The High Temperature Ultrasonic Thickness Gauge Probe GT‑12‑2 is a professional‑grade, 5 MHz ultrasonic transducer designed for accurate thickness measurement of metal and high‑temperature materials in industrial environments.
Engineered for durability and superior performance, this UT probe transducer excels in challenging conditions where heat resistance, measurement reliability, and repeatability are critical.
With a temperature tolerance of −20 to 350 °C, this high‑temperature thickness gauge probe delivers consistent results in applications that conventional probes cannot handle.
When paired with compatible ultrasonic thickness gauges, such as models in the GT series, the GT‑12‑2 becomes one of the most dependable tools for non‑destructive evaluation (NDE), quality control, and surface integrity assessments.
Why Choose the GT‑12‑2 High Temperature Ultrasonic Thickness Probe?
Unmatched Heat Resistance
Industrial assets and systems often operate under extreme temperature conditions. Whether you’re inspecting boiler tubes, pressure vessels, pipelines, storage tanks, heat exchangers, or automotive and aerospace components, you need a transducer that can withstand harsh thermal environments.
The GT‑12‑2 UT transducer has a temperature range from −20 °C up to 350 °C (662 °F), making it ideal for:
- High‑temperature process inspection
- Elevated surface measurement
- Inspection of materials immediately after heat treatment
- In‑place measurements during plant maintenance
This robust heat resistance ensures stable, repeatable thickness measurements even when the test surface is too hot for standard probes.
Accurate Ultrasonic Thickness Testing with 5 MHz Frequency
The 5 MHz operating frequency of the GT‑12‑2 ultrasonic thickness gauge probe balances penetration depth and resolution, providing precise measurement results across a broad range of industrial materials.
High frequency enables the GT‑12‑2 to deliver:
- Accurate readings on thin to moderately thick materials
- Excellent signal quality with reduced noise
- Improved definition of echo responses
At 5 MHz, this transducer is versatile enough for use in metals, plastics, composites, and other engineering materials where ultrasonic thickness measurement is crucial.
Technical Specifications at a Glance
Below is a comprehensive specification table designed to help you quickly understand the core capabilities of the GT‑12‑2 probe:
| Specification | Details |
| Model Number | GT‑12‑2 |
| Transducer Type | High Temperature UT Probe Transducer |
| Measurement Range | 4 – 80 mm |
| Operating Frequency | 5 MHz |
| Contact / Probe Diameter | 14 mm (nominal) |
| Temperature Range | −20 °C to 350 °C |
| Application | Ultrasonic thickness measurement |
| Compatible With | UT thickness gauge devices |
| Usage Environment | Industrial, heat‑resistant inspection |
Core Features and Industrial Benefits
1. Wide Measurement Range (4 – 80 mm)
The GT‑12‑2 high‑temperature ultrasonic thickness gauge offers a measurement range from 4 mm up to 80 mm. This range supports a broad spectrum of applications, from thin sheet inspections to mid‑range structural components.
Whether measuring thin plates or thicker structural sections, the GT‑12‑2 provides:
- Reliable readings across thin and thick materials
- Flexible usage across industries and material types
- High measurement consistency
This broad range reduces the need for multiple probes, saving you time and investment.
2. Compact Contact Diameter and Ergonomic Design
With a contact diameter of approximately 14 mm, the GT‑12‑2 probe balances:
- Enhanced surface contact
- Improved coupling efficiency
- Comfortable handling during repetitive measurements
The compact probe size makes it suitable for:
- Hard‑to‑reach surfaces
- Lightweight handheld operation
- Rapid point‑to‑point assessment
An ergonomic design increases operator comfort and improves throughput in routine inspection tasks.
3. Durable Construction for Industrial Environments
Industrial thickness measurement applications demand probes that resist:
- Thermal stress
- Mechanical vibration
- Surface contaminants
- Repeated use
The GT‑12‑2 high temperature UT transducer is built with rugged components that resist heat and wear, ensuring dependable performance even under:
- Shipyard environments
- Heavy fabrication facilities
- Power plant maintenance
- Petrochemical inspections
This robust construction increases service life while reducing downtime and replacement costs.
4. Superior Signal Response and Echo Clarity
Accurate ultrasonic thickness measurement depends on clean echo patterns and precise signal interpretation. The GT‑12‑2 thickness probe delivers:
- Strong echo returns
- Clear signal waveforms
- Minimal noise interference
This superior output enables clear differentiation between material interfaces, increasing confidence in your readings and reducing false readings or misinterpretations.
