Soft seated ball valves

Soft seated ball valves

Alfa Valvole pehmeätiivisteiset palloventtiilit - soft seated ball valves
OMB cryogenic ball valve - kryogeeninen palloventtiili
OMB cryo ball valve
OMB_-_Cryo_pallo

Media

Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane
LPG
Process media
Gas and fuel

Manufacturers

Penta
Alfa Valvole
Andrex VALVE GROUP
OMB Valves

Technical specifications

Sizes: DN 15-500
Pressure Classes: DIN PN 16-160, ANSI 150-2500
Materials: A105 (C22.8), WCB 1304, 316, 316T, Hastelloy B or C, titanium, duplex
Seals: PTFE, RTFE, TGV, AM, Derlin, Devlon
Operating Temperatures: -196 °C…+250 °C
End Connections: between flanges, flanged, threaded, welded
Other: ISO 10497 fire safe
Also Known As: soft seated ball valve

What is a soft seated ball valve?

A soft seal typically refers to PTFE composite seals, with which ball valves are suitable for applications where the temperature does not rise very high (max. 220 °C).

Choosing a Soft Seated Ball Valve

We assist in sizing and selecting the appropriate ball valve for your application.

Our product range includes both two-way and three-way valves. Three-way ball valves are also suitable for distribution applications. There are several sealing options available, for example PTFE, RTFE, TGV, AM, DEVLON, etc.

Our range of three-way valves features both L-ball and T-ball designs for 90° rotating valves. Additionally, the L-ball valves offer a “full bore transflow” option for 120° rotating valves when handling a more viscous medium.

Ball valves are available in one-piece, two-piece, and three-piece constructions. Among these, the two-piece and three-piece models are easier to service.

Connection options include welding ends, threaded, or flanged. There is also an alternative – the slim ALFA 10 model which is only the length of the ball. It is a lightweight and cost-effective choice for many applications that require a flanged model but allow for a shorter construction length.

Since the ball valve is a typical process valve, it also has a wide range of materials available. Various combinations of body, ball, and seal materials ensure that a suitable model can be found for different media.

Our range includes valves in accordance with both DIN and ASME classifications.

Our ball valves are available with accessories required for manual, pneumatic, or electric actuators.

For steam, condensate and process media

The smaller sizes of ball valves are of a floating design, and the larger ones are trunnion-mounted. They feature a Fire Safe construction, antistatic properties according to BS 5146, and comply with the TA-Luft TüV standards.

We can also supply heating jackets, extension stems, and special sealing solutions (TI, V).

For liquid fuels

In the gas and fuel sectors, a Fire Safe construction is generally required for valves.

For example, in the case of ALFA Valvole, the Fire Safe EN ISO 10497 – API607 V test requirements are observed.

Antistatic properties, on the other hand, comply with BS 5146 and TA-Luft TÜV standards.

Smaller sizes are generally of a floating design, and larger sizes use a trunnion-mounted ball design. However, in some cases, even for smaller sizes it is necessary to opt for a trunnion design, for example at high flow rates.

Our range includes valves from manufacturers such as ALFA Valvole and OMB Spa.

For cryogenic media

Ball valves intended for cryogenic use differ from conventional ball valves in several fundamental ways. In a cryogenic valve, there is an extension stem that ensures the seal of the stem remains at a higher temperature than the medium. Materials have been selected to withstand extreme cold. The finished valve is clean and dry.

Ball valves designed for cryogenic use are equipped with a venting system for the interspace, because the cold liquid remaining in the interspace expands when it vaporizes and would damage the valve without pressure relief. The pressure relief is achieved either through a drilling on the opposite side or via spring-loaded self-relieving seals. Drilling is a traditional and reliable solution that is also suitable for a floating valve and works reliably. The downside of a drilled pressure relief is that the valve can only be tight in one direction. A more advanced solution is to use self-relieving seals. In this case, the seals of the trunnion-mounted ball valve are designed so that when the interspace pressure rises above the pipeline pressure, the seal allows the pressure to be vented.

