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Graphene Helium Barrier Testing by Pressure Difference Measurement

Graphene Helium Barrier Testing by Pressure Difference Measurement

50000 USD ($)/Set

Product Details:

  • Power Supply AC 220V, 50 Hz
  • Mounting Type Benchtop
  • Port Size 1/4 inch NPT
  • Equipment Type Graphene Helium Barrier Tester
  • Number of Specimens 1-3
  • Automation Grade Automatic
  • Resolution 0.01 mbar
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Graphene Helium Barrier Testing by Pressure Difference Measurement Price And Quantity

  • 50000 USD ($)/Set
  • 50000.00 - 100000.00 USD ($)/Set
  • 1 Set

Graphene Helium Barrier Testing by Pressure Difference Measurement Product Specifications

  • 0-1 MPa (adjustable)
  • Helium barrier test measurement
  • Digital LCD
  • 10-50 mm diameter
  • Barrier property measurement of graphene films and membranes
  • 220 V
  • 10C to 40C
  • Max 250 mm
  • 2 sec
  • Automatic/Manual selectable
  • Approx. 40 kg
  • 50 Hz
  • 0.01 to 100 sccm
  • USB/Ethernet
  • 0-1000 mbar
  • High sensitivity, leak detection, auto data logging
  • User selectable, 0.1-20 mm/min
  • 30-70% RH
  • 5 L
  • 1-3
  • Automatic
  • 0.01 mbar
  • 0.5% F.S.
  • 400 mm
  • Benchtop
  • 1/4 inch NPT
  • AC 220V, 50 Hz
  • 50 mm
  • Graphene Helium Barrier Tester

Product Description

Product Features

  • Gas transmission rate, solubility coefficient, diffusion coefficient and permeability coefficient of the specimen could be obtained at one operation
  • 3 distinct or equivalent specimens could be tested individually with independent test results at one operation
  • Wide range and high precision temperature and humidity control to meet various test conditions
  • The instrument comes with two test modes: proportional mode and standard mode
  • Test range could be extended based on user requirements to test the materials with high permeability
  • Test results could be easily obtained even at extreme condition by data fitting function, which could work at any temperature
  • The instrument could be used to test poisonous, inflammable, and explosive gases (customization required)
  • The instrument is controlled by computer and test process is automatic
  • Reference film for fast calibration to ensure accurate and universal test data
  • Standard RS232 port for convenient data transfer
  • Supports LystemTM Lab Data Sharing System for uniform management of test results and test reports

Principle

The pre-conditioned specimen is mounted in the gas diffusion cell as to form a sealed barrier between two chambers. The lower-pressure chamber is firstly evacuated, followed by the evacuation of the entire cell. A flow of gas is thereafter introduced into the evacuated higher-pressure chamber and a constant pressure difference is generated between two chambers. The gas permeates through the specimen from the higher pressure side into the lower side. The gas permeability and other barrier properties of the specimen can be obtained by monitoring the pressure changes in the lower chamber

Standards

This test instrument conforms to the following standards:
ISO 15105-1, ISO 2556, GB/T 1038-2000, ASTM D1434, JIS K7126-1, YBB 00082003

Applications

This test instrument is applicable to the determination of gas permeability of:

Basic Applications
  • Films
    Including plastic films, plastic composite films, paper-plastic composite films, coextruded films, aluminized films, aluminum foils, aluminum foil composite films and many others
  • Sheeting
    Including engineering plastics, rubber and building materials, e.g. PP, PVC and PVDC
Extended Applications
  • Various Gases
    Test the permeability of various types of gases, e.g. O2, CO2, N2, Air and He
  • Inflammable, Explosive Gases
    Test the permeability of inflammable and explosive gases
  • Biodegradable Films
    Test gas permeability of various sorts of biodegradable films, e.g. starch-based biodegradable bags
  • Materials for Aerospace Usage
    This instrument can test the Helium permeability of airship gas bags
  • Paper and Paper Board
    Test gas permeability of paper and paper-plastic composite materials, e.g. aluminized paper for cigarette packages, Tetra Pak sheeting, paper bowls for instant noodles and disposable paper cups
  • Paint Films
    Test gas permeability of substrates coated paint films
  • Glass Fiber Cloth and Paper
    Including glass fiber cloth and paper materials, e.g. Teflon paint cloth, Teflon welding cloth and Teflon silicon rubber cloth
  • Soft Tube Materials for Cosmetics
    Including various types of cosmetic tubes, aluminum-plastic tubes and toothpaste tubes
  • Rubber Sheeting
    Including various sorts of rubber sheeting, e.g. car tires

