C05-132LUA-1500W Transaxle For Twinca Royal Effective Feeding Machine

Short Description:

C05-132LUA-1500W Transaxle is an electric drive axle designed for Twinca Royal Effective Feeding Machine, aiming to provide efficient and stable power support for the equipment. This drive axle combines advanced motor technology and a sophisticated transmission system to ensure excellent performance in various working environments


Product Detail

Product Tags

Product parameters
Motor: 132LUA-1500W-36V-3500r/min;
Type: Brushed motor
Ratio: 25:1, 35:1; 57:1; 77:1; Ensures stable operating speed while providing strong power
Brake system: Built-in electromagnetic brake, providing 12N.m braking force, ensuring that the equipment can stop quickly in an emergency

1500w transaxle

What is special about this drive axle in terms of maintenance?

The C05-132LUA-1500W Transaxle has the following special features in terms of maintenance:

Maintenance advantages of structural design
Integrated design: The drive axle adopts a highly integrated design of motor, transmission and drive axle, reducing the complex mechanical connection components in the traditional transmission system. This integrated design not only improves the transmission efficiency, but also simplifies the maintenance process and reduces the maintenance cost and time. For example, there is no need to frequently check and maintain the drive shaft, clutch and other components like the traditional transmission system

Modular structure: The main components of the drive axle, such as the motor and transmission, are all modularly designed. When a problem occurs in a component, the corresponding module can be quickly replaced without overhauling the entire drive axle. This modular design improves the convenience and efficiency of maintenance, while also reducing maintenance costs.

Maintenance advantages of materials and manufacturing processes
Durable materials: The drive axle adopts high-strength steel and aluminum alloy materials. These materials have excellent wear resistance, corrosion resistance and fatigue resistance, and can be used for a long time in harsh working environments without being easily damaged. For example, aluminum alloy materials are not only light in weight, but also have good heat dissipation performance, which helps to reduce the temperature of the motor and transmission and extend their service life
Precision manufacturing process: Advanced manufacturing processes such as precision gear processing and high-precision bearing assembly are adopted. These processes ensure the high precision and high reliability of each component of the drive axle, reduce the probability of failures caused by manufacturing defects, and thus reduce the maintenance frequency and difficulty.

Maintenance advantages of protection and lubrication system
Good protection performance: The drive axle has a high protection level and can effectively prevent the intrusion of external pollutants such as dust and water. For example, the IP65 protection level design enables the drive axle to resist the erosion of rain and dust when used outdoors, reducing the failure and maintenance requirements caused by the entry of pollutants

Optimized lubrication system: Equipped with an efficient lubrication system, it can provide continuous and uniform lubrication for key components of the drive axle such as gears and bearings. Good lubrication can reduce friction and wear between components, extend their service life, and also reduce the inspection and replacement frequency of the lubrication system during maintenance.

Maintenance advantages of electronic system
Intelligent monitoring and diagnosis: The electronic system of the drive axle has intelligent monitoring and fault diagnosis functions. Through the built-in sensors and diagnostic modules, the motor’s operating status, temperature, current and other parameters can be monitored in real time, and an alarm can be issued in time when an abnormality occurs. This enables maintenance personnel to quickly locate the cause of the fault, carry out targeted maintenance and repairs, and improve the efficiency and accuracy of maintenance.
Reliability of the electromagnetic brake system: The built-in electromagnetic brake system has automatic adjustment and self-diagnosis functions. In the event of power failure or emergency, the electromagnetic brake can automatically start to ensure the safe stop of the equipment. At the same time, the maintenance of the electromagnetic brake system is relatively simple, and only requires regular inspection of the wear of the electromagnetic coil and brake disc, and necessary replacement or adjustment


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