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What Causes Ball Valve Failure? 5 Common Issues and How to Prevent Them
What Causes Ball Valve Failure? 5 Common Issues and How to Prevent Them
2025-04-11

Ball valves are widely used industrial flow control components, commonly found in applications such as water treatment, oil and gas, chemical processing, HVAC systems, and the food and pharmaceutical industries. Thanks to their compact structure, quick shut-off capability, and excellent sealing performance, ball valves play a critical role in various fluid systems. However, even the most reliable ball valve can encounter failures after prolonged operation. When a ball valve fails, it can compromise the stability of the entire system and, in severe cases, lead to media leakage or even safety incidents. Therefore, understanding the root causes of ball valve failure and implementing effective preventive measures is essential for engineers and maintenance personnel.   1. Seal Failure Cause: Seal failure in ball valves is often caused by seat wear, debris accumulation, or aging of sealing materials. This issue is especially common in high-temperature, high-pressure, or corrosive media environments. Prevention Tips: To extend the service life of the seal, choose ball valves with PTFE or metal seats that are compatible with the process media. Regularly clean the seat area and establish a replacement schedule based on the operating conditions.   2. Corrosion or Scratches on the Ball Surface Cause: When a ball valve is used with media containing acids, alkalis, high salt content, or abrasive particles, improper material selection can lead to corrosion, pitting, or surface scratches. These issues reduce sealing performance and affect smooth operation. Prevention Tips: Select stainless steel ball valves (such as 304 or 316 grades) or special alloy ball valves based on the specific media characteristics. Additionally, install a strainer or filter to minimize solid particle intrusion and protect the valve internals.   3. Stem Breakage or Seizure Cause: The valve stem, which transmits torque to the ball, may experience metal fatigue and fracture under frequent operation or excessive torque. Seizure can also occur due to bearing wear or lack of lubrication. In some low-quality ball valves, insufficient structural design margin further increases the risk of stem failure. Prevention Tips: Use ball valves with blow-out proof stem designs to enhance operational safety. Ensure that operating torque stays within the valve’s rated limits, and apply lubricant regularly to reduce friction and wear, extending service life.   4. Improper Installation or Operation Cause: Human errors such as incorrect installation direction, loose flange connections, or frequent forceful operation are major contributors to early ball valve failure. In the case of electric or pneumatic ball valves, signal control errors can also lead to misoperation or valve jamming. Prevention Tips: Always follow the manufacturer’s installation guidelines, ensure proper alignment and secure flange connections. Install limit switches and torque protection devices to safeguard...

Can Wafer Check Valves Be Installed Vertically? Installation Best Practices and Considerations
Can Wafer Check Valves Be Installed Vertically? Installation Best Practices and Considerations
2025-03-28

In industrial pipeline systems, the wafer check valve plays a key role in preventing backflow and is widely used in various fluid control systems. It is favored by many engineers and designers for its compact, lightweight, and easy-to-install characteristics. In practical applications, many consider installing the wafer check valve vertically to accommodate different pipeline layouts and space requirements. So, can wafer check valves be installed vertically? If so, how can their performance and safety be ensured? This article will explore the feasibility of vertical installation of wafer check valves and share some installation guidelines and precautions.   1. Working Principle and Application Scope of Wafer Check Valves A wafer check valve is an automatically opening and closing valve primarily used to prevent backflow of fluids. The valve disc is pushed open when the fluid flows in the forward direction, and it closes by gravity or spring action when the fluid stops or reverses. Unlike traditional swing check valves, wafer check valves typically feature a more compact design, allowing them to be directly sandwiched between pipeline flanges, saving installation space. In typical pipeline systems, the most common installation method for wafer check valves is horizontal installation, as this configuration is the most stable and convenient for maintenance. However, in certain special installation environments, such as tight spaces or specific operating conditions, vertical installation can also be a viable option.   2. Can Wafer Check Valves Be Installed Vertically? In theory, vertical installation of a wafer check valve is feasible, but several important factors should be considered:   · Gravity Effect on the Valve Disc The design of the wafer check valve relies on the gravity of the valve disc to close the valve. In horizontal installation, the valve disc naturally falls to ensure a proper seal. However, in a vertical installation, the valve disc may not close naturally due to gravity, especially in upward flow situations. Therefore, it is crucial to ensure that the design of the valve disc and the configuration of the spring are suitable for vertical installation, allowing the valve to close effectively without external interference.   · Fluid Flow Direction The direction of fluid flow in a wafer check valve directly impacts its performance. When installed vertically, the flow direction may change, potentially leading to unstable opening or closing of the valve disc. To ensure that the valve disc closes at the right time, it is recommended to check whether the valve has a reliable anti-backflow design, ensuring it can function properly even in vertical installation.   · Installation Space and Maintenance Accessibility Vertical installation of a wafer check valve may require more space, particularly if there is a need to maintain a certain distance from other equipment in the pipeline system to allow ...

