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Will the drying method affect the performance and production of DCY315-35.5-1 hard tooth reducer

Under the standard operation of 60-80 ℃, the drying method will not have a negative impact on the performance of DCY315-35.5-1 hard tooth reducer, but can protect the equipment through dehumidification; If the temperature is out of control or operated improperly, it may cause local damage.
1. No negative impact under standardized operation

Hard toothed gears undergo carburizing and quenching treatment, and the tooth surface hardness can reach HRC58 or above. The temperature range of 60-80 ℃ is much lower than its tempering temperature (usually above 200 ℃), and it will not cause a decrease in tooth surface hardness or performance degradation.

Metal components such as boxes and shafts have minimal thermal expansion and contraction within this temperature range, which will not compromise assembly accuracy and structural stability.

After drying, it can remove internal moisture, avoid oil emulsification and component corrosion, and instead restore the original transmission efficiency and operational stability of the gearbox.

2. The potential impact of improper operation

If the temperature exceeds 80 ℃, it will accelerate the oxidation and deterioration of residual oil, causing rubber seals to soften, deform, or even crack, and subsequently leading to seal failure and leakage.

Uneven heating: Local high temperatures may cause slight deformation of the casing, or slight changes in the clearance between gears, bearings, and shafts, affecting transmission accuracy.

Unventilated heating: Drying in a sealed state may prevent internal moisture from being expelled, and may also damage components such as ventilation caps due to increased pressure.

3. Key prerequisites for adapting device characteristics
As a heavy-duty hard tooth surface reducer, the DCY315 series has taken into account a certain temperature tolerance range in its structural design and material selection. The drying temperature of 60-80 ℃ is within a safe range. As long as the heating rate is controlled slowly and ventilation is maintained, adverse effects on performance can be avoided.

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