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Benefits of Proof Loading Verification

Proof loading is a critical test that is performed on sensors or load cells to verify their performance and accuracy under extreme conditions. Engineers may need to request proof loading verification to ensure that the sensors or other measuring devices being used in a particular application are accurate, reliable, and safe for use.

Upon request, Interface provides proof loading at the build phase of engineered-to-order load cells, as well as load pins, load shackles and tension links. By simple definition, proof loading is a safe overload rating for a sensor.

Load proofing is a special test that guarantees the sensor performs at maximum capacity before it’s released to the customer. If a manufacturer does proof loading, it will be documented in the sensors specifications that are shipped with the product. It is commonly requested for sensors that are used in lifting applications.

Additionally, quality engineers and testing professionals may request proof loading as part of quality control or compliance requirements. By ensuring that sensors and load cells are tested and validated before use, companies can ensure that they meet regulatory standards and maintain a high level of quality in their products and services.

The Proof Loading Process

By requesting proof loading, sensor users can verify the accuracy and reliability of sensors and load cells and ensure that they are functioning correctly and within their specified limits. Proof loading can also identify any issues or problems with sensors or load cells before they are put into service, allowing for repairs or replacements to be made if necessary.

Proof loading for sensors is a process of subjecting a sensor to a higher-than-normal load or stress to confirm that it can withstand that load or stress without any permanent damage or deviation from its calibration. The purpose of proof loading is to validate the accuracy and reliability of the sensor under extreme conditions, ensuring that it will perform correctly when it is in service.

During proof loading, the sensor is exposed to a controlled overload, typically between 150% to 200% of its maximum rated capacity. The sensor’s response to the load is monitored, and the output is compared to its expected behavior. If the sensor performs within acceptable limits and returns to its pre-loaded state after the load is removed, it is considered to have passed the proof load test.

When should you request proof loading for a load cell?

Proof loading for a load cell should be requested when there is a need to verify its calibration and ensure its accuracy and reliability under extreme conditions. This is particularly important when the load cell is used in safety-critical applications, such as in crane and hoist systems, industrial weighing and process control systems, and structural testing applications.

Proof loading is commonly used for sensors that are used in safety-critical applications, such as load cells used in cranes and hoists, pressure transducers used in oil and gas pipelines, and temperature sensors used in furnace applications. By performing proof loading tests, manufacturers and end-users can have greater confidence in the performance and reliability of their sensors, which can improve overall safety and efficiency.

In general, there are several situations where it is advisable to request proof loading for a load cell:

  • Before critical applications: In safety-critical applications, such as those involving lifting, handling, and transportation of heavy loads, a proof load test should be performed before the load cell is put into service to ensure that it can handle the required load without any issues.
  • After installation: It is recommended to perform a proof load test on the load cell immediately after installation to ensure that it is functioning correctly and within its specified limits.
  • After repair or maintenance: If the load cell has undergone repair or maintenance, a proof load test can be used to verify that it is still performing accurately and within its specifications.
  • After an extended period of non-use: If the load cell has not been used for an extended period, it may be necessary to perform a proof load test to ensure that it is still functioning correctly.

It is important to note that proof loading should only be performed by qualified and trained personnel using the appropriate equipment and procedures. This will ensure that the load cell is not damaged during the testing process and that it continues to perform accurately and reliably after the test is completed.

Proof loading is particularly important in safety-critical applications such as in the construction industry, transportation industry, and other industrial applications where lifting and handling heavy loads are involved. In these applications, the accuracy and reliability of sensors and load cells are crucial, as any inaccuracies or deviations from the expected behavior can result in dangerous and costly accidents.

Overall, proof loading is an essential test that engineers may need to request to ensure the safety and reliability of sensors and load cells in various industrial applications.

ADDITIONAL RESOURCES

IoT Lifting Heavy Objects

Cranes and Lifting

Recap of Use Cases for Load Pins Webinar

Tension Links 101

Aircraft Lifting Equipment App Note

 

Announcing the Launch of the Interface Pressure Compensated Downhole Load Cell

Interface is excited to announce the release of a new downhole solution for the energy industry, the Interface Pressure Compensated Downhole Load Cell (IPCD).

The IPCD is a Wheatstone bridge foil-gaged-based force measurement solution using proprietary compensation methods and designed to provide highly accurate force data in harsh environments, like those found in the oil and gas industry, while requiring limited maintenance compared to similar solutions on the market. This is a product line that is many years in the making, as we’ve offered it as a custom solution. In fact, it has been developed across multiple applications to meet the needs of the oil and gas industry.

Interface’s new IPCD product is best suited for tension head applications of wireline services, particularly useful in deviated or horizontal wells where topside measurements are no longer reliable. Many applications include conveyance, pump down, perforating, tractor, and high pressure high temperature deep offshore use.

The key benefit the IPCD provides over existing solutions, commonly referred to as “wet” load cells, is its method of compensation. Wet load cells have a hydraulic compensation mechanism that uses pistons and seals, requiring frequent maintenance. Hydraulic compensation is complex for smaller tool providers and performance was suboptimal. For the IPCD, Interface developed a proprietary technology that compensates for that pressure influence and allows for bridge isolation. This means that the IPCD is far more rugged, needing little to no repairs, and it can be used downhole without risk of damage, a first of its kind in the industry.

It provides accurate measurement of downhole tension conditions in both vertical and horizontal wells and the proprietary internal compensation actively measures only the portion of the load caused by axial force, ignoring the portion of the load caused by pressure. Since it is an inherently passive system with no active pressure measurement being made or using a separate transducer, it is a completely analog solution for reliability and temperature stability.

We also test the IPCD heavily before it leaves our doors. The oil and gas industry can be extremely volatile, so we understand that our load cells need to be at peak performance for every use. Each load cell is tested individually on force, creep, temperature and pressure.

Advantages of the new proprietary Interface Pressure Compensated Downhole Load Cell include:

  • IPCD is a standard product from Interface and available today
  • IPCD offers maintenance-free service with significant long-term payback by eliminating disassembly, downtime, calibration, and instrumentation configuration
  • Interface’s new product is a precision with unmatched performance
  • IPCD has minimal thermal and pressure error, combined with world class linearity and hysteresis
  • It has field proven reliability and was designed based on a decades of engineering and force measurement experience

To learn more about the IPCD, we recently published a white paper that goes deeper into how the unit works, the specifications of the solution, as well as providing additional information on our testing process. You can read more about the IPCD in our new technical overview, Interface Pressure Compensated Downhole Load Cell White Paper available online for download.

We also issued a press release announcing the launch of IPCD.

This new product launch is a collaborative effort involving many of our team members in engineering, production and sales.