Author: Site Editor Publish Time: 01-09-2025 Origin: Site
According to the three indicators of 'actual oil temperature + surface temperature + temperature rise rate': the actual oil temperature is ≤95 ℃, the surface temperature is ≤85 ℃, the temperature rise ≤ambient temperature + 40 K; if any exceeds the limit or rises rapidly within 15 minutes, stop the machine and check immediately.
Upper oil temperature limit: ≤95 ℃ (equilibrium oil temperature).
Surface temperature: ≤85 ℃.
Temperature rise rate: A warning will be made if it rises rapidly within 15 minutes.
Ambient temperature: -40~40 ℃; preheat or use low condensed oil when <0 ℃.
Measure oil temperature: After shutdown for ≥10 minutes, insert the rod thermometer from the dipstick/sampling port for ≥2 minutes to read; during operation, the fixed temperature measurement point close to the oil tank shall prevail.
Review surface: Use an infrared thermometer to measure the middle part of the housing or bearing seat, ≤85 ℃; when the oil temperature is ≥85 ℃ and the oil temperature is close to 95 ℃, stop the machine immediately.
Calculate temperature rise: Temperature rise=actual measured oil temperature - ambient temperature; if it rises rapidly within > 40 K or within 15 minutes, reduce the load first or shut down the machine for inspection.
Synchronous observation: abnormal noise, vibration, oil level/oil quality, sealing and centering; priority is given to check lubrication and installation in case of abnormalities.
The reading position is consistent with the timing to form a baseline; record 'Oil temperature/surface temperature/ambient temperature/working conditions/time'.
Strengthen ventilation and sealing in high-temperature or high-dust environments; in summer, the surface temperature can be set to be a warning of ≥80 ℃.
If otherwise specified in the instructions, the manufacturer's parameters shall prevail.
How to determine the rated load based on the model of soft tooth reducer
What factors are related to the transmission efficiency of WPDX135-40-3KW worm gear reducer
How to detect whether the NGW-L122-90 planetary reducer base settles
What materials can improve the base carrying capacity of the NBD710-35.5 planetary reducer
Expand and introduce the box structure of WS150-16-1 worm gear reducer
What factors affect the transmission efficiency of WS300-23.5-II worm gear reducer
Introduction to a cause of the failure of the WB100-D-23-0.55KW miniature cycloid reducer
How to replace the grease of WB1285-LD-2065-0.37KW/4 micro cycloid reducer
What are the disadvantages of arc gears compared to involute gears in high-speed transmission
Comparison of service life of hard tooth surface and soft tooth surface reducer
How to determine whether the alignment of the multi-stage reducer is good
What factors will affect the tooth surface roughness of the CWO100-63-YIII reducer worm
How to improve the wear resistance of CWO140-25-I worm gear reducer
NAD224-8-1 Does the installation of planetary deceleration require ambient temperature?
NAF355-4.5-1 How high temperature can the planetary gear reducer withstand?
Let me introduce the characteristics of the bevel gear of the B3SH04 reducer in detail
What are the differences in efficiency between cylindrical gear reducers and planetary gear reducers
What accessories need to be replaced during maintenance of WPS60-60-B worm gear reducer
How to check the wear of the tooth surface of the WPS80-50-A worm gear reducer