75.0330.030.5
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Interactive 3D model of Two-Part Maglev Vehicle Chassis (Exploded)

Brackets and mounts

Two-Part Maglev Vehicle Chassis (Exploded)

3 views
Bounding box
330.0 × 75.0 × 30.5 mm
Engine
Precision B-rep
Parameters
25
Published
August 30, 2026

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The prompt

Hier ein Prompt, den du für ein KI-CAD-Tool (z.B. Zoo Text-to-CAD, oder als Bau-Vorgabe für dich selbst in Tinkercad/Fusion 360) verwenden könntest. Ich hab die Masse als Richtwerte angegeben, basierend auf den Bauteilen, die wir besprochen haben – die kannst du anpassen, sobald du die genauen Komponenten in der Hand hast: "Design a 3D-printable (FDM) two-part vehicle chassis for a small magnetic levitation model train, approx. 150mm long × 75mm wide × 55mm tall total. Lower shell (open-top tray, wall thickness 2mm): flat bottom surface for print-bed adhesion. On the underside, two recessed rectangular slots (20×10×5mm each) near the front end to mount two drive coils angled slightly downward toward the track. Next to each coil slot, a small circular cutout (8mm diameter) to mount a Hall-effect sensor module flush with the bottom surface, facing down. Along both long edges of the bottom, a shallow channel (15×5mm, running the full length) to hold flat levitation magnets facing downward and outward. Small wire-routing holes (4mm) connecting the bottom cavities to the interior. Interior: open cavity to fit an Arduino Uno (68×53mm), an ESP32 dev board (45×18mm), an INA219 breakout, and two small battery packs (max 40×30×15mm each), each held by 2mm-tall snap-in corner tabs. Include 4 M3 standoffs (6mm tall) for the Arduino Uno's mounting holes. Upper shell (lid): snap-fit or friction-fit onto the lower shell's perimeter lip (0.3mm clearance), removable without tools, with a small ventilation slot pattern. Flat mounting boss (10mm diameter, 3mm tall) on top-front for a small colored tracker marker, and a 5mm through-hole near the rear for an LED to poke through. Both parts: no overhangs steeper than 45° (print without supports), rounded outer edges (2mm fillet) for a clean aerodynamic look, no unnecessary ornamentation — functional, technical appearance. Output as separate STL files for lower shell and lid."

Parameters

NameValueRange
Lower Shell Length150 mm100 – 200
Lower Shell Width75 mm50 – 120
Lower Shell Height30 mm20 – 60
Wall Thickness2 mm1 – 5
Coil Slot Length20 mm10 – 50
Coil Slot Width10 mm5 – 30
Coil Slot Depth5 mm2 – 15
Hall Sensor Cutout Diameter8 mm3 – 20
Magnet Channel Width15 mm5 – 30
Magnet Channel Depth5 mm1 – 10
Wire Routing Hole Diameter4 mm2 – 10
Arduino Standoff Diameter6 mm3 – 12
Arduino Standoff Hole Diameter3 mm1 – 8
Arduino Standoff Height6 mm3 – 20
Upper Shell Length150 mm100 – 200
Upper Shell Width75 mm50 – 120
Upper Shell Height25 mm10 – 60
Vent Slot Length12 mm5 – 40
Vent Slot Width3 mm1 – 10
Vent Slot Count4 mm1 – 12
Vent Slot Spacing15 mm5 – 50
Tracker Mount Boss Diameter10 mm5 – 30
Tracker Mount Boss Height3 mm1 – 10
LED Hole Diameter5 mm2 – 15
Exploded Layout Gap30 mm1 – 100

Every value above is a live dimension. Open a model like this in the editor and each one becomes a slider you can drag before exporting.