What is the Ball Valve Used For?
What is the Ball Valve Used For?
2025-03-06

A ball valve is a widely used flow control valve in industrial pipeline systems. With its simple structure, excellent sealing performance, and easy operation, it plays a crucial role across various industries. 1. Basic Functions Ball valves are rotary-type valves that control fluid flow by rotating a spherical closure element 90 degrees. Their primary functions include: (1) Shut-off and On/Off Control Provides quick opening and closing, making it suitable for pipeline systems requiring frequent operation. (2) Flow Regulation Certain specially designed ball valves allow flow adjustment to accommodate different operating conditions. (3) Bi-directional Sealing Ensures reliable sealing in both flow directions, enhancing pipeline system safety. (4) Emergency Shut-off Some ball valves are equipped with actuators for emergency shut-off, improving overall system safety.   2. Key Features Due to their unique structure and material selection, ball valves offer the following advantages: (1) Excellent Sealing Performance Utilizes soft seals (PTFE, rubber) or metal seals to ensure zero leakage. (2) High Pressure and Temperature Resistance Capable of withstanding high pressures (up to Class 2500) and extreme temperatures (some metal-seated ball valves can operate above 500°C). (3) Easy Operation Available with manual handles, gear operators, electric, or pneumatic actuators to meet various automation requirements. (4) Long Service Life Minimal friction during operation, making it suitable for frequent and long-term use.   3. Typical Applications Due to their versatility, ball valves play a critical role across various industries, including: (1) Oil & Gas Industry Used in transmission pipelines, distribution systems, and storage facilities, ball valves provide reliable control over high-pressure and high-temperature media, ensuring leak prevention and system safety. (2) Chemical & Pharmaceutical Industry Commonly employed for handling corrosive media such as acids, alkalis, and solvents. The use of corrosion-resistant materials (e.g., stainless steel, Hastelloy, PTFE lining) extends service life and enhances reliability. (3) Water Treatment & Environmental Protection In wastewater treatment, seawater desalination, and municipal water supply networks, ball valves regulate and isolate flow, ensuring stable and secure fluid transportation. (4) Power & Energy Sector Ball valves are used for precise control of steam, cooling water, and fuel flow in boiler systems, condensate recovery, and gas transmission, improving energy efficiency and operational safety. (5) Marine & Offshore Engineering Applied in offshore oil platforms and shipboard piping systems, ball valves control seawater, fuel, and ballast water while meeting stringent corrosion resistance requirements in harsh marine environments.

16 150LB Double Eccentric Butterfly Valve Twins, Body WCB, API609, Turbine
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16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

16" 150LB double eccentric butterfly valve twins are made according to API 609 standard. The valve body is made of ASTM A216 WCB. It has the structural characteristics of high performance and dual eccentricity. Two valves share one worm gear head. Its connection mode is wafer. And it has turbine operation mode.

  • Payment:

    30% when order confirmed, 70% before shipment
  • Product Origin:

    China
  • Color:

    Customization
  • Shipping Port:

    Shanghai, China
  • Lead Time:

    30~60 days Ex Works after order confirmation
  • Material:

    ASTM A216 WCB
  • Method of Operation:

    Turbine Operation
Inquiry now
Product Detail

Product Description

Type

Double Eccentric Butterfly Valve Twins

Size

16"

Pressure

150LB

Connection

Wafer

Operation

Turbine Operation

Body Material

ASTM A216 WCB

Design Norm

API 609 – Category B

Pressure & Temperature

ASME B16.34

Face to Face

API 609 – Category B

End Dimension

ASME B16.5

Test & Inspection Code

API 598

Temperature

-29 ~ 90°C

Applicable Medium

Water, Oil and Gas


Features

1. Each of butterfly valves is in high performance and double offset design and can reach zero leakage bi-directionally;

2. This kind of valve mainly uses a turbine as the driving device, and through the mechanical linkage structure, enables the butterfly valves on both sides to move synchronously.

Technical Drawing

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

Dimension Checking

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

Pressure Testing

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

Painting

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

Nameplate & Packing

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

Inspection report

16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine16" 150LB Double Eccentric Butterfly Valve Twins, Body WCB, Wafer, API609, Turbine

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Leave a message

    If you are interested in our products and want to know more details,please leave a message here,we will reply you as soon as we can.

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