Our selection of cryogenic ball valves is comprehensive. We represent OMB and PENTA. Through us, soft-seated and metal-seated valves are available in both floating and trunnion-mounted constructions. Body designs include top-entry and side-entry. Valves are available with full bore and reduced bore.

See the cryogenic valve webinar on YouTube from the Konwell Academy channel here.

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Steam, condensate, process media, gases and liquid fuels

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Alfa Valvole 24K Ball Valves

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Alfa Valvole 20T, 22EV, K20T Ball Valves

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Alfa Valvole 10N, 10NF, 10HP, 11N, 11NF Ball Valves

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Alfa Valvole Series 5-6 Ball Valves

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Alfa Valvole 103-104, 30-32 Ball Valves

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Actuator operated low-pressure globe valves

Actuator operated low-pressure globe valves

ARI-Armaturen toimilaitteellinen istukkaventtiili - actuator operated globe valve
Descote - Toimilaitteellinen istukkaventtiili

Media

Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane
LPG
Process media
Gas and fuel

Manufacturers

HEROSE
OMB Valves
RTK Regeltechnik Kornwestheim
descote
ARI-Armaturen
KÜHME Armaturen

Technical specifications

Sizes: DN 15-250 standard, up to DN 500 on request
Pressure classes: PN 16-40
Materials: GG-25, GGG 40.3, GS-C 25, hst, G-CuSn5, ZnPb, special materials
Connection ends: Flanged, welded, threaded
Other names: plate valves, control valve, shut-off valve, actuator-operated control valve, actuator-operated shut-off valve, actuator operated shut-off valve, actuator operated control valve

What is an Actuator Operated Globe Valve?

Actuator operated globe valves can be used both as control valves and shut-off valves. An actuator is mounted on the valve, allowing the valve to be controlled remotely from its immediate vicinity.

Selection of an Actuator Operated Globe Valve

All of our globe valves are available with actuators. We assist in selecting and sizing the appropriate valve and actuator, taking into account the requirements of the application.

Actuator Operated Shut-Off Valves

The basic model is a poppet-sealed shut-off valve, but in specific cases – for example, in thermal oil applications or for toxic media – diaphragm-sealed actuator operated shut-off valves can be used.

For emergency shut-off operation, there are emergency shut-off valves that rapidly and tightly close the pipeline in the event of a disturbance. There are emergency shut-off valves available that can close the pipeline securely in under a second during system disturbances. This protects the entire system from damage and potential hazardous situations.

Actuator Operated Control Valves

Our product range includes a wide selection of 2-way and 3-way control valves for various applications. Two-way valves are available with a linear or equal-percentage flow characteristic. Three-way valves can be used for either mixing or diverting applications and are available with a built-in, adjustable minimum turn, for example, for boiler feedwater valves.

We size the valves using the ARI-myValve sizing program. With this, we verify the valve’s capacity as well as ensure that the valve is not oversized, check the flow velocities inside the valve, and assess the noise level caused by pressure regulation. ARI valves can be equipped with various orifice inserts, which can significantly reduce the valve’s noise level. In the 470 series valve, the globe and the insert can also be replaced later, allowing the valve’s KVS value to be adjusted according to changing process conditions.

Pneumatic or Electric Actuator?

Valves can be equipped with pneumatic or electric actuators. A pneumatic actuator is generally faster and more durable than an electric actuator. Electric actuators can be fitted with a safety device that closes the valve during a power failure.

ARI-Armaturen’s own PREMIO actuator is designed so that its output force exactly matches the force required by ARI’s valve. This also results in a clear cost advantage.

For globe valves, we primarily use the factory’s own actuators, allowing us to size the actuator perfectly for each valve type, but we can also supply the valve with actuators from other manufacturers, such as AUMA, BERNAD, or ROTORK.

Positioners and limit switches are available as accessories.

Listen to ARI Armaturen’s YouTube recording on the tuning/commissioning of the ARI-PREMIO Plus 2G actuator (How to: Functions and settings of the ARI-PREMIO Plus 2G actuator)

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Actuator Operated Globe Valves for Steam, Condensate, Process Media, Gases and Liquid Fuels

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ARI-Armaturen STEVI 405-460 Stop Valve Datasheet

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ARI-Armaturen STEVI 440-ANSI Control Valve

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ARI-Armaturen STEVI 440-441 Control Valve

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ARI-Armaturen STEVI 423-463 Control Valve 3-Way-Form

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ARI-Armaturen STEVI 422-462 Control Valve

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ARI-Armaturen STEVI 470-471 Control Valve

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ARI-Armaturen STEVI 450-451 Control Valve 3-Way-Form

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ARI-Armaturen STEVI 448-449 Control Valve

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Actuators

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ARI-Armaturen PREMIO-Plus 2G Electric Thrust Actuator

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ARI-Armaturen PREMIO Electric Thrust Actuator

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ARI-Armaturen DP30, DP32, DP33, DP34, DP34T, DP34Tri, DP35 Pneumatic Actuators

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Mixing valves

Mixing valves

Media

Natural gas, biogas and biomethane
Gas and fuel

Manufacturers

KÜHME Armaturen

Technical Specifications

Sizes: DN 50-400
Pressure Classes: PN 6-25
Temperature: max. +200 °C
Control Range: 1:30
Other Features: suitable for mixing two different gases, uniform mixing ratio adjustment, fast and spontaneous mixing ensured by the pneumatic actuator
Other Designations: mixing valve

What is a mixing valve?

A mixing valve is used to combine two different gases. The medium has two inlets and one outlet. Inside the valve, there is a system of shut-off valves connected in series, whose movement adjusts the flow and mixing ratio. The mixing valves are automatic to ensure that the mixture remains consistent in a changing process.

Using a mixing valve, it is possible to adjust the energy density of fuel gas by mixing two different gases. In this way, the gas flow directed to, for example, a burner, engine, or gas network is stabilized. The mixing valve can also be used to control the temperature of the flow by mixing gas streams of different temperatures. Typical applications include gas-powered internal combustion engines and burners as well as biogas plants.

Selection of the Mixing Valve

We assist in selecting the appropriate mixing valve for your application.

Our range includes an automatic KÜHME ZDM mixing valve, which can achieve mixing ratios between 50:50 and 20:80 as well as overall flow control up to a flow rate of 1:30. The valve simultaneously performs vertical and rotary movements. The vertical movement primarily controls the flow rate, while the rotary movement enables precise adjustment of the mixing ratio. Additionally, the valve features a fixed mixer that ensures an excellent mixing result. The valve is available with both pneumatic and electric actuators.

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KÜHME ZDM Two-dimensional mixing valve

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Quick-action shut-off valves

Quick-action shut-off valves

KÜHME KVL_PR-TT pikasulkuventtiili - Quick-action shut-off valve
KÜHME KVF-KVF.D.g.e.15-05 shut off valve

Media

Cryogenic media
Natural gas, biogas and biomethane
LPG
Gas and fuel

Manufacturers

KÜHME Armaturen

Technical specifications

Sizes: DN 25-300
Operating pressure: max. 60 bar
Compressed air: 3 bar…10 bar
Operating temperatures: -196 °C…+400 °C
Ambient temperature: -25°C…+80 °C
Other names: emergency quick-closing valve, emergency shut-off valve, quick-action shut-off valve

What is a quick-action shut-off valve?

A quick-closing valve – also known as an emergency quick-closing valve and emergency shut-off valve – is a device that closes a pipeline quickly and tightly in the event of a disturbance without external energy.

