Flat-top Rubber Speed Tables

✨ Key Benefits of Our Products:

Flat-top Rubber Speed Tables

Description

Flat-top Rubber Speed Tables are premium traffic-calming devices designed to slow down vehicles effectively in residential areas, school zones, parking lots, hospitals, commercial complexes, and industrial roads. Unlike standard speed bumps, flat-top speed tables feature a wider, leveled middle section, providing smoother crossing while still reducing vehicle speed safely.

Made from high-strength recycled rubber, these speed tables offer exceptional durability, weather resistance, and load-bearing performance. Their modular design allows easy installation in various lengths and widths, making them suitable for both light and heavy vehicle traffic. High-visibility reflective strips ensure excellent nighttime visibility.

Key Benefits

1. Effective Traffic Calming

Reduces vehicle speed without causing discomfort to passengers, ideal for pedestrian-heavy zones.

2. Flat-Top Safe Design

The extended flat surface allows a smoother ride over the speed table while still forcing drivers to slow down.

3. Heavy-Duty Rubber Construction

Made from durable recycled rubber that withstands heavy loads, constant use, and extreme weather.

4. High Visibility Reflectors

Bright yellow/white reflective strips ensure drivers can see the speed table even at night.

5. Weather, UV & Oil Resistant

Does not crack, fade, or deform under sunlight, rain, snow, oil spills, or temperature changes.

6. Modular & Easy Installation

Sections can be combined to create any length; installation requires basic anchorsβ€”no specialized tools.

7. Noise & Vibration Reduction

Rubber absorbs impact and reduces noise compared to concrete or plastic speed breakers.

8. Suitable for All Road Types

Ideal for:

  • Residential neighborhoods

  • School zones

  • Parking lots

  • Hospitals

  • Commercial complexes

  • Private roads

  • Industrial areas

9. Eco-Friendly

Made from recycled rubber, contributing to sustainable road safety solutions.