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Abaqus Inc abaqus fea software
Abaqus Fea 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/fea+software/abaqus+fe+software/pm41714773-103-1-1
Average 86 stars, based on 1 article reviews
abaqus fea software - by Bioz Stars, 2026-09
86/100 stars

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Article Title: Fixture design effects on posterior dental implant stability using finite element analysis (FEA): a systematic review
Article Snippet: .. Among the 39 studies analyzed, ANSYS emerged as the most frequently employed FEA software (51.28%), followed by Abaqus (20.51%), other software represented 7.69% and COMSOL was reported in a single study (2.56%). ..

Article Title: Reducing effects caused by formation of multiple foci in a deformable lens during changes of applanation of surfaces thereof
Article Snippet: .. FIGS. 13A, 13B, 13C, and 13D show screenshots of the results of the simulation of the specified axial compression of the pair 110, 120 of the lenslets with the Abaqus FEA software in different situations: under no transverse load (FIG. 13A), transverse load causing a displacement of an edge of the lenslet by 50 microns (FIG. 13C), transverse load causing a displacement of an edge of the lenslet by 100 microns (FIG. 13B), and under transverse load causing a displacement of an edge of the lenslet by 150 microns. ..

Article Title: Facile Single-Nanocomposite 4D Bioprinting of Dynamic Hydrogel Constructs with Thickness-Controlled Gradient.
Article Snippet: .. To further verify this H-XLR/L-XLR ratio-driven bending mechanism, ABAQUS FEA software was employed to simulate the self-deformation of 4D-printed hydrogel strips with different H-XLR/L-XLR ratios (Figure 5f,i). ..

Article Title: Prediction of bone ingrowth into the porous swelling bone anchors using an osteoconnectivity-based adaptive finite element algorithm.
Article Snippet: .. Furthermore, the pressure load induced by swelling was extracted from the hygroscopic swelling simulations and imported into Abaqus FEA software. ..

Article Title: Facile Single‐Nanocomposite 4D Bioprinting of Dynamic Hydrogel Constructs with Thickness‐Controlled Gradient
Article Snippet: .. [ , , ] This numeric simulation was implemented utilizing a user‐element subroutine (UEL) with a FEA software (ABAQUS). ..

Article Title: Orthodontic treatment and associated devices, systems, and methods
Article Snippet: In particular examples, the design of the appliance may be performed by an operator, with the processor system and appropriate design software such as, but not limited to CAD software such as, but not limited to Solidworks®, Autodesk® Inventor, Creo®, or the like. .. FEA software such as, but not limited to Abaqus, Ansys, etc. may be employed to design the springs and arms in order to apply the desired or optimal force to the teeth. ..

Article Title: Influence of connection design and material properties on stress distribution and fatigue lifetime of zygomatic implants: A finite element analysis.
Article Snippet: Zygomatic implants (ZIs) were developed as a graftless alternative to rehabilitate severely reabsorbed maxillae.. This study aims to employ three-dimensional finite element analysis (FEA) to simulate the impact of external hexagonal implant connection (EHC) and internal hexagonal implant connection (IHC) on the stress distribution and fatigue lifetime within the ZI systems using parameters defined in ISO 14801:2016.. Two ZI assemblies (Nobel Biocare and Noris Medical) were scanned in a micro-CT scanner and reconstructed using Nrecon software.

Article Title: Relevance of Finite Element Method in Dentistry Finite with Infinite Possibilities
Article Snippet: .. For analysis, the model is exported to FEA software (e.g., Abaqus Explicit, Ansys, Hypermesh, Nastran-Patran, etc.), and is visually simulated in a mesh format that specifies its layout and geometry3.In a procedure called discretisation, the mesh is further broken down into smaller geometrical units called elements, which are linked at points known as nodes (Fig. 2c). ..



