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7inch Color Touch Screen Helium Leak Detector With Leak Detection Rate 5*10-13 Pa·m3/s

Categories Helium Leak Detector
Brand Name: Wayeal
Model Number: SFJ-231
Place of Origin: Anhui, China
Certification: CE
MOQ: 1 Unit
Price: Negotiate
Packaging Details: Wooden Case
Delivery Time: 35 days
Payment Terms: T/T, VISA
Supply Ability: 200 Units/Month
Mini Leak Detection Rate(Pa.m3/s)/Vaccum Mode: 5*10-13 Pa·m3/s
I/O Input output interface: 8 Inputs, 8 Outputs
Mini Leak Detection Rate(Pa.m3/s)/Sniffer Mode: 2.5*10-9 Pa.m3/s
Language: Chines/English
User Interface: 7inch Color Touch Screen
Ion Source: 2pcs, Iridium Coated Yttrium Oxide, Automatic Switching
Communication Interface: RS232/485, LAN
Operating temperature: 0~40°C
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7inch Color Touch Screen Helium Leak Detector With Leak Detection Rate 5*10-13 Pa·m3/s

Overview of Helium Leak Detector

The helium mass spectrometer leak detector (HMSLD) utilizes helium as a tracer gas due to its unique properties:

Small atomic size: Helium can penetrate even the smallest leaks.

Inert nature: Helium is chemically stable and non-reactive, ensuring it doesn't damage the components during testing.

Low natural abundance: Helium is rare in the atmosphere (~5 ppm), so background interference is minimal, allowing for highly sensitive detection.

The instrument works by detecting helium gas escaping through leaks in a test object. It uses a mass spectrometer to identify helium ions, which are separated and measured based on their mass-to-charge ratio.


Technical Specifications of Helium Leak Detector

7inch Color Touch Screen Helium Leak Detector with Leak Detection Rate 5*10-13 Pa·m3/s

Product NameHelium Leak Detector
Diamension645*678*965mm
Operating temperature0~40°C
Detectable Quality2, 3, 4 (H2, He3, He4)
User Interface7inch Color Touch Screen
Detection MethodHelium Leak Detection
Mini Leak Detection Rate(Pa.m3/s)/Vaccum Mode5*10-13 Pa·m3/s
Communication InterfaceRS232/485, USB*2
Max Allowable Leak Detection Pressure (Pa)1500
Ion Source2pcs, Iridium Coated Yttrium Oxide, Automatic Switching
Main FeaturesMass Spectrometer Leak Detector, Helium mass spectrometer Leak Detector, helium leak testing
Mini Leak Detection Rate(Pa.m3/s)/Sniffer Mode5*10-9 Pa·m3/s
Start Time2min
Leak Detection PortDN25KF
PowerAC220V, 50Hz/60Hz
LanguageChinese/English

Application of Helium Mass Spectrometer Leak Detectors in the Lithium Battery Industry

Helium mass spectrometer leak detectors are highly sensitive instruments widely used in industries where leak detection is critical, including the lithium battery industry. Lithium-ion batteries are extensively used in electric vehicles, consumer electronics, and renewable energy storage systems. Ensuring the hermetic sealing and leak-tightness of lithium battery components is essential for safety, performance, and longevity. Helium mass spectrometer leak detection plays a key role in achieving these requirements.


1. Leak Testing of Battery Cells

  • Lithium-ion battery cells must be hermetically sealed to prevent the ingress of air and moisture, which can lead to chemical reactions, degradation, and safety hazards (e.g., thermal runaway or explosions).
  • Helium leak detectors are used during the manufacturing process to test the seal integrity of battery cells. The cells are pressurized with helium, and any escaping helium is detected by the mass spectrometer, identifying leaks with high precision.

2. Leak Testing of Battery Packs and Modules

  • A battery pack consists of multiple cells enclosed in a protective casing. The casing must be leak-tight to protect the cells from environmental exposure (e.g., water or dust ingress).
  1. Helium leak detection ensures the enclosure's integrity by testing for leaks in the seams, joints, or connectors of the pack.

3. Electrolyte Filling Systems

  • During the manufacturing process, lithium-ion battery cells are filled with a liquid electrolyte that facilitates ion transport. Leak detection is crucial during and after this step to ensure that the filled electrolyte does not leak out, which would compromise performance and safety.
  • Helium leak detectors are used to confirm the leak-tightness of the cell after electrolyte filling and sealing.

4. Testing of Cooling Systems in EV Battery Packs

  • Electric vehicle (EV) battery packs often include liquid cooling systems to maintain optimal operating temperatures. These cooling systems must be leak-tight to prevent coolant from leaking into the battery cells and causing short circuits or other damage.
  • Helium mass spectrometers are used to test the cooling channels and ensure no leaks are present.

5. Quality Assurance and Process Control

  • In large-scale production of lithium-ion batteries, helium leak detectors are integrated into automated production lines for continuous quality monitoring. This ensures that every battery cell, module, and pack meets the required standards for leak-tightness.
  • Helium testing is often used in conjunction with vacuum chambers or sniffer probes, depending on the specific part being tested.

Testing Methods in Lithium Battery Applications

1. Vacuum Method

  • The test object is placed in a vacuum chamber and pressurized with helium. Any helium escaping through leaks is detected by the mass spectrometer.
  • This method is highly sensitive and suitable for testing battery cells and small modules.

2. Sniffer Method

  • A sniffer probe connected to the helium mass spectrometer is used to detect helium leaks at specific locations, such as welds, joints, or seals.
  • This method is practical for testing large battery packs or localized leak detection.

3. Bombing Method

  • The test object is pressurized with helium gas for a specific period (the "bombing" phase). If leaks are present, helium will penetrate the object. Afterward, the object is evacuated, and helium escaping from leaks is detected.
  • This method is used when direct pressurization is not feasible.

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