ULTRASONIC TESTING SERVICES
Ultrasonic testing services in madhya-pradesh (UT) is a family of non-destructive testing techniques based on the propagation of ultrasonic waves in the object or material tested. In most common UT applications, very short ultrasonic pulse-waves with center frequencies ranging from 0.1-15 MHz, and occasionally up to 50 MHz, are transmitted into materials to detect internal flaws or to characterize materials. A common example is ultrasonic thickness measurement, which tests the thickness of the test object, for example, to monitor pipe work corrosion.
Ultrasonic testing is often performed on steel and other metals and alloys, though it can also be used on concrete, wood and composites, albeit with less resolution. It is used in many industries including steel and aluminum construction, metallurgy, manufacturing, aerospace, automotive and other transportation sectors.
In ultrasonic testing, an ultrasound transducer connected to a diagnostic machine is passed over the object being inspected. The transducer is typically separated from the test object by a couplant (such as oil) or by water, as in immersion testing. However, when ultrasonic testing is conducted with an Electromagnetic Acoustic Transducer (EMAT) the use of couplant is not required.
There are two methods of receiving the ultrasound waveform: reflection and attenuation. In reflection (or pulse-echo) mode, the transducer performs both the sending and the receiving of the pulsed waves as the "sound" is reflected back to the device. Reflected ultrasound comes from an interface, such as the back wall of the object or from an imperfection within the object. The diagnostic machine displays these results in the form of a signal with an amplitude representing the intensity of the reflection and the distance, representing the arrival time of the reflection. In attenuation (or through-transmission) mode, a transmitter sends ultrasound through one surface, and a separate receiver detects the amount that has reached it on another surface after traveling through the medium.
Imperfections or other conditions in the space between the transmitter and receiver reduce the amount of sound transmitted, thus revealing their presence. Using the couplant increases the efficiency of the process by reducing the losses in the ultrasonic wave energy due to separation between the surfaces.
Non Destructive Testing
Ndt Services
Ultrasonic Testing
Magnetic Particle Testing
Dye Penetrant Testing
Radiographic Testing
Eddy Current Testing
Vibration Analysis
PAUT - TOFD
Ultrasonic Thickness Gauging Testing
Helium leak detection Services
RFET / NFET / PECT Testing
Internal Rotary Inspection system (IRIS)
Acoustic Pulse Reflectometry (APR)
Positive Material Identification Testing
Magnetic flux leakage (MFL)
Acoustic emission Testing
Flouresent Leak Detection
Long range ultrasonic testing - LRUT
Thermography Inspection Services
Leak Testing
TKY Joints Ultrasonic Testing
AWS D1.1 Structural steel ultrasonic Testing
CONCRETE FOR BRIDGES, DAMS, BUILDINGS, SUBWAYS, TUNNELS ETC..
Ultrasonic testing is often performed on steel and other metals and alloys, though it can also be used on concrete, wood and composites, albeit with less resolution. It is used in many industries including steel and aluminum construction, metallurgy, manufacturing, aerospace, automotive and other transportation sectors.
In ultrasonic testing, an ultrasound transducer connected to a diagnostic machine is passed over the object being inspected. The transducer is typically separated from the test object by a couplant (such as oil) or by water, as in immersion testing. However, when ultrasonic testing is conducted with an Electromagnetic Acoustic Transducer (EMAT) the use of couplant is not required.
There are two methods of receiving the ultrasound waveform: reflection and attenuation. In reflection (or pulse-echo) mode, the transducer performs both the sending and the receiving of the pulsed waves as the "sound" is reflected back to the device. Reflected ultrasound comes from an interface, such as the back wall of the object or from an imperfection within the object. The diagnostic machine displays these results in the form of a signal with an amplitude representing the intensity of the reflection and the distance, representing the arrival time of the reflection. In attenuation (or through-transmission) mode, a transmitter sends ultrasound through one surface, and a separate receiver detects the amount that has reached it on another surface after traveling through the medium.
Imperfections or other conditions in the space between the transmitter and receiver reduce the amount of sound transmitted, thus revealing their presence. Using the couplant increases the efficiency of the process by reducing the losses in the ultrasonic wave energy due to separation between the surfaces.
