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Looking to buy the best Flame Arrestor for sale in Adelaide? Get Quotes sends your requirements to expert suppliers in Australia so you get personalised quotes to compare Flame Arrestor prices, specifications, features and terms then choose the one that’s right for you. Also compare servicing, consumables and reviews, so you can buy with confidence.
Metaval Consolidated | Mechanical ,Instrumentation, Process Control
Metaval Consolidated is an Flame Arrestor supplier to Melbourne
Metaval is a manufacturers representative and supplier of quality engineered products to Industry in Australia and the Pacific Rim.
Metaval was established in 1967 to provide an engineering supply service to users in the paper industry. As our company grew and diversified, the range of industries serviced also increased. Today we provide engineered products to all major ...
Pressure and Safety Systems | Pressure Relief Valves & Pressure Devices
Pressure and Safety Systems is an Flame Arrestor supplier to Melbourne
Pressure and Safety System is a Australian importer, stockist and distributor, service and repair agent for several world renowned manufacturers of Safety and Relief Valves, Liquid Level Gauges and Rupture Discs and Explosion Panels from the USA, UK and Europe.
Pressure and Safety Systems has supplied quality products to general industry as well as the oil and off shore gas ...
Cebeco is a leading industrial Procurement Services business sourcing products from a range of domestic and international suppliers. The business has served the mining, oil and gas, petrochemical and general industries since 1971 and has built a reputation for its service. We stand behind our business because of the extensive product knowledge and experience of our technical ...
A flame arrestor is a safety device that prevents flames from entering into a pipeline or storage tank containing flammable gases or liquids. It works by allowing the flow of gas or vapor but prevents the ignition of any flames that may be present. Flame arrestors are used in industries such as oil and gas, chemical processing, and pharmaceuticals, where the risk of explosions is high. They are important safety measures that can prevent catastrophic accidents and protect workers and facilities.
What type of flame arrestor should I choose for my application?
Selection depends on several factors, including the type of gas or vapor being handled, the flow rate, the temperature and pressure conditions, and the specific requirements of the application. Some common types of flame arrestors include deflagration arrestors, detonation arrestors, and end-of-line flame arrestors. It is important to consult with a knowledgeable supplier or engineer to determine the most appropriate flame arrestor for your specific needs.
What materials are commonly used for flame arrestors?
A flame arrestor is a device that is used to prevent the spread of flames in equipment and systems that involve flammable gases and liquids. The materials commonly used for flame arrestors include stainless steel, aluminum, brass, cast iron, and carbon steel. The selection of the material depends on various factors such as the type of fluid or gas, temperature, pressure, and corrosive properties. The flame arrestors are designed to withstand high temperatures and pressures, and they are usually made of materials that are resistant to corrosion and erosion. The specific design and construction of a flame arrestor depend on the application and the requirements of the relevant safety standards and regulations.
What is the maximum operating pressure and temperature for the flame arrestor?
A flame arrestor is a safety device installed in pipelines or storage tanks to prevent the propagation of flames from an external source into the pipeline or tank. The maximum operating pressure and temperature for a flame arrestor depend on the design and materials used in its construction. Generally, flame arrestors are designed to operate at a maximum pressure of 10 bar and a maximum temperature of 200°C. It is essential to follow the manufacturer's recommendations and guidelines for the safe and effective operation of flame arrestors.
What size flame arrestor do I need for my application?
S come in various sizes, and the size you need depends on the size of the pipe or tank where the flame arrestor will be installed. To determine the appropriate size, you should consult with a qualified engineer who can assess the specific requirements of your application and recommend the appropriate flame arrestor size. Factors that may affect the size of the flame arrestor include the flow rate, pressure, temperature, and the type of substance being transported through the pipe or stored in the tank. It is important to ensure that the flame arrestor is properly sized and installed to ensure its effectiveness in preventing explosions or fires.
How do I install a flame arrestor?
A flame arrestor is a device that prevents the passage of flames from a fire or explosion into a pipeline, tank, or other device. It is typically used in applications where flammable gases or liquids are present, such as in the petrochemical industry.
To install a flame arrestor, follow these steps:
Determine the location where the flame arrestor will be installed. This will depend on the specific application and the type of equipment being used.
Choose the appropriate type of flame arrestor for the application. This will depend on factors such as the type of fluid being transported, the size of the pipeline or tank, and the design specifications of the equipment.
Install the flame arrestor according to the manufacturer's instructions. This may involve attaching the device to the pipeline or tank using bolts, clamps, or other fasteners.
Ensure that the flame arrestor is properly aligned and secured in place. This will help to prevent leaks or other problems that could compromise the safety of the equipment.
Test the flame arrestor to ensure that it is functioning properly. This may involve running a pressure test or conducting other checks to ensure that the device is preventing the passage of flames and other hazardous materials.
Overall, installing a flame arrestor requires careful planning and attention to detail. By following these steps, you can help to ensure that your equipment is safe and secure, even in the presence of flammable gases or liquids.
How often should I inspect and maintain my flame arrestor?
Maintenance is critical to ensure safe and efficient operation of your equipment. The frequency of inspections and maintenance will depend on the type of equipment, operating conditions, and manufacturer's recommendations. Generally, it is recommended to inspect and clean the flame arrestor at least once a year or after every 2000 operating hours. It is also important to regularly check the condition of the flame arrestor and replace it if it shows signs of damage or deterioration. Regular maintenance and inspection of flame arrestors can help prevent safety hazards and prolong the lifespan of equipment.
What is the expected lifespan of a flame arrestor?
A flame arrestor is a safety device that prevents the spread of flames and explosions by trapping and extinguishing flames before they can escape a vessel or pipeline. The lifespan of a flame arrestor depends on several factors, including its design, materials, exposure to corrosive or abrasive substances, and frequency of use. Generally, a well-maintained flame arrestor can last for several years, but it is recommended to inspect and replace them periodically to ensure they are functioning properly and meet the latest safety standards. The lifespan can range from a few years to over a decade depending on the type and usage of the flame arrestor.
Do I need any special permits or certifications to install a flame arrestor?
S are safety devices that prevent the propagation of flames in a pipeline or vessel containing flammable gases or liquids. The installation of a flame arrestor may require specific permits or certifications depending on the location and application. In some cases, the installation may fall under the jurisdiction of local, state, or federal regulations, such as OSHA, EPA, or NFPA. It is recommended to consult with a qualified engineer or safety professional to ensure compliance with all applicable regulations and standards.
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