INTRODUCTION AND STANDARD SPECIFICATIONS

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INTRODUCTION AND STANDARD SPECIFICATIONS INTRODUCTION Instrument valves and manifolds are often used on general applications for liquid and gas service and are suitable for shutting-off impulse lines to separate the instrument from the process medium. This enables replacing, calibration, cleaning or testing of the instrument. For these purposes Badotherm offers a wide range of instrument valves and 2-, 3-, and 5-valve manifolds. Badotherm instrument valves and manifolds are designed to provide the safest possible connection and mounting of instruments. The manifolds can be used for direct mounting to transmitters according to IEC 61518 or for remote mounting to transmitters. All Badotherm instrument valves and manifolds are manufactured within the European Union with certified materials and full traceability. The instrument valves and manifolds are manufactured according to the design standard EN 12266-1 / MSS-SP 99 / MSS-SP 61. HOW TO USE INSTRUMENT VALVES AND MANIFOLDS Using the instrument valve: Instrument valves are often used on general applications for liquid and gas service and are suitable for shutting-off the impulse lines and for mounting to pressure instruments. Using the 2-valve manifold: In normal operations, the isolate valve is open while the vent valve is closed. To calibrate the instrument, connect reference equipment to the vent port. It is possible to check the calibration of the instrument without removing it from the installed position. To remove the instrument, first close the isolate valve, then open the vent valve to relieve pressure upstream (from isolate valve to instrument). Using the 3-valve manifold: In normal operations, the isolate valves are open while the equalize valve is closed. This provides a differential pressure reading to the pressure gauge or transmitter. To start-up the instrument, first open the upstream isolate and equalize valve, then open the downstream (from isolate valve to process) isolate valve and close the equalize valve. To zero the instrument, first close the downstream isolate valve then open the equalize valve and adjust the zero setting on the instrument. To remove the instrument, first close both isolate valves, then open the equalize valve to relieve pressure between the manifold and the instrument. Using the 5-valve manifold: In normal operations, the isolate valves are open while the equalize and vent valves are closed. This provides a differential pressure reading to the pressure gauge or transmitter. To start-up the instrument, first open the upstream isolate and equalize valve, then open the downstream isolate valve and close the equalize valve. To zero the instrument, first close both vent valves and the downstream isolate valve. Then open the equalize valve and adjust the zero setting on the instrument. To calibrate the instrument, an option provided by 5-valve manifolds, which is not available on 3- valve types, is connecting the vent port to pressure sources to check the calibration of the instrument. To remove the instrument, first close both isolate valves, then open the equalize valves to relieve pressure between the manifold and the instrument. STANDARD PRODUCT FEATURES Some highlights of standard instrument valves and manifolds are: Certified stainless steel components T-bar handle Stainless steel stop pin Laser engraved identification Heat code traceability on body with original material certificates according to EN10204-3.1 Virgin PTFE spindle gasket Pressure rating 413 bar (6.000 PSI) at 38 C (Hydro) static pressure tested at 1.5 times maximum working pressure Page 1 of 6

INTRODUCTION AND STANDARD SPECIFICATIONS VALVE SPINDLE ASSEMBLY The most important part of the instrument valve or manifold is the spindle assembly with the following highlights: T-bar handle for operating the valve. Colour anodised dust caps to prevent ingress of contamination and to protect actuating threads. Dust caps are made of aluminium. o Blue = isolation valve o Red = vent valve o Green = equalizing valve Safety lock-nut is mounted to prevent unwanted loosening of the valve stem spindle gasket. Hard stem is precision machined material to provide consistent shut-off. Compression ring is used to divide compression and rotational friction on the spindle gasket equally. Spindle gasket is made of Virgin PTFE to ensure leak free closing of the valve assembly. Bonnet is holding the spindle gasket and the compression ring together and is made of the same material as the valve body. Rotating joint to create a stem tip that is not wearing the valve seat due to rotational friction. Tip is made of various materials in order to prevent wear of the spindle and chemical resistance to the process. The compatibility of material with the process media is important. Parts that are considered as wetted parts, because they come into contact with the process medium, are: Stem / axle Tip Bonnet Gasket All mentioned parts above can be executed in various exotic material (see product datasheets). SPINDLE GASKETS AND ANTI-SEIZE Spindle gaskets are used to prevent leakage of gases and/or liquid. Badotherm spindle gaskets are standard made of Virgin PTFE and optional in Flexible Graphite. The supplied anti-seize compound is a Copper / Graphite 2 gram pillow pack composed from pure Copper and Graphite flakes. VENT AND PURGE PORTS The purpose of 3 or 5-valve manifolds is to consolidate several valves into one body, allowing engineers to do various tasks and functions without removing the pressure instrument from the installed position. Various instrument valves and manifolds can be supplied with vent ports, purge ports or even both. In the market, the purge port is also referred to as test port. The difference between a vent and a purge port is: Vent ports are ports where the process media can be drained or vented, but it is blocked by a valve. This valve needs to be open before it can be vented. Purge ports are open ports where the process media can be drained or purged. It is only blocked by a blind plug, but once removed the process media can run out without a valve that is blocking it. Page 2 of 6

