China Standard Gicl Gear Coupling for Rolling Mill with Best Sales

Solution Description

High quality IS OUR Tradition!!!!!

This shaft coupling is suited for the joint of 2 level coacial traces, and has the transmissive shafting of particular angular displacement. The transmission nominal torque is .8~3200KN·m, and the temperature of functioning problem is -20~+80ºC

Its products apply extensively in transportataion, metallurgy, chemical sector, mine, developing building, hoist and other industries and equipments, and provide for a variety of significant industries yr by 12 months.

 

Model Nominal Torque
Tn/N.m
Speed
[n]
r/min
Shaft Hole Dia Shaft Hole
Size
D D1 A C C1 C2 Rotational
InertiaKg
Grease
ml
Weight
Kg
Y Z1,J1
d1,d2,d3 L
GICL1 630 7100 sixteen,18,19 42 125 95 75 20 0.009 55 5.9
20,22,24 fifty two 38 24
twenty five,28 62 forty four 10 19
30,32,35,38 eighty two sixty 2.5 15 22
GICL2 1120 6300 25,28 62 44 144 120 88 10.5 29 0.02 100 9.seven
thirty,32,35,38 eighty two 60 twelve.5 thirty
40,forty two,45,forty eight 112 84 two.5 thirteen.five 28
GICL3 2240 5900 30,32,35,38 eighty two sixty 174 140 106 3 24.5 25 0.047 140 17.two
forty,42,forty five,forty eight,50,55,56 112 eighty four 17 28
sixty 142 107 35
GICL4 3600 5400 32,35,38 82 sixty 196 165 125.five 14 37 32 0.091 170 24.9
40,42,forty five,forty eight,fifty,fifty five,fifty six 112 84 28
sixty,sixty three,65,70 142 107 3 17 35
GICL5 5000 5000 forty,forty two,forty five,48,fifty,55,fifty six 112 eighty four 224 183 142 3 twenty five 28 0.167 270 38
60 63 65 70 71 75 142 107 20 35
80 172 132 22 43
GICL6 7100 4800 48 50 55 56 112 eighty four 241 200 160 6 35 35 0.267 380 48.two
60 63 65 70 71 75 142 107 20 35
80 85 90 172 132 4 22 43
GICL7 10000 4500 60 63 65 70 71 75 142 107 260 230 180 4 35 35 0.453 570 68.9
80 85 90 95 172 132 22 43
100 212 167 forty eight
GICL8 14000 4000 65 70 71 75 142 107 282 245 193 5 35 35 0.646 660 83.three
80 85 90 95 172 132 22 forty three
100 110 212 167 48
GICL9 18000 3500 70 71 75 142 107 314 270 208 10 45 45 1.036 700 110
80 85 90 95 172 132
100 110 120 125 212 167 5 22 43
49
GICL10 31500 3200 80 85 90 95 172 132 346 300 249 5 forty three 43 1.88 900 157
100 110 120 125 212 167 22 49
130 140 252 202 29 fifty four
GICL11 40000 3000 100 110 120 125 212 167 380 330 267 6 29 49 3.28 1200 217
130 140 150 252 202 54
160 302 242 64
GICL12 56000 2600 120 125 212 167 442 380 313 6 fifty seven fifty seven 5.08 2000 305
130 140 150 252 202 29 55
160 170 180 302 242 sixty eight
GICL13 80000 2300 140 150 252 202 482 420 364 7 fifty four fifty seven 10.06 3000 419
160 170 180 302 242 32 70
190 200 352 282 eighty
GICL14 112000 2100 160 170 180 302 242 520 465 415 8 forty two 70 16.774 4500 594
190 200 220 352 282 32 eighty
GICL15 160000 1900 190 200 220 352 282 580 510 429 10 34 80 26.fifty five 5000 783
140 150 410 330 38
GICL16 250000 1600 200 220 352 282 680 595 501 10 fifty eight eighty 52.22 8000 1134
240 250 260 410 330 38
280 470 380 38
GICL17 280000 1500 220 352 282 720 645 512 10 74 80 69 10000 1305
240 250 260 410 330
280 300 470 380 39
GICL18 355000 1400 240 250 260 410 330 775 675 524 10 46 96.16 11000 1626
280 300 320 470 380 41
GICL19 450000 1300 260 410 330 815 715 560 10 67 115.6 13000 1773
280 300 320 470 380 41
340 550 450
GICL20 500000 1200 280 300 320 470 380 855 755 595 13 44 167.41 16000 2263
340 360 550 450
GICL21 630000 1100 300 320 470 380 915 795 611 13 59 215.7 20000 2593
340 360 380 550 450 44
GICL22 710000 950 340,360,380 550 450 960 840 632 13 44 278.07 26000 3036
400 650 450
GICL23 800000 900 360,380 550 450 1571 890 666 13 44 379.four 29000 3668
400,420 650 540 48
GICL24 1000000 875 380 550 450 1050 925 685 15 forty six 448.1 32000 3946
400,420,450 650 540 50
GICL25 1120000 850 400,420,450,480 650 540 1120 970 724 15 fifty 564.sixty four 34000 4443
GICL26 1250000 825 420,450,480,500 650 540 1160 990 733 15 50 637.4 37000 4791
GICL27 1400000 800 450,480,500 650 540 1210 1060 739 15 50 866.26 45000 5758
530 800 680
GICL28 1600000 770 480,five hundred 650 540 1250 1080 805 20 55 1571.76 47000 6232
530,560 800 680
GICL29 2240000 725 five hundred 650 540 1340 1200 798 20 57 1450.eighty four 50000 7549
530,560,600 800 680
GICL30 2800000 seven-hundred 530,560,600,630 800 680 1390 1240 806 20 fifty five 1974.17 59000 9514

 

HangZhou CZPT Machinery Co., Ltd is a medium-scale business specialized in the manufacture of shaft coupling and paper-creating equipment with the integration of design, creation and provider.

Orienthold specialized in the creation of a variety of collection couplings, complete have 29 series, much more than 580 types of couplings, this kind of as universal couplings, cardan shafts, equipment couplings, flexible couplings, elastic couplings, plum claw-type couplings, disc couplings, tyre couplings, roller chain couplings and so on. All of our goods are broadly employed in metallurgy, mining, shipbuilding, port, paper producing and large equipment business.

Orienthold offer supporting solutions for many domestic large and center scale Iron and steel businesses, productively concluded more than ten localization assignments of imported coupling generation line.

 


/ Set
|
10 Sets

(Min. Order)

###

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

###

Customization:
Available

|


###

Model Nominal Torque
Tn/N.m
Speed
[n]
r/min
Shaft Hole Dia Shaft Hole
Length
D D1 A C C1 C2 Rotational
InertiaKg
Grease
ml
Weight
Kg
Y Z1,J1
d1,d2,d3 L
GICL1 630 7100 16,18,19 42 125 95 75 20 0.009 55 5.9
20,22,24 52 38 24
25,28 62 44 10 19
30,32,35,38 82 60 2.5 15 22
GICL2 1120 6300 25,28 62 44 144 120 88 10.5 29 0.02 100 9.7
30,32,35,38 82 60 12.5 30
40,42,45,48 112 84 2.5 13.5 28
GICL3 2240 5900 30,32,35,38 82 60 174 140 106 3 24.5 25 0.047 140 17.2
40,42,45,48,50,55,56 112 84 17 28
60 142 107 35
GICL4 3600 5400 32,35,38 82 60 196 165 125.5 14 37 32 0.091 170 24.9
40,42,45,48,50,55,56 112 84 28
60,63,65,70 142 107 3 17 35
GICL5 5000 5000 40,42,45,48,50,55,56 112 84 224 183 142 3 25 28 0.167 270 38
60 63 65 70 71 75 142 107 20 35
80 172 132 22 43
GICL6 7100 4800 48 50 55 56 112 84 241 200 160 6 35 35 0.267 380 48.2
60 63 65 70 71 75 142 107 20 35
80 85 90 172 132 4 22 43
GICL7 10000 4500 60 63 65 70 71 75 142 107 260 230 180 4 35 35 0.453 570 68.9
80 85 90 95 172 132 22 43
100 212 167 48
GICL8 14000 4000 65 70 71 75 142 107 282 245 193 5 35 35 0.646 660 83.3
80 85 90 95 172 132 22 43
100 110 212 167 48
GICL9 18000 3500 70 71 75 142 107 314 270 208 10 45 45 1.036 700 110
80 85 90 95 172 132
100 110 120 125 212 167 5 22 43
49
GICL10 31500 3200 80 85 90 95 172 132 346 300 249 5 43 43 1.88 900 157
100 110 120 125 212 167 22 49
130 140 252 202 29 54
GICL11 40000 3000 100 110 120 125 212 167 380 330 267 6 29 49 3.28 1200 217
130 140 150 252 202 54
160 302 242 64
GICL12 56000 2600 120 125 212 167 442 380 313 6 57 57 5.08 2000 305
130 140 150 252 202 29 55
160 170 180 302 242 68
GICL13 80000 2300 140 150 252 202 482 420 364 7 54 57 10.06 3000 419
160 170 180 302 242 32 70
190 200 352 282 80
GICL14 112000 2100 160 170 180 302 242 520 465 415 8 42 70 16.774 4500 594
190 200 220 352 282 32 80
GICL15 160000 1900 190 200 220 352 282 580 510 429 10 34 80 26.55 5000 783
140 150 410 330 38
GICL16 250000 1600 200 220 352 282 680 595 501 10 58 80 52.22 8000 1134
240 250 260 410 330 38
280 470 380 38
GICL17 280000 1500 220 352 282 720 645 512 10 74 80 69 10000 1305
240 250 260 410 330
280 300 470 380 39
GICL18 355000 1400 240 250 260 410 330 775 675 524 10 46 96.16 11000 1626
280 300 320 470 380 41
GICL19 450000 1300 260 410 330 815 715 560 10 67 115.6 13000 1773
280 300 320 470 380 41
340 550 450
GICL20 500000 1200 280 300 320 470 380 855 755 595 13 44 167.41 16000 2263
340 360 550 450
GICL21 630000 1100 300 320 470 380 915 795 611 13 59 215.7 20000 2593
340 360 380 550 450 44
GICL22 710000 950 340,360,380 550 450 960 840 632 13 44 278.07 26000 3036
400 650 450
GICL23 800000 900 360,380 550 450 1010 890 666 13 44 379.4 29000 3668
400,420 650 540 48
GICL24 1000000 875 380 550 450 1050 925 685 15 46 448.1 32000 3946
400,420,450 650 540 50
GICL25 1120000 850 400,420,450,480 650 540 1120 970 724 15 50 564.64 34000 4443
GICL26 1250000 825 420,450,480,500 650 540 1160 990 733 15 50 637.4 37000 4791
GICL27 1400000 800 450,480,500 650 540 1210 1060 739 15 50 866.26 45000 5758
530 800 680
GICL28 1600000 770 480,500 650 540 1250 1080 805 20 55 1020.76 47000 6232
530,560 800 680
GICL29 2240000 725 500 650 540 1340 1200 798 20 57 1450.84 50000 7549
530,560,600 800 680
GICL30 2800000 700 530,560,600,630 800 680 1390 1240 806 20 55 1974.17 59000 9514

/ Set
|
10 Sets

(Min. Order)

###

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

###

Customization:
Available

|


###

Model Nominal Torque
Tn/N.m
Speed
[n]
r/min
Shaft Hole Dia Shaft Hole
Length
D D1 A C C1 C2 Rotational
InertiaKg
Grease
ml
Weight
Kg
Y Z1,J1
d1,d2,d3 L
GICL1 630 7100 16,18,19 42 125 95 75 20 0.009 55 5.9
20,22,24 52 38 24
25,28 62 44 10 19
30,32,35,38 82 60 2.5 15 22
GICL2 1120 6300 25,28 62 44 144 120 88 10.5 29 0.02 100 9.7
30,32,35,38 82 60 12.5 30
40,42,45,48 112 84 2.5 13.5 28
GICL3 2240 5900 30,32,35,38 82 60 174 140 106 3 24.5 25 0.047 140 17.2
40,42,45,48,50,55,56 112 84 17 28
60 142 107 35
GICL4 3600 5400 32,35,38 82 60 196 165 125.5 14 37 32 0.091 170 24.9
40,42,45,48,50,55,56 112 84 28
60,63,65,70 142 107 3 17 35
GICL5 5000 5000 40,42,45,48,50,55,56 112 84 224 183 142 3 25 28 0.167 270 38
60 63 65 70 71 75 142 107 20 35
80 172 132 22 43
GICL6 7100 4800 48 50 55 56 112 84 241 200 160 6 35 35 0.267 380 48.2
60 63 65 70 71 75 142 107 20 35
80 85 90 172 132 4 22 43
GICL7 10000 4500 60 63 65 70 71 75 142 107 260 230 180 4 35 35 0.453 570 68.9
80 85 90 95 172 132 22 43
100 212 167 48
GICL8 14000 4000 65 70 71 75 142 107 282 245 193 5 35 35 0.646 660 83.3
80 85 90 95 172 132 22 43
100 110 212 167 48
GICL9 18000 3500 70 71 75 142 107 314 270 208 10 45 45 1.036 700 110
80 85 90 95 172 132
100 110 120 125 212 167 5 22 43
49
GICL10 31500 3200 80 85 90 95 172 132 346 300 249 5 43 43 1.88 900 157
100 110 120 125 212 167 22 49
130 140 252 202 29 54
GICL11 40000 3000 100 110 120 125 212 167 380 330 267 6 29 49 3.28 1200 217
130 140 150 252 202 54
160 302 242 64
GICL12 56000 2600 120 125 212 167 442 380 313 6 57 57 5.08 2000 305
130 140 150 252 202 29 55
160 170 180 302 242 68
GICL13 80000 2300 140 150 252 202 482 420 364 7 54 57 10.06 3000 419
160 170 180 302 242 32 70
190 200 352 282 80
GICL14 112000 2100 160 170 180 302 242 520 465 415 8 42 70 16.774 4500 594
190 200 220 352 282 32 80
GICL15 160000 1900 190 200 220 352 282 580 510 429 10 34 80 26.55 5000 783
140 150 410 330 38
GICL16 250000 1600 200 220 352 282 680 595 501 10 58 80 52.22 8000 1134
240 250 260 410 330 38
280 470 380 38
GICL17 280000 1500 220 352 282 720 645 512 10 74 80 69 10000 1305
240 250 260 410 330
280 300 470 380 39
GICL18 355000 1400 240 250 260 410 330 775 675 524 10 46 96.16 11000 1626
280 300 320 470 380 41
GICL19 450000 1300 260 410 330 815 715 560 10 67 115.6 13000 1773
280 300 320 470 380 41
340 550 450
GICL20 500000 1200 280 300 320 470 380 855 755 595 13 44 167.41 16000 2263
340 360 550 450
GICL21 630000 1100 300 320 470 380 915 795 611 13 59 215.7 20000 2593
340 360 380 550 450 44
GICL22 710000 950 340,360,380 550 450 960 840 632 13 44 278.07 26000 3036
400 650 450
GICL23 800000 900 360,380 550 450 1010 890 666 13 44 379.4 29000 3668
400,420 650 540 48
GICL24 1000000 875 380 550 450 1050 925 685 15 46 448.1 32000 3946
400,420,450 650 540 50
GICL25 1120000 850 400,420,450,480 650 540 1120 970 724 15 50 564.64 34000 4443
GICL26 1250000 825 420,450,480,500 650 540 1160 990 733 15 50 637.4 37000 4791
GICL27 1400000 800 450,480,500 650 540 1210 1060 739 15 50 866.26 45000 5758
530 800 680
GICL28 1600000 770 480,500 650 540 1250 1080 805 20 55 1020.76 47000 6232
530,560 800 680
GICL29 2240000 725 500 650 540 1340 1200 798 20 57 1450.84 50000 7549
530,560,600 800 680
GICL30 2800000 700 530,560,600,630 800 680 1390 1240 806 20 55 1974.17 59000 9514

