IP Library Granted Patent US 9,228,630
Granted Patent B2
US 9,228,630 · App. 13/975,967 · Granted Jan 5, 2016

Twin tube style damper with selectable bypass flow passages

Inventor: Joshua Philip Coaplen (Asheville, NC)
Assignee: Cane Creek Cycling Components
F16F9/3257F16F9/46F16F15/002
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Quick Facts
Patent No.
US 9,228,630
App. No.
13/975,967
Granted
Jan 5, 2016
Kind
B2
Abstract

A twin tube damper includes an inner fluid chamber, an outer fluid chamber in fluid communication with the inner fluid chamber and a first fluid circuit that is in fluid communication with the inner fluid chamber. The first fluid circuit includes a primary flow passage and a first bypass flow passage. A second fluid circuit is in fluid communication with the outer fluid chamber and with the first fluid circuit via a common flow passage. The second fluid circuit includes a primary flow passage and a second bypass flow passage. A switchable flow valve is provided for directing fluid flow between the first bypass flow passage and at least one of the common flow passage and the second bypass flow passage, and between the second bypass flow passage and at least one of the common flow passage and the first bypass flow control passage.

Claims (39)

1. A twin tube damper, comprising:

an inner fluid chamber;

an outer fluid chamber in fluid communication with said inner fluid chamber;

a first fluid circuit in fluid communication with said inner fluid chamber, said first fluid circuit comprising a first primary flow passage and a first bypass flow passage;

a second fluid circuit in fluid communication with said outer fluid chamber and in fluid communication with said first fluid circuit, said second fluid circuit comprising a second primary flow passage and a second bypass flow passage;

a common flow passage disposed and in fluid communication between the first fluid circuit and the second fluid circuit, wherein the first primary flow passage and the first bypass flow passage are disposed and provide fluid communication between the first fluid circuit and the common flow passage, and wherein the second primary flow passage and the second bypass flow passage are disposed and provide fluid communication between the second fluid circuit and the common flow passage; and

a switchable flow valve for directing fluid flow between said first bypass flow passage and at least one of said common flow passage and said second bypass flow passage, and between said second bypass flow passage and at least one of said common flow passage and first bypass flow control passage.

2. The twin tube damper as in claim 1 , further comprising a piston, said piston being disposed within said inner fluid chamber to move a damping fluid between said inner and outer fluid chambers via said first and second fluid circuits.

3. The twin tube damper as in claim 1 , further comprising an externally actuated mechanism coupled to said switchable flow valve, wherein said externally actuated mechanism is manually, mechanically, hydraulically, pneumatically, or electrically actuatable.

4. The twin tube damper as in claim 1 , further comprising a fluid reservoir, wherein said fluid reservoir is fluidly linked with said switchable flow valve via at least one of said common flow passage, said first bypass flow passage or said second bypass flow passage.

5. The twin tube damper as in claim 1 , wherein said switchable flow valve comprises a rotatable spool valve, said rotatable spool valve defining a first fluid port, a second fluid port and a third fluid port, said third fluid port being in fluid communication with each of said first and second fluid ports.

6. The twin tube damper as in claim 5 , wherein said first fluid port is in fluid communication with said first bypass flow passage, said second fluid port is in fluid communication with said second bypass flow passage and said third fluid port is in fluid communication with said common flow passage when said switchable flow valve is switched to a least restrictive flow setting.

7. The twin tube damper as in claim 5 , wherein at least two of said first fluid port, said second fluid port and said third fluid port are at least partially blocked when said switchable flow valve is switched to a most restrictive flow setting.

8. The twin tube damper as in claim 5 , wherein one of the first fluid port or the third fluid port is in fluid communication with said second bypass flow passage when said switchable flow valve is switched to a most restrictive flow setting.

9. The twin tube damper as in claim 5 , wherein one of the second fluid port or the third fluid port is in fluid communication with said first bypass flow passage when said switchable flow valve is switched to a most restrictive flow setting.

