US3610206A - Poultry drinker valve construction - Google Patents

Poultry drinker valve construction Download PDF

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US3610206A
US3610206A US878328A US3610206DA US3610206A US 3610206 A US3610206 A US 3610206A US 878328 A US878328 A US 878328A US 3610206D A US3610206D A US 3610206DA US 3610206 A US3610206 A US 3610206A
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valve
water
reservoir
trench
float
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US878328A
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Albert W Davis
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POLY MATIC FOUNTAIN Inc
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POLY MATIC FOUNTAIN Inc
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K39/00Feeding or drinking appliances for poultry or other birds
    • A01K39/02Drinking appliances
    • A01K39/024Drinking appliances with float-controlled supply

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  • ABSTRACT A poultry drinker incorporates a float-supported 119/80 valve operable from a connected overhead water supply and Int. Cl .vA0lk 07/00, which controls water level in a drinking trench in cooperation AOlk 07/02 with buoyant ball valves positioned adjacent the trench.
  • the invention relates to poultry drinkers but particularly to drinker valve constructions for admitting and shutting off water and controlling water level.
  • the drinker of the invention incorporates a central float receptacle which stores water and receives an annular float member.
  • An outer, annular drinking trench surrounds the float receptacle and the water level between the trench and receptacle is controlled by several one-way ball valves located in the trench wall and incorporating buoyant balls which float upwardly to shut off water flow from the receptacle to the trench when the respective levels are substantially equal.
  • the annular float supports a central weight member and a control valve having a downwardly extending plunger that bears on a valve depressor cap which is centrally and adjustably mounted in the drinker base. The control valve connects to an overhead supply line. Water is admitted to the float receptacle and flows to the trench whenever water in the trench is below a predetermined level and is shut off on reaching such level.
  • FIG. 1 is a pictorial view of the composite drinker showing the same adapted for suspension from the chickenhouse roof or the like.
  • FIG. 2 is an exploded view of the composite drinker showing the slidable cover portion removed.
  • FIG. 3 is a section view of the composite drinker taken along lines 3-3 of FIG. 1 showing the various elements in a nonnal level position and with the valve closed.
  • FIG. 4 is a fragmentary section view of a portion of the housing and the one-way ball and valve housing for allowing passage of water from the float receptacle into the drinking trench.
  • FIG. 5 is a side elevation view of the one-way ball valve housing of FIG. 4.
  • FIG. 6 is a rear elevation view of the one-way ball valve housing of FIG. 5.
  • FIG. 7 is a front elevation view of FIG. 5.
  • FIG. 8 is a fragmentary pictorial view with the ball valve about to be placed into position in the inner vertical wall of the drinking trench.
  • FIG. 9 is an enlarged fragmentary section view of the valve mechanism in the open position.
  • FIG. 10 is an enlarged fragmentary section view of the valve mechanism in the closed osition.
  • FIG. 11 is a pictorial view of the valve depressor cap.
  • the present invention is directed to improvements over the drinker of the copending application and the referred to prior patents in respect to a one-way valve which controls flow to the drinking trench, to the main valve and float control mechanism, and to a sliding cover which facilitates adjustment of the main valve and float control mechanism.
  • the description will be first directed to a summary of the components and operation of the drinker as previously disclosed in the copending application and issued patents and will then proceed to a description of the improvements provided by the present invention.
  • the drinker generally designated 10, provides a narrow, annular drinking trench 11, a cylindrical, float receptacle 12, a water inlet 13, a valve 14 and valve chamber 15.
  • the trench 11 and receptacle 12 are formed by a vertical wall 16, a sloping wall 17, a connecting wall 18, an inner vertical wall 20 and a bottom wall 21.
  • water flows through valve 14 into the float receptacle I2 and then into the drinking trench 11 through a set of one-way valves which are located in a set of passageways, generally designated 23, and one of which is shown enlarged in FIG. 8.
  • the description now refers to the improvements.
  • the drinker further incorporates an annular float 30 which is made of lightweight polystyrene foam or the like and is buoyed in float receptacle 12.
  • a weight member 26 counteracts the buoyant effect of float 30 and is axially aligned with and fixedly resides partially within an opening 31 formed in float 30.
  • Weight member 26 is molded from a relatively heavy polyester plastic and has inner cylindrical sidewall portion 27 which tapers upward as best seen in FIG. 3. Tapered walls 27a converge into a flat upper wall 28 which threadably receives extension 29 of valve 14.
  • Weight member 26 loads the downwardly extending valve plunger 38 and during sudden tilting of the drinker causes a positive and rapid valve response.
  • valve chamber 15 is cylinderlike in shape having a threaded inner surface which receives externally threaded cap 39 and is connected to receive pressurized water from an overhead supply through inlet 13.
  • Inlet 13 is formed from a hollow extension member 29 which is externally threaded and is screwably received by threaded hole 29a placed centrally of weight member 26. Extension 29 is screwed snugly into hole 290 of weight 26. An exposed end of extension 29 has barbs 29b which slidably receive an overhead water supply line 85.
  • Wall 51 of chamber cap 39 has a circular opening 50 which receives valve plunger shaft 56 and is further provided with a depression 52 adapted to mate with the interior surface of a valve depressor cap 44, later described.
