{:en}Steel Pipes & Steel Casing{:}{:de}Stahlrohre und Stahlgehäuse{:}{:pl}Rury stalowe i obudowa stalowa{:}
{:en} The Benefits of Using Steel Pipes and Steel Casing for Industrial Applications Understanding the Different Types of Steel Pipes…
{:en}
The Benefits of Using Steel Pipes and Steel Casing for Industrial Applications
Understanding the Different Types of Steel Pipes and Steel Casing for Different Projects
| 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. | |||||||||||
{:}{:de}
Die Vorteile der Verwendung von Stahlrohren und Stahlgehäusen für industrielle Anwendungen
Verstehen der verschiedenen Arten von Stahlrohren und Stahlgehäusen für verschiedene Projekte
| Beschriftungen a | Berechnete Masse c | ||||||||||
| AGB für die nominale lineare Masse b,c | Wandstärke | em, Massengewinn oder -verlust durch Endbearbeitung d | |||||||||
| Außendurchmesser | Innendurchmesser | Driftdurchmesser | Plain-End | kg | |||||||
| Rundfaden | Stützfaden | ||||||||||
| wpe | |||||||||||
| D | kg/m | t | D | mm | kg/m | Kurz | Lang | 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 | ||
| HINWEIS Siehe auch Abbildungen D.1, D.2 und D.3. | |||||||||||
| a Etiketten dienen der Information und Hilfe bei der Bestellung. | |||||||||||
| b Die nominalen linearen Massen, mit Gewinde und gekoppelt (Spalte 4), werden nur zur Information angezeigt. | |||||||||||
| c Die Dichten martensitischer Chromstähle (L80-Typen 9Cr und 13Cr) sind geringer als die von Kohlenstoffstählen; Die angegebenen Massen sind daher für martensitische Chromstähle nicht korrekt; Es ist ein Massenkorrekturfaktor von 0,989 zu verwenden. | |||||||||||
| d Massengewinn oder -verlust durch Endbearbeitung; Siehe 8.5. | |||||||||||
| e Driftdurchmesser für die gängigste Bitgröße; Dieser Stollendurchmesser ist im Kaufvertrag anzugeben und auf dem Rohr zu kennzeichnen; Siehe 8.10 für Driftanforderungen. | |||||||||||
| f Basierend auf einer Mindeststreckgrenze von 758 mPa oder mehr. | |||||||||||
| g Basierend auf einer Mindeststreckgrenze von 379 mPa. | |||||||||||
{:}{:pl}
Korzyści ze stosowania rur stalowych i osłon stalowych w zastosowaniach przemysłowych
Zrozumienie różnych typów rur stalowych i osłon stalowych dla różnych projektów
| Etykiety a | Masa obliczona c | ||||||||||
| Warunki i zasady dotyczące masy liniowej nominalnej b,c | Grubość ściany | em, Przyrost lub strata masy w wyniku wykończenia końcowego d | |||||||||
| Średnica zewnętrzna | Średnica wewnętrzna | Średnica dryfu | Zwykły koniec | kg | |||||||
| Okrągły wątek | Wątek wzmacniający | ||||||||||
| wpe | |||||||||||
| D | kg/m2 | t | D | mm | kg/m2 | Krótki | Długie | 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 i 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 | ||
| UWAGA Patrz także rysunki D.1, D.2 i D.3. | |||||||||||
| a Etykiety mają charakter informacyjny i ułatwiają składanie zamówienia. | |||||||||||
| b Nominalne masy liniowe, gwintowane i łączone (kolumna 4) podano wyłącznie w celach informacyjnych. | |||||||||||
| c Gęstości martenzytycznych stali chromowych (L80 typy 9Cr i 13Cr) są mniejsze niż stali węglowych; Dlatego też podane masy nie są dokładne dla martenzytycznych stali chromowych; Należy zastosować współczynnik korekcji masy wynoszący 0,989. | |||||||||||
| d Przyrost lub ubytek masy w wyniku wykończenia końcowego; Patrz 8.5. | |||||||||||
| e Średnica dryfu dla najpopularniejszych rozmiarów bitów; Średnicę wybicia należy określić w umowie kupna i zaznaczyć na rurze; Wymagania dotyczące dryfu podano w 8.10. | |||||||||||
| f W oparciu o minimalną granicę plastyczności 758 mPa lub większą. | |||||||||||
| g W oparciu o minimalną granicę plastyczności 379 mPa. | |||||||||||
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