CN111894837A - Diaphragm water pump - Google Patents

Diaphragm water pump Download PDF

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Publication number
CN111894837A
CN111894837A CN202010790285.9A CN202010790285A CN111894837A CN 111894837 A CN111894837 A CN 111894837A CN 202010790285 A CN202010790285 A CN 202010790285A CN 111894837 A CN111894837 A CN 111894837A
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China
Prior art keywords
diaphragm
air
wall
groove
fixedly connected
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CN202010790285.9A
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CN111894837B (en
Inventor
张灵辉
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Shenzhen Jichuangxing Technology Co ltd
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Taizhou Huiteng Pump Industry Co ltd
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Publication of CN111894837A publication Critical patent/CN111894837A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/02Machines, pumps, or pumping installations having flexible working members having plate-like flexible members, e.g. diaphragms
    • F04B43/06Pumps having fluid drive
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/0009Special features
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04BPOSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
    • F04B43/00Machines, pumps, or pumping installations having flexible working members
    • F04B43/0009Special features
    • F04B43/0081Special features systems, control, safety measures

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Reciprocating Pumps (AREA)

Abstract

The invention belongs to the technical field of diaphragm water pumps, and particularly relates to a diaphragm water pump; comprises a pump body and a motion mechanism; the end surfaces of the left side and the right side of the movement mechanism are fixedly connected with a compression box, and the compression box is in a conical design; the inner wall of the motion mechanism is provided with air grooves which are communicated with high-pressure air; first air injection holes are uniformly distributed in the inner wall of the motion mechanism on the left side of the air groove, and the first air injection holes are uniformly communicated with the left compression box; the right side of the air groove is provided with second air injection holes which are uniformly distributed and communicated with the right side compression box; the diaphragm pump is mainly used for solving the problems that diaphragms in the diaphragm pump in the prior art are made of specific materials, each diaphragm is only suitable for one type of liquid, and when other types of liquids are pumped, the water pump with diaphragms made of different materials needs to be replaced, so that the working cost is increased, and the application range of the water pump is limited.

Description

Diaphragm water pump
Technical Field
The invention belongs to the technical field of diaphragm water pumps, and particularly relates to a diaphragm water pump.
Background
The diaphragm pump is actually a plunger pump, and the plunger and the pump cylinder are protected by separating the infused liquid from the plunger and the pump cylinder through a film. The left side of the diaphragm is made of corrosion-resistant materials or coated with a layer of corrosion-resistant materials, the right side of the diaphragm is filled with water or oil, the flow characteristic of the diaphragm pump is the relation between the relative flow and the displacement (relative opening degree) of a valve when a medium flows through the valve, and the ideal flow characteristic mainly comprises 4 types of straight lines, equal percentage (logarithm), parabolas, quick opening and the like. The commonly used ideal flow characteristics are only three types, namely straight line, equal percentage (logarithm) and quick opening, and the introduction of the diaphragm water pump can be referred to in the journal: the research and the experimental evaluation of the diaphragm type water injection pump, inner Mongolia petrochemical industry, 2015(10) are successful, but the prior diaphragm water pump still has certain problems, and concretely comprises the following aspects:
the diaphragm in the diaphragm water pump among the prior art is made for specific material, and every kind of diaphragm only is applicable to a liquid, still need change the water pump that possess different material diaphragms when extracting other kinds of liquid to can improve working cost, restricted the application range of water pump, when can not find the water pump of mutual matching, still need purchase the water pump again or change the diaphragm, thereby increased working cost and intensity of labour's problem.
Some solutions related to diaphragm water pumps exist in the prior art, for example, patent No. 201710645862.3 entitled diaphragm pump, and the diaphragm water pump manufactured by the technical solution through various mechanisms has a certain water sealing tightness, can avoid or reduce the effect of vibration, but cannot ensure the sealing performance of the diaphragm, and meanwhile, the diaphragm is troublesome to replace.
In view of this, in order to overcome the above technical problems, the present inventors have designed and developed a diaphragm water pump, which solves the above problems.
Disclosure of Invention
In order to make up for the defects of the prior art, the diaphragm water pump provided by the invention is mainly used for solving the problems that the diaphragms in the diaphragm water pump in the prior art are made of specific materials, each diaphragm is only suitable for one type of liquid, when other types of liquid are extracted, the water pump with the diaphragms made of different materials needs to be replaced, so that the working cost is increased, the use range of the water pump is limited, and when the mutually matched water pumps cannot be found, the water pump needs to be bought again or the diaphragms need to be replaced, so that the working cost and the labor intensity are increased.
