Strip(High Pressure ) - Corrosion Coupon
Price 1000.0 INR/ Unit
Strip(High Pressure ) - Corrosion Coupon Specification
- Resolution
- 0.01 mm
- Accuracy
- 0.01 mm (with micrometer measurement)
- Measuring Range
- 0-5 mm (corrosion depth)
- Gas Pressure
- Up to 5000 psi
- Power Supply
- Not Required (Passive device)
- Specimen Size
- 75 mm x 20 mm x 3 mm (standard, customizable)
- Mounting Type
- Threaded holder for insertion in process line
- Max Height
- 75 mm
- Application
- Corrosion monitoring in pipelines, vessels, and refineries
- Display Type
- None (physical inspection)
- Equipment Type
- High Pressure Corrosion Coupon Strip
- Features
- High pressure resistant, material grade marking, customizable size
- Humidity
- 0-100% RH (environmental)
- Automation Grade
- Manual
- Frequency
- Based on user retrieval schedule
- Number of Specimens
- 1 per coupon
- Response Time
- N/A (Depends on test duration in process)
- Interface Type
- Physical mounting/threaded
- Port Size
- 1/2 inch NPT (customizable)
- Test Range
- Corrosion loss measurement 0-5 mm (material loss)
- Hardness
- Dependent on coupon material (e.g., 304 SS, CS, 316L)
- Temperature
- -20C to 200C
- Usage
- Corrosion evaluation in harsh/pressurized environments
- Capacity
- Designed for high pressure service
- Machine Weight
- 350 grams
- Test Speed
- N/A (Passive corrosion measurement)
- Test Width
- 20 mm
- Control Mode
- Manual insertion/removal
- Material Type
- Carbon Steel/304 SS/316L SS/alloy as per requirement
- Finish
- Surface ground/polished
- Installation Method
- Threaded coupon holder; fits pressure fitting
- Shape
- Rectangular strip
- Packaging
- Individual sealed polybag or custom packing
- Compliance Standards
- ASTM G1, NACE TM0497
- Traceability
- Unique serial and material batch number labeling
- Replacement Interval
- 3-12 months typical (application dependent)
- Surface Preparation
- Pre-cleaned and pre-weighed
- Corrosion Monitoring Method
- Weight loss measurement after exposure
Strip(High Pressure ) - Corrosion Coupon Trade Information
- Minimum Order Quantity
- 100 Units
- Delivery Time
- 15 Days
About Strip(High Pressure ) - Corrosion Coupon
Mett-Bio Metallurgical Testing and Analysis is an independent R&D division with ISO 17025:2017 (NABL) accreditation, located in Ahmedabad, India. is involved in corrosion testing and failure analysis since 2013.
We are glad to announce Corrosion Test Coupons, an inexpensive online monitoring tool that will allow you to properly monitor corrosion within your systems. The mile per year corrosion rate of an exposed coupon can be used to easily determine the materials life.
Mett-Bio can help you manufacture coupons in any shape, size, and material (ferrous, non-ferrous, and elastomeric). Depending on the requirements, a suitable marking can also be stencilled on the coupons. Typical coupon shapes include flat strip coupons, disc coupons, and cylinder coupons. Mett-Bio provides a variety of coupon holders and can also develop and manufacture custom holders to meet specific requirements.
Additionally, Mett-Bio offers corrosion inhibitor bags which are best suitable corrosion resistant bags for the storage of ferrous and non-ferrous coupons..
Engineered for High Pressure Environments
This corrosion coupon strip is specifically designed to withstand operating pressures up to 5000 psi, making it ideal for use in the harshest pressurized systems. The precision-machined rectangular shape and customizable material options ensure compatibility and accurate insights in a wide variety of corrosive environments.
Accurate and Traceable Corrosion Measurement
Each coupon is carefully pre-cleaned, pre-weighed, and labeled with a unique serial and material batch number, supporting thorough laboratory analysis and record-keeping. After exposure, corrosion is quantified by measuring weight loss, delivering reliable data to evaluate material performance and predict system integrity.
Compliant and Easy to Use
Manufactured in adherence to ASTM G1 and NACE TM0497 standards, the coupon is simple to install using its threaded holder-no power supply is necessary. Routine manual replacement enables ongoing monitoring, supporting maintenance and risk mitigation strategies in industrial processes.
FAQ's of Strip(High Pressure ) - Corrosion Coupon:
Q: How is the corrosion coupon strip installed in pressure systems?
A: The corrosion coupon strip is installed using a threaded coupon holder that fits standard 1/2 inch NPT ports. This facilitates secure mounting within process lines, allowing straightforward manual insertion and removal for exposure and analysis.Q: What materials are available for the coupon strips, and how do I select the right one?
A: Coupon strips are available in carbon steel, 304 SS, 316L SS, or other alloys as specified. Material selection depends on the process environment and the types of corrosion anticipated, ensuring representational and meaningful results for your specific application.Q: When should I replace the corrosion coupon?
A: Replacement intervals typically range from 3 to 12 months, depending on application severity and monitoring requirements. Coupons should be retrieved, measured, and replaced according to the frequency outlined in your maintenance plan or by process conditions.Q: Where can these coupons be used for effective corrosion monitoring?
A: These coupons are suitable for corrosion monitoring in pipelines, pressure vessels, and refinery systems-particularly in harsh or high-pressure environments where traditional monitoring methods may be less reliable or more intrusive.Q: What is the process for evaluating corrosion using this coupon?
A: After the coupon is exposed within the process for a predetermined period, it is retrieved, cleaned, and weighed to determine material loss. Corrosion depth is then measured, allowing for quantitative assessment of corrosive activity in the environment.Q: How does using these coupons benefit my corrosion management strategy?
A: Utilizing these high-pressure corrosion coupons provides accurate, traceable data on material degradation, enabling proactive maintenance, optimizing material selection, and reducing the risk of unexpected equipment failure in critical process systems.



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