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Online since: April 2026
Authors: Lukas Kersting, Henning Peters, Brijesh Chaudhary, Andreas Mazur, Barbara Hammer, Ansgar Trächtler
Paech, Advanced semi-automatic straightening technology, Wire Journal International (2008) 74–79
Müller, Perspectives on data-driven models and its potentials in metal forming and blanking technologies, Production Engineering Research and Development 16 (2022) 607–625. https://doi.org/10.1007/s11740-022-01115-0
Umbrello (Eds.), Material Forming: ESAFORM 2025, Materials Research Forum, 2025, pp. 1538–1547. https://doi.org/10.21741/9781644903599-166
Online since: October 2006
Authors: Seamus D. Garvey, Peter Van Eetvelt, U. Prells
Prells c School of Mechanical, Materials and Manufacturing Engineering,The University of Nottingham, University Park, Nottingham NG7 2RD a seamus.garvey@nottingham.ac.uk, bPeter.Vaneetvelt@btinternet.com, cprells@penmaen.demon.co.uk Keywords: Integrable systems, proportional damping, Nahm's equations Abstract.
Operator Theory: Advances and Applications. 163, 2005, pp 275 - 298
Published in Materials Science Forum 440(4), pp 11-18
Online since: June 2016
Authors: Bernardo Buonomo, Oronzio Manca, Sergio Nardini, D. Ricci
Remsburg (2011), Advanced Thermal Design of Electronic Equipment, Science&Business Media, Berlin, pp 330-350
Shakouchi (2004), Jet Flow Engineering –Fundamentals and Application–, Morikita, Tokyo
Tamburrino (2015), A Numerical Analysis on Nanofluid Mixed Convection in Triangular Cross-Sectioned Ducts Heated by a Uniform Heat Flux, Advanced Mechanical Engineering 2015 (2), ID:292973
Patel (2006), Heat Transfer in Nanofluids – A Review, Heat Transfer Engineering 27, pp. 3-19
Ricci (2012), A Numerical Study of Nanofluid Forced Convection in Ribbed Channels, Applied Thermal Engineering 37, pp. 280-292
Online since: May 2010
Authors: Paolo Scardi, Matteo Leoni, Matteo Ortolani
Leoni1,c 1 Department of Materials Engineering and Industrial Technologies, University of Trento, via Mesiano 77, 38100 Trento, Italy a Paolo.Scardi@unitn.it, bMatteo.Ortolani@ing.unitn.it, cMatteo.Leoni@unitn.it Keywords: X-ray diffraction; powder diffraction; line profile analysis; full pattern methods; whole powder pattern modeling.
Advanced topics and features are reported in separate papers and in the cited literature.
Sci Forum.
Online since: November 2023
Authors: Lukky Jayadi, Sandry Kesuma, Muhammad Hasan Wattiheluw
"Factors affecting the water holding capacity of red meat products: A review of recent research advances." 
In Pharmacopeial forum, vol. 35, no. 3, (2009) pp. 750-764.
American Society of Agricultural Engineers.
Online since: September 2014
Authors: Dezső L. Beke, Zoltán Erdélyi, G.L. Katona
Recently, using advanced techniques with nanometre depth resolution, it has been found for Si dissolution into amorphous Ge that there was a definite curvature on the logx’ vs. logt plot [60] (see also Fig. 10), which clearly shows the change of the kinetic exponent, i.e. the kinetics, in time.
Forum, Vol. 155-156 (1994) 15-30 [2] F. d’Heurle, P.
Forum, Vol. 155-156 (1994) 55-58
Szabo, “Segregation in Nanostructures” in “Advances in Nanophase Materials and Nanotechnology” Vol.
Doherty, Grain Boundary Motion, Diffusion-Induced, in Encyclopedia of materials science and engineering.
Online since: February 2018
Authors: Li Jun Zhang, Ji Xue Zhou, Hui Xia Xu, Kai Ming Cheng, Yong Du
Reviews on Modeling of Diffusion-Induced Mass Transportation in Functionally Graded Cemented Carbides Kaiming Cheng1,a*, Jixue Zhou1,b, Huixia Xu2,c, Lijun Zhang2,d and Yong Du2,e 1Shandong Provincial Key Laboratory for High Strength Lightweight Metallic Materials, Advanced Materials Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250014, China 2State Key Lab of Powder Metallurgy, Central South University, Changsha 410083, China achengkaimingtry@gmail.com, bzhoujx@sdas.org, cxuhuixiatry@gmail.com, dlijun.zhang@csu.edu.cn, eyong-du@csu.edu.cn Keywords: Functionally graded cemented carbide; Cubic-free near-surface layer; Dual properties carbides; Mass transportation; Liquid phase sintering; Liquid phase migration; DICTRA simulation; Numerical modeling; Phase-field simulation.
Functionally graded cemented carbide (FGCC) exhibit show the materials prepared with composition gradient can improve the performance of engineering products.
Dreyer, Advances in modern nitrogen-containing hardmetals and cermets, Int.
Forum 423(2003) 55-58
Forum 423(2003) 39-44
Online since: June 2023
Authors: Ren He Yang, Dong Mei Wang, Yang Li, Yue Gu, Ting Shu He, Qian Sun, Peng Yu Zhang, Zhi Yi Mao, Wan Shen Wang
Therefore, this study aims to provide theoretical guidance for selecting appropriate PCEs in concrete engineering applications.
Study on the synthesis, properties and characterization of EPEG slump retaining typed polycarboxylate superplasticizer, Key Engineering Materials. 905(2022)
Physicochemical and Engineering Aspects. 564(2019)
Synthesis, characterization and performance of a polycarboxylate superplasticizer with amide structure, Colloids and Surfaces A: Physicochemical and Engineering Aspects. 448(2014)119-129
Predicting hydration reactivity of Cu-doped clinker crystals by capturing electronic structure modification, ACS Sustainable Chemistry and Engineering. 7(2019) 6412-6421
Online since: March 2015
Authors: Sergey Prokoshkin, Karine Inaekyan, Mikhail Petrzhik, Mikhail Filonov, Yuriy Pustov, Sergey Dubinskiy, Andrey Korotitskiy, Vadim Sheremetyev, Vladimir Brailovski, Yulia S. Zhukova
Thomsen, Titanium in medicine: material science, surface science, engineering, biological responses and medical applications, Springer, Berlin, 2001
Forum 404-407 (2002) 835-840
Forum 706-709 (2012) 455-460
Forum 738-739 (2013) 87-91
Levashov, Modern Methods for Investigation Functional Surfaces of Advanced Materials by Mechanical Contact Testing, Crystallography Reports 52 (2007) 966-974
Online since: February 2018
Authors: Henri Nguyen-Thi, Yun Chen, Dian Zhong Li, Tong Zhao Gong, Na Min Xiao
China 3 School of Materials Science and Engineering, University of Science and Technology of China, Hefei 230026, P.R.
The solid-liquid interface is advancing faster on the left side than on the right side as fluid flow is descending near the left wall while it is ascending near the right wall, as shown in Fig. 11 (b).
In the corresponding diagram of velocity evolution, the solidification front advances very slowly at the beginning, and accelerates while the solidification front is evolving from planar to cellular to dendritic pattern, before approaching smoothly the isotherm rate.
Forum 649 (2010) 331-336
Forum 649 (2010) 331-336.