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4.5T Rear E-Axle for Light Trucks | China Suppliers & Factory for New Energy Vehicles
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4.5T Rear E-Axle for Light Trucks | China Suppliers & Factory for New Energy Vehicles

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PUMBAA E-Axle Product Overview

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The PUMBAA E-Rear Axle, designed specifically for light commercial vehicles in China, seamlessly combines the motor, propeller shaft, and drive axle into one compact unit. This innovative solution is ideal for new energy logistics light trucks and specialized vehicles, boasting a Gross Vehicle Weight (GVW) ranging from 4.5t to 7.5t. As a leading factory and supplier in the industry, PUMBAA is committed to providing cutting-edge technology for efficient and sustainable transportation solutions.

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    Pumbaa E-Axle Product Introduction

    1. PUMBAA E-Rear Axle for Light Commercial Vehicles integrates "motor, propeller shaft, and drive axle" into a single unit, suitable for new energy logistics light trucks and special-purpose vehicles with a Gross Vehicle Weight (GVW) ranging from 4.5t to 7.5t.

    2. Optional rear axle configurations:
    Brake Type

    Hydraulic brake drum brakes, pneumatic brake drum brakes ("S"-cam, wedge-type), or pneumatic brake disc brakes.

    Reducer Type

    1-speed reduction or 2-speed reduction.

    Wheel End Structure

    Maintenance-free hub units.

    3. Key features of the electric drive rear axle product:
    Lightweight Design

    The rear axle assembly features a compact structure, small footprint, and low weight. It effectively frees up chassis space, facilitating overall vehicle chassis layout.

    High Load-Bearing

    The rear axle housing is integrally stamped and welded from high-strength steel plates, delivering strong load-bearing performance and excellent reliability.

    High Efficiency

    The highly integrated transmission system (motor directly drives the rear axle, eliminating the propeller shaft) boosts transmission efficiency, reduces power loss, and achieves a comprehensive efficiency over 5% higher than traditional direct-drive systems.

    High Cost-Effectiveness

    With a system weight reduction of over 50kg, 100% torque reversal, and regenerative energy recovery, it significantly extends the vehicle’s range while lowering usage costs.

    Pumbaa 4.5T e-drive rear axle
    Pumbaa 4.5T rear E-axle parameters

    Model: PMQX2100100A-4.5/160

    Rear axle product structure and function diagram:

    Rear Axle Diagram
    Pumbaa 4.5T rear e-axle Configuration Parameters
    Rated Load (kg) 4500 Speed ratio 16.55
    Maximum Load (kg) 7500 Maximum Torque (N.m) 6600
    Maximum Speed (Km/h) ≥100 Maximum Gradeability 25%
    Sustainable Speed (Km/h) 80 Axle housing structural form Stamping and welding
    Rim mounting surface distance A (mm) 1570±2 Axle housing cross section (mm) 106×106×6
    Spring Distance B (mm) 950±1 Brake specification Air brake 310×100 (wedge type)
    Wheel bolt distribution circle C (mm) ø222.25 Brake air chamber specification 16'/16′
    Wheel bolt 6-M20×1.5 Single braking torque 0.65Mpa, 7260N.m
    Rim flange diameter ø163.8 Hub mounting surface distance 1496-1612
    Compatible tire 7.0×R16 Compatible rim 5.5J×16
    Wheel alignment method Flange positioning
    Optional configuration Maintenance-free hub unit; Air brake drum-type "S" cam brake; Disc brake
    Motor type PMSM Protection Rating IP67
    Motor peak power (Kw) 150 Motor rated voltage (VDC)(V) 540
    Motor rated power (Kw) 75 Voltage operating range (VDC)(V) 350~750
    Motor peak torque (N.m) 400 Motor maximum speed (rpm) 12000
    Motor rated torque (N.m) 180 Motor rated speed (rpm) 3979
    Insulation Class H Duty S9

    Pumbaa 4.5T rear E-axle inspection and test:

    Pumbaa 4.5T Rear E-Axle Inspection and Test
    Vehicle Parameters By Pumbaa 4.5T rear E-axle
    Curb weight (kg) 3680
    Full Load/Overloaded Gross Mass (kg) 4500/7500
    Tire model 7.50R16LT
    Maximum Gradeability 25%
    Vehicle Maximum Parking Gradeability 20%
    Maximum Speed (km/h) 100
    Economic Speed (km/h) 60~80
    0~50km/h Acceleration Time (S) ≤15
    30~0km/h Braking Distance (m) ≤10 (Unladen), ≤12 (Full Load)
    Application for Pumbaa 4.5T rear E-axle: light trucks

    The 4.5-ton electrically driven axle product with power take-off (PTO) is applicable to special purpose vehicles with specialized superstructures equipped with hydraulic systems, such as those for garbage compression, garbage collection and transportation, high-altitude operation, and road obstacle clearance.

    E-axle: The Core Power Component of Electric Vehicles

    In the current wave of the automotive industry’s transition to electric vehicles (EVs), EVs—with their environmentally friendly and efficient attributes—are gradually emerging as the market mainstream. Within the complex system architecture of EVs, the e-axle shines like a bright pearl: as the core power component, it underpins the efficient operation of EVs and plays a decisive role in their performance, energy efficiency, and overall driving experience.