The typical applications of emergency quick-closing valves are fuel lines and other critical areas where it is essential to secure the process quickly and safely. In a disturbance situation, the line can be closed in less than a second, thereby protecting the entire system from damage and potential hazards. No electricity or compressed air is required for closing, as the closure is achieved by means of spring force.

Read Kai Heinänen’s article in PROMAINT Magazine: Emergency Quick-closing Valves are Expected to be Reliable.

Selection of quick-action shut-off valves

All quick-closing valves are actuator-operated, meaning that their control can be performed remotely from the valve itself. The actuator closing mechanisms use a spring, and they are primarily operated by compressed air or electro-hydraulics.

We represent the German company KÜHMEÄ, whose comprehensive range includes emergency quick-closing valves approved in accordance with the EN 161, EN 16678 and EN 23553-1 standards.

Cryogenic quick-closing valves differ only slightly from conventional quick-closing valves. In a valve intended for cryogenic use, the extremely low temperature has been taken into account. The valve is delivered clean and dry. It comes with an extended stem, and the materials are selected for cold resistance. Thermal expansion has been considered in the design and dimensioning.

In our range, there is the KÜHME quick-closing valve KVL/PR-TT, which is specifically designed for cryogenic media (-196 °C). The valve achieves closure times of less than one second. If necessary, ATEX and SIL certifications are available for the emergency shut-off valve.

The valve opening can be adjusted to optimize the flow during startup.

The quick-closing valve complies with the requirements of the EN 1160 standard, which applies to equipment used with liquefied natural gas (LNG).

We assist in selecting and sizing the appropriate quick-closing valve according to the application.

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Liquid Fuels

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KÜHME KVII-F Double Block and Bleed Unit ofr Gaseous Media

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KÜHME KVH-GT Quick-Closing Turbine-Valve for Gaseous Media

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KÜHME KVF-S Quick-Closing and Control Valve for Liquid Media

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KÜHME KVF Quick-Closing Valve for Liquid Media

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Actuator operated butterfly valves

Actuator operated butterfly valves

Media

Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane
LPG
Process media
Gas and fuel

Manufacturers

ABO valve
ARMATURY Group
ARI-Armaturen
Garlock
OMB Valves
R.T. Valvole

Technical specifications

Sizes: from DN 20
Pressure classes: from PN 6
Actuators: pneumatic and electric
Connection ends: between flanges, flanged, weld end, lug type
Other names: actuator-operated butterfly valve

What is an actuator operated butterfly valve?

An actuator is installed on the butterfly valve, enabling the valve to be controlled from a location other than its immediate vicinity. Both pneumatic and electric actuators can be installed on butterfly valves.

Selection of actuator operated butterfly valves

Pneumatic actuators are preferred in all but the largest sizes. They are available either as dual-acting, where compressed air both opens and closes the valve, or as single-acting (so-called spring-return), whereby on loss of pressure the actuator’s closing spring either opens or closes the valve.

Most of the market-available electric rotary actuator models are suitable for butterfly valves. All actuator options come with limit and installation data and can additionally be connected to a bus.

We assist in selecting and sizing an actuator-operated butterfly valve that meets the requirements of your application.

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Actuators

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Rotork RC200 Range actuators

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Rotork GT Range actuators

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Valves

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Thread Connection

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Double Flanged

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Butt Weld Ended

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Wafer Type

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ARI-Armaturen ZETRIX Triple Offset Butterfly Valves

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ARI-Armaturen ZESA, GESA, THEA Butterfly valves

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Metal seated butterfly valves

Metal seated butterfly valves

ARI Zetrix butterfly valve
TU-A-I-läppäventtiili 1 Armatury Group L32 8
Kolmoisepakeskeinen läppäventtiili kuva

Media

Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane
LPG
Process media
Gas and fuel

Manufacturers

R.T. Valvole
ABO valve
ARMATURY Group
ARI-Armaturen
OMB Valves

Technical specifications

Size classes: DN 80–1200, NPS 3”–24”
Pressure classes: PN 10–100, ANSI 150/300
Temperature range: -196 °C…450 °C
Materials: steel, stainless and acid-resistant steel, special materials
Connection ends: between flanges, flanged, welded, lug type
Other names: metal seated butterfly valve

What is a metal seated butterfly valve?

