Author: Site Editor Publish Time: 21-07-2026 Origin: Site
1. Core Selection strategy: look for "impact resistance" and "high rigidity"
For equipment such as briquetting machines, the first principle is strong impact resistance and smooth operation.
Preferred types: Cycloidal reducer or RV reducer. The cycloidal pinwheel reducer is impact-resistant and runs smoothly, making it very suitable for scenarios such as briquetting machines that require continuous operation and impact resistance. The RV reducer combines a planetary and cycloidal pinwheel structure, which is super rigid, resistant to heavy loads, and stable.
Type of pit avoidance: Try to avoid choosing ordinary worm gear reducer. Although it is low in cost and self-locking, it has low efficiency (60%-85%), large friction loss, severe heating, and is not suitable for high-frequency forward and reverse rotation and strong impact loads. It is easily damaged when used on a briquetting machine.
2. Calculation and matching of key parameters
Torque and safety factor (top priority): The ball press must not blindly rely on motor power alone Selection, but must calculate the actual required torque. The formula is: required output torque = (9550 × motor power) ÷ output speed. After calculating the theoretical value, it must be multiplied by a safety service factor of 1.5 to 2.0 (high impact load standards). For example, if it is calculated that 500N·m is required, you must choose a model with a rated torque of more than 750N·m, and avoid "small horses and big carts".
Reduction ratio matching: Calculate the reduction ratio based on the rated speed of the motor and the required speed of the pressure roller of the briquetting machine (reduction ratio = motor speed ÷ pressure roller speed), and give priority to the standard value to avoid the increased cost of non-standard customization.
Thermal power calibration: The briquette machine operates at high load for a long time and is prone to heat. Insufficient heat dissipation will lead to lubricant failure and accelerated gear wear. If the working conditions are severe, it is recommended to choose a model with a heat sink design or a cooling fan. If necessary, the chassis size can be increased by one to enhance the heat dissipation performance.
3. Cost-effective purchasing and pitfall avoidance guide
Be wary of low-price traps: Some low-priced reducers on the market may use recycled and refurbished gears or inferior materials (such as replacing alloy steel with ordinary steel), and their lifespan may be only one-tenth of that of genuine products. In continuous production scenarios, wear-resistant materials and formal processes must be used.
Confirm installation and protection dimensions: Be sure to check the motor flange size, output shaft diameter, and mounting hole location before purchasing. It is best to ask the manufacturer to provide a 3D model or drawing for comparison. At the same time, the briquetting machine site is usually very dusty, so a reducer with a fully sealed structure and high protection level (such as IP65) should be selected to prevent dust intrusion.
Investigate the manufacturer’s after-sales and warranty: The reducer is the core transmission component, and it is crucial to choose a manufacturer with a complete after-sales system. Ensure that when abnormal noise, oil leakage or failure occurs, the manufacturer can provide timely technical support or on-site maintenance services to avoid greater production losses caused by equipment shutdown.
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