Hot Dipped Galvanized Steel Pipe Gi Rectangular Tube Pressure Precision Tube Conductor Casing 20
The Benefits of Hot Dipped Galvanized Steel Pipe Hot dipped galvanized steel pipe is a type of steel pipe that…
The Benefits of Hot Dipped Galvanized Steel Pipe
Hot dipped galvanized steel pipe is a type of steel pipe that has been coated with a layer of zinc through a process called galvanization. This process involves immersing the steel pipe in a bath of molten zinc, which creates a protective layer on the surface of the pipe. The result is a pipe that is highly resistant to corrosion and rust, making it ideal for a wide range of applications. Silicone Tube One of the main benefits of hot dipped galvanized steel pipe is its superior corrosion resistance. The zinc coating acts as a barrier between the steel pipe and the surrounding environment, preventing moisture and other corrosive elements from coming into contact with the steel. This makes hot dipped galvanized steel pipe an excellent choice for outdoor applications, such as fencing, railing, and outdoor furniture.
In addition to its corrosion resistance, hot dipped galvanized steel pipe also offers excellent durability and longevity. The zinc coating provides an extra layer of protection against wear and tear, ensuring that the pipe will last for many years without the need for frequent maintenance or replacement. This makes hot dipped galvanized steel pipe a cost-effective choice for both residential and commercial applications.
Another advantage of hot dipped galvanized steel pipe is its versatility. It can be used in a wide range of applications, including plumbing, construction, and electrical conduit. The pipe’s high strength and durability make it suitable for carrying water, gas, and other fluids, while its corrosion resistance ensures that it will remain in good condition even in harsh environments.
Hot dipped galvanized steel pipe is also easy to install. It can be cut, threaded, and welded using standard tools and techniques, making it a convenient choice for contractors and DIY enthusiasts alike. The pipe’s lightweight nature and smooth surface further simplify the installation process, reducing the time and effort required to complete a project.
| Labels a | Calculated Mass c | ||||||||||
| Nominal Linear Mass T& C b,c | Wall Thick- ness | em, Mass Gain or Loss Due to End Finishing d | |||||||||
| Outside Diameter | Inside Diameter | Drift Diameter | Plain- end | kg | |||||||
| Round Thread | Buttress Thread | ||||||||||
| wpe | |||||||||||
| D | kg/m | t | D | mm | kg/m | Short | Long | RC | SCC | ||
| mm | mm | mm | |||||||||
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 |
| 13 3/8 | 48 | 339.72 | 71.43 | 8.38 | 322.96 | 318.99 | 68.48 | 15.04 | — | — 17.91 | — |
| 13 3/8 | 54.5 | 339.72 | 81.1 | 9.65 | 320.42 | 316.45 | 78.55 | 13.88 | — | 16.44 | — |
| 13 3/8 | 61 | 339.72 | 90.78 | 10.92 | 317.88 | 313.91 | 88.55 | 12.74 | — | 14.97 | — |
| 13 3/8 | 68 | 339.72 | 101.19 | 12.19 | 315.34 | 311.37 | 98.46 | 11.61 | — | 14.97 | — |
| 13 3/8 | 68 | 339.72 | 101.19 | 12.19 | 315.34 | 311.37 | 98.46 | 11.67 f | — | 14.33 | — |
| 13 3/8 | 72 | 339.72 | 107.15 | 13.06 | 313.6 | 311.15 e | 105.21 | 10.98 | — | 13.98 | — |
| 13 3/8 | 72 | 339.72 | 107.15 | 13.06 | 313.6 | 311.15 e 309.63 309.63 | 105.21 | 10.91 f | — | 14.33 | — |
| 13 3/8 | 72 | 339.72 | 107.15 | 13.06 | 313.6 | 105.21 | 10.98 | — | 13.98 | — | |
| 13 3/8 | 72 | 339.72 | 107.15 | 13.06 | 313.6 | 105.21 | 10.91 e | — | — | ||
| 16 | 65 | 406.4 | 96.73 | 9.53 | 387.4 | 382.57 | 96.73 | 18.59 | — | — 20.13 | — |
| 16 | 75 | 406.4 | 111.61 | 11.13 | 384.1 | 379.37 | 108.49 | 16.66 | — | 18.11 | — |
| 16 | 84 | 406.4 | 125.01 | 12.57 | 381.3 | 376.48 | 122.09 | 14.92 | — | — | — |
| 16 | 109 | 406.4 | 162.21 | 16.66 | 373.1 | 368.3 | 160.13 | — | — | — | |
| 18 5/8 | 87.5 | 473.08 | 130.21 | 11.05 | 450.98 | 446.22 | 125.91 | 33.6 | — | 39.25 | — |
| 20 | 94 | 508 | 139.89 | 11.13 | 485.7 | 480.97 | 136.38 | 20.5 | 27.11 | 24.78 | — |
| 20 | 94 | 508 | 139.89 | 11.13 | 485.7 | 480.97 | 136.38 | 20.61 | 27.26 g 24.27 17.84 | 24.78 | — |
| 20 | 106.5 | 508 | 158.49 | 12.7 | 482.6 | 477.82 | 155.13 | 18.22 | 22 | — | |
| 20 | 133 | 508 | 197.93 | 16.13 | 475.7 | 470.97 | 195.66 | 13.03 | 16.02 | — | |
| NOTE See also Figures D.1, D.2, and D.3. | |||||||||||
| a Labels are for information and assistance in ordering. | |||||||||||
| b Nominal linear masses, threaded and coupled (Column 4) are shown for information only. | |||||||||||
| c The densities of martensitic chromium steels (L80 Types 9Cr and 13Cr) are less than those of carbon steels; The masses shown are therefore not accurate for martensitic chromium steels; A mass correction factor of 0.989 shall be used. | |||||||||||
| d Mass gain or loss due to end finishing; See 8.5. | |||||||||||
| e Drift diameter for most common bit size; This drift diameter shall be specified in the purchase agreement and marked on the pipe; See 8.10 for drift requirements. | |||||||||||
| f Based on 758 mPa minimum yield strength or greater. | |||||||||||
| g Based on 379 mPa minimum yield strength. | |||||||||||
