CN113813815A - Linkage type cock gate valve - Google Patents

Linkage type cock gate valve Download PDF

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Publication number
CN113813815A
CN113813815A CN202110964039.5A CN202110964039A CN113813815A CN 113813815 A CN113813815 A CN 113813815A CN 202110964039 A CN202110964039 A CN 202110964039A CN 113813815 A CN113813815 A CN 113813815A
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CN
China
Prior art keywords
wall
opening
transmission pipeline
piece
closing
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Granted
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CN202110964039.5A
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Chinese (zh)
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CN113813815B (en
Inventor
刘轲
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Individual
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Individual
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Publication of CN113813815B publication Critical patent/CN113813815B/en
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/68Treatment of water, waste water, or sewage by addition of specified substances, e.g. trace elements, for ameliorating potable water
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K27/00Construction of housing; Use of materials therefor
    • F16K27/06Construction of housing; Use of materials therefor of taps or cocks
    • F16K27/065Construction of housing; Use of materials therefor of taps or cocks with cylindrical plugs
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K5/00Plug valves; Taps or cocks comprising only cut-off apparatus having at least one of the sealing faces shaped as a more or less complete surface of a solid of revolution, the opening and closing movement being predominantly rotary
    • F16K5/04Plug valves; Taps or cocks comprising only cut-off apparatus having at least one of the sealing faces shaped as a more or less complete surface of a solid of revolution, the opening and closing movement being predominantly rotary with plugs having cylindrical surfaces; Packings therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K5/00Plug valves; Taps or cocks comprising only cut-off apparatus having at least one of the sealing faces shaped as a more or less complete surface of a solid of revolution, the opening and closing movement being predominantly rotary
    • F16K5/04Plug valves; Taps or cocks comprising only cut-off apparatus having at least one of the sealing faces shaped as a more or less complete surface of a solid of revolution, the opening and closing movement being predominantly rotary with plugs having cylindrical surfaces; Packings therefor
    • F16K5/0407Plug valves; Taps or cocks comprising only cut-off apparatus having at least one of the sealing faces shaped as a more or less complete surface of a solid of revolution, the opening and closing movement being predominantly rotary with plugs having cylindrical surfaces; Packings therefor with particular plug arrangements, e.g. particular shape or built-in means

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Health & Medical Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Mechanically-Actuated Valves (AREA)
  • Sliding Valves (AREA)

Abstract

The invention provides a linkage type cock gate valve, which relates to the technical field of gate valves.A push rod is fixed at the lower left corner of an inner arc plate, the left end of the push rod extends into a push shaft, the left end of the push rod is embedded with a piston, the piston is connected with the inner wall of the push shaft in a sliding way and is movably connected with a release port, the front end of a storage part is connected with an opening and closing cover through threads, the outer wall of a transmission pipeline is transversely provided with a slide way corresponding to the opening and closing cover, and the opening and closing cover extends out of the slide way from back to front and slides along the slide way; transmission pipeline top just is located conveyer pipe left end fixed mounting and has attaches the box, and transmission pipeline back wall and lie in the attached box and just the back wall installs the mixing box through the bolt, attaches the inside rotation of box and is connected with by going to the horizontal pivot of arranging after, and the rubber pad can be pressed to the trigger block many times to can the periodic release mineral substance interpolation along with the rotary motion of valve rod, good linkage is realized with the release of mineral substance to the opening and close of opening and close piece, under the condition that does not need manual operation, automatic improvement quality of water.

Description

Linkage type cock gate valve
Technical Field
The invention relates to the technical field of gate valves, in particular to a linkage type cock gate valve.
Background
The gate valve is an opening and closing member gate plate, the moving direction of the gate plate is vertical to the fluid direction, the gate valve can only be fully opened and fully closed, and the gate valve is not suitable for different gate parameters.
Most of the existing cock gate valves are only used as opening and closing parts and used for controlling the on-off of a water source, the use function is single, when a drinking water source is conveyed, the gate valve is not beneficial to shunting a part of the water source for other production and manufacturing, the water source needs to be shunted after the water source is conveyed, and the complexity of the process is increased; and mineral substances are required to be added into part of drinking water, and the closed cock gate valve is not beneficial to releasing the mineral substances into a water source while delivering water, and is not beneficial to improving the water quality.
Disclosure of Invention
The technical problem to be solved by the invention is as follows: closed cock gate valve is unfavorable for releasing mineral substance in the water source when water delivery, is unfavorable for improving quality of water, to the problem that prior art exists, provides a linkage cock gate valve.
