Introduction
Pouch Compression Tester has an adjustable test range of 10 to 250 kg for applied pressure. It functions by testing the compressive strength of a sample through pressurization or depressurization of the cylinder. This tester is designed for ease of use, featuring a compact and aesthetically pleasing structure. The test stroke is adjustable from 0 to 150 mm, while the resolution is 0.001 kg, ensuring high precision. Our tester is ideal for packaging industries that require precise pressure testing.
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 Pouch Compression Tester is used in the packaging industry to assess the pressure resistance and durability of packaging bags. It helps manufacturers ensure that their packaging materials can withstand compression forces during storage and transportation.
Specifications
| Test Range | 10 to 25 kg |
| Test Stoke | 0 to 150 mm |
| Resolution | 0.001 kg |
| Number of Test Disks | 1 |
| Intake Pressure | 0 to 0.8 MPa |
| Power Supply | 220 V, 50 Hz |
| Working Area Dimension | 400 × 500 mm |
| Overall Dimension | 480 × 580 × 650 mm |
Features
Advanced sensors
Pneumatic control
Printing functionality via micro printer
User-friendly operation
Desktop design
FAQs
1. What is the purpose of the Pouch Compression Tester?
Pouch Compression Tester is specifically designed for testing the compressive strength and pressure resistance of packaging materials, particularly for pouches/bags used in the packaging industry. The tester is essential for manufacturers to assess the durability of packaging materials to ensure they can withstand compression forces during storage and transportation. This tester helps verify the packaging's ability to maintain its integrity under various conditions and pressure, which is critical in ensuring the safety and quality of the products inside.
2. How does the Pouch Compression Tester work?
Pouch Compression Tester operates by applying controlled pressure to a sample pouch through a pressurization or depressurization process within the cylinder. The pressure is applied gradually and can be adjusted between 10 and 250 kg. The tester uses advanced sensors and pneumatic control to regulate the pressure and ensure accurate measurements. The test stroke, or the movement of the compression mechanism, is adjustable from 0 to 150 mm.
3. Can the Pouch Compression Tester be used for different types of packaging materials?
Yes, our Pouch Compression Tester is designed to test various types of packaging materials, especially pouches made from different materials like paper, plastic, or foil. The adjustable test range and precision allow it to accommodate different packaging specifications, making it a versatile tool for manufacturers in the packaging industry. It ensures that the packaging materials used for different products can endure the compressive forces they may encounter during transportation and storage.
4. What kind of industries or applications would benefit from using the Pouch Compression Tester?
The Pouch Compression Tester is primarily used in the packaging industry, particularly in testing the durability and pressure resistance of packaging pouches. Industries such as food packaging, pharmaceuticals, consumer goods, and any sector that requires sturdy packaging for products will benefit from using this tester. It helps manufacturers ensure that their packaging materials can endure compression forces without compromising the quality or safety of the products inside. It is also useful for research and development departments looking for innovative packaging solutions to improve material performance.
5. How does the printing functionality work in the Pouch Compression Tester?
Pouch Compression Tester comes with an integrated micro printer that allows the user to print out the results of each test. This feature is particularly useful for documenting test data and maintaining records for quality control or analysis. The test results can include the applied pressure, compression stroke, and other relevant parameters that may need to be reviewed or stored for later reference. The printer makes it easy to generate hard copies of the results, which can be filed or used for further evaluation of the packaging materials being tested.
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