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Sichere Produktauswahl:

Der Kataloginhalt muss ganz durchgelesen werden, um sicherzustellen, dass der Systementwickler und der Benutzer eine sichere Produktauswahl treffen. Bei der Auswahl von Produkten muss die gesamte Systemanordnung berücksichtigt werden, um eine sichere, störungsfreie Funktion zu gewährleisten. Der Systemdesigner und der Benutzer sind für Funktion, Materialverträglichkeit, entsprechende Leistungsdaten und Einsatzgrenzen sowie für die vorschriftsmäßige Handhabung, den Betrieb und die Wartung verantwortlich.

⚠ Warnung: Swagelok-Produkte oder -Bauteile, die nicht den industriellen Entwicklungsnormen entsprechen, einschließlich Swagelok Rohrverschraubungen und Endanschlüsse nicht durch die anderer Hersteller austauschen oder mit den Produkten oder Bauteilen anderer Hersteller vermischen.

  • Capital Projects Product Selection Guide

    Jump to: Global Distribution Network Products Services and Additional Offerings Contact Global Construction Product Selection Guide Managing Your Capital Project Any large-scale construction project is inherently difficult. Thousands of people are involved, competition is aggressiv...

  • Swagelok Essentials

    Essential Training in Fluid System Fundamentals Swagelok ®  Essentials training courses provide critical skills for developing, building, and maintaining dependable fluid systems. Taught by Swagelok-certified trainers at locations and times convenient to you, these courses provide the foundational ...

  • Swagelok FK Fitting Installation Essentials

    Swagelok ® FK Fitting Installation Course Overview:  This course will help you understand and identify key design characteristics of medium-pressure Swagelok ® FK series fittings and learn how to prepare and install them. It covers the basic criteria, variables, and considerations relevant to safel...

  • Oil & Gas Tubing System Training

    The Swagelok ® Tubing System Training Program, Oil and Gas The Swagelok ® Tubing System Training Program, Oil & Gas, is a globally standardized two-day workshop designed to address the JIP33 S-716 requirement and give your team thorough instruction on industry best practices for ensuring high-integ...

  • API Plan 51 Quench from Reservoir

    API Plan 51 is a quench system for use on the atmospheric side of a single seal. This system acts as a dead-ended reservoir for a fluid. API Plan 51 Kit contents shown solid and include some optional components. This plan: Prevents icing on the atmospheric side of the seal Is typically used ...

  • API Plan 62 Quench from External Source

    API Plan 62 delivers an external quench fluid to the atmospheric side of the seal. A typical application in a refinery is the prevention of coking on seal faces in hot hydrocarbon service by employing a steam quench. Nitrogen or clean water may also be used to quench or cool and clean the atmospheri...

  • API Plan 65A Leakage Collection with Reservoir

    API Plan 65A monitors leakage in a single seal arrangement. Connected to the drain port on the gland, a reservoir collects normal leakage and is constantly open to drain. In the event of a seal failure, an orifice fitting on the outlet of the system allows a level transmitter to trigger an alarm due...

  • API Plan 65B Leakage Collection with Reservoir

    API Plan 65B monitors leakage in a single seal arrangement. Connected to the drain port on the gland, a reservoir is allowed to collect normal leakage. A level transmitter on the reservoir triggers an alarm in the event of excessive leakage. A valve on the outlet side of the reservoir is typically l...

  • API Seal Plan 52 Buffer Fluid Seal Pot

    < Back to Between Seal Plans API Seal Plan 52 utilizes a reservoir and circulates an unpressurized buffer fluid between the inboard and outboard seals. To provide positive circulation through the support system and into the seal, a pumping ring is employed. Frictional losses in the buffer fluid inl...

  • API Plan 53A Barrier Fluid Seal Pot Pressurized by Nitrogen

    API Plan 53A utilizes a reservoir and circulates a pressurized barrier fluid between the inboard and outboard seals. The typical source of pressurization is plant nitrogen. The reservoir should be set at least 20 psi (1.3 bar) above maximum seal chamber pressure. This is to ensure that leakage acros...

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