Plating Bending Tester

The coating bending tester repeatedly bends metal specimens with coatings to detect cracking or peeling of the coating. It is used to evaluate the adhesion and flexibility of coatings to substrates and is suitable for quality inspection of products such as electroplated plates and enameled wires.

Instruments

Equipped with 2 to 12mm eight diaMeter stainless steel cylindrical mandrel, in the form of hinged bending, in line with GB6742 standard, suitable for Coating bending performance testing.

$ 235.00

A bending angle is less than 45 degrees, can test 0.5~ 1.0mm Film thickness sample, flattening mechanism stroke is not less than 10mm, using crank lifting mechanism to achieve T-shaped bending test.

$ 912.00

The gear pair and crank lifting mechanism are used to achieve accurate bending, the first bending angle is less than 45 °, the flattening mechanism Travel ≥ 10mm, which can test 0.5-2 mm thickness plates and support OT to T bend test.

$ 485.00

The instrument is equipped with eight kinds of diaMeter stainless steel cylindrical mandrel, which adopts the form of hinge connection bending, which can accurately test the bending deformation of coatings under different diaMeters to ensure the test Reliability.

$ 251.00

The test bending angle is less than 45 degrees, suitable for steel plate thickness 0.5~ 1.0mm and Aluminum Panel thickness 0.5~ 2.0mm. The gear pair and crank lifting mechanism are used to achieve T-shaped bending, which is easy to operate.

$ 538.00

Can test 4 shoes at the same time, bending angle 0 °~ 90 ° adjustable, Test speed 0~ 140 times/min, with automatic return and LCD counter function.

$ 2018.00

Maximum load 100KN, suitable for bending testing of various materials, with high load-bearing capacity and Stability, to meet different testing requirements.

$ 616.00

With a bending angle of 135 degrees and a folding speed of 175 times per minute, it can apply a test load of 4.91N to 14.72N, and the automatic counting function accurately records the number of breaks, which is suitable for material durability testing.

$ 1463.00

It can measure three different angles at the same time, the angle range is adjustable from 1-92 °, the Measurement range is 0-10000mN, and it supports a variety of material tests with bending length and thickness 0.01-5 mm. It has automatic reset and self-Adjustment.

$ 2736.00

Using pure mechanical design, the coating performance is measured by conical mandrel bending test plate, the test plate size is 100mm × 180mm, the thickness is less than or equal to 0.8mm, and the operation is simple and reliable.

$ 240.00

Measurement range 0~ 500mN.m, span 5-50mm eight gear adjustable, angular velocity 0.5~ 1000 °/min adjustable, support self-calibrating and quick change Sensor, suitable for bending test of different resilience materials.

$ 2074.00

Support 0.1-1 steel plate and 0.1-2 Aluminum Panel test, can complete 0T to 1T multi-stage bending, equipped with pliers pressing device and tape adhesion inspection function, to meet the standard bending test process.

$ 782.00

With +/- 0.1% accuracy Sensor and 0.01mN resolution, it supports 1-92 ° bending angle adjustment and 0.5-50 °/sec angular speed control, with self-Adjustment and three independently adjustable test angles, suitable for 0.01-5 thickness materials.

$ 3268.00

It is suitable for low temperature bending resistance test of 32-63mm diaMeter silicon core tube. The sample needs to be kept at -20 ℃ +/- 2 ℃ for 2 hours, and there is no cracking or obvious stress blushing phenomenon after testing.

$ 2450.00

Using two-point static bending method, Measurement range covering 0~ 5000mN, indication Precision up to +/- 1%, support 0~ 90 ° bending angle adjustable, Test speed 200 °/min, suitable for materials with thickness less than 2mm.

$ 2300.00

Articles

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Application of Coating Thickness Gauges in Electroplating Thickness Detection
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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.
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