Gearbox> Helical Gearbox

2.Designation and Reduction Ratio
2-1) Designation and Symbols

1.Features of KIP Gear Reducer
2.Designation and Reduction Ratio
2-1) Designation and Symbols
2-2) Reduction Ratio
3.Selection
3-1)
How to select proper gear reducer
4. Service Factor
4-1)
Load Classification and Service Factor (Sf)
4-2)
Service factor for selection
5. Installation and operation
5-1) General
5-2) Installation
5-3) Operation
6. Maintenance 
7. Power Rating, Thermal Capacity and Dimension
7-1.Nominal Power Rating
1 stage  gearbox
2 stage  gearbox
3 stage  gearbox
4 stage  gearbox
7-2.Thermal Capacity
1 stage  gearbox
2 stage  gearbox
3 stage  gearbox
4 stage  gearbox
7-3.Dimensions
1 stage  gearbox
2 stage  gearbox
3 stage  gearbox
4 stage  gearbox
8.
Convenient technical formulas

H
B
TD
GD


 

Parallel shaft reducer
Right angle shaft reducer
Trolley Drive reducer for Crane
Gantry Drive reducer for Crane

H
B
TD
GD

1
2
3
4


1Stage
2Stage
2Stage
4Stage

H.B
TD GD

1.2
3.4

H
V


Horizontal mounting
Vertical Mounting

 H.B
TD GD

1.2
3.4

H
V

S
H


Solid Output shaft
Hollow Output shaft

 

RL.LR
RR.LL.
RD.LD
DR DL
.DD.

 Arrangement of parallel shaft reducer

helical box design

 

BR.
BL.
BD.

Arrangement of right angle reducer

right angle gearbox design

 

TRL.
TLR.
TRR.
TLL.

Arrangement of trolley driving reducer for crane

 

GVR
GVL.

Arrangement of gantry driving reducer for crane

 

1/1~1/500

 

Standard reduction Ratio

 

 

 

 

 

 

80~900

Model No,(cf. Power Rating)

Ex1)

H-3-H-S-LD-45-355

Parallel shaft 3stage reducer(Horizontal Mounting,Solid output shaft. Shaft arrangement=LD,reduction ratio=45,Model No.=355)

Ex2)

B-2-V-H-BL-12.5-315

Right Angle 2 stage reducer(Vertical Mounting,Hollow output shaft,Shaft arrangement=BL,reduction ratio=12.5,Model No.=315)


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