The purpose and the effect of the invention are achieved by the following specific technical means: a linkage type cock gate valve comprises a transmission pipeline, a valve body and a valve rod, wherein the valve body is arranged at the top of the transmission pipeline, and the valve rod is vertically arranged in the middle of the inside of the valve body and is rotationally connected with the valve body;
the transmission pipeline is inserted and installed with a transmission pipe at the top and positioned at the left side of the valve body, a linkage piece is hinged to the right wall in the transmission pipe, a reserved groove is formed in the transmission pipeline and positioned at the right side of the transmission pipe, a trigger assembly is arranged in the reserved groove and comprises a storage piece, a push shaft, an inner arc plate and a push rod, the storage piece is positioned in the reserved groove and is in sliding connection with the storage piece, the push shaft is positioned at the lower left corner of the storage piece and is fixed with the storage piece into a whole, the left end of the push shaft extends into the transmission pipe and is abutted against the linkage piece, a release port is formed in the bottom wall of the push shaft, the inner arc plate is arranged at the right side in the storage piece, the push rod is fixed at the lower left corner of the inner arc plate, the left end of the push rod extends into the push shaft, a piston is embedded at the left end of the push rod and is in sliding connection with the inner wall of the push shaft and is movably connected with the release port, and an opening and closing cover is connected with the front end of the storage piece through threads, a slide way is transversely arranged at the position, corresponding to the opening and closing cover, of the outer wall of the transmission pipeline, and the opening and closing cover extends out of the slide way from back to front and slides along the slide way;
the transmission pipeline top just is located conveyer pipe left end fixed mounting and has affiliated box, and transmission pipeline back wall and lie in the attached box and just the back wall installs the mixing box through the bolt, the inside rotation of attached box is connected with by going to the horizontal pivot of arranging after, and inside the horizontal pivot rear end runs through into the mixing box, horizontal pivot front end extends the attached box antetheca, and the horizontal pivot front end is pegged graft and is had the cooling rod, both ends are equipped with main blade and vice blade respectively around the horizontal pivot outer wall, and inside main blade bottom extended to the transmission pipeline, a plurality of entry has evenly been seted up to the main blade lateral wall, and has evenly seted up a plurality of aperture in the position that horizontal pivot outer wall left side was close on in the vice blade.
Further preferred embodiments: the valve body is internally provided with a cavity, the bottom of the cavity is communicated with the inside of a transmission pipeline, the valve rod penetrates through the middle of the cavity and is rotatably connected with the cavity through threads, a pressure plate located inside the cavity is fixed on the outer wall of the valve rod, the outer wall of the pressure plate is attached to the inner wall of the cavity, limiting blocks are fixed on two sides of the bottom end of the outer wall of the valve rod and located inside the valve body, the limiting blocks move upwards along with the valve rod to abut against the lower right corner of the cavity, an opening and closing piece is fixed at the bottom end of the valve rod, the bottom end of the opening and closing piece extends into the inside of the transmission pipeline, a water conveying pipeline passing through the other side of the opening and closing piece is arranged on the side edge of the opening and closing piece, and the opening and closing of the inside of the transmission pipeline is controlled through the opening and closing piece.
Further preferred embodiments: the right end of the storage piece is embedded with a rubber pad, the rubber pad is in an arc-shaped convex shape, the inner arc plate is consistent with the rubber pad in shape, a trigger block is fixed on one side of the top end of the outer wall of the opening and closing piece, the rubber pad and the trigger block are arranged on the same horizontal plane, and the outer end of the trigger block is in contact with the rubber pad.
Further preferred embodiments: both sides all are fixed with the stopper about storing a outer wall, and stopper along reservation inslot wall sliding connection, it removes left to store under the state that triggers the piece and contact the rubber pad.
Further preferred embodiments: a traction spring is fixed between the left wall of the storage part and the left wall in the reserved groove, an expansion spring is fixed between the left wall of the inner arc plate and the left wall in the storage part, and the push rod moves left along with the left movement of the inner arc plate.
Further preferred embodiments: the inside of the push shaft and the inside of the storage part are both hollow and communicated, the outer diameter of the piston is larger than that of the push rod, the opening and closing of the release port are controlled through the piston, and the release port is communicated with the inside of the conveying pipe.
Further preferred embodiments: the roof just is located that preformed groove below articulates in the transmission pipeline has the breakwater, and the breakwater bottom has evenly inlayed the guide plate that a plurality of equidistance were arranged from left to right, the guide plate all is three horn shapes, and the hookup location of linkage piece bottom joint between breakwater and transmission pipeline, the breakwater is located the opening and closing left side.
Further preferred embodiments: the conveyer pipe end is connected in the mixing box, and the quantity of main blade and auxiliary blade is a plurality of pieces and is encircleing and arranges.
Further preferred embodiments: there is the bottom mixing box back wall bottom through threaded connection, and the mixing box roof has the top cap through threaded connection, the top cap bottom is rotated and is connected with vertical pivot, and vertical pivot outer wall bottom is and encircles even scarf joint and have a plurality of stirring leaves, the stirring leaf is located vice blade back upper place and is connected rather than the transmission, and the equal joint of stirring leaf side two walls has the screen of inlaying.