In metal seated butterfly valves, the sealing surface between the disc and the body is, as the name suggests, metal.

Because the pressure and especially temperature resistance properties of metal seated butterfly valves are clearly superior to those with a rubber seat, their range of applications is also significantly broader. The characteristics of a metal seated butterfly valve can be influenced by the degree of eccentricity.

Eccentricity of the butterfly valve

In an eccentric butterfly valve, the disc rotates off-center, as the name suggests. This achieves a higher surface pressure between the disc and the seal as well as a rapid decrease in surface pressure and friction when opening the valve. In simple terms, eccentricity results in higher tightness and a lower opening torque. With triple eccentricity, significantly higher surface pressure and sealing are achieved.

  1. The first degree of eccentricity arises from the fact that the shaft is positioned behind the disc.
  2. The second degree of eccentricity is achieved by placing the shaft to the side of the disc’s centerline.
  3. The third degree of eccentricity is implemented by machining the sealing surface of either the disc or the body in an eccentric manner. Machining both achieves the aforementioned reduction in friction.

Typical applications for eccentric butterfly valves include: oil and gas production and processing, petrochemical industry, chemical industry, power plants, district heating, solar power plants, pulp and paper industry, steel industry, and sugar industry.

Choosing metal seated butterfly valves

We assist in selecting and sizing a butterfly valve that meets the requirements of your application. The installation options include between-flange, flanged, lug type (end flange) or welded models. Our triple eccentric butterfly valves are standardly of sealing class A, according to the EN 12266-1 standard.

The available ARI-ZETRIX- and RT Valves butterfly valves can be equipped with pneumatic or electric actuators.

For steam, condensate and process fluids

ARI-ZETRIX®, RT and AG offer triple eccentric and Högfors double eccentric valves. The metal seated butterfly valve is not only an on/off valve, but it is also suitable for specialized control applications.

Watch the YouTube video  about Ari Armaturen’s emergency shutdown valve.

For liquid fuels

For fuel applications, Fire-Safe valves are available, which have been fire safety tested according to the ISO 10497 standard or API 607 standard. They are also ATEX certified.

For the seals of the stem, certificates according to ISO 15848-1 or TA-Luft are available.

For cryogenic fluids

In cryogenic lines, high performance models, i.e. triple eccentric butterfly valves, are used.

The triple eccentric butterfly valve performs better in demanding conditions than simpler butterfly valves. In large sizes, the butterfly valve is lighter than other types of valves.

The butterfly valve can be of a top-entry design, meaning that the valve is installed in the pipe by welding, but it has a top hatch to ensure maintainability.

The German company HEROSE manufactures metal seated triple eccentric, that is, triple-offset butterfly valves suitable for cryogenic conditions.

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Steam and Condensate

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Thread Connection

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Double Flanged

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Butt Weld Ended

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Wafer Type

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ARI-Armaturen ZETRIX Triple Offset Butterfly Valves

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Process Fluids

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ARMATURY Group Type L32.8 Triple-Eccentric Butterfly Valves

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Thread Connection

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Double Flanged

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Butt Weld Ended

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ARI-Armaturen ZEDOX Double Offset Butterfly Valve – Wafer Type

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ARI-Armaturen ZETRIX Triple Offset Butterfly Valves

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Liquid Fuels

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ARI-Armaturen ZETRIX Tripple Offset Butterfly Valves

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R.T. Valvole Triple Offset Butterfly Valves

