CN111744733B - A water and soak equipment discharge mechanism for motor processing - Google Patents

A water and soak equipment discharge mechanism for motor processing Download PDF

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Publication number
CN111744733B
CN111744733B CN202010632811.9A CN202010632811A CN111744733B CN 111744733 B CN111744733 B CN 111744733B CN 202010632811 A CN202010632811 A CN 202010632811A CN 111744733 B CN111744733 B CN 111744733B
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pipe
blocking
equipment
hole
side wall
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CN111744733A (en
Inventor
吴文君
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Tongxiang Hongtu Recycling Technology Co ltd
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Tongxiang Sanyuan Motor Technology Co ltd
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Publication of CN111744733A publication Critical patent/CN111744733A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C11/00Component parts, details or accessories not specifically provided for in groups B05C1/00 - B05C9/00
    • B05C11/10Storage, supply or control of liquid or other fluent material; Recovery of excess liquid or other fluent material
    • B05C11/1002Means for controlling supply, i.e. flow or pressure, of liquid or other fluent material to the applying apparatus, e.g. valves
    • B05C11/1007Means for controlling supply, i.e. flow or pressure, of liquid or other fluent material to the applying apparatus, e.g. valves responsive to condition of liquid or other fluent material
    • B05C11/1013Means for controlling supply, i.e. flow or pressure, of liquid or other fluent material to the applying apparatus, e.g. valves responsive to condition of liquid or other fluent material responsive to flow or pressure of liquid or other fluent material

Abstract

The invention discloses a pouring and soaking equipment discharging mechanism for motor processing, which comprises a storage barrel, a material guide pipe arranged at the bottom of the storage barrel, a material outlet arranged at the bottom of the material guide pipe, a material guiding pipe arranged in the storage barrel and an equipment pipe arranged at the top of the material guiding pipe, wherein a discharging hole is formed in the bottom of the storage barrel, the material guide pipe is matched with the discharging hole, a material blocking pipe is arranged in the equipment pipe, and a driving piece for driving the material blocking pipe to do lifting motion is arranged above the material blocking pipe; a plurality of feed inlets are formed in the side wall of the material guiding pipe; the driving piece drives the material blocking pipe to do lifting motion, the feed inlet on the material guiding pipe is blocked, the quantity of the feed inlet is adjusted, insulation entering the material guiding pipe is controlled through the matching of the material blocking pipe and a part of the feed inlet, so that the flow rate and the discharge capacity of insulating paint are controlled, the traditional manual pouring and dipping method is replaced, and the pouring and dipping effect is convenient to promote.

Description

A water and soak equipment discharge mechanism for motor processing
Technical Field
The invention belongs to the field of winding stator core casting and leaching equipment, and particularly relates to a discharging mechanism of casting and leaching equipment for motor processing.
Background
The winding is the weakest part in the motor structure, and in order to improve the moisture resistance, corrosion resistance and insulation strength of the winding, improve the mechanical strength, thermal conductivity and heat dissipation effect, delay aging and the like, the rewound motor winding needs to be subjected to paint dipping treatment. The main methods for dipping paint are as follows: pouring and immersing, vacuum pressure immersing, and pouring and immersing are mostly adopted for the paint dipping of the motor repaired individually. In the traditional pouring and dipping process, insulating paint is usually filled in a plastic bottle, a stator core is sprayed, the purpose of pouring and dipping the stator is achieved, the flow rate of the insulating paint can be controlled according to requirements by adopting a manual operation method, the manual operation is easy to cause fatigue for a long time, the pouring and dipping effect is influenced, and the long-term contact of the insulating paint has certain influence on the health of a human body.
Disclosure of Invention
The invention provides a pouring and dipping equipment discharging mechanism for motor processing, which is convenient for controlling the flow rate of insulating paint in order to overcome the defects of the prior art.
