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Bay Window Groove Cleaning Scoop.

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Creation quality: 5.0/5 (1 vote)
Evaluation of members on the printability, utility, level of detail, etc.

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  • 10 downloads

License
3D design format
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  • PelleBaieVitree.stl

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3D model size X 199 × Y 40 × Z 40 mm
Publication date 2023-08-03 at 18:32
Design number 1361482

3D printer file info

3D model description

Description :

This 3D model depicts a shovel specially designed to efficiently clean the groove of 4 cm-wide bay windows. The shovel is designed to fit perfectly into the narrow groove of sliding windows, making it easy to remove accumulated dirt, dust and debris.

Key features:

  • Ergonomic design: the shovel handle is comfortable to hold and facilitates effortless movement in the groove.

  • Precise cleaning: The shovel head is specially profiled to reach hard-to-reach corners and ensure thorough cleaning.

  • Durable material: The model is optimized for printing using robust materials for long-term use.

PETG, PLA or better PLA-CF

Applications :

This scoop is ideal for owners of bay windows, sliding windows, patio doors and any other glazing system with a narrow groove. It helps maintain clear visibility through windows and improves the overall appearance of your space.

Note:

Before 3D printing, make sure you use a quality material suited to your specific needs. You can adjust the print parameters to achieve better resolution depending on your 3D printer.

Enjoy the convenience of this specially designed scoop to keep your bay windows clean and spotless!

3D printing settings

ATTENTION

Supports: Normally, supports are not required for the model, but depending on the geometry of the model, it could be useful to use supports to obtain a better finish under the shovel.

PLA (Polylactic Acid):

  • Extrusion temperature: 190°C to 220°C

  • Heating plate temperature : Not required, but 50°C to 60°C can be used (optional)

  • Print speed: 40mm/s to 80mm/s (may vary depending on printer and desired quality)

  • Adhesion bed: Most printers don't require a special surface, but a heated bed can be useful for better adhesion.

  • Properties: PLA is easy to print, non-toxic, biodegradable and offers good resistance to deformation. It's ideal for beginners and non-functional prints.

PETG (glycol-modified polyethylene terephthalate) :

  • Extrusion temperature: 230°C to 250°C

  • Heating plate temperature: 70°C to 80°C

  • Print speed: 30mm/s to 60mm/s (may vary depending on printer and desired quality)

  • Adhesion bed: A heated bed and/or lacquer to aid adhesion.

  • Properties: PETG offers better impact and heat resistance than PLA. It is less prone to shrinkage, but may require a little more care when printing.

ABS (Acrylonitrile Butadiene Styrene) :

  • Extrusion temperature: 230°C to 250°C

  • Heating plate temperature: 90°C to 110°C

  • Print speed: 30mm/s to 60mm/s (may vary depending on printer and desired quality)

  • Adhesion bed: A heated bed and/or the use of an adhesive (e.g. Acetone on glass) are required to aid adhesion.

  • Properties: ABS is tough, hard and has good heat resistance. However, it can be prone to warping when cooled, so a heated bed is almost essential. ABS printing may require an enclosure or box printing to control temperature and minimize warping.

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