Split-type thickness Gauge

The split-type thickness gauge emits ultrasonic or electromagnetic waves through a probe, receives the reflected signals from the material, and calculates the thickness. It is used to measure the thickness of coatings, films, or plates and is widely applied in on-site inspections in the paint and plastic industries.

Instruments

With split Probe design, equipped with F and N Probe, Measurement range 0~ 1500 microns, resolution 0.1 microns, automatic identification of substrate type, support for more than 60 readings per minute, Protection Rating IP65.

$ 1476.00

Using magnetic Induction and eddy Current dual principle, Measurement range 0-1250μm, support split probe flexible replacement, with automatic identification of matrix material function, minimum measurable surface radius 1.5mm.

$ 419.00

Using split design, equipped with F and N Probe, Measurement range 0~ 1250μm, error +/- 3%, support automatic identification of matrix material and RS-232C interface communication, stable and reliable operation.

$ 401.00

Split structure can be freely replaced Probe, Measurement range 0-1500 μm, accuracy +/- 1%, IP65 Protection Rating, support 1000 reading storage, suitable for a variety of ferrous metal substrate environment.

$ 1022.00

The split structure is equipped with a dedicated thick coating Probe, Measurement range of 0~ 13000 μm, accuracy +/- 3%, IP65 Protection Rating and high-speed measurement capability of more than 60 readings per minute.

$ 1213.00

Dedicated to Coating thickness Gauge calibrating, ensure accurate thickness measurement, suitable for F type equipment, improve Reliability.

$ 88.00

Split Probe interchangeable, high wear resistant carbide Probe service life of more than 500,000 times. Measurement accuracy of +/- (2% + 1μm), can accurately measure platings within 10 microns, and has a variety of calibrating and statistical functions.

$ 269.00

Split design is equipped with LCD display, Measurement range 1~ 250mm, Speed of sound 5920m/s, Coupling status prompt and Zero Adjustment, Support upper and lower tolerance setting and automatic alarm.

$ 227.00

Using split Probe design, Probe can be plugged and interchanged, Measurement accuracy of +/- 2% H + 1 μm, high wear-resistant carbide Probe service life of more than 500,000 times, support a variety of Calibration methods and data statistics.

$ 472.00

With split design, Probe can be plugged and interchanged, and the service life of high wear-resistant cemented carbide Probe exceeds 500,000 times. Measurement range 0-5mm, accuracy up to +/- (2% + 1μm), can accurately measure thin coatings within 10 microns.

$ 511.00

With split design, Probe can be plugged and interchanged, and the service life of high wear-resistant cemented carbide Probe is more than 500,000 times. Measurement range 0-3000 μm, accuracy up to +/- (2% + 1 μm), and accurate measurement of thin coatings within 10 μm.

$ 485.00

Measurement principle using magnetic method, thickness range 0-3000μm, error +/- 3%, with split Probe structure, support single and continuous Measurement mode, equipped with RS-232C interface.

$ 461.00

Using split Probe design, Measurement range 1.2~ 225mm, support anti-measurement Speed of sound function, Data storage and low voltage indication, suitable for a variety of material thickness measurement.

$ 175.00

Split design is easy to carry, Measurement range 1.0-250 mm, Speed of sound range 1000-9999m/s, with automatic alarm and zero point Adjustment, anti-vibration Impact.

$ 215.00

Can be used with A type or C type Shore DuroMeter, fixed load weight mass 0.75 +/- 0.05kg, hardness Gauge clamping Rod connection size M7x0.5mm, improve hardness testing accuracy and Stability.

$ 180.00

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.
Mechanical thickness gauge for measuring film thickness uniformity.
The mechanical thickness gauge assesses the uniformity of film thickness through contact measurement. During measurement, the probe contacts the sample under standard pressure, converting displacement into a thickness reading.
Selection of Coating Thickness Gauges Using Magnetic and Eddy Current Methods on Different Substrates
This article introduces two main methods for coating thickness gauges: the magnetic method and the eddy current method. When choosing a method, the key is to determine it based on the electromagnetic properties of the substrate.
Application of Coating Thickness Gauges in Electroplating Thickness Detection
Coating thickness gauges are used to measure the thickness of electroplated layers, primarily employing the electromagnetic induction method for measuring non-magnetic coatings on magnetic substrates, or the eddy current method for measuring insulating coatings on non-magnetic metal substrates.
Coulometric thickness gauge measures the sealing quality of anodic oxide films.
This article introduces a method for assessing the sealing quality of anodic oxide films using a coulometric thickness tester. The sealing quality affects the corrosion resistance and wear resistance of the oxide film. Based on electrochemical principles, the coulometric thickness tester evaluates the sealing effectiveness by measuring the electric charge required to dissolve the oxide film, providing objective and repeatable results.
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.
Eddy current thickness gauge measures metal coatings on non-conductive substrates.
The eddy current thickness gauge utilizes the principle of electromagnetic induction, generating an alternating magnetic field through the probe coil to induce eddy currents in the metal coating, thereby measuring thickness based on changes in coil impedance.
Coulometric Method Coating Thickness Gauge for Non-Destructive Measurement of Precious Metal Coatings
The coulometric coating thickness gauge measures the thickness by calculating the amount of electricity required to dissolve the precious metal coating through the principle of electrolytic dissolution. This method is non-destructive to the overall sample, only forming tiny electrolytic spots.
Comparison of Dual-Principle Instruments: Magnetic Induction vs. Eddy Current for Coating Thickness Measurement
This article compares the principles of two coating thickness gauges. The choice of method depends on the substrate material: magnetic induction is used for magnetic metals, while eddy current is applied for non-magnetic metals.
Application of Electrolytic Thickness Tester in Quality Control of Precision Electroplating Layers
The electrolytic thickness gauge measures coating thickness through the principle of electrochemical dissolution, calculating based on Faraday's law, offering high accuracy and independence from calibration.
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.
Eddy current thickness gauge detects coatings on non-ferrous metals.
The eddy current thickness gauge operates on the principle of electromagnetic induction, generating an alternating magnetic field through the probe coil, which induces eddy currents on the surface of non-ferrous metal substrates.
Magnetic thickness gauge measures the thickness of coatings on steel surfaces.
Magnetic thickness gauges are used to measure the thickness of non-magnetic coatings on ferromagnetic substrates such as steel, based on the principles of magnetic induction or changes in magnetic attraction. Prior to use, calibration should be performed according to relevant standards, and attention should be paid to factors such as substrate characteristics, workpiece shape, and surface conditions that may affect the measurements.
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.
Standard Operating Procedure for Zero Calibration and Substrate Calibration of Coating Thickness Gauges
This article introduces two key calibration methods for coating thickness gauges: zero-point calibration and substrate calibration. During operation, it is important to ensure that the probe is perpendicular, pressure is applied evenly, and regular calibration and recording are maintained. These steps effectively enhance measurement accuracy and meet industry standard requirements.