Line blind valve
10100937 ยท 2018-10-16
Assignee
Inventors
Cpc classification
F16L55/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/312
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/0218
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K3/312
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A line blind valve installed between pipes to open or block a pipeline, in which the line blind valve includes: a valve body having opening portions formed at front and rear sides thereof, respectively; a front sheet formed from the opening portion of the front side toward an inside of the valve body, and a rear sheet formed from the opening portion of the rear side toward the inside of the valve body; an opening blind installed during opening of the pipeline and a blocking blind installed during blocking of the pipeline, the opening and blocking blinds being inserted between the front and rear sheets; and a gear unit coupled to the rear sheet in a threaded manner, and configured to press the opening blind or the blocking blind toward the front sheet by moving forward so that the opening or the blocking blind is fixed to the front sheet, and is sealed.
Claims
1. A line blind valve installed between pipes so as to open or block a pipeline, the valve comprising: a valve body (100) having opening portions (110 and 120) formed at front and rear sides thereof, respectively; a front sheet (130) formed from the opening portion (110) of the front side toward an inside of the valve body (100), and a rear sheet (140) formed from the opening portion (120) of the rear side toward the inside of the valve body (100); an opening blind (200) installed during opening of the pipeline and a blocking blind (300) installed during blocking of the pipeline, the opening and blocking blinds (200 and 300) being inserted between the front and rear sheets (130 and 140); and a gear unit (400) coupled to the rear sheet (140) in a threaded manner, and configured to press the opening blind (200) or the blocking blind (300) toward the front sheet (130) by moving forward so that the opening blind (200) or the blocking blind (300) is fixed to the front sheet (130), and is sealed, wherein a first threaded portion (141) is formed on a side of an outer circumferential surface of the rear sheet (140), and a stepped portion (142) is formed in front of the first threaded portion (141), wherein the gear unit (400) includes: a ring gear (410) coupled to the first threaded portion (141), and configured to move forward and backward depending on rotation of the ring gear (410); a ring sheet (420) coupled to the ring gear (410), and configured to press the opening blind (200) or the blocking blind (300) toward the front sheet (130) by moving forward along the stepped portion (142) so that the opening blind (200) or the blocking blind (300) is fixed to the front sheet (130); a lever (430) formed on an outer circumferential surface of the ring gear (410), and configured to rotate the ring gear (410) by moving forward and backward; and a screw shaft (440) of which a first side is coupled to the lever (430), and a second side is coupled to the valve body (100) in a threaded manner, the screw shaft (440) being rotated to move the lever (430) forward and backward, thereby rotating the ring gear (410).
2. The valve of claim 1, wherein first gaskets (210 and 310) are provided on first surfaces of the opening and blocking blinds (200 and 300), respectively, the first surfaces facing the front sheet (130), and second gaskets (220 and 320) are provided on second surfaces of the opening and blocking blinds (200 and 300), respectively, the second surfaces facing the ring sheet (420), so that when the opening blind (200) is pressed toward the front sheet (130) by the ring sheet (420), a gap between the opening blind (200) and the front sheet (130) and a gap between the opening blind (200) and the ring sheet (420) are sealed by pressing the first gasket (210) and the second gasket (220), or when the blocking blind (300) is pressed toward the front sheet (130) by the ring sheet (420), a gap between the blocking blind (300) and the front sheet (130) and a gap between the blocking blind (300) and the ring sheet (420) are sealed by pressing the first gasket (310) and the second gasket (320).
3. The valve of claim 1, wherein a third gasket (422) is provided at a rear end of a lower surface of the ring sheet (420) so that when the opening blind (200) or the blocking blind (300) is pressed by the ring sheet (420) depending on forward movement of the ring gear (410), the ring gear (410) presses the third gasket (422), thereby sealing a gap between the stepped portion (142) and the ring gear (410).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(6) Hereinbelow, exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings.
(7) As shown in
(8) The valve body 100 is installed between pipes, and the opening blind 200 or the blocking blind 300 is inserted into the valve body 100 so as to open or block the pipeline. The valve body 100 is formed in a container shape of which upper and lower portions are open so that upper and lower covers may be attached to or detached from the upper and lower portions of the valve body 100, respectively. It is desirable that the upper and lower covers (no reference symbols) are detachably coupled to the upper and lower portions of the valve body 100. Opening portions 110 and 120 for being connected to pipes are formed at front and rear sides of the valve body 100, respectively. Further, the opening blind 200 or the blocking blind 300 is inserted into the valve body 100.
(9) Furthermore, a flange F for being coupled to a pipe is formed on the circumference of each of the opening portions 110 and 120 formed at the front and rear sides of the valve body 100. Further, it is desirable that a plurality of bolt holes H for being coupled to a pipe is formed around the flange F.
(10) Furthermore, front and rear sheets 130 and 140 are formed in the valve body 100. The front sheet 130 formed in a pipe shape is formed by protruding from the opening portion 110 of the front side toward an inside of the valve body 100, and the rear sheet 140 formed in a pipe shape is formed by protruding from the opening portion 120 of the rear side toward the inside of the valve body 100. Further, a first threaded portion 141 comprising a plurality of threads is formed on a side of an outer circumferential surface of the rear sheet 140, and a stepped portion 142 is formed in front of the first threaded portion 141.