In order to achieve the purpose, the invention adopts the following technical scheme: a pouring and soaking equipment discharging mechanism for motor processing comprises a storage barrel, a material guide pipe arranged at the bottom of the storage barrel, a discharge port arranged at the bottom of the material guide pipe, a material guide pipe arranged in the storage barrel and an equipment pipe arranged at the top of the material guide pipe, wherein a discharging hole is formed in the bottom of the storage barrel, the material guide pipe is matched with the discharging hole, a material blocking pipe is arranged in the equipment pipe, and a driving piece used for driving the material blocking pipe to move up and down is arranged above the material blocking pipe; a plurality of feed inlets are formed in the side wall of the material guiding pipe; the driving piece drives the material blocking pipe to do lifting motion, the feed inlet on the material guiding pipe is blocked, the quantity of the feed inlet is adjusted, insulation entering the material guiding pipe is controlled through the matching of the material blocking pipe and a part of the feed inlet, so that the flow rate and the discharge capacity of insulating paint are controlled, the traditional manual pouring and dipping method is replaced, and the pouring and dipping effect is convenient to promote.
Preferably, a discharging adjusting assembly is arranged in the material guide pipe; the interior of the material guide pipe is obliquely arranged; the slope setting of passage inner wall makes better and the passage inner wall of ejection of compact adjusting part cooperate, through ejection of compact adjusting part and stifled material pipe's mutually supporting effect, controls the insulating paint in the passage, makes the insulating paint who drops from discharge gate department more easily controlled, promotes the stator and waters and soak the effect.
Preferably, a cavity is arranged in the blocking pipe, a plurality of first through holes are arranged on the side wall of the blocking pipe, and the first through holes correspond to the feed inlet; an anti-blocking component is arranged in the first through hole; when stifled material pipe blockked up the feed inlet, first through-hole and feed inlet were aligned, and in the stifled subassembly of preventing in the first through-hole entered into the feed inlet, played the jam effect to the feed inlet, insulating paint was gathered in the feed inlet when avoiding stifled material pipe to block up the feed inlet, blockked up the normal work that the feed inlet influences discharge mechanism after insulating paint is dry, promoted discharge mechanism's reliability.
Preferably, the anti-blocking assembly comprises an equipment cavity arranged in the first through hole, a connecting rod penetrating through the equipment cavity, a baffle plate sleeved on the connecting rod and an anti-blocking block arranged at one end of the connecting rod, a movable cavity is arranged in the equipment cavity, the connecting rod penetrates through the movable cavity, and a return spring is arranged on the baffle plate; when the feed inlet is not blocked by the blocking pipe, the return spring is in the original long state, and the anti-blocking block is arranged on the equipment cavity and is in contact with the inner wall of the equipment pipe; when stifled material pipe when with the feed inlet shutoff, prevent that the sprue enters into in the feed inlet, play the jam effect to the feed inlet, prevent that insulating paint from entering into in the feed inlet with the feed inlet jam, promote discharge mechanism's reliability.
Preferably, a nut seat is arranged at the top of the equipment pipe, an installation seat matched with the nut seat is arranged above the nut seat, and the driving piece is fixedly connected to the installation seat; the driving piece is installed on the discharging mechanism through the matching of the nut seat and the installation seat, so that the connection between the driving piece and the discharging mechanism is changed into detachable connection, the driving piece can be conveniently detached from the discharging mechanism, the driving piece is convenient to overhaul and replace, and the maintenance cost is reduced.
Preferably, the driving part is a hydraulic rod, a second through hole is formed in the mounting seat, a piston rod of the hydraulic rod penetrates through the second through hole, and the piston rod of the hydraulic rod is fixedly connected with the material blocking pipe; through the effect of hydraulic stem, control stifled material pipe is elevating movement, plays the control effect to the insulating paint in the guide pipe, is convenient for control the flow of insulating paint.
Preferably, the mounting seat is provided with a vent hole, the vent hole is connected with the second vent hole, the top of the blocking material pipe is provided with a vent hole, and the vent hole is communicated with the cavity chamber; the air vent is externally connected with an air pump, air is input into the air vent through the air pump, the air enters the cavity chamber through the air vent, the limiting plate is pushed under the action of the air, the anti-blocking block enters the feed port to block the feed port, and the feed port is prevented from being blocked by insulating paint; in entering into the feed inlet through gas drive anti-blocking piece, promote the precision to anti-blocking piece control, make and prevent stifled subassembly play the guard action to the feed inlet in the corresponding first through-hole of feed inlet, increase discharge mechanism's reliability.
Preferably, the discharging adjusting assembly comprises a blocking block arranged in the material guide pipe, first connecting blocks arranged on two sides of the blocking block and a sliding block fixedly connected with the first connecting blocks, a third through hole matched with the sliding block is formed in the side wall of the material guide pipe, and a sliding rail matched with the sliding block is arranged in the third through hole; through the effect of slider and slide rail, can drive the sprue and remove, the sprue is mutually supported with the inner wall of passage at the in-process that removes, changes the latus rectum of passage inner wall to change the flow of interior insulating varnish of passage, be convenient for control the flow of insulating varnish, promote the effect of soaking of watering to the stator.
Preferably, a driving assembly for driving the blocking block to do lifting motion is arranged on the side wall of the material guide pipe, a mounting ring is arranged on the side wall of the material guide pipe, and the driving assembly is arranged on the mounting ring; control the sprue through drive assembly, drive the sprue and be elevating movement in the passage, make sprue and passage inner wall mutually support and play the purpose to insulating paint flow control, replace the artifical mode that moves the slider, increase discharge mechanism's degree of automation.
Preferably, the driving assembly comprises a movable box arranged on the side wall of the material guide pipe, a guide block arranged in the movable box and an air cylinder arranged on the mounting ring, and the guide block is fixedly connected with the sliding block; the movable box is matched with the piston rod of the air cylinder, so that the third through hole is sealed, insulating paint is prevented from flowing out of the material guide pipe from the third through hole, and waste of the insulating paint is avoided; the control to the guide block through the cylinder makes the sprue do elevating movement, provides good supporting effect for the sprue, makes the sprue by stable fixing in the guide pipe, increases discharge mechanism's stability.
The invention has the following advantages: the driving piece drives the material blocking pipe to do lifting motion, the feed inlet on the material guiding pipe is blocked, the quantity of the feed inlet is adjusted, insulation entering the material guiding pipe is controlled through the matching of the material blocking pipe and a part of the feed inlet, so that the flow rate and the discharge capacity of insulating paint are controlled, the traditional manual pouring and dipping method is replaced, and the pouring and dipping effect is convenient to promote.
Drawings
FIG. 1 is a schematic diagram of the present invention.
Fig. 2 is a schematic structural diagram of the present invention.
FIG. 3 is a schematic view of a tube of the apparatus of the present invention.
FIG. 4 is a schematic structural view of the tube of the apparatus of the present invention.
Fig. 5 is a schematic view of the material blocking pipe of the present invention.
Fig. 6 is a sectional top view of the plugging tube of the present invention.
Fig. 7 is a schematic view of the anti-blocking assembly of the present invention.
Fig. 8 is a schematic structural view of the anti-blocking assembly of the present invention.
Fig. 9 is a schematic view of a guide tube according to the present invention.
FIG. 10 is a schematic structural view of a discharge control assembly according to the present invention.
Fig. 11 is a schematic view of the slide block and the slide rail according to the present invention.
Detailed Description
In order to make the technical solutions of the present invention better understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
As shown in fig. 1 to 11, a pouring and dipping device discharging mechanism for motor processing includes a storage vat 1, a material guiding pipe 6 disposed at the bottom of the storage vat 1, a material discharging port 7 disposed at the bottom of the material guiding pipe 6, a material guiding pipe 22 disposed in the storage vat 1, and a device pipe 2 disposed at the top of the material guiding pipe 22, wherein the storage vat is used for storing insulating paint, the insulating paint is added into the storage vat, the insulating paint in the storage vat enters the material guiding pipe through the material guiding pipe, and finally flows out through the material discharging port; the bottom of the storage barrel 1 is provided with a blanking hole 23, the material guide pipe 6 is matched with the blanking hole 23, the discharge hole is in a conical structure, the pipe diameter of the discharge hole is smaller than that of the material guide pipe, insulating paint can fall into a linear shape through the discharge hole, the insulating paint can fall onto a stator better conveniently, and the stator is subjected to casting and dipping treatment; a material blocking pipe 21 is arranged in the equipment pipe 2, and a driving piece for driving the material blocking pipe 21 to move up and down is arranged above the material blocking pipe 21; a plurality of feed inlets 221 are formed in the side wall of the material guiding pipe 22, the feed inlets are uniformly formed in the side wall of the material guiding pipe, the material guiding pipe is fixedly connected to the bottom surface of the storage barrel, and the material guiding pipe is matched with the feed outlet; the blocking pipe can move up and down along the inner wall of the equipment pipe, and the outer diameter of the blocking pipe is the same as the inner diameter of the material guiding pipe; insulating paint in the storage vat enters into and draws in the material pipe via drawing the feed inlet on the material pipe lateral wall, do the up-and-down motion along the equipment pipe through driving piece drive stifled material pipe, make stifled material pipe block up the feed inlet on drawing the material pipe as required, change the number that the feed inlet was opened, thereby control the speed that enters into the interior insulating paint of material pipe of drawing, and then control the exit velocity of discharge gate department insulating paint, can control the speed of the insulating paint ejection of compact according to the size of stator, promote and water and soak the effect.
A discharging adjusting component is arranged in the material guide pipe 6; the inner wall of the material guide pipe 6 is obliquely arranged; the section of the bottom of the material guide pipe is smaller than that of the top of the material guide pipe, the bottom of the inner wall of the material guide pipe inclines inwards, and the section diameter of the bottom of the material guide pipe is larger than the inner diameter of the discharge hole, so that the discharge hole has a certain buffering effect on the insulating paint in the material guide pipe, and the insulating paint is prevented from falling rapidly; the slope setting of passage inner wall makes better and the passage inner wall of ejection of compact adjusting part cooperate, through ejection of compact adjusting part and stifled material pipe's mutually supporting effect, controls the insulating paint in the passage, makes the insulating paint who drops from discharge gate department more easily controlled, promotes the stator and waters and soak the effect.
A hollow chamber 214 is arranged in the blocking pipe 21, a plurality of first through holes 212 are arranged on the side wall of the blocking pipe 21, and the first through holes 212 correspond to the feed inlet 221; an anti-blocking component 213 is arranged in the first through hole 212; the first through hole has the same structure as the feed inlet, and the aperture of the first through hole is the same as that of the feed inlet; when stifled material pipe down moved along the equipment pipe under the effect of driving piece, first through-hole descends and cooperatees with the feed inlet, makes feed inlet and first through-hole align, prevents that stifled subassembly from entering into in the feed inlet in first through-hole after first through-hole aligns with the feed inlet, blocks up the feed inlet, prevents that the feed inlet from keeping in feed inlet department in insulating paint enters into the feed inlet when stifled material pipe blocks up, seals the feed inlet after insulating paint is dry and to draw the feeding work of material pipe.
The anti-blocking assembly 213 comprises an equipment cavity 2131 arranged in the first through hole 212, a connecting rod 2132 arranged in the equipment cavity 2131 in a penetrating manner, a baffle 2133 sleeved on the connecting rod 2132 and an anti-blocking block 2134 arranged at one end of the connecting rod 2132, wherein a movable cavity 2135 is arranged in the equipment cavity 2131, the connecting rod 2132 is arranged in the movable cavity 2135 in a penetrating manner, and a return spring 2136 is arranged on the baffle 2133; the length of the connecting rod is greater than that of the equipment cavity, the bottom of the connecting rod is arranged on the outer side of the equipment cavity, the limiting plate is fixedly connected to the bottom of the connecting rod, when the reset spring is in the original length, the limiting plate is positioned on the outer side of the equipment cavity, and the limiting plate can slide along the inner wall of the movable cavity; the anti-blocking block is of a semicircular section structure, when the reset spring is in an original length state, the bottom surface of the anti-blocking block is in contact with the top of the equipment cavity, and the top surface of the anti-blocking block is in contact with the inner wall of the equipment pipe.
