Tag Archives: drum gear coupling

China Good quality Flexible Gear Coupling Fluid Flange HRC Spacer Pin Mh Rigid Nm Jaw Steel Chain Brake Standard Drum Wheel Rolling Shaft Steel Transmission Parts nm couplimg

Product Description

Gear coupling flexible Fluid Flange HRC Spacer PIN MH Rigid NM Jaw Steel chain brake standard drum wheel rolling shaft steel transmission parts 

Ever-Power industry is 1 of the biggest couplings manufacturer in China, have already exported lots of gear couplings, Jaw couplings, chain couplings etc.. to Japan, Korea, Italy , USA ….. 
Application of Gear coupling
 

Gear couplings are used to connect 2 shafts that are not perfectly aligned. They do this by using gears to transmit torque between the shafts. Gear couplings are available in a variety of sizes and types, and they are used in a wide range of applications.

Some of the most common applications for gear couplings include:

  • Pumps: Gear couplings are used to connect the motor to the pump in a variety of pumps, including centrifugal pumps, positive displacement pumps, and gear pumps.
  • Fans: Gear couplings are used to connect the motor to the fan in a variety of fans, including centrifugal fans, axial fans, and propeller fans.
  • Compressors: Gear couplings are used to connect the motor to the compressor in a variety of compressors, including reciprocating compressors, rotary screw compressors, and centrifugal compressors.
  • Machine tools: Gear couplings are used to connect the motor to the machine tool in a variety of machine tools, including lathes, mills, and drills.
  • Conveyors: Gear couplings are used to connect the motor to the conveyor in a variety of conveyors, including belt conveyors, bucket conveyors, and screw conveyors.

Gear couplings offer a number of advantages over other types of couplings, including:

  • High torque capacity: Gear couplings can transmit high torque, which is necessary for applications where a lot of force needs to be applied.
  • Good alignment tolerance: Gear couplings can tolerate misalignment, which is necessary for applications where the shafts may not be perfectly aligned.
  • Long life: Gear couplings have a long life, which is necessary for applications where the coupling needs to operate for a long time.
  • Low noise: Gear couplings operate quietly, which is important for applications where noise is a concern.
  • Versatility: Gear couplings can be used in a variety of applications.

If you need a coupling that can transmit high torque, tolerate misalignment, and have a long life, then a gear coupling may be the right solution for you.

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uploa

Main range of Couplings

Standard Or Nonstandard: Standard
Shaft Hole:
Torque:
Bore Diameter:
Speed:
Structure:
Samples:
US$ 999/Piece
1 Piece(Min.Order)

|
Request Sample

China Good quality Flexible Gear Coupling Fluid Flange HRC Spacer Pin Mh Rigid Nm Jaw Steel Chain Brake Standard Drum Wheel Rolling Shaft Steel Transmission Parts  nm couplimg

nm coupling

What industries commonly use flexible couplings for power transmission?

Flexible couplings are widely used in various industries for power transmission and motion control applications. Their ability to accommodate misalignment, dampen vibrations, and protect equipment from shock loads makes them valuable components in many industrial processes. Here are some of the industries that commonly utilize flexible couplings:

  • Manufacturing: Flexible couplings are extensively used in manufacturing industries such as automotive, aerospace, electronics, and consumer goods production. They play a critical role in transmitting power between motors and various machinery, including conveyor systems, robots, and assembly lines.
  • Oil and Gas: In the oil and gas industry, flexible couplings are used in pumps, compressors, turbines, and generators. They help transfer power in offshore platforms, refineries, pipelines, and drilling operations while compensating for the dynamic nature of these applications.
  • Power Generation: Power plants, both conventional and renewable, rely on flexible couplings to transmit power from turbines and generators to electrical generators. They are used in coal-fired, natural gas, nuclear, hydroelectric, and wind power plants.
  • Mining: In mining operations, flexible couplings are employed in various equipment, including conveyor systems, crushers, and large industrial pumps. They are designed to withstand the heavy loads and harsh conditions commonly found in mining environments.
  • Marine: Flexible couplings are essential in marine propulsion systems, connecting engines to propellers or water jets. They also find use in shipboard machinery, auxiliary systems, and offshore applications.
  • Pulp and Paper: The pulp and paper industry relies on flexible couplings in machinery used for wood processing, pulp production, papermaking, and printing processes.
  • Chemical and Petrochemical: In chemical plants and petrochemical refineries, flexible couplings are utilized in pumps, mixers, agitators, and other rotating equipment to ensure efficient power transmission and protect sensitive machinery.
  • Construction: The construction industry employs flexible couplings in various equipment, such as concrete pumps, cranes, excavators, and drilling machines.
  • Water and Wastewater: Flexible couplings are used in water treatment plants, wastewater facilities, and irrigation systems to transfer power between motors and pumps.
  • Agriculture: In agricultural machinery, flexible couplings are utilized in tractors, harvesters, and irrigation systems, enabling efficient power transmission and operation.

