3D CAD design
Parts and assemblies modelled in Fusion 360 and FreeCAD. You receive STEP, STL, 3MF and 2D drawings with dimensions and tolerances.
One engineer, one workshop. CAD design, industrial 3D printing, CNC machining and laser work for custom parts. Send a drawing, a sketch or the broken part — you get a quote the same day and the part within days.
Use one service or all of them. Most projects start as a problem and end as a drawing plus tested parts.
Parts and assemblies modelled in Fusion 360 and FreeCAD. You receive STEP, STL, 3MF and 2D drawings with dimensions and tolerances.
Worn or discontinued parts are measured, modelled and improved. Old drawings, sketches and photos become 3D models ready to make.
Bambu Lab H2 series printers — enclosed, heated, multi-material — for carbon-fibre nylon, PC, TPU and wear-resistant polymers. Working parts, not display models.
CNC milling of aluminium, POM and technical plastics where tolerances are tight, plus 100 W fiber-laser marking and cutting of metal parts.
Runs of 1 to 500 parts on five printers — no tooling, no minimum order. Every batch is inspected and the material lot is documented.
Wall thickness, print orientation, fibre direction, fasteners and tolerances are settled before the first layer — so the part works on site, not just on screen.
Every model below is the actual design file, exported straight from CAD. Drag to orbit, scroll to zoom, or open a cross-section.
Elastic insert for a positioning cone. It compresses to seat under load and springs back on release. Stiffness can be tuned per batch without changing the cone.
Fixture for Ø109 mm duct runs. It holds the pipe at the right offset from the wall or slab while it is fixed, then lifts out. Replaces tape measure and shims on site.
Wall-mounted dispenser with a gravity-fed magazine and one-hand outlet. Modelled around the consumable it holds; mounting holes match standard wall channel.
Extruder module for a wire-processing line. Drive housing, guide path and adjustment are one assembly, and it can be serviced without removing the module.
Extractor unit released for production. Full assembly with fasteners and clearances resolved for the machine frame it bolts to. Delivered with the release drawing set.
Holder for a full screwdriver set. Each bore is sized to its handle; a rear rail mounts to a wall or pegboard. A small part made with the same care as the large ones.
Every step ends with something you can check: a drawing, a test print, a measurement report. No surprises at delivery.
I review your drawing, sample or sketch. We define loads, environment, fit and quantity. You get a proposed process, material and a fixed quote.
Output: quote + spec sheetThe part is modelled with manufacturing in mind from the start: wall thickness, orientation, fibre direction, threads and fasteners.
Output: STEP + 2D drawingA first part is printed in the final material or a fast stand-in. Fit is checked on the real assembly wherever possible.
Output: test part, 24–48 hDimensions are measured against the drawing and function is tested under load or pressure. Changes are cheap here — one model, one reprint.
Output: measurement reportThe batch runs on the printers or the CNC, is inspected, labelled by lot and shipped across the EU. The model is kept on file for reorders.
Output: parts + documentationHardwire3D is a one-man design and production workshop in Holeby, Denmark. I am a civil engineer with 13 years in civil engineering, mostly on bridge and tunnel sites. Site work teaches one thing: the drawing must be right, the tolerance must be real, and the part must survive weather, load and the people who install it.
That discipline now goes into custom industrial and construction parts — industrial 3D printing, CNC machining and laser work — designed and made by the same person you talk to.
Choosing the material is part of the design work. Temperatures are indicative; full datasheets on request.
Fast, accurate, low-stress. Visual models, fit checks, jigs.
Tough, chemical-resistant all-rounder. Enclosures, snap-fits, functional prototypes.
Flame-retardant, self-extinguishing. Electronics housings, control cabinets.
Impact-resistant; ASA adds UV stability. Outdoor housings, automotive, site equipment.
Flexible, abrasion-resistant. Gaskets, grips, dampers, protective bumpers.
Wear-resistant, ductile. Gears, hinges, bushings, clips under repeated load.
Carbon-fibre nylon: stiff, dimensionally stable, light. Brackets, jigs, structural parts.
Polycarbonate: high strength, optionally transparent. Heat-exposed covers and structural prototypes.
Highest stiffness and heat resistance on the floor. Tooling, under-hood, industrial end-use.
Machined when tolerance or surface finish rules out printing. Threads, seats, precision bores.
High-temperature carbon-fibre nylon. Stiff and stable under heat and load — brackets, housings, machine parts.
Sliding polymer for bearings, guides and gears. Runs dry — no grease, no maintenance interval.
STEP, STL, 3MF, DXF, PDF drawings, photos of a broken part or a sketch — all work. You get a fixed price, a material recommendation and a lead time, from the engineer who will make the part.