IP Library Patent Application 17864657
Patent Application
App. No. 17/864,657

EXPANSION JOINTS FOR A TUBULAR TRANSPORTATION SYSTEM

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Quick Facts
Patent No.
US None
App. No.
17/864,657
Abstract

A tubular structure includes at least one exterior tube and at least one interior tube, at least a portion of the interior tube is disposed within the exterior tube. The tubular structure further includes at least one expansion joint provided between the exterior tube and the interior tube and the expansion joint allows lateral expansion or contraction of the exterior tube and the interior tube and maintains a pressure within the exterior and the interior tubes.

Claims (41)

1 . A tubular structure, comprising:

at least one exterior tube having an opening and an interior;

at least one interior tube, at least a portion of the at least one interior tube is configured to be disposed through the opening and within the interior of the at least one exterior tube; and

at least one expansion joint provided between the at least one exterior tube and the portion of the at least one interior tube, wherein

the at least one expansion joint is configured to allow lateral expansion and contraction of the exterior tube and the interior tube while maintaining a predetermined pressure within the exterior and the interior tubes, wherein

the expansion joint comprises a tubular rolling seal belt, and

the rolling seal belt has a first end attached to an outer circumferential surface of the interior tube and a second end attached to an inner circumferential surface of the exterior tube.

2 . The tubular structure of claim 1 , wherein

the rolling seal belt comprises a flexible material reinforced by a reinforcement material.

3 . The tubular structure of claim 1 , wherein

the second end of the rolling seal belt is attached to the inner circumferential surface of the exterior tube via a tubular connector structured and arranged to apply a compressive force to the rolling real belt.

4 . The tubular structure of claim 3 , wherein

the tubular connector includes at least two arcuate band sections connected at ends thereof via fixing sections.

5 . The tubular structure of claim 3 , wherein

the ends of the arcuate band sections are adjustably connected to the fixing sections such that a space between the ends of the arcuate band sections may be adjusted.

6 . The tubular structure of claim 1 , wherein

the rolling seal belt is able to fold back upon itself and is configured to roll laterally such that an effective lateral length of the rolling seal belt is adjustable.

7 . The tubular structure of claim 1 , further comprising a second rolling seal belt, wherein

the tubular rolling seal belt is a first rolling seal belt, and

the first rolling seal belt is attached to the opening of the exterior tube and the second rolling seal belt is attached to a second opening of the exterior tube.

8 . The tubular structure of claim 1 , wherein

the exterior tube is attached to a pylon via a bearing.

9 . A method of maintaining a predetermined pressure within a tubular structure having an interior tube, an exterior tube, and a tubular rolling seal belt disposed between the interior tube and the exterior tube, with relative longitudinal movement between the interior tube and the exterior tube, the method comprising:

establishing an interior of the tubular structure at the predetermined pressure;

unrolling the tubular rolling seal belt when the relative longitudinal movement between the interior tube and the exterior tube decreases an overlap of the interior tube and the exterior tube;

rolling the tubular rolling seal belt when the relative longitudinal movement between the interior tube and the exterior tube increases an overlap of the interior tube and the exterior tube; and

maintaining the predetermined pressure of the interior of the tubular structure with the tubular rolling seal belt.

10 . The method of claim 9 , wherein

the rolling seal belt comprises a flexible material reinforced by a reinforcement material.

11 . The method of claim 9 , further comprising

attaching the second end of the rolling seal belt to the inner circumferential surface of the exterior tube via a tubular connector structured and arranged to apply a compressive force to the rolling real belt.

12 . The method of claim 11 , wherein

the tubular connector includes at least two arcuate band sections connected at ends thereof via fixing sections.

13 . The tubular structure of claim 12 , wherein

the ends of the arcuate band sections are adjustably connected to the fixing sections such that a space between the ends of the arcuate band sections are adjustable.

14 . The method of claim 9 , wherein

the rolling seal belt is operable to fold back upon itself and is configured to roll laterally such that an effective lateral length of the rolling seal belt is adjustable.

15 . The method of claim 9 , further comprising a second rolling seal belt, wherein

the tubular rolling seal belt is a first rolling seal belt, the method further comprising attaching the first rolling seal belt to an opening of the exterior tube and the second rolling seal belt is attached to a second opening of the exterior tube.

16 . The method of claim 9 , wherein

the exterior tube is attached to a pylon via a bearing.