The versatility and adaptability of flexible couplings make them indispensable components in a wide range of industries, contributing to increased equipment reliability, reduced downtime, and improved overall system performance.

nm coupling

What are the differences between elastomeric and metallic flexible coupling designs?

Elastomeric and metallic flexible couplings are two distinct designs used to transmit torque and accommodate misalignment in mechanical systems. Each type offers unique characteristics and advantages, making them suitable for different applications.

Elastomeric Flexible Couplings:

Elastomeric flexible couplings, also known as flexible or jaw couplings, employ an elastomeric material (rubber or similar) as the flexible element. The elastomer is typically molded between two hubs, and it acts as the connector between the driving and driven shafts. The key differences and characteristics of elastomeric couplings include:

  • Misalignment Compensation: Elastomeric couplings are designed to handle moderate levels of angular, parallel, and axial misalignment. The elastomeric material flexes to accommodate the misalignment while transmitting torque between the shafts.
  • Vibration Damping: The elastomeric material in these couplings offers excellent vibration dampening properties, reducing the transmission of vibrations from one shaft to another. This feature helps protect connected equipment from excessive vibrations and enhances system reliability.
  • Shock Load Absorption: Elastomeric couplings can absorb and dampen shock loads, protecting the system from sudden impacts or overloads.
  • Cost-Effective: Elastomeric couplings are generally more cost-effective compared to metallic couplings, making them a popular choice for various industrial applications.
  • Simple Design and Installation: Elastomeric couplings often have a straightforward design, allowing for easy installation and maintenance.
  • Lower Torque Capacity: These couplings have a lower torque capacity compared to metallic couplings, making them suitable for applications with moderate torque requirements.
  • Common Applications: Elastomeric couplings are commonly used in pumps, compressors, fans, conveyors, and other applications that require moderate torque transmission and misalignment compensation.

Metallic Flexible Couplings:

Metallic flexible couplings use metal components (such as steel, stainless steel, or aluminum) to connect the driving and driven shafts. The metallic designs can vary significantly depending on the type of metallic coupling, but some general characteristics include:

  • High Torque Capacity: Metallic couplings have higher torque transmission capabilities compared to elastomeric couplings. They are well-suited for applications requiring high torque handling.
  • Misalignment Compensation: Depending on the design, some metallic couplings can accommodate minimal misalignment, but they are generally not as flexible as elastomeric couplings in this regard.
  • Stiffer Construction: Metallic couplings are generally stiffer than elastomeric couplings, offering less vibration dampening but higher torsional stiffness.
  • Compact Design: Metallic couplings can have a more compact design, making them suitable for applications with limited space.
  • Higher Precision: Metallic couplings often offer higher precision and concentricity, resulting in better shaft alignment.
  • Higher Cost: Metallic couplings are typically more expensive than elastomeric couplings due to their construction and higher torque capacity.
  • Common Applications: Metallic couplings are commonly used in high-speed machinery, precision equipment, robotics, and applications with high torque requirements.

Summary:

In summary, the main differences between elastomeric and metallic flexible coupling designs lie in their flexibility, torque capacity, vibration dampening, cost, and applications. Elastomeric couplings are suitable for applications with moderate torque, misalignment compensation, and vibration dampening requirements. On the other hand, metallic couplings are chosen for applications with higher torque and precision requirements, where flexibility and vibration dampening are less critical.

nm coupling

What is a flexible coupling and how does it work?

A flexible coupling is a mechanical device used to connect two shafts while allowing for relative movement between them. It is designed to transmit torque from one shaft to another while compensating for misalignment, vibration, and shock. Flexible couplings are essential components in various rotating machinery and systems, as they help protect the connected equipment and enhance overall performance.

Types of Flexible Couplings:

There are several types of flexible couplings, each with its unique design and characteristics. Some common types include:

  • Jaw Couplings: Jaw couplings feature elastomer spiders that fit between two hubs. They can accommodate angular and parallel misalignment while dampening vibrations.
  • Disc Couplings: Disc couplings use thin metallic discs to connect the shafts. They are highly flexible and provide excellent misalignment compensation.
  • Gear Couplings: Gear couplings use gear teeth to transmit torque. They offer high torque capacity and can handle moderate misalignment.
  • Beam Couplings: Beam couplings use a single piece of flexible material, such as a metal beam, to transmit torque while compensating for misalignment.
  • Bellows Couplings: Bellows couplings use a bellows-like structure to allow for axial, angular, and parallel misalignment compensation.
  • Oldham Couplings: Oldham couplings use three discs, with the middle one having a perpendicular slot to allow for misalignment compensation.

How a Flexible Coupling Works:

The operation of a flexible coupling depends on its specific design, but the general principles are similar. Let’s take the example of a jaw coupling to explain how a flexible coupling works:

  1. Two shafts are connected to the coupling hubs on either side, with an elastomer spider placed between them.
  2. When torque is applied to one shaft, it causes the spider to compress and deform slightly, transmitting the torque to the other shaft.
  3. In case of misalignment between the shafts, the elastomer spider flexes and compensates for the misalignment, ensuring smooth torque transmission without imposing excessive loads on the shafts or connected equipment.
  4. The elastomer spider also acts as a damping element, absorbing vibrations and shocks during operation, which reduces wear on the equipment and enhances system stability.

Overall, the flexibility and ability to compensate for misalignment are the key features that allow a flexible coupling to function effectively. The choice of a specific flexible coupling type depends on the application’s requirements, such as torque capacity, misalignment compensation, and environmental conditions.

China Good quality Flexible Gear Coupling Fluid Flange HRC Spacer Pin Mh Rigid Nm Jaw Steel Chain Brake Standard Drum Wheel Rolling Shaft Steel Transmission Parts  nm couplimgChina Good quality Flexible Gear Coupling Fluid Flange HRC Spacer Pin Mh Rigid Nm Jaw Steel Chain Brake Standard Drum Wheel Rolling Shaft Steel Transmission Parts  nm couplimg
editor by CX 2023-08-04

China WGP7 drum shape gear coupling with brake disc Rigid curved tooth shaft connector 45# steel non-standard customized coupling coefficient

Guarantee: 1 years
Applicable Industries: Garment Shops, Building Materials Retailers, Production Plant, Machinery Restore Stores, Coupling Maker WGC5-308235112 drum form gear coupling with vertical installment non-normal customized sizzling sale Food & Beverage Factory, Farms, Energy & Mining, Other
Personalized assistance: OEM
Framework: Equipment
Versatile or Rigid: Rigid
Regular or Nonstandard: Nonstandard
Content: Steel
Product identify: Drum shape equipment coupling with brake disc
Variety: WGP7
Application: Shaft Connections
Human body Material: forty five# Steel
Size: Custom-made Measurement
Color: Black
Area Treatment method: Blackening
MOQ: 1 Set
Weight: 68kg
Service: 12 Months
Packaging Details: regular export packing and wood pallets packing
Port: ZheJiang port, Massive Damping Flexible Rubber Tyre Coupling China

Hot Sale

one. Item Identify Drum shape equipment coupling with brake wheel
two. Variety WGP7
three. ApplicationShaft Link
4. ManufacturerHangZhou CZPT
five. MOQ1 Set
six. Price tagEXW value
seven. Shipping WayBy sea, DHL, UPS, Fedex or as customers’ Manufacturing unit direct sale SWP160E Lengthy flex double flange type universal joint coupling Large top quality torque transmission Very hot Sale requirements
8. Payment ConditionsVia T/T
9. Shipping TimeInside of 15-twenty workdays soon after deposit or as customers’ necessity
ten. Packaging1. Export Wooden Box
two. Carton Box
3. We can execute in accordance to customers’ specifications
Make contact with us
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FAQ

What Is a Coupling?

