What are bellows valves
Bellow valves are a type of valve that use a flexible bellow element to control the flow of fluids or gases. The bellow element is typically made of metal or other durable materials and is designed to expand and contract in response to changes in pressure or temperature. This movement allows the valve to open or close, regulating the flow of the fluid or gas through the system. Bellow valves are commonly used in applications where precise control of flow is important, such as in chemical processing, pharmaceutical manufacturing, and other industrial settings.
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A Bellows Valve is a specially designed valve suitable for use in industries dealing with a hazardous medium where even minute leakages can be extremely critical. With the exponential growth of new industries such as the chemical and nuclear industry, there is a growing abundance of flammable, hazardous, extremely poisonous, and toxic media flowing through the pipelines. This creates a high risk of leakage, explosion, and health hazards. So, the valves used in such pipes and systems have specific stringent leakage and sealing requirements.
What is the costruction of bellows seal valves
A bellows valve is a type of industrial valve that uses a bellows element to create a hermetic seal. The construction of a bellows valve typically includes a valve body, a bonnet or cover, a stem, a handwheel or actuator, and the bellows element itself.The bellows element is typically made of metal, such as stainless steel, and is designed to flex in response to changes in pressure or temperature. This flexibility allows the bellows element to compensate for thermal expansion and contraction, as well as pressure fluctuations, while maintaining a tight seal.The stem of the valve connects the handwheel or actuator to the valve disc or plug, which is used to control the flow of fluid or gas through the valve body. The bonnet or cover is used to protect the internal components of the valve, including the bellows element and stem, from external damage or contamination.Overall, the construction of a bellows valve is designed to provide reliable and precise control of fluid or gas flow while maintaining a hermetic seal to prevent leaks or contamination.Bellows seal valves are a type of industrial valve that use a flexible metal bellows to create a hermetic seal between the valve stem and the valve body. They are commonly used in applications where leakage cannot be tolerated, such as in chemical processing, pharmaceuticals, and food and beverage production.There are several types of bellow seal valves, including:1. Globe valves2. Gate valves3. Check valves4. Ball valves5. Butterfly valvesEach of these types of valves has its own unique design and characteristics, but they all use a bellows seal to prevent leakage and ensure reliable operation.
Advantages of Bellows Seal Globe Valve
1. The most prominent advantage of any bellows valve is the Double seal design (bellows + packing). So, even if the bellows fails, the stem packing will prevent any kind of leakage to meet the international sealing standards.
2. It minimizes any loss of medium fluid and ensures the safety and environmental protection. This will ultimately improve the safety of the plant where is bellows valve has been installed.
3. It can act as an energy saver as it contributes to minimizing energy losses due to leakage.
4. Since the leakage is minimized, it prevents frequent maintenance of the valve. So, it leads to longer valve life.
5. Owing to longer service life, operating and maintenance cost is considerably reduced.
6. The rugged bellows seal design ensures zero leakage from the valve stem, thereby providing the maintenance-free conditions.
7. The safety of working personnel is improved with the installation of a bellows valve as emissions of inflammable, toxic, and hazardous chemicals can be minimized.
The difference between common valve and bellows seal valves
Bellows globe valves and common valves are two types of valves used in industries to control the flow of fluids or gases.
The main difference between these two types of valves is that bellows globe valves have a bellows assembly that separates the fluid or gas flowing through the valve from the valve stem, whereas common valves do not have this feature.
When valves with gland packing are used such as gate valves or ball valves in the system for heated oil transfers (permeability of heated oil is about 50 times that of steam), chances of hot oil spillage are quite high and can cause loss of equipment and property. In such cases, due to its construction, the bellows valve can ensure absolutely nil leakage.
In ordinary valves, the shape of graphite packing cannot provide 100% effective sealing which is the main reason for frequent leakage of packing valve. As ordinary fillers are manufactured with graphite, if the purity of graphite is not adequate, its oil resistance would below. When heating oil being transferred is soaked in a graphite filler, certain graphite impurities get separated and flows along with it.
When a ball valve is used in the system with heated oil, if the internal PTFE is not resistant to high temperatures, it will quickly deteriorate and cause valve leakage.