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Abaqus Inc abaqus fea software
Abaqus Fea 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/fea+software/abaqus+fe+software/pm41714773-103-1-1
Average 86 stars, based on 1 article reviews
abaqus fea software - by Bioz Stars, 2026-09
86/100 stars
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86
Abaqus Inc fea software abaqus
Motion characteristics and design optimization of bistable structures. A) Simulation results of the force‐displacement curve and energy landscape of <t>the</t> <t>DCBB.</t> The inset image is the model used for <t>FEA</t> simulation. B) Simulation results of the force‐displacement curve and energy landscape of the VSBB. The inset image is the model used for FEA simulation. C) Geometrical design (left) and 3D‐printed model (right) of a VSBB. D) Force‐displacement test results of VSBBs with the initial inclination angle of 12 (the dashed lines indicate testing performed from SP2). Three identical samples for each geometrical condition are tested. E) Comparison of force‐displacement curves obtained from experiments and theoretical calculations. F) The average displacements from SP1 to the snap‐through point (bottom), the total displacements from SP1 to SP2 (middle), and the displacements from SP2 to the snap‐through point (top) of the bistable structures with different geometrical parameters from force‐displacement tests.
Fea Software Abaqus, 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/fea+software/abaqus+fe+software/pmc13042753-57-14-16
Average 86 stars, based on 1 article reviews
fea software abaqus - by Bioz Stars, 2026-09
86/100 stars
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Abaqus Inc fea commercial software abaqus
Motion characteristics and design optimization of bistable structures. A) Simulation results of the force‐displacement curve and energy landscape of <t>the</t> <t>DCBB.</t> The inset image is the model used for <t>FEA</t> simulation. B) Simulation results of the force‐displacement curve and energy landscape of the VSBB. The inset image is the model used for FEA simulation. C) Geometrical design (left) and 3D‐printed model (right) of a VSBB. D) Force‐displacement test results of VSBBs with the initial inclination angle of 12 (the dashed lines indicate testing performed from SP2). Three identical samples for each geometrical condition are tested. E) Comparison of force‐displacement curves obtained from experiments and theoretical calculations. F) The average displacements from SP1 to the snap‐through point (bottom), the total displacements from SP1 to SP2 (middle), and the displacements from SP2 to the snap‐through point (top) of the bistable structures with different geometrical parameters from force‐displacement tests.
Fea Commercial Software Abaqus, 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/fea+software/abaqus+commercial+software/pmc12851036-273-1-4
Average 86 stars, based on 1 article reviews
fea commercial software abaqus - by Bioz Stars, 2026-09
86/100 stars
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Abaqus Inc fea software
Motion characteristics and design optimization of bistable structures. A) Simulation results of the force‐displacement curve and energy landscape of <t>the</t> <t>DCBB.</t> The inset image is the model used for <t>FEA</t> simulation. B) Simulation results of the force‐displacement curve and energy landscape of the VSBB. The inset image is the model used for FEA simulation. C) Geometrical design (left) and 3D‐printed model (right) of a VSBB. D) Force‐displacement test results of VSBBs with the initial inclination angle of 12 (the dashed lines indicate testing performed from SP2). Three identical samples for each geometrical condition are tested. E) Comparison of force‐displacement curves obtained from experiments and theoretical calculations. F) The average displacements from SP1 to the snap‐through point (bottom), the total displacements from SP1 to SP2 (middle), and the displacements from SP2 to the snap‐through point (top) of the bistable structures with different geometrical parameters from force‐displacement tests.
Fea 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/fea+software/abaqus+fe+software/pmc12777410-424-12-17
Average 86 stars, based on 1 article reviews
fea software - by Bioz Stars, 2026-09
86/100 stars
  Buy from Supplier

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Motion characteristics and design optimization of bistable structures. A) Simulation results of the force‐displacement curve and energy landscape of the DCBB. The inset image is the model used for FEA simulation. B) Simulation results of the force‐displacement curve and energy landscape of the VSBB. The inset image is the model used for FEA simulation. C) Geometrical design (left) and 3D‐printed model (right) of a VSBB. D) Force‐displacement test results of VSBBs with the initial inclination angle of 12 (the dashed lines indicate testing performed from SP2). Three identical samples for each geometrical condition are tested. E) Comparison of force‐displacement curves obtained from experiments and theoretical calculations. F) The average displacements from SP1 to the snap‐through point (bottom), the total displacements from SP1 to SP2 (middle), and the displacements from SP2 to the snap‐through point (top) of the bistable structures with different geometrical parameters from force‐displacement tests.

Journal: Advanced Science

Article Title: Programmable Multifunctional Bistable Structures for Energy Transfer and Dissipation

doi: 10.1002/advs.202518883

Figure Lengend Snippet: Motion characteristics and design optimization of bistable structures. A) Simulation results of the force‐displacement curve and energy landscape of the DCBB. The inset image is the model used for FEA simulation. B) Simulation results of the force‐displacement curve and energy landscape of the VSBB. The inset image is the model used for FEA simulation. C) Geometrical design (left) and 3D‐printed model (right) of a VSBB. D) Force‐displacement test results of VSBBs with the initial inclination angle of 12 (the dashed lines indicate testing performed from SP2). Three identical samples for each geometrical condition are tested. E) Comparison of force‐displacement curves obtained from experiments and theoretical calculations. F) The average displacements from SP1 to the snap‐through point (bottom), the total displacements from SP1 to SP2 (middle), and the displacements from SP2 to the snap‐through point (top) of the bistable structures with different geometrical parameters from force‐displacement tests.

Article Snippet: To compare the properties of DCBB and VSBB, we simulated their motion pattern using FEA software ABAQUS (see Supporting Text 1 and Figure , Supporting Information).

Techniques: Comparison