The invention has the beneficial effects that:
1. the position of the bottom of the cavity communicated with the transmission pipeline is positioned in the water flow input direction, water flow can overflow into the cavity along with the continuous input of the water flow to the left side of the transmission pipeline, the pressure plate is pressed upwards by the water pressure, the valve rod can rotate, thereby rotating the opening and closing piece, when the water conveying channel reaches a certain angle, the two ends of the water conveying channel respectively face the left side and the right side of the transmission pipeline, the water source can pass through the water conveying channel and be conveyed to the right end of the transmission pipeline, when the water flow is reduced, the water flow slowly exits from the cavity, if the water flow pressure is an intermediate value, the opening space of the water delivery channel is smaller, the water flow is controlled, when the pressure of the water flow is reduced to be smaller, the transmission pipeline is closed by the opening and closing piece, the rotation angle of the opening and closing piece is controlled by the pressure of the water flow, the opening angle of the water delivery channel is directly determined according to the water flow pressure, the opening and closing of the transmission pipeline are controlled, the automatic opening and closing effect can be realized, and the convenience of the water delivery operation of the gate valve is effectively improved;
2. in the process of opening and closing the gate by rotating the opening and closing piece, the triggering block can press the rubber pad for multiple times, so that mineral substance adding substances can be released periodically along with the rotating action of the valve rod, when the water flow is larger, the releasing amount of the additives is larger, the mineral substances can be uniformly diffused in the water by the impact force when the water flow flows, the water quality is improved, when the water flow is smaller, the opening and closing piece seals the interior of the transmission pipeline, the triggering block is positioned in the opposite direction of the rubber pad, the triggering block and the rubber pad are not in contact with each other, the release of the mineral substances is stopped, the condition of non-uniform content of the mineral substances in the water is avoided, the good linkage between the opening and closing of the opening and closing piece and the release of the mineral substances is realized, and the water quality is automatically improved under the condition of no manual operation;
3. the linkage piece rotates away from the water baffle, the water baffle is vertical, the rubber pad faces the input direction of a water source, when the water source is input into the transmission pipeline, a part of water source impacts the water baffle, and water flow is guided to the conveying pipe through the triangular guide plates, so that a part of water flow enters the conveying pipe, along with the increase of the water amount in the conveying pipe, the water flow is connected into the mixing box from the conveying pipe, the automatic water distribution effect is achieved, and a part of water source after being distributed is stored by the mixing box;
4. the solid matter filter bag to be mixed is placed in the containing and carrying groove on the side face of the stirring blade, the solid matter to be mixed is blocked by the embedded net, the solid matter to be mixed is stopped in the containing and carrying groove, the solid matter to be mixed is impacted by water flow in the mixing box, the current longitudinal rotating shaft is vertically arranged in the mixing box, when the auxiliary blade is driven to rotate by the longitudinal rotating shaft, the auxiliary blade can be connected with and drives the stirring blade, the stirring blade rotates in the mixing box, the solid matter to be mixed can continuously rotate in the water flow, the mixing and stirring effects can be improved, solid-liquid matter stirring work is achieved, the solid-liquid matter stirring work can be completed under the condition that electric energy is not consumed, labor is saved, and the practicability is improved;
5. cooling through the cooling rod is to rivers, and the rivers after the cooling are released to the mixing box in from a plurality of apertures, supply cold water to the mixing box, because the aperture is close to vice blade, can evenly spread cold water in the mixing box when vice blade rotates to reduce the temperature, avoid waiting to mix the solid matter and appear the matter and become because of high temperature.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the interior of the conveying pipeline structure of the present invention;
FIG. 3 is a schematic view of the closure of the present invention;
FIG. 4 is an enlarged view of the part A of the present invention;
FIG. 5 is a schematic view of the structural connection between the trigger block and the rubber pad of the present invention
FIG. 6 is a schematic view of the interior of the structure of the pre-groove of the present invention;
FIG. 7 is a schematic view of the interior of the mixing box structure of the present invention;
FIG. 8 is an internal view of the transverse rotation shaft structure of the present invention;
FIG. 9 is a partial end view of the transverse pivot structure of the present invention;
FIG. 10 is a schematic view of the stirring blade and net-embedded structure of the present invention;
in fig. 1-10: the device comprises a transmission pipeline 1, a valve body 101, a valve rod 102, a pressurizing plate 103, a limiting block 104, an opening and closing piece 2, a water conveying channel 201, a trigger block 202, a conveying pipe 3, a linkage piece 301, a preformed groove 4, a storage piece 5, a rubber pad 501, a push shaft 502, a release opening 503, a limiting block 504, an inner arc plate 6, a push rod 601, a piston 602, a water baffle 7, a guide plate 701, an auxiliary box 8, a transverse rotating shaft 801, a main blade 802, an inlet 803, a small hole 804, an auxiliary blade 805, a mixing box 9, a bottom cover 901, a top cover 902, a longitudinal rotating shaft 10, a stirring blade 1001, an embedded net 1002, an opening and closing cover 11, a slide way 12, a traction spring 13, a telescopic spring 14, a cooling rod 15 and a cavity 16.
