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Abaqus Inc uel subroutine
Three-layer finite element structure is implemented <t>in</t> <t>Abaqus</t> using <t>UEL</t> subroutine.
Uel Subroutine, 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/uel+subroutine/uel/pmc13118041-70-42-37
Average 86 stars, based on 1 article reviews
uel subroutine - by Bioz Stars, 2026-09
86/100 stars

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1) Product Images from "Phase-Field Damage Modeling of Electromechanical Fracture in MEMS Piezoelectric Films"

Article Title: Phase-Field Damage Modeling of Electromechanical Fracture in MEMS Piezoelectric Films

Journal: Materials

doi: 10.3390/ma19081662

Three-layer finite element structure is implemented in Abaqus using UEL subroutine.
Figure Legend Snippet: Three-layer finite element structure is implemented in Abaqus using UEL subroutine.

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other:

Article Title: A phase-field fatigue fracture model considering the thickness effect
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Article Title: In-silico simulation of nanoindentation on bone using a 2D cohesive finite element model.
Article Snippet: This study proposed and validated a 2D finite element (FE) model for conducting in-silico simulations of in-situ nanoindentation tests on mineralized collagen fibrils (MCF) and the extrafibrillar matrix (EFM) within human cortical bone.. Initially, a multiscale cohesive FE model was developed by adapting a previous model of bone lamellae, encompassing both MCF and EFM.. Subsequently, nanoindentation tests were simulated in-silico using this model, and the resulting predictions were compared to AFM nanoindentation test data to verify the model’s accuracy.

Article Title: A Mechanical Approach to the Growth Plate Behaviour and Chondrocytes Columns Organization
Article Snippet: The computational model was solved in ABAQUS 6.5.1 by means of a UEL subroutine developed in FORTRAN 90 (Formula Translating System, New York, USA), the geometric model was built in Trelis 3D CAD (Coreform, Orem, Utah), and the results were visualized in TECPLOT 360 (Tecplot Inc. Bellevue).

Article Title: Phase-field fracture modeling for creep crack
Article Snippet: Creep cracks will significantly impact the structure’s safety under high temperatures.. Currently, most phase-field models describe the creep crack growth by considering the viscous strain energy as a part of the driving force.. This work proposes a phase-field model for creep crack in elasto-plastic materials with a different approach.

Article Title: Thermo-aqueous coupling behaviors for shape memory hydrogels: A statistical–mechanical model and simulations faced with experiments
Article Snippet: The shape memory behavior of hydrogels endows themselves with the capacities of shape programming and shape recovering, which have great potential in many fields, such as drug release and soft robotics.. In thermally responsive hydrogel, particularly, there are two critical factors, temperature and water, that can induce the shape memory effect(SME).. Temperature-induced SME has been extensively studied, while water-induced SME has been rarely investigated.

Formulation:

Article Title: Phase-Field Damage Modeling of Electromechanical Fracture in MEMS Piezoelectric Films
Article Snippet: .. The remainder of this paper is organized as follows. defines the equivalent initial damage associated with pre-existing defects in piezoelectric materials and presents the formulation of the phase-field model. describes the implementation of the proposed model in ABAQUS, with emphasis on the UEL subroutine developed for crack simulation. presents numerical examples, including model validation and simulations of fracture behavior under different loading conditions. concludes the paper and summarizes the main findings. ..

Biomarker Discovery:

Article Title: Phase-Field Damage Modeling of Electromechanical Fracture in MEMS Piezoelectric Films
Article Snippet: .. The remainder of this paper is organized as follows. defines the equivalent initial damage associated with pre-existing defects in piezoelectric materials and presents the formulation of the phase-field model. describes the implementation of the proposed model in ABAQUS, with emphasis on the UEL subroutine developed for crack simulation. presents numerical examples, including model validation and simulations of fracture behavior under different loading conditions. concludes the paper and summarizes the main findings. ..



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Three-layer finite element structure is implemented in Abaqus using UEL subroutine.

Journal: Materials

Article Title: Phase-Field Damage Modeling of Electromechanical Fracture in MEMS Piezoelectric Films

doi: 10.3390/ma19081662

Figure Lengend Snippet: Three-layer finite element structure is implemented in Abaqus using UEL subroutine.

Article Snippet: The remainder of this paper is organized as follows. defines the equivalent initial damage associated with pre-existing defects in piezoelectric materials and presents the formulation of the phase-field model. describes the implementation of the proposed model in ABAQUS, with emphasis on the UEL subroutine developed for crack simulation. presents numerical examples, including model validation and simulations of fracture behavior under different loading conditions. concludes the paper and summarizes the main findings.

Techniques: