ParaPost® XT™ Titanium Posts, Refill
ParaPost® XT™ Titanium Posts, Refill

ParaPost® XT™ Titanium Posts, Refill

SKU: CO-P6830
Categories : Pins & Posts
In Stock
Regular price$210.59
ParaPost® XT™ are threaded, parallel-sided posts with rounded, undercut heads for direct post/core buildups in one appointment. Ideal for glass ionomer and composite core buildups, which require extra retention and extra safety.

  • Rounded edges of the head minimize stress points that could lead to core failure
  • Undercut, slotted head securely locks on glass ionomer and composite core materials firmly and easily
  • Low profile threads cut a clear path through the dentin, minimizing insertional stress
  • Raised diamond-shape retention pattern in the apical section provides additional retention and greater resistance against rotation
  • Parallel sides distribute functional stress equally along the entire length of the post
Size: #3 Brown (0.36")
Style: 10/Pack
Quantity
Add to wishlist
Add to compare
Categories : Pins & Posts

Help

If you have any questions, you are always welcome to contact us. We'll get back to you as soon as possible, withing 24 hours on weekdays.

Customer service

All questions about your order, return and delivery must be sent to our customer service team by e-mail at yourstore@yourdomain.com

Sale & Press

If you are interested in selling our products, need more information about our brand or wish to make a collaboration, please contact us at press@yourdomain.com

Description
ParaPost® XT™ are threaded, parallel-sided posts with rounded, undercut heads for direct post/core buildups in one appointment. Ideal for glass ionomer and composite core buildups, which require extra retention and extra safety.

  • Rounded edges of the head minimize stress points that could lead to core failure
  • Undercut, slotted head securely locks on glass ionomer and composite core materials firmly and easily
  • Low profile threads cut a clear path through the dentin, minimizing insertional stress
  • Raised diamond-shape retention pattern in the apical section provides additional retention and greater resistance against rotation
  • Parallel sides distribute functional stress equally along the entire length of the post