NDT TESTING SERVICES (NON DESTRUCTIVE TESTING SERVICES)
NDT CAPABILITIES FOR MECHANICAL AND CIVIL
- Ultrasonic Inspection
- Time of Flight Diffraction (TOFD) and Phased Array UT
- Magnetic Particle Testing
- Dye Penetrant Testing
- Radiographic Testing
- Eddy Current Testing
- Weld ability Study
- Visual Inspection and Field Services
CIVIL NDT TESTING - NON-DESTRUCTIVE TESTING SERVICES
- Ultrasonic Pulse Velocity Testing
- Rebound Hammer Testing
- Rebar Locator
- Depth of concrete
- Half Cell Potential Testing
- Carbonation Testing
- Pile Integrity Testing
- Visual Inspection and Field Services
CIVIL NDT - CONCRETE TESTING SERVICES
CONCRETE FOR BRIDGES, DAMS, BUILDINGS, SUBWAYS, TUNNELS ETC..
- 1. Ultrasonic Pulse Velocity Testing
- 2. Rebound Hammer Testing
- 3. Rebar Locator
- 4. Depth of concrete
- 5. Half Cell Potential Testing
- 6. Carbonation Testing
- 7. Pile Integrity Testing
- 8. Visual Inspection and Field Services
- 9. In-Situ Compressive Strength (design strength, and existing structures)
- 1. Pile Testing Systems
- 2. Structural Monitoring Systems
- 3. Asphalt Testing Systems
- 4. Pavement Testing
- 5. Rock and Soil Laboratory Test Systems
- 6. Non-Destructive Tests for Concrete
- 7. Geotechnical & Vibration Monitoring Systems
- 8. Pavement Condition Monitoring
- 9. Concrete and Cement Lab Systems
- Laboratory Tests on Construction Materials as per Standards.
- 1. Cement
- 2. Aggregate
- 3. Bricks
- 4. Blocks
- 5. Tension test on rebars
- 6. Chemical test on Rebars
- 7. Water Analysis
- 8. Cube test
- 9. Accelerated cube test (ACT)
- 10. Rapid Chloride test (RCPT)
- 11. Concrete Mix Design
- 12. Fly ash
- 13. Slag and Silica fume
- 14. Self compacting concrete
- 15. Temperature controlled concrete
- 1. Civil NDT Investigation
- 2. Concrete Investigation
- 3. coating Thickness Measurement on Concrete Structures
- 4. Compressive Strength Testing
- 5. Concrete Mix Design
- 6. Bitumen Mix Design
- 7. Core extraction Testing
- 8. Core Sampling Testing
- 9. Concrete Core Testing
- 10. Concrete Cube Testing
- 11. Chemical Analysis
- 12. Electrical Resistivity Testing
- 13. Ground Penetrating Radar Survey
- 14. Sieve Analysis
- 15. Ultrasonic Low Frequency Testing
- 16. UPV Testing
- 17. Vibration Analysis of Building
- 18. Leak Testing
- 19. CT Scan on Conctete
- 20. Element Analysis on Concrete
- 21. Impact Echo Testing
- 22. Linear Polarization Testing
- 23. Load Testing
- 24. Permeability Testing
- 25. petrography of concrete
- 26. Pullout Testing
- 27. Cut and Pullout Testing (CPO Test)
- 28. Impulse Response Test
- 29. Impact Echo Test
- 30. Ground Penetrating Radar (GPR)
- 31. Crack Depth Measurement
- 1. Reinforcement Location by Ground Penetrating Radar (GPR)
- 2. Cover Assessment
- 3. Half Cell Potential Tests
- 4. Resistivity Tests
- 5. Corrosion Rate Assessment
- 6. Carbonation Test
- 1. Bond Test
- 2. Anchor / Rebar Pull-out Strength
- 3. Chemical Tests
CONSTRUCTION MATERIALS TESTING EQUIPMENTS:
LAB TESTING - CONCRETE AND CONCRETING MATERIALS
CIVIL NDT AND CONCRETE - TESTING SERVICES
Reinforcement Location and Corrosion Assessments
Repair Quality Assessment
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