CN211153712U - Pulp cleaning device - Google Patents

Pulp cleaning device Download PDF

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Publication number
CN211153712U
CN211153712U CN201921405357.2U CN201921405357U CN211153712U CN 211153712 U CN211153712 U CN 211153712U CN 201921405357 U CN201921405357 U CN 201921405357U CN 211153712 U CN211153712 U CN 211153712U
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China
Prior art keywords
pulp
box
distributor
water tank
tank
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CN201921405357.2U
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Chinese (zh)
Inventor
黄毅华
王刚
陈建刚
王玮
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Hangzhou Wahaha Precision Machinery Co ltd
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Hangzhou Wahaha Precision Machinery Co ltd
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Abstract

The utility model relates to a pulp production facility especially relates to a pulp belt cleaning device. Pulp belt cleaning device, the power distribution box comprises a box body, the box include stirring water tank and distributor box, be provided with water inlet and delivery port on the stirring water tank, the axis department of stirring water tank is provided with the agitator, is linked together through the discharging pipe between stirring water tank and the distributor box, the distributor box bottom is provided with the discharge gate, the discharge gate is provided with rotary distributor, the distributor box bottom is provided with and is used for the oblique towards the towards pipe that drenches of rotary distributor. The utility model discloses have and to wash, soak liquid circulation use and can spray to pulp effectively and wash, realize beneficial effect such as ration as required.

Description

Pulp cleaning device
Technical Field
The utility model relates to a pulp production facility especially relates to a pulp belt cleaning device.
Background
In fruit drink and preserved fruit trade, all need wash the meats of the ball similar to longan class, current belt cleaning device includes the box, pours the soak into in the box, pours pulp into the box, and the rethread agitator is to the inside stirring of box, realizes that pulp washs. However, such a cleaning device does not have a quantitative distribution function, and all the pulp is discharged from the discharge port on the box body at one time during discharging, so that quantitative distribution cannot be performed as required.
SUMMERY OF THE UTILITY MODEL
The utility model discloses mainly be to above-mentioned problem, provide one kind can wash, soak liquid circulation uses and can spray the pulp to wash, realize ration's pulp belt cleaning device as required to pulp effectively.
The purpose of the utility model is mainly realized by the following scheme: the utility model provides a pulