Spring-energized seals are critical components in aviation, space, and defense design. It’s the sealing solution that balances friction and sealing effectiveness so your equipment meets performance standards and increases uptime.
Archive for category: Bal Seal
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Designing clinical analyzers that deliver consistent, long-term service, efficiency, and accuracy is one tough job. But choosing the right seal can make it a lot easier. That’s why we’ve prepared this short presentation for you. It examines the relationship between seal selection and the performance of hematology, urinalysis, and other analyzer types, and it...
The Bal Seal® spring-energized seal allows for precise control of frictional forces, resulting in less wear, less leakage, and more reliable operation of hematology, urinalysis, and other clinical analyzers.
The Bal Seal® spring-energized seal provides superior sealing performance in a range of pressures, temperatures, and media, helping you meet equipment service life requirements of 10 years and above. Call or email us to learn how a performance-boosting Bal Seal can elevate your new or existing clinical analyzer design.
Our Bal Seal® spring-energized seals provide superior sealing performance in a range of pressures, temperatures, and media, for clinical analyzers. Download our application bulletin to learn more.
Powerpoint: Designing The Better Seal For Industrial Robotics
Bal Seal, Industrial, Robotics, SealingDesigning a robot that delivers consistent, long-term service and accuracy in demanding industrial environments is one tough job. But choosing the right seal can make it a lot easier. That’s why we’ve prepared this short presentation for you. It examines the relationship between seal choice and robot performance, and it addresses important design criteria,...
Providing superior protection against leakage and contamination in arms, drives, end effectors, and other robot applications, the low-friction Bal Seal® also eliminates stick-slip and promotes consistent, accurate movement. A proven solution for mechanical connecting, electrical conducting, and EMI/RFI shielding challenges, the Bal Spring® reduces system complexity while improving functionality.
Designing a valve that performs consistently in the cryogenic temperatures, high pressures, and thermal cycling of LNG is one tough job. But choosing the right seal can make it a lot easier. This presentation examines the relationship between seal choice and LNG valve performance, and it addresses important design criteria, such as material selection,...
The top 2 reasons for failure in LNG valves are low temperatures and high pressures. So how can you defend your designs against them? This infographic will show you. It identifies the unique challenges of sealing in cryogenic valves, and reveals important seal selection criteria that will help you capture more valve performance and...
In valves used to manage cryogenic LNG, typical seals can shrink and extrude, leading to costly, often catastrophic leakage. But the Bal Seal® spring-energized seal isn’t typical. It’s uniquely designed to resist shrinkage and cold flow, preventing leaks and providing extended service life in temperatures to -320 °F (-196 °C) and pressures to 750+...