A coupling is a device used to connect two shafts. It transmits power between them and allows for some misalignment or end movement. There are several types of couplings. The most common ones are gear couplings and planetary couplings. However, there are many others as well.

Transfer of energy

Energy coupling is a process by which two biological reactions are linked by sharing energy. The energy released during one reaction can be used to drive the second. It is a very useful mechanism that synchronizes two biological systems. All cells have two types of reactions, exergonic and endergonic, and they are connected through energy coupling.
This process is important for a number of reasons. The first is that it allows the exchange of electrons and their energy. In a single molecule, this energy transfer involves the exchange of two electrons of different energy and spin. This exchange occurs because of the overlap interaction of two MOs.
Secondly, it is possible to achieve quadratic coupling. This is a phenomenon that occurs in circular membrane resonators when the system is statically deflected. This phenomenon has been gaining a great deal of interest as a mechanism for stronger coupling. If this mechanism is employed in a physical system, energy can be transferred on a nanometer scale.
The magnetic field is another important factor that affects the exchange of energy between semiconductor QWs. A strong magnetic field controls the strength of the coupling and the energy order of the exciton. The magnetic field can also influence the direction of polariton-mediated energy transfer. This mechanism is very promising for controlling the routing of excitation in a semiconductor.
gearbox

Functions

Couplings play a variety of functions, including transferring power, compensating for misalignment, and absorbing shock. These functions depend on the type of shaft being coupled. There are four basic types: angular, parallel, and symmetrical. In many cases, coupling is necessary to accommodate misalignment.
Couplings are mechanical devices that join two rotating pieces of equipment. They are used to transfer power and allow for a small degree of end-to-end misalignment. This allows them to be used in many different applications, such as the transmission from the gearbox to the differential in an automobile. In addition, couplings can be used to transfer power to spindles.

Types

There are two main types of couplings: rigid and flexible. Rigid couplings are designed to prevent relative motion between the two shafts and are suitable for applications where precise alignment is required. However, high stresses in the case of significant misalignment can cause early failure of the coupling. Flexible couplings, on the other hand, allow for misalignment and allow for torque transmission.
A software application may exhibit different types of coupling. The first type involves the use of data. This means that one module may use data from another module for its operation. A good example of data coupling is the inheritance of an object. In a software application, one module can use another module’s data and parameters.
Another type of coupling is a rigid sleeve coupling. This type of coupling has a pipe with a bore that is finished to a specified tolerance. The pipe contains two threaded holes for transmitting torque. The sleeve is secured by a gib head key. This type of coupling may be used in applications where a couple of shafts are close together.
Other types of coupling include common and external. Common coupling occurs when two modules share global data and communication protocols. This type of coupling can lead to uncontrollable error propagation and unforeseen side effects when changes are made to the system. External coupling, on the other hand, involves two modules sharing an external device interface or communication protocol. Both types of coupling involve a shared code structure and depend on the external modules or hardware.
Mechanical couplings are essential in power transmission. They connect rotating shafts and can either be rigid or flexible, depending on the accuracy required. These couplings are used in pumps, compressors, motors, and generators to transmit power and torque. In addition to transferring power, couplings can also prevent torque overload.
gearbox

Applications

Different coupling styles are ideal for different applications, and they have different characteristics that influence the coupling’s reliability during operation. These characteristics include stiffness, misalignment capability, ease of installation and maintenance, inherent balance, and speed capability. Selecting the right coupling style for a particular application is essential to minimize performance problems and maximize utility.
It is important to know the requirements for the coupling you choose before you start shopping. A proper selection process takes into account several design criteria, including torque and rpm, acoustic signals, and environmental factors. Once you’ve identified these parameters, you can select the best coupling for the job.
A gear coupling provides a mechanical connection between two rotating shafts. These couplings use gear mesh to transmit torque and power between two shafts. They’re typically used on large industrial machines, but they can also be used in smaller motion control systems. In smaller systems, a zero-backlash coupling design is ideal.
Another type of coupling is the flange coupling. These are easy to manufacture. Their design is similar to a sleeve coupling. But unlike a sleeve coupling, a flange coupling features a keyway on one side and two threaded holes on the other. These couplings are used in medium-duty industrial applications.
Besides being useful for power transmission, couplings can also prevent machine vibration. If vibration occurs in a machine, it can cause it to deviate from its predetermined position, or damage the motor. Couplings, however, help prevent this by absorbing the vibration and shock and preventing damage to expensive parts.
Couplings are heavily used in the industrial machinery and electrical industries. They provide the necessary rotation mechanism required by machinery and other equipment. Coupling suppliers can help customers find the right coupling for a specific application.
gearbox