Detailed Description
Referring to fig. 1-10, a linkage type plug gate valve includes a transmission pipeline 1, a valve body 101 and a valve rod 102, wherein the valve body 101 is installed on the top of the transmission pipeline 1, and the valve rod 102 is vertically arranged in the middle of the interior of the valve body 101 and is rotatably connected with the valve body 101;
specifically, firstly, an external water source conveying and transmitting pipeline 1 is connected to the left end of the conveying pipeline 1, and then an external water source output and transmitting pipeline 1 is connected to the right end of the conveying pipeline 1, so that a water source flows from left to right in the conveying pipeline 1;
a cavity 16 is formed in the valve body 101, the bottom of the cavity 16 is communicated with the interior of the transmission pipeline 1, the valve rod 102 penetrates through the middle of the cavity 16 and is rotatably connected with the cavity through threads, a pressure plate 103 located in the cavity 16 is fixed on the outer wall of the valve rod 102, the outer wall of the pressure plate 103 is tightly attached to the inner wall of the cavity 16, a limiting block 104 is fixed on each of two sides of the bottom end of the outer wall of the valve rod 102, the limiting block 104 is located in the valve body 101, the limiting block 104 moves upwards along with the upward movement of the valve rod 102 to abut against the lower right corner of the cavity 16, an opening and closing part 2 is fixed at the bottom end of the valve rod 102, the bottom end of the opening and closing part 2 extends into the transmission pipeline 1, a water conveying pipeline 201 penetrating through the other side of the opening and closing part 2 is formed in the side edge of the opening and closing part 2, and the opening and closing of the interior of the transmission pipeline 1 are controlled through the opening and closing part 2;
furthermore, the water channel 201 of the opening and closing member 2 faces the front end in the initial state, the outer side of the water channel 201 is shielded by the transmission pipeline 1, so that the water flow cannot enter the water channel 201, at this time, the water source cannot pass through the transmission pipeline 1, the position of the bottom of the cavity 16 communicated with the transmission pipeline 1 is located in the water flow input direction, as the water flow is continuously input to the left side of the transmission pipeline 1, the water flow overflows into the cavity 16, and as the water flow entering the cavity 16 increases, the water pressure in the cavity 16 increases, the water pressure pushes the pressure plate 103 upwards, because the outer wall of the pressure plate 103 is attached to the inner wall of the cavity 16, the water pressure can only be accumulated in the space of the cavity 16 below the pressure plate 103, the water pressure increases, and because the valve rod 102 is rotatably connected with the wall 16 through the screw thread, when the pressure plate 103 moves upwards, the valve rod 102 rotates, thereby rotating the opening and closing member 2, when the water conveying channel 201 reaches a certain angle, two ends of the water conveying channel are respectively towards the left side and the right side of the transmission pipeline 1, a water source can pass through the water conveying channel 201 and be conveyed to the right end of the transmission pipeline 1, so that water flow is conveyed, and after the opening and closing piece 2 moves upwards to a position of 0.5cm-1cm along with continuous increase of water pressure, the limiting block 104 is abutted against the lower right corner of the cavity 16, at the moment, the opening and closing piece 2 is limited to move upwards continuously, the water conveying channel 201 keeps the left-right orientation at present, and normal conveying of the water flow can be guaranteed;
further, when the water flow decreases, the water flow slowly exits the cavity 16, and the pressure of the top surface of the water level and the space below the pressure plate 103 in the cavity 16 decreases, the pressure plate 103 moves downward due to the water pressure and the self-weight, the valve rod 102 rotates, the opening and closing member 2 rotates synchronously, the more the water flow pressure decreases, the larger the rotation angle of the opening and closing member 2 increases, if the water flow pressure is a middle value, the two ends of the water delivery channel 201 respectively face the front left corner and the rear right corner, the opening space of the water delivery channel is smaller, the water flow is controlled, when the water flow pressure decreases to a smaller value, the valve rod 102 moves downward completely, the water delivery channel 201 rotates to the front and rear directions, the transmission channel 1 is closed, the rotation angle of the opening and closing member 2 is controlled by the water flow pressure, the opening angle of the water delivery channel 201 is directly determined according to the water flow pressure, the opening and closing of the transmission channel 1 is controlled, and the automatic opening and closing effect can be realized, the convenience of the water delivery operation of the gate valve is effectively improved;
the top of the transmission pipeline 1 and the left side of the valve body 101 are inserted with the transmission pipe 3, the right wall in the transmission pipe 3 is hinged with the linkage member 301, the transmission pipeline 1 is internally provided with a reserved groove 4 at the right side of the transmission pipe 3, the reserved groove 4 is internally provided with a trigger assembly, the trigger assembly comprises a storage member 5, a push shaft 502, an inner arc plate 6 and a push rod 601, the storage member 5 is positioned in the reserved groove 4 and is in sliding connection with the reserved groove 4, the push shaft 502 is positioned at the left lower corner of the storage member 5 and is fixed with the storage member as a whole, the left end of the push shaft 502 extends into the transmission pipe 3 and is abutted against the linkage member 301, the bottom wall of the push shaft 502 is provided with a release opening 503, the inner arc plate 6 is arranged at the right side in the storage member 5, the push rod 601 is fixed at the left lower corner of the inner arc plate 6, the left end of the push rod 601 extends into the push shaft 502, the left end of the push rod 601 is embedded with a piston 602, and the piston 602 is in sliding connection with the inner wall of the push shaft 502 and is movably connected with the release opening 503, the front end of the storage piece 5 is connected with an opening and closing cover 11 through threads, a slide way 12 is transversely arranged on the outer wall of the transmission pipeline 1 corresponding to the opening and closing cover 11, and the opening and closing cover 11 extends out of the slide way 12 from back to front and slides along the slide way 12;
