IP Library › Granted Patent US 9,114,037
Granted Patent B2
US 9,114,037 · App. 13/761,003 · Granted Aug 25, 2015

Tube with reverse necking properties

Inventor: James D. Silverman (Flagstaff, AZ)
Assignee: W. L. Gore & Associates, Inc.
A61F2/962A61F2/82A61F2/88A61F2/966A61F2/90A61F2210/0076A61M2025/0024
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,114,037
App. No.
13/761,003
Granted
Aug 25, 2015
Kind
B2
Abstract

An improved tubular structure adapted to increase in diameter upon application of axial force is provided. Increase in diameter is achieved by constructing the tube from multiple layers of material that move relative to each other during axial elongation of the tube. The tube of the present invention can be used both to avoid problems in “necking” found in many prior tube devices, and to provide additional benefits that increases in diameter of the tube during axial elongation can provide. As such, the tube of the present invention may be useful as a manufacturing aid, as a deployment sheath (for example, to deliver medical devices), and in other applications that may benefit from easier tubular sheath removal.

Claims (29)

1. A tubular structure comprising

a first helical tape component at a first wrap angle, and a second helical tape component at a second wrap angle in the same relative direction around the structure but oriented differently from the first wrap angle;

the tubular structure having a first diameter and a first axial length;

wherein when the tubular structure is increased from the first axial length to an elongated second axial length, the first diameter increases to an enlarged second diameter;

wherein the tubular structure is formed from at least two helical components each applied in the same relative direction around the tubular structure but oriented at different angles relative to each other; and

wherein when axial force is applied to the tubular structure the relative angle between the helical components wrap increased to form the enlarged second diameter.

2. The tubular structure of claim 1 wherein the tubular structure comprises a sheath containing a self-expanding device.

3. The tubular structure of claim 2 wherein the self-expanding device comprises an implantable medical device.

4. The tubular structure of claim 3 wherein the implantable medical device comprises a stent.

5. The tubular structure of claim 1 wherein the tubular structure comprises a manufacturing aid used in conjunction with a mandrel.

6. The tubular structure of claim 1 wherein the second diameter is at least 5 percent larger than the first diameter.

7. The tubular structure of claim 1 wherein the second diameter is at least 10 percent larger than the first diameter.

8. The tubular structure of claim 1 wherein the second diameter is at least 15 percent larger than the first diameter.

9. The tubular structure of claim 1 wherein when axial force is applied to the tubular structure the relative angle between the tape components increases to form the enlarged second diameter.

10. A tubular structure having a longitudinal axis comprising

a wrap of at least one component at a first wrap angle of x, and a wrap of at least one component at a second wrap angle of y, with both wraps being in the same relative direction;

x and y both formed at an angle of about 0 to 90 degrees relative to the axis of the tubular structure;

x being an angle different from y, and x and y oriented at an acute included angle with respect to each other;

wherein when axial force is applied to the tubular structure, both x and y decreases relative to the longitudinal axis, and the acute included angle between x and y increases.

11. The tubular structure of claim 10 wherein

the tubular structure having a first diameter and a first axial length; and

when the tubular structure is increased from the first axial length to an elongated second axial length, the first diameter increases to an enlarged second diameter.

12. The tubular structure of claim 11 wherein the second diameter is at least 5 percent larger than the first diameter.

13. The tubular structure of claim 11 wherein the second diameter is at least 10 percent larger than the first diameter.

14. The tubular structure of claim 11 wherein the second diameter is at least 15 percent larger than the first diameter.

15. The tubular structure of claim 10 wherein the tubular structure comprises a sheath containing a self-expanding device.

16. The tubular structure of claim 15 wherein the self-expanding device comprises an implantable medical device.

17. The tubular structure of claim 16 wherein the implantable medical device comprises a stent.

18. The tubular structure of claim 10 wherein the tubular structure comprises a manufacturing aid used in conjunction with a mandrel.

Continuity (2)
Continuation 12503785 · Jul 15, 2009
Related Publication 20130150949A1 · Jun 13, 2013