5. Compatible with Multiple Thickness Gauge Units
The GT‑12‑2 high temperature ultrasonic thickness gauge probe is designed to work with a wide range of ultrasonic thickness gauge instruments. When integrated into your existing UT system, it expands the functionality of your measurement device, allowing you to:
- Upgrade to high‑temperature capabilities
- Perform more demanding inspections without investing in new gauge units
- Extend the value of your current equipment
This compatibility makes the GT‑12‑2 a cost‑effective upgrade for industrial inspection teams.
Typical Industrial Applications
The GT‑12‑2 ultrasonic thickness gauge probe is engineered for sectors that demand robust and accurate thickness measurement in high‑temperature environments:
Power Generation
Used for inspecting:
- Boiler tubes
- Heat exchangers
- Superheater coils
- Pipe walls in steam lines
In power plants, where surfaces routinely exceed 200 °C, this probe maintains accurate readings without calibration drift.
Petrochemical and Refineries
For piping inspection, vessel integrity assessment, and corrosion monitoring, the high‑temperature UT probe provides:
- Fatigue crack evaluation
- Wall loss detection
- Pre‑shutdown inspection coverage
Inspectors rely on this probe to deliver consistent data in heat‑intensive operations.
Marine and Offshore
Offshore platforms and ship hulls often operate in environments where:
- Heat build‑up occurs near engines
- Corrosion monitoring is required
- Inspection must be rapid and accurate
This probe supports routine maintenance and condition monitoring with high reliability.
Aerospace and Automotive
High precision, heat tolerance, and repeatable readings allow use in:
- Heat‑treated components
- Engine parts
- Welded structures
These industries benefit from ultrasonic thickness measurement that maintains accuracy on complex geometries and hot surfaces.
Installation and Setup Guidelines
To achieve optimal measurement results with your GT‑12‑2 high temperature UT probe transducer:
Always use a suitable coupling gel to ensure acoustic contact.
Allow the probe to stabilize at temperature before recording readings.
Use consistent surface preparation to reduce noise.
Validate calibration using a known reference standard.
Following these practices improves accuracy and ensures consistent data quality.
Maintenance and Care Instructions
This high temperature ultrasonic thickness gauge probe is built for durability, but proper care extends its service life:
Routine Care
- Clean after each use with a soft cloth.
- Avoid dropping or striking the probe surface.
- Protect the cable from sharp bends.
Thermal Handling
- Avoid sudden temperature shock.
- Allow the probe to cool gradually after extreme heat exposure.
- Do not exceed the specified temperature limit.
Storage
- Store in a dry, temperature‑controlled environment.
- Use original packaging or protective case for transport.
Common Troubleshooting Tips
| Issue | Solution |
| Unstable readings | Check coupling gel, surface preparation, and probe contact |
| Weak echo | Confirm calibration and probe alignment |
| Excessive noise | Clean surface, use correct couplant, re‑calibrate |
| Overheating probe | Allow materials to cool below max temperature before use |
These simple troubleshooting steps help maintain measurement integrity.
Frequently Asked Questions
What materials can the GT‑12‑2 ultrasonic thickness probe measure?
The GT‑12‑2 is suitable for metals, plastics, composites, and other engineering materials that can be measured using ultrasonic thickness gauge technology. It performs especially well on steels and alloys used in high‑temperature industrial applications.
Can this probe measure materials hotter than 350 °C?
No. The GT‑12‑2 probe is rated up to 350 °C maximum surface temperature. Surfaces hotter than this may damage the transducer and compromise accuracy.
How do I attach the GT‑12‑2 probe to my thickness gauge?
Connect the GT‑12‑2 UT transducer to any compatible ultrasonic thickness gauge with the appropriate connector. Follow your thickness gauge manufacturer’s instructions for proper electronics interface and calibration.
What is the difference between this high temperature probe and a standard probe?
Standard ultrasonic probes typically handle temperatures up to 60 °C – 80 °C. The GT‑12‑2 probe is designed to withstand surfaces up to 350 °C, making it suitable for hot process environments where ordinary probes cannot operate safely.
Does the GT‑12‑2 probe require calibration?
Like all UT probes, regular calibration is recommended. Use calibration blocks that match the material and thickness range for your application to ensure accurate results.
What is the recommended couplant for this probe?
High‑temperature couplants are recommended for hot surfaces. These gels maintain acoustic conductivity at elevated temperatures and improve contact between the probe and test surface.
Is this probe compatible with every ultrasonic thickness gauge?
Compatibility depends on the gauge’s connector type and frequency support. The GT‑12‑2 probe is compatible with most industry‑standard thickness gauges that accept 5 MHz transducers. Check your gauge specifications.
Can I use this probe for corrosion monitoring?
Yes, the GT‑12‑2’s accurate thickness measurement capability makes it suitable for corrosion rate tracking and wall‑loss monitoring in high‑temperature systems.











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