SEAL RING STRUCTURE FOR LOW TORQUE VALVE FIRE-SAFE
20230151893 ยท 2023-05-18
Inventors
- CHING-AN LIN (KAOHSIUNG CITY, TW)
- CHIN-KANG CHEN (KAOHSIUNG CITY, TW)
- CHIA-HO CHENG (KAOHSIUNG CITY, TW)
Cpc classification
F16K5/0689
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0673
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention provides a seal ring structure, which comprises a seal ring member. The seal ring member includes a first ring opening on one side and a second ring opening on the other. A periphery of the first ring opening includes a plurality of leak grooves. When the seal ring member and the valve ball squeeze each other, the plurality of leak grooves can reduce the torque required to rotate the valve ball. A leak-groove length of the plurality of leak grooves is smaller than a seal-ring-member length of the seal ring member. The plurality of leak grooves do not penetrate the seal ring member for avoiding leakage of fluid.
Claims
1. A seal ring structure, comprising a seal ring member, including a first ring opening on one side and a second ring opening on the other side, a periphery of said first ring opening including a plurality of leak grooves, and a length of said plurality of leak grooves being smaller than a ring length of said seal ring member.
2. The seal ring structure of claim 1, and further comprising: a valve side lid, including a first connecting side on one side for disposing said seal ring member, and including a second connecting side on the other side; a ball pad ring, with one side disposed against said valve side lid and said seal ring member; and a valve ball, disposed on the other side of said ball pad ring.
3. The seal ring structure of claim 2, and further comprising a valve body, with one side connected with said valve side lid, including a linkage member passing through the top of said valve body, and including a support part disposed at the bottom inside said valve body.
4. The seal ring structure of claim 3, wherein said valve ball is disposed inside said valve body; said valve ball is disposed below said linkage member; and said valve ball is disposed on said support part.
5. The seal ring structure of claim 2, wherein a first diameter of said first ring opening is smaller than a second diameter of said valve ball.
6. The seal ring structure of claim 2, wherein said first ring opening includes a contact surface on said periphery corresponding to said valve ball; and said plurality of leak grooves pass through said contact surface.
7. The seal ring structure of claim 1, wherein the number of said plurality of leak grooves is even; and the plurality of leak grooves are disposed symmetrically.
8. The seal ring structure of claim 1, wherein said plurality of leak grooves are curved, respectively.
9. The seal ring structure of claim 1, wherein said plurality of leak grooves are triangular, respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] In order to make the structure and characteristics as well as the effectiveness of the present invention to be further understood and recognized, the detailed description of the present invention is provided as follows along with embodiments and accompanying figures.
[0025] To solve the problem according to the prior art as described above, the present invention provides a seal ring member with a plurality of leak grooves on a periphery of the first ring opening. When the seal ring member and the valve ball squeeze each other, the plurality of leak grooves can reduce the torque required to rotate the valve ball and hence avoiding inability of manual opening and closing of the valve, which is caused by tight contact between the valve ball and the metal fire-lip due to high pressure difference on both sides of the valve ball after the valve is heated. Inability of manual opening and closing of valves leads to incompliance of fire type-test.
[0026] Please refer to
[0027] Please refer to
[0028] According to the present embodiment, the number of the plurality of leak grooves 16 is even. In addition, the plurality of leak grooves 16 are disposed symmetrically for enabling uniform force distribution on the seal ring member 10 and avoiding damages owing to fatigue.
[0029] According to the present embodiment, the plurality of leak grooves 16 of the seal ring member 10 are curved, respectively.
[0030] Please refer to
[0031] According to the present embodiment, the seal ring structure further comprises a valve body 50 with one side disposed at the valve side lid 20. A linkage member 52 passes through the top of the valve body 50. A support part 54 is disposed at the bottom inside the valve body 50. According to the present embodiment, the valve ball 40 is disposed inside the valve body 50. The valve ball 40 is disposed below the linkage member 52 and on the support part 54. According to the present embodiment, when the linkage member 52 is rotated, the valve ball 40 will be driven to rotate accordingly. The support part 54 is used for supporting the valve ball 40 and allowing the valve ball 40 to rotate thereon.
[0032] According to the present embodiment, a first diameter D1 of the first ring opening 12 of the seal ring member 10 is smaller than a second diameter D2 of the valve ball 40 for preventing the valve ball 40 from falling into the seal ring member 10.
[0033] Please refer to
[0034] Please refer to
[0035] The seal ring structure according to the present embodiment can include the leak grooves with the required number and size. It can achieve sealing after combustion, as well as reducing the operational torque by preventing high pressure difference. Thereby, the situation of inability in re-operating valves and valve balls can be avoided.
[0036] To sum up, the present invention provides a seal ring structure with a plurality of leak grooves on a periphery of the ring opening. The number and size of the plurality of leak grooves can be designed according to the requirements. When the seal ring member and the valve ball squeeze each other after a fire type-test, the plurality of leak grooves can reduce the torque required to rotate the valve ball and hence avoiding inability of manual opening and closing of the valve, which is caused by tight contact between the valve ball and the metal fire-lip due to high pressure difference on both sides of the valve ball after the valve is heated. Inability of manual opening and closing of valves leads to incompliance of fire type-test.
[0037] Accordingly, the present invention conforms to the legal requirements owing to its novelty, nonobviousness, and utility. However, the foregoing description is only embodiments of the present invention, not used to limit the scope and range of the present invention. Those equivalent changes or modifications made according to the shape, structure, feature, or spirit described in the claims of the present invention are included in the appended claims of the present invention.