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    Mechanical Splicing Advantages
 
   A Reliable Connection
 
Performs similar to a continuous piece of rebar
Splice strength is developed independent of concrete quality
Provides ductility independent of concrete condition
 
Achieves greater strength Offers strength during man-made,seismic or other natural events
Superior cyclic performance
 
   Design Friendly
 
 
  Reduces rebar congestion and
  improves concrete consolidation
 
 
  Improves steel-to concrete ratio  
 
  Eliminates lap splices in high stress regions  
 
  Allows greater flexibility in design
  options
 
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   Economical
   
 
  Requires no special skills and
  reduces labor costs
 
 
  Accelerates construction schedules for   reduced cost and improved efficiency  
 
  Saves valuable crane time  
 
  Reduces material costs because less rebar is   used  
 
  Design Benefits
   
 
Allows maximum bar cross-section to be used
Smallest diameter in the industry reduces need for concrete cover and eliminates rebar congestion
Short length and slim design ensure the lest disturbance to uniform stiffness
 
Splice strength is independent of rebar deformation
Superior cyclic performance
Unique parallel thread requires no lock nuts and provides a positive locking, no-slip connection
Any length, shape, diameter or combination of bar sizes can be mechanically spliced
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   Installation Benefits
   
  Takes approximately four turns to engage
 
  Prevents cross-threading
   
  Fastest system to install:
 
  No special tools or skills required
  No power required for installation
  Splice inspection is quick and easy
  Reduces crane time
  Bar threaded is easy to use and can   be set up on-site or at the fabricator
     
   Provides Continuity in Quality and Strength
     
   NANYA parallel threaded couplers are  manufactured from high strength, high quality  steel.  
   Withstands the Test of Time
     Seismic Considerations
 
   Lap splices may pull apart during seismic loads. NANYA    couplers offer more strength than Lap Splices during    seismic, man-made blasts or other Natural events as    their performance is independent of surrounding    concrete.
 
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