Non-destructive testing. Thermographic testing - Equipment

Non-destructive testing. Thermographic testing - Equipment

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What is BS EN 16714-2- Infrared camera for thermographic testing about? 

EN 16714 is a European Standard series that discusses non-destructive testing (NDT). 

BS EN 16714-2 is the second part of the series that specifies the properties and requirements of infrared cameras used for thermographic testing for non-destructive testing. 

BS EN 16714-2 gives also examples of excitation sources, the properties and requirements are described in application standards for active thermography.  The main aim of BS EN 16714-2 is to enable efficient and timely detection of flaws that contributes to higher quality of products and materials. 

Who is BS EN 16714-2- Infrared camera for thermographic testing for? 

BS EN 16714-2 on thermographic testing is helpful to:  

  • Infrared/thermal camera manufacturers 
  • Thermographic testing equipment and component manufacturers 
  • Manufacturing industry  
  • Electronic and electric industry  
  • Medical industry 
  • Laser industry  
  • Aerospace and Defence industry 
  • Operators and maintenance personnel of industrial plants and equipment 

Why should you use BS EN 16714-2- Infrared camera for thermographic testing? 

NDT of components, materials, or systems using imaging of temperature fields, gradients, and/or patterns at the object's surface is referred to as thermographic testing. Thermographic testing is thus a preventive maintenance technique to detect flaws in structures. 

Guidelines in BS EN 16714-2 provide you with specifications and requirements of infrared cameras used for thermographic testing for non-destructive testing. As a result, you can ensure that the camera’s response to infrared radiation is optimal. With BS EN 16714-2-compliant infrared camera’s you can effectively take into account emissivity, distance, ambient temperature and relative humidity, resulting in more accurate thermograms. 

As a result, the precise and timely detection of flaws can be possible before overall product failure occurs which further contribute the production of high-quality products. Timely detection can ultimately prevent downtime and loss of production.