A nut seat 3 is arranged at the top of the equipment pipe 2, an installation seat 4 matched with the nut seat 3 is arranged above the nut seat 3, and the driving piece is fixedly connected to the installation seat 4; the nut seat is fixedly connected to the top surface of the equipment pipe, the mounting seat is of a T-shaped structure, the bottom of the mounting seat is provided with an external thread matched with the nut seat, the mounting seat is connected to the equipment pipe through the matching of the external thread on the mounting seat and the internal thread on the nut seat, and the mounting seat plays a role in fixing the driving piece; when the driving piece damages and needs maintenance and change, can be convenient pull down the mount pad from the equipment pipe and overhaul the driving piece and change, reduce discharge mechanism's cost of maintenance.
The driving part is a hydraulic rod 5, a second through hole 41 is formed in the mounting seat 4, a piston rod of the hydraulic rod 5 penetrates through the second through hole 41, and the piston rod of the hydraulic rod 5 is fixedly connected with the blocking pipe 21; the diameter of the second through hole is larger than the diameter of a piston rod of the hydraulic rod, and when the piston rod of the hydraulic rod is arranged in the second through hole, a certain distance exists between the piston rod and the inner wall of the second through hole; through the effect of hydraulic stem, control stifled material pipe is elevating movement, plays the control action to the insulating varnish in the guide pipe, is convenient for control the flow of insulating varnish, provides stable power take off and support effect for stifled material pipe simultaneously, increases stifled reliability of expecting the pipe.
A vent hole 42 is formed in the mounting base 4, the vent hole 42 is connected with the second vent hole 41, a vent hole 211 is formed in the top of the blocking pipe 21, and the vent hole 211 is communicated with the cavity 214; the air vent is externally connected with an air pump, and an output shaft of the air pump is inserted into the air vent; when the blocking pipe descends under the action of the hydraulic rod to block the feed inlet, the first through hole is aligned with the feed inlet, the air pump conveys air flow into the air vent, the air flow enters the equipment pipe along the second through hole, the air flow enters the blocking pipe through the air vent, when the air flow in the blocking pipe reaches a certain value, the air flow in the blocking pipe pushes the limiting plate to move towards the feed inlet, the limiting plate compression reset spring pushes the anti-blocking block to move forwards, the anti-blocking block enters the feed inlet to block the feed inlet, and insulating paint is prevented from entering the feed inlet to block the feed inlet; when the driving piece needs to drive the plugging pipe to move upwards, the air pump stops inflating the plugging pipe, the anti-plugging block resets under the action of the reset spring and retracts into the first through hole from the feeding hole, and the hydraulic cylinder drives the plugging pipe to move; in mode promotion that ventilates toward the putty pipe through the air pump prevented in the sprue entered into the feed inlet, can be accurate prevent stifled subassembly to in each through-hole and control, make with the feed inlet align prevent stifled subassembly play the jam effect to the feed inlet in the first through-hole, avoid the feed inlet to be blockked up, promote discharge mechanism's practicality.
The discharging adjusting assembly comprises a blocking block 65 arranged in the material guiding pipe 6, first connecting blocks 651 arranged on two sides of the blocking block 65, and a sliding block 652 fixedly connected with the first connecting blocks 651, a third through hole 64 matched with the sliding block 652 is arranged on the side wall of the material guiding pipe 6, and a sliding rail 641 matched with the sliding block 652 is arranged in the third through hole 64; the blocking block is of a spherical structure, the diameter of the blocking block is the same as the inner diameter of the inner wall of the bottom of the material guide pipe, the bottom of the material guide pipe can be sealed through the blocking block, and the effect of closing the material outlet is achieved; the two ends of the sliding rail are fixedly connected to the inner wall of the second through hole, the sliding block is sleeved on the sliding rail, the first connecting block is fixedly connected with the blocking block, the blocking block can be driven to move up and down inside the guide pipe through the movement of the sliding block on the sliding rail, the distance between the blocking block and the inner wall of the guide pipe is changed, and therefore the flow velocity of the insulating paint is adjusted, the insulating paint entering the guide pipe is discharged from the discharge port at a certain speed, and the blocking pipe is matched to achieve better control over the flow velocity of the insulating paint.
A driving assembly for driving the blocking block 65 to do lifting movement is arranged on the side wall of the material guiding pipe 6, an installation ring 61 is arranged on the side wall of the material guiding pipe 6, and the driving assembly is arranged on the installation ring 61; the driving assembly comprises a movable box 62 arranged on the side wall of the material guiding pipe 6, a guide block 653 arranged in the movable box 62 and an air cylinder 63 arranged on the mounting ring 61, and the guide block 653 is fixedly connected with the sliding block 652; a guide groove is arranged in the movable box, and the guide block is matched with the guide groove; a groove is formed in the side wall of the material guide plate, and the side wall of one side of the air cylinder is arranged in the groove, so that the connecting effect of the air cylinder and the material guide pipe is improved; when the discharging mechanism starts to operate, the air cylinder pushes the piston rod to move upwards, the piston rod pushes the guide block to move upwards along the guide groove, the blocking block is driven to move upwards along the inner wall of the material guide pipe, a gap is formed between the blocking block and the inner wall of the material guide pipe, and the insulating paint drops downwards from the gap between the blocking block and the inner wall of the material guide pipe and is discharged from the discharging opening; the movable box is matched with the piston rod of the air cylinder, so that the third through hole is sealed, insulating paint is prevented from flowing out of the material guide pipe from the third through hole, and waste of the insulating paint is avoided; the control to the guide block through the cylinder makes the sprue do elevating movement, provides good supporting effect for the sprue, makes the sprue by stable fixing in the guide pipe, increases discharge mechanism's stability.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (8)

1. The utility model provides a water and soak equipment discharge mechanism for motor processing, includes storage vat (1), locates passage (6) of storage vat (1) bottom, locate discharge gate (7) of passage (6) bottom, locate material pipe (22) and locate of leading in storage vat (1) draw equipment pipe (2) at material pipe (22) top, storage vat (1) bottom is equipped with unloading hole (23), passage (6) with unloading hole (23) cooperate, its characterized in that: a material blocking pipe (21) is arranged in the equipment pipe (2), and a driving piece for driving the material blocking pipe (21) to do lifting motion is arranged above the material blocking pipe (21); a plurality of feed inlets (221) are formed in the side wall of the material guiding pipe (22); the equipment pipe (2) is communicated with a material guiding pipe (22), a material blocking pipe (21) is arranged in the equipment pipe (2), and a driving piece for driving the material blocking pipe (21) to do lifting motion is arranged above the material blocking pipe (21); the side wall of the material guiding pipe (22) is provided with a plurality of material inlet openings (221), the material inlet openings are uniformly formed in the side wall of the material guiding pipe (22), the material guiding pipe (22) is fixedly connected to the bottom surface of the storage barrel, and the material guiding pipe (22) is matched with the material outlet; the blocking pipe can move up and down along the inner wall of the equipment pipe, and the outer diameter of the blocking pipe is the same as the inner diameter of the material guiding pipe (22); insulating paint in the storage barrel enters the material guiding pipe through a feeding hole in the side wall of the material guiding pipe, the material blocking pipe is driven by the driving piece to move up and down along the equipment pipe, so that the material blocking pipe blocks the feeding hole in the material guiding pipe (21) according to needs, the number of the opened feeding holes is changed, the speed of the insulating paint entering the material guiding pipe (21) is controlled, and the discharging speed of the insulating paint at the discharging hole is controlled; a discharging adjusting component is arranged in the material guide pipe (6); the inner wall of the material guide pipe (6) is obliquely arranged; a hollow chamber (214) is arranged in the material blocking pipe (21), a plurality of first through holes (212) are formed in the side wall of the material blocking pipe (21), and the first through holes (212) correspond to the feeding holes (221); an anti-blocking component (213) is arranged in the first through hole (212).