  • Plunger 38 includes a body portion 55 and integral plunger shah 56, the latter having a diameter slightly smaller than the diameter of opening 50 of chamber cap 39.
  • Shaft 56 is adapted to receive a washerlike seat 38a which aids in the shutting 0B of the water through opening 50 when plunger 38 is in a closed position.
  • a central vertical stub mount 33 formed by extension of inner vertical wall 20, threadably receives the previously mentioned valve depressor cap 44.
  • Mount 33 has a centrally located, threaded hole 360.
  • Valve depressor cap 44 provides a generally frustoconical-shaped cavity 42 which is formed on a raised, flat surface 43 and above a threaded shaft 440 which is received by hole 360. Surface 43 is in turn engaged by the lower end of plunger shaft 56.
  • plunger shaft 56 which slidably resides in opening 50 is made slightly longer, about three sixty-fourths inch being preferred, than the length of opening 50 so that upon the downward movement of plunger shaft 56, raised surface 43 of valve depressor cap 44 engages plunger shaft 56 and pushes plunger 38 upwardly against spring 37 so as to provide an outlet for the water residing in valve chamber 15.
  • a substantial tilting of the drinker such as might be caused by a chicken resting on the drinker causes plunger shaft 56 to slip out of contact with raised surface 43.
  • Plunger 38 and seat 38a under the influence of spring 37 then seals opening 50 and shuts ofi further flow of water from valve 14 into float receptacle l2.
  • weight member 26 providing the valve-loading weight. It will also be noted that during both level and tilt conditions it is desirable to have responsive, one-way valves that allow flow only from receptacle 12 to trench 11 so as to avoid contamination of receptacle 12 by water from trench l 1.
  • water enters inlet 13 from a pressurized overhead supply source and flows through valve chamber 15, through opening 50 in valve cap 39 and dribbles downward onto valve depressor cap 44 and then into float receptacle 12.
  • water is maintained at substantially equal levels in float receptacle 12 and drinking trench 11 by means of previously mentioned one-way valves, later described, located in passageways 23.
  • float 30 rises and lifts valve structure 14 out of contact with valve depressor cap 44 whereupon spring 37 forces plunger 56 downwardly to bring valve seal 58 in contact with the interior wall of valve cap 39 so as to stop the flow of water through opening 50.
  • the drinker is designed to handle chickens both in a day old size through any desired number of weeks growth.
  • the drinker is first leveled on the floor of the chickenhouse and as the chickens grow it then becomes necessary to raise the height of the drinking trench 1 l and this is accomplished by suspending the drinker 10.
  • the trend has become that of allowing the water supply lines to be run overhead and unlike the drinkers of the prior patents and prior pending application the present invention adapts especially to overhead lines.
  • the drinker can be tilted and anytime a chicken perches on the drinker the level of water in one side of the drinking trench 11 becomes greater than the level diametrically opposite.
  • valve depressor cap 44 Since shaft 56 is slightly longer than the cylindrical length of opening 50, tilting of the drinker causes plunger 38 to assume its normal closed position and valve seat 380 to reside against the inner wall surface of valve cap 39. Therefore, any substantial tilting of the drinker will close opening 50 and cause the supply of water to float receptacle 12 to be shut off. Thus, whether the drinker is suspended or supported, it will if tilted as by a chicken if suspended, or by being placed on an uneven surface, if supported, will automatically shut itself off.
  • the drinker cover In order to maintain both the normal level and the abnormal tilt sensitivity of the described operation it is desirable that the drinker cover provide ready access to the interior of the drinker for inspection and routine maintenance of the described control valve, float and weight mechanism.
  • such cover should retain the advantages of the conicalshaped cover of the copending application and patents insofar as it deters roosting of chickens.
  • One feature of the present invention is directed to such cover and this will be next described.
  • conicalshaped cover 60 comprised of rigid cover 61 and slidable cover 62, is adapted to be attached to mating recessed wall 19 so as to shield the water in float receptacle 12, the float 30, and other interior apparatus from being contaminated by the chickens. Furthermore, such conical shape effectively deters roosting of the chickens on the cover itself.
  • Rigid cover 61 rests on bearing surface 19a and is secured to wall 19 by means of upright extensions 18a formed on connecting wall 18. Holes 63 are formed in cover 61 and wing screws 64 pass through holes 63 and screw into the extensions 18a for holding cover 61 in place.
  • Cover 61 is provided with a recess the edges of which are indicated at 610 and which extends around cover 61 and is adapted to receive the slidable cover 62 in a sliding relation and when placed thereon presents a smooth, conical, outer surface which maintains the deterrent to chickens roosting on the cover.
  • Cover 61 has an opening 65 which mates with an opening 66 within cover 62 such that when cover 62 is positioned so as to bring these two openings 65, 66 in mating relation access is gained to the interior of the drinker. Furthermore, when cover 62 is slid around so that opening 66 no longer mates with opening 65, the interior is closed and protected from outside contamination. Thus it will be seen that access can be gained to the valve, float etc. simply by sliding cover 62. At the same time the advantages of the conical shape are preserved.
  • a suspension rod 67 is rigidly secured to cover 61.
  • Rod 67 passes through metal washer 68 and then through cover 61.
  • a pair of nuts 69a and 69b are tightened down on washer 68 and against cover 61 respectively.
  • Suspension rod 67 is efi'ectively locked in place.
