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Item Description

Hot Revenue Rubber Items Flexible Rubber Coupling with the very best price tag
 

Spare areas in pipe technique, managing, turning, shunting, sealing and help the other action
Like union joint,forged iron pipe ,plastic pipe ,copper pipe ,metal pipe , coupling, card sleeve, hose clamp, elbow, variable
diameter (reducer), decreasing elbow, branch pipe, reinforcing pipe, tee, four-way, plug, U-bent tube and so on.
1. EPDM rubber, NBR, PVC and stainless steel materials
two. Excellent abrasion corrosion and ageing resistance
three. Straightforward to assemble and change
4. Kinds of resources or types pipe accessible
 

 

Technical specs
 

Figure

Specification

PCS/CTN

G.W.kg

MEAS. CM

m3

 

 

check cap 1-1/2″

a hundred

seven.5

29x29x16

.013

examination cap 2″

100

9.5

40x40x22

.035

take a look at cap 3″

50

eight

 40x34x14

.019

test cap 4″

twenty five

eleven

50x42x17

.036

Flex CPLG 1-1/4″x1-1/4″

100

sixteen

32x32x30

.031

Flex CPLG 1-1/2″x1-1/2″

one hundred

fifteen

38x38x30

.043

Flex CPLG 2″x2″

a hundred

eighteen

44x44x30

.058

Flex CPLG 3″x3″

50

thirteen

46x40x30

.055

Flex CPLG 4″x4″

fifty

21

62x50x32

.one hundred

Flex CPLG 6″x6″

25

19.5

52x52x45

.122

 

Flex CPLG 1-1/2″x1-1/4″

100

thirteen

32x32x24

.571

Flex CPLG 2″x1-1/2″

a hundred

twenty

fifty three.5x38x26

.053

Flex CPLG 3″x1-1/2″

60

16

48x48x26

.060

Flex CPLG 3″x2″

60

20

48x48x26

.060

Flex CPLG 4″x1-1/2″

50

17

55x51x24

.067

Flex CPLG 4″x2″

fifty

eighteen.5

55x51x24

.067

Flex CPLG 4″x3″

50

19

55x51x24

.067

Flex CPLG 6″x4″

ten

16

42x42x22.5

.040

Qwik Elbow W/ss Clamp 1-1/2″

fifty

10

42x41x18

.031

Qwik Elbow W/ss Clamp 2″

fifty

14

50x49x21

.051

Qwik Elbow W/ss Clamp 3″

thirty

19

59x53x31

.097

Qwik Elbow W/ss Clamp 4″

ten

eleven.5

62x38x36

.085

Qwik Tee W/ss Clamp 1-1/2″

30

25.5

34x30x21

.571

Qwik Tee W/ss Clamp 2″

50

15.5

57.5×39.5×34.five

.078

Qwik Tee W/ss Clamp 3″

20

eighteen.five

61x61x28

.104

Qwik Tee W/ss Clamp 4″

ten

sixteen

62x62x23

.088

Our manufacturing facility and packing 
 

Packing as tailored

Certifications

Related Solution
 

 

FAQ: (Frequently Questioned Concerns)

one. What is your MOQ?
Our MOQ is typically 5 CTNS.

two. What is your delievery time?
Our delievery is about 25-30days.

3. What is your payment conditions?
We acknowledge T/T, one hundred% L/C, or West Union and so on.

4. Could you supply cost-free samples?
Typically, we offer you cost-free samples, consumers bear freight expense. 

five. Why choose us?

Firstly, comparing with several factories, our rates are more competitive.

Next, We one hundred% test doing work pressure for ALL our items.

Finally, After- Services will be hugely pleased. Any troubles and feedbacks will be responded efficiently.

Standard Or Nonstandard: Standard
Shaft Hole: 19-32
Torque: >80N.M
Bore Diameter: 19mm
Speed: 4000r/M
Structure: Flexible

###

Samples:
US$ 3/Piece
1 Piece(Min.Order)

|
Request Sample

###

Customization:

###

Figure

Specification

PCS/CTN

G.W.kg

MEAS. CM

m3

 

 

test cap 1-1/2"

100

7.5

29x29x16

0.013

test cap 2"

100

9.5

40x40x22

0.035

test cap 3"

50

8

 40x34x14

0.019

test cap 4"

25

11

50x42x17

0.036

Flex CPLG 1-1/4"x1-1/4"

