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Helium Leak Detection Service

Helium Leak Detection Service
Helium Leak Detection Service

Helium Leak Detection Service Specification

  • Specimen Size
  • As per requirement
  • Test Range
  • 10^-9 to 10^-3 mbar l/s
  • Sensor
  • High sensitivity helium sensor
  • Humidity
  • Up to 80% RH (non-condensing)
  • Operating Temperature
  • 5C to 45C
  • Display
  • Digital screen
  • Number of Specimens
  • Single or Multiple
  • Temperature
  • Ambient
  • Response Time
  • < 1 second
  • Test Material
  • Alloy/Steel/Custom material parts
  • Power Supply
  • AC 230 V, 50 Hz
  • Gas Pressure
  • Up to 10 bar
  • Accuracy
  • Up to 1x10^-9 mbar l/s
  • Type
  • Helium Leak Detection Service
  • Use
  • Leak detection in vacuum and pressurized components
  • Test Medium
  • Helium Gas
  • Operating Voltage
  • 230V AC
  • Shell Material
  • Stainless Steel
  • Net Weight
  • Approx. 45 kg
  • Pedestal Size
  • Adjustable as per specimen
  • Port Size
  • Standard / Customizable
  • Operating Mode
  • Automatic / Manual
  • Traceability
  • Test data traceable for audit
  • Process Control
  • Microprocessor-based system
  • Service Location
  • Onsite / Offsite
  • Operator Requirement
  • Single operator friendly
  • Service Coverage
  • Pressure vessels, electronic components, refrigeration units, valves, and joints
  • Test Duration
  • 215 minutes per sample
  • Method
  • Vacuum or sniffer method as per application
  • Safety Features
  • Integrated alarm & emergency stop
  • Calibration
  • Annually or as required
  • Data Logging
  • Digital recording of test results
  • Detection Sensitivity
  • Ultra-high for micro leaks
 

Helium Leak Detection Service Trade Information

  • Payment Terms
  • Cash on Delivery (COD)
  • Sample Policy
  • Contact us for information regarding our sample policy
 

About Helium Leak Detection Service

Helium leak testing is a critical process in the engineering industry for ensuring the reliability and safety of vessels and valves that contain or transport pressurized gases or liquids. This testing method uses a small amount of helium gas as a tracer to detect leaks in the vessels and valves.

The process of helium leak testing involves several steps. First, the vessel or valve is evacuated to remove any gases or liquids that may be present. Then, helium gas is introduced into the vessel or valve, and the surrounding area is scanned with a helium detector. If a leak is present, the helium gas will escape from the vessel or valve and be detected by the detector.

There are several benefits to using helium leak testing for vessels and valves. First, it is a non destructive testing method, meaning that the vessels and valves can be reused after testing. Second, it is a fast and accurate testing method, allowing engineers to quickly identify and address any leaks. Finally, it is a cost effective testing method, as it requires only a small amount of helium gas and minimal equipment.

In conclusion, helium leak testing is a critical process for ensuring the reliability and safety of vessels and valves in the engineering industry. Its sensitivity, accuracy, and cost effectiveness make it an essential testing method for applications where even the smallest leaks can have serious consequences.



Unmatched Detection Sensitivity

Detect even the smallest microleaks with sensitivity reaching up to 1x10^-9 mbar l/s, ensuring that components are thoroughly tested and secure. The advanced helium sensor provides immediate responses in less than a second, maintaining rigorous standards for leak detection in vacuum and pressurized environments.


Customizable and Versatile Applications

The service covers an extensive range of components such as pressure vessels, refrigeration units, and valves, and can be adapted for single or multiple specimens of varying materials and sizes. Tests can be conducted both onsite and offsite, with adjustable pedestal and port sizes to fit unique requirements.


Digital Traceability and Audit Compliance

All test data is digitally logged and easily traceable, enabling effortless audits and recordkeeping. Our microprocessor-based system supports both automatic and manual modes, maximizing precision and minimizing errors during testing processes.

FAQs of Helium Leak Detection Service:


Q: How is helium leak detection performed during the service?

A: Helium leak detection is carried out using either the vacuum or sniffer method, chosen according to the specific application. Helium gas is applied, and any escaping gas is detected with a high sensitivity sensor, allowing accurate identification of even microleaks.

Q: What types of components can be tested using this service?

A: This service is suitable for pressure vessels, electronic components, refrigeration units, valves, joints, and parts made from alloy, steel, or custom materials. Specimen size and port configuration can be customized to meet client requirements.

Q: When is calibration required for the leak detection system?

A: Calibration is typically performed annually to ensure test accuracy; however, it can be conducted more frequently if dictated by the application or quality requirements.

Q: Where is the helium leak detection service available?

A: Our helium leak detection services are available both onsite at your facility and offsite at our testing centers throughout India, ensuring flexibility to suit your operational needs.

Q: What does the testing process involve?

A: Each specimen is tested individually or in batches by introducing helium gas and monitoring for leaks using sensors. The process is swift, with test durations ranging from 2 to 15 minutes per sample, and results are digitally recorded for traceability.

Q: How does helium leak detection benefit my operations?

A: Using helium leak detection ensures that components are thoroughly tested for leaks, enhancing safety, compliance, and reliability. The high sensitivity and rapid response allow for proactive maintenance and quality assurance, minimizing operational risks and downtime.

Q: What are the safety features included in the service setup?

A: The system includes integrated alarm and emergency stop functions, providing an added layer of protection for operators and equipment during testing procedures.

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