  • Washer 68 has a hole 68a therein which vertically aligns with hole 61b in the flattop portion of cover 61.
  • Overhead supply line 85 which is placed over barbs 29b which hold supply line in place, has a ring 850 through which line 85 is looped as at 86 and then passes from within drinker 10 through hole 61a and hole 68a and from there to an available water supply. Loop 86 allows weight 26 and float 30 to riseand fall with the water level in trench 12. It can be seen that the drinker of this application is extremely useful in the modern poultry houses which utilize overhead waterlines.
  • Valve depressor cap 44 is adjustable within central vertical stub mount 33. Once cap 44 is adjusted to its desired height by rotating shaft 44a by means of knurled end 44b, wingnut 440 is tightened and thereby locks cap 44 in a fixed position. Cap 44 is adjusted from the bottom of drinker 10 which adjustment can be made externally of the drinker housing when the drinker is suspended from above.
  • FIGS. 3 through 8 show the oneway ball valves generally designated 70 and consisting of a molded plastic housing 70' and a buoyant plastic ball 75.
  • Housing 70' has a pair of flat extensions 71 which are adapted to be slidably received in the channels 7 la formed in portions of connecting wall 18 at the passageways 23.
  • a ball housing 73 protrudes from the extensions 71 and contains a tapered ball passage 74.
  • a hole 25 formed in a web portion 18b of wall 18 aligns with a relatively large opening at one end of ball passage 74 and through which ball 75 is removable.
  • Ball 75 normally seats as best seen in FIG. 4 adjacent the large opening.
  • the slope of passage 74 is preferably 10.
  • the drinker of the present invention is particularly adapted to overhead water supply lines and because of this has special advantage in the most up-to-date poultry houses.
  • the improved one-way trench valves also provide sensitivity over the range of water levels and ease of maintenance.
  • the valve ball is maintained above the base of the trench even in its lowest position. The sediment which might collect in the base of the trench does not come into contact with the valve ball and therefore is unlikely to cause sticking of the ball in the valve seat.
  • the desired height of water level in the trench can be adjusted without removal or opening of the cover. Simply by lifting the drinker from the ground, should the drinker be resting on the ground, or by reaching underneath the drinker, if it is suspended, the valve depressor cap can be externally adjusted to achieve a given level.
  • a poultry drinker adapted to be supplied from either an overhead or ground level supply source and capable in a normal level position of automatically maintaining a predetermined depth of drinking water and when tilted of shutting off the water supply, comprising:
  • pan-shaped container having sidewalls and bottom walls defining an exterior drinking trench and an interior water reservoir connected by a plurality of passageways enabling water to flow from said reservoir to said trench and be maintained at substantially equal levels in each;
  • float means providing a buoyant structure loosely mounted to float in and surrounding the central axis of said reservoir;
  • valve centrally located on and supported by said buoyant float structure, said valve having a chamber connected to a water supply and a vertically positionable control plunger having an exposed lower end which when moved upwardly opens said valve to allow water to flow to said reservoir from said chamber and when moved downwardly closes said valve, said valve plunger being spring loaded for maintaining said valve in a normally closed position, said valve providing a downward weight force opposing the buoyancy of said float means;
  • adjustable valve-opening means comprising integral shaft and cap portions, said shaft portion being rotatably mounted in said bottom wall for adjusting the position of said cap portion and said cap portion providing a flat horizontal bearing surface positioned centrally of and above said reservoir, said bearing surface being adapted to engage said valve plunger lower end so that upon said water being depleted in said reservoir below some predetermined level corresponding to the position of said cap portion said plunger lower end is brought into engagement with said bearing surface and is depressed upwardly thereby opening said valve and upon said water being replenished in said reservoir said valve being raised and said plunger lower end being disengaged from said bearing surface thereby closing said valve;
  • a plurality of one-way valves installed in each said passageway and adapted to allow flow only from said reservoir to said trench to maintain equal levels therein;
  • a substantially smooth, conical-shaped cover member having a base removably secured to a selected said sidewall inwardly of said trench, said cover member providing a cover over said reservoir, valve, float structure and valve-opening means.
  • said oneway valves comprise a plurality of one-way ball valves one being installed in each said passageway, each said one-way valve having a housing, an open-ended water passage extending through said housing and having a slope upward towards said reservoir and a buoyant control ball loosely mounted in said water passage, said housing being slidably mounted on the selected said sidewall mounting said cover member enabling each said one-way valve to be removable for cleaning, inspection and the like, one outer end of said water passage opera tively mating with an opening in the respective said passageway in which the corresponding one-way valve is installed and the other inner end of said water passage being normally closed by said ball being buoyed upwardly so as to close said passageway, the slope of said water passage and size and buoyancy of said
  • a poultry drinker according to claim 2 wherein said buoyant float structure comprises:
  • an annular float member of diameter less than the diameter of said interior water reservoir and having a circular opening centrally thereof; and a cylindrical weight member axially aligned with and fixedly secured in said circular opening to said float member, said weight member having an internal central cavity, said valve being suspended from said weight member and occupying the upper portion of said cavity and said valve-opening cap portion extending upwardly into the lower portion of said cavity thereby to allow said plunger lower end to be brought into and out of engagement with said bearing surface according to said reservoir level.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Birds (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Self-Closing Valves And Venting Or Aerating Valves (AREA)
  • Float Valves (AREA)

Abstract

A poultry drinker incorporates a float-supported valve operable from a connected overhead water supply and which controls water level in a drinking trench in cooperation with buoyant ball valves positioned adjacent the trench.

Description

United States Patent Inventor App]. No. Filed Patented Assignee POULTRY DRINKER VALVE CONSTRUCTION Primary Examineri-lugh R. Chamblee AltomeyB. B. Olive 3 Claims, 11 Drawing Figs.
US. 1 19/78, ABSTRACT: A poultry drinker incorporates a float-supported 119/80 valve operable from a connected overhead water supply and Int. Cl .vA0lk 07/00, which controls water level in a drinking trench in cooperation AOlk 07/02 with buoyant ball valves positioned adjacent the trench.
62 69b 85 'i 1o 85a 85 18 a 1 a: 72-2 6 18 a 44 8b 18 63 27a ,12 3 1 11 1s @23 30 31 27 30 23 44c 5 36a 1 7 97 44a 44 f3, 25 1 21 21 PATENTEDHBI 5m $610,206
SHEET 2 BF 2 74 4 INVEN'IOR. 73 Albert w Davis BY 21 l ZZZZ/ z ATTORNEY POULTRY DRINKER VALVE CONSTRUCTION CROSS-REFERENCE TO RELATED APPLICATIONS This application relates to copending application Ser. No. I
788,380, filed Jan. 2, 1969, entitled Automatic Poultry, Drinker.
BACKGROUND OF INVENTION I. Field of Invention The invention relates to poultry drinkers but particularly to drinker valve constructions for admitting and shutting off water and controlling water level.
2. Description of Prior Art The closest prior art is deemed to be found in my prior U.S. Pat. Nos. 3,450,102 and 3,450,103. The prior patents teach a novel valve construction in which the valve, per se, is centrally and fixedly mounted in a pan and the valve actuator is supported by an annular float. Such a valve construction does not readily lend itselfto use with overhead water supply lines that are becoming more widespread in the industry. The prior patents also teach use of heavy ball valves to control water level between a central storage float receptacle in the pan and a surrounding drinking trench.
SUMMARY OF INVENTION As in the referred to prior patents, the drinker of the invention incorporates a central float receptacle which stores water and receives an annular float member. An outer, annular drinking trench surrounds the float receptacle and the water level between the trench and receptacle is controlled by several one-way ball valves located in the trench wall and incorporating buoyant balls which float upwardly to shut off water flow from the receptacle to the trench when the respective levels are substantially equal. The annular float supports a central weight member and a control valve having a downwardly extending plunger that bears on a valve depressor cap which is centrally and adjustably mounted in the drinker base. The control valve connects to an overhead supply line. Water is admitted to the float receptacle and flows to the trench whenever water in the trench is below a predetermined level and is shut off on reaching such level.
DESCRIPTION OF THE DRAWINGS FIG. 1 is a pictorial view of the composite drinker showing the same adapted for suspension from the chickenhouse roof or the like.
FIG. 2 is an exploded view of the composite drinker showing the slidable cover portion removed.
FIG. 3 is a section view of the composite drinker taken along lines 3-3 of FIG. 1 showing the various elements in a nonnal level position and with the valve closed.
FIG. 4 is a fragmentary section view of a portion of the housing and the one-way ball and valve housing for allowing passage of water from the float receptacle into the drinking trench.
FIG. 5 is a side elevation view of the one-way ball valve housing of FIG. 4.
FIG. 6 is a rear elevation view of the one-way ball valve housing of FIG. 5.
FIG. 7 is a front elevation view of FIG. 5.
FIG. 8 is a fragmentary pictorial view with the ball valve about to be placed into position in the inner vertical wall of the drinking trench.
FIG. 9 is an enlarged fragmentary section view of the valve mechanism in the open position.
FIG. 10 is an enlarged fragmentary section view of the valve mechanism in the closed osition.
FIG. 11 is a pictorial view of the valve depressor cap.
DESCRIPTION OF THE PREFERRED EMBODIMENT As previously mentioned, the present invention is directed to improvements over the drinker of the copending application and the referred to prior patents in respect to a one-way valve which controls flow to the drinking trench, to the main valve and float control mechanism, and to a sliding cover which facilitates adjustment of the main valve and float control mechanism. The description will be first directed to a summary of the components and operation of the drinker as previously disclosed in the copending application and issued patents and will then proceed to a description of the improvements provided by the present invention.
The drinker, generally designated 10, provides a narrow, annular drinking trench 11, a cylindrical, float receptacle 12, a water inlet 13, a valve 14 and valve chamber 15. The trench 11 and receptacle 12 are formed by a vertical wall 16, a sloping wall 17, a connecting wall 18, an inner vertical wall 20 and a bottom wall 21. In operation, water flows through valve 14 into the float receptacle I2 and then into the drinking trench 11 through a set of one-way valves which are located in a set of passageways, generally designated 23, and one of which is shown enlarged in FIG. 8. The description now refers to the improvements.