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Sampling

Sampling

AZ-Armaturen contiflow näytteenottoventtiili - sampling valve
AZ_produkt-probenahme-sampling-sic
AZ vario sampling valve - näytteenottoventtiili
AZ-Armaturen sampling valve
AZ-Armaturen gsp
AZ-Armaturen LG-SP

Media

Process media
Gas and fuel

Manufacturers

AZ-Armaturen

Technical details

Sizes: DN 15-100, ASME 1/2
Pressure classes: PN 10-40, ANSI 150#-300#
PT range: -40 < T < 230°C, vacuum 10-8 mbar
Body materials: 1.0619 (WCB), 1.4408 (CF8M), 1.4308 (CF8), cold resistant 1.1138 (LCC), also special materials
Plug materials: 1.4408 (CF8M), 1.4308 (CF8), also special materials
Features: closed system, pressureless sampling, simple and safe operation, environment is not exposed to process fluid during sampling, predetermined sampling volume, Ta-luft 2002 well-tested valves
Other: the complete system can be customized according to the application’s requirements
Other names: sampling valve, sampling valve

What is a sampling valve?

Sampling valves differ in structure and operating principle, but they all share the same goal and key features. A sampling valve takes a sample from the flow neatly and safely without disturbing the process.

Choosing a sampling valve

A good sampling valve is easy to use. It enables safe, pressureless sampling without exposing the environment or operator to the process fluid. The sample volume can be predetermined, so the desired amount always goes into the sample container.

Sampling does not disrupt the process itself; the system flow is not interrupted during sample collection. The sample must be a fresh portion of the process fluid flowing in the pipe. A good sampling valve does not have a “dead” volume, as is the case with a conventional ball valve. If a conventional ball valve were used for sampling, the dead volume would contain old process fluid and the sample would not correspond to the process fluid in the pipe at the time of sampling.

Our solutions cover AZ-Armaturen sampling solutions for solid, liquid and gaseous process fluids for various industrial needs. The range also includes products for sampling extremely aggressive process fluids.

We assist in selecting and customizing a sampling solution that meets the requirements of the application. Please ask our contacts for more information.

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AZ-Armaturen Contiflow

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AZ-Armaturen gb S3 SAMPLING PPV DS

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AZ-Armaturen Vario

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AZ-Armaturen Sampling SIC

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AZ-Armaturen Sampling for Liquids

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AZ-Armaturen GSP

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Valve remote control equipment

Valve remote control equipment

flexidrive remote cable drive valve operator - kaukokäyttölaite
flexidrive_sv_operointipiste
Venttiilien_kaukokayttolaitteet
flexidrive
flexidrive_operointiasema
flexidrive remote valve operator
flexidrive_venttiiliasema
flexidrive_sv_osoittimet

Media

Process media
Gas and fuel
Steam and condensate
Cryogenic media

Manufacturers

Smith Flow Control
Sofis

Technical specifications

Other: operating point up to 60 meters from the valve, allows cable bends, fire-resistant cable
Alternate names: remote cable drive valve operator

What is a valve remote control device?

With a remote control device, valves located in dangerous or otherwise difficult-to-access places can be easily operated. The remote control device consists of two gear-driven operating units and a cable running between them. One operating unit is installed on top of the valve to be operated and the other where the valve is intended to be controlled from.

The remote control device is suitable for all valve models, whether screw or hand lever operated, and it is easy to install afterwards on an existing valve.

Selecting a valve remote control device

When constructing systems, valves cannot always be placed in locations optimal for operation; they are sometimes located on high pipe bridges, in low, narrow piping tunnels, or in areas where environmental conditions pose their own challenges to the normal operation of the valve.

If a valve placed in a challenging location is operated infrequently, its automation may be too costly. It is precisely for such cases that Smith Flow Control’s FlexiDrive manual remote control device, part of the Sofis Group, has been designed.

Thanks to the flexible cable, the operating point can be positioned up to 60 meters away from the valve itself. FlexiDrive installation sites may also include turns and bends of up to 720 degrees, which are not possible with chain wheels and extension bars.

