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  • 25-10-30
    The detection of the natural frequency of the DCY500-18-II reducer system requires a combination of experimental testing and numerical simulation. The specific method is as follows: 1、 Experimental testing method Hammer method (modal analysis) Use a force hammer to strike the gearbox housing, collect vibration response signals through an acceleration sensor, and identify the frequency corresp
  • 25-10-30
    This issue is crucial. Abnormal meshing of the worm gear and worm in the WPWA175-20-A reducer can directly affect core performance such as transmission efficiency and operational stability, and may also cause chain failures. 1、 Decreased core transmission performance The transmission efficiency is significantly reduced, the friction on the meshing surface increases or the contact is poor, resu
  • 25-10-29
    The PWU125-63 worm gear reducer belongs to the PW series planar secondary enveloping toroidal worm gear reducer, where "PWU" represents the worm gear below the worm wheel, "125" represents the center distance of 125mm, and "63" represents the nominal transmission ratio of 63. PWU125-63 worm gear reducer is widely used in various industrial fields due to its high load-bearing capacity, smooth trans
  • 25-10-29
    The core working principle of PWU140 worm gear reducer is the meshing transmission of "worm driven worm gear" to achieve deceleration and torque amplification. Core transmission logic Power input: The motor drives the worm to rotate at high speed, and the helical tooth surface of the worm precisely meshes with the gear teeth of the worm wheel. Motion conversion: The spiral line of the worm
  • 25-10-28
    The RX61-1.86-4 gearbox has excessive meshing clearance due to gear wear, which can cause problems such as operating noise, increased vibration, and decreased transmission efficiency. Targeted measures need to be taken according to the degree of wear, with the core being to restore gear meshing accuracy and avoid the expansion of faults. The specific solutions are as follows: 1、 First evaluate th
  • 25-10-28
    The question you raised is crucial. The WHS200-50-10 worm gear reducer has abnormal noise, and the core causes are concentrated in three categories: abnormal lubrication, component wear or damage, and installation deviation. The specific situations can be decomposed into the following categories. 1、 Lubrication system issues This is one of the most common causes of abnormal noise, as lubrication
  • 25-10-27
    To ensure the relative positional accuracy between the motor and SCWS80-50-2 reducer, the core is to control the error throughout the entire process from base leveling, shaft alignment to component connection through "benchmark alignment, step-by-step fixation, and precise measurement", ultimately achieving the three key parameters of levelness, coaxiality, and spacing. 1、 Preparation in advance:
  • 25-10-27
    Monitoring the axial displacement of the gear shaft of the RX97-4.5-11KW-4P reducer involves a combination of "static measurement" and "dynamic monitoring" to accurately capture the axial displacement of the shaft. The commonly used tools are dial gauges or micrometers, and the operation should follow the principle of "fixed reference, vertical measurement". 1. Static measurement (stop state, pre
  • 25-10-24
    In addition to the filtering and time-domain averaging mentioned earlier, the signal-to-noise ratio can be further improved through three techniques: signal transformation to enhance effective components, noise characteristic adaptation suppression, and multi-source information fusion. These methods are more suitable for the non-stationary and periodic characteristics of gearbox vibration signals.
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