Vitaliy P. Kulevich
X-ray structural analysis was performed on the Bruker D8 ADVANCE ECO diffractometer by the grazing beam method under normal conditions in radiation from a copper anode (λ = 1.5406Å) using a nickel Kβ filter.
Opila, Volatility of common protective oxides in high-temperature water vapor: current understanding and unanswered questions, In Materials Science Forum. 461 (2004) 765-774
Ul Hasan, The morphology of coating/substrate interface in hot-dip-aluminized steels, Materials Science and Engineering: A. 472(1-2) (2008) 157-165
Kulevich, Aluminizing of the Cr15Al5 alloy surface by hot-dipping in the melt, IOP Conference Series: Materials Science and Engineering. 537(2) (2019) 022069
Kharlamov, The influence of the chemical composition of the Fe-Cr-Al system coatings on the oxide films phase composition, IOP Conference Series: Materials Science and Engineering. 862(2) (2020) 022059
Opila, Volatility of common protective oxides in high-temperature water vapor: current understanding and unanswered questions, In Materials Science Forum. 461 (2004) 765-774
Ul Hasan, The morphology of coating/substrate interface in hot-dip-aluminized steels, Materials Science and Engineering: A. 472(1-2) (2008) 157-165
Kulevich, Aluminizing of the Cr15Al5 alloy surface by hot-dipping in the melt, IOP Conference Series: Materials Science and Engineering. 537(2) (2019) 022069
Kharlamov, The influence of the chemical composition of the Fe-Cr-Al system coatings on the oxide films phase composition, IOP Conference Series: Materials Science and Engineering. 862(2) (2020) 022059
Online since: April 2024
Authors: Dichuan Zhang, Aizhan Tukaziban, Chang Seon Shon, Dulat Ualiyev, Anel Galymzhankyzy, Islambek Manap, Zhaniya Omarova, Doszhan Temirbekov, Zhanbolat Artyk
Temirbekov1,e, A Tukaziban1,f, Z Artyk1,g, C-S Shon1,h*, and D Zhang1,i
1Department of Civil & Environmental Engineering, Nazarbayev University, 53 Kabanbay Avenue, Astana, Kazakhstan, 010000
adulat.ualiyev@nu.edu.kz, banel.galymzhankyzy@nu.edu.kz, cislambek.manap@nu.edu.kz, dzhaniya.omarova@nu.edu.kz, edoszhan.temirbekov@nu.edu.kz, faizhan.tukaziban@nu.edu.kz, gzhanbolat.artyk@nu.edu.kz, h, *chang.shon@nu.edu.kz, idichuan.zhang@nu.edu.kz
Keywords: geopolymer mixture, recycled waste PET fibers, waste glass sand, twisted fiber, and non-twisted fiber
Abstract.
[5] Andiç‐Çakır Ö, Üzüm O, Yüksel C and Sarıkanat M, “Waste glass aggregate for cementitious and polymer concrete,” Proceedings of the Institution of Civil Engineers, Apr. 2016, doi: 10.1680/coma.15.00011
[6] Salim M U and Mosaberpanah M A, “The mechanism of alkali-aggregate reaction in concrete/mortar and its mitigation by using geopolymer materials and mineral admixtures: a comprehensive review,” European Journal of Environmental and Civil Engineering, 26, no. 14, pp. 6766–6806, Aug. 2021, doi: 10.1080/19648189.2021.1960899
[9] Mohammed A A and Mohammed I I, “Effect of Fiber Parameters on the Strength Properties of Concrete Reinforced with PET Waste Fibers,” Iranian Journal of Science and Technology-Transactions of Civil Engineering, 45, no. 3, pp. 1493–1509, Jun. 2021, doi: 10.1007/s40996-021-00663-2
[11] Patil A A, Chore H S and Dodeb P A, “Effect of curing condition on strength of geopolymer concrete,” Advances in Concrete Construction, 2, no. 1, pp. 29–37, Mar. 2014, doi: 10.12989/acc.2014.2.1.029.
[5] Andiç‐Çakır Ö, Üzüm O, Yüksel C and Sarıkanat M, “Waste glass aggregate for cementitious and polymer concrete,” Proceedings of the Institution of Civil Engineers, Apr. 2016, doi: 10.1680/coma.15.00011
[6] Salim M U and Mosaberpanah M A, “The mechanism of alkali-aggregate reaction in concrete/mortar and its mitigation by using geopolymer materials and mineral admixtures: a comprehensive review,” European Journal of Environmental and Civil Engineering, 26, no. 14, pp. 6766–6806, Aug. 2021, doi: 10.1080/19648189.2021.1960899
[9] Mohammed A A and Mohammed I I, “Effect of Fiber Parameters on the Strength Properties of Concrete Reinforced with PET Waste Fibers,” Iranian Journal of Science and Technology-Transactions of Civil Engineering, 45, no. 3, pp. 1493–1509, Jun. 2021, doi: 10.1007/s40996-021-00663-2
[11] Patil A A, Chore H S and Dodeb P A, “Effect of curing condition on strength of geopolymer concrete,” Advances in Concrete Construction, 2, no. 1, pp. 29–37, Mar. 2014, doi: 10.12989/acc.2014.2.1.029.