Created today
Remixed 2 times
Description
Eine flache, supportfrei druckbare Schlüsselablage mit maritimer Strandsilhouette. Das kompakte, zweidimensionale Design vereint Funktionalität mit dekorativem Aussehen und ist dank flacher Rückseite ideal zur Montage mit doppelseitigem Klebeband.
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Technical views

A compact, support-free storage case designed to print as a single assembled unit. The clamshell design lies flat on the build plate, using internal conical pins to create a working 180-degree hinge straight off the printer. Dimensions: 30mm square footprint when closed; 20mm total height. Mechanism: Integrated conical barrel hinge with 0.4mm clearances. Closure: Friction-fit horizontal snap ridge on the front lip. Print Setup: Requires no supports. Best printed in PLA or PETG with standard 0.2mm layer heights.
A heavy-duty electronics or utility enclosure featuring a hinged lid and a front-facing access port. Designed to be printed entirely without supports, the lid is oriented flat on the build plate and attaches to the main body via a simple filament-pin hinge. A pair of aligned tabs at the front accommodate a standard small padlock or zip tie for securing the contents. Specifications Overall Dimensions: 150mm (W) x 80mm (D) x 100mm (H) Wall Thickness: 3mm Access Port: 45mm diameter, positioned with a 20mm clearance from the inner floor. Hardware Required: 1.75mm filament scrap or 2mm metal rod for the hinge pins; small padlock for the front tabs.

The Optic is a dedicated resting place for your reading glasses, designed to keep them safe from accidental crushing on the nightstand. Shaped with a gentle taper that mimics the geometry of a face, it features a specialized 18mm wide nose bridge at the peak. A transverse saddle trench ensures the glasses seat securely and naturally, allowing the lenses to rest against the sloped front without sliding off. Features Anatomical Fit: 18mm nose bridge precisely matches standard reading glasses. Secure Saddle: Transverse cutout catches the frame bridge to prevent slipping. Stable Base: Wide footprint resists tipping when retrieving your glasses in the dark.
A sturdy wall-mounted drop-in rack designed to hold three golf clubs. Built with wide spacing and flared entries to make racking quick, and it hangs on a classic French cleat system so you can lift the whole rack off the wall without unfastening a single screw. Features French Cleat Mount: The red wall cleat screws into the wall (countersunk holes for standard wood screws), and the blue rack drops firmly onto it. Flared Slots: The club entries are angled open at 45 degrees to guide the shafts securely into place. Clearance: Designed with built-in tolerances so the cleat seats completely and releases without binding.

Straps always leave a dangling tail, and standard buckles give you nowhere to tie a pull-loop or secure the end. This adds a solid extension to a standard 1-inch tri-glide, featuring a dedicated hole to anchor a paracord knot. Specs Webbing: Fits standard 1-inch (25.4mm) straps. Hole: 5.5mm diameter (clears standard 550 paracord, catches a stopper knot). Printing: Prints flat, no supports needed.
A three-tier stepped organizer designed to keep spice jars visible at a glance, so finding the right ingredient doesn't turn into a treasure hunt. Built for standard 40mm jars in a 3x4 layout, each row steps up by 20mm and back by 50mm to ensure labels remain completely readable from a standing height. The underside is hollowed out with 3mm structural ribs to minimize filament use while maintaining load-bearing rigidity. Remixing This Design Jar Clearance: The current 172mm overall width gives four 40mm jars a comfortable fit per tier. Adjust the width parameter to tighten the layout or expand it for larger bulk containers. Step Ratios: The 20mm rise and 50mm tread are optimized for standard supermarket spice jars. These can be easily tweaked if accommodating taller sauce bottles or fitting into shallow overhead cabinets. Extensions: Designed as a standalone solid block, but the flat side profiles make it easy to scale storage infinitely by printing multiple units and setting them side-by-side.