Electronic Peel Force Tester

The electronic peel force testing machine uses a motor to drive the separation of fixtures, measuring the force required to peel materials apart. It is used to test the adhesive strength of materials such as tape, labels, and films, verifying bonding reliability in quality control and production processes.
Selection
When selecting, confirm that the maximum test force matches the daily testing range, and ensure the fixtures are compatible with the sample shape. Pay attention to the adjustable range of the testing speed and the data output format, ensuring the operation interface is simple and user-friendly. Perform regular calibration to guarantee measurement accuracy.

Terms

Standards

Instruments

Precision ball screw drive and double rail structure ensure displacement accuracy of 0.001mm; support 1-500mm/min stepless speed regulation, equipped with High Accuracy Force Sensor to achieve 0.5 level accuracy measurement, with overload protection and data statistical analysis function.

$ 1590.00

Adopt stepper motor to achieve stepless speed regulation of 1~ 500mm/min, equipped with 500N force value Measurement range and +/- 1% accuracy level, with overload protection and limit protection functions, stable and reliable operation.

$ 1663.00

Using electronic constant force stepless speed regulation, Speed range 0~ 8000rpm, equipped with jacket cylinder can be chilled down water, adapt to different material viscosity, directly calculate the relationship between linear velocity and reaction rate.

$ 498.00

Using electromagnetic force equilibrated Electronic Balance and halogen radiation technology, moisture readability of 0.02%, Heating Temperature range RT + to 200 ℃, quickly complete the test in a few minutes, durable and functional.

$ 746.00

With 0.5 accuracy and 200kg capacity, it supports a variety of disbonding tests such as 180 ° and 90 ° disbonding, automatically records Linear dispersion and analyzes MAX Maximum, MIN Minimum and Average for a variety of material inspections.

$ 1645.00

Measurement accuracy of 0.5 with High Accuracy Sensor, speed range 5~ 500mm/min, support automatic Linear dispersion analysis and multi-point data collection, tensile, tear and disbonding tests.

$ 1645.00

With 0.5 levels of accuracy and a speed range of 5-500mm/min, it supports automatic drawing of disbonding Linear dispersion and calculation of interval results, and can resolve MAX Maximum, MIN Minimum and Average for a variety of material tests.

$ 1645.00

Adopt electronic constant force speed control circuit, digital direct display shaft Rotation speed, speed range 100~ 8000rpm, maximum processing viscosity 100000mPa.s, set of dispersion function and stirring function as one, adapt to different test needs.

$ 414.00

With 0.5 accuracy and 5~ 500mm/min speed adjustment range, it supports automatic drawing of disbonding Linear dispersion and calculation of interval results. It can distinguish MAX Maximum, MIN Minimum and Average, and effectively Travel up to 400mm.

$ 1645.00

The High Accuracy Sensor is used to achieve 0.5 level Measurement accuracy, supports 5~ 500mm/min speed range, and is equipped with automatic Linear dispersion analysis function, which can calculate interval results and distinguish MAX Maximum, MIN Minimum and Average.

$ 1645.00

With 0.5 accuracy and 5~ 500mm/min speed range, using High Accuracy Sensor and stepper motor control, support automatic Linear dispersion analysis and multi-interval result calculation, effective Travel up to 400mm.

$ 1645.00

High Accuracy Electromagnetic Force Sensor, Capacity 520g, readability accuracy 0.1mg, OLED display and Draft Shield static elimination design, support external calibrating and multiple unit switching.

$ 2765.00

High Accuracy Electromagnetic Force Sensor, dynamic temperature compensation technology to ensure accuracy, repeatability error +/- 2mg, standard RS232 interface can transfer data directly to Excel.

$ 456.00

High Accuracy Electromagnetic Force Sensor, repeatability error +/- 1mg, Draft Shield static elimination design, support for external calibrating and multiple weighing units for special application needs.

$ 1816.00

Electromagnetic Force Sensor, repeatability error +/- 3mg, linear error +/- 3mg, with dynamic temperature compensation and external calibrating function, reaction time is less than 3 seconds, support a variety of weighing units.

$ 1037.00

Articles

Application of Small Push-pull Force Gauge in Rapid Inspection of Adhesive Peel Strength for Mobile Phone Screens
This article introduces how to quickly test the peel strength of adhesive on phone screens using a small push-pull gauge.
Application of Tensile Testing Machine in 180-Degree Peel Strength Test for Packaging Tape
This article introduces how a tensile testing machine is used to test the 180-degree peel strength of packaging tape.
Peel strength tester measures interlayer force of composite films.
This article introduces how a peel strength tester measures the interlayer bonding force of composite films. Composite films are widely used in packaging and other fields, and their interlayer peel strength is a key indicator for evaluating durability.
Peel strength tester measures the peel force of hot melt adhesive resin.
The peel strength tester is used to measure the adhesive properties of hot melt adhesive resins, simulating the actual peeling process by recording changes in force values through constant-speed stretching.
Cross-cut tester combined with adhesion test tape for evaluating coating peel-off.
The cross-cut test, paired with adhesion test tape, is a commonly used method for evaluating coating adhesion. It involves using a cross-cut knife to score a grid pattern on the coating surface, followed by the rapid peeling of specialized tape. The adhesion level is then assessed by observing the extent of coating detachment.
Internal Bond Strength Scott Tester for evaluating interlayer bonding force of paper.
This article introduces the method of evaluating the interlayer bonding strength of paper using a Scott tester. The interlayer bonding strength affects the printing and mechanical properties of paper. During testing, the instrument peels the paper vertically through an adhesive test head, records the energy required for separation, and calculates the internal bond strength.
Key Points for Selecting Film Peel Strength Testing Machines
The film peel strength tester is used to measure the force required to peel materials such as films from a substrate, in order to evaluate their adhesion properties.
Method for Determining Peel Strength of Hot Melt Adhesives Using an Electronic Tensile Tester
This article introduces the standard method for determining the peel strength of hot melt adhesives using an electronic tensile testing machine. The test employs a 180° peel mode, where a sample coated with hot melt adhesive is clamped in the machine's fixtures and peeled at a constant speed. The peel strength is calculated based on the recorded force variations.
Application of T-peel Strength Tester in Hot Melt Adhesive Evaluation
This article introduces how the T-peel strength tester is used to evaluate the performance of hot melt adhesives. The tester simulates scenarios where materials are subjected to peel stress, measures and records the force and displacement during the peeling process, and calculates the average peel strength to assess the uniformity of adhesion.
Application of Tensile Testing Machine in Coating Peel Strength Testing of Silicon-Carbon Anode Materials
This article introduces how to use a tensile testing machine to measure the bonding strength between silicon-carbon anode material coatings and copper foil substrates in lithium-ion battery research and development. During the test, the coating is peeled off using the 180-degree peel method at a constant speed, and the force variations throughout the peeling process are recorded.
The 180-degree peel strength test for tape shows a 50% deviation in data due to misalignment of the sample.
In the 180-degree peel strength test of adhesive tape, if the sample is misaligned, the test data may drop by about half. This is because misalignment causes uneven force distribution during peeling, reducing the effective peel strength.