10. The twin tube damper as in claim 1 , wherein said switchable flow valve comprises a rotatable spool valve, said rotatable spool valve defining a first fluid port and a second fluid port, wherein said first fluid port is in fluid communication with said first bypass flow passage and with common flow passage, and said second fluid port is in fluid communication with said second bypass flow passage and said common flow passage when said switchable flow valve is switched to a least restrictive flow setting.

11. The twin tube damper as in claim 10 , wherein said first fluid port and said second fluid port are at least partially blocked when said switchable flow valve is switched to a most restrictive flow setting.

12. The twin tube damper as in claim 1 , wherein said switchable flow valve comprises a linearly actuated spool valve, said linearly actuated spool valve defining a first landing, a second landing and a spool flow passage.

13. The twin tube damper as in claim 12 , wherein said first landing at least partially blocks said first bypass flow passage and said second landing at least partially blocks said second bypass flow passage when said switchable flow control valve is switched to a most restrictive flow setting.

14. The twin tube damper as in claim 12 , wherein said first bypass flow passage and said second bypass flow passage are in fluid communication with said spool flow passage, said spool flow passage being in fluid communication with said common flow passage when said switchable flow control valve is switched to a least restrictive flow setting.

15. The twin tube damper as in claim 12 , wherein said first fluid port and said second fluid port are blocked when said switchable flow valve is switched to a most restrictive flow setting.

16. A twin tube damper, comprising:

an inner fluid chamber;

an outer fluid chamber in fluid communication with said inner fluid chamber;

a first fluid circuit in fluid communication with said inner fluid chamber, said first fluid circuit comprising a first primary flow passage and a first bypass flow passage;

a second fluid circuit in fluid communication with said outer fluid chamber and in fluid communication with said first fluid circuit, said second fluid circuit comprising a second primary flow passage and a second bypass flow passage;

a common flow passage disposed and in fluid communication between the first fluid circuit and the second fluid circuit, wherein the first primary flow passage and the first bypass flow passage are disposed and provide fluid communication between the first fluid circuit and the common flow passage, and wherein the second primary flow passage and the second bypass flow passage are disposed and provide fluid communication between the second fluid circuit and the common flow passage;

a fluid reservoir in fluid communication with said common flow passage;

a piston that travels within said inner fluid chamber;

a switchable flow valve fluidly linked to said fluid reservoir; and

wherein said switchable flow valve directs fluid flow between said fluid reservoir and at least one of said first bypass flow passage or said second bypass flow passage.

17. The twin tube damper as in claim 16 , further comprising an external actuating mechanism coupled to said switchable flow valve, wherein said external actuating mechanism is manually, mechanically, hydraulically, pneumatically, or electrically actuatable.

18. The twin tube damper as in claim 16 , wherein said switchable flow valve comprises a rotatable spool valve, said rotatable spool valve defining a first fluid port and a second fluid port, wherein said first fluid port is in fluid communication with said first bypass flow passage and with said fluid reservoir, and said second fluid port is in fluid communication with said second bypass flow passage and said fluid reservoir when said switchable flow valve is switched to a least restrictive flow setting.

19. The twin tube damper as in claim 18 , wherein said first fluid port and said second fluid port are at least partially blocked when said switchable flow valve is switched to a most restrictive flow setting.

20. The twin tube damper as in claim 16 , wherein said switchable flow valve comprises a linearly actuated spool valve, said linearly actuated spool valve comprising:

a. a first landing;

b. a second landing;

c. a spool flow passage; and

d. wherein said first landing at least partially blocks said first bypass flow passage and said second landing block at least partially blocks said second bypass flow passage when said switchable flow control valve is switched to a most restrictive flow setting, and said first bypass flow passage and said second bypass flow passage are in fluid communication with said spool flow passage and said spool flow passage is in fluid communication with said common flow passage when said switchable flow control valve is switched to a least restrictive flow setting.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2013
From: COAPLEN, JOSHUA PHILIP
To: CANE CREEK CYCLING COMPONENTS
Reel/Frame 031087/0154 →
Continuity (2)
Provisional Application 61693411 · Aug 27, 2012
Related Publication 20140054122A1 · Feb 27, 2014