V/SV-AD-IIB3

Válvula de alívio de vácuoà prova de deflagração

Function and Description

Highly Developed Vacuum Relief Valve

The deflagration Deflagration Explosion propagating at subsonic velocity (EN 1127-1:1997). proof V/SV-AD type PROTEGO® valve is a highly developed vacuum relief valve Vacuum relief valve A vacuum relief valve is used to ventilate a part of the system and protects it from impermissible underpressure. for high flow capacities with an integrated flame arrester unit Flame arrester unit Flame arrester casing with FLAMEFILTER® set. . It is primarily used as a safety device Device A device is a pipe component that influences the media flow by opening, closing, or partially shutting off the flow channel or by dividing or mixing the media flow. for flame-transmission-proof in-breathing in tanks, containers, and process equipment Equipment Machines, appliances, fixed or mobile devices, control parts and accessories, and warning and prevention systems, whether separate or combined, intended for the generation, transfer, storage, measurement, control, and conversion of energy, and for the processing of materials, which have their own potential source of ignition and may cause an explosion. . The valve offers reliable protection against vacuum Vacuum Vacuum is the pressure in an enclosed space that is lower than the ambient pressure. and prevents in-breathing of air almost up to the set pressure; while at the same time protecting against atmospheric deflagration. The PROTEGO® flame arrester unit PROTEGO® flame arrester unit The PROTEGO® flame arrester unit is the main component of a flame arrester. It prevents flame propagation. is designed to achieve minimum pressure drop with maximum safety. The deflagration-proof PROTEGO V/SV-AD valve is available for substances for explosion Explosion Abrupt oxidation or decomposition reaction producing an increase in temperature, pressure, or in both simultaneously. group IIB3 (C MESG ≥ 0.65 mm).

10%-Technology

When the set vacuum Set vacuum Internal negative gauge pressure at which a vacuum valve first opens. is reached, the valve starts to open and reaches full lift within 10% overpressure Overpressure Overpressure refers to an increase in pressure in a system or vessel above the normal operating pressure. . This unique 10% technology enables a set vacuum that is only 10% above the maximum allowable working vacuum (MAWV) of the tank. After years of development, this typical opening characteristic of a safety relief valve is now also available for the low pressure range.

Advanced Manufacturing Technology

The tank pressure Tank pressure Tank pressure is the pressure within a tank. is maintained up to the set vacuum with a tightness that is above to the normal standards due to our state-of-the-art manufacturing technology. This feature is ensured by the valve seats made of high quality stainless steel and with individually lapped valve pallets (1), or with an air cushion seal Seal A seal prevents or limits unwanted transfer of product from one container to another. Seal is used as superordinate term for all types of sealing elements. (2), in conjunction with high quality FEP diaphragm Diaphragm A diaphragm is a thin layer of material, which has a large surface area. . The valve pallets are also available with a PTFE seal to prevent them from sticking when sticky substances are used and to enable the use of corrosive fluids. After the vacuum is balanced, the valve re-seats and provides a tight seal. If the valve is used in atmospheres forming an explosive mixture with air and the mixture ignites, the integrated PROTEGO® flame arrester unit (3) prevents flame transmission into the tank.

Many Individual Certifications

The standard design is tested at an operating temperature Operating temperature Temperature reached when the equipment is operating under design conditions. of up to +60°C / 140°F and meets the requirements of European tank design standard EN 14015 (Appendix L) and ISO 28300 (API 2000). EU conformity according to the currently valid ATEX directive. Approvals according to other national/international regulations on request.
Product Data and Features

Tabela de dimensões

Para escolher o diâmetro nominal (DN), veja o diagrama de vazão da página seguinte

DN50 / 2"80 / 3"100 / 4"150 / 6"200 / 8"250 / 10"300 / 12"
a 337 / 13.27 395 / 15.55 515 / 20.28 713* / 28.07* 808* / 31.81* 925* / 36.42* 946 / 37.24
b 247* / 9.72* 312 / 12.28 358 / 14.09 443 / 17.44 520 / 20.47 588 / 23.15 588 / 23.15

Dimensões em mm

Seleção do grupo de explosão

MESGExpl. Gr. (IEC / CEN)Gas Group (NEC)
≥ 0,65 mm IIB3 C

Aprovações especiais sob solicitação

Indicação da temperatura máx. de trabalho

≤ 60 °C temperatura máx. de serviço admissível em °C
-

temperaturas de trabalho mais elevadas, sob solicitação

Tipo de conexão flangeada

EN 1092-1; Form B1
ASME B16.5 CL 150 R.F.

Outras conexões sob solicitação

Versão e especificação

O obturador da válvula é calibrado por peso.
Estão disponíveis dos versões:
Válvula de alívio de vácuo na versão básicaV/SV-AD
Válvula de alívio de vácuo com camisa de aquecimento (temperatura máx. do meio de aquecimento +85°C)V/SV-AD - H

Outros dispositivos especiais sob solicitação

Ajustes de pressão

Vácuo:-2.0 mbar-35 mbar
-0.8 inch W.C.-14 inch W.C.

Ajustes de vácuo mais altos sob solicitação

Seleção do material do corpo

Execução              
BC
Corpo
Aço Aço inoxidável
Camisa de aquecimento (SV / E-(S)-H-...)
Aço Aço inoxidável
Aço inoxidável Aço inoxidável
Vedação
PTFE PTFE
Conjunto abafador de chamas
B B

Materiais especiais sob solicitação

Seleção de material do obturador da válvula

Design A B C D
Vacuum range [mbar]
 [inch W.C.]
-2.0 up to -3.5
 -0.8 up to -1.4
<-3.5 up to -14
 <-1.4 up to -5.6
<-14 up to -35
 <-5.6 up to -14
<-14 up to -35
 <-5.6 up to -14
Valve pallet Aluminium Stainless Steel Stainless Steel Stainless Steel
Sealing FEP FEP Metal to Metal PTFE

Materiais especiais e ajustes de pressões mais altas sob solicitação

Diagrama de vazão

Este diagrama de vazão foi determinado em uma bancada de medição de vazão calibrada e certificada pela TÜV. A vazão V em m³/h se refere ao estado técnico padrão de ar, conforme ISO 6358 (20°C, 1bar). Para conversão em outras densidades e temperaturas, veja o cap. 1: Bases técnicas.

Detalhe X

Detalhe X

Applications