Introducing the optimization feature
Do you have any of these concerns?

Solutions powered by the optimization features of ADVENTURECluster!
About the optimization feature of ADVENTURECluster

Field of application
Lightweighting | Innovation in existing
designs | Mass production parts
ADVENTURECluster offers exceptional performance in lightweight design, innovation of existing designs, and optimization of mass-produced parts.
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Key Feature 1
Complete optimization calculations in a short time with our high-speed solver. Save time and achieve an efficient design process!
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Key Feature 2
Discover mass-producible shapes through molding constraints. Reduce manufacturing costs and strengthen mass production capabilities.
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Key Feature 3
Reduce weight without compromising strength. Deliver high-performance products and enhance competitiveness.
Using ADVENTURECluster also offers environmental benefits such as cost reduction, reduced CO2 emissions, and increased energy efficiency.
Achieve high-speed and large-scale optimization
In optimization, we perform repeated structural analysis calculations.
ADVENTURECluster's high-speed solver shortens calculation times and can handle large-scale models.
Specific calculation example
2.5 million elements, 16 parallel, 3 hours 20 minutes

"Molding constraints" that emphasize manufacturability
Structures derived from topology optimization often exhibit a complexity that makes them less suitable for mass production processes. ADVENTURECluster implements molding constraints to eliminate the need for time-consuming undercut processing when using plastic injection molding and die-casting. This function makes it possible to directly deploy optimization results in production technology without reworking.

"Optimization considering stress" creates a more durable structure
In topology optimization that maximizes stiffness, the structure tends to concentrate stress, making it more prone to failure. ADVENTURECluster's optimization considering stress feature makes it possible to discovery the lightest shape possible that is less likely to break and avoids stress concentration.