The drinker further incorporates an annular float 30 which is made of lightweight polystyrene foam or the like and is buoyed in float receptacle 12. A weight member 26 counteracts the buoyant effect of float 30 and is axially aligned with and fixedly resides partially within an opening 31 formed in float 30. Weight member 26 is molded from a relatively heavy polyester plastic and has inner cylindrical sidewall portion 27 which tapers upward as best seen in FIG. 3. Tapered walls 27a converge into a flat upper wall 28 which threadably receives extension 29 of valve 14. Weight member 26 loads the downwardly extending valve plunger 38 and during sudden tilting of the drinker causes a positive and rapid valve response.
The composite valve structure 14 includes valve chamber 15, spring 37, a filter 37a, plunger 38, rubber sealing washer 38a and chamber cap 39. Valve chamber 15 is cylinderlike in shape having a threaded inner surface which receives externally threaded cap 39 and is connected to receive pressurized water from an overhead supply through inlet 13. Inlet 13 is formed from a hollow extension member 29 which is externally threaded and is screwably received by threaded hole 29a placed centrally of weight member 26. Extension 29 is screwed snugly into hole 290 of weight 26. An exposed end of extension 29 has barbs 29b which slidably receive an overhead water supply line 85.
Wall 51 of chamber cap 39 has a circular opening 50 which receives valve plunger shaft 56 and is further provided with a depression 52 adapted to mate with the interior surface of a valve depressor cap 44, later described. Plunger 38 includes a body portion 55 and integral plunger shah 56, the latter having a diameter slightly smaller than the diameter of opening 50 of chamber cap 39. Shaft 56 is adapted to receive a washerlike seat 38a which aids in the shutting 0B of the water through opening 50 when plunger 38 is in a closed position.
A central vertical stub mount 33, formed by extension of inner vertical wall 20, threadably receives the previously mentioned valve depressor cap 44. Mount 33 has a centrally located, threaded hole 360. Valve depressor cap 44 provides a generally frustoconical-shaped cavity 42 which is formed on a raised, flat surface 43 and above a threaded shaft 440 which is received by hole 360. Surface 43 is in turn engaged by the lower end of plunger shaft 56.
It is to be noted that the portion of plunger shaft 56 which slidably resides in opening 50 is made slightly longer, about three sixty-fourths inch being preferred, than the length of opening 50 so that upon the downward movement of plunger shaft 56, raised surface 43 of valve depressor cap 44 engages plunger shaft 56 and pushes plunger 38 upwardly against spring 37 so as to provide an outlet for the water residing in valve chamber 15. Thus, a substantial tilting of the drinker such as might be caused by a chicken resting on the drinker causes plunger shaft 56 to slip out of contact with raised surface 43. Plunger 38 and seat 38a under the influence of spring 37 then seals opening 50 and shuts ofi further flow of water from valve 14 into float receptacle l2. In such movement any adverse tendency of surface tension or minor dirt particles on p the contacting surfaces is counteracted by weight member 26 providing the valve-loading weight. It will also be noted that during both level and tilt conditions it is desirable to have responsive, one-way valves that allow flow only from receptacle 12 to trench 11 so as to avoid contamination of receptacle 12 by water from trench l 1.
To review the basic operation, it may be noted that water enters inlet 13 from a pressurized overhead supply source and flows through valve chamber 15, through opening 50 in valve cap 39 and dribbles downward onto valve depressor cap 44 and then into float receptacle 12. During normal operation, water is maintained at substantially equal levels in float receptacle 12 and drinking trench 11 by means of previously mentioned one-way valves, later described, located in passageways 23. Whenever the level of water in receptacle 12 is sufficient to buoy float 30, float 30 rises and lifts valve structure 14 out of contact with valve depressor cap 44 whereupon spring 37 forces plunger 56 downwardly to bring valve seal 58 in contact with the interior wall of valve cap 39 so as to stop the flow of water through opening 50. As the water is consumed by the fowl from drinking trench 11, float 30 is lowered and valve depressor cap 44 is contacted by plunger 56. When this happens, plunger 56 is forced upwardly against spring 37 whereby water is once again allowed to enter drinking trench 11 in the manner just described.
As best explained in the copending application and issued patents, the drinker is designed to handle chickens both in a day old size through any desired number of weeks growth. Thus in use the drinker is first leveled on the floor of the chickenhouse and as the chickens grow it then becomes necessary to raise the height of the drinking trench 1 l and this is accomplished by suspending the drinker 10. In today's large-scale poultry houses, the trend has become that of allowing the water supply lines to be run overhead and unlike the drinkers of the prior patents and prior pending application the present invention adapts especially to overhead lines. When suspended, the drinker can be tilted and anytime a chicken perches on the drinker the level of water in one side of the drinking trench 11 becomes greater than the level diametrically opposite. Also, as weight 26 shifts, plunger 56 of valve 14 is brought out of contact with valve depressor cap 44. Since shaft 56 is slightly longer than the cylindrical length of opening 50, tilting of the drinker causes plunger 38 to assume its normal closed position and valve seat 380 to reside against the inner wall surface of valve cap 39. Therefore, any substantial tilting of the drinker will close opening 50 and cause the supply of water to float receptacle 12 to be shut off. Thus, whether the drinker is suspended or supported, it will if tilted as by a chicken if suspended, or by being placed on an uneven surface, if supported, will automatically shut itself off.
