{"id":8874,"date":"2018-09-24T13:47:57","date_gmt":"2018-09-24T10:47:57","guid":{"rendered":"https:\/\/valve.tr\/check-valves\/"},"modified":"2025-05-12T12:15:59","modified_gmt":"2025-05-12T09:15:59","slug":"check-valves","status":"publish","type":"page","link":"https:\/\/valve.tr\/en\/check-valves\/","title":{"rendered":"Check Valves"},"content":{"rendered":"[vc_row type=”in_container” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” scene_position=”center” text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”2\/3″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]\n

DIN Check Valves<\/h2>\n\n\n\n\n\n\n\n\n
Materials :<\/td>\nSteel, Stainless Steel, Bronze, Monel, Hastelloy, Duplex, Super Duplex<\/td>\n<\/tr>\n
Connection :<\/td>\nFlanged, Welded, Threaded<\/td>\n<\/tr>\n
Drive Unit :<\/td>\n<\/tr>\n
Temperature :<\/td>\n(-50 \u00b0C)-(+560 \u00b0C)<\/td>\n<\/tr>\n
Nominal Diameter :<\/td>\nDN 15 – 1200<\/td>\n<\/tr>\n
Rated Pressure:<\/td>\nPN 16 – 500<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

<\/h2>\n

ANSI Check Valves<\/h2>\n\n\n\n\n\n\n\n\n
\n

Ingredients:<\/p>\n<\/td>\n

Steel, Stainless Steel, Monel, Hastelloy, Duplex, Super Duplex<\/span><\/td>\n<\/tr>\n
\n

Connection :<\/p>\n<\/td>\n

Flanged, BW\/SW, Disli <\/span><\/td>\n<\/tr>\n
\n

Drive Unit :<\/p>\n<\/td>\n

<\/td>\n<\/tr>\n
\n

Temperature :<\/p>\n<\/td>\n

max. (+550 \u00b0C) <\/span><\/td>\n<\/tr>\n
\n

Rated Diameter:<\/p>\n<\/td>\n

2\u2033 – 36\u2033<\/span><\/td>\n<\/tr>\n
\n

Pressure Class :<\/p>\n<\/td>\n

Class 150 – 2500<\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

<\/h3>\n[\/vc_column_text][\/vc_column][vc_column column_padding=”padding-1-percent” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/3″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][\/vc_column][\/vc_row][vc_row type=”in_container” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” scene_position=”center” text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/1″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]\n

What is a Check Valve?<\/h2>\n

A check valve is a type of valve system that allows a liquid or gas to flow in only one direction. These valves are often used in systems where reverse flow must be prevented. Check valves operate automatically according to the direction of the fluid, without requiring any external intervention. When the flow direction is correct, the valve opens and allows fluid passage. But when the fluid starts to move in the opposite direction, the check valve automatically closes, thus preventing backflow. This feature is particularly important in pipelines, pumps and other fluid transportation systems. <\/p>\n

The biggest advantage of check valves is that they are self-operating. This reduces maintenance and operating costs as they do not require an external power supply or control system. It also continues to ensure the safety of the system even if the flow direction changes. The working principle of check valves is quite simple, but their correct selection and use in appropriate systems is critical for efficient performance. Otherwise, they can lead to unnecessary pressure losses or loss of function in the system. <\/p>\n

Check Valve Working Principle<\/h2>\n

Check valves work by a simple yet effective design in their internal mechanism. Usually a disk or ball is located in the valve body. This mechanism moves according to the direction of the fluid. When the fluid moves in the right direction, the pressure opens the mechanism and allows the fluid to pass through. When the direction of the fluid reverses, the mechanism closes and prevents the fluid from going backwards. This simple yet effective working principle of check valves makes them an ideal solution for any system where backflow is undesirable. <\/p>\n

However, factors such as the pressure and flow rate of the fluid are also important for check valves to operate efficiently. In high flow systems, some check valves require faster closing ability, while different designs may be preferred in low flow systems. For this reason, each type of check valve is designed and optimized for different application needs. The proper selection of these mechanisms plays a critical role in the safety and efficiency of the system. <\/p>\n

Check Valve Types<\/h2>\n

Check valves are manufactured in various types according to different operating conditions. Each type may be more suitable for a specific application. One of the most common types of check valve is the swing check valve. In this type, the valve mechanism moves on a hinge and the disk opens when the flow direction is correct. Swing check valves are generally used in large diameter pipelines and work effectively in low pressure systems. Ball check valves, on the other hand, are generally preferred for small diameter pipelines. In this type of check valve, a ball mechanism prevents the backflow of fluid. <\/p>\n

