Introduction

Pendulum Impact Tester is an electronic tester and supports impact energy levels of 1 J, 2 J, and 3 J as standard, with customization options up to 5 J. It operates based on a hemispherical punch that impacts and passes through the film sample at a set speed. The tester incorporates electronic measurement, and an electric release mechanism for the pendulum. Additionally, it features an for display and allows for level adjustments. Our tester is used to measure the impact toughness of plastic, rubber, metal foil, and other thin film materials.

This test equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.

Applications

Our Pendulum Impact Tester evaluates the impact resistance and toughness of plastic films, rubber sheets, metal foils, and other thin materials. It is widely used in quality control, material research, and production testing in industries such as packaging, automotive, and electronics.

Specifications

Impact Energy Standard: 1 J, 2 J, 3 J
Customizable: Up to 5 J
Resolution 0.001 J
Punch Size Փ 25.4 mm, Փ 12.7 mm
Sample Clamp Diameter Փ 60 mm, Փ 89 mm
Required Sample Size 100 × 100 mm or Փ 100 mm
Display
Dimension 580 ×380 × 580 mm

Features

Microcomputer control

Statistical data storage

Sample pneumatic clamping

Micro printer functionality

Standard and customizable punch sizes

Compact design

FAQs

1. What materials can be tested using the Pendulum Impact Tester?

Pendulum Impact Tester is designed to test the impact resistance and toughness of various thin and flexible materials. It is suitable for testing plastic films, rubber sheets, metal foils, composite membranes, and other similar materials. This makes the tester highly useful in industries such as packaging, electronics, automotive, and materials research, where evaluating the durability and mechanical strength of thin films is essential.

2. How does the Pendulum Impact Tester measure impact energy?

Pendulum Impact Tester operates by allowing a pendulum with a hemispherical punch to swing and strike the center of a clamped sample. As the pendulum breaks through or deforms the sample, the system electronically calculates the energy absorbed during the impact. The energy measurement is extremely precise, with a resolution of 0.001 J, ensuring reliable and repeatable results. The energy value gives a direct indication of the sample’s resistance to impact under controlled test conditions.

3. Does the Pendulum Impact Tester support different sample sizes and shapes?

The Pendulum Impact Tester supports testing of samples in a standard size: 100 mm × 100 mm. The clamping mechanism is designed to hold the samples securely in place, and the punch system ensures a consistent impact at the center of the sample. This flexibility allows the tester to accommodate a variety of material types and shapes, making it versatile for different laboratory testing protocols.

4. Is the Pendulum Impact Tester easy to operate for first-time users?

Absolutely! Pendulum Impact Tester is equipped with a user-friendly microcomputer control system and an screen that provides a clear, menu-driven interface. The test operation panel is intuitive and guides the user step-by-step through the test process. In addition, the automatic features such as pneumatic sample clamping and electronic pendulum release minimize manual effort and potential operator error, making it very accessible for both beginners and experienced technicians.

5. Can the Pendulum Impact Tester be used for quality control in manufacturing?

Yes, the Pendulum Impact Tester is ideal for quality control applications. Its ability to deliver fast, accurate, and repeatable results makes it suitable for routine testing on production lines. The integrated micro printer allows immediate documentation of results, and the tester can store and compare statistical data, which is essential for batch testing and compliance with quality standards in manufacturing environments.

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