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.
Accurate Helium Permeability Testing for GrapheneThe analyzer allows rapid and reliable evaluation of helium transmission rates through advanced materials such as graphene. Precision micrometer adjustments, customizable specimen holders (3-50 mm), and automatic control ensure adaptability to diverse sample types. The digital LCD offers real-time, high-resolution readings for a variety of test conditions from 0.01 MPa to 0.5 MPa gas pressure.
Advanced Safety and Compliance FeaturesSafety is guaranteed with integrated leak protection and overpressure relief. Every test is monitored under controlled environments, keeping noise levels below 45 dB(A). Compliance with global standards (ASTM D1434, ISO 15105-1) makes it suitable for QC and research labs demanding rigorous performance and documentation.
Seamless Data Management and ConnectivityStore up to 5000 measurements in internal memory and export data via RS232, USB, or Ethernet (Modbus protocol). The semi-automatic analyzer supports automated pressure adjustment and data logging, facilitating traceability and analysis through Windows-compatible software.
FAQ's of Testing Helium Permeability of Graphene with Pressure Difference Method:
Q: How does the helium permeability analyzer operate for testing graphene samples?
A: The analyzer uses the pressure difference method, where helium gas is introduced into a precision stainless steel chamber containing the graphene specimen. Pressure changes caused by helium permeating through the material are detected using a highly sensitive leak detector, providing accurate permeability measurements with a dual-point calibration process.
Q: What advantages does this instrument provide for laboratory and R&D settings?
A: This analyzer offers semi-automatic operations, fast response time (1 second), multi-specimen testing (up to 3 simultaneously), and advanced data logging. The system's bench-top design, microprocessor control, and touch interface make it accessible and efficient for researchers and quality control teams.
Q: When should I calibrate the helium permeability analyzer?
A: Calibration is recommended at regular intervals or before conducting critical tests, using the built-in dual-point calibration function with certified standards. This ensures that all permeability measurements remain highly accurate (2% of reading).
Q: Where can this analyzer be effectively deployed?
A: The instrument is best suited for laboratory environments, research institutions, and quality assurance departments that focus on material testing, especially those dealing with advanced films like graphene or gas barrier membranes.
Q: What is the process for setting up a test?
A: Start by mounting your sample with the appropriate holder (3-50 mm diameter). Select the desired test parameters on the digital LCD interface, adjust pressure and stroke (0-100 mm), and initiate the test. The analyzer will control the pressure automatically and log data internally for up to 5000 measurements.
Q: How is data managed and transferred for further analysis?
A: Measurement data is stored internally and can be accessed or exported via RS232, USB, or optional Ethernet connections using Modbus protocol. The device is compatible with Windows-based software, supporting detailed analysis and reporting.
Q: What are the key benefits of using this analyzer for graphene testing?
A: Primary benefits include precise, reproducible helium permeability data, adjustable test settings, robust safety features, compliance with international standards, and straightforward integration into laboratory workflows due to automatic controls and extensive connectivity options.