IP Library › Granted Patent US 11,877,908
Granted Patent B2
US 11,877,908 · App. 17/079,786 · Granted Jan 23, 2024

Dental abutment screw

Inventor: Jonathan Abenaim (Hawthorne, NJ)
A61C8/0025A61C8/005A61C8/0012A61C8/0028
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Quick Facts
Patent No.
US 11,877,908
App. No.
17/079,786
Granted
Jan 23, 2024
Kind
B2
Abstract

An abutment screw having a first hardness for use in affixing a dental prosthetic, having a second hardness less than the first hardness, to an abutment that itself is attachable to an implant in the mouth of a patient includes a head and a body. The body includes a smooth shank immediately proximate the head, and a threaded portion with a helical ridge that runs around its body, the helical ridge beginning at a point along the body distal the head portion. The head includes an upper surface, having a drive at a central portion thereof, and an underside surface having a convex radiused curvature extending until it meets the shaft, the convex radiused curvature being configured to conform to a corresponding concave curvature of a receiving portion of the prosthesis.

Claims (37)

1. A tooth replacement assembly for affixing a dental prosthesis to a dental implant affixed to a jaw bone of a patient, the tooth replacement assembly comprising:

(a) an abutment having a first end configured to securely engage with the dental implant and having a second end with a female threading surrounded by a tapered upper profile wall;

(b) the dental prosthesis having, at a first end facing the abutment, an outwardly tapering opening shaped and dimensioned so as to be snugly engageable with the tapered upper profile wall of the abutment and, at a second end, a receiving surface, the outwardly tapering opening and receiving surface connected by a receiving channel having a channel diameter; and

(c) an abutment screw comprising:

a head; and

a body,

the body comprising:

a shank having a smooth portion immediately proximate the head and having a first diameter that is about the same as the channel diameter, and

a threaded portion axially aligned with, and distally spaced from, the smooth shank portion, the threaded portion beginning at a point along the shank which is most distal the head, the threaded portion having a second diameter, wherein the first diameter is greater than the second diameter; and

the head comprising:

an upper surface, having a drive at a central portion thereof and a curved surface, and

an underside surface having a convex radiused curvature extending until it meets the shank, the convex radiused curvature being configured to conform to a corresponding concave curvature of the receiving portion of the prosthesis,

and

wherein the screw is configured to be tightened, by application of twisting force to the drive, so that the threaded portion of the body of the screw threadingly engages the female threading of the abutment, thus causing the convexed radiused curvature of the screw head to securely mate with the corresponding concave curvature of the receiving portion of the prosthesis.

2. The tooth replacement assembly of claim 1 , the head further comprising, at a peripheral region thereof, a vertical cylindrical wall.

3. The tooth replacement assembly of claim 1 , wherein the convex radiused curvature is in the range of 0.79-0.85 mm.

4. The tooth replacement assembly of claim 1 , wherein a height thickness of the head is at least 1.5 mm.

5. The tooth replacement assembly of claim 1 , wherein a helical ridge of the threaded portion comprises a minimum of 4 turns and no more than 6 turns.

6. The tooth replacement assembly of claim 1 , wherein the dental prosthesis is made of zirconia and the abutment screw made of Titanium.

7. The tooth replacement assembly of claim 1 , wherein the length of the shank is 2 mm.

8. The tooth replacement assembly of claim 1 , wherein the drive is less than 50% of the area of the upper surface of the head.

9. The tooth replacement assembly of claim 1 , wherein the drive is a hexalobular drive.

10. The tooth replacement assembly of claim 1 , wherein the upper surface of the head is curved in an opposite direction with respect to the underside surface.

11. A tooth replacement assembly for affixing a hybrid dental prosthesis to a plurality of dental implants affixed to a jaw bone of a patient, comprising:

(a) a plurality of abutments, each having a first end configured to securely engage with a respective dental implant and having a second end with a female threading surrounded by a tapered upper profile wall;

(b) the hybrid dental prosthesis having, at a first end facing the plurality of abutments, outwardly tapering openings shaped and dimensioned so as to be snugly engageable with the tapered upper profile wall of a respective abutment and, at a second end, receiving surfaces, respective outwardly tapering openings and receiving surfaces connected by receiving channels having a channel diameter; and

(c) a plurality of abutment screws comprising:

a head; and

a body,

the body comprising:

a shank having a smooth portion immediately proximate the head and having a first diameter that is about the same as the channel diameter, and

a threaded portion axially aligned with, and distally spaced from, the smooth shank portion, the threaded portion beginning at a point along the shank which is most distal the head, the threaded portion having a second diameter, wherein the first diameter is greater than the second diameter; and

the head comprising:

an upper surface, having a drive at a central portion thereof and a curved surface, and

an underside surface having a convex radiused curvature extending until it meets the shaft, the convex radiused curvature being configured to conform to a corresponding concave curvature of the receiving portion of the prosthesis,

and

wherein the plurality of abutment screws are configured to be tightened, by application of twisting force to the drive, so that the threaded portion of the body of the screws threadingly engages the female threading of the abutments, thus causing the convexed radiused curvature of the screw head to securely mate with the corresponding concave curvature of the receiving portion of the prosthesis.

Continuity (1)
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