In addition to the aforementioned pipe bridges, installations have been made on valves mounted on the walls of large terminal tanks and in the confined spaces of icebreakers. Installations have also been carried out, for example, in a nuclear power plant, where the operated valves are on the so-called radiation side and the operation is desired to be brought to a safe area.

We help select a remote control device that meets the requirements of the application. Ask our contacts for more information.

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Sofis FlexiDrive remote operator

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Smith Flow Control Flexi-Drive

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Portable valve actuators

Portable valve actuators

easidrive venttiilin operointityökalu - valve remote control
easidrive käsipöyrä pystyssä
sofis easidrive ilman käsipyörää
TU-A-I-Varo-4_operointityokalu
Sofis EasiDrive

Media

LPG
Process media
Gas and fuel
Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane

Manufacturers

Smith Flow Control
Sofis

Technical specifications

Other names: easy drive, EasiDrive, remote valve operator, valve operating tool

What is a portable valve actuator?

Heavy valves used in various industrial processes pose a challenge, especially from a safety perspective. Different types of turning levers are used, and unfortunately, minor – and sometimes even major – workplace accidents occur. Not to mention that operating a large wedge-slip valve from one extreme position to another is quite strenuous. Valve operating tools can make valve operation easier and safer.

Choosing a portable valve actuator

A new valve might be light, but over time it becomes heavier and heavier. Lubrication no longer helps, and replacement or automation is expensive.

We have good experience performing valve open and close operations using the operating tool.

There are two options available. In both cases, for example, compressed air is used as the power source, which easily provides the required torque.

See presentations for both options.

The advantage of the EasiDrive featured in the video is that it is a small, handy tool. It features a fixed platform that is mounted on top of any existing valve. You can see various options in the photographs above. The tool—the gun—is placed on this platform, and with a press of a button, you can operate the valve to open or close. The device has its own adjustment for the applied torque.

The advantage of the Power Wrench featured in the video is that no fixed platform for the tool is required; instead, as the video shows, the platform can be easily mounted onto the existing valve handwheel.

If you are interested in testing the device at your facility, we are happy to perform a demonstration. We have both tools in stock.

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Sofis EasiDrive-operointityökalu

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Sofis EasiDrive portable actuator

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Smith Flow Control easy drive -operointitykalu

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Valve lockout systems

Valve lockout systems

Valve lock - venttiililukko
Valve safety lock - venttiilin turvalukitus
venttiilin turvalukitus
turvalukitus
venttiilin lukko
lockout tagout
interlock turvalukko asennettuna - valve interlock
interlock avainkaappi - key storage
Valve security interlock
interlock_viritys
yleiskuva_turvalukitukset

Media

Steam and condensate
Cryogenic media
Natural gas, biogas and biomethane
LPG
Process media
Gas and fuel

Manufacturers

Netherlocks
Smith Flow Control
Sofis

Technical Specifications

Other designations: Lockout, Tagout, Master lock, valve safety locks

What is a valve lockout system?

Work safety is fundamentally linked to the safe operation of processes. According to statistics, numerous industrial accidents are caused by so‐called human errors in operation. Either the wrong valve is operated, or it is assumed that the process valves are in a different position than they actually are.

To prevent such human operational errors, a program was developed in the United States by The Occupational Safety and Health Administration (OSHA) called The Control of Hazardous Energy Source Standard, which now serves as an international standard for managing accident risks. In Finland, the concept known as Lockout/Tagout has become a useful term, which simply means reliably disconnecting the energy supply (Lockout) and marking the disconnection (Tagout).

At its simplest, incorrect operation can be attempted to be prevented by a “do not turn” sign, or by tying something to the valve that obstructs, or at least slows down, operation—a rope or some other contraption. However, safety locking is only considered achieved when operation is prevented by some type of lock. On this site, we present various options for implementing safety locks, ranging from simple chain locks to advanced Interlock safety locks, which can also create sequential orders for operating multiple valves.

