China Giicl Gear Coupling for Rolling Mill encoder coupling

Merchandise Description

Quality IS OUR Lifestyle!!!!!
This shaft coupling is relevant to connecting 2 horizontal line shafting of coaxial line. It has a drum-formed teeth shaft coupling with angular orientation compensation on relative deviation of 2 shafts. Temperature of the operating environment is: -20~+80ºC. The nominal transmitting torque is .4~45/8822 0571 1.75 33000 15015 GIICL25 4000000 460 670-1040 900-a thousand 1644 19. 325 fifty 5174.25-7198.twenty five 43000 24080

 

HangZhou Orienthold Machinery Co., Ltd is a medium-scale company specialised in the manufacture of shaft coupling and paper-producing equipment with the integration of design and style, manufacturing and support.

Orienthold specialized in the creation of different sequence couplings, total have 29 collection, far more than 580 kinds of couplings, this sort of as universal couplings, cardan shafts, equipment couplings, flexible couplings, elastic couplings, plum claw-variety couplings, disc couplings, tyre couplings, roller chain couplings and so on. All of our items are commonly employed in metallurgy, mining, shipbuilding, port, paper producing and large equipment market.

Orienthold supply supporting providers for several domestic large and center scale Iron and metal firms, effectively finished far more than 10 localization initiatives of imported coupling manufacturing line.

 

US $10
/ Set
|
10 Sets

(Min. Order)

###

Standard Or Nonstandard: Nonstandard
Shaft Hole: as Your Requirement
Torque: as Your Requirement
Bore Diameter: as Your Requirement
Speed: 3200~7100
Structure: Flexible

###

Customization:

###

Model

Norminal
Torque
Tn
N·m
Speed
[n]
r/min
Shaft
Hole Dia

Shaft
Hole Length

D H A C Rotational
Inertia
kg
Grease
mL
Weight
Kg
Y,J1
d1,d2 L
GIICL1 355 4000 14-35 38-82 103 2.0 36 8 0.0035-0.00375 51 3.1
GIICL2 630 4000 16-45 38-112 115 2.0 42 8 0.00550-0.00675 70 3.5
GIICL3 1000 4000 22-56 38-112 127 2.0 44 8 0.010-0.0113 68 7.0
GIICL4 1600 4000 38-65 60-142 149 2.0 49 8 0.02-0.0245 87 12.2
GIICL5 2800 4000 40-75 84-142 167 2.5 55 10 0.0378-0.0433 125 18.0
GIICL6 4500 4000 45-90 84-172 187 2.5 56 10 0.0663-0.0843 148 26.5
GIICL7 6300 3750 50-105 84-212 204 3.5 60 10 0.103-0.151 175 39.2
GIICL8 9000 3300 55-115 84-212 230 3.0 67 12 0.167-0.241 268 49.7
GIICL9 14000 3000 60-135 107-252 256 3.0 69 12 0.316-0.470 310 79.6
GIICL10 20000 2650 65-150 107-252 287 3.5 78 14 0.511-0.745 472 101
GIICL11 31500 2350 70-175 107-302 325 3.5 81 14 1.096-1.588 550 161
GIICL12 45000 2100 75-200 107-352 362 4.0 89 16 1.623-3.055 695 213
GIICL13 63000 1850 150-225 202-352 412 4.5 98 18 3.925-4.918 1019 315
GIICL14 100000 1650 170-250 242-410 462 5.5 172 22 8.025-9.725 3900 476
GIICL15 160000 1500 190-285 282-470 512 5.5 182 22 14.300-17.45 3700 696
GIICL16 224000 1300 220-320 282-470 580 7.0 209 28 23.925-29.1 4500 913
GIICL17 315000 1200 250-365 330-550 644 7.0 198 28 43.095-53.725 4900 1322
GIICL18 450000 1050 280-400 380-650 726 8.0 222 28 78.525-99.500 7000 1948
GIICL19 630000 950 300-470 380-650 818 8.0 232 32 136.750-175.5 8900 3026
GIICL20 900000 800 360-540 450-800 928 10.5 247 32 261.75-360.75 11000 3984
GIICL21 1250000 750 400-600 540-800 1022 11.5 255 40 468.75-561.50 13000 4977
GIICL22 1600000 650 450-680 540-800 1134 13.0 262 40 753.750-904.750 16000 7738
GIICL23 2240000 600 500-770 680-800 1282 14.5 299 50 1517-1725 28000 10783
GIICL24 3150000 550 560-880 680-900 1428 16.5 317 50 2486-3131.75 33000 15015
GIICL25 4000000 460 670-1040 900-1000 1644 19.0 325 50 5174.25-7198.25 43000 24080
US $10
/ Set
|
10 Sets

