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The springback compensation method of the part is to make the opposite die face corresponding to the measured rebound data one by one according to the measurement data on the shaping die.
The "Advanced (M)" function of GSM in ThinkDesign software can just use this series of dotted line control to generate a high-quality rebound compensation surface at a time, which makes it easier for us to achieve the above objectives and work. It is conceivable that if you use traditional CAD software to do it, it is a very tedious task.
The figure above shows a series of control lines for the part to apply the Advanced (M) function and a section line contrast before and after the surface is deformed.
The above two figures are the two aspects of applying the "Advanced (M)" rebound compensation: the first is global compensation, and the second is local compensation. In actual production, the part has undergone two rebound compensation, and the pass rate has increased from about 20% to nearly 90%.
The other is the ridge twist (S) feature, which requires a raw surface of the part before the rebound deformation and a continuous twisted ridge on the part. After the command is executed, a series of vertical sections are automatically generated on the torsion ridge line, and the angles of the respective sections are freely defined. The required deformed surface can be generated with just one command, which is very efficient.
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