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China Gl-82X98 Double Diaphragm Clamping Coupling dry break coupling

Item Description

GL Aluminum alloy double diaphragm clamping coupling

Description of GL Aluminum alloy double diaphragm clamping coupling
>High torque rigidity, can accurately management the rotation of the shaft, can carry out substantial-precision management
>Designed for servo and stepping motor
>No gap in between the shaft and sleeve relationship, common for good and adverse rotation
>Low inertia, suited for higher velocity procedure
>The diaphragm is manufactured of spring metal with exceptional fatigue resistance
>Fastening technique of clamping screw

Proportions of GL Aluminum alloy double diaphragm clamping coupling

model parameter common bore diameter d1,d2 ΦD L LF LP d3 S F M tightening screw torque
(N.M)
GL-19X27 3,4,5,6,6.35,7,eight 19 27 nine.one 5.2 Φ9 one.8 3.3 M2.five 1
GL-26X35 5,6,6.35,7,8,9,9.525,ten,11,12,fourteen 26 35 11.sixty five 6.5 Φ12.five 2.six three.9 M3 one.5
GL-32X41 five,6,6.35,7,8,9,9.525,ten,eleven,twelve,twelve.7,fourteen,fifteen, 32 forty five 12.twenty five nine.5 Φ15 three.5 3.85 M3 1.five
GL-34X45 5,6,6.35,7,8,9,9.525,10,11,twelve,12.7,14,15,16 34 45 fourteen.25 9.5 Φ16 4.five four.eighty five M4 two.five
GL-39X50 8,9,9.525,10,11,twelve,12.7,14,15,16,17,eighteen,19 39 50 14.nine 11.two Φ9.three four.five five M4 two.5
GL-44X50 8,9,9.525,ten,eleven,twelve,12.7,14,fifteen,16,17,eighteen,19,twenty,22 forty four fifty fourteen.nine eleven.two Φ2.5 four.5 five M4 2.five
GL-50X63 8,9,9.525,ten,11,twelve,12.7,fourteen,fifteen,16,seventeen,18,19,20,22,24,25 fifty sixty three 20.6 twelve.five Φ23 four.8 6 M5 seven
GL-56X64 10,twelve,14,15,16,17,18,19,20,22,24,25,28,30,32 56 sixty four 19.seventy five thirteen.5 Φ2.5 five.five 6.4 M5 7
GL-68X75 twelve,14,15,16,17,eighteen,19,twenty,22,24,twenty five,28,30,32,35,38 68 seventy five 23.35 15.seven Φ38.3 six.three seven.7 M6 twelve
GL-82X98 17,eighteen,19,twenty,22,24,25,28,30,32,35,38,forty,forty two eighty two 98 30 22 Φ45.five eight 9.seven M8 twenty

 

model parameter Rated torque
(N.M)*
allowable eccentricity
(mm)*
allowable deflection angle
(°)*
allowable axial deviation
(mm)*
greatest pace
rpm
static torsional stiffness
(N.M/rad)
moment of inertia
(Kg.Mtwo)
Content of shaft sleeve Substance of shrapnel surface area therapy excess weight
(g)
GL-19X27 one .12 one.five ±0.18 10000 170 nine.1×10-seven Large power aluminum alloy SUS304Spring metal Anodizing treatment method fourteen.six
GL-26X35 1.five .15 1.five ±0.three 10000 820 3.0×10-six 37
GL-32X41 two .seventeen one.five ±0.36 10000 1750 one.0x10-5 67
GL-34X45 three .seventeen one.five ±0.36 ten thousand 1860 one.1×10-five 77
GL-39X50 six .22 one.five ±0.45 ten thousand 2860 3.0×10-five 118
GL-44X50 nine .22 one.5 ±0.54 10000 3300 three.8×10-5 one hundred forty four
GL-50X63 18 .1 one.5 ±0.fifty four 10000 3300 three.0x10-five 235
GL-56X64 twenty five .27 one.5 ±0.72 10000 9480 1.6×10-4 318
GL-68X75 sixty .31 one.5 ±0.eight 9000 19000 two.0x10-four 492
GL-82X98 100 .55 1.5 ±0.eight 8000 28450 two.5×10-4 1013

 

 

US $5-25
/ Piece
|
1 Piece

(Min. Order)

###

Standard Or Nonstandard: Standard
Shaft Hole: 3-42
Torque: 1-100
Bore Diameter: 3-42
Speed: 8000-10000
Structure: Flexible

###

Customization:

###

model parameter common bore diameter d1,d2 ΦD L LF LP d3 S F M tightening screw torque
(N.M)
GL-19X27 3,4,5,6,6.35,7,8 19 27 9.1 5.2 Φ9 1.8 3.3 M2.5 1
GL-26X35 5,6,6.35,7,8,9,9.525,10,11,12,14 26 35 11.65 6.5 Φ12.5 2.6 3.9 M3 1.5
GL-32X41 5,6,6.35,7,8,9,9.525,10,11,12,12.7,14,15, 32 45 12.25 9.5 Φ15 3.5 3.85 M3 1.5
GL-34X45 5,6,6.35,7,8,9,9.525,10,11,12,12.7,14,15,16 34 45 14.25 9.5 Φ16 4.5 4.85 M4 2.5
GL-39X50 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19 39 50 14.9 11.2 Φ9.3 4.5 5 M4 2.5
GL-44X50 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19,20,22 44 50 14.9 11.2 Φ2.5 4.5 5 M4 2.5
GL-50X63 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19,20,22,24,25 50 63 20.6 12.5 Φ23 4.8 6 M5 7
GL-56X64 10,12,14,15,16,17,18,19,20,22,24,25,28,30,32 56 64 19.75 13.5 Φ2.5 5.5 6.4 M5 7
GL-68X75 12,14,15,16,17,18,19,20,22,24,25,28,30,32,35,38 68 75 23.35 15.7 Φ38.3 6.3 7.7 M6 12
GL-82X98 17,18,19,20,22,24,25,28,30,32,35,38,40,42 82 98 30 22 Φ45.5 8 9.7 M8 20

###

model parameter Rated torque
(N.M)*
allowable eccentricity
(mm)*
allowable deflection angle
(°)*
allowable axial deviation
(mm)*
maximum speed
rpm
static torsional stiffness
(N.M/rad)
moment of inertia
(Kg.M
2)
Material of shaft sleeve Material of shrapnel surface treatment weight
(g)
GL-19X27 1 0.12 1.5 ±0.18 10000 170 9.1×10-7 High strength aluminum alloy SUS304Spring steel Anodizing treatment 14.6
GL-26X35 1.5 0.15 1.5 ±0.3 10000 820 3.0×10-6 37
GL-32X41 2 0.17 1.5 ±0.36 10000 1750 1.0×10-5 67
GL-34X45 3 0.17 1.5 ±0.36 10000 1860 1.1×10-5 77
GL-39X50 6 0.22 1.5 ±0.45 10000 2860 3.0×10-5 118
GL-44X50 9 0.22 1.5 ±0.54 10000 3300 3.8×10-5 144
GL-50X63 18 0.1 1.5 ±0.54 10000 3300 3.0×10-5 235
GL-56X64 25 0.27 1.5 ±0.72 10000 9480 1.6×10-4 318
GL-68X75 60 0.31 1.5 ±0.8 9000 19000 2.0×10-4 492
GL-82X98 100 0.55 1.5 ±0.8 8000 28450 2.5×10-4 1013
US $5-25
/ Piece
|
1 Piece

(Min. Order)

###

Standard Or Nonstandard: Standard
Shaft Hole: 3-42
Torque: 1-100
Bore Diameter: 3-42
Speed: 8000-10000
Structure: Flexible

###

Customization:

###

model parameter common bore diameter d1,d2 ΦD L LF LP d3 S F M tightening screw torque
(N.M)
GL-19X27 3,4,5,6,6.35,7,8 19 27 9.1 5.2 Φ9 1.8 3.3 M2.5 1
GL-26X35 5,6,6.35,7,8,9,9.525,10,11,12,14 26 35 11.65 6.5 Φ12.5 2.6 3.9 M3 1.5
GL-32X41 5,6,6.35,7,8,9,9.525,10,11,12,12.7,14,15, 32 45 12.25 9.5 Φ15 3.5 3.85 M3 1.5
GL-34X45 5,6,6.35,7,8,9,9.525,10,11,12,12.7,14,15,16 34 45 14.25 9.5 Φ16 4.5 4.85 M4 2.5
GL-39X50 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19 39 50 14.9 11.2 Φ9.3 4.5 5 M4 2.5
GL-44X50 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19,20,22 44 50 14.9 11.2 Φ2.5 4.5 5 M4 2.5
GL-50X63 8,9,9.525,10,11,12,12.7,14,15,16,17,18,19,20,22,24,25 50 63 20.6 12.5 Φ23 4.8 6 M5 7
GL-56X64 10,12,14,15,16,17,18,19,20,22,24,25,28,30,32 56 64 19.75 13.5 Φ2.5 5.5 6.4 M5 7
GL-68X75 12,14,15,16,17,18,19,20,22,24,25,28,30,32,35,38 68 75 23.35 15.7 Φ38.3 6.3 7.7 M6 12
GL-82X98 17,18,19,20,22,24,25,28,30,32,35,38,40,42 82 98 30 22 Φ45.5 8 9.7 M8 20