INTRODUCTION AND STANDARD SPECIFICATIONS MARKING Each instrument valve or manifold has laser engraved markings that contains the following information: Product type Instrument & process connection Packing Max pressure / temperature rating at 38 C Schematic flow diagram Heat no. codification Body material Spindle codification in case of exotic material Origin instruments are packed individually in airtight plastic bags and carton boxes. PRESSURE TESTING ACC. EN12266-1 All Badotherm instrument valves and manifolds are manufactured within the European Union with certified materials and full traceability. The instrument valves and manifolds are manufactured according to the design standard EN 12266-1 / MSS-SP 99 / MSS-SP 61. Every Badotherm instrument valve or manifold is factory tested with a shell test and a seat test performed at 1.5 times the maximum working pressure according to EN 12266-1 - P10, P11 and P12 respectively MSS-SP61. CLEANING AND PACKAGING Every Badotherm instrument valve or manifold is cleaned and packed in accordance with Badotherm Standard Cleaning and Packaging procedure (Valves & Manifolds). Optional there is a cleaning for oxygen service (for PTFE spindle gasket only) where the wetted parts are cleaned with a suitable detergent. The instrument will be laser marked with the free of oil logo. Further, these PRESSURE EQUIPMENT DIRECTIVE (PED) Due to internal bore size and internal volumes up to and including 1 / 25mm, products offered in this catalogue comply with S.E.P (Sound Engineering Practice) article 3, paragraph 3 of the Pressure Equipment Directive (P.E.D.) 97 / 23 / EC and therefore CE marking is not applicable. Page 3 of 6

SPECIFICATIONS OF TEMPERATURE AND OPTIONS INTRODUCTION The conditions in the process industry are becoming more challenging and therefore a growing need for additional specifications is required. Some highlights of the optional features are: Flexible Graphite spindle gasket Pressure rating 10.000 PSI (689 bar) at 38 C Suitable for Sour Gas Service Full compliance of NACE MR01-75 specifications Anti-tamper and lockable handle features Cleaning for oxygen service Mounting bracket and assembly kits Blind plugs and plug & chain WIDE RANGE OF EXOTIC MATERIALS AVAILABLE Various exotic materials are available for body and stem/tip. The suitable material is dependent on the process media. Exotic materials can be sourced from NORSOK M-650 approved mills. The list below provides the various exotic materials: ANTI-TAMPER SPINDLE An anti-tamper spindle is a removable T-bar handle, which makes it possible to disconnect the T-bar from the manifold. This reduces the risk of human errors and / or deliberate tampering. The valve can be operated with the anti-tamper key. Every Badotherm instrument valve or manifold can be provided with an anti-tamper spindle. PRESSURE TEMPERATURE RATINGS SPINDLE GASKET The following pressure temperature ratings are applicable for spindle gaskets: maximum pressure temperature Virgin PTFE 413 bar 100 C 275 bar 200 C Flexible Graphite 413 bar 100 C 230 bar 450 C Monel 400 Hastelloy C-276 Duplex 2205 Super Duplex 2507 Titanium Gr. 2 Inconel 625 Stellite 6b (stem only) PRESSURE TEMPERATURE RATINGS BODY MATERIAL The following pressure temperature ratings are applicable for various body materials: temperature AISI 316(L) Monel 400 Hastelloy C276 Duplex 2205 Super Duplex 2507 Inconel 625-29 / -17 C 1 413 335 431 431 431 431-17 / +38 C 413 335 431 431 431 431 50 C 401 299 431 431 431 431 100 C 351 281 429 422 422 429 150 C 321 272 418 382 383 418 200 C 297 272 403 355 355 403 250 C 1 278 272 386 337 337 386 300 C 1 263 272 357 323 324 357 350 C 1 253 272 335 - - 335 400 C 1 245 267 305 - - 305 450 C 1 240 224 282 - - 282 All pressures in Bar 1 Only applicable in combination with Flexible Graphite spindle gasket Page 4 of 6

