EEVC-ODB Barrier
Publishdate:2025-12-12 Views:9
Model Basic Information
The ODB barrier model is a shell element model , which is developed by Dynawe based on the free model of ANSYS company, and the latest version is 1.0. The impact performance of the barrier is determined by the characteristics of honeycomb aluminum material.


Model performance
5 collision analyses to illustrate the performance of the model:
1. 50% rigid wall impact
The analysis consists of a rigid wall with 50% overlap impacting the barrier, as shown in the figure.

Barrier deformation:

Force displacement curve:

2. 100% rigid wall impact
The analysis consists of a 100% rigid wall impacting the barrier as shown in the figure.

Barrier deformation:

Force displacement curve:

3. Impact of main structure on the front

Barrier deformation:

Force displacement curve:

4. Front lower main structure impact

Barrier deformation:

Force displacement curve:

5. Frontal middle structure impact

Barrier deformation:

Force displacement curve:

For more details information and purchase of the model, please contact Shanghai Dynawe Information Technology Co., Ltd.: Stephen Zhao, Tel.: 13816888516, email: Stephen zhao@dynawe.com
Model Basic Information
The ODB barrier model is a shell element model , which is developed by Dynawe based on the free model of ANSYS company, and the latest version is 1.0. The impact performance of the barrier is determined by the characteristics of honeycomb aluminum material.


Model performance
5 collision analyses to illustrate the performance of the model:
1. 50% rigid wall impact
The analysis consists of a rigid wall with 50% overlap impacting the barrier, as shown in the figure.

Barrier deformation:

Force displacement curve:

2. 100% rigid wall impact
The analysis consists of a 100% rigid wall impacting the barrier as shown in the figure.

Barrier deformation:

Force displacement curve:

3. Impact of main structure on the front

Barrier deformation:

Force displacement curve:

4. Front lower main structure impact

Barrier deformation:

Force displacement curve:

5. Frontal middle structure impact

Barrier deformation:

Force displacement curve:

For more details information and purchase of the model, please contact Shanghai Dynawe Information Technology Co., Ltd.: Stephen Zhao, Tel.: 13816888516, email: Stephen zhao@dynawe.com
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