preparation work:
when water is conveyed through the conveying pipeline 1, a water additive such as potassium chloride can be prepared, then the opening and closing cover 11 is unscrewed, the additive is filled into the storage piece 5, and then the opening and closing cover 11 is covered to finish the preparation work of storing the additive;
a traction spring 13 is fixed between the left wall of the storage part 5 and the left wall in the preformed groove 4; in the initial state, the storage part 5 is pressed rightwards by the traction spring 13 due to the elastic force of the traction spring 13, and the opening and closing cover 11 is also positioned at the rightmost side of the slide way 12;
a rubber pad 501 is embedded at the right end of the storage member 5, the rubber pad 501 is arc-shaped and convex, the inner arc plate 6 is consistent with the rubber pad 501 in shape, a trigger block 202 is fixed at one side of the top end of the outer wall of the opening and closing member 2, the rubber pad 501 and the trigger block 202 are arranged in the same horizontal plane, and the outer end of the trigger block 202 is contacted with the rubber pad 501;
the storage member 5 moves leftwards when the trigger block 202 is in contact with the rubber pad 501;
an expansion spring 14 is fixed between the left wall of the inner arc plate 6 and the inner left wall of the storage part 5, and the push rod 601 moves left along with the left movement of the inner arc plate 6; the inside of the push shaft 502 and the inside of the storage part 5 are both hollow and communicated, the outer diameter of the piston 602 is larger than that of the push rod 601, the opening and closing of the release opening 503 are controlled by the piston 602, and the release opening 503 is communicated with the inside of the delivery pipe 3; in the initial state, the inner arc plate 6 is pressed to the right by the extension spring 14 due to the elastic force of the extension spring 14, the right wall of the inner arc plate 6 is close to the left wall of the rubber pad 501, and the piston 602 is currently positioned on the right side of the release opening 503;
a triggering step:
when the valve rod 102 rotates, the trigger block 202 rotates simultaneously, the water delivery channel 201 rotates to the front and back and faces backwards, the trigger block 202 just abuts against the rubber pad 501, the inner arc plate 6 is indirectly abutted by the trigger block 202 and moves to the left, the expansion spring 14 is compressed by the inner arc plate 6, the push rod 601 moves to the left along with the left movement of the inner arc plate 6, the piston 602 moves to the left inside the push shaft 502, when the piston 602 moves to the left side of the release opening 503, the release opening 503 is opened because the outer diameter of the piston 602 is larger than that of the push rod 601, and at the moment, the additive in the storage part 5 is released from the release opening 503;
the upper side and the lower side of the outer wall of the storage part 5 are both fixed with a limiting block 504, and the limiting blocks 504 are connected in a sliding way along the inner wall of the reserved groove 4;
the rubber pad 501 is deformed after being pressed by the trigger block 202, the storage part 5 also moves leftwards, the limiting block 504 moves leftwards along the inner wall of the reserved groove 4, the stability of the storage part 5 during movement can be kept through the limiting block 504, the traction spring 13 is extruded by the storage part 5, the push shaft 502 extends into the conveying pipe 3 to push the linkage part 301 leftwards, and the release opening 503 enters the conveying pipe 3 and is communicated with the conveying pipe;
the inner top wall of the transmission pipeline 1 and the position below the reserved groove 4 are hinged with a water baffle 7, the bottom of the water baffle 7 is evenly embedded with a plurality of guide plates 701 which are arranged at equal intervals from left to right, the guide plates 701 are all triangular, the bottom end of the linkage piece 301 is clamped at the connecting position between the water baffle 7 and the transmission pipeline 1, and the water baffle 7 is positioned on the left side of the opening and closing piece 2; the tail end of the conveying pipe 3 is connected with a mixing box 9; in the initial state, the linkage piece 301 clamps the water baffle 7, the water baffle 7 is transversely arranged, and the water baffle 7 is close to the inner top wall of the transmission pipeline 1;
water guiding step:
when the pushing shaft 502 pushes the linkage piece 301 to the left, the linkage piece 301 rotates clockwise by 10 degrees to 20 degrees, the linkage piece 301 rotates away from the water baffle 7, the water baffle 7 is not positioned, the water baffle 7 naturally drops and turns over by 90 degrees, the water baffle 7 is vertical, and the rubber pad 501 faces the input direction of a water source;
when the opening and closing piece 2 is opened, the storage piece 5 moves leftwards to trigger the linkage piece 301, the piston 602 moves leftwards to open the release opening 503, the water baffle 7 turns over at the lower right side of the conveying pipe 3 to guide water, when the water source is input into the conveying pipe 1, a part of the water source impacts the water baffle 7, and guides water flow to the conveying pipe 3 through the plurality of triangular guide plates 701, so that a part of the water flow enters the conveying pipe 3, along with the increase of the water amount in the conveying pipe 3, the water flow can be connected into the mixing box 9 from the conveying pipe 3 to play a role of water distribution, and a part of the water source distributed is stored by the mixing box 9;
meanwhile, the additive is released into the conveying pipe 3 from the release port 503, the additive can be diffused in the water in the conveying pipe 3, the water quality can be effectively improved, and in the process of opening and closing the opening and closing member 2 by rotating, the trigger block 202 will press the rubber pad 501 for many times, so that as the valve stem 102 is rotated, the mineral supplement substance is periodically released, with greater water flow, the more the release amount of the additive is, the more the impact force of the flowing water flow can make the mineral substances uniformly diffuse in the water, the water quality is improved, when the water flow is small, the opening and closing piece 2 seals the interior of the transmission pipeline 1, the trigger block 202 is located in the opposite direction of the rubber pad 501, and the trigger block and the rubber pad are not contacted with each other, so that the release of mineral substances is stopped, the condition that the content of the mineral substances in water is not uniform is avoided, the opening and closing of the opening and closing piece 2 and the release of mineral substances realize good linkage, and the water quality is automatically improved without manual operation;
an auxiliary box 8 is fixedly installed at the top of the transmission pipeline 1 and positioned at the left end of the transmission pipeline 3, a mixing box 9 is installed on the rear wall of the transmission pipeline 1 and positioned at the front and rear walls of the auxiliary box 8 through bolts, a transverse rotating shaft 801 arranged from front to back is rotatably connected inside the auxiliary box 8, the rear end of the transverse rotating shaft 801 penetrates into the mixing box 9, the front end of the transverse rotating shaft 801 extends out of the front wall of the auxiliary box 8, a cooling rod 15 is inserted at the front end of the transverse rotating shaft 801, a main blade 802 and an auxiliary blade 805 are respectively arranged at the front end and the rear end of the outer wall of the transverse rotating shaft 801, the bottom of the main blade 802 extends into the transmission pipeline 1, a plurality of inlets 803 are uniformly formed in the side wall of the main blade 802, and a plurality of small holes 804 are uniformly formed in the position, close to the auxiliary blade 805, on the left side of the outer wall of the transverse rotating shaft 801;
mixing:
when water flow flows in the transmission pipeline 1, the main blade 802 is impacted, the main blade 802 rotates after being impacted by the water flow, the transverse rotating shaft 801 rotates to be matched with the main blade 802 to rotate, meanwhile, the auxiliary blade 805 rotates, the auxiliary blade 805 is indirectly driven through impact force of the water flow, additional energy is not required to be consumed, and the effects of energy conservation and environmental protection are achieved;
the bottom end of the rear wall of the mixing box 9 is connected with a bottom cover 901 through threads, the top wall of the mixing box 9 is connected with a top cover 902 through threads, the bottom of the top cover 902 is rotatably connected with a longitudinal rotating shaft 10, the bottom end of the outer wall of the longitudinal rotating shaft 10 is uniformly embedded with a plurality of stirring blades 1001 in a surrounding mode, the stirring blades 1001 are positioned above the rear portion of the auxiliary blade 805 and are in transmission connection with the auxiliary blade 805, and the two walls on the side surfaces of the stirring blades 1001 are respectively clamped with an embedded net 1002;
the number of the main blades 802 and the number of the auxiliary blades 805 are a plurality of blades and are arranged in a surrounding way;
stirring solid-liquid substances: when brewing or solid-liquid substance stirring is needed, the top cover 902 can be unscrewed, the embedded net 1002 on the side surface of the stirring blade 1001 is broken off, the side surface of the stirring blade 1001 is provided with a containing groove, solid substances to be mixed can be filtered and packed into the containing groove on the side surface of the stirring blade 1001, then the embedded net 1002 is covered, the solid substances to be mixed are blocked by the embedded net 1002, the solid substances to be mixed stay in the containing groove, the top cover 902 is screwed back to the mixing box 9, the solid substances to be mixed are impacted by water flow in the mixing box 9, the longitudinal rotating shaft 10 is vertically arranged in the mixing box 9, the auxiliary blade 805 is connected in the stirring blade 1001, when the auxiliary blade 805 is driven to rotate by the longitudinal rotating shaft 10, the auxiliary blade 805 is connected with the stirring blade 1001, the stirring blade 1001 rotates in the mixing box 9, the solid substances to be mixed can continuously rotate in the water flow, and the mixing and stirring effects can be improved, the solid-liquid substance stirring work is realized, the cooling rod 15 generates low temperature, the inlet faces to the flowing direction of water flow, when the water flow impacts the main blade 802, the water flow can enter the inside of the main blade 802 from the inlet 803, the water flow in the main blade 802 enters the transverse rotating shaft 801, the water flow is cooled through the cooling rod 15, the cooled water flow is released from the small holes 804, because the small holes 804 are close to the auxiliary blade 805, the auxiliary blade 805 can diffuse cold water into the mixing box 9 when rotating, the water temperature is reduced, and the quality change of solid substances to be mixed due to high temperature is avoided.

Claims (9)

1. The utility model provides a linkage formula cock gate valve, includes transmission pipeline (1), valve body (101) and valve rod (102), valve body (101) are installed in transmission pipeline (1) top, and valve rod (102) are vertical to be set up in valve body (101) inside middle and rotate with valve body (101) and be connected its characterized in that:
the conveying pipe (3) is inserted into the top of the conveying pipe (1) and positioned on the left side of the valve body (101), the conveying pipe (3) is hinged to the inner right wall of the conveying pipe (3), a reserved groove (4) is formed in the conveying pipe (1) and positioned on the right side of the conveying pipe (3), a trigger assembly is arranged in the reserved groove (4), the trigger assembly comprises a storage piece (5), a push shaft (502), an inner arc plate (6) and a push rod (601), the storage piece (5) is positioned in the reserved groove (4) and is in sliding connection with the reserved groove, the push shaft (502) is positioned at the lower left corner of the storage piece (5) and is fixed with the storage piece into a whole, the left end of the push shaft (502) extends into the conveying pipe (3) and is abutted against the linkage piece (301), a release port (503) is formed in the bottom wall of the push shaft (502), and the inner arc plate (6) is arranged on the inner right side of the storage piece (5), the push rod (601) is fixed at the lower left corner of the inner arc plate (6), the left end of the push rod (601) extends into the push shaft (502), the piston (602) is embedded at the left end of the push rod (601), the piston (602) is connected with the inner wall of the push shaft (502) in a sliding mode and is movably connected with the release port (503), the front end of the storage piece (5) is connected with an opening and closing cover (11) through threads, a slide way (12) is transversely formed in the position, corresponding to the opening and closing cover (11), of the outer wall of the transmission pipeline (1), the opening and closing cover (11) extends out of the slide way (12) from back to front and slides along the slide way (12);
an auxiliary box (8) is fixedly arranged at the top of the transmission pipeline (1) and positioned at the left end of the transmission pipeline (3), and a mixing box (9) is arranged on the rear wall of the transmission pipeline (1) and right behind the accessory box (8) through bolts, the inside of the auxiliary box (8) is rotatably connected with a transverse rotating shaft (801) which is arranged from front to back, the rear end of the transverse rotating shaft (801) penetrates into the mixing box (9), the front end of the transverse rotating shaft (801) extends out of the front wall of the accessory box (8), the front end of the transverse rotating shaft (801) is inserted with a cooling rod (15), the front end and the rear end of the outer wall of the transverse rotating shaft (801) are respectively provided with a main blade (802) and an auxiliary blade (805), the bottom of the main blade (802) extends to the inside of the transmission pipeline (1), a plurality of inlets (803) are uniformly arranged on the side wall of the main blade (802), and a plurality of small holes (804) are uniformly arranged at the left side of the outer wall of the transverse rotating shaft (801) close to the auxiliary blade (805).
2. A linked plug gate valve as defined in claim 1 wherein: the valve body (101) is internally provided with a cavity (16), the bottom of the cavity (16) is communicated with the inside of the transmission pipeline (1), the valve rod (102) penetrates through the middle of the cavity (16) and is rotatably connected with the cavity through threads, a pressure plate (103) positioned in the cavity (16) is fixed on the outer wall of the valve rod (102), the outer wall of the pressure plate (103) is attached to the inner wall of the cavity (16), limiting blocks (104) are fixed on two sides of the bottom end of the outer wall of the valve rod (102), the limiting blocks (104) are positioned in the valve body (101), the limiting blocks (104) move upwards along with the upward movement of the valve rod (102) to abut against the right lower corner of the cavity (16), an opening and closing piece (2) is fixed at the bottom end of the valve rod (102), the bottom end of the opening and closing piece (2) extends into the transmission pipeline (1), a water conveying pipeline (201) penetrating through the other side of the opening and closing piece (2) is arranged on the side of the opening and closing piece (2), and the opening and closing of the interior of the transmission pipeline (1) is controlled by the opening and closing piece (2).