The technical scheme adopted by the invention for solving the technical problems is as follows: the invention relates to a diaphragm water pump, which comprises a pump body and a movement mechanism; the end surfaces of the left side and the right side of the movement mechanism are fixedly connected with a compression box, and the compression box is in a conical design; the inner wall of the motion mechanism is provided with air grooves which are communicated with high-pressure air; first air injection holes are uniformly distributed in the inner wall of the motion mechanism on the left side of the air groove, and the first air injection holes are uniformly communicated with the left compression box; the right side of the air groove is provided with second air injection holes which are uniformly distributed and communicated with the right side compression box; the air distribution block is connected in the air groove in a sliding manner through a control rod; a driving rod is connected in the inner wall of the movement mechanism in a sliding manner, and the driving rod is designed in a bidirectional conical manner; the side, opposite to the driving rod, of the driving rod is fixedly connected with clamping shafts which are uniformly arranged on the outer surface of the driving rod; the two compression boxes comprise a left box body and a right box body; auxiliary plates are fixedly connected to the outer surfaces of the two compression boxes at the front side and the rear side of the compression boxes, and the auxiliary plates are used for fixing the left box body and the right box body; the upper side and the lower side of each compression box are fixedly connected with storage boxes on the outer surfaces of the compression boxes, and the storage boxes are fixedly connected with the auxiliary plate; the compression box can be sealed by matching the storage box with the auxiliary plate; a retraction rod is rotatably connected in the inner wall of each storage box through a motor; the outer surface of the retraction rod is wound with uniformly arranged diaphragms which are made of different materials and are designed in a circular shape; the upper surface of each diaphragm is fixedly connected with a long shaft; the lower surface of each diaphragm is fixedly connected with a long block, long grooves are formed in the long blocks, and the long grooves are matched with the long shaft; the diaphragms on the upper retracting rods are connected with the films on the lower retracting rods, and the diaphragms are arranged between the left box body and the right box body; a notch is formed in the center line of each diaphragm, and the notches are matched with the driving rods; the inner wall of each storage box is fixedly connected with cleaning layers which are uniformly arranged through a rotating shaft, and the cleaning layers are arranged on two sides of the diaphragm and are attached to the diaphragm; an annular groove is formed in the inner wall of one side, opposite to the right box body, of each left box body; the end surfaces of two sides of each diaphragm are fixedly connected with annular shafts, and the annular shafts are matched with the annular grooves; the two compression boxes are fixedly connected with the pump body;
when the diaphragm water pump works, the diaphragms in the diaphragm water pump in the prior art are made of specific materials, each diaphragm is only suitable for one type of liquid, when other types of liquid are extracted, the water pump with diaphragms made of different materials is required to be replaced, so that the working cost is increased, the use range of the water pump is limited, when the water pumps matched with each other cannot be found, the water pump needs to be bought again or the diaphragms need to be replaced, so that the problems of the working cost and the labor intensity are solved, the manufactured diaphragm water pump has the advantages that the storage box is arranged, the diaphragms made of different materials are arranged in the storage box, when different types of liquid are extracted, the retraction rod is controlled to rotate through the controller, the diaphragms can be replaced, so that the resources are greatly saved, the use range of the water pump is also increased, when the diaphragms made of the diaphragm water pump in the invention are used, and when the diaphragms made of other materials need to, when the gas distributing block moves to the first gas spraying hole, the first gas spraying hole sprays gas outwards, and simultaneously can drive the driving rod to move leftwards, when the driving rod moves to the left side, the gas spraying to the gas groove is stopped at the moment, meanwhile, the diaphragm originally fixed on the right side of the driving rod is separated from the driving rod, at the moment, the controller controls the motor in the storage box to rotate, the take-up rod can be driven to rotate in the rotating process of the motor, the diaphragm on the take-up rod can be driven to move between the left box body and the right box body in the rotating process of the take-up rod, when the rotating diaphragm moves to the two sides of the cleaning layer, the cleaning layer can absorb and clean liquid on the outer surface of the diaphragm, in the process, the liquid on the outer surface of the diaphragm can be prevented from adhering to other diaphragms, so that the other diaphragms are corroded, when a film to be replaced moves between the left box body and the right box body, because the annular shafts fixedly connected with the end, the annular shaft on the diaphragm can be clamped into the annular groove, the diaphragm can be fixed in the process, so that the diaphragm is prevented from shaking in the working process to influence the working process, meanwhile, the sealing degree between the diaphragm and the left box body and the right box body can be improved, so that liquid is prevented from flowing out, the diaphragm can be replaced in the process, so that the working efficiency is prevented from being influenced by the replacement of a water pump, the diaphragm is fixed in the compression box, the flow dividing block moves to the second gas orifice, at the moment, gas can drive the driving rod to move rightwards by gas, the driving rod is in a conical design, so that a notch at the center position of the diaphragm can be inserted, the national degree of the diaphragm and the driving rod can be improved in the process, so that the diaphragm is prevented from falling off in the working process, the outer surface of the driving rod is fixedly connected with the clamping shafts which are uniformly arranged, and the, can further improve the fixed degree to the diaphragm at this in-process, when the actuating lever removed to the right side, the diaphragm on controller control right side rotated and changed this moment, because left box links firmly through the accessory plate with right box to can improve the fixed degree between left box and the right box, can also improve the sealed degree of compression case simultaneously.
