We have published a CAE case study 'Understanding Fracture Behavior through CAE Analysis | Advanced Fracture Simulation Provided by DEFORM'.
Are you facing walls that cannot be solved by the "experience and intuition" of the person in charge in process design involving breakage?
- Unable to identify the starting point of cracks, leading to reactive measures
- Unable to predict changes in "flanging" due to slight differences in clearance
- Repeated prototyping and modifications because "you won't know until you try"
Especially in precise shearing and complex plastic processing, predicting the progression of breakage and the final shape is difficult, and the uncertainty in design becomes a significant obstacle.
In this article, we will reveal a practical approach to "decipher" breakage phenomena in advance using plastic processing CAE "DEFORM." By utilizing "three breakage analysis methods" that are directly linked to on-site decision-making, we will visualize the progression from the starting point of cracks to the flanging shape. We will provide detailed explanations of the recommended utilization points by Yamanaka Gokin that balance reducing prototyping and improving design accuracy.
For more details, please refer to the related link.

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