3. A linked plug gate valve as defined in claim 2 wherein: the storage piece (5) right-hand member scarf joint has rubber pad (501), and rubber pad (501) are the arc shape and bulge, interior arc board (6) are unanimous with rubber pad (501) shape, and open and close piece (2) outer wall top one side and be fixed with trigger block (202), rubber pad (501) and trigger block (202) are same horizontal plane and arrange, and trigger block (202) outer end and rubber pad (501) contact.
4. A linked plug gate valve as defined in claim 3 wherein: both sides all are fixed with stopper (504) about storing piece (5) outer wall, and stopper (504) along reservation groove (4) inner wall sliding connection, trigger piece (202) and rubber pad (501) contact state down store piece (5) and remove left.
5. A linked plug gate valve as defined in claim 4 wherein: a traction spring (13) is fixed between the left wall of the storage part (5) and the inner left wall of the preformed groove (4), an expansion spring (14) is fixed between the left wall of the inner arc plate (6) and the inner left wall of the storage part (5), and the push rod (601) moves leftwards along with the left movement of the inner arc plate (6).
6. A linked plug gate valve as defined in claim 5 wherein: the inside of the push shaft (502) and the inside of the storage part (5) are both hollow and communicated, the outer diameter of the piston (602) is larger than that of the push rod (601), the opening and closing of the release port (503) are controlled by the piston (602), and the release port (503) is communicated with the inside of the conveying pipe (3).
7. A linked plug gate valve as defined in claim 1 wherein: roof just is located preformed groove (4) below and articulates in transmission pipeline (1) has breakwater (7), and breakwater (7) bottom from left to right evenly has inlayed guide plate (701) that a plurality of equidistance were arranged, guide plate (701) all are three horn shapes, and linkage (301) bottom joint in the hookup location between breakwater (7) and transmission pipeline (1), breakwater (7) are located on the left of opening and closing piece (2).
8. A linked plug gate valve as defined in claim 1 wherein: the tail end of the conveying pipe (3) is connected to the mixing box (9), and the number of the main blades (802) and the number of the auxiliary blades (805) are all a plurality of pieces and are arranged in a surrounding mode.
9. A linked plug gate valve as defined in claim 1 wherein: there is bottom (901) mixing box (9) back wall bottom end through threaded connection, and mixing box (9) roof has top cap (902) through threaded connection, top cap (902) bottom is rotated and is connected with vertical pivot (10), and vertical pivot (10) outer wall bottom is and encircles and evenly has inlayed a plurality of stirring leaf (1001), stirring leaf (1001) are located vice blade (805) back top and are connected rather than the transmission, and the equal joint in two walls in stirring leaf (1001) side has and inlays net (1002).
CN202110964039.5A 2021-08-21 2021-08-21 Linkage cock gate valve Active CN113813815B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110964039.5A CN113813815B (en) 2021-08-21 2021-08-21 Linkage cock gate valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110964039.5A CN113813815B (en) 2021-08-21 2021-08-21 Linkage cock gate valve

Publications (2)

Publication Number Publication Date
CN113813815A true CN113813815A (en) 2021-12-21
CN113813815B CN113813815B (en) 2024-04-30

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4682757A (en) * 1986-07-18 1987-07-28 Joy Manufacturing Company Secondary backseat for gate valve
CN202580081U (en) * 2012-05-29 2012-12-05 浙江中超工业视镜有限公司 Pressure regulating automatic gate valve
CN206017824U (en) * 2016-08-25 2017-03-15 晟福(天津)流体自动控制设备有限公司 A kind of gate valve
CN210266076U (en) * 2019-05-11 2020-04-07 江苏赛诺威尔机械有限公司 High-voltage power station is with gate valve of opening and close fast of convenient operation
CN212004293U (en) * 2020-03-18 2020-11-24 古委利 Gate valve capable of being automatically adjusted
CN213039854U (en) * 2020-09-01 2021-04-23 安徽杰克耐腐泵阀有限公司 Wear-resisting rubber lining gate valve with instruction function

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4682757A (en) * 1986-07-18 1987-07-28 Joy Manufacturing Company Secondary backseat for gate valve
CN202580081U (en) * 2012-05-29 2012-12-05 浙江中超工业视镜有限公司 Pressure regulating automatic gate valve
CN206017824U (en) * 2016-08-25 2017-03-15 晟福(天津)流体自动控制设备有限公司 A kind of gate valve
CN210266076U (en) * 2019-05-11 2020-04-07 江苏赛诺威尔机械有限公司 High-voltage power station is with gate valve of opening and close fast of convenient operation
CN212004293U (en) * 2020-03-18 2020-11-24 古委利 Gate valve capable of being automatically adjusted
CN213039854U (en) * 2020-09-01 2021-04-23 安徽杰克耐腐泵阀有限公司 Wear-resisting rubber lining gate valve with instruction function

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