152.4346.270.0
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Interactive 3D model of Robotic Car-Washing End Effector Exploded View

Brackets and mounts

Robotic Car-Washing End Effector Exploded View

18 views
Bounding box
346.2 × 152.4 × 70.0 mm
Engine
Precision B-rep
Parameters
41
Published
August 7, 2026

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The prompt

Create a detailed conceptual 3D CAD model of a robotic car-washing end effector for a consumer autonomous vehicle maintenance robot. The overall housing is a compact rounded-square (squircle) measuring approximately 6 inches × 6 inches × 2 inches thick with smooth radiused corners and an industrial, premium appearance. The housing should be designed for aluminum or carbon fiber construction. Working Face (Vehicle Side): • Centered high-resolution camera protected by a transparent circular lens. • Circular LED light ring surrounding the camera. • Four evenly spaced proximity/ToF sensors positioned around the camera. • Three recessed spray nozzles (Air, Steam, Cleaning Solution) located together on one corner of the housing, angled approximately 20 degrees toward the cleaning surface. The working face incorporates a dual-layer cleaning mechanism consisting of: • One circular microfiber polishing pad approximately 4.5 inches in diameter. • One circular ultra-soft makeup-style bristle brush approximately 3.75 inches in diameter. The brush and microfiber are stacked vertically on the same center axis, not side-by-side. The entire cleaning stack is driven by: • One shared brushless DC orbital (dual-action) drive motor. • One eccentric orbital mechanism similar to a professional DA automotive polisher. • Design a compact mechanism that selectively lowers either the brush or microfiber by approximately 0.5 inches while keeping the camera, sensors, LEDs, and spray nozzles fixed.During operation: • The actuator lowers only one cleaning surface at a time. • Brush extends for gentle agitation when required. • Microfiber extends for normal cleaning and final finishing. • Both cleaning surfaces share the same orbital drive system. Internal components should include conceptual mounting locations for: • Orbital drive motor • Linear actuator • Camera electronics • Air tubing • Steam tubing • Cleaning solution tubing • Electrical wiring channels Include a rear mounting flange compatible with attachment to a 6-axis robotic arm wrist. The design should prioritize: • Compact packaging • Minimal moving parts • Internal hose routing • Easy maintenance • Modular construction • Paint-safe operation • Premium consumer product aesthetics Produce an engineering concept with exploded view, sectional view showing internal mechanisms, and an assembled isometric view. Do not include decorative styling beyond functional industrial design.

Parameters

NameValueRange
Layout Gap20 mm5 – 100
Housing Width152.4 mm50 – 300
Housing Depth152.4 mm50 – 300
Housing Height50.8 mm10 – 100
Corner Radius25 mm1 – 50
Camera Body Diameter30 mm10 – 60
Camera Body Height15 mm5 – 30
Lens Diameter20 mm10 – 30
Lens Thickness3 mm1 – 8
LED Ring OD60 mm30 – 100
LED Ring ID40 mm10 – 80
LED Ring Thickness5 mm1 – 15
Sensor Diameter8 mm3 – 20
Sensor Height5 mm2 – 15
Sensor Count42 – 8
Sensor Radius25 mm10 – 50
Nozzle Diameter6 mm2 – 15
Nozzle Length10 mm5 – 30
Nozzle Tilt (deg)20 °0 – 45
Nozzle Offset X60 mm10 – 100
Nozzle Offset Y60 mm10 – 100
Nozzle Spacing5 mm2 – 15
Microfiber Pad Dia114.3 mm50 – 200
Microfiber Thickness10 mm2 – 25
Brush Diameter95.25 mm50 – 200
Brush Thickness10 mm2 – 25
Motor Diameter40 mm20 – 80
Motor Length60 mm30 – 120
Eccentric Dia20 mm10 – 50
Eccentric Length30 mm10 – 60
Eccentric Offset5 mm1 – 20
Actuator Length40 mm20 – 80
Actuator Width20 mm10 – 50
Actuator Height20 mm10 – 50
Tubing Bundle Dia15 mm5 – 40
Tubing Bundle Length50 mm20 – 100
Flange OD100 mm60 – 200
Flange Thickness10 mm3 – 25
Bolt Circle Dia80 mm40 – 180
Bolt Count43 – 12
Bolt Hole Dia5 mm2 – 15

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.