In order to maintain both the normal level and the abnormal tilt sensitivity of the described operation it is desirable that the drinker cover provide ready access to the interior of the drinker for inspection and routine maintenance of the described control valve, float and weight mechanism. However, such cover should retain the advantages of the conicalshaped cover of the copending application and patents insofar as it deters roosting of chickens. One feature of the present invention is directed to such cover and this will be next described.
As to the cover construction it will be noted that conicalshaped cover 60, comprised of rigid cover 61 and slidable cover 62, is adapted to be attached to mating recessed wall 19 so as to shield the water in float receptacle 12, the float 30, and other interior apparatus from being contaminated by the chickens. Furthermore, such conical shape effectively deters roosting of the chickens on the cover itself. Rigid cover 61 rests on bearing surface 19a and is secured to wall 19 by means of upright extensions 18a formed on connecting wall 18. Holes 63 are formed in cover 61 and wing screws 64 pass through holes 63 and screw into the extensions 18a for holding cover 61 in place. Cover 61 is provided with a recess the edges of which are indicated at 610 and which extends around cover 61 and is adapted to receive the slidable cover 62 in a sliding relation and when placed thereon presents a smooth, conical, outer surface which maintains the deterrent to chickens roosting on the cover. Cover 61 has an opening 65 which mates with an opening 66 within cover 62 such that when cover 62 is positioned so as to bring these two openings 65, 66 in mating relation access is gained to the interior of the drinker. Furthermore, when cover 62 is slid around so that opening 66 no longer mates with opening 65, the interior is closed and protected from outside contamination. Thus it will be seen that access can be gained to the valve, float etc. simply by sliding cover 62. At the same time the advantages of the conical shape are preserved.
A suspension rod 67 is rigidly secured to cover 61. Rod 67 passes through metal washer 68 and then through cover 61. A pair of nuts 69a and 69b are tightened down on washer 68 and against cover 61 respectively. Suspension rod 67 is efi'ectively locked in place. Washer 68 has a hole 68a therein which vertically aligns with hole 61b in the flattop portion of cover 61. Overhead supply line 85, which is placed over barbs 29b which hold supply line in place, has a ring 850 through which line 85 is looped as at 86 and then passes from within drinker 10 through hole 61a and hole 68a and from there to an available water supply. Loop 86 allows weight 26 and float 30 to riseand fall with the water level in trench 12. It can be seen that the drinker of this application is extremely useful in the modern poultry houses which utilize overhead waterlines.
Valve depressor cap 44 is adjustable within central vertical stub mount 33. Once cap 44 is adjusted to its desired height by rotating shaft 44a by means of knurled end 44b, wingnut 440 is tightened and thereby locks cap 44 in a fixed position. Cap 44 is adjusted from the bottom of drinker 10 which adjustment can be made externally of the drinker housing when the drinker is suspended from above.
Mention has already been made of the presence of one-way valves in the passageways 23 and basic function is to allow water to flow from receptacle 12 to trench 11 but not in the reverse direction and under both normal level and tilt conditions. Thus such one-way valves must be sensitive and must respond rapidly and positively to a difference in level between the water in receptacle l2 and that in trench 11. This feature of the present invention is best seen in FIGS. 3 through 8 showing the oneway ball valves generally designated 70 and consisting of a molded plastic housing 70' and a buoyant plastic ball 75. Housing 70' has a pair of flat extensions 71 which are adapted to be slidably received in the channels 7 la formed in portions of connecting wall 18 at the passageways 23. A ball housing 73 protrudes from the extensions 71 and contains a tapered ball passage 74. When the valve 70 is placed in position as shown in FIGS. 3 and 4, it will be noted that a hole 25 formed in a web portion 18b of wall 18 aligns with a relatively large opening at one end of ball passage 74 and through which ball 75 is removable. At the opposite end of passage 74 there is another relatively small opening. Ball 75 normally seats as best seen in FIG. 4 adjacent the large opening. As shown in FIG. 4, the slope of passage 74 is preferably 10. Such a slope when used with a polypropylene ball of 0.2344 inches in size provides sufficiently strong seating to insure an outward flow of water only when the float receptacle water level is substantially above the trench level and a posi tive shut off when the two levels approach being the same and as ball 75 floats upward adjacent the smaller hole. Such action insures a minimum contamination of the float receptacle water with the trench water. Of particular importance is the ease of removing the entire valve 70, and of being able to clean ball 75 and passage 74. In this regard it will be noted that simply by loosening screws 64 and removing cover 61, each of the valves 70 may be slipped out of their respective channels and each ball 75 and passage 74 becomes immediately available for inspection and cleaning. In the pending application and issued patents, some difficulty was encountered by ball 75 sometimes resting in sediment, collected algae etc. encountered due to poor sanitation practices and often times the ball 75 would stick in the seat. This has been overcome.
With the described sliding cover and one-way valves it can thus be seen that all of the basic features of the drinker of the copending application and patents have been preserved while providing a substantial improvement in the operation, inspection and routine maintenance of the drinker. The drinker of the present invention is particularly adapted to overhead water supply lines and because of this has special advantage in the most up-to-date poultry houses. The improved one-way trench valves also provide sensitivity over the range of water levels and ease of maintenance. The valve ball is maintained above the base of the trench even in its lowest position. The sediment which might collect in the base of the trench does not come into contact with the valve ball and therefore is unlikely to cause sticking of the ball in the valve seat. Also, with the improved floating central valve, the desired height of water level in the trench can be adjusted without removal or opening of the cover. Simply by lifting the drinker from the ground, should the drinker be resting on the ground, or by reaching underneath the drinker, if it is suspended, the valve depressor cap can be externally adjusted to achieve a given level.
