Engineering
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Developable Four-Bar - Double Cylinder
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### Summary
Developable surfaces are geometric shapes that can be completely flattened onto a sheet of paper. This property allows for devices such as a four-bar mechanism to be incorporated into interesting configurations like this cylinder.
### Printing Instructions
This model is designed for standard, 0.4mm nozzles. More specifically, the living hinges require that the wall thickness be set to near 0.4mm in order to properly print. Supports are required for the internal features to print properly, but it's sufficient to only have supports on the build plate.
You will need to orient the model with the cylinder standing up vertically.
### Learn More
This design was developed by the Compliant Mechanisms and Robotics Group (CMR) from Brigham Young University (BYU). Follow us at [@byucmr](https://www.instagram.com/byucmr) on Instagram, (@CompliantMechanismsResearchGroup](https://www.facebook.com/CompliantMechanismsResearchLab) on Facebook, or visit the [BYU Compliant Mechanisms and
Developable surfaces are geometric shapes that can be completely flattened onto a sheet of paper. This property allows for devices such as a four-bar mechanism to be incorporated into interesting configurations like this cylinder.
### Printing Instructions
This model is designed for standard, 0.4mm nozzles. More specifically, the living hinges require that the wall thickness be set to near 0.4mm in order to properly print. Supports are required for the internal features to print properly, but it's sufficient to only have supports on the build plate.
You will need to orient the model with the cylinder standing up vertically.
### Learn More
This design was developed by the Compliant Mechanisms and Robotics Group (CMR) from Brigham Young University (BYU). Follow us at [@byucmr](https://www.instagram.com/byucmr) on Instagram, (@CompliantMechanismsResearchGroup](https://www.facebook.com/CompliantMechanismsResearchLab) on Facebook, or visit the [BYU Compliant Mechanisms and
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