(Min. Order)

###

Standard Or Nonstandard: Nonstandard
Shaft Hole: as Your Requirement
Torque: as Your Requirement
Bore Diameter: as Your Requirement
Speed: 3200~7100
Structure: Flexible

###

Customization:

###

Model

Norminal
Torque
Tn
N·m
Speed
[n]
r/min
Shaft
Hole Dia

Shaft
Hole Length

D H A C Rotational
Inertia
kg
Grease
mL
Weight
Kg
Y,J1
d1,d2 L
GIICL1 355 4000 14-35 38-82 103 2.0 36 8 0.0035-0.00375 51 3.1
GIICL2 630 4000 16-45 38-112 115 2.0 42 8 0.00550-0.00675 70 3.5
GIICL3 1000 4000 22-56 38-112 127 2.0 44 8 0.010-0.0113 68 7.0
GIICL4 1600 4000 38-65 60-142 149 2.0 49 8 0.02-0.0245 87 12.2
GIICL5 2800 4000 40-75 84-142 167 2.5 55 10 0.0378-0.0433 125 18.0
GIICL6 4500 4000 45-90 84-172 187 2.5 56 10 0.0663-0.0843 148 26.5
GIICL7 6300 3750 50-105 84-212 204 3.5 60 10 0.103-0.151 175 39.2
GIICL8 9000 3300 55-115 84-212 230 3.0 67 12 0.167-0.241 268 49.7
GIICL9 14000 3000 60-135 107-252 256 3.0 69 12 0.316-0.470 310 79.6
GIICL10 20000 2650 65-150 107-252 287 3.5 78 14 0.511-0.745 472 101
GIICL11 31500 2350 70-175 107-302 325 3.5 81 14 1.096-1.588 550 161
GIICL12 45000 2100 75-200 107-352 362 4.0 89 16 1.623-3.055 695 213
GIICL13 63000 1850 150-225 202-352 412 4.5 98 18 3.925-4.918 1019 315
GIICL14 100000 1650 170-250 242-410 462 5.5 172 22 8.025-9.725 3900 476
GIICL15 160000 1500 190-285 282-470 512 5.5 182 22 14.300-17.45 3700 696
GIICL16 224000 1300 220-320 282-470 580 7.0 209 28 23.925-29.1 4500 913
GIICL17 315000 1200 250-365 330-550 644 7.0 198 28 43.095-53.725 4900 1322
GIICL18 450000 1050 280-400 380-650 726 8.0 222 28 78.525-99.500 7000 1948
GIICL19 630000 950 300-470 380-650 818 8.0 232 32 136.750-175.5 8900 3026
GIICL20 900000 800 360-540 450-800 928 10.5 247 32 261.75-360.75 11000 3984
GIICL21 1250000 750 400-600 540-800 1022 11.5 255 40 468.75-561.50 13000 4977
GIICL22 1600000 650 450-680 540-800 1134 13.0 262 40 753.750-904.750 16000 7738
GIICL23 2240000 600 500-770 680-800 1282 14.5 299 50 1517-1725 28000 10783
GIICL24 3150000 550 560-880 680-900 1428 16.5 317 50 2486-3131.75 33000 15015
GIICL25 4000000 460 670-1040 900-1000 1644 19.0 325 50 5174.25-7198.25 43000 24080

Programming With Couplings

A coupling is a mechanical device that connects two shafts together and transmits power. Its purpose is to join rotating equipment and allows some degree of end-movement or misalignment. There are many different types of couplings. It’s important to choose the right one for your application.
gearbox