What is claimed is:
l. A poultry drinker adapted to be supplied from either an overhead or ground level supply source and capable in a normal level position of automatically maintaining a predetermined depth of drinking water and when tilted of shutting off the water supply, comprising:
a. pan-shaped container having sidewalls and bottom walls defining an exterior drinking trench and an interior water reservoir connected by a plurality of passageways enabling water to flow from said reservoir to said trench and be maintained at substantially equal levels in each;
h. float means providing a buoyant structure loosely mounted to float in and surrounding the central axis of said reservoir;
0. a valve centrally located on and supported by said buoyant float structure, said valve having a chamber connected to a water supply and a vertically positionable control plunger having an exposed lower end which when moved upwardly opens said valve to allow water to flow to said reservoir from said chamber and when moved downwardly closes said valve, said valve plunger being spring loaded for maintaining said valve in a normally closed position, said valve providing a downward weight force opposing the buoyancy of said float means;
. adjustable valve-opening means comprising integral shaft and cap portions, said shaft portion being rotatably mounted in said bottom wall for adjusting the position of said cap portion and said cap portion providing a flat horizontal bearing surface positioned centrally of and above said reservoir, said bearing surface being adapted to engage said valve plunger lower end so that upon said water being depleted in said reservoir below some predetermined level corresponding to the position of said cap portion said plunger lower end is brought into engagement with said bearing surface and is depressed upwardly thereby opening said valve and upon said water being replenished in said reservoir said valve being raised and said plunger lower end being disengaged from said bearing surface thereby closing said valve;
e. a plurality of one-way valves installed in each said passageway and adapted to allow flow only from said reservoir to said trench to maintain equal levels therein; and
f. a substantially smooth, conical-shaped cover member having a base removably secured to a selected said sidewall inwardly of said trench, said cover member providing a cover over said reservoir, valve, float structure and valve-opening means. 2. A poultry drinker according to claim 1 wherein said oneway valves comprise a plurality of one-way ball valves one being installed in each said passageway, each said one-way valve having a housing, an open-ended water passage extending through said housing and having a slope upward towards said reservoir and a buoyant control ball loosely mounted in said water passage, said housing being slidably mounted on the selected said sidewall mounting said cover member enabling each said one-way valve to be removable for cleaning, inspection and the like, one outer end of said water passage opera tively mating with an opening in the respective said passageway in which the corresponding one-way valve is installed and the other inner end of said water passage being normally closed by said ball being buoyed upwardly so as to close said passageway, the slope of said water passage and size and buoyancy of said ball being selected so that during a normal operating condition substantially equal levels of water are maintained in said reservoir and trench while simultaneously substantially preventing, both during nonnal as well as during any abnormal tilt condition, flow from said trench to said reservoir and being operative over a range of predetermined different levels established by the regulation of said valveopening means according to the size of chickens being serviced by said trench.
3. A poultry drinker according to claim 2 wherein said buoyant float structure comprises:
a. an annular float member of diameter less than the diameter of said interior water reservoir and having a circular opening centrally thereof; and a cylindrical weight member axially aligned with and fixedly secured in said circular opening to said float member, said weight member having an internal central cavity, said valve being suspended from said weight member and occupying the upper portion of said cavity and said valve-opening cap portion extending upwardly into the lower portion of said cavity thereby to allow said plunger lower end to be brought into and out of engagement with said bearing surface according to said reservoir level.

Claims (3)

1. A poultry drinker adapted to be supplied from either an overhead or ground level supply source and capable in a normal level position of automatically maintaining a predetermined depth of drinking water and when tilted of shutting off the water supply, comprising: a. pan-shaped container having sidewalls and bottom walls defining an exterior drinking trench and an interior water reservoir connected by a plurality of passageways enabling water to flow from said reservoir to said trench and be maintained at substantially equal levels in each; b. float means providing a buoyant structure loosely mounted to float in and surrounding the central axis of said reservoir; c. a valve centrally located on and supported by said buoyant float structure, said valve having a chamber connected to a water supply and a vertically positionable control plunger having an exposed lower end which when moved upwardly opens said valve to allow water to flow to said reservoir from said chamber and when moved downwardly closes said valve, said valve plunger being spring loaded for maintaining said valve in a normally closed position, said valve providing a dowNward weight force opposing the buoyancy of said float means; d. adjustable valve-opening means comprising integral shaft and cap portions, said shaft portion being rotatably mounted in said bottom wall for adjusting the position of said cap portion and said cap portion providing a flat horizontal bearing surface positioned centrally of and above said reservoir, said bearing surface being adapted to engage said valve plunger lower end so that upon said water being depleted in said reservoir below some predetermined level corresponding to the position of said cap portion said plunger lower end is brought into engagement with said bearing surface and is depressed upwardly thereby opening said valve and upon said water being replenished in said reservoir said valve being raised and said plunger lower end being disengaged from said bearing surface thereby closing said valve; e. a plurality of one-way valves installed in each said passageway and adapted to allow flow only from said reservoir to said trench to maintain equal levels therein; and f. a substantially smooth, conical-shaped cover member having a base removably secured to a selected said sidewall inwardly of said trench, said cover member providing a cover over said reservoir, valve, float structure and valve-opening means.
