abaqus finite element software (Abaqus Inc)
86
Structured Review
Abaqus Inc
abaqus finite element software
Abaqus Finite Element Software, supplied by Abaqus Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/finite+element+software/abaqus+element+finite+software/10__1016_slash_j__jpowsour__2026__240434-62-8-8
Average 86 stars, based on 1 article reviews
Abaqus Finite Element Software, supplied by Abaqus Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/finite+element+software/abaqus+element+finite+software/10__1016_slash_j__jpowsour__2026__240434-62-8-8
Average 86 stars, based on 1 article reviews
abaqus finite element software - by Bioz Stars,
2026-10
86/100 stars
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Software:Article Title: Mechanical performance of mortise–tenon jointed metal–CFRP hybrid cylindrical shells under axial compression Article Snippet: In this article, an innovative metal–composite cylindrical shell design, which is based on traditional Chinese mortise–tenon joints, is proposed.. The objective is to address conventional interface debonding issues in composite pressure vessels.. A prefabricated dovetail tenon is created in a 45# steel liner using molding; the tenon mechanically interlocks with the matching mortise groove of a T300 carbon fiber/epoxy composite cladding layer. Article Title: Geometry-sensitive constitutive model for predicting the relative density evolution and anisotropic shrinkage of binder-jetted 17-4PH stainless steel during sintering Article Snippet: The use of binder jetting (BJ) followed by pressureless sintering represents a cost-effective additive manufacturing technique for producing intricate metal components.. However, the sintering process induces complex material phenomena, such as volumetric shrinkage, heterogeneous densification, and geometrydependent deformation, that dictate the final dimensional accuracy and mechanical performance of the produced part.. In particular, the accurate prediction of relative density evolution and shrinkage anisotropy considering the part geometry is essential for translating laboratory-scale findings to industrial-scale applications. Article Title: Enhanced microstructure and toughness in narrow-gap oscillating laser-TIG hybrid welded Ti-6Al-4V plates via high-frequency pulsed current Article Snippet: .. The numerical model was developed in ABAQUS commercial Article Title: Analysis of Rutting Formation Mechanisms and Influencing Factors in Asphalt Pavements Under Slow-Moving Heavy Loads. Article Snippet: .. A three-dimensional pavement model was developed using ABAQUS (2023) Article Title: Experimental characterization of the non-linear viscoelastic properties of human female perineal tissue Article Snippet: .. By fitting experimental data to a constitutive model using Abaqus Article Title: Science-in-brief: Finite element modelling and mechanical testing techniques in musculoskeletal applications. Article Snippet: Finite element analysis (FEA) is a computational method that applies simulated mechanical conditions (i.e., forces or displacements) to an object and predicts how that object will behave.. FEA is becoming increasingly prevalent in clinical settings for designing medical devices, predicting implant performance, studying failure risk in compromised tissues, and planning surgical procedures.. At its core, FEA involves ‘meshing’ the object in question by breaking it into smaller, discrete regions for which mathematical equations may be solved to calculate the resultant material behaviours for each region, such as stress, strain, or deformation. Article Title: Multi-Scale Numerical Simulation of Fatigue Crack Propagation Mechanisms in the Heat-Affected Zone of AH36 Steel Welds Article Snippet: .. The macroscopic model was established and analyzed via the Abaqus (2020) Article Title: In-plane cyclic responses and seismic assessments of unreinforced masonry walls retrofitted with engineered cementitious composites Article Snippet: Unreinforced masonry wall (UMW) buildings are vulnerable to earthquakes and require effective seismic retrofits, particularly in high seismic regions of developing countries, such as Kazakhstan.. Although previous tests have demonstrated enhanced seismic performance of engineered cementitious composites (ECC) retrofitted UMW, study parameters were limited due to economic constraints.. In particular, ECC strength and seismic demands of the ECC retrofitted UMW were not thoroughly and systematically investigated. Computed Tomography:Article Title: Science-in-brief: Finite element modelling and mechanical testing techniques in musculoskeletal applications. Article Snippet: Finite element analysis (FEA) is a computational method that applies simulated mechanical conditions (i.e., forces or displacements) to an object and predicts how that object will behave.. FEA is becoming increasingly prevalent in clinical settings for designing medical devices, predicting implant performance, studying failure risk in compromised tissues, and planning surgical procedures.. At its core, FEA involves ‘meshing’ the object in question by breaking it into smaller, discrete regions for which mathematical equations may be solved to calculate the resultant material behaviours for each region, such as stress, strain, or deformation. |