Mechanical connection between two shafts

There are many ways to achieve mechanical connection between two shafts, including the use of a coupling. One common type is the beam coupling, which is also known as a helical coupling. It is used for transmission of torque between two shafts. This type of connection accommodates axial, parallel and angular misalignments.
The hubs and shafts of a worm gear are connected together by a coupling. This mechanical connection allows one shaft to turn another without causing a mechanical failure. This type of coupling is made from sliding or rubbing parts to transfer torque. However, the coupling is not designed to withstand jerks, so it isn’t suitable for high-speed applications.
The use of a coupling is common in machinery and equipment. It helps transmit power from one drive shaft to the other, while adding mechanical flexibility. It is also useful for reducing the impact and vibration caused by misalignment. It also protects the drive shaft components from wear and tear.
A double-hook coupling can be used to provide a uniform angular velocity at the driven shaft. Another example is a double-jointed coupling. A double-jointed coupling can be used to connect shafts that are not directly intersecting. The double-jointed yoke can be used for the same purpose.
A shaft coupling is a device that maintains a strong mechanical connection between two shafts. It transfers motion from one shaft to another, at all loads and misalignments. Unlike a conventional linkage, a shaft coupling isn’t designed to allow relative motion between the two shafts. Couplings often serve several purposes in a machine, but their primary use is torque and power transmission.

Functions that control the flow of another function

One of the simplest programming constructs is a function that controls the flow of another function. A function can take an argument and return a different value, but it must be ready to return before it can pass that value to another function. To do this, you can use the goto statement and the if statement. Another way to control flow is to use a conditional statement.
gearbox

Criteria for selecting a coupling

There are several important factors to consider when choosing the right coupling. One of the most important factors is coupling stiffness, which depends on the material used and the shape. The stiffness of a coupling determines its ability to resist elastic deformation. A stiff coupling is desirable for certain types of applications, but it’s undesirable for others. Stiffness can reduce the performance of a system if there’s too much inertia. To avoid this, ensure that the coupling you choose is within the recommended limits.
The size of a coupling is also important. Different coupling types can accommodate different shaft sizes and shapes. Some couplings have special features, such as braking and shear pin protection. When choosing a coupling, you should also consider the type of driven equipment. If you need to connect a high-torque motor, for example, you’ll want to choose a gear coupling. Likewise, a high-speed machine may require a disc coupling.
Another factor to consider when selecting a coupling is the torque rating. Despite its importance, it’s often underestimated. The torque rating is defined as the torque of the coupling divided by its OD. In some cases, torque may fluctuate during a cycle, requiring a coupling with a higher torque rating.
Torsionally flexible couplings are also important to consider. Their design should be able to withstand the torque required during operation, as well as the required speed. The coupling should also have a high degree of torsional stiffness, as well as damping. Furthermore, a damping coupling can reduce the energy wasted through vibration.
The sizing of a coupling is also determined by the torque. Many engineers use torque to select the correct coupling size, but they also take into consideration torsional flexibility and torsional stiffness. For example, a shaft may be able to handle large torque without damaging the coupling, while a disk may be unable to handle large amounts of torque.
Besides torque, another important consideration in coupling selection is the cost. While a coupling may be cheaper, it may be less reliable or easier to maintain. Couplings that are difficult to service may not last as long. They may also require frequent maintenance. If that’s the case, consider purchasing a coupling with a low service factor.
There are many different types of couplings. Some require additional lubrication throughout their lifetime, while others are 100% lubrication-free. An example of a 100% lubrication-free coupling is the RBI flexible coupling from CZPT. This type of coupling can significantly reduce your total cost of ownership.
In addition to the above-mentioned benefits, elastomeric couplings are low-cost and need little maintenance. While they are often cheaper than metallic couplings, they also have excellent shock absorption and vibration dampening properties. However, they are susceptible to high temperatures. Also, they are difficult to balance as an assembly, and have limited overload torque capacity.
China Giicl Gear Coupling for Rolling Mill     encoder couplingChina Giicl Gear Coupling for Rolling Mill     encoder coupling
editor by czh 2022-11-26

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