    E-Axle System Structure
    I. Structural Analysis: A Highly Integrated Complex System

    From a structural perspective, the e-axle is a highly integrated and sophisticated system. It seamlessly combines three key components: the electric motor, reducer, and differential.

    • Electric Motor: The power source of the entire system, it operates on the law of electromagnetic induction to convert electrical energy into mechanical energy efficiently. This provides a continuous, robust driving force that silently propels the EV forward.
    • Reducer: Acting like a precision regulator, its primary mission is to adjust speed and torque. Under varying driving conditions—start-up, acceleration, hill-climbing, or high-speed cruising—the reducer fine-tunes the motor’s output to ensure stable performance in all scenarios.
    • Differential: An ingenious design that enables left and right wheels to rotate at different speeds when turning. Though simple in concept, this feature is critical: it ensures smooth, stable cornering, prevents wheel slippage and wear, and drastically improves driving safety and comfort.

    This integrated design is not merely a space optimization—it also minimizes energy transfer links between components, reducing energy loss and significantly boosting energy utilization efficiency.

    II. Performance Enhancement: The Key to EV Excellence

    The e-axle delivers outstanding improvements to EV performance:

    • Power Output: It provides strong, stable torque. When the driver presses the accelerator, the axle responds instantly, enabling rapid acceleration from a standstill—delivering a smooth, lightning-fast driving feel. Compared to traditional internal combustion engine (ICE) vehicles (which suffer delays and energy loss from multi-component power transmission), the e-axle eliminates lag, giving drivers precise speed control and a responsive, dynamic experience.
    • Range: It plays an indispensable role in extending range. Through optimized design and advanced materials, it reduces energy loss during transmission. This means EVs with high-quality drive axles can travel farther on the same battery charge—alleviating consumers’ “range anxiety” and making EVs more convenient and reliable.
    Range Performance
    III. Technological Trends: Toward Higher Efficiency, Intelligence, and Integration

    From a technology development standpoint, e-axles are evolving rapidly toward three goals:

    1. Greater Efficiency: Advances in motor technology have boosted power density while shrinking size—like fitting a powerful heart into a compact body, delivering more power in less space.

    2. Enhanced Intelligence: By integrating sensors and advanced control systems, the axle acts as a “smart brain,” monitoring its status and vehicle conditions in real time. It adjusts power output automatically based on factors like road conditions, speed, and driving habits—enabling precise energy management. For example, it reduces power in congested urban traffic to save energy and delivers full power on highways for safety.

    3. Deeper Integration: Ongoing innovations in reducer and differential design (using advanced gears and manufacturing processes) improve transmission efficiency and reliability.

    IV. Challenges: Cost, Reliability, and Beyond

    Despite progress, the e-axle faces hurdles:

    High R&D and Manufacturing Costs: Advanced technology and precision processes require significant investment, limiting EV affordability and consumer adoption.

    Reliability Demands: As the EV market grows, consumers expect higher performance and reliability. Since the drive axle is the core power component, its quality directly impacts the entire vehicle. Balancing high performance with cost reduction and reliability improvement remains a key technical challenge.

    Reliability Demands
    V. Strategic Path: Driving Toward a Sustainable Future

    To maximize its potential, the e-axle must adopt a strategy focused on high efficiency, integration, and intelligence. This includes:

    ● Breaking through bottleneck technologies via industrial chain collaboration.

    ● Matching diverse needs with scenario-based innovation.

    Only by doing so can we shift EVs from “policy-driven” to “technology-driven,” ultimately achieving global competitiveness and sustainable industrial development—dual goals for the EV ecosystem.

    This translation balances technical accuracy with readability, preserving the original’s logical structure and emphasizing the e-axle’s role as the “heart” of EVs. Key terms (e.g., range anxiety, bottleneck links) are rendered consistently to align with industry conventions.

    Frequently Asked Questions (FAQ)
    What type of vehicles is the Pumbaa E-Rear Axle suitable for?
    It is designed for new energy logistics light trucks and special-purpose vehicles with a Gross Vehicle Weight (GVW) ranging from 4.5t to 7.5t.
    What are the core components integrated within the E-axle?
    The e-axle is a highly integrated system that combines the electric motor (power source), the reducer (speed and torque regulator), and the differential (enabling different wheel turning speeds) into one compact unit.
    What are the main advantages of the integrated electric drive rear axle?
    Key benefits include a lightweight design that frees up chassis space, high load-bearing capacity with stamped/welded high-strength steel housing, higher transmission efficiency (over 5% increase compared to traditional systems), and high cost-effectiveness due to system weight reduction and regenerative energy recovery.
    What optional configurations are available for the Pumbaa rear axle?
    Options include hydraulic drum brakes, pneumatic drum brakes ("S"-cam or wedge-type), or pneumatic disc brakes. It also offers 1-speed or 2-speed reducers and maintenance-free hub units.
    What specialized applications support the 4.5T rear E-axle with Power Take-Off (PTO)?
    It is ideal for special-purpose vehicles equipped with hydraulic superstructures, such as garbage compression trucks, garbage collection and transportation vehicles, high-altitude work platforms, and road obstacle clearance vehicles.
    What are the main technical challenges facing e-axle development?
    The primary challenges lie in high R&D and manufacturing costs due to precision processes, and meeting the high reliability demands of the EV market while balancing overall system performance and cost.