Stoppered Discharge Valve For Cistern
Abstract
The subject of invention is a stoppered discharge, which is developed for use in reservoirs and able to work with various water volumes, comprises mechanical parts shown as a discharge bearing ( 1 ), a sealing gasket ( 2 ), a lantern ( 3 ), a discharge tube ( 4 ), a pull arm ( 5 ), a discharge bearing support ( 8 ), a Styrofoam clip ( 9 ), a Styrofoam ( 10 ), a segment ( 11 ), a discharge gasket ( 12 ), a Styrofoam lower plate ( 13 ), a pull arm connection part ( 16 ). Stoppered discharge system (A) provides or prevents water flow depending on up-and-down movement of pull arm connection part ( 16 ).
Claims
exact text as granted — not AI-modified1 . A stoppered discharge system (A) mounted on toilet reservoirs and used for discharging of any amount of water desired by the user, which comprises:
a discharge bearing ( 1 ) which is fixed to exit channel of reservoir from cylindrical region ( 38 ) hereon and to lower interior surface of reservoir from rabbetted sitting surface ( 39 ) and has two gasket channels ( 33 ) in cylindrical region ( 38 ); sealing gaskets ( 2 ) which are fixed to said gasket channels ( 33 ); a lantern ( 3 ) having a body in a hollow cylindrical form in which a discharge tube ( 4 ), comprising a styrofoam clip ( 9 ), a styrofoam ( 10 ), a segment ( 11 ), a discharge gasket ( 12 ) and a styrofoam lower plate ( 13 ), is located; a discharge tube ( 4 ) having a hollow cylindrical form wherein its upper and lower surfaces are opened, two finger engagement recesses ( 71 ) are located on upper side hereof to attach pull arm finger ( 93 ), a segment-gasket sitting surface ( 75 ) formed by diameter attenuation at lower side hereof where two segments ( 11 ) and discharge gasket ( 12 ) in between are placed top of each other; a pull arm connection part ( 16 ) attached to pull arm ( 5 ); a styrofoam ( 10 ) having a cylindrical structure wherein discharge tube engagement opening ( 61 ) is located throughout in the middle; a discharge bearing support ( 8 ) having a body in flat elongated plate form: characterized in that,
the discharge bearing ( 1 ) comprises a support channel ( 31 ) in form of a track or channel which abuts to back interior surface of reservoir and in which discharge bearing support ( 8 ) engages to prevent discharge bearing ( 1 ) from rotating in an uncontrolled way and a front flat region ( 37 ) abutting front interior surface of reservoir and extending as directly opposed to support channel ( 31 );
a bearing locks ( 36 ) at both sides of discharge bearing ( 1 ) used to fix the position of lantern ( 3 ) and to be engaged with lantern fingers ( 41 ) belonging to lantern ( 3 );
a finger engagement space ( 32 ) extending on said support channel ( 31 ) in which discharge bearing support finger ( 81 ) is attached;
a styrofoam lower plate sitting surface ( 30 ) extending on said discharge bearing ( 1 ) on which styrofoam lower plate ( 13 ) is located.
2 . A stoppered discharge system (A) according to claim 1 characterized in that, the lantern ( 3 ) comprises two wall abutments ( 42 ) as outward protrusion extending as opposed near to upper side of said lantern ( 3 ) and used as a support by tightly abutting front and back interior walls of reservoir to prevent collapse or volume constrictions, that might be occurred during plastering and tiling especially in built-in reservoirs and outside effects which obstruct or limit the function of stoppered discharge system (A).
3 . A stoppered discharge system (A) according to claim 2 characterized in that lantern lower rabbet ( 45 ) formed by diameter enlargement is located at lower side of lantern ( 3 ).
4 . A stoppered discharge system (A) according to claim 3 characterized in that, lantern fingers ( 41 ) extending as opposed are located on lantern lower plate ( 45 ) as outward protrusions.
5 . A stoppered discharge system (A) according to claim 1 characterized in that, lantern upper opening channels ( 44 ), in which discharge tube corrugations ( 72 ) of discharge tube ( 4 ) are engaged and facing as opposed to each other, are located at the interior surface of lantern upper opening ( 43 ) of lantern ( 3 ).
6 . A stoppered discharge system (A) according to claim 1 characterized in that, longitudinal discharge tube corrugations ( 72 ), which fit in lantern upper opening channels ( 44 ) and extending as opposed, are located in discharge tube middle portion ( 77 ).
7 . A stoppered discharge system (A) according to claim 1 characterized in that, longitudinal discharge tube styrofoam corrugations ( 76 ), which are formed by diameter attenuation relative to discharge tube middle portion ( 77 ) and extending as opposed on styrofoam engagement surface ( 74 ), are located between segment-gasket sitting surface ( 75 ) and discharge tube middle portion ( 77 ) on discharge tube ( 4 ).
8 . A stoppered discharge system (A) according to claim 1 characterized in that, styrofoam clip abutment rabbet ( 73 ), on which styrofoam clip ( 9 ) is fitted, is located on discharge tube ( 4 ) where discharge tube middle portion ( 77 ) finishes and styrofoam surface ( 74 ) starts.
9 . A stoppered discharge system (A) according to claim 1 characterized in that, styrofoam ( 10 ) comprises longitudinal Styrofoam channels ( 62 ), in which discharge tube styrofoam corrugations ( 76 ) are engaged and facing as opposed to each other, at the interior surface of discharge tube engagement opening ( 61 ).
10 . A stoppered discharge system (A) according to claim 1 characterized in that, discharge bearing support ( 8 ) comprises a discharge bearing support lower region ( 83 ) formed in one-piece to the middle extent hereof and subsequently a discharge bearing support upper region ( 85 ) formed in two arms having a discharge bearing support space ( 84 ) as a long gap in the middle hereof.
11 . A stoppered discharge system (A) according to claim 10 characterized in that, a discharge bearing support ( 8 ) comprises a discharge bearing support finger ( 81 ), having an elastic structure, at one end hereof.
12 . A stoppered discharge system (A) according to claim 10 characterized in that, a discharge bearing support ( 8 ) comprises a discharge bearing support arm ( 82 ), conjoined with discharge bearing support upper region ( 85 ), at other end hereof.
13 . A stoppered discharge system (A) according to claim 10 , characterized in that, in mounted state, discharge bearing support finger ( 81 ) is located into discharge bearing support channel ( 31 ) and attached to discharge bearing support finger engagement space ( 32 ) and at the same time discharge bearing support arm ( 82 ) is attached to a fixed point in stoppered discharge system (A) or in reservoir.
14 . A stoppered discharge system (A) according to claim 1 characterized in that, pull arm ( 5 ) is comprised of a pull arm grip ( 94 ) in a stick form, a pull arm eyelet ( 91 ) at one end of this grip in a circular form and pull arm jaws ( 92 ) at the other end hereof in a U-shaped form and two pull arm fingers ( 93 ) are located at the ends of pull arm jaws ( 92 ) and at the interior side of U-form with facing as opposed to each other.
15 . A stoppered discharge system (A) according to claim 1 characterized in that, styrofoam lower plate ( 13 ) has a disk shaped structure to provide a sitting surface for styrofoam and styrofoam lower plate water passage openings ( 51 ) are located hereon to provide discharging of water inside the lantern ( 3 ) in a controlled way.
16 . A stoppered discharge system (A) according to claim 16 characterized in that, styrofoam lower plate opening ( 52 ), having channels in which styrofoam engagement surface ( 71 ) at discharge tube ( 4 ) could be passed, is located in the middle of styrofoam lower plate ( 13 ).
17 . A stoppered discharge system (A) according to claim 1 , characterized in that, in mounted state, styrofoam lower plate ( 13 ) is located on styrofoam lower plate sitting, surface ( 30 ) over discharge bearing ( 1 ) and on the portion of lantern lower rabbet ( 45 ) facing the interior portion of lantern ( 3 ).Join the waitlist — get patent alerts
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