Preferably, a circular groove is formed in the inner wall of the driving rod, and the circular groove is not communicated with the outside; the inner wall of the circular groove is provided with strip-shaped grooves which are uniformly distributed and are communicated with the air groove; the side, opposite to the driving rod, of the driving rod is provided with uniformly distributed sliding grooves in the inner wall of the driving rod, and the sliding grooves are communicated with the circular grooves through holes; a sliding shaft is interactively connected to the inner wall of each sliding chute through a spring, and the end face of one side, opposite to the sliding shaft, of each sliding chute is in an arc design; arc-shaped grooves which are uniformly distributed are formed in the inner wall of each notch, and the arc-shaped grooves are matched with the sliding shafts; trapezoidal grooves which are uniformly distributed are formed in the inner walls of the two sides of the driving rod on the end surfaces of the two sides of the driving rod, and the trapezoidal grooves are communicated with the outside; trapezoidal blocks which are uniformly distributed are fixedly connected in the inner wall of each diaphragm notch, and the trapezoidal blocks are matched with the trapezoidal grooves;
when in work, because the strip-shaped groove is always communicated with the circular groove, in the process of gas injection of the gas groove, the gas in the gas groove can flow into the circular groove through the strip-shaped groove, when the gas flows into the circular groove, can flow into the chute through the through holes, can jack up the sliding shafts which are uniformly arranged after the gas flows into the chute, because the arc-shaped groove arranged in the inner wall of the diaphragm gap is matched with the sliding shaft, the sliding shaft can be jacked into the arc-shaped groove, in the process, the fixing degree between the diaphragm and the driving rod can be further improved, thereby preventing the diaphragm from sliding off in the working process, thereby affecting the working process of the diaphragm, simultaneously improving the sealing degree between the diaphragm and the driving rod, preventing liquid from flowing into the movement mechanism, in the process that the driving rod moves towards the diaphragm direction, the trapezoidal block fixedly connected in the notch can extend into the trapezoidal groove, and the stability of the driving rod and the diaphragm can be further improved in the process.
Preferably, an air passage is formed in the inner wall of each sliding shaft and is communicated with the sliding chute; the side, opposite to the sliding shaft, of each sliding shaft is fixedly connected with a long bag on the outer surface of the sliding shaft, and the long bags are made of corrosion-resistant rubber materials; each long bag inner cavity is communicated with an air passage;
the during operation, because the long bag that the slide shaft surface linked firmly passes through air flue and spout intercommunication, back in the arc wall is gone into to the slide shaft card, in the gas in the spout can flow in the long bag through the air flue, when gas flows in the long bag, can make long bag inflation, can further improve the laminating degree of actuating lever and diaphragm at this in-process to further improve the fixed degree between diaphragm and the actuating lever, can also further improve the sealed degree between diaphragm and the actuating lever simultaneously.
Preferably, the inner wall of each sliding shaft is connected with uniformly distributed interlayers in a sliding manner through springs, and cavities at the bottoms of the interlayers are communicated with the circular grooves through air passages; each interlayer is used for fixing the diaphragm;
during operation, because sliding connection has the interlayer of evenly arranging in the slide bar inner wall, after the interlayer is fixed on the actuating lever, the gas in the spout can flow into the cavity below the interlayer through the air flue, and when the gas flows into the cavity below the interlayer, can promote the interlayer to move to the slide bar outside, can extrude the diaphragm to between two interlayers at the in-process that the interlayer removed, can further improve the fixed degree of interlayer at this in-process to prevent that the diaphragm from sliding on the actuating lever.
Preferably, each diaphragm is internally provided with a cavity; each annular shaft is designed to be hollow and is communicated with the cavity; air pipes are uniformly arranged in each circular groove, and the number of the air pipes is two; the air pipe on the left side extends to the right side of the air groove; the air pipe on the right side extends to the left side of the air groove; the other end of each air pipe extends into the cavity;
when the air pump works, the air pipes in the circular grooves are arranged in the driving rod on the opposite side, in the process that the driving rod slides rightwards, when the air pipes correspond to the air grooves, the air in the air grooves can flow into the air pipes at the moment, the other end of each air pipe is communicated with the cavity in the diaphragm, the air in the air pipes can flow into the diaphragm, when the air flows into the cavity in the diaphragm, the volume of the diaphragm can be increased, more liquid can be extruded out after the diaphragm expands, the water discharge amount of the diaphragm can be increased in the process, the working efficiency of the water pump can be increased, when the driving rod moves leftwards, the long pipe is separated from the air grooves, the diaphragm is pulled by the diaphragm, so that the air in the diaphragm can be discharged, more liquid can be pumped in the diaphragm exhausting process, the working efficiency of the water pump can be further increased, and meanwhile, in the diaphragm expanding process, gas can flow into the annular shaft, in the process of which the degree of sealing of the diaphragm against the compression box can be increased.
Preferably, a rectangular groove is formed in the inner wall of the retraction rod, and a long block fixedly connected to the diaphragm is arranged in the rectangular groove; an annular groove is formed in the inner wall of the rectangular groove, and an annular block is connected in the sliding groove in a sliding manner; the opposite side of each ring block is fixedly connected with a ring rod, and the ring rods can be inserted into the long blocks; a long rod is fixedly connected to one side of each ring rod, which is opposite to the ring rod, and the long rods extend to the retracting rods; the inner wall of the ring groove is connected with evenly distributed inserted rods in a sliding manner, and the inserted rods can extend out of the external design;
the during operation, because the annular is arranged in to the long piece that links firmly on the diaphragm, when the diaphragm on the receipts pole takes place to damage, the control is received the pole and is rotated this moment, receive pole pivoted in-process with the winding of diaphragm on the receipts pole that corresponds, open the case lid of storage tank this moment, then through stock to both sides slip ring piece, can break away from the long piece at the gliding in-process ring pole of ring piece, then take out the long piece, and the pulling diaphragm, find the diaphragm after the damage and change, can be convenient change the diaphragm at this in-process, thereby labour saving and time saving, after the diaphragm is changed, promote the ring piece this moment and make the ring pole insert in the long piece, then controller control receipts pole rotates, can extrude the inserted bar at receipts pole pivoted in-process, can further improve the fixed degree of ring piece at this in-process, thereby make the better diaphragm of ring piece fix.
