Interlayer Inner Sole Peeling Strength Tester

The interlayer bottom peeling strength tester clamps both ends of the material with fixtures and separates them at a constant speed to measure the force required for interlayer peeling. It is used to detect the bonding quality of composite materials and is commonly applied in the testing of delamination strength for footwear materials and packaging materials.
Selection
When selecting, consider that the maximum testing force must cover the material's peel strength, the fixtures must be compatible with the specimen shape, and the speed control range must meet standard requirements. The equipment should have data recording capabilities and a sturdy structure to ensure test repeatability.

Terms

Standards

Instruments

Can measure 20~ 1000J/m ² Internal Bond Strength, resolution of 0.001lbf/in ², using 90 ° Impact Angle test principle, clamping force 0~ 40kg/cm ² adjustable.

$ 5026.00

The two-stage gravity overlap structure ensures accurate measurement, with a resolution of 0.001 lbf/in ², supports fully automatic release and real-time calibrating, and is suitable for internal bond strength testing of various sheet materials.

$ 5721.00

Using 7.0 inch touch screen display and hydraulic viscose sample pressing technology, the pressure is automatically adjusted, the Test accuracy reaches 0.01J/m ², the whole machine has strong rigidity to reduce vibration energy loss, and is suitable for a variety of Cardboard interlayer bonding force detection.

$ 4729.00

The equipment can test three outsoles at the same time, the folding angle is 90 ° +/- 2 °, the folding speed is adjustable from 5 to 150rpm, and the tortuous performance of the sole is evaluated by measuring the growth rate of the incision.

$ 1627.00

Measurement range 20~ 1000J/m2, resolution up to 0.01J/m2; Impact angle 90 °, can accurately test the internal bond strength, suitable for multi-layer paper quality control.

$ 4124.00

It can cut 140mmx25.4mm samples, sampling thickness ≤ 1mm, Operating temperature 20~ 40 ℃, suitable for auxiliary sampling of Internal Bond Strength test.

$ 672.00

Using pneumatic adhesive sample pressing and automatic release, the test range is 0-1000J/M ², the accuracy is 0.001J/M ², the Z-direction failure energy is measured by pendulum Impact measurement, and the structural rigidity is strong to reduce energy loss.

$ 3688.00

Impact angle of 90 °, can test 5 groups of specimens at the same time, the minimum reading value is 0.005 kg-cm, the mechatronics design is compact, and meets the requirements of many international standards.

$ 3903.00

Glass thickness and air interlayer thickness can be measured at the same time. Glass thickness range is 70mm, air interlayer range is 34mm, light and portable operation is simple.

$ 341.00

Using high-performance ARM processor and 24-bit sampling chip, Measurement range 0-1000J/m ², accuracy < 1J/m ², with automatic testing and intelligent judgment functions, equipped with micro-printer real-time output data.

$ 4479.00

Using electric hydraulic pressurization device, eliminating manual labor; Measurement range 20~ 1000J/m ², resolution up to 0.01J/m ²; equipped with touch screen and thermal printer, testing is convenient and efficient.

$ 4729.00

Impact energy 11mN, Impact device mass 75g, can measure the inner surface of the inner hole or narrow space, suitable for a variety of specimen types and surface conditions.

$ 748.00

Five sets of specimens can be tested simultaneously, supporting 0-900N compression force adjustment, with 0.005ft.lb high Accuracy grade and 90 ° Impact angle, meeting a variety of standard unit requirements.

$ 4108.00

Sampling size 25.4mm * 140mm, thickness range 0.05~ 1.2mm, parallelism of two long sides ≤ 0.015mm, to ensure High Accuracy sampling, Improve Test Reliability.

$ 664.00

The minimum test inner diaMeter is 6mm, and the maximum sample thickness is 8mm. It adopts imported special steel crimping needle and high-strength pointer assembly, which can directly display the Hardness value. Portable design is convenient for on-site use.

$ 1219.00

Articles

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.
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.