GIICL10 Gear Coupling For Hydraulic Machinery Parts

Overview
Quick Details
Place of Origin:
Hebei, China
Brand Name:
Tanso
Model Number:
GIICL
Material:
Steel
Standard or Nonstandard:
Standard
Structure:
Gear
Flexible or Rigid:
Rigid
Product name:
GIICL10 Gear Coupling Used For Hydraulic Machinery Parts
Type:
Gear Coupling
Application:
Hydraulic Machinery Parts
Certification:
ISO9001:2008
Surface Treatment:
Blackening
Body Material:
45# Steel
Color:
Black
Process:
Forging+machining+heating Treatment+Milling+Drilling
Size:
Customized Size
Weight:
118KG
Supply Ability
Supply Ability:
100 Set/Sets per Month

Packaging & Delivery
Packaging Details

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A gear coupling is a mechanical device for transmitting torque between two shafts that are not collinear. It consists of a flexible joint fixed to each shaft. The two joints are connected by a third shaft, called the spindle.

Each joint consists of a 1:1 gear ratio internal/external gear pair. The tooth flanks and outer diameter of the external gear are crowned to allow for angular displacement between the two gears. Mechanically, the gears are equivalent to rotating splines with modified profiles. They are called gears because of the relatively large size of the teeth.

Gear couplings and universal joints are used in similar applications. Gear couplings have higher torque densities than universal joints designed to fit a given space while universal joints induce lower vibrations. The limit on torque density in universal joints is due to the limited cross sections of the cross and yoke. The gear teeth in a gear coupling have high backlash to allow for angular misalignment. The excess backlash can contribute to vibration.

Gear couplings are generally limited to angular misalignments, i.e., the angle of the spindle relative to the axes of the connected shafts, of 4-5°. Universal joints are capable of higher misalignments.

Advantages of Tanso gear coupling

1.Lowest price based on large scale production.

2.High and stable quality level.

3.Widely used in various mechanical and hydraulic fields.

4.Compensation for axial, radial and angular misalignment.

5.Convenient axial plugging assembly.

6.No brittlement at low temperature.

7.Good slippery and frictional properties.

8.Resistance to chemical corrosion.

9.Rich experience working with big companies in this field.

Type Nominal torque Max speed Bore diameter Bore length D D1 D2 C H A B e Mass Moment of inertia Tn [n] d1,d2 L m I/kg·m2 /N·m /r·min-1 Y J1 /kg GⅡCL10 22400 2650 65,70,71,75 142 107 287 239 200 14 3.5 78 164 47 72 2.05 80,85,90,95 172 132 84.4 2.3 100,110,120,125 212 167 101 2.64 130,140,150 252 202 119 2.98 GⅡCL11 35500 2350 70,71,75 142 107 325 276 235 14 3.5 81 170 47 97 5.81 80,85,90,95 172 132 114 4.94 100,110,120,125 212 167 138 4.94 130,140,150 252 202 161 5.6 160,170(175) 302 242 189 6.35 GⅡCL12 50000 2100 75 142 107 362 313 270 16 4 89 190 49 128 6.49 80,85,90,95 172 132 150 7.31 100,110,120,125 212 167 205 8.45 130,140,150 252 202 213 9.6 160,170,180 302 242 248 10.91 190,200 352 282 285 12.22