Types of Couplings

A coupling is a device used to join two shafts together and transmit power. Its purpose is to join rotating equipment while permitting a degree of end movement and misalignment. There are many types of couplings, and it is important to choose the right one for your application. Here are a few examples of couplings.

Mechanical

The mechanical coupling is an important component in power transmission systems. These couplings come in various forms and can be used in different types of applications. They can be flexible or rigid and operate in compression or shear. In some cases, they are permanently attached to the shaft, while in other cases, they are removable for service.
The simplest type of mechanical coupling is the sleeve coupling. It consists of a cylindrical sleeve with an internal diameter equal to the diameter of the shafts. The sleeve is connected to the shafts by a key that restricts their relative motion and prevents slippage. A few sleeve couplings also have threaded holes to prevent axial movement. This type of coupling is typically used for medium to light-duty torque.
Another type of mechanical coupling is a jaw coupling. It is used in motion control and general low-power transmission applications. This type of coupling does not require lubrication and is capable of accommodating angular misalignment. Unlike other types of couplings, the jaw coupling uses two hubs with intermeshing jaws. The jaw coupling’s spider is typically made of copper alloys. In addition, it is suitable for shock and vibration loads.
Mechanical couplings can be made from a variety of materials. One popular choice is rubber. The material can be natural or chloroprene. These materials are flexible and can tolerate slight misalignment.
gearbox

Electrical

Electrical coupling is the process in which a single electrical signal is transferred from a nerve cell to another. It occurs when electrical signals from two nerve cells interact with each other in a way similar to haptic transmission. This type of coupling can occur on its own or in combination with electrotonic coupling in gap junctions.
Electrical coupling is often associated with oscillatory behavior of neurons. The mechanism of electrical coupling is complex and is studied mathematically to understand its effect on oscillatory neuron networks. For example, electrical coupling can increase or decrease the frequency of an oscillator, depending on the state of the neuron coupled to it.
The site of coupling is usually the junction of opposing cell membranes. The cellular resistance and the coupling resistance are measured in voltage-clamp experiments. This type of coupling has a specific resistance of 100 O-cm. As a result, the coupling resistance varies with the frequency.
The authors of this study noted that electrotonic coupling depends on the ratio between the resistance of the nonjunctional membranes and the junctional membranes. The voltage attenuation technique helps reveal the differences in resistance and shunting through the intercellular medium. However, it is unclear whether electrotonic coupling is electrostatically mediated.
Electrical coupling has also been suggested to play a role in the intercellular transfer of information. There are many examples that support this theory. A message can be a distinct qualitative or quantitative signal, which results in a gradient in the cells. Although gap junctions are absent at many embryonic interaction sites, increasing evidence suggests a role in information transfer.

Flexible

When it comes to choosing the right Flexible Coupling, there are several factors that you should take into account. Among these factors is the backlash that can be caused by the movement of the coupling. The reason for this problem is the fact that couplings that do not have anti-fungal properties can be easily infected by mold. The best way to avoid this is to pay attention to the moisture content of the area where you are installing the coupling. By following these guidelines, you can ensure the best possible installation.
To ensure that you are getting the most out of your flexible couplings, you must consider their characteristics and how easy they are to install, assemble, and maintain. You should also look for elements that are field-replaceable. Another important factor is the coupling’s torsional rigidity. It should also be able to handle reactionary loads caused by misalignment.
Flexible couplings come in many different types. There are diaphragm and spiral couplings. These couplings allow for axial motion, angular misalignment, and parallel offset. They have one-piece construction and are made from stainless steel or aluminum. These couplings also offer high torsional stiffness, which is beneficial for applications requiring high torques.
Flexible couplings have several advantages over their rigid counterparts. They are designed to handle misalignments of up to seven degrees and 0.025 inches. These characteristics are important in motion control applications. Flexible couplings are also inexpensive, and they do not require maintenance.
gearbox