The invention has the following beneficial effects:
1. the sliding shaft is arranged, so that the sliding shaft which is uniformly arranged can be jacked up after gas flows into the sliding groove, the arc-shaped groove formed in the inner wall of the notch of the diaphragm is matched with the sliding shaft, the sliding shaft can be jacked into the arc-shaped groove, the fixing degree between the diaphragm and the driving rod can be further improved in the process, the diaphragm is prevented from sliding off in the working process, the working process of the diaphragm is influenced, the sealing degree between the diaphragm and the driving rod can be improved, liquid is prevented from flowing into the movement mechanism, the trapezoidal block fixedly connected in the notch can extend into the trapezoidal groove in the process that the driving rod moves towards the direction of the diaphragm, and the stability degree of the driving rod and the diaphragm can be further improved in the process.
2. The air pipe is arranged, the other end of the air pipe is communicated with the cavity in the diaphragm, air in the air pipe can flow into the diaphragm, when the air flows into the cavity in the diaphragm, the volume of the diaphragm can be increased, more liquid can be extruded out after the diaphragm expands, the displacement of the diaphragm can be increased in the process, the working efficiency of the water pump can be improved, when the driving rod moves leftwards, the long pipe is separated from the air groove, the diaphragm is pulled by the diaphragm, the air in the diaphragm can be discharged, more liquid can be pumped in the diaphragm exhausting process, the working efficiency of the water pump can be further improved, meanwhile, in the diaphragm expanding process, the air can flow into the annular shaft, and the sealing degree of the diaphragm and the compression box can be improved in the process.
Drawings
The invention will be further explained with reference to the drawings.
FIG. 1 is a body diagram of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is an enlarged view of a portion of FIG. 2 at A;
FIG. 4 is an enlarged view of a portion of FIG. 2 at B;
FIG. 5 is an enlarged view of a portion of FIG. 2 at C;
FIG. 6 is a cross-sectional view taken at D-D of FIG. 2;
FIG. 7 is an enlarged view of a portion E of FIG. 6;
in the figure: the pump body 1, the compression box 11, the left box body 12, the right box body 13, the auxiliary plate 14, the diaphragm 15, the notch 16, the annular groove 17, the annular shaft 18, the movement mechanism 2, the air groove 21, the first air injection hole 22, the second air injection hole 23, the air distribution block 24, the driving rod 25, the clamping shaft 26, the circular groove 27, the strip-shaped groove 28, the sliding shaft 29, the arc-shaped groove 291, the trapezoid-shaped groove 292, the trapezoid-shaped block 293, the long bag 294, the interlayer 295, the air pipe 296, the storage box 3, the take-up rod 31, the rectangular groove 32, the annular groove 33, the annular block 34, the inserted rod 35 and the annular rod 36.
Detailed Description
A diaphragm water pump according to an embodiment of the present invention will be described below with reference to fig. 1 to 7.
As shown in fig. 1-7, the diaphragm water pump of the present invention comprises a pump body 1 and a moving mechanism 2; the end surfaces of the left side and the right side of the movement mechanism 2 are fixedly connected with compression boxes 11, and the compression boxes 11 are designed in a conical shape; an air groove 21 is formed in the inner wall of the movement mechanism 2, and the air grooves 21 are communicated with high-pressure air; first air injection holes 22 are uniformly distributed in the inner wall of the movement mechanism 2 on the left side of the air groove 21, and the first air injection holes 22 are uniformly communicated with the left compression box 11; the right side of the air groove 21 is provided with second air injection holes 23 which are uniformly distributed, and the second air injection holes 23 are communicated with the right side compression box 11; the air distribution block 24 is connected in the air groove 21 in a sliding manner through a control rod; a driving rod 25 is connected in the inner wall of the motion mechanism 2 in a sliding manner, and the driving rod 25 is designed in a bidirectional conical manner; the side, opposite to the driving rod 25, of the driving rod 25 is fixedly connected with clamping shafts 26 which are uniformly arranged on the outer surface of the driving rod 25; the two compression boxes 11 comprise a left box body 12 and a right box body 13; auxiliary plates 14 are fixedly connected to the outer surfaces of the two compression boxes 11 at the front side and the rear side of the compression boxes 11, and the auxiliary plates 14 are used for fixing the left box body 12 and the right box body 13; the storage boxes 3 are fixedly connected to the outer surfaces of the compression boxes 11 at the upper side and the lower side of each compression box 11, and the storage boxes 3 are fixedly connected with the auxiliary plate 14; the storage box 3 is matched with the auxiliary plate 14 to seal the compression box 11; a retracting rod 31 is rotatably connected in the inner wall of each storage box 3 through a motor; the outer surface of the retraction rod 31 is wound with the diaphragms 15 which are uniformly arranged, and the diaphragms 15 are made of different materials and are designed in a circular shape; the upper surface of each diaphragm 15 is fixedly connected with a long shaft; the lower surface of each diaphragm 15 is fixedly connected with a long block, and the long block is internally provided with a long groove which is matched with the long shaft; the diaphragms 15 on the upper retracting rods 31 are connected with the films on the lower retracting rods 31, and the diaphragms 15 are arranged between the left box body 12 and the right box body 13; a notch 16 is formed in the center line of each diaphragm 15, and the notches 16 are matched with the driving rod 25; the inner wall of each storage box 3 is fixedly connected with cleaning layers which are uniformly arranged through a rotating shaft, and the cleaning layers are arranged on two sides of the diaphragm 15 and attached to the diaphragm 15; an annular groove 17 is formed in the inner wall of one side, opposite to the right box body 13, of each left box body 12; two side end faces of each diaphragm 15 are fixedly connected with an annular shaft 18, and the annular shafts 18 are matched with the annular grooves 17; the two compression boxes 11 are fixedly connected with the pump body 1;
when the diaphragm water pump works, the diaphragms 15 in the diaphragm water pump in the prior art are made of specific materials, each diaphragm 15 is only suitable for one type of liquid, when other types of liquid are extracted, the water pump with the diaphragms 15 made of different materials is required to be replaced, so that the working cost is increased, the use range of the water pump is limited, when the mutually matched water pumps cannot be found, the water pump needs to be bought again or the diaphragms 15 need to be replaced, so that the problems of the working cost and the labor intensity are solved, the diaphragm water pump manufactured by the invention has the advantages that the storage box 3 is arranged, the diaphragms 15 made of different materials are arranged in the storage box 3, when different liquids are extracted, the retraction rod 31 is controlled by the controller to rotate, so that the diaphragms 15 can be replaced, so that the resources are greatly saved, the use range of the water pump is also increased, when the diaphragms 15 made of other materials are required to be replaced when the water, because the air groove 21 is filled with high-pressure air, when the air distributing block 24 moves to the first air injecting hole 22, the first air injecting hole 22 injects air outwards, and can drive the driving rod 25 to move leftwards, when the driving rod 25 moves to the left side, the air injection into the air groove 21 is stopped at this time, and the diaphragm 15 originally fixed on the right side of the driving rod 25 is separated from the driving rod 25, at this time, the controller controls the motor in the storage box 3 to rotate, the receiving rod 31 can be driven to rotate in the rotating process of the motor, the diaphragm 15 on the receiving rod 31 can be driven to move between the left box body 12 and the right box body 13 in the rotating process of the receiving rod 31, when the rotating diaphragm 15 moves to the two sides of the cleaning layer, the cleaning layer can absorb and clean the liquid on the outer surface of the diaphragm 15, in this process, the liquid on the outer surface of the diaphragm 15 can be prevented from adhering to other diaphragms 15, thereby causing the corrosion of other diaphragms 15, when the film to be replaced moves between the left box, because the annular shaft 18 fixedly connected with the end surfaces of the two sides of the diaphragm 15 is mutually matched with the annular groove 17 arranged in the inner walls of the left box body 12 and the right box body 13, the annular shaft 18 on the diaphragm 15 can be clamped into the annular groove 17, the diaphragm 15 can be fixed in the process, so that the diaphragm 15 is prevented from shaking in the working process to influence the working process, meanwhile, the sealing degree between the diaphragm 15 and the left box body 12 and the right box body 13 can be improved, so that liquid is prevented from flowing out, the diaphragm 15 can be replaced in the process, so that the working efficiency is prevented from being influenced by replacing a water pump, after the diaphragm 15 is fixed in the compression box 11, the flow dividing block moves to the second air injection hole 23, at the moment, the gas can drive the driving rod 25 to move rightwards, because the driving rod 25 is designed in a conical shape, the notch 16 at the center position of the diaphragm 15 can be inserted, and the national degree, thereby prevent that diaphragm 15 from taking place to drop at the in-process of work, because actuating lever 25 surface links firmly the card axle 26 of evenly arranging, the in-process card axle 26 that moves right at actuating lever 25 can pass breach 16, can further improve the fixed degree to diaphragm 15 at this in-process, when actuating lever 25 removed to the right side, diaphragm 15 on controller control right side rotated and changed this moment, because left box 12 links firmly through accessory plate 14 with right box 13, thereby can improve the fixed degree between left box 12 and the right box 13, can also improve the sealed degree of compression case 11 simultaneously.
As an embodiment of the present invention, a circular groove 27 is cut in the inner wall of the driving rod 25, and the circular groove 27 is not communicated with the outside; the inner wall of the circular groove 27 is provided with strip-shaped grooves 28 which are uniformly distributed, and the strip-shaped grooves 28 are communicated with the air groove 21; the side, opposite to the driving rod 25, of the driving rod 25 is provided with uniformly arranged sliding grooves in the inner wall of the driving rod 25, and the sliding grooves are communicated with the circular grooves 27 through holes; a sliding shaft 29 is interactively connected to the inner wall of each sliding chute through a spring, and the end surface of one side, opposite to the sliding shaft 29, of each sliding chute is in an arc shape; arc-shaped grooves 291 are uniformly arranged in the inner wall of each notch 16, and the arc-shaped grooves 291 are matched with the sliding shaft 29; trapezoidal grooves 292 which are uniformly distributed are formed in the inner walls of the two sides of the driving rod 25 on the end surfaces of the two sides of the driving rod 25, and the trapezoidal grooves 292 are communicated with the outside; trapezoidal blocks 293 which are uniformly arranged are fixedly connected in the inner wall of each notch 16 of the diaphragm 15, and the trapezoidal blocks 293 are matched with the trapezoidal grooves 292;
during operation, because the strip-shaped groove 28 is always communicated with the circular groove 27, during the process of gas injection of the gas groove 21, the gas in the gas groove 21 can flow into the circular groove 27 through the strip-shaped groove 28, when the gas flows into the circular groove 27, the gas can flow into the sliding groove through the through hole, after the gas flows into the sliding groove, the sliding shafts 29 which are uniformly arranged can be jacked up, because the arc-shaped groove 291 formed in the inner wall of the notch 16 of the diaphragm 15 is matched with the sliding shaft 29, the sliding shafts 29 can be jacked into the arc-shaped groove 291, the fixing degree between the diaphragm 15 and the driving rod 25 can be further improved during the process, the diaphragm 15 is prevented from sliding down during the working process, the working process of the diaphragm 15 is influenced, meanwhile, the sealing degree between the diaphragm 15 and the driving rod 25 can be improved, thereby the liquid is prevented from flowing into the movement mechanism 2, during the process that the driving rod 25 moves towards the direction of the diaphragm 15, the trapezoid blocks 293 fixedly connected in the, the stability of the drive rod 25 and the diaphragm 15 can be further improved in this process.
As an embodiment of the present invention, an air passage is opened in an inner wall of each sliding shaft 29, and the air passages are communicated with the sliding grooves; a long bag 294 is fixedly connected to the outer surface of each sliding shaft 29 on the side opposite to the sliding shaft 29, and the long bag 294 is made of corrosion-resistant rubber materials; the cavity in each long bag 294 is communicated with the air passage;
during operation, because the long bag 294 that the surface of slide shaft 29 links firmly passes through air flue and spout intercommunication, after slide shaft 29 card goes into in the arc wall 291, the gas in the spout can flow into long bag 294 through the air flue, when gas flows into long bag 294, can make long bag 294 expand, can further improve the laminating degree of actuating lever 25 and diaphragm 15 at this in-process to further improve the fixed degree between diaphragm 15 and the actuating lever 25, can also further improve the sealed degree between diaphragm 15 and the actuating lever 25 simultaneously.
As an embodiment of the invention, uniformly arranged spacers 295 are slidably connected in the inner wall of each sliding shaft 29 through springs, and cavities at the bottoms of the spacers 295 are communicated with the circular groove 27 through air passages; each of the spacers 295 is used to secure the diaphragm 15;
during operation, because the interlayer 295 that is evenly arranged is connected in the sliding shaft 29 inner wall in a sliding manner, after the interlayer 295 is fixed on the driving rod 25, gas in the sliding chute can flow into the cavity below the interlayer 295 through the air passage, when the gas flows into the cavity below the interlayer 295, the interlayer 295 can be pushed to move towards the outer side of the sliding shaft 29, the diaphragm 15 can be extruded between the two interlayers 295 in the moving process of the interlayer 295, the fixing degree of the interlayer 295 can be further improved in the process, and therefore the diaphragm 15 is prevented from sliding on the driving rod 25.
As an embodiment of the present invention, each of the diaphragms 15 has a cavity therein; each annular shaft 18 is of hollow design and is communicated with the cavity; air pipes 296 are uniformly arranged in each circular groove 27, and the number of the air pipes 296 is two; the left air pipe 296 extends to the right of the air groove 21; the right air pipe 296 extends to the left of the air groove 21; the other end of each air tube 296 extends into the cavity;
during operation, because the air tubes 296 in the circular grooves 27 are all arranged in the driving rod 25 on the opposite side, in the process that the driving rod 25 slides rightwards, when the air tubes 296 and the air grooves 21 correspond to each other, at the moment, the air in the air grooves 21 can flow into the air tubes 296, because the other ends of the air tubes 296 are all communicated with the cavity in the diaphragm 15, the air in the air tubes 296 can flow into the diaphragm 15, when the air flows into the cavity in the diaphragm 15, the volume of the diaphragm 15 can be increased, more liquid can be extruded out after the diaphragm 15 expands, the water discharge amount of the diaphragm 15 can be increased in the process, so that the working efficiency of the water pump can be improved, when the driving rod 25 moves leftwards, the long tubes are separated from the air grooves 21, because the diaphragm 15 is subjected to the pulling force of the diaphragm 15, the air in the diaphragm 15 can be discharged, more liquid can be pumped in the process of exhausting the diaphragm 15, so that the working efficiency of the, at the same time, during the expansion of the membrane 15, gas can flow into the annular shaft 18, during which the degree of sealing of the membrane 15 against the compression box 11 can be increased.
As an embodiment of the present invention, a rectangular groove 32 is opened in the inner wall of the retracting rod 31, and a long block fixedly connected to the diaphragm 15 is placed in the rectangular groove 32; a ring groove 33 is formed in the inner wall of the rectangular groove 32, and a ring block 34 is connected in the sliding groove in a sliding manner; a ring rod 36 is fixedly connected to one side of each ring block 34, and the ring rods 36 can be inserted into the long blocks; a long rod is fixedly connected to one side of each ring rod 36 opposite to the other side, and each long rod extends to the corresponding retracting rod 31; the inner wall of the ring groove 33 is connected with evenly distributed inserted rods 35 in a sliding manner, and the inserted rods 35 can extend out of the external design;
when in work, as the long block fixedly connected with the diaphragm 15 is arranged in the annular groove 33, when the diaphragm 15 on the retracting rod 31 is damaged, the retracting rod 31 is controlled to rotate, the diaphragms 15 are wound around the corresponding retraction rods 31 in the process of rotating the retraction rods 31, at which time the covers of the storage cases 3 are opened, and then the ring blocks 34 are slid toward both sides by the long rods, the ring rod 36 will be detached from the long block during the sliding of the ring block 34, and then the long block is taken out, and the diaphragm 15 is pulled, the damaged diaphragm 15 is found and replaced, in the process, the diaphragm 15 can be conveniently replaced, thereby saving time and labor, and after the diaphragm 15 is replaced, at this time, the ring block 34 is pushed to insert the ring rod 36 into the long block, and then the controller controls the retracting rod 31 to rotate, the inserted rod 35 can be pressed during the rotation of the retracting rod 31, and the fixing degree of the ring block 34 can be further improved during the process, so that the ring block 34 can better fix the diaphragm 15.
The specific working process is as follows:
when the water pump manufactured by the invention is used, when the diaphragm 15 made of other materials needs to be replaced, because high-pressure gas is in the gas groove 21, when the gas distribution block 24 moves to the first gas injection hole 22, the first gas injection hole 22 injects gas outwards, and simultaneously the driving rod 25 can be driven to move leftwards, when the driving rod 25 moves to the left side, gas injection into the gas groove 21 is stopped, and simultaneously the diaphragm 15 originally fixed on the right side of the driving rod 25 is separated from the driving rod 25, at the moment, the controller controls the motor in the storage box 3 to rotate, the take-up rod 31 can be driven to rotate in the rotating process of the motor, the diaphragm 15 on the take-up rod 31 can be driven to move between the left box body 12 and the right box body 13 in the rotating process of the take-up rod 31, when the rotating diaphragm 15 moves to the two sides of the cleaning layer, the cleaning layer can absorb and clean liquid on the outer surface of the diaphragm 15, and can prevent the liquid on the outer surface of the diaphragm 15 from, therefore, other diaphragms 15 are corroded, when a film to be replaced moves between the left box body 12 and the right box body 13, the annular shaft 18 fixedly connected with the end faces of the two sides of the diaphragm 15 is matched with the annular groove 17 formed in the inner walls of the left box body 12 and the right box body 13, the annular shaft 18 on the diaphragm 15 can be clamped into the annular groove 17, the diaphragm 15 can be fixed in the process, after the diaphragm 15 is fixed in the compression box 11, the flow dividing block moves to the second gas jet hole 23, gas can drive the driving rod 25 to move rightwards, the driving rod 25 is in a conical design, so that the driving rod 25 can be inserted into the notch 16 in the center of the diaphragm 15, the national degree of the diaphragm 15 and the driving rod 25 can be improved in the process, the diaphragm 15 is prevented from falling off in the working process, and the clamping shafts 26 which are uniformly arranged are fixedly connected to the outer surface of the driving, the clamping shaft 26 can pass through the notch 16 in the process that the driving rod 25 moves rightwards, the fixing degree of the diaphragm 15 can be further improved in the process, when the driving rod 25 moves rightwards, the controller controls the diaphragm 15 on the right side to rotate and replace at the moment, and the left box body 12 is fixedly connected with the right box body 13 through the auxiliary plate 14, so that the fixing degree between the left box body 12 and the right box body 13 can be improved, and meanwhile, the sealing degree of the compression box 11 can also be improved.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. A diaphragm water pump characterized by: comprises a pump body (1) and a motion mechanism (2); the end faces of the left side and the right side of the movement mechanism (2) are fixedly connected with compression boxes (11), and the compression boxes (11) are designed in a conical shape; an air groove (21) is formed in the inner wall of the movement mechanism (2), and the air grooves (21) are communicated with high-pressure air; first air injection holes (22) which are uniformly distributed are formed in the inner wall of the movement mechanism (2) on the left side of the air groove (21), and the first air injection holes (22) are uniformly communicated with the left compression box (11); second air injection holes (23) are uniformly formed in the right side of the air groove (21), and the second air injection holes (23) are communicated with the right compression box (11); the air distribution block (24) is connected in the air groove (21) in a sliding way through a control rod; a driving rod (25) is connected to the inner wall of the movement mechanism (2) in a sliding manner, and the driving rod (25) is designed in a bidirectional conical manner; the outer surface of the driving rod (25) on the opposite side of the driving rod (25) is fixedly connected with clamping shafts (26) which are uniformly arranged; the two compression boxes (11) comprise a left box body (12) and a right box body (13); auxiliary plates (14) are fixedly connected to the outer surfaces of the two compression boxes (11) at the front side and the rear side of the compression boxes (11), and the auxiliary plates (14) are used for fixing the left box body (12) and the right box body (13); the upper side and the lower side of each compression box (11) are fixedly connected with storage boxes (3) on the outer surfaces of the compression boxes (11), and the storage boxes (3) are fixedly connected with auxiliary plates (14); the compression box (11) can be sealed by matching the storage box (3) with the auxiliary plate (14); a retracting rod (31) is rotatably connected in the inner wall of each storage box (3) through a motor; the outer surface of the retraction rod (31) is wound with uniformly arranged diaphragms (15), and the diaphragms (15) are made of different materials and are designed in a circular shape; the upper surface of each diaphragm (15) is fixedly connected with a long shaft; the lower surface of each diaphragm (15) is fixedly connected with a long block, and long grooves are formed in the long blocks and matched with the long shaft; the diaphragms (15) on the upper retracting rods (31) are connected with the films on the lower retracting rods (31), and the diaphragms (15) are arranged between the left box body (12) and the right box body (13); a notch (16) is formed in the center line of each diaphragm (15), and the notches (16) are matched with the driving rod (25); cleaning layers which are uniformly arranged are fixedly connected in the inner wall of each storage box (3) through a rotating shaft, and the cleaning layers are arranged on two sides of the diaphragm (15) and attached to the diaphragm (15); an annular groove (17) is formed in the inner wall of one side, opposite to the right box body (13), of each left box body (12); the end faces of two sides of each diaphragm (15) are fixedly connected with an annular shaft (18), and the annular shafts (18) are matched with the annular grooves (17); and the two compression boxes (11) are fixedly connected with the pump body (1).