100

16

32x32x30

0.031

Flex CPLG 1-1/2"x1-1/2"

100

15

38x38x30

0.043

Flex CPLG 2"x2"

100

18

44x44x30

0.058

Flex CPLG 3"x3"

50

13

46x40x30

0.055

Flex CPLG 4"x4"

50

21

62x50x32

0.100

Flex CPLG 6"x6"

25

19.5

52x52x45

0.122

 

Flex CPLG 1-1/2"x1-1/4"

100

13

32x32x24

0.025

Flex CPLG 2"x1-1/2"

100

20

53.5x38x26

0.053

Flex CPLG 3"x1-1/2"

60

16

48x48x26

0.060

Flex CPLG 3"x2"

60

20

48x48x26

0.060

Flex CPLG 4"x1-1/2"

50

17

55x51x24

0.067

Flex CPLG 4"x2"

50

18.5

55x51x24

0.067

Flex CPLG 4"x3"

50

19

55x51x24

0.067

Flex CPLG 6"x4"

10

16

42x42x22.5

0.040

Qwik Elbow W/ss Clamp 1-1/2"

50

10

42x41x18

0.031

Qwik Elbow W/ss Clamp 2"

50

14

50x49x21

0.051

Qwik Elbow W/ss Clamp 3"

30

19

59x53x31

0.097

Qwik Elbow W/ss Clamp 4"

10

11.5

62x38x36

0.085

Qwik Tee W/ss Clamp 1-1/2"

30

25.5

34x30x21

0.022

Qwik Tee W/ss Clamp 2"

50

15.5

57.5×39.5×34.5

0.078

Qwik Tee W/ss Clamp 3"

20

18.5

61x61x28

0.104

Qwik Tee W/ss Clamp 4"

10

16

62x62x23

0.088

Standard Or Nonstandard: Standard
Shaft Hole: 19-32
Torque: >80N.M
Bore Diameter: 19mm
Speed: 4000r/M
Structure: Flexible

###

Samples:
US$ 3/Piece
1 Piece(Min.Order)

|
Request Sample

###

Customization:

###

Figure

Specification

PCS/CTN

G.W.kg

MEAS. CM

m3

 

 

test cap 1-1/2"

100

7.5

29x29x16

0.013

test cap 2"

100

9.5

40x40x22

0.035

test cap 3"

50

8

 40x34x14

0.019

test cap 4"

25

11

50x42x17

0.036

Flex CPLG 1-1/4"x1-1/4"

100

16

32x32x30

0.031

Flex CPLG 1-1/2"x1-1/2"

100

15

38x38x30

0.043

Flex CPLG 2"x2"

100

18

44x44x30

0.058

Flex CPLG 3"x3"

50

13

46x40x30

0.055

Flex CPLG 4"x4"

50

21

62x50x32

0.100

Flex CPLG 6"x6"

25

19.5

52x52x45

0.122

 

Flex CPLG 1-1/2"x1-1/4"

100

13

32x32x24

0.025

Flex CPLG 2"x1-1/2"

100

20

53.5x38x26

0.053

Flex CPLG 3"x1-1/2"

60

16

48x48x26

0.060

Flex CPLG 3"x2"

60

20

48x48x26

0.060

Flex CPLG 4"x1-1/2"

50

17

55x51x24

0.067

Flex CPLG 4"x2"

50

18.5

55x51x24

0.067

Flex CPLG 4"x3"

50

19

55x51x24

0.067

Flex CPLG 6"x4"

10

16

42x42x22.5

0.040

Qwik Elbow W/ss Clamp 1-1/2"

50

10

42x41x18

0.031

Qwik Elbow W/ss Clamp 2"

50

14

50x49x21

0.051

Qwik Elbow W/ss Clamp 3"

30

19

59x53x31

0.097

Qwik Elbow W/ss Clamp 4"

10

11.5

62x38x36

0.085

Qwik Tee W/ss Clamp 1-1/2"

30

25.5

34x30x21

0.022

Qwik Tee W/ss Clamp 2"

50

15.5

57.5×39.5×34.5

0.078

Qwik Tee W/ss Clamp 3"

20

18.5

61x61x28

0.104

Qwik Tee W/ss Clamp 4"

10

16

62x62x23

0.088

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 Hight Quality Rubber Coupling as Customized with The Best Price     coupling constantChina Hight Quality Rubber Coupling as Customized with The Best Price     coupling constant
editor by czh 2023-01-15