The internal parts of the bellows valve are made of stainless steel, which can withstand a temperature of 425°C. Considering the life span of Bellows Seal Globe Valve, the duration of the general bellows valve is more than three years. Therefore, to maintain the reliability of output and to reduce the direct running costs, a bellow shut-off valve is preferred over ordinary seal valves in case of a system where heated oil is being transferred.
The bellows assembly is made of a series of convoluted metal plates that expand and contract with changes in pressure or temperature, allowing the valve to operate smoothly and without any leaks.
In contrast, common valves rely on a packing material, such as graphite or PTFE, to prevent leaks around the valve stem. This packing material can wear out over time, leading to leaks and increased maintenance costs.
Overall, bellows globe valves are generally considered to be more reliable and longer-lasting than common valves, especially in applications where leakage is not acceptable.
Selection Guide for Bellows
1. Choose the inner diameter of the bellows according to the diameter of the valve stem. The inner diameter of the bellows should be greater than the stem diameter of 115 mm.
2. The outer diameter of the bellows is selected according to the inner diameter of the bellows. The outer diameter and the inner diameter are related by the ratio of the outer diameter to the inner diameter. In general, the ratio of the outer diameter to the inner diameter is 113 to 115.
3. The wall thickness, number of layers, number of corrugrtions, and length of the corrugated pipe must meet the requirements of the pressure resistance, stroke, and cycle life of the corrugated pipe. Under normal circumstances, greater the pressure, more thickness of the bellows is required. To increase the displacement or reduce the stiffness of the bellows and increase life, the thickness of the single layer can be reduced and the number of layers of the bellows can be increased.
4. For handling higher pressures, the multiply design of bellows is recommended. The pressure that bellows can withstand can be increased by using 2 or 3 piles of the metal wall as in case of multiply design of bellows. Pressure rating by using a two-ply bellow can increase by 80% to 100% than single-ply bellow of the same thickness. Alternately, the stroke length is reduced if single-ply bellow of a thickness equivalent to the pressure rating of two ply bellow is used. So, we get a distinct advantage of multiply design over the single-ply thick bellows.
5. To prevent the distortion of bellows, the designed guide structure must be strictly followed.
6. To prevent wear and premature failure, local contact between the valve stem or bellows must be avoided.
7. The design should be such that twisting and torsional deformation of the bellows is prevented.
8. The valve design should be limited by the extension stroke and compression of the bellows. This is to prevent displacement of the bellows and to withstand compression and tensile extension beyond the defined cycle life test. Under normal conditions, the stroke of the bellows should not exceed 25% of the free length. If this is not fulfilled, it will affect the cycle life of the bellows, especially bellows valves under high temperature and high-pressure environment.
9. The bellows adopt the same pressure and temperature grade as the Bellow seal Globe Valve. The bellows must withstand the pressure test of the nominal pressure of the main valve at 38 ℃ and 115 times the nominal pressure at 38 ℃. During the pressure test, the weld should not crack or leak, and the bellows should not twist.
10. The material of the bellows components should be selected within the allowable temperature range, and it should have good formability, welding performance, and compatibility with the medium.
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Application range of Bellows Seal Globe Valve
· Bellows valves eliminate the risk of leakage of the process fluid and are therefore ideally suited for applications where leakage cannot be tolerated from the valves. So, places where highly hazardous materials such as hydrogen, ammonia, chlorine, and other similar poisonous or explosive material are handled, these valves are preferred.
· It is suitable for use as a shut-off valve with heat-conducting oil, toxic, flammable, highly permeable, environmentally polluting, and radioactive fluid pipelines. It can be considered as a high-quality product for creating a leak-free factory.
· To name a few, bellows seal globe valve is highly used in petrochemical industries, electronics industry, various plants, vacuum industries, etc.
Precautions for Bellows Seal Globe Valve
Ø To avoid damage or injury to personnel or equipment, always read all warnings and instructions. Unprofessional re-conditioning, the use of foreign replacement parts, or the incorrect maintenance steps, may cause a loss of efficiency or lead to personnel injury or damage to parts.