MOUNTING INSTRUMENT VALVES & MANIFOLDS INTRODUCTION Instrument valves and manifolds are positioned between the process and the instrument, which means that they have a minimum of two connection types. Logically, the process and instrument connection of the manifold can differ. For example, an instrument valve type BDTV910 can have a 1/2 NPT female instrument connection and a 1/2 BSP male process connection. Every process connection is customer specific, whereas instrument connections are often standardized. Badotherm offers several methods to mount instrument valves and / or manifolds: Thread options to mount instrument valves to pressure gauges Fitted and welding options to mount instrument valves to flush ports Accessories for mounting the instrument valve or manifold MOUNTING INSTRUMENT VALVES OR MANIFOLDS TO PRESSURE GAUGES Thread connections are used to mount a pressure gauge with an instrument valve. It is recommended to select a pressure gauge with a NPT male connection and a manifold with a NPT female instrument connection. When a BSP thread is selected, the instrument valves and manifolds are standard executed with an ISO 1179 gasket surface, while pressure gauges are manufactured with an EN 837 gasket surface. This can result in a channel that will be blocked by the gasket because of the eccentric hole in the manifold. The channel of the manifold and the pressure gauge are not in line and will have an improper or no flow at all. To avoid this, select a manifold instrument connection according to: PRESSURE LEAK TEST OF THE ASSEMBLY The pressure leak testing of the assembly is standard done with compressed air at 6 bar. Optional pressure leak testing is possible, e.g. process pressure or hydro-static pressure test of the assembly. MOUNTING INSTRUMENT VALVES TO FLUSH PORTS Instrument valves are often mounted to flush accessories, such as flush rings, flush flanges, or diaphragm seal lower parts. The mounting of the instrument valve to the flush accessory can be done in several ways: Fitted Fitted and welded Butt welded Socket welded All assemblies are standard pressure tested and can be supplied with several certificates such as material certificates, pressure test certificates or welding certificates in case of a butt weld construction. All mounting methods are according to ASME or EN standards. MOUNTING BRACKETS AND ASSEMBLY KITS Badotherm supplies specific mounting brackets for easy installation of the instrument valve or manifold. The product highlights are: Bracket material AISI 316(L) Bolts and nuts in A4-70 Straight, 90 angle or distance execution EN 837 for pressure gauge mounting ISO 1179 for other mounting i.e. tubing Various thread connections are described in the addenda. Page 5 of 6

MOUNTING INSTRUMENT VALVES & MANIFOLDS Assembly kits are used to mount the manifolds to the pressure instrument. Badotherm assembly kits includes: Bolts Gaskets Anti-seize Bolt material for fixing a valve to the instrument may vary depending on the process specifications (pressure / temperature). There are three different bolt materials available for mounting an instrument: A2-70 (ASTM F 738) B7 (ASTM A 193) B8M cl. 2 (ASTM A 193) Assembly kit gaskets, not to be confused with spindle gasket, are standard made of Virgin PTFE but optional Flexible Graphite. The main difference lies in the temperature limits. Where Virgin PTFE can handle temperatures between -10 C / +80 C, can Flexible Graphite handle temperatures between -40 C / +120 C. The given temperature limits are based on the limits applicable for the transmitter. All gasket dimensions are in accordance with IEC 61518. The supplied anti-seize compound is a Copper / Graphite 2 gram pillow pack composed from pure Copper and Graphite flakes. Holland UK Romania India Thailand Dubai - USA To our knowledge, the information contained herein is accurate as of the date of this document. However neither Badotherm, nor its affiliates makes any warranty, express or limited, or accepts any liability in connection with this information or its use. This information is for technical skilled persons at their own discretion and risk and does not relate to the use of this product in combination with any other product. The user alone finally determines suitability of any information or material in contemplated use, the manner of use and whether any patents are infringed. This information gives typical properties only. Badotherm reserves the right to make changes to the specifications and materials without prior notice. The latest version of the datasheet can be found on www.badotherm.com. 2001 Badotherm, all rights reserved. Trademarks and/or other products referenced herein are either trademarks or registered trademarks of Badotherm. Registered trade names are Hastelloy, Inconel, Monel, and Stellite. modified 06-10-2014 page 6 of 6