Railway applications. Track. Test methods for fastening systems - Proof load test for pull-out resistance

Railway applications. Track. Test methods for fastening systems - Proof load test for pull-out resistance

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What is BS EN 13146-10 - Test methods for fastening systems about ?

BS EN 13146-10 focuses on railway applications. BS EN 13146-10 specifies a test procedure to confirm that the force necessary to pull the anchorage of a rail fastening assembly out of the sleeper or other supporting element is greater than a prescribed value (i.e., it is a 'proof load' test). 

This test is for components of the fastening system which are: 

  • Cast into concrete during the manufacture of sleepers or other supporting elements 
  • Glued into the cast or drilled holes in concrete or 
  • Screwed or otherwise attached to wood, plastic or steel sleepers or other supporting elements 

Note: BS EN 13146-10 is not applicable to embedded rails. 

Who is BS EN 13146-10 - Test methods for fastening systems for ? 

BS EN 13146-10 on proof load test for pull-out resistance is useful for: 

  • Designer and producers of rail fastening systems  
  • Railway management authorities   
  • Infrastructure managers 
  • Site supervisors   
  • Inspection and testing department in railways    
  • Train operator companies (TOCs)  

Why should you use BS EN 13146-10 - Test methods for fastening systems  

The main function of rail fastening systems is to fix rails to railway sleeper or railroad ties.  

BS EN 13146-10 specifies proof load test for pull-out resistance to ensure rail fastening assembly can withstand the design load without failure or unacceptable deformation. 

If you are a manufacturer of fastening systems, BS EN 13146-10 can ensure your products are safe and reliable. 

Overall, compliance to the proof load test method for pull-out resistance suggested by BS EN 13146-10 can help you evaluate the dynamic fatigue strength and holding forces that ensure the operational safety of railway networks while protecting the rail against tilting.