Ø Use double seal bellows in case of a highly corrosive chemical environment so that you get two protective layers of sealing.
Ø If you find that there is a smell of media in the air or the valve cover is wet, it is generally because the bellows have been damaged by the medium.
Ø You can replace the bellows by yourself or get it replaced by makers. Replace it to avoid prolonged negligence, a threat to life, and damage to the entire valve.
Ø An excessively tightened gland nut can cause excessive packing wear and can hinder the free movement of the plug stem.
Reasons for Leakage of Bellow Seal Glove Valve
There are many reasons for the leakage of a Bellows Seal Valve. Bellows valve leakage is generally divided into internal leakage and external leakage.
1. It is because the liquid medium contains solid impurities that damage the sealing surface and cause failure.
2. Combined with the analysis of the on-site usage, the reason for the leakage of the valve stem is mainly related to the valve structure, working environment, and operation mode.
3. The valve stem adopts a double sealing structure of bellows and packing. The bellows are welded with the inner lining ring and the outer lining ring to form a bellows assembly and then welded with the valve stem and the guide body to block the leakage of the medium through the valve stem. The valve stem of the bellows valve moves up and down by the flat key, until the upper-end surface of the flat key contacts the lower end surface of the lower packing. Since the lower packing is made of PTFE material, if the valve is opened too much, the flat key will be embedded in the packing, the bellows valve can no longer be opened and closed, and the bellows assembly is knocked to death, causing the medium to leak along the valve stem.
4. Tensile elongation and compression of the bellows valve according to the line determination process can contribute to leakage. If tension or compression exceeds the limit, the bellows may be damaged, resulting in small series hose rupture, seal failure. Therefore, it is necessary to increase the limit device for opening and closing of the bellows valve, so that the bellows always expand and contract within the design range during the operation of the valve.
Summary
The unique design of Bellows Seal Globe Valve and its efficiency to provide leak-proof operations makes it the best-suited valve for a wide range of applications, especially hazardous materials & where system media is at high temperatures. Durability, maintenance-free operations and cost-effectiveness is an added benefit with bellows valves.
When it’s critically important to keep a gas or liquid inside a system, consider a bellows seal valve. Bellows seal valves incorporate a cylindrical metal tube that expands and contracts like an accordion to create a hermetically sealed closure in a valve stem. The bellows get compressed when the valve is in the open position and expands when the valve is closed. Because the bellows expand and contract as the valve is operated, and because it is welded to the stem and bonnet, there is no leak path for the gas or liquid to escape.
When transferring hazardous materials, bellows seal valves outperform standard or packed valves, which leave a space between the stem and the rest of the valve in order to allow the valve to open and close. That space leaves a chance for fugitive emissions (more on that later!) to leak.
Another reason to use a valve with a bellows seal rather than a standard packed valve is when transferring liquids or gas subject to changes in temperature. As Dan Fisher, a business development manager with Dixon explains, “If you have a piping system that runs hot and cold, traditional packed valves tend to loosen up with the temperature changes,” he says. “A bellows seal valve does not because it’s hermetically sealed. That’s why bellows seal valves are the valve of choice in heating and steam services applications.”
Dixon Eagle® bellows seal valves are the industry standard in steam, oil, gas, and chemical plants or wherever keeping a hazardous gas or liquid contained is required.
Hydraulically Formed vs. Welded Bellows
Traditionally, there are two primary ways to manufacture a bellows seal valve. One method involves welding a series of thin washer-like plates at both their inner and outer circumference to form the accordion bellows shape. A hydraulically formed bellows, on the other hand, is manufactured by pressurizing a single metal tube into wide-spaced metal folds to form the proper shape.
Hydraulically Formed Bellows
Formed bellows are more economical but require more vertical space
Welded BellowsWelded piles 'nest' together to create a shorter height; convenient for small spaces
There are advantages and disadvantages to both. Welded bellows generally take up less space than hydraulically formed bellows. A welded bellows has more folds per unit length as compared to formed bellows. Thus, for the same stroke length, formed bellows are two to three times longer than their welded counterparts.
