China 1/2″X3/8″ Copper Pipe Reducer Coupling coupling contractions

Item Description

one/2″x3/8″ Copper Pipe Reducer Coupling

1.
Generation Technical specs

Specs:
Alloy: C12200, Cu-DHP
Measurement variety: OD size from 1/4″ to 4-1/8″ (from 6mm to 108mm)
Variety: CxC, FTGx C
Marking: our brand name title + measurement
Packing: Sealed by plastic bag, packing in sturdy sea worthy carton and palletized
Normal: ASME B16.22, EN 1254-1
Application: for plumbing, refrigeration and health-related fuel
Delivery time: 4-5 weeks
  
Copper Fittings Proportions

Nominal Dimension Male End (inch) Female End (inch) Wall Thickness
(inch)
Outside Diameter Length Inside Diameter Depth
Min. Max. Min. Min. Max. Min. Min.
1/4″ .373 .376 .38 .377 .381 .31 .571
three/8″ .497 .501 .forty four .502 .506 .38 .026
one/2″ .622 .626 .56 .627 .631 .fifty .571
five/8″ .747 .751 .69 .752 .756 .sixty two .031
three/4″ .872 .876 .81 .877 .881 .75 .033
1″ 1.122 1.127 .ninety seven 1.128 one.132 .91 .040
one-1/4″ 1.372 1.377 one.03 one.378 1.382 .97 .044
1-1/2″ 1.621 one.627 one.16 1.628 1.633 1.09 .051
2″ 2.121 two.127 1.forty one two.128 2.133 1.34 .059
two-1/2″ two.621 2.627 1.53 two.628 two.633 one.forty seven .067
three” 3.121 three.127 one.72 3.128 three.133 one.66 .075
three-1/2″ 3.621 3.627 one.97 three.628 3.633 1.91 .086
4″ 4.121 four.127 two.22 4.128 four.133 two.16 .096

 

 Copper Fittings Interior Doing work Force

Nominal Dimension Internal Doing work Pressure (psi)
-20-100°F 150°F 200°F 250°F 300°F 350°F 400°F
1/4″ 912 725 729 729 714 608 456
three/8″ 779 662 623 623 610 519 389
one/2″ 722 613 577 577 565 481 361
five/8″ 631 537 505 505 495 421 316
three/4″ 582 495 466 466 456 388 291
one” 494 420 395 395 387 330 247
one-1/4″ 439 373 351 351 344 293 219
one-1/2″ 408 347 327 327 320 272 204
two” 364 309 291 291 285 242 182
2-1/2″ 336 285 269 269 263 224 168
3″ 317 270 254 254 248 211 159
three-1/2″ 304 258 243 243 238 202 152
4″ 293 249 235 235 230 196 147

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6.

US $0.08-2.38
/ Piece
|
1,000 Pieces

(Min. Order)

###

Connection: Welding
Structure: Vertical
Flexible or Rigid: Rigid
Material: Copper
Standard: Standard
Cu: 99.90% Minimum

###

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

|
Request Sample

###

Customization:

###

Nominal Size Male End (inch) Female End (inch) Wall Thickness
(inch)
Outside Diameter Length Inside Diameter Depth
Min. Max. Min. Min. Max. Min. Min.
1/4" 0.373 0.376 0.38 0.377 0.381 0.31 0.023
3/8" 0.497 0.501 0.44 0.502 0.506 0.38 0.026
1/2" 0.622 0.626 0.56 0.627 0.631 0.50 0.029
5/8" 0.747 0.751 0.69 0.752 0.756 0.62 0.031
3/4" 0.872 0.876 0.81 0.877 0.881 0.75 0.033
1" 1.122 1.127 0.97 1.128 1.132 0.91 0.040
1-1/4" 1.372 1.377 1.03 1.378 1.382 0.97 0.044
1-1/2" 1.621 1.627 1.16 1.628 1.633 1.09 0.051
2" 2.121 2.127 1.41 2.128 2.133 1.34 0.059
2-1/2" 2.621 2.627 1.53 2.628 2.633 1.47 0.067
3" 3.121 3.127 1.72 3.128 3.133 1.66 0.075
3-1/2" 3.621 3.627 1.97 3.628 3.633 1.91 0.086
4" 4.121 4.127 2.22 4.128 4.133 2.16 0.096

###

Nominal Size Internal Working Pressure (psi)
-20-100°F 150°F 200°F 250°F 300°F 350°F 400°F
1/4" 912 725 729 729 714 608 456
3/8" 779 662 623 623 610 519 389
1/2" 722 613 577 577 565 481 361
5/8" 631 537 505 505 495 421 316
3/4" 582 495 466 466 456 388 291
1" 494 420 395 395 387 330 247
1-1/4" 439 373 351 351 344 293 219
1-1/2" 408 347 327 327 320 272 204
2" 364 309 291 291 285 242 182
2-1/2" 336 285 269 269 263 224 168
3" 317 270 254 254 248 211 159
3-1/2" 304 258 243 243 238 202 152
4" 293 249 235 235 230 196 147
US $0.08-2.38
/ Piece
|
1,000 Pieces

(Min. Order)

###

Connection: Welding
Structure: Vertical
Flexible or Rigid: Rigid
Material: Copper
Standard: Standard
Cu: 99.90% Minimum

###

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

|
Request Sample

###

Customization:

###

Nominal Size Male End (inch) Female End (inch) Wall Thickness
(inch)
Outside Diameter Length Inside Diameter Depth
Min. Max. Min. Min. Max. Min. Min.
1/4" 0.373 0.376 0.38 0.377 0.381 0.31 0.023
3/8" 0.497 0.501 0.44 0.502 0.506 0.38 0.026
1/2" 0.622 0.626 0.56 0.627 0.631 0.50 0.029
5/8" 0.747 0.751 0.69 0.752 0.756 0.62 0.031
3/4" 0.872 0.876 0.81 0.877 0.881 0.75 0.033
1" 1.122 1.127 0.97 1.128 1.132 0.91 0.040
1-1/4" 1.372 1.377 1.03 1.378 1.382 0.97 0.044
1-1/2" 1.621 1.627 1.16 1.628 1.633 1.09 0.051
2" 2.121 2.127 1.41 2.128 2.133 1.34 0.059
2-1/2" 2.621 2.627 1.53 2.628 2.633 1.47 0.067
3" 3.121 3.127 1.72 3.128 3.133 1.66 0.075
3-1/2" 3.621 3.627 1.97 3.628 3.633 1.91 0.086
4" 4.121 4.127 2.22 4.128 4.133 2.16 0.096

###

Nominal Size Internal Working Pressure (psi)
-20-100°F 150°F 200°F 250°F 300°F 350°F 400°F
1/4" 912 725 729 729 714 608 456
3/8" 779 662 623 623 610 519 389
1/2" 722 613 577 577 565 481 361
5/8" 631 537 505 505 495 421 316
3/4" 582 495 466 466 456 388 291
1" 494 420 395 395 387 330 247
1-1/4" 439 373 351 351 344 293 219
1-1/2" 408 347 327 327 320 272 204
2" 364 309 291 291 285 242 182
2-1/2" 336 285 269 269 263 224 168
3" 317 270 254 254 248 211 159
3-1/2" 304 258 243 243 238 202 152
4" 293 249 235 235 230 196 147

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.

editor by czh 2022-12-08

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