Criteria for selecting a coupling

When selecting a coupling for a specific application, there are a number of different factors to consider. These factors vary greatly, as do operating conditions, so selecting the best coupling for your system can be challenging. Some of these factors include horsepower, torque, and speed. You also need to consider the size of the shafts and the geometry of the equipment. Space restrictions and maintenance and installation requirements should also be taken into account. Other considerations can be specific to your system, such as the need for reversing.
First, determine what size coupling you need. The coupling’s size should be able to handle the torque required by the application. In addition, determine the interface connection, such as straight or tapered keyed shafts. Some couplings also feature integral flange connections.
During the specification process, be sure to specify which materials the coupling will be made of. This is important because the material will dictate most of its performance characteristics. Most couplings are made of stainless steel or aluminum, but you can also find ones made of Delrin, titanium, or other engineering-grade materials.
One of the most important factors to consider when selecting a coupling is its torque capability. If the torque rating is not adequate, the coupling can be damaged or break easily. Torque is a major factor in coupling selection, but it is often underestimated. In order to ensure maximum coupling performance, you should also take into consideration the size of the shafts and hubs.
In some cases, a coupling will need lubrication throughout its lifecycle. It may need to be lubricated every six months or even once a year. But there are couplings available that require no lubrication at all. An RBI flexible coupling by CZPT is one such example. Using a coupling of this kind can immediately cut down your total cost of ownership.
China WGP7 drum shape gear coupling with brake disc Rigid curved tooth shaft connector 45# steel non-standard customized     coupling coefficientChina WGP7 drum shape gear coupling with brake disc Rigid curved tooth shaft connector 45# steel non-standard customized     coupling coefficient
editor by czh 2023-03-20

China Standard Flexible Drum Gear Shaft Coupling (GIICL) bibliographic coupling

Item Description

Drum Gear Coupling Shaft Coupling (GIICL)
GIICL type – the sealing stop for the entire physique, modest spacing in between the tooth, the relative allowable radial displacement, compact composition, modest second of inertia, can be linked with the Y, J1 kind shaft.
Characteristics of drum kind equipment coupling:
one.drum tooth variety coupling bearing potential
two.angular displacement compensation
three.drumgear coupling drum tooth surface get in touch with situation of internal and outer enamel are enhanced, to stay away from the angular displacement beneath the issue of straight tooth finish edge extrusion, tension measuringmethods focus, although bettering the tooth surface friction, wear, decreasing noise and lengthy servicing cycle.
four.drum formed tooth kind shaft coupling gear tooth stop is CZPT form, so that the interior and outer enamel are really practical to put in and get rid of.
5.drum equipment sort coupling transmission performance as large as 99.7%.
 

<table border="0" cellpadding="/8822 0571 1.75

33000

15015

GIICL25

4000000

460

670-1040

900-one thousand

1644

19.

325

50

5174.twenty five-7198.twenty five

43000

24080

        
       
Our company provides distinct kinds of goods. Higher good quality and realistic cost. We stick to the principle of “good quality initial, service 1st, ongoing improvement and innovation to satisfy the consumers” for the administration and “zero defect, zero complaints” as the quality goal. To excellent our support, we provide the goods with great good quality at the affordable price tag.

Our Providers
24 hrs on the web provider
Enquiry will be replied in 2 hrs
Manufacturing facility Address:
No. 11, Fuayang Highway, ChengNan Industrial Park, HangZhou, HangZhou, ZheJiang , China
FAQ
one. Are u a producer?
We are a expert company specializing in production cardan shaft and a variety of collection of couplings. We provide couplings for the wholesalers and sellers from distinct countries. 
2. Can you do OEM?
 Yes, we can. We can do OEM & ODM for all the buyers with tailored artworks of PDF or AI format.
3. How does your manufacturing facility do relating to quality manage?
Top quality is priority! We constantly connect excellent significance to good quality managing from the quite starting to the very finish: 
one) To begin with, we have specialised QC department to control the quality, and we also accept the third official govt to inspect the cargoes just before shipping and delivery.
2) Secondly, we have all comprehensive information for nonconformity merchandise, then we will make summary according to these documents, avoid it come about yet again.
3) Thirdly, We do observe the relevant codes of conduct & legal guidelines from authorities in atmosphere, human appropriate elements like no young children labor, no prisoner labor and so on.
 4. How can I get samples?
We are appreciated that new clients shell out for the convey payment for samples and this charge will be deducted when orders are released.