Hydraulically formed bellows are typically larger, but they incorporate fewer welds, so there is a perception that they are stronger and will last longer. Fisher says that’s not necessarily the case. “If an edge-welded bellows is designed and welded correctly, they can have just as long a life cycle as a hydro-formed valve,” he says. “Form factor is really the major reason to choose one over the other.”
Gate or Globe?
Like standard valves, bellows seal valves employ a gate or globe to form a seal over an opening. A globe valve gets its name from its shape — a cone-shaped plug moves in and out of the flow of fluid or gas. A gate valve operates just like a gate, sliding in between the seats of the valve at a right angle to fluid flow. Why would you choose one over the other?
As a general rule of thumb, bellows valves with a globe closure have a lower flow coefficient than a gate valve—it puts more restrictions on the line, so your liquid or gas will flow at a slower rate for a given pressure. But a globe valve offers a tighter seal than a gate valve. Deciding which type to use depends upon your application.
Safety and Cost Considerations
The primary reason to use a valve with a bellows seal is to contain fugitive emissions — accidental leaks of gas or vapors that escape the system. Fugitive emissions can pose a danger to workers in the area and the greater environment. Since the passage of the U.S. Clean Air Act of 1963, the federal government has issued testing requirements for measuring fugitive emissions on valves. These standards have been updated and strengthened over the years, and if end users do not comply with EPA guidance, they can face both monetary and safety repercussions.
Fugitive emissions also affect revenue as it pertains to product loss. In a large plant, continuously leaking valves can cost millions of dollars. “With a standard packed refinery valve, you can lose on order of $250,000 in product loss per ton of fugitive emissions,” says Fisher. “If you’ve got a 300-million-barrel-per-day refinery, on average, these are going to lose maybe 12 to 15 tons a year. If you do the math, that’s $3 million to $3.75 million that goes into the air in a year. So, a leak-free valve can save that product and put it into your bottom line.”
When it comes to a typical steam plant, valve stem seal leaks are common in steam lines because thermal cycling tends to loosen the valve packing. This can also lead to hazardous conditions for workers as well as lost revenue.
For example, consider a typical natural gas-fired boiler supplied with 230°F (110°C) feedwater, producing 450 PSIG saturated steam and a natural gas cost of $1.54/MMBtu. Using the estimated cost of steam, the cost of leakage of a valve in a 115 PSI line that is throwing a plume of steam 3 feet at 90°F ambient temperature would yield a cost of $792.78 per year. (If you’d like to do the math, that’s (50 lb./hr.) x ($1.81/1,000 lb.) x (8,760hrs./year)
A valve in a 115 PSI line that has a packing leak approximated by a 1/16-inch hole would yield a cost of $237.83 per year. (15 lb./hr.) x ($1.81/1,000 lb.) x (8,760hrs./year)
Considering all the valves in a typical plant, the total savings would be significant. Based on eliminating the cost of steam leakage as estimated, a Dixon Eagle bellows seal valve can pay for itself in a period of one to two years.
These bellows seal valves can also save money in other ways as well. Many refiners operate under consent decrees with the EPA, guaranteeing they will not put a certain amount of emissions into the air. Incorporating Dixon Eagle bellows valves will help prevent “chronic leakers,” reducing potential fines and the cost of repairs to the line.
Why Else Should You Choose Dixon Eagle Brand Bellows Valves?
Dixon Eagle is one of the oldest bellows seal brands in the United States, and many seals have been in the field for more than 20 years. All Dixon Eagle valves are manufactured in the U.S., under ISO 9001:2015 Certification. Valves used for chlorine transport by rail cars also meet the standards established by the Association of American Railroads.
Dixon offers dozens of different bellows seal options off the shelf. If your application requires a custom design, we can help with that, too. “Engineering for special high-hazard or critical applications that aren’t necessarily run-of-the-mill, those are the types of projects we specialize in,” says Fisher. “We want to be more of a partner with our customers, making sure that the product is tailored to their applications.”
Plus, with Dixon’s extensive distribution network and fast lead times, you can get your product quickly and save money on shipping.
So, if you’re looking for the best products for your hazardous or toxic materials application, Dixon would love to help. Contact one of our specialists at 713.678.4291 or visit dixonvalve.com.
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