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Online since: December 2014
Authors: Yong Yue Luo, Jie Ping Zhong, Zheng Peng, Chang Jin Yang, Kui Xu, Pu Wang Li, Yue Qiong Wang
Therefore, there are different methods to improve material’s damping property, including physical method[7] and chemical method[8], for example, modifying the molecular structure, mixing different matrix[9] or adding different additive and using functional molecules[10].
The Journal of Physical Chemistry B, 2007, 111, 11388-11392
The Journal of Physical Chemistry B, 2007, 111, 11388-11392
Online since: October 2020
Authors: Samuel Marcio Toffoli, Ticiane Sanches Valera, Kleber Vaccioli
This fact may also be related to the better sulfur dispersion in the NR matrix, in the case of NR-I, resulting in lower structure mobility and also in a possible reduction in the free sulfur, thus avoiding an undesirable post-vulcanization of the material during its stay under heating [8-11].
Coran: Rubber Chemistry and Technology Vol. 38 (1) (1965), p. 1
Coran: Rubber Chemistry and Technology Vol. 38 (1) (1965), p. 1
Online since: June 2019
Authors: Qiang Wang, Jian Lu, Ting Xi Wu
In Fig. 1, the spin-coating pallet uses the helical structure to increase the vacuum area, thereby improving the stability and reliability of adsorption system.
Jenekhe: Industrial and Engineering Chemistry Research Fundamentals, 3 (1984), 425
Jenekhe: Industrial and Engineering Chemistry Research Fundamentals, 3 (1984), 425
Online since: December 2023
Authors: Joonas Ilmola, Aarne Pohjonen, Jari Larkiola
This approach could open future opportunities in the numerical optimization of steel chemistry for achieving desired phase fractions in steel products.
Metallurgy and Materials Processing Science 50 [8] Pohjonen A, Somani M, Pyykkönen J, Paananen J and Porter D 2016 The onset of the austenite to bainite phase transformation for different cooling paths and steel compositions vol 716 [9] Pohjonen A, Javaheri V, Paananen J and Pyykkönen J 2021 Semi-Automatic Optimization of Steel Heat Treatments for Achieving Desired Microstructure Proceedings of The 61st SIMS Conference on Simulation and Modelling SIMS 2020, September 22-24, Virtual Conference, Finland, Linköping Electronic Conference Proceedings 176 : 19 139–45 [10] Javaheri V, Pohjonen A, Asperheim J I, Ivanov D and Porter D 2019 Physically based modeling, characterization and design of an induction hardening process for a new slurry pipeline steel Mater Des 182 [11] Pohjonen A, Kaikkonen P, Seppälä O, Ilmola J, Javaheri V, Manninen T and Somani M 2021 Numerical and experimental study on thermo-mechanical processing of medium-carbon steels at low temperatures for achieving ultrafine-structured
Metallurgy and Materials Processing Science 50 [8] Pohjonen A, Somani M, Pyykkönen J, Paananen J and Porter D 2016 The onset of the austenite to bainite phase transformation for different cooling paths and steel compositions vol 716 [9] Pohjonen A, Javaheri V, Paananen J and Pyykkönen J 2021 Semi-Automatic Optimization of Steel Heat Treatments for Achieving Desired Microstructure Proceedings of The 61st SIMS Conference on Simulation and Modelling SIMS 2020, September 22-24, Virtual Conference, Finland, Linköping Electronic Conference Proceedings 176 : 19 139–45 [10] Javaheri V, Pohjonen A, Asperheim J I, Ivanov D and Porter D 2019 Physically based modeling, characterization and design of an induction hardening process for a new slurry pipeline steel Mater Des 182 [11] Pohjonen A, Kaikkonen P, Seppälä O, Ilmola J, Javaheri V, Manninen T and Somani M 2021 Numerical and experimental study on thermo-mechanical processing of medium-carbon steels at low temperatures for achieving ultrafine-structured
Online since: November 2016
Authors: Alberto Adriano Cavalheiro, Margarete Soares da Silva, Tiziana Azario de Medeiros, Graciele Vieira Barbosa, Eliane Kujat Fischer, Igor Silva de Sá
Structural homogeneity and high nanophase dispersion are easily obtained through chemical methods and it is also possible to structure the matrix to present interconnected mesopores, which increase the catalytic performance and selectivity for various reactions [8-11].
Wiedemann, Thermal Analysis, Volume 3: Organic and Macromolecular Chemistry, Ceramics, Earth Science, H.G.
Wiedemann, Thermal Analysis, Volume 3: Organic and Macromolecular Chemistry, Ceramics, Earth Science, H.G.
Online since: August 2017
Authors: Surapich Loykulnant, Thipjak Na Lampang, Nantina Moonprasith, Chalermchat Sukthaworn, Manuchet Reowdecha, Paweena Prapainainar, Peerapan Dittanet
Introduction
Natural rubber (NR) chemical structure is cis1,4 polyisoprene with unsaturated double bonds.
Tripathi, Chitin and chitosan: chemistry, properties and applications, J.
Tripathi, Chitin and chitosan: chemistry, properties and applications, J.