(11) Thereafter, the opening blind 200 is inserted between the front and rear sheets 130 and 140 during the opening of the pipeline so that the valve body 100 may open the pipeline. In this case, an opening corresponding to the opening portions 110 and 120 is formed in the opening blind 200. Further, a blocking blind 300 is inserted between the front and rear sheets 130 and 140 during the blocking of the pipeline so that the valve body 100 may block the pipeline.
(12) In this case, stepped portions 230 and 330 are formed in lower portions of the opening and blocking blinds 200 and 300, respectively. A support 150 by which the stepped portions 230 and 330 are stopped and supported is provided in a lower portion of the front sheet 130. Thus, the opening blind 200 or the blocking blind 300 may be located between the front and rear sheets 130 and 140 in such a way that the opening blind 200 or the blocking blind 300 is supported by the support 150.
(13) Furthermore, as shown in
(14) A second threaded portion 411 is formed on an inner circumferential surface of the ring gear 410 such that the second threaded portion 411 is coupled to the first threaded portion 141. Thus, the ring gear 410 may move forward and backward depending on rotation of the ring gear 410 along the first threaded portion 141.
(15) Furthermore, the ring sheet 420 is coupled to a front end of the ring gear 410, and is configured to press the opening blind 200 or the blocking blind 300 toward the front sheet 130 by moving forward along an outer circumferential surface of the stepped portion 142 so that the opening blind 200 or the blocking blind 300 is fixed to the front sheet 130.
(16) In this case, a projection 412 is formed at the front end of the ring gear 410, and a groove 421 into which the projection 412 is inserted is formed on an upper portion of the ring sheet 420. Thus, the ring gear 410 and the ring sheet 420 may be coupled to each other.
(17) Furthermore, a lever 430 is formed on an outer circumferential surface of the ring gear 410, and is configured to rotate the ring gear 410 by moving forward and backward.
(18) Furthermore, a screw shaft 440 of which a first side is coupled to the lever 430, and a second side is coupled to the valve body 100 in a threaded manner such that the screw shaft 440 is rotated to move the lever 430 forward and backward. More particularly, a pair of binding rings (not shown) are installed in a state of being spaced apart from each other on an outer circumferential surface of the first side of the screw shaft 440, and an end of the lever 430 is inserted into space formed between the pair of binding rings.
(19) As described, a sealed structure of the line blind valve according to the present invention will be described as follows.
(20) First gaskets 210 and 310 are provided on first surfaces of the opening and blocking blinds 200 and 300, respectively, such that the first surfaces face the front sheet 130, and second gaskets 220 and 320 are provided on second surfaces of the opening and blocking blinds 200 and 300, respectively, such that the second surfaces face the ring sheet 420.
(21) When the opening blind 200 is pressed toward the front sheet 130 by the ring sheet 420 depending on forward movement of the ring gear 410, a gap between the opening blind 200 and the front sheet 130 and a gap between the opening blind 200 and the ring sheet 420 may be sealed by pressing the first gasket 210 and the second gasket 220, or when the blocking blind 300 is pressed toward the front sheet 130 by the ring sheet 420 depending on forward movement of the ring gear 410, a gap between the blocking blind 300 and the front sheet 130 and a gap between the blocking blind 300 and the ring sheet 420 may be sealed by pressing the first gasket 310 and the second gasket 320.
(22) Furthermore, as shown in
(23) As described, compared to a line blind valve according to the related art that is sealed overall, the simply designed and compact valve body 100 may be achieved by sealing the gap between the opening blind 200 and the ring sheet 420 or the gap between the blocking blind 300 and the ring sheet 420.
(24) Hereinafter, opening and blocking processes of the pipeline by the line blind valve according to the present invention will be described as follows.
(25) First, during the opening of the pipeline, after the upper cover is separated from the valve body 100, the opening blind 200 is inserted between the front and rear sheets 130 and 140. Thereafter, when the screw shaft 440 is rotated by using a jig, such as a wrench, so as to move the lever 430 forward, the ring gear 410 is moved forward by rotating. Thereafter, the ring sheet 420 presses the opening blind 200 toward the front sheet 130 so that the opening blind 200 is fixed to the front sheet 130. Thereafter, the upper cover is coupled to the valve body 100, and the pipeline continues to be open.
(26) Second, during the blocking of the pipeline, after the upper cover is separated from the valve body 100, the screw shaft 440 is reversely rotated so as to move the lever 430 backward. Thereafter, the ring gear 410 is moved backward by rotating, and the ring sheet 420 is spaced apart from the opening blind 200. Thereafter, the opening blind 200 is separated from the valve body 100, and the blocking blind 300 is inserted between the front and rear sheets 130 and 140. Thereafter, the screw shaft 440 is rotated so as to move the lever 430 forward, and the ring sheet 420 presses the blocking blind 300 toward the front sheet 130 so that the blocking blind 300 is fixed to the front sheet 130. Thereafter, the upper cover is coupled to the valve body 100, and the pipeline continues to be blocked.
(27) As described, in the technical spirit of the line blind valve according to the present invention, during the opening and blocking of the pipeline, weight of a blind may be reduced by alternately using the opening and blocking blinds, and time required to open and block the pipeline may also be reduced. Further, dead space may be fundamentally prevented from being formed, and only the blind and components for fixing the blind are sealed, thereby achieving the simply designed and compact valve body.
(28) Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and technical spirit of the present invention as disclosed in the accompanying claims.
(29) The present invention relates to a field of a line blind valve that may be utilized for controlling fluid flow by being connected to pipes of a vessel or plant.