0102030405
PUT Union Tee
2D Drawings

Specifications
Model | ΦD | ΦP | L1 | L2 | L3 | L4 | Φd |
PUT4 | 4 | 11 | 18.5 | 37 | 7 | 14 | 3.2 |
PUT6 | 6 | 13 | 19 | 38 | 8 | 16 | 3.2 |
PUT8 | 8 | 14.5 | 23 | 46 | 9 | 18 | 3.2 |
PUT10 | 10 | 18.5 | 27.5 | 55 | 11.5 | 23 | 4.2 |
PUT12 | 12 | 21 | 29 | 58 | 13 | 26 | 4.2 |
PUT14 | 14 | 23 | 30 | 60 | 13.5 | 27 | 4.2 |
PUT16 | 16 | 26 | 32.5 | 65 | 15 | 30 | 4.2 |
PUT5/32 | 5/32 | 11 | 18.5 | 37 | 7 | 14 | 3.2 |
PUT3/16 | 3/16 | 11 | 18.5 | 37 | 7 | 14 | 3.2 |
PUT1/4 | 1/4 | 13 | 19 | 38 | 8 | 16 | 3.2 |
PUT5/16 | 5/16 | 14.5 | 23 | 46 | 9 | 18 | 3.2 |
PUT3/8 | 3/8 | 18.5 | 27.5 | 55 | 11.5 | 23 | 4.2 |
PUT1/2 | 1/2 | 21 | 29 | 58 | 13 | 26 | 4.2 |
Order Example
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FAQ
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Q: How high a temperature can a PUT straight tee withstand?
A: Generally, the temperature range that an ordinary PUT straight tee can withstand is between -20℃ and 80℃. If the temperature of the conveying medium exceeds this range, the performance of the PUT material may deteriorate, affecting the service life and sealing performance of the straight tee. When used in high or low temperature environments, special materials or corresponding protective measures must be selected according to actual conditions. For example, in a high temperature environment, a high temperature resistant PUT straight tee can be selected, and an insulation layer can be installed; in a low temperature environment, the pipe insulation should be done well to prevent the fluid in the pipe from freezing and damaging the pipe fittings.