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Table 3.4






Standard values of mn

Series 1 1.0 1.25 1.5 2.0 2.5 3.0 4.0 5.0 6.0 8.0 10.0 12.0
Series 2 1.125 1.375 1.75 2.25 2.75 3.5 4.5 5.5 7.0 9.0 11.0 14.0

Note: Series 1 is preferable to Series 2

3.5. Determine the total number of teeth

Obtained value of zΣ we should be rounded off to the nearest integer number.

3.6. Determine the number of pinion teeth

In our case ,

where zmin=17 for straight spur gears.

Obtained value of zp should round off to the nearest integer number. If zp < 17 it is necessary to decrease the module or to use nonstandard toothed wheels

.

3.7. Determine the number of teeth of the gear

3.8. Specify the velocity ratio of the gearing

uact= .

The error ε = should be less then or equal to 4%. Otherwise the number of teeth zp, zg and zS must be rounded down.

3.9. Determine the nominal pitch circles diameters for the pinion and the gear

dp = m· zp=2∙ 30=60 mm,

dg = 2· a w dp=2∙ 180-60=300.

3.10. Determine the addendum circles diameters for the pinion and the gear

= dp + 2· m=60+2∙ 2=64 mm,

= dg ± 2· m=300+2∙ 2=304 mm.

3.11. Determine the dedendum circles diameters for the pinion and the gear

= dp-2.5· m=60-2.5∙ 2=55 mm,

= dg 2.5· m=300-2.5∙ 2=295 mm.

3.12. Determine forces that act in the engagement of the straight spur gears:

- turning force ;

- radial force ,

where α w=20˚ is the pressure angle for the pitch circle.

3.13. Determine the maximum contact stress that develops in the contact zone of teeth

where Tp is the torque at the pinion shaft in N× mm; KH is the design load factor that is determined as KH=KHb× KHV where KHb is the load concentration factor; KHV is the dynamic load factor.

The load concentration factor KHb is specified in table 3.2. It depends upon ψ bd= .

In order to determine KHV it is necessary to find the peripheral gear speed Vg

m/sec,

and the gearing accuracy of manufacturing (table 3.5), where ω g is the angular velocity of the gear.

The dynamic load factor KHV is determined according to table 3.6.

Table 3.5






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