Технические руководства
Практические инженерные руководства по расчёту выходного момента, выбору передаточного числа и скорости, интерпретации сервис-фактора, монтажным положениям (M1–M6), совместимости с двигателями IEC, смазке, диагностике перегрева, шуму и вибрации, конфигурации концов валов и процедуре замены.
How to Calculate Gearbox Output Torque
Output torque is one of the most important values in gearbox selection. A useful engineering estimate is T = 9550 × P × η / n₂.
Читать руководство →How to Calculate Gear Ratio and Output Speed
For a simple reduction gearbox, output speed is approximately input speed divided by the transmission ratio.
Читать руководство →Industrial Gearbox Lubrication Guide
Correct lubricant type, quantity and maintenance practice are essential to gear and bearing life.
Читать руководство →Gearbox Mounting Positions M1–M6 Explained
Mounting position determines gearbox orientation and can change lubricant quantity and internal oil distribution.
Читать руководство →Gearbox Noise and Vibration Troubleshooting
Noise and vibration are symptoms rather than diagnoses. Track when the symptom occurs, load dependence, frequency, temperature and recent changes.
Читать руководство →Gearbox Overheating: Common Causes and Checks
Abnormal gearbox temperature can be caused by overload, incorrect lubrication, misalignment, excessive input speed, restricted cooling, bearing problems or internal damage.
Читать руководство →What Is Gearbox Service Factor?
Service factor is a selection margin used to account for duty severity beyond nominal power and torque.
Читать руководство →IEC Motor Frame and Gearbox Interface Guide
Motor power does not uniquely determine the gearbox input interface. Motor frame, mounting form, flange dimensions and adapter geometry must be checked together.
Читать руководство →Industrial Gearbox Replacement Checklist
A gearbox is not a direct replacement simply because the ratio or size code is similar.
Читать руководство →Solid Shaft vs Hollow Shaft Gearbox
Solid and hollow output shafts solve different machine-interface problems.
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