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finite element method (fem) thermodynamic simulation model  (COMSOL Inc)

 
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    COMSOL Inc finite element method (fem) thermodynamic simulation model
    Finite Element Method (Fem) Thermodynamic Simulation Model, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/finite+element+simulation+model/comsol+multiphysics/pmc12012715-93-4-11
    Average 90 stars, based on 1 article reviews
    finite element method (fem) thermodynamic simulation model - by Bioz Stars, 2026-09
    90/100 stars

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    Article Title: Numerical simulation of a continuous sonoreactor for cotton cellulose residues recovery
    Article Snippet: First, there was a ramp for 120 s at a shear rate of 1 s −1 , followed by an increase in the shear rate to 500 s −1 in 10 steps over 10 min. COMSOL Multiphysics employed the values we measured ( ) for the numerical simulations.

    Article Title: Dummy molecularly imprinted polymer nanochannel sensor for ultrasensitive detection of aniline compounds.
    Article Snippet: Aniline pollutants can cause great harm to human health and the ecosystem, while rapid and selective quantification of aniline compounds in environment samples at trace levels is a highly complex target.. In this study, a novel, efficient nanochannel sensor based on dummy molecularly imprinted polymer (DMIP) was fabricated.. The sensor works on the principle of the ion current rectification across the asymmetric charged nanoporous capillary.

    Article Title: Three-dimensional urchin-like K 2 Ti 8 O 17 / Ag NPs composite as a SERS substrate for detecting folic acid and thiram.
    Article Snippet: The three-dimensional (3D) semiconductor/noble metal composite substrates for surface-enhanced Raman scattering (SERS) have garnered increasing interest due to their excellent optical and chemical properties, as well as the capacity to trigger both electromagnetic mechanism (EM) and chemical mechanism (CM) simultaneously.. In this work, a facile 3D urchin-like K2Ti8O17/Ag nanoparticles (Ag NPs) composite substrate is designed for multi-purpose SERS sensing.. K2Ti8O17, as a dielectric medium, improves the electric field environment around Ag NPs, which is consistent with finite-different time domain (FDTD) results, and enhances the SERS performance of the K2Ti8O17/Ag composite substrate.

    Article Title: Cellulose-based bipolar heterogeneous membranes with two-dimensional lamellar composite three-dimensional network structure for osmotic energy conversion.
    Article Snippet: Reverse electrodialysis (RED) technology is extremely promising in harvesting osmotic energy.. The exchange membranes, which are the core components of RED systems, especially in the investigation of composite membrane systems, remain a challenge by balancing the key requirements of better compatibility and sufficient stability, ease of fabrication, etc.. In view of the excellent compatibility and stability of forest biomass membrane materials, this work reports a two-dimensional (2D) lamellar regenerated cellulose (RC) composite with a threedimensional (3D) network of bacterial cellulose membrane doped with alkali lignin (BC-AL) heterogeneous membrane.

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    Article Title: Long-Term Colloidal Stability of Cobalt Ferrite Nanoparticles in Magnetic Fluids: A Nine-Year Study
    Article Snippet: • Synthesis of magnetic fluids based on highly dispersible CoFe2O4 coated with oleic acid.. • Rheology and viscosity measurements of the magnetic fluids showed Newtonian

    Article Title: Metal-Support Interaction and Tip-Enhanced Electric Field Effect Co-Enhancing Oxygen Species Adsorption/Enrichment for Efficient Electrooxidation of Plastic Waste Derived Alcohol into Glycolic Acid
    Article Snippet: The limited catalytic activity and weaker stability caused by the restricted adsorption capacity of reactive oxygen species (*OH) have hindered the further development of electrocatalytic upgrading polyethylene terephthalate (PET) waste into valuable C2 chemicals, which is crucial in addressing the plastic pollution issue.. Herein, Pd@Ni (OH)2-NiO catalyst was synthesized based on the concepts of metal-support interaction and tip-enhanced electric field effect, demonstrating remarkable activity (0.60 V vs. RHE, 300 mA cm 2) and stability (250 h) for electrocatalytic upgrading PET plastic waste into glycolic acid.. A significant charge transfer occurs between metal Pd and supports Ni(OH)2-NiO due to the metal-support interaction, generating the electron-deficient Pdδ+ sites.

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    Article Snippet: Bulk metallic glasses (BMGs) have been widely used in precise manufacturing industry, and their surface quality is one of the key properties for practical applications.. Electropolishing (EP) is an effective technique to improve surface roughness for metal materials with good precision and no tool wear.. In this work, the feasibility of electropolishing nonplanar surfaces with planar electrode is verified by multi-physics simulation.



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    Vickers indentation apparatus and properties of sapphire block.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Vickers indentation apparatus and properties of sapphire block.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques: Blocking Assay

    Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Sapphire Vickers indentation surface morphology with multiple crystal orientations through SEM: ( a ) 1 kgf of A-plane, ( b ) 5 kgf of A-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane, ( e ) 1 kgf of M-plane, and ( f ) 10 kgf of M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Sapphire Vickers indentation surface morphology under the load of 3 kgf: ( a ) 3 kgf of the A-plane, ( b ) 3 kgf of the C-plane, and ( c ) 3 kgf of the M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Vickers indentation surface morphology of sapphire under 20 and 30 kgf load by SEM: ( a ) 20 kgf of A-plane, ( b ) 30 kgf of A-plane, ( c ) 20 kgf of C-plane, ( d ) 30 kgf of C-plane, ( e ) 20 kgf of M-plane, ( f ) 30 kgf of M-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Surface topography simulation of C-plane sapphire under Vickers indentation: ( a ) 1 kgf of C-plane, ( b ) 3 kgf of C-plane, ( c ) 5 kgf of C-plane, ( d ) 10 kgf of C-plane.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Load–displacement curve of Vickers indentation: ( a1 ) A-plane sapphire under 1 kgf load, ( a2 ) C-plane sapphire under 3 kgf load, ( a3 ) M-plane sapphire under 10 kgf load, ( b ) plastic piling-up displacement curve.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Stress field of sapphire Vickers indentation: ( a ) spherical coordinates and ( b ) indentation stress field and cracks.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of A-plane sapphire under a 1 kgf load.

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Nucleation and propagation of indentation cracks in Vickers indenter during loading and unloading of C-plane sapphire under 3 kgf load ( a1 – a3 ), M-plane sapphire under 10 kgf load ( b1 – b3 ).

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques:

    Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .

    Journal: Materials

    Article Title: Monocrystalline Sapphire Stress Field Analysis with Orthorhombic Crystal Orientation Under Vickers Indentation

    doi: 10.3390/ma18225136

    Figure Lengend Snippet: Residual stress field during Vickers indentation unloading process, ( a ) σ R xx , ( b ) σ R yy , ( c ) σ R zz .

    Article Snippet: The orthotropic sapphire Vickers indentation finite element simulation model was numerically built by utilizing commercial software ABAQUS (version 2025).

    Techniques: