Description
Sofa arms exist mostly to launch drinks onto the rug the second you shift your weight. This saddles a rigid channel over a narrow armrest to bridge the gap, locking down a recessed staging plate on one side and a cup holder on the other. I deepened the plate recess to catch condensation and minor spills before they track down the side of the couch.
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Sofa arms are basically designed to launch drinks onto the rug the second you shift your weight. This drops a rigid U-channel over the armrest to bridge the gap, locking down a flat staging plate on one side and a deep cup holder into the other. Specifications Total Length: 200 mm Inner Channel Width: 185 mm (verify this clears your sofa arm) Cup Holder: 80 mm diameter, 32 mm depth Print Specs: Prints hollow to save time and material. No supports needed if your bridging is dialled in.

A wide-stance couch armrest caddy designed for thick, plush sofa arms. It provides a stable resting surface without squeezing the upholstery. What it's for Perfect for keeping drinks, snacks, and remotes securely balanced on the arm of a couch. The built-in cup holder keeps tumblers from tipping, while the tray neatly catches keys, change, or a phone. Dimensions Channel width: 285 mm inside width Overall length: 300 mm Drop depth: 100 mm side walls Print notes Designed to print vertically as one solid piece, with no supports required if your bridging is dialled in. The thin 3 mm walls keep material usage down and speed up the print.
A compact, print-in-place water manifold built for automated plant irrigation systems. It splits a single main feed into four independent channels with smooth internal transitions to minimize flow restriction. Inlet: Single center-mounted fitting sized for 8mm ID hose. Outlets: Four equally-spaced fittings sized for 5mm ID hose. Barbs: Dual retaining ridges on all connections to prevent slip-offs under pressure. Internal Channels: Fully hollowed 7mm common chamber with spherical transitions to eliminate dead zones and sharp fluid corners.
Hoses slipping off a plain tube is a guaranteed flood. This 4-way manifold uses aggressive, precisely sized barbs to bite into soft tubing, routing one 8mm inlet into four 5mm outlets. Critical Fit Inlet: 8.2mm main shaft, 10mm max OD on three barbs. Outlets: 5.2mm main shaft, 6.7mm max OD on two barbs each. Flow: Internal bores are necked down to 3mm on the branches to preserve wall strength, expanding to a 16mm central chamber. Print it base-down. The horizontal barbs are short enough to bridge without supports if your part cooling is dialled in.
A parametric, FDM-printable ventilation duct adapter connecting a nominal Ø100 mm round duct to a 200 × 60 mm rectangular duct. Round Inlet: Ø101 mm internal diameter, 30 mm deep Rectangular Outlet: 201 × 61 mm internal, 30 mm deep Offset: 25 mm vertical centerline shift Wall Thickness: 2.4 mm (constant, pushed outward) Total Length: 210 mm (150 mm transition) Both ends are female sockets designed for a slip fit over existing plastic ducting. The loft provides a smooth internal airflow path with no steps or constrictions.
This is a low-profile, continuous-loop irrigation ring designed for automated watering systems. It distributes water evenly around the base of a plant without interfering with the stem. The structure is engineered specifically for FDM printing without supports. The internal hollow channel features a teardrop cross-section so the printer can bridge the ceiling cleanly, and the external hose barb includes a small, built-in support block connecting it to the build plate. Design Notes Dimensions: 197 mm outer diameter, 173 mm inner diameter, leaving a 12 mm wide profile. Inlet: Dual-barb fitting sized for 5 mm internal diameter tubing, pointing outward to keep the hose clear of the foliage. Distribution: 12 downward-facing 1 mm drip holes spaced every 30 degrees, beginning 15 degrees offset from the inlet to ensure the first drops don't pool at the connection. Mounting: Three low-profile tabs sit on the outer perimeter, drilled for standard wire pegs to anchor the ring into the soil.