Microcomputer-controlled Tensile Tester

The microcomputer tensile testing machine measures the deformation of materials under force through sensors, with an electronic system recording the data. It is used to test the tensile strength and elongation at break of materials such as films and adhesive tapes. In quality inspection, it helps determine whether the materials meet the required strength standards.
Selection
When selecting, consider the type and standards of the test material, confirm the maximum load capacity and accuracy. Check fixture compatibility and software usability. Pay attention to equipment stability and after-sales support. Determine whether to choose domestic or imported brands based on the budget.

Terms

Standards

Instruments

Adopt precision automatic control and data collection system to achieve full digitalization adjustment; range 1000N, force Indication Error ≤ +/- 0.5%, support a variety of test modes such as tensile compression and bending test; compact size for table operation, with overload protection and limit protection.

$ 3054.00

Adopt precision automatic control and data collection system to achieve full digitalization adjustment; with 1-400mm/min speed range and +/- 0.5% force value accuracy, support tensile compression bending and other test modes.

$ 2862.00

Utilizing a high-precision stepper motor drive and a precision ball screw transmission ensures smooth loading and accurate control. The specially designed fixture provides a secure grip without slippage, effectively eliminating the impact of irregular samples on measurements.

$ 1380.00

Adopt precision automatic control and data collection system to achieve full digitalization adjustment; with 1-400mm/min speed range and ≤ +/- 0.5% force value accuracy, support a variety of test modes such as tensile compression and bending test, real-time display data Linear dispersion.

$ 2862.00

Adopt precision automatic control and data collection system to achieve full digitalization adjustment. Measurement range 2000N, Test speed range 1-400mm/min, with 6 force value units and 3 displacement units, support a variety of test modes.

$ 3244.00

High-precision stepper motors and ball screw transmission are employed to ensure smooth and accurate loading. The single-arm host structure offers excellent rigidity, while the special fixture design effectively prevents jaw slippage, making it suitable for various mechanical tests on materials such as films and adhesive tapes.

$ 1122.00

It adopts a high-precision stepper motor and ball screw transmission to ensure smooth and accurate loading. It features a wide range of loading speeds and force measurement capabilities, with high precision in measuring and controlling load, deformation, and displacement.

$ 1380.00

Adopt precision automatic control and data collection system to achieve full digitalization adjustment; with 1-400mm/min speed range and ≤ +/- 0.5% force value Indication Error, support a variety of test modes such as tensile, compression and bending test, real-time display data Linear dispersion and automatic storage.

$ 2862.00

Maximum test force 1kN, accuracy class 0.5, test force resolution up to 500,000 yards. Microcomputer control, compatible with hundreds of fixtures, to meet a variety of international and domestic testing standards.

$ 3704.00

It employs a high-precision stepper motor and ball screw transmission to ensure smooth and accurate loading. It features a wide range of loading speeds and force measurement, high sensitivity to load, deformation, and displacement measurements, excellent coaxiality, and secure clamping without slippage.

$ 1380.00

Featuring a high-precision stepper motor and ball screw transmission, it ensures smooth and precise loading. Equipped with load, displacement, and deformation measurement systems, it displays real-time data on a large LCD screen and includes overload protection functionality.

$ 1380.00

With a speed range of 1-400mm/min and +/- 0.5% force value accuracy, four test modes and automatic Data storage are supported for resilience component testing.

$ 3667.00

The maximum test force is 2kN, the accuracy class is 0.5, and the test force resolution reaches 500,000 yards. It adopts microcomputer control, is compatible with hundreds of tooling fixtures, and supports various control modes of stress, strain and displacement.

$ 3704.00

Test method to achieve tensile compression test, Accuracy grade 1, equipped with 7-inch touch screen display tensile curve, support 50 kinds of fixtures to meet more than 1000 material testing needs.

$ 3317.00

Maximum test force 500N, accuracy class 0.5, test force resolution up to 500,000 yards. Microcomputer control, compatible with hundreds of fixtures, to meet a variety of international and domestic testing standards.

$ 3704.00

Articles

Comparison of Single-Column and Dual-Column Tensile Testing Machines in Plastic Film Testing Selection
This article introduces the differences between single-column and dual-column tensile testing machines in plastic film testing.
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.
Electronic Tensile Testing Machine Measures the Right-Angle Tear Strength of Films
This article explains how to measure the right-angle tear strength of films using an electronic tensile testing machine. During the test, a film specimen with a right-angle notch is first clamped onto the testing machine and stretched at a constant speed. The machine records the changes in force during the tearing process.
Tensile testing machine measures the bending fatigue life of flexible OLED films.
This article introduces a method for testing the bending fatigue life of flexible OLED films using a tensile testing machine. The test simulates repeated bending to evaluate the accumulation of damage in the film under cyclic stress, and monitors performance changes to determine the failure point.
Electronic universal testing machine measures film tensile strength.
This article introduces the method of measuring the tensile strength of thin films using an electronic universal testing machine. During the test, the machine applies tensile force to the film sample, records the maximum tensile force and displacement through sensors, and then calculates the tensile strength using a formula.
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This article introduces the method of measuring the static surface tension of colored paints using the platinum plate method. It explains the principle, which involves calculating the surface tension by measuring the force when the platinum plate is lifted from the liquid surface.
Adhesion Tester Pull-Off Method for Determining Adhesion Strength of Varnish
This article introduces the test method for measuring the adhesion strength of varnish using the pull-off method. It involves adhering test cylinders to the coating and substrate with adhesive, then vertically pulling them apart with an instrument to record the maximum pulling force and calculate the adhesion strength.
Electronic tensile testing machine testing the tensile strength of packaging film
This article introduces the method of testing the tensile strength of packaging films using an electronic tensile testing machine. It first explains the importance of tensile strength for packaging films, then details the testing principles, equipment composition, and the necessity of preparing samples according to standards.
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.
Adhesion tester evaluates the bonding strength between coating and substrate.
The adhesion tester is a device used to measure the bonding strength between a coating and the substrate. It applies a pulling force until the coating detaches, records the force value, and calculates the strength. Common testing methods include the pull-off method, cross-cut method, etc., each with corresponding standards.
Pull-off testing for interlayer adhesion of multilayer coating systems.
This article introduces the pull-off method for testing the interlayer adhesion of multilayer coating systems. The test involves vertically bonding a pull-off head to the coating surface and applying a pulling force until the coating separates, measuring the required force to evaluate adhesion strength.
Tensile testing machine tests the tensile strength of industrial tape.
This article explains how to use a tensile testing machine to test the tensile strength of industrial tapes. Tensile strength is a key indicator for measuring the mechanical properties of tapes, and testing must comply with international standards such as ISO and ASTM.
Tensile Testing Machine Evaluates High and Low Temperature Tensile Properties of Hot Melt Adhesive
This article introduces how to use a tensile testing machine to test the tensile properties of hot-melt adhesives at different temperatures. The performance of hot-melt adhesives varies with temperature: they may soften at high temperatures and become brittle at low temperatures.
Tensile testing machine for testing the puncture resistance of film materials.
This article introduces how to use a tensile testing machine to test the puncture resistance of film materials. Puncture resistance is a key indicator for measuring a film's ability to resist penetration by sharp objects, directly affecting the protective performance of packaging.