2. A poultry drinker according to claim 1 wherein said one-way valves comprise a plurality of one-way ball valves one being installed in each said passageway, each said one-way valve having a housing, an open-ended water passage extending through said housing and having a slope upward towards said reservoir and a buoyant control ball loosely mounted in said water passage, said housing being slidably mounted on the selected said sidewall mounting said cover member enabling each said one-way valve to be removable for cleaning, inspection and the like, one outer end of said water passage operatively mating with an opening in the respective said passageway in which the corresponding one-way valve is installed and the other inner end of said water passage being normally closed by said ball being buoyed upwardly so as to close said passageway, the slope of said water passage and size and buoyancy of said ball being selected so that during a normal operating condition substantially equal levels of water are maintained in said reservoir and trench while simultaneously substantially preventing, both during normal as well as during any abnormal tilt condition, flow from said trench to said reservoir and being operative over a range of predetermined different levels established by the regulation of said valve-opening means according to the size of chickens being serviced by said trench.
3. A poultry drinker according to claim 2 wherein said buoyant float structure comprises: a. an annular float member of diameter less than the diameter of said interior water reservoir and having a circular opening centrally thereof; and b. a cylindrical weight member axially aligned with and fixedly secured in said circular opening to said float member, said weight member having an internal central cavity, said valve being suspended from said weight member and occupying the upper portion of said cavity and said valve-opening cap portion extending upwardly into the lower portion of said cavity thereby to allow said plunger lower end to be brought into and out of engagement with said bearing surface according to said reservoir level.
US878328A 1969-11-20 1969-11-20 Poultry drinker valve construction Expired - Lifetime US3610206A (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3861358A (en) * 1973-10-25 1975-01-21 James P Bowell Animal watering device
US4180015A (en) * 1978-03-23 1979-12-25 Dawson Carl B Jr Fail safe suspension poultry drinker
EP0184400A2 (en) * 1984-11-29 1986-06-11 Broiler Equipment Co. Limited Drinkers
US5099798A (en) * 1991-01-28 1992-03-31 Makoto Ohara Water-supply system for poultry
US7007634B1 (en) * 2004-06-25 2006-03-07 Les Pederson Automated livestock trough
US20120279454A1 (en) * 2009-03-06 2012-11-08 Woodstream Corporation Top-fill hummingbird feeder with float valve base closure mechanism
US9228326B1 (en) * 2013-10-29 2016-01-05 Slick Hunting Products, Inc. Portable drinker system
US9265231B2 (en) 2012-04-10 2016-02-23 ChickenWaterer.com, LLC Portable nipple based poultry waterer
US10779508B2 (en) * 2017-05-16 2020-09-22 Gex Corporation Water feeder for pets and filter therefor

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1062537A (en) * 1912-05-24 1913-05-20 William C Culbertson Liquid-supply regulator.
US2150499A (en) * 1937-05-20 1939-03-14 Gus Stebbe Automatic water fountain for chickens
US2821167A (en) * 1957-07-22 1958-01-28 Louis M Gilbertson Flexible suspended automatic watering system

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1062537A (en) * 1912-05-24 1913-05-20 William C Culbertson Liquid-supply regulator.
US2150499A (en) * 1937-05-20 1939-03-14 Gus Stebbe Automatic water fountain for chickens
US2821167A (en) * 1957-07-22 1958-01-28 Louis M Gilbertson Flexible suspended automatic watering system

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3861358A (en) * 1973-10-25 1975-01-21 James P Bowell Animal watering device
US4180015A (en) * 1978-03-23 1979-12-25 Dawson Carl B Jr Fail safe suspension poultry drinker
EP0184400A2 (en) * 1984-11-29 1986-06-11 Broiler Equipment Co. Limited Drinkers
EP0184400A3 (en) * 1984-11-29 1987-05-06 Broiler Equipment Co. Limited Drinkers
US5099798A (en) * 1991-01-28 1992-03-31 Makoto Ohara Water-supply system for poultry
US7007634B1 (en) * 2004-06-25 2006-03-07 Les Pederson Automated livestock trough
US20120279454A1 (en) * 2009-03-06 2012-11-08 Woodstream Corporation Top-fill hummingbird feeder with float valve base closure mechanism
US8739733B2 (en) * 2009-03-06 2014-06-03 Woodstream Corporation Top-fill hummingbird feeder with float valve base closure mechanism
US9565838B2 (en) 2009-03-06 2017-02-14 Woodstream Corporation Top-fill hummingbird feeder with float valve base closure mechanism
US10085427B2 (en) 2009-03-06 2018-10-02 Woodstream Corporation Top-fill hummingbird feeder with float valve base closure mechanism
US9265231B2 (en) 2012-04-10 2016-02-23 ChickenWaterer.com, LLC Portable nipple based poultry waterer
US9228326B1 (en) * 2013-10-29 2016-01-05 Slick Hunting Products, Inc. Portable drinker system
US10779508B2 (en) * 2017-05-16 2020-09-22 Gex Corporation Water feeder for pets and filter therefor

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