Coating Thickness Measuring Instruments YT8300

This Coating Thickness Measuring Instruments YT8300 Instrument are Certified with
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1 Years Warranty (Additional support period of 3 years)

Standard version YT8300 for split dual-use coating thickness gauge


YT8300 is a standard split dual-use coating thickness gauge made by 3nh Company. It is a domestic coating thickness gauge with independent intellectual property right. It can quickly and accurately detect the coating thickness on metal substrate. YT8300 coating thickness measuring instrument fully conforms to ISO 2178, ISO 2360, GB/t 4956, GB/t 4957, ASTM B499 and other standards of magnetic method and Eddy current method testing principle.

Professional version YT8300 split dual-use coating thickness gauge has the advantages of accurate measurement, large measuring range, multi-calibration mode, multi-measurement mode, convenient positioning and powerful function, widely used in manufacturing, metal processing, chemical industry and other surface engineering testing fields, coating surface treatment industry is the basic equipment.


The Fe-based probe can detect the thickness of non-magnetic coatings on various magnetic substrates (such as steel) , such as paint, powder, porcelain, chromium, copper, zinc, etc..


NFe based probes detect the thickness of all insulating coatings, such as paint, powder, porcelain, etc. , applied to non-magnetic metal substrates such as aluminum, copper, brass, stainless steel, etc. .

 

Characteristics of standard Version YT8300

 

1、Large range3000μm

Maximum measurement thickness 3000 μm

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2、Support Zero Point, single point, five points

Support a variety of calibration methods, testing more convenient, to meet the needs of higher test accuracy

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3、IPS pure color screen, smooth operation, large storage capacity

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4、Measurement mode rich

Coating thickness tester YT8300 has basic mode, quality control mode, continuous mode, statistical mode for choice, to adapt to more test scenarios

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5、Non-destructive testing, automatic identification of substrate type coating thickness Tester

YT8300 can automatically identify magnetic, non-magnetic substrate, non-destructive testing does not harm samples, enhance the detection speed。

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6、The radius of convex plane and concave plane

Precisely measured at 5mm and 10mm respectively

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7、High sensitive probe

Independently developed high sensitive probe response speed, testing more accurate

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8、Support Bluetooth, more mobile APP extensions

Can be instant through Bluetooth measurement data transfer to the hands of the APP, the corresponding data editing and processing, output test report

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FAQs About  Coating Thickness Gauge

You should not attempt measuring on surfaces that are dirty, oily, or rough, as these surfaces will not provide an accurate reading. Always calibrate the paint thickness tester and make sure to select the proper probe for the substrate as well. Proper execution will bring about consistency as well as trustworthiness to the readings.


A coating thickness gauge measures coating thickness. It measures coating thickness using three different principles: magnetic induction, eddy current, or ultrasonic. Depending on the coating type and the coating's substrate material, the appropriate principle is selected. For industrial and laboratory use, most of these units deliver accurate, non-invasive readings.


Once ignited, the gauge will select the correct substrate mode. The probe should be placed flat on the coated surface. The thickness of the coating will show on the screen. Measurements should be taken on different areas of the surface to ensure accuracy.


The automotive, aerospace, metal finishing, marine, construction, and manufacturing industries utilize and rely on coating thickness gauges the most. They ensure that coatings are within the expected criteria for functionality, safety, and durability.


A coating thickness gauge measures film layers by identifying shifts in magnetic flux, eddy currents, or ultrasonic echoes as they penetrate the coating. The gauge calculates thickness based on the magnitude of these signals. This universally accepted approach results in quick, reliable, and non-invasive measurements. 

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