Technical Specifications

Specifications Film Test
Test Range 0.0550,000 cm3/m224h0.1MPa (standard volume)
At least 500,000 cm3/m224h0.1MPa (extended volume)
Number of Specimens 3 (with independent test results)
Vacuum Resolution 0.1 Pa
Vacuum Degree of Test Chamber <20 Pa
Temperature 5C 95C
Accuracy 0.1C (standard)
Humidity 0%RH, 5%RHi95%RH
(automatic humidification function under 1040 can be customized)
Accuracy 1%RH
Specimen Size I97 mm
Test Area 38.48 cm2
Test Gas O2, N2 and CO2 (outside of supply scope)
Test Pressure 10kpa200kpa
Gas Supply Pressure 0.4 MPa 0.6 MPa
Port Size I6 mm PU Tubing
Instrument Dimension 760 mm (L) x 575 mm (W) x 450 mm (H)
Power Supply 220VAC 50Hz / 120VAC 60Hz
Net Weight 88 kg

Configurations

Standard Configurations
Instrument, Constant Temperature Control Device, Professional Software, Round Sample Cutter, Vacuum Grease, Fast Quantitative Filter Paper and Vacuum Pump(Imported)
Optional Parts
Blades for Sample Cutter, Vacuum Grease, Vacuum Pump Oil, Fast Quantitative Filter Paper
Note
1. The gas supply port of the instrument is I6 mm PU tubing;
2. Customers will need to prepare for gas supply and distilled water.


High Sensitivity & Automation

Leveraging advanced pressure difference measurement principles with a high precision sensor, this tester delivers reliable results with a sensitivity to helium leakage below 1x109 mbarl/s. Automatic calibration and user-selectable test speeds facilitate robust and repeatable results, reducing operator intervention and ensuring optimum workflow efficiency.


Intuitive Operation & Robust Design

Designed for ease-of-use, the touch-friendly digital LCD, easy specimen mounting for 1-3 samples, and auto data logging simplify the testing process. Its sturdy anodized aluminum chamber and compliance with RoHS ensure durability and environmental safety, while compact benchtop installation streamlines laboratory integration.


Comprehensive Data Handling & Safety

Data output capabilities include USB and Ethernet support, enabling direct export to Excel or CSV formats for further analysis. Integrated audible and visual alarms promptly notify users of leaks or faults, enhancing the reliability and safety of testing operations. Automated calibration and selectable control modes adapt to varying user requirements.

FAQ's of Graphene Helium Barrier Testing by Pressure Difference Measurement:


Q: How does the Graphene Helium Barrier Tester measure barrier properties?

A: The tester utilizes a high precision differential pressure sensor to measure the pressure difference across a specimen under controlled helium gas flow. This manometric principle detects even minute helium leaks, making it ideal for evaluating the barrier properties of graphene films.

Q: What types of specimens and sizes can this equipment test?

A: This instrument accommodates 1 to 3 specimens simultaneously, with diameters ranging from 10 to 50 mm. The chamber is designed for versatility in testing various forms of graphene films and membranes within this size range.

Q: When should calibration be performed, and how is it managed?

A: Calibration is managed automatically by the embedded software, ensuring continuous accuracy without manual intervention. Routine calibration occurs as part of startup and at scheduled maintenance intervals, as guided by the software prompts.

Q: Where is the data from tests stored, and in which formats can it be exported?

A: Test data is logged automatically and can be output via USB or Ethernet interfaces. Users can export records in CSV or Excel formats, allowing easy integration with laboratory information management systems or further statistical analysis.

Q: What is the process for detecting a leak or fault during testing?

A: The tester includes both audible and visual alarms to alert users instantly to any leaks or equipment faults identified during measurement. This immediate notification reduces the risk of erroneous results and allows for prompt corrective action.

Q: How does using this equipment benefit my graphene barrier testing workflow?

A: Benefits include high sensitivity to helium detection, rapid and user-selectable test speeds, automated calibration, robust data management, and real-time safety monitoring-all of which streamline operation and bolster confidence in test results.

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