###

model parameter Rated torque
(N.M)*
allowable eccentricity
(mm)*
allowable deflection angle
(°)*
allowable axial deviation
(mm)*
maximum speed
rpm
static torsional stiffness
(N.M/rad)
moment of inertia
(Kg.M
2)
Material of shaft sleeve Material of shrapnel surface treatment weight
(g)
GL-19X27 1 0.12 1.5 ±0.18 10000 170 9.1×10-7 High strength aluminum alloy SUS304Spring steel Anodizing treatment 14.6
GL-26X35 1.5 0.15 1.5 ±0.3 10000 820 3.0×10-6 37
GL-32X41 2 0.17 1.5 ±0.36 10000 1750 1.0×10-5 67
GL-34X45 3 0.17 1.5 ±0.36 10000 1860 1.1×10-5 77
GL-39X50 6 0.22 1.5 ±0.45 10000 2860 3.0×10-5 118
GL-44X50 9 0.22 1.5 ±0.54 10000 3300 3.8×10-5 144
GL-50X63 18 0.1 1.5 ±0.54 10000 3300 3.0×10-5 235
GL-56X64 25 0.27 1.5 ±0.72 10000 9480 1.6×10-4 318
GL-68X75 60 0.31 1.5 ±0.8 9000 19000 2.0×10-4 492
GL-82X98 100 0.55 1.5 ±0.8 8000 28450 2.5×10-4 1013

What Is a Coupling?

A coupling is a device that connects two shafts together. It transmits power from one to the other and is used to join rotating equipment. It can also allow for some degree of misalignment and end movement. It is used in mechanical engineering and manufacturing. To learn more about couplings, read this article.
gearboxMechanical connection between two objectsThe present invention relates to a method and assembly for forming a mechanical connection between two objects. The methods of this invention are suitable for connecting both solid and hollow objects. For example, the method can be used to make mechanical connections between two cylinders. This method is particularly useful for connecting two cylinders that are positioned near each other.

Absorbs vibration

A coupling insert is a part of a vehicle’s drivetrain that absorbs vibrations. These inserts are designed to prevent couplings from moving out of phase. However, the coupling inserts themselves can wear out and need to be replaced. Universal joints are an alternative if the coupling is out of phase by more than one degree. In addition, internal bearings in the coupling need to be lubricated and replaced when they begin to show signs of wear.
Another embodiment of the invention includes a flexible coupling 25 that includes rearwardly-extending lugs that extend toward the coupling member 23. These lugs interdigitate with corresponding lugs on the coupling member 23. They are spaced circumferentially. A first elastic member 28 is interposed between lugs 26 and 27, and is adapted to yield in a counterclockwise direction. As a result, it absorbs torsional vibrations.
gearbox

Blocks heat transfer

Thermal coupling occurs when a solid block is thermally coupled to the air or fluid passing through it. The amount of heat transferred through a solid block depends on the heat transfer coefficients of the materials. This paper presents a numerical model to understand how heat transfers through different block materials. This work also describes the thermal resistance network for a one-dimensional block.
In some cases, thermal coupling increases the heat transfer mechanism. As illustrated in FIG. 1D, a heatpipe coupler 112 couples two heatpipes 110-1 and 110-2. This configuration allows the pipes to be coupled to the heat source and to the condenser. In addition, the heat pipe couplers may have bellows at the ends to help facilitate linear motion.
Thermal coupling is achieved by ensuring that at least one block is made of a material with a lower thermal expansion coefficient than the annulus. Ideally, the block’s mean thermal expansion coefficient is at least twenty percent lower than the annulus’s mean thermal expansion coefficient. This ensures that the thermal coupling between the two parts is as efficient as possible.
Another type of thermal coupling is achieved by using flexible elements. These are often washers or springs. These components allow the blocks to maintain physical contact with the post 55, which means that the heat transfer is more efficient even at higher temperatures. The flexibility of these elements also makes it possible to choose an element that will not impede assembly.
gearbox

Protects rotating equipment

A reliable, long-lasting coupling system can reduce the risk of damage to rotating equipment. Designed to protect against torque overload and wear, Voith torque-limiting couplings provide outstanding safety and reliability. As a result, they can deliver maximum performance and minimize equipment downtime. In addition to their long-term benefits, these solutions are ideal for applications where safety and reliability are of paramount importance.
A good coupling provides many advantages, including the ability to transmit power, compensate for axial movement, and absorb shock. It is essential to choose the proper coupling for your application based on the basic conditions of your rotating equipment. For example, if you have two shafts with parallel rotation axes, you should choose a parallel coupling. Otherwise, you should use an angular coupling.
Torque-limiting couplings can also provide protection for rotating equipment by disengaging at a specific torque level. This protects the drive shaft from undergoing catastrophic failure. Torque limiters are particularly helpful for high-value equipment. By preventing catastrophic failure, you can avoid expensive repairs and minimize equipment downtime.
Coupling guards are easy to install and provide effective protection for rotating equipment. These covers are made of sheet metal bent to fit over the shaft. They are durable and easy to remove when necessary. This type of guard can prevent employees from catching their hands, tools, or loose clothing on motor coupling components.
China Gl-82X98 Double Diaphragm Clamping Coupling     dry break couplingChina Gl-82X98 Double Diaphragm Clamping Coupling     dry break coupling
editor by czh 2022-11-27

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