Ultrasonic Flaw Detection Simulator

The simulated ultrasonic flaw detector generates high-frequency sound waves through a piezoelectric wafer, which are transmitted into the material. When encountering defects, the waves reflect as echoes, which are amplified and displayed as waveforms on an oscilloscope tube. It is used to detect internal defects in materials, such as cracks and pores, and is commonly applied in metal welding and casting quality inspection.

Instruments

With ten independent flaw detection channels, the gain range is 120dB, the frequency band is 0.4~ 20.0MHz, and it supports automatic generation of DAC Linear dispersion and 500 data storage for efficient defect identification.

$ 1897.00

With 130dB high gain and Automatic calibration function, support 100 independent flaw detection channels and 1000 waveform storage, Scanning range 0-10000mm, to meet the needs of a variety of material flaw detection.

$ 1587.00

With 16 flaw detection channels and 0.5~ 20MHz Frequency range, it supports Automatic calibration probes and generates DAC Linear dispersion. High Sampling rate and low noise design meet a variety of operating conditions inspection needs.

$ 1172.00

With DAC Linear dispersion automatic generation function, transmission Frequency up to 1000Hz, support 6 Meters detection range and 10 independent flaw detection channels, real-time dynamic video recording and automatic measurement crazing depth.

$ 2139.00

With 100 flaw detection channels and 300 graphics storage capacity, support three probe modes and automatically generate DAC Linear dispersion, waterproof and dustproof design to adapt to harsh environments, Operating temperature range -27~ 70 ℃.

$ 2946.00

Scanning range 0-6000mm, 100 independent flaw detection channels, support Automatic calibration and defect echo positioning, with high-brightness color display and three-proof design, adapt to various complex working environments.

$ 1816.00

Scanning range 0-10000mm, working time 8 hours, waterproof and dustproof function, support 100 flaw detection channels and three probe modes, can automatically generate DAC Linear dispersion and store 300 inspection data.

$ 2623.00

With 15 independent flaw detection channels and Automatic calibration function, the near-field blind area is small to meet the thin-walled tube detection, the working Frequency is 0.4MHz~ 15MHz, the Continuous Operating Time is more than 8 hours, and the waterproof, oil-proof and dust-proof design is supported.

$ 1640.00

Equipped with 10 independent flaw detection channels and 110dB gain range, supports DAC Linear dispersion automatic generation and 500 data storage, adopts 5.5-inch EL flat screen display, weighs only 1.6kg and is easy to carry, and can work in -20 ℃~ 50 ℃ environment.

$ 4027.00

Scanning range 0-10000mm, working time 8 hours, waterproof and dustproof function, support 100 flaw detection channels and three probe modes, can automatically generate DAC Linear dispersion and store 300 A-shaped graphics.

$ 3268.00

Using 100M sps sampling speed and 0.25~ 20MHz operating frequency, real-time display of defect location and equivalent value, support for a variety of probe types and automatic gain adjustment, improve detection accuracy.

$ 1695.00

2000Hz repeability Frequency and 640 * 480 Display resolution, support unlimited video playback function, Automatic calibration of Probe paraMeters to improve detection accuracy, suitable for all kinds of workpiece defect identification.

$ 1114.00

The 400MHz main frequency processor is used to realize intelligent analysis, the detection range is 0~ 15000mm, and it has the ability to find extremely small defects. It supports USB2.0 high-speed data transmission and a variety of probe types.

$ 1329.00

With 0-6000mm Scanning range and 0.5-10 MHz Frequency, it can work continuously for more than 10 hours with low power design, supports full Chinese menu and a variety of Probe types, which is convenient for on-site rapid detection.

$ 1655.00

Detection range 0-1000mm, dynamic range is greater than 36dB, with Automatic calibration and gate alarm function, support for a variety of working modes of straight oblique probes, compact and portable for field operations.

$ 3268.00

Articles

Ultrasonic Thickness Gauge Selection: Technical Considerations for Probe Configuration and Measurement Modes
This article primarily introduces the technical factors to consider when selecting an ultrasonic thickness gauge. In terms of probe configuration, the frequency affects both resolution and penetration depth, while crystal size determines adaptability to curvature and surface conditions. Dual-element probes offer a smaller dead zone compared to single-element probes, and delay-line probes are suitable for thin-wall and high-temperature applications.
Ultrasonic thickness gauge for detecting thick coatings and composite coatings.
Ultrasonic thickness gauges measure coating thickness using the principle of ultrasonic pulse reflection, calculating the result based on the propagation time of sound waves in the material and the speed of sound. When detecting thick coatings and composite coatings, challenges such as acoustic attenuation of the material, unknown sound speed, and signal recognition at multi-layer interfaces must be addressed.
Ultrasonic Thickness Gauge Measures the Thickness of Flexible Packaging Materials
This article introduces the principles, technical points, and operational procedures for measuring the thickness of flexible packaging materials using an ultrasonic thickness gauge. It is based on the principle of ultrasonic pulse reflection, which calculates thickness by measuring the propagation time of sound waves through the material.
The principle of measuring dry film thickness with a coating thickness gauge
Coating thickness gauges measure dry film thickness through non-destructive methods, with commonly used principles including electromagnetic induction, eddy current, and ultrasonic methods.
To determine if an ultrasonic cleaner cleans effectively, first understand the two key parameters: frequency and power.
This article mainly discusses how to achieve thorough cleaning with an ultrasonic cleaner, emphasizing that the key factors are frequency and power. The frequency determines the size and penetrating ability of the bubbles generated during cleaning, while the power provides the necessary energy for the cleaning process.