Description
Technical Parameters
Escalator and Autowalk Escalator: The Continuous Vertical Transportation Workhorse
An escalator is a motor-driven, moving staircase that carries people between floors of a building, offering a seamless alternative to elevators for high-traffic areas. It consists of a rotating loop of steps, handrails synchronized with step movement, and a metal truss housing the mechanical components.
Core Functions
- Continuous Flow: Transports up to 10,000 people per hour (higher than elevators), ideal for busy locations.
- Accessibility: Eliminates the need for waiting, providing instant vertical movement for pedestrians.
- Safety Features: Includes step demarcation lines, handrail speed sensors, and emergency stop buttons to prevent accidents.
Working Principle
Escalators operate via a traction drive system:
- A main motor rotates a drive gear, which moves a chain loop connected to step axles.
- Steps pivot on tracks, forming a flat landing at the top/bottom and a staircase in between.
- Handrails are driven by the same motor via a pulley system, ensuring they move at the same speed as steps (±2% tolerance).
- Sensors detect overload or obstructions, triggering automatic stops if needed.
Technical Characteristics
- Capacity: Ranges from 600 (small) to 13,000 (large) passengers per hour, depending on step width (800–1200mm).
- Speed: Typically 0.5m/s (adjustable to 0.65m/s for high-traffic areas), balancing safety and efficiency.
- Durability: Steps are made of aluminum or stainless steel, resistant to wear and corrosion; handrails use rubberized materials for grip.
- Energy Efficiency: Modern models use LED lighting and standby modes (reduced speed when idle) to cut power use by 20–30%.
Application Scenarios
- Public Spaces: Airports, train stations, and shopping malls (high foot traffic).
- Commercial Buildings: Office towers and department stores (convenience for daily commuters).
- Transport Hubs: Subway stations and bus terminals (connecting platforms to exits).
- Retail & Hospitality: Malls, hotels, and supermarkets (enhancing customer flow).
Escalators blend functionality with reliability, making them indispensable for modern urban infrastructure.
30º/35º escalator specifications
| Number of support points |
Step width (mm) |
Supprting force R1(KN)L:M |
Supprting force R2(KN)L:M |
Supprting force RM(kn)L:M |
|||
| 3 | 800 | 2.58xL+15 | 2.58xL+8 | 6.95xL+15 | |||
| 1000 | 2.78xL+15 | 2.78xL+8 | 7.75xL+15 | ||||
| 2 | 600 | 4.19xL+24 | 4.19xL+19 | ||||
| 800 | 4.89xL+19 | 4.89xL+13 | |||||
| 1000 | 5.49xL+17 | 5.49xL+10 | |||||
| Angle of inclination C) |
Speed (m/s) |
Traveling height H(mm) |
Horzontal span H(mm) |
Step width B(mm) |
Spacing of handrall C(mm) |
Width of escalator D(mm) |
Width of truss A(mm) |
Upper head extension DM1(mm) |
Lower head extension DM2(mm) |
||||
| 30 | 0.5 | H≤6000 | L | 600 | 837 | 1200 | 1160 | 0~500 | 0~500 | ||||
| 800 | 1037 | 1400 | 1360 | ||||||||||
| 1000 | 1237 | 1600 | 1560 | ||||||||||
| 35 | 0.5 | H≤6000 | L | 600 | 837 | 1200 | 1160 | 0~500 | 0~500 | ||||
| 800 | 1037 | 1400 | 1360 | ||||||||||
| 1000 | 1237 | 1600 | 1560 | ||||||||||
| The schematic Drawing of civil work is for reference only | |||||||||||||
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