Leave Your Message
Pumbaa Electric 4.5T Logistics Truck Chassis – Top China Suppliers and Factory Solutions
Hot Products

Pumbaa Electric 4.5T Logistics Truck Chassis – Top China Suppliers and Factory Solutions

Introducing the Pumbaa three-phase permanent magnet synchronous motor, a cutting-edge solution manufactured in China. This high-performance motor features a CATL angle of 86.55°, ensuring optimal efficiency for various applications. Our robust design includes a front axle rated at 1.8T, equipped with a reliable drum brake system for enhanced safety and performance. The rear axle boasts a powerful 3.5T electric drive bridge, also utilizing a drum brake system, making it an ideal choice for demanding environments. As a reputable factory and one of the leading suppliers, we are committed to delivering top-quality products that meet the highest industry standards.

    Powertrain parameters

    Maximum speed 12000r/min
    Rated/peak torque 120/350NM
    Rated/peak power 60/120KW

    Applications: 4.5T logistics vehicle electric chassis

    logistics vehicle electric chassis (2)
    logistics vehicle electric chassis (3)

    Development and Evolution of Automotive Chassis Components in the Era of Electrification and Intelligence

    The automotive chassis is one of the key components of a vehicle, primarily consisting of four systems: the transmission system, running system, steering system, and braking system. It plays a crucial role in the overall performance of the vehicle.

    Functions and Composition of the Automotive Chassis

    The chassis supports and installs the engine, electrical equipment, and accessories, forming the vehicle’s overall shape. It receives power output from the engine, transmits it to the drive wheels through various mechanisms, enables the vehicle to move, and ensures normal operation.

    logistics vehicle electric chassis (4)

    The chassis comprises four systems:

    • Transmission System: Transfers power from the engine to the drive wheels.
    • Running System: Supports the vehicle’s mass and absorbs/transmits various forces exerted by the road surface on the wheels.
    • Steering System: Ensures the vehicle travels in the direction selected by the driver.
    • Braking System: Slows or stops the vehicle as required by the driver, ensuring driving safety and reliable parking.

    Two Approaches to EV Chassis Design

    1. Modified Traditional Chassis Design: This method maximally retains original chassis designs, modifying only necessary parts. It features low development difficulty, cost, and cycle time, while enabling platform sharing with traditional vehicles and extensive reuse of mature traditional components. However, it faces constraints such as limited universality, greater complexity in overall layout, and lower modular integration.

    2. Dedicated EV Platform Development: Free from many constraints of shared fuel vehicle platforms, this approach allows for more optimized, highly integrated, and superior-performing chassis designs. Dedicated platforms have thus become a new trend in EV chassis development.

    logistics vehicle electric chassis (5)

    Future Prospects

    With China’s rapid economic growth, research on electric vehicles has become increasingly comprehensive, and public understanding and acceptance of EVs continue to rise. As a critical vehicle component, the chassis directly impacts overall performance and is closely linked to improving and enhancing vehicle safety.

    In the future, with further advancements in EV manufacturing technology, EV chassis systems will become more intelligent and user-friendly, while their safety and reliability will be further enhanced.

    Frequently Asked Questions

    Q What are the key powertrain parameters of the 4.5T logistics vehicle electric chassis?

    The electric chassis features a maximum speed of 12000r/min, a rated/peak torque of 120/350NM, and a rated/peak power of 60/120KW.

    Q What are the four primary systems that make up an automotive chassis?

    An automotive chassis primarily consists of four essential systems: the transmission system, running system, steering system, and braking system.

    Q What is the difference between a modified traditional chassis and a dedicated EV platform?

    A modified traditional chassis adapts existing fuel-vehicle designs to save costs and development time but has lower modular integration. A dedicated EV platform is designed from scratch, removing fuel-vehicle constraints to achieve highly integrated, optimized, and superior-performing chassis layouts.

    Q How does the transmission system contribute to the vehicle's operation?

    The transmission system is responsible for transferring the generated power from the engine or electric motor directly to the drive wheels to enable vehicle movement.

    Q What are the future development trends for electric vehicle chassis systems?

    Driven by advancements in EV manufacturing technology, future chassis systems will become increasingly intelligent, user-friendly, safe, and highly reliable.