Two-wheeled vehicle

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Two-wheeled vehicle

Streamlined Exterior Design

Clean, flowing body lines and an integrated front-face / side-panel design follow aerodynamic principles, effectively reducing wind resistance and improving range. Beyond aesthetics, this also fits the U.S. middle-class pursuit of “sweat-free exercise” and outdoor leisure.

Modular Structural Layout

The front instrument area, mid footboard section, and rear seat bucket / battery compartment all use a modular design for easy assembly and later maintenance. Users can also personalize the scooter — adding storage boxes or child seats, for example.

High-strength Lightweight Frame

The main frame uses high-strength steel or aluminum alloy; critical load points such as the main frame beam, steering column, and rear swingarm are reinforced for driving stability and crash safety — meeting U.S. user demands for safety and durability.

Ergonomic Footboard Design

The footboard is wide and flat with anti-slip texture, providing comfortable standing or sitting support. Generous space beneath it accommodates a large battery pack or storage box — ideal for short school runs or carrying sports gear.

Pre-installed Safety Interfaces

Both front and rear wheels have disc-brake mounting positions; tail lights, turn signals, and reflectors all have standard mounting holes, meeting mandatory national safety certification requirements and U.S. traffic safety regulations.

Technical Specifications

Applicable Model Urban commuter / leisure & sport e-scooter
Body Form Single-row / two-seater (optional)
Body Material High-strength cold-rolled steel + ABS engineering plastic covers
Painting Process Cathodic e-coat primer + top coat spraying
Main Dimensions Approx. 1.8 m – 2.0 m long, 0.7 m – 0.8 m wide
Net Weight Approx. 45 kg – 60 kg (excl. battery, motor, interior)
Footboard Area ≥ 350 mm × 250 mm, load capacity ≥ 150 kg
Battery Compartment Supports 48V / 60V lithium battery, capacity up to 20 Ah – 30 Ah
Max Load ≥ 150 kg (driver + passenger + cargo)

Footboard Mold — Special Notes

Optimized Structural Strength: The footboard mold uses a multi-cavity injection-molding process with internal reinforcement rib mesh, greatly improving compression and torsion resistance while keeping it lightweight, preventing long-term deformation.

Fine Surface Treatment: The footboard surface receives a special texture treatment with high friction coefficient — effective anti-slip even on wet surfaces. Edges are smoothly chamfered to prevent foot injuries.

Quick Mold-change Design: The mold supports fast changeover of different textures or colors of footboard panels to meet personalized customization needs and shorten production cycles.

Material Compliance: Non-toxic and odorless, meeting environmental standards.

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