Another common type is the spring-loaded check valve. In this type, the internal mechanism is supported by a spring and if the direction of the fluid reverses, the spring ensures closure. Spring-loaded check valves are highly effective against sudden pressure changes and are widely used in sensitive systems such as compressors. In addition, dual plate check valves have a more compact and lightweight design, making them an efficient option in high flow systems. Finally, diaphragm check valves are used in systems that require precise flow control thanks to flexible diaphragms, especially preferred in the food and chemical industry. <\/p>\n

Check Valve Usage Areas<\/h2>\n

Check valves have a wide range of uses. Most commonly, they are used in pump systems. Since the flow should only move in one direction in pump systems, check valves prevent reverse flow and ensure efficient operation of the system. Check valves, which are also frequently preferred in water and wastewater plants, are especially used to ensure that water flows only in a certain direction and to prevent backflow. Check valves are also of great importance in high-pressure systems such as the oil and gas industry. By preventing backflow, they increase the safety of the system and prevent various hazards. <\/p>\n

Check valves also play an important role in ventilation and HVAC (Heating, Ventilation and Air Conditioning) systems. In these systems, check valves are used to ensure that the air and gas flow is smooth and in the desired direction. In addition, check valves are also preferred in the chemical and food industry to provide flow control under hygienic conditions. In such industries, check valves provide a great benefit by both protecting equipment and ensuring safety. These areas of use reveal how critical a component check valves are in industrial applications. <\/p>\n

Advantages and Disadvantages of Check Valves<\/h2>\n

One of the biggest advantages of check valves is that they work automatically. This means that they react only according to the direction of the fluid, without requiring any outside intervention. This feature increases the safety of the system while at the same time reducing operating and maintenance costs. Furthermore, by preventing backflow, check valves ensure efficient operation of systems and prevent damage to equipment. Check valves are also highly durable and can operate smoothly for a long time with regular maintenance. Therefore, they are one of the most reliable solutions for large diameter pipelines and high pressure systems. <\/p>\n

However, check valves also have some disadvantages. Some models may experience pressure loss along the fluid path, which can negatively affect the efficiency of the system. Also, not every type of check valve is suitable for every application. In particular, an incorrectly selected check valve may damage the system or fail to provide the desired performance. Furthermore, in some cases, the mechanisms of check valves may wear out over time, resulting in the need for more frequent maintenance. All these factors indicate that care should be taken when selecting check valves. <\/p>\n

Check Valve Selection Criteria<\/h2>\n

The choice of check valve is of great importance for the establishment of a correct system. While a good choice increases system efficiency, a wrong choice can lead to many negative consequences. First of all, the type, flow rate, pressure and temperature of the fluid in the pipeline should be taken into consideration when selecting a check valve. The viscosity or chemical composition of the fluid can also affect the material type of the check valve to be used. For example, for acidic or alkaline fluids, durable materials such as stainless steel should be preferred. Likewise, in a system operating at high temperature, materials with high thermal resistance should be used. <\/p>\n

The size of check valves is also very important. Incorrect size selection may cause pressure losses and inefficient operation. The capacity of the check valves should be determined according to the volume of flow in the pipeline. Also, some types of check valves have the ability to close quickly, while others close more slowly, allowing the fluid to change direction smoothly. This varies depending on the type and requirements of the system. As a result, check valve selection is a process that requires technical and engineering knowledge and careful consideration. <\/p>\n

\n

Maintenance and Repair of Check Valves<\/h2>\n

Although check valves are reliable devices that operate automatically, they may require maintenance and repair after a certain period of time. Especially in systems that operate continuously or are exposed to heavy use, regular maintenance of check valves is essential to maintain efficiency and prevent failures. The first step in the maintenance of check valves is cleaning the valve mechanism. Over time, deposits can build up on the valve body due to fluid content or environmental factors. These deposits can prevent the mechanism from functioning properly and cause wear over time. <\/p>\n

During maintenance, valve components should be checked for wear. Especially for swing check valves, the condition of the connections between the hinge mechanism and the disk should be carefully examined. In addition, the tension of the springs in spring check valves and the proper functioning of the ball in ball check valves should be checked. If a malfunction is detected, these parts must be replaced. Nevertheless, when the overall structure of check valves is sound, it is possible for them to work efficiently for a long time with proper maintenance. <\/p>\n

