Numerical Modeling for Push-out Test Using ANSYS Workbench
Budget: $30 – $50 USD
I'm seeking a freelancer with ANSYS Workbench expertise for a numerical modeling project to perform a static analysis on a push-out test specimen (Non-linear Analysis).
I want to perform a numerical analysis using finite elements for a push-out test on a sample consisting of a GFRP girder and a concrete slab with GFRP rebars. The concrete and girder are connected by a shear connector made of stainless steel, under static load analysis (Non-linear solution).
The numerical model has been completed, but the results are incorrect. The errors might be in the definition of the materials used, the contact between the different parts, or in any part of the model phase.
The required tasks are to modify the model and perform verification of the load-slippage curve to ensure it approximates the experimental results. Additionally, the material of the shear connector should be changed to GFRP. Verification is also necessary to confirm that the updated model meets the experimental results
I will send you the details of the material properties used, the experimental results, and the ANSYS file.
I want to perform a numerical analysis using finite elements for a push-out test on a sample consisting of a GFRP girder and a concrete slab with GFRP rebars. The concrete and girder are connected by a shear connector made of stainless steel, under static load analysis (Non-linear solution).
The numerical model has been completed, but the results are incorrect. The errors might be in the definition of the materials used, the contact between the different parts, or in any part of the model phase.
The required tasks are to modify the model and perform verification of the load-slippage curve to ensure it approximates the experimental results. Additionally, the material of the shear connector should be changed to GFRP. Verification is also necessary to confirm that the updated model meets the experimental results
I will send you the details of the material properties used, the experimental results, and the ANSYS file.
Related categories:
Engineering
Mechanical Engineering
Structural Engineering
Finite Element Analysis
Ansys