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Home / News / What are the effects of output shafts of different materials on the service life of BWE21-59*87 cycloid pin wheel reducer

What are the effects of output shafts of different materials on the service life of BWE21-59*87 cycloid pin wheel reducer

Author: Site Editor     Publish Time: 30-09-2025      Origin: Site

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What are the effects of output shafts of different materials on the service life of BWE21-59*87 cycloid pin wheel reducer

BWE21-59*87 The output shaft of the cycloid pin wheel reducer is the core component that transmits torque and bears radial/axial loads. The mechanical properties of its material (strength, hardness, toughness, wear resistance, etc.) directly determine the shaft's failure resistance, which significantly affects the overall service life of the reducer. The impact of output shafts of different materials on service life needs to be comprehensively analyzed in combination with material characteristics, working condition loads and failure modes, as follows:


1. Core impact logic: Material performance determines 'failure resistance'

Common failure forms of reducer output shaft include: fatigue fracture (under long-term alternating loads), excessive wear (with bearings/seals), plastic deformation (overload or insufficient strength). The strength of the material (tensile/flexural strength), hardness (surface/core hardness), toughness (impact absorption work), and hardenability (overall performance uniformity) are key indicators to resist these failures, and ultimately reflected in the difference in service life.

2. The specific impact of output shafts of different materials on service life

Combined with the load characteristics of the BWE21-5987 model (5987 is a transmission ratio, with a large output torque, which belongs to the medium-heavy load conditions), the influence of mainstream materials is as follows:

3. Key conclusion: Material selection needs to match'Work condition + life target'


  1. Light load/low cost priority : Choose 45 steel to meet the foundation life, but the journal wear needs to be checked regularly to avoid replacement of the reducer in advance due to shaft failure;

  2. Medium heavy load/General scenario : Choose 40Cr (temperature + surface quenching), the highest cost-effectiveness, and the life span is more than 50% higher than 45 steel, suitable for most operating conditions of BWE21-59*87;

  3. Heavy load/long life requirements : Choose 20CrMnTi (carburizing quenching), although the cost is high, it can maximize the overall life of the reducer, reduce downtime losses, and have better long-term economicality;

  4. Special environment : Choose stainless steel for corrosion scenarios (surface hardening is required), and choose GCr15 for pure radial load without impact to avoid 'material mismatch' resulting in shortening of life.


In addition, the life of the output shaft is also related to the heat treatment process (such as uniform quenching, depth of the carburizing layer), processing accuracy (joint roundness, roughness) and use and maintenance (lubricating, load control). The material is the foundation and needs to be coordinated with other factors to achieve the design life.


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