2. A tapping device discharging mechanism for machining of an electric machine according to claim 1, characterized in that: the anti-blocking component (213) comprises an equipment cavity (2131) arranged in the first through hole (212), a connecting rod (2132) arranged in the equipment cavity (2131) in a penetrating mode, a baffle (2133) sleeved on the connecting rod (2132) and an anti-blocking block (2134) arranged at one end of the connecting rod (2132), a movable cavity (2135) is arranged in the equipment cavity (2131), the connecting rod (2132) is arranged in the movable cavity (2135) in a penetrating mode, and a return spring (2136) is arranged on the baffle (2133).
3. A tapping device discharging mechanism for machining of an electric machine according to claim 1, characterized in that: the top of the equipment pipe (2) is provided with a nut seat (3), a mounting seat (4) matched with the nut seat (3) is arranged above the nut seat (3), and the driving piece is fixedly connected to the mounting seat (4).
4. A tapping device discharging mechanism for machining of an electric machine according to claim 3, characterized in that: the driving piece is a hydraulic rod (5), a second through hole (41) is formed in the mounting base (4), a piston rod of the hydraulic rod (5) penetrates through the second through hole (41), and the piston rod of the hydraulic rod (5) is fixedly connected with the material blocking pipe (21).
5. A pouring and leaching equipment discharging mechanism for motor processing according to claim 4, characterized in that: be equipped with on mount pad (4) air vent (42), air vent (42) with second through-hole (41) link to each other, stifled material pipe (21) top is equipped with bleeder vent (211), bleeder vent (211) with cavity room (214) communicate with each other.
6. A tapping device discharging mechanism for machining of an electric machine according to claim 1, characterized in that: the discharging adjusting assembly comprises a blocking block (65) arranged in the material guide pipe (6), first connecting blocks (651) arranged on two sides of the blocking block (65) and a sliding block (652) fixedly connected with the first connecting blocks (651), a third through hole (64) matched with the sliding block (652) is formed in the side wall of the material guide pipe (6), and a sliding rail (641) matched with the sliding block (652) is arranged in the third through hole (64).
7. A pouring and leaching equipment discharging mechanism for motor processing according to claim 6, characterized in that: the device is characterized in that a driving assembly used for driving the blocking block (65) to do lifting motion is arranged on the side wall of the material guide pipe (6), a mounting ring (61) is arranged on the side wall of the material guide pipe (6), and the driving assembly is arranged on the mounting ring (61).
8. A casting and leaching equipment discharging mechanism for motor processing according to claim 7, characterized in that: the driving assembly comprises a movable box (62) arranged on the side wall of the material guide pipe (6), a guide block (653) arranged in the movable box (62) and an air cylinder (63) arranged on the mounting ring (61), and the guide block (653) is fixedly connected with the sliding block (652).
CN202010632811.9A 2019-03-21 2019-03-21 A water and soak equipment discharge mechanism for motor processing Active CN111744733B (en)

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CN202010632811.9A CN111744733B (en) 2019-03-21 2019-03-21 A water and soak equipment discharge mechanism for motor processing

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Application Number Priority Date Filing Date Title
CN202010632811.9A CN111744733B (en) 2019-03-21 2019-03-21 A water and soak equipment discharge mechanism for motor processing
CN201910219445.1A CN109720715B (en) 2019-03-21 2019-03-21 Discharge control mechanism in pouring and leaching equipment

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CN111744733A CN111744733A (en) 2020-10-09
CN111744733B true CN111744733B (en) 2022-04-19

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