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Abaqus Inc 3d finite element model
3d Finite Element Model, 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+model/abaqus+element+finite+software/pm42280011-100-31-36
Average 86 stars, based on 1 article reviews
3d finite element model - by Bioz Stars, 2026-09
86/100 stars

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Article Title: A study on the size effect of the concrete matrix specimen and the radial mechanical behavior in bolt pullout tests.
Article Snippet: To reveal the radial mechanical behavior of the rock mass during rockbolt pullout, a three-dimensional finite element model for the pullout of deformed steel rockbolts anchored in concrete was established using ABAQUS software.

Article Title: Development of a sandwich-structured shape memory alloy honeycomb damper
Article Snippet: This paper presents novel sandwich-structured superelastic shape memory alloy (SMA) honeycomb dampers.. The system comprises a superelastic SMA honeycomb plate that provides self-centering and large deformation capacity, a highdamping rubber core, metallic and rubber infills (round or hexagonal) that support the SMA walls and dissipate energy, and two encased steel plates to restrain out-of-plane buckling of the honeycomb plate.. First, the numerical simulation method is validated against experimental results of an non-sandwiched SMA honeycomb damper.

Article Title: Simulation of Curing Deformation in Curved Composite Plates via Pultrusion Based on Thermal-Chemical-Structural Coupling.
Article Snippet: A three-dimensional finite element model was developed in ABAQUS to simulate the bending pultrusion process involving strong thermo-chemo-mechanical coupling effects.

Proximity Ligation Assay:

Article Title: Biomimetic Spiral-Reinforced Honeycomb for Integrated Energy Absorption Under Complex Loading Scenarios.
Article Snippet: .. A finite element model was established in ABAQUS/Standard to simulate the quasistatic compression behavior of the PLA biomimetic spiral-reinforced honeycomb and the conventional hexagonal honeycomb, with boundary conditions fully consistent with the quasi-static compression tests. ..

Article Title: Biomimetic Spiral-Reinforced Honeycomb for Integrated Energy Absorption Under Complex Loading Scenarios
Article Snippet: .. A finite element model was established in ABAQUS/Standard to simulate the quasi-static compression behavior of the PLA biomimetic spiral-reinforced honeycomb and the conventional hexagonal honeycomb, with boundary conditions fully consistent with the quasi-static compression tests. ..

Blocking Assay:

Article Title: Influence of Immediate Versus Delayed Loading on Peri-Implant Bone Healing: A Comparative FEA Study of Titanium Threaded and Scaffold Dental Implants
Article Snippet: .. Methods: A three-dimensional finite element model of a bone block with a 0.2 mm peri-implant callus was developed in ABAQUS/Standard. ..



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Overview of the dataset folder structure. The dataset is organised under a top-level directory (Dataset_root) containing 20 patient-specific folders (P01–P20). Each patient directory contains a 4D_CTA subfolder with cropped, time-resolved 3D computed tomography angiography (4D CTA) image volumes stored using the filename pattern cardiac_phase_*.nrrd. It also includes finite element model and mesh files of the abdominal aortic aneurysm (AAA) and intraluminal thrombus (ILT) (AAA.inp, Wall.inp, ILT.inp), corresponding surface models (WallSurface.vtp, ILTSurface.vtp), and derived biomechanical maps including strain (strain.vtp), tension (tension.vtp), structural integrity index (SII.vtp), and relative structural integrity index (RSII.vtp). The number and naming conventions of cardiac-phase image volumes vary across patients and are summarised below the directory tree.

Journal: Data in Brief

Article Title: 4D CT angiography and computational biomechanics dataset for structural integrity assessment of abdominal aortic aneurysms

doi: 10.1016/j.dib.2026.112865

Figure Lengend Snippet: Overview of the dataset folder structure. The dataset is organised under a top-level directory (Dataset_root) containing 20 patient-specific folders (P01–P20). Each patient directory contains a 4D_CTA subfolder with cropped, time-resolved 3D computed tomography angiography (4D CTA) image volumes stored using the filename pattern cardiac_phase_*.nrrd. It also includes finite element model and mesh files of the abdominal aortic aneurysm (AAA) and intraluminal thrombus (ILT) (AAA.inp, Wall.inp, ILT.inp), corresponding surface models (WallSurface.vtp, ILTSurface.vtp), and derived biomechanical maps including strain (strain.vtp), tension (tension.vtp), structural integrity index (SII.vtp), and relative structural integrity index (RSII.vtp). The number and naming conventions of cardiac-phase image volumes vary across patients and are summarised below the directory tree.

Article Snippet: Type of data , Data for each of 20 patients: 4D CTA images: Nearly Raw Raster Data file (*.nrrd) Surface model of AAA wall: VTK PolyData file (*.vtp) Surface model of intraluminal thrombus (ILT): VTK PolyData file (*.vtp) Finite element model of AAA: Abaqus FE model file (*.inp) Finite element mesh of AAA wall: Abaqus FE mesh file (*.inp) Finite element mesh of intraluminal thrombus (ILT): Abaqus FE mesh file (*.inp) AAA wall strain map: VTK PolyData files (*.vtp) AAA wall tension map: VTK PolyData files (*.vtp) AAA wall structural integrity index (SII) map: VTK PolyData files (*.vtp) AAA wall relative structural integrity index (RSII) map: VTK PolyData files (*.vtp).

Techniques: Computed Tomography, Derivative Assay