Industrial Importance of Check Valves<\/h2>\n

Check valves are critical in industrial plants and energy production systems. Especially in power plants, petrochemical plants, water treatment plants and pharmaceutical production facilities, safe and efficient operation of check valves ensures long life of the systems. In industrial plants, any backflow can lead to undesirable consequences. For example, in a power plant, backflow can lead to pump failures or damage to equipment. Check valves prevent such hazards and ensure safety in the system. <\/p>\n

Check valves are also indispensable in projects such as large pipelines and water transmission. The movement of water in an undesired direction can cause serious problems in storage facilities. Check valves guarantee the efficient operation of the system by ensuring unidirectional flow of water. Apart from this, check valves also play a major role in the oil and gas sector. In these sectors, backflows can lead to serious explosions or environmental disasters, so check valves play a critical role in ensuring safety. <\/p>\n

The Role of Check Valves in High Pressure Systems<\/h2>\n

Check valves fulfill a particularly important function in high-pressure systems. In such systems, reverse flow can cause equipment to overheat or explode, resulting in major damage. In high-pressure pipelines, check valves interrupt the direction of flow, preventing backflow and keeping the pressure in the system under control. Also, in some high-pressure systems, check valves can act as a kind of safety valve to protect against overpressure. This is particularly important in power generation plants or gas transmission lines. <\/p>\n

Check valves used in high pressure systems must be made of durable and robust materials. Since such systems usually work with denser and faster flowing fluids, check valves need to react quickly and have high durability. Stainless steel or special alloys are commonly preferred materials for manufacturing such check valves. In addition, check valves in high-pressure systems should also be maintained more frequently and carefully monitored. Otherwise, wear and leaks can occur over time, which negatively affects the efficiency of the system. [\/vc_column_text][\/vc_column][\/vc_row][vc_row type=”full_width_background” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” bg_color=”#f7f7f7″ scene_position=”center” top_padding=”100″ bottom_padding=”100″ text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/1″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][vc_column_text]\n

Frequently Asked Questions<\/h2>\n[\/vc_column_text][toggles style=”minimal”][toggle color=”Default” title=”What is a check valve?”][vc_column_text]The valve used to prevent backflow in a piping system is known as a check valve. It is also known as a check valve or NRV.[\/vc_column_text][\/toggle][toggle color=”Default” title=”What are the types of check valves?”][vc_column_text]Winged type<\/p>\n

. Swing Check Valve<\/p>\n

. Tilting Check Valve<\/p>\n

Lift IPI<\/p>\n

. Piston Type<\/p>\n

. Bulk Type<\/p>\n

Dual Plate Tip<\/p>\n

Classified as Operated Check Valve
[\/vc_column_text][\/toggle][toggle color=”Default” title=”What are the application areas of check valves?”][vc_column_text]Check valves should be used in all sectors and applications[\/vc_column_text][\/toggle][toggle color=”Default” title=”What parts does a check valve consist of?”][vc_column_text]It consists of body, cover, disk or ball, hinge pin and seat ring. You can see the parts of the valve in the picture below.[\/vc_column_text][\/toggle][\/toggles][\/vc_column][\/vc_row][vc_row type=”in_container” full_screen_row_position=”middle” column_margin=”default” column_direction=”default” column_direction_tablet=”default” column_direction_phone=”default” scene_position=”center” text_color=”dark” text_align=”left” row_border_radius=”none” row_border_radius_applies=”bg” overlay_strength=”0.3″ gradient_direction=”left_to_right” shape_divider_position=”bottom” bg_image_animation=”none”][vc_column column_padding=”no-extra-padding” column_padding_tablet=”inherit” column_padding_phone=”inherit” column_padding_position=”all” column_element_spacing=”default” background_color_opacity=”1″ background_hover_color_opacity=”1″ column_shadow=”none” column_border_radius=”none” column_link_target=”_self” gradient_direction=”left_to_right” overlay_strength=”0.3″ width=”1\/1″ tablet_width_inherit=”default” tablet_text_alignment=”default” phone_text_alignment=”default” bg_image_animation=”none” border_type=”simple” column_border_width=”none” column_border_style=”solid”][\/vc_column][\/vc_row]\n","protected":false},"excerpt":{"rendered":"

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