2. The diaphragm water pump as claimed in claim 1, wherein: a circular groove (27) is formed in the inner wall of the driving rod (25), and the circular groove (27) is not communicated with the outside; strip-shaped grooves (28) which are uniformly distributed are formed in the inner wall of the circular groove (27), and the strip-shaped grooves (28) are communicated with the air groove (21); the inner wall of the driving rod (25) at one side of the driving rod (25) opposite to the other side is provided with uniformly distributed sliding grooves, and the sliding grooves are communicated with the circular grooves (27) through holes; a sliding shaft (29) is interactively connected in the inner wall of each sliding chute through a spring, and the end surface of one side, back to the sliding shaft (29), of each sliding chute is in an arc design; arc-shaped grooves (291) which are uniformly distributed are formed in the inner wall of each notch (16), and the arc-shaped grooves (291) are matched with the sliding shaft (29); trapezoidal grooves (292) which are uniformly distributed are formed in the inner walls of the two sides of the driving rod (25) on the end surfaces of the two sides of the driving rod (25), and the trapezoidal grooves (292) are communicated with the outside; each trapezoidal block (293) that evenly arranges has all been linked firmly in diaphragm (15) breach (16) inner wall, and trapezoidal block (293) all mutually supports with trapezoidal groove (292).
3. The diaphragm water pump as claimed in claim 2, wherein: an air passage is formed in the inner wall of each sliding shaft (29), and the air passages are communicated with the sliding grooves; the outer surface of each sliding shaft (29), which is opposite to the sliding shaft (29), is fixedly connected with a long bag (294), and the long bags (294) are made of corrosion-resistant rubber materials; the inner cavity of each long bag (294) is communicated with the air passage.
4. The diaphragm water pump as claimed in claim 2, wherein: the inner wall of each sliding shaft (29) is connected with uniformly arranged partition layers (295) in a sliding mode through springs, and cavities at the bottoms of the partition layers (295) are communicated with the circular grooves (27) through air passages; each of the spacers (295) is used for fixing the diaphragm (15).
5. The diaphragm water pump as claimed in claim 2, wherein: a cavity is formed in each diaphragm (15); each annular shaft (18) is designed to be hollow and is communicated with the cavity; air pipes (296) which are uniformly arranged are arranged in each circular groove (27), and the number of the air pipes (296) is two; the air pipe (296) on the left side extends to the right side of the air groove (21); the air pipe (296) on the right side extends to the left side of the air groove (21); the other end of each air pipe (296) extends into the cavity.
6. The diaphragm water pump as claimed in claim 1, wherein: a rectangular groove (32) is formed in the inner wall of the retraction rod (31), and a long block fixedly connected to the diaphragm (15) is placed in the rectangular groove (32); a ring groove (33) is formed in the inner wall of the rectangular groove (32), and a ring block (34) is connected in the sliding groove in a sliding manner; a ring rod (36) is fixedly connected to one side, opposite to each ring block (34), and the ring rods (36) can be inserted into the long blocks; a long rod is fixedly connected to one side of each ring rod (36) opposite to the other side, and the long rods extend to the retracting rods (31); sliding connection has inserted bar (35) of evenly arranging in annular (33) inner wall, and inserted bar (35) all can stretch out external design.
CN202010790285.9A 2020-08-07 2020-08-07 Diaphragm water pump Active CN111894837B (en)

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Application Number Priority Date Filing Date Title
CN202010790285.9A CN111894837B (en) 2020-08-07 2020-08-07 Diaphragm water pump

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Application Number Priority Date Filing Date Title
CN202010790285.9A CN111894837B (en) 2020-08-07 2020-08-07 Diaphragm water pump

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CN111894837B CN111894837B (en) 2023-01-10

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040136843A1 (en) * 2002-04-12 2004-07-15 Bayer Aktiengesellschaft Diaphragm pump
CN101936282A (en) * 2010-09-30 2011-01-05 潘万桑 Pneumatic type two diaphragm pump
CN205370928U (en) * 2016-01-27 2016-07-06 广东福美新材料科技有限公司 Pneumatic diaphragm pump
CN207048956U (en) * 2017-06-20 2018-02-27 东营利丰化工新材料有限公司 A kind of novel pneumatic membrane pump
CN210196002U (en) * 2019-07-15 2020-03-27 浙江展博隔膜泵制造有限公司 High-performance pneumatic diaphragm pump
CN210317696U (en) * 2019-07-26 2020-04-14 江苏绩优机电科技有限公司 Professional-grade diaphragm pump

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040136843A1 (en) * 2002-04-12 2004-07-15 Bayer Aktiengesellschaft Diaphragm pump
CN101936282A (en) * 2010-09-30 2011-01-05 潘万桑 Pneumatic type two diaphragm pump
CN205370928U (en) * 2016-01-27 2016-07-06 广东福美新材料科技有限公司 Pneumatic diaphragm pump
CN207048956U (en) * 2017-06-20 2018-02-27 东营利丰化工新材料有限公司 A kind of novel pneumatic membrane pump
CN210196002U (en) * 2019-07-15 2020-03-27 浙江展博隔膜泵制造有限公司 High-performance pneumatic diaphragm pump
CN210317696U (en) * 2019-07-26 2020-04-14 江苏绩优机电科技有限公司 Professional-grade diaphragm pump

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