3D preview of Split-Collar Scooter Handlebar Clamp (Front + Back Halves)
Loading the interactive model…
Interactive 3D model of Split-Collar Scooter Handlebar Clamp (Front + Back Halves)

Brackets and mounts

Split-Collar Scooter Handlebar Clamp (Front + Back Halves)

1 views
Bounding box
200.0 × 80.0 × 85.0 mm
Engine
Precision B-rep
Parameters
23
Published
September 11, 2026

Download

Free to download and use. See the terms.

The prompt

A functional, heavy-duty two-piece split-collar mechanical clamp engineered to brace a scooter handlebar assembly. The model must consist of two mating halves (a front piece and a back piece) designed to clamp together using machine hardware. Key geometric requirements: 1. Horizontal Clamping Channels: The main body must feature horizontal semi-cylindrical channels split in half. On the far left and far right ends, the channels must expand into larger, thick concentric collar cuffs to grip the outer sections of a handlebar. 2. Center Headlight Clearance: The middle section of the front half must feature a prominent, raised, integrated central housing that forms a smooth circular or rectangular cutout slot to clear an integrated e-scooter headlight lens. 3. Vertical Stem Interlock: The bottom center of the bracket must extend downwards into a short, split vertical clamp column to anchor onto the vertical steering stem neck. 4. Flange Hardware Holes: The model must incorporate external flat mounting flanges built around the central headlight housing and along the horizontal cuffs. Include exactly six aligned clearance through-holes for M5 bolts (two on the upper left/right flanges, two on the middle left/right flanges, and two on the bottom vertical stem column). One half of the model must have flat surfaces for bolt heads, and the mating half must feature deep, recessed hexagonal counter-bore pockets to completely trap M5 locking nuts. All structural transitions must feature smooth fillets to avoid sharp interior 90-degree corners. Ensure the output is a clean, solid, manifold B-Rep geometry exported as a parametric STEP or high-density STL file.

Parameters

NameValueRange
Overall Length200 mm120 – 300
Depth per Half36 mm24 – 50
Body Height60 mm40 – 90
Handlebar Channel Radius11 mm6 – 16
End Collar Cuff Bore Radius15 mm8 – 20
Collar Cuff Length40 mm15 – 70
Channel Axis Height33 mm20 – 45
Centre Block Half-Length30 mm15 – 45
Headlight Housing Radius24 mm14 – 28
Headlight Housing Standoff8 mm2 – 16
Lens Cutout Radius12 mm5 – 18
Lens Pocket Depth in Body6 mm2 – 12
Vertical Stem Bore Radius11 mm5 – 16
Stem Column Half-Width25 mm14 – 40
Stem Column Drop25 mm10 – 45
M5 Clearance Hole Dia5.5 mm3 – 9
Nut Pocket Across-Flats8.6 mm5 – 15
Nut Pocket Depth5.5 mm2 – 12
Upper/Middle Hole X Offset55 mm35 – 90
Upper Hole Height52 mm35 – 55
Middle Hole Height13 mm5 – 22
Stem Hole X Offset17 mm5 – 35
Stem Hole Height (below 0)-14 mm-22 – -5

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.