Beam

A beam coupling is a type of mechanical coupling, usually one solid piece, that connects two mechanical parts. Its performance is largely determined by the material used. Typical materials include stainless steel, aluminum, Delrin, and titanium. The beam coupling is rated for different speeds and torques. The coupling should be selected according to the application. In addition to the material, the application should also consider the speed and torque of the system.
There are two main types of beam couplings. The first is the helical beam coupling, which has a continuous multi spiral cut. This type of coupling offers a high degree of flexibility and compensates for a high degree of misalignment. The second type of beam coupling is the helical shaft coupling, which has a low torsional stiffness, which makes it ideal for small torque applications.
Another type of beam coupling is the multiple beam design, which combines two beams. It allows for more tolerance in manufacturing and installation and protects expensive components from excessive bearing loads. It also helps keep beams shorter than a single beam coupling. This type of coupling also enables a higher torque capacity and torsional stiffness.
Beam couplings can be manufactured with different materials, including stainless steel and aluminum. The “A” series is available in aluminum and stainless steel and is ideal for general-purpose and light-duty applications. It is also economical and durable. This type of coupling can also be used with low torque pumps or encoder/resolver systems.

Pin & bush

The Pin & bush coupling is a versatile, general-purpose coupling with high tensile bolts and rubber bushes. It can tolerate a wide range of operating temperatures and is suitable for use in oil and water-resistance applications. Its unique design enables it to be used in either direction. In addition, it requires no lubrication.
The pin bush coupling is a fail-safe coupling with a long service life and is used for high-torque applications. It provides torsional flexibility and dampens shocks, making it a flexible coupling that protects equipment and reduces maintenance costs. Its hubs are forged from graded cast iron for strength and durability. Besides, the coupling’s elastomer elements reduce vibration and impact loads. It also accommodates a misalignment of up to 0.5 degrees.
Pin & bush couplings are a popular choice for a variety of different applications. This coupling features a protective flange design that protects the coupling flange from wear and tear. The coupling nut is secured to one flange, while a rubber or leather bush sits between the other flange. Its unique design makes it ideal for use in applications where misalignment is a small factor. The rubber bushing also helps absorb vibration and shock.
gearbox

Mesh tooth

Mesh tooth couplings are used to transfer torque between two shafts and reduce backlash. However, mesh tooth couplings have some limitations. One disadvantage is the break-away friction factor in the axial direction. This problem is caused by the high contact force between the tooth and gear mesh. This can cause unpredictable forces on the shafts.
In this paper, we present a FEM model for mesh tooth coupling. We first validate the mesh density. To do so, we compute the bolt stress as a uniaxial tensile during the tightening process. We used different mesh sizes and mesh density to validate our results.
The mesh stiffness of gear pairs is influenced by lead crown relief and misalignment. For example, if one tooth is positioned too far in the axis, the mesh stiffness will be decreased. A misaligned gear pair will lose torque capacity. A mesh tooth coupling can be lubricated with oil.
An ideal mesh tooth coupling has no gaps between the teeth, which reduces the risk of uneven wear. The coupling’s quality exposed fasteners include SAE Grade 5 bolts. It also offers corrosion resistance. The couplings are compatible with industrial environments. They also eliminate the need for selective assembly in sleeve couplings.
China Standard Gicl Gear Coupling for Rolling Mill     with Best Sales China Standard Gicl Gear Coupling for Rolling Mill     with Best Sales
editor by CX 2023-03-27