Selection of a valve lockout system

The following flowchart helps determine whether a lock is needed at all for the target, and if so, what kind. For example, if it concerns a safety device, such as a dual-redundant safety valve, Tukes has determined that a chain lock does not eliminate human operational errors, but that an Interlock sequence is required at the site. The same applies if it is important that the valve is definitely 100% open or closed after operation.

By “sequence” it is meant that several valves are operated in a planned order one after the other. In these cases as well, the Interlock safety lock eliminates “human errors”.

Selection of Valve Safety Lock

In our blog post Valve Safety Lock Options, the differences between these various locking options are explained in further detail. The possibilities of key management systems are explained in a separate blog post.

Simple Safety Locks

Various locking cable locks or protective covers that lock hand wheels are simple and cost-effective ways to perform valve LOTO (Lockout/Tagout) safety locking. Lockout/Tagout means reliably disconnecting the energy supply (Lockout) and marking the disconnection (Tagout).

From Cable Lock to Hand Wheel and Handle Protective Cover

A Lockout/Tagout (LOTO) lock can be created by tying the valve’s hand wheel with a cable so that its operation becomes impossible. At its simplest, it can be implemented using CarSeal straps designed for industrial use, which operate on the principle of a cable tie and are therefore disposable.

A more advanced version is various cable locks that are secured with a mechanical key lock. The cables can be either fixed-length or adjustable. Multiple locks can be attached to a single cable, which can, for example, be color-coded to ensure that the lock is secured by two or more persons. The keys can be personalized so that a particular department or even an individual has their own lock, with which they lock and are the only one who can remove it.

The possibilities for key codings are unlimited.

Another option for performing the lock is to prevent the valve operation by protecting and mechanically locking the hand wheel or handle with a protective cover. In this case, the key system works the same as in chain locks.

Not only valves, but various other targets, such as electrical systems, can be locked with mechanical locks.

For managing keys and locks, our software offers various storage cabinets. An essential part of the LOTO system is the marking (Tagout) that must be performed in connection with the locks (Lockout), so that incoming personnel observe and understand that a part of the process has been intentionally isolated from normal operation.

These marking supplies are also available in our product range.

Valve interlocks

A more advanced method to lock a valve is the interlock. It eliminates the risks of manual operation by enforcing a pre-planned operational order, thereby ensuring the safety of both the process and the worker. The manufacturing of Interlock safety locks is handled by process safety equipment manufacturer Sofis.

How does the interlock work?

In a safety lock, a locking device is installed over either an existing or a new valve, which operates with a separate key. The key is typically stored in a dedicated key cabinet in the production facility’s control room. Without the key, the safety lock cannot be operated.

The keys for safety locks are typically marked with both text identifiers and color codes. The color code provides an at-a-glance indication of whether the valves in the process are in their default or abnormal positions.

It is even possible to automate the key management system. This is explained in more detail in our blog post.

See the operation of the locking device and an example of color coding in this video.

System locking options – sequences

Operations in processes often require that multiple valves be operated consecutively. In such situations, the strengths of interlock safety locks come to the forefront. It should be noted that, for example, TUKES has begun to require that in tanks with several safety valves, it must be ensured that not all backup devices are accidentally closed at the same time. This assurance is easily achieved with an Interlock locking system.

See a sequence example in the video.

Installation on existing valves

The Interlock safety lock is suitable for all valve models – including actuator-controlled valves – and for all nominal sizes. It is also easy to install retroactively. In such cases, our installers will measure the end-to-end dimensions of the old valve, upon which the factory manufactures an adapter piece to be placed between the locking device and the valve. Our installation team has undergone official factory training, so the installation and adjustment of safety locks is handled with ease.

We have also held a webinar on interlock safety locks, which you can watch below.

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