Welcome to customise items from our manufacturing facility and please give your 
style drawings or speak to us if you need other requirements.

Thanks.

 

US $74.85-44,910
/ Piece
|
1 Piece

(Min. Order)

###

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

###

Customization:

###

Model

Tn
N.m
[n]
r/min
 

 

D
H
A
C
kg.m²
 

mL
 

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 $74.85-44,910
/ Piece
|
1 Piece

(Min. Order)

###

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

###

Customization:

###

Model

Tn
N.m
[n]
r/min
 

 

D
H
A
C
kg.m²
 

mL
 

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

Types of Couplings

A coupling is a device that connects two shafts together. It transmits power from one end to another and is used for joining rotating equipment. A coupling is flexible and can accommodate a certain amount of end movement and misalignment. This allows for more flexibility in applications. Various types of couplings are available, and each one serves a specific purpose.
gearbox

Shaft couplings

There are many types of shaft couplings, and they are used in a wide range of applications. The type you need depends on the torque, speed, and horsepower you need, as well as the size of the shaft and its spatial limitations. You may also need to consider whether the coupling will accommodate misalignment.
Some shaft couplings are flexible, while others are rigid. Flexible couplings can accommodate up to two degrees of misalignment. They are available in different materials, including aluminum, stainless steel, and titanium. They can also be known by different names, depending on the industry. Some couplings can also be used in a single or multiple-shaft application.
The first type of shaft coupling is a rigid coupling, which consists of two parts that fit together tightly around the shafts. These couplings are designed to have more flexibility than sleeved models, and they can be used on fixed shafts as well. The flanged coupling, on the other hand, is designed for heavy loads and is made of two perpendicular flanges. The flanges are large enough to accommodate screws and are generally used with heavy-duty applications.
CZPT shaft couplings are a great choice if you’re looking for a shaft coupling that delivers high performance, durability, and low cost. These metal disc-style couplings provide low backlash and high torsional stiffness. Their high misalignment tolerance reduces reaction loads on connected components, which makes them ideal for high-speed precision applications. Available in single and double-disc models, they have torque ratings of up to 2,200 in-lbs. (250N) and are available in fourteen sizes.
When using shaft couplings, it is important to choose the right type for your application. Backlash can cause a shaft coupling to break or become unusable. In order to prevent this from happening, you should replace worn or loose parts, and ensure that the hub and key are evenly positioned with the shaft. If you’re using a shaft coupling in a motion-control system, it is important to keep the torque level consistent.

Flexible couplings

Flexible couplings are a type of coupling used to connect two shafts. They are made of rubber or plastic and allow for axial movement of the connected equipment. They do not require lubrication and are resistant to fatigue failure. Flexible couplings are useful for a number of applications. A common type of flexible coupling is the gear coupling, which has gear teeth inside its sleeve. Another type of flexible coupling is the metallic membrane coupling. A metallic membrane coupling is flexible due to flexing metallic discs.
One major disadvantage of flexible couplings is their inability to fit certain types of pipe. This is because most couplings need to be stretched to fit the pipe. This problem is often the result of a change in pipe technology. Traditionally, drain and soil pipe is made of ductile iron or cast iron. Today, most pipes are made of PVC, which has a larger outside diameter than either cast or ductile iron. Because of these changes in pipe technology, many coupling manufacturers have not updated their mold sizing.
Flexible couplings can be either metallic, elastomeric, or a combination of the three. While there are some common characteristics of each type, you should always consider the tradeoffs of each type before choosing one. Generally, the most important considerations when selecting a flexible coupling are torque, misalignment, and ease of assembly and maintenance.
Flexible couplings are used in a wide range of industries. They are useful for connecting two pipes to ensure torque transfer. Although the types available are different, these are the most adaptable couplings in the market. They can withstand movement, vibration, and bending without causing any damage to the piping.
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Clutch couplings

A clutch coupling connects two rotating shafts by friction. The clutch engages power when the engine is running, disengaging power when the brake is applied. Clutch couplings are used in applications where the speed of a machine is variable or where continuous service is required. The clutch can transmit power, torque, and axial force.
Clutch couplings come in a variety of styles and configurations. Some couplings are flexible, while others are rigid. Flexible couplings are available in a variety of materials, including stainless steel and aluminum. Some couplings also have a non-backlash design, which helps compensate for misalignment.
Clutch couplings may be synchronous or asynchronous. Synchronous couplings engage and disengage automatically when the driven machine exceeds its output speed. These couplings are synchronized by a synchronizing mechanism. When the output speed is exceeded, the synchronizing mechanism initiates the engagement process. The synchronizing mechanism does not engage or disengage when the output speed drops.
High speed clutches are available from a variety of manufacturers. Some manufacturers offer OEM assembly, repair services, and third-party logistics. These manufacturers serve the automotive, chemical, food, and wood industries, as well as the oilfield and material handling industries. Custom clutches can be manufactured for specific applications and can be fitted with additional features, such as precision machined teeth or keyway slots and grooves.
Couplings are available in PCE, C/T, and metric bores. Typically, the size of the input and output shafts will determine which type of coupling is needed. In addition, clutches may be configured for intermediate or high speeds, depending on the required torque.

Clamped couplings

Clamped couplings are commonly used in a variety of industries. They can be used in medical equipment, dental equipment, military equipment, laboratory equipment, and in precision industrial controls. They are available in a wide variety of sizes and keyways. This type of coupling offers a number of advantages, including ease of installation and quick and easy replacement.
A clamp coupling connects two parts by compressing them together. The clamping elements can be formed in a variety of ways, but they all have a gap between their surfaces. This friction squeezes the two parts together, much like pulling two rubber gloves apart. This type of coupling is also useful for joining two hoses or piping units.
Clamped couplings are designed with a single or double clamping shaft. The clamping parts are mounted in two halves and are held together by eight socket head cap screws. They offer high torque capacity and require little installation space. Their high rigidity ensures good positioning accuracy, making them ideal for dynamic drives. In addition, they are wear-free and offer simple radial assembly.
The invention relates to a method and system for clamping pipes to a tank vessel. This invention also relates to a method of loading and unloading tank vessels. The method can be used in oil production platforms and other platforms. A single point mooring method is also used in oil production platforms.
Clamped couplings can also be flexible. They can join two shafts together while allowing a small amount of end movement and misalignment. These couplings may also be used in the assembly of motors and gearboxes.
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CZPT’s coupling

CZPT couplings are designed to be flexible, allowing them to accommodate misaligned shafts and transmit torque in either direction. They are made with three discs, two hubs, and a center that are arranged with grooves and fins. These features allow for two degrees of freedom during assembly, and can accommodate misalignment of up to 5% of the shaft diameter.
CZPT couplings have many uses. For example, they can be used to join two parallel coaxial rotating shafts. Their ability to transmit torque at the same rotation mechanism and speed makes them ideal for applications where electrical currents may be a problem. Because the couplings are not made of metal, they are electrically isolated. Designers should test their couplings during the prototype stage to ensure they are working properly.
The CZPT coupling consists of two hubs with one slot on each. An intermediate disk is located between the two hubs. The discs are used to reduce or prevent wear on other machine parts. CZPT couplings are inexpensive and easy to replace. They also have electrical insulation, which makes them easy to repair or replace.
CZPT couplings are a popular choice for stepper motor-driven positioning stages. The plastic center disc offers electrical isolation and absorbs shocks from frequent start/stops. These couplings are available in through-hub and blind-bore styles and can be installed in many applications.
CZPT couplings also allow for small degrees of shaft misalignment. This allows them to function in systems where shaft access is limited. They are easily removed without tools.
China Standard Flexible Drum Gear Shaft Coupling (GIICL)     bibliographic couplingChina Standard Flexible Drum Gear Shaft Coupling (GIICL)     bibliographic coupling
editor by czh 2022-12-25