Breakaway Support Settings for MakerBot Method

Recommended slicer settings for printing Breakaway Support on the MakerBot Method (190 x 190 x 196 mm build volume, 500 mm/s max speed, direct drive extruder).

These settings are recommended starting points based on manufacturer specifications and community guidelines. Always do a test print and adjust as needed. Settings may vary based on your specific printer's condition, environment, and filament batch.
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Quick Reference

Nozzle Temperature225°C
Bed Temperature60°C
Print Speed30-50 mm/s
Layer Height0.2mm (recommended)
Infill15-20%
Cooling Fan100%
Retraction0.8-1.2 mm at 40 mm/s
Difficultybeginner

Temperature Settings

Start with the nozzle at 225°C and the bed at 60°C. If you see poor layer adhesion, increase the nozzle temperature by 5°C increments. If you experience stringing, decrease the nozzle temperature by 5°C. For the first layer, you can increase the bed temperature by 5°C for better adhesion, then let it drop back to 60°C for subsequent layers.

The Breakaway Support filament has a recommended nozzle temperature range of 210-240°C and a bed temperature range of 50-70°C. The MakerBot Method supports nozzle temperatures up to 300°C and bed temperatures up to 110°C, which fully covers the recommended range for this filament.

Speed & Quality

The MakerBot Method supports high-speed printing at up to 500 mm/s. For Breakaway Support, we recommend 30-50 mm/s for general printing. Start with the lower end for quality-critical prints and increase for draft prints. Always print the first layer at 25-50% of your normal speed for better adhesion.

For quality-critical prints like miniatures or display pieces, reduce the speed to 30 mm/s and use a 0.12-0.16mm layer height. For draft or rapid prototyping, you can push the speed to 50 mm/s with a 0.24-0.28mm layer height. The standard 0.2mm layer height at 40 mm/s provides the best balance of speed and quality for most prints.

Bed Adhesion

PLA adheres well to PEI sheets (smooth or textured) without any adhesive. If using a glass bed, apply a thin layer of glue stick or hairspray. Clean the bed with isopropyl alcohol (IPA) before each print for consistent adhesion.

Common Issues with Breakaway Support on MakerBot Method

Here are the most common problems you may encounter when printing Breakaway Support on the MakerBot Method, along with proven solutions:

  • Stringing: Lower nozzle temperature by 5°C and increase retraction distance slightly
  • Warping (rare): Increase bed temperature to 60°C, use a brim, and clean the bed with IPA
  • Poor layer adhesion: Increase nozzle temperature by 5°C and check if filament is wet
  • Brittle prints: Filament may be old or moisture-damaged; try drying at 50°C for 4-5 hours

Tips for Best Results

Follow these expert tips to get the best possible prints with Breakaway Support on your MakerBot Method:

  • Print a temperature tower to find the sweet spot for your specific PLA brand
  • Store filament in an airtight container with desiccant when not in use
  • Clean the bed with IPA before every print for consistent adhesion
  • Use 100% cooling fan from layer 2 onward for best overhangs and bridging
  • PLA is great for prototyping but avoid leaving prints in hot cars or direct sunlight

Support Settings

For prints requiring supports with Breakaway Support, use tree supports for easier removal and less scarring. Set a 0.15-0.2mm Z-distance between support and model. If you have a dual-extruder setup, consider PVA (for PLA/PETG) or HIPS (for ABS) as dedicated water/solvent-soluble support material.

Breakaway Support at a Glance

Strengths

  • Snaps off cleanly without solvents
  • Fast removal — no dissolving wait time
  • Works with most build materials
  • No special post-processing needed

Weaknesses

  • Leaves rougher surface than dissolved supports
  • Requires accessible support geometry
  • Not suitable for internal cavities
  • May need pliers for tight areas

MakerBot Method Specifications

The MakerBot Method features a 190 x 190 x 196 mm build volume with a maximum print speed of 500 mm/s. It uses a direct drive extruder system, which provides better control over flexible and specialty filaments. The hotend can reach 300°C and the heated bed supports temperatures up to 110°C.

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Sources: Based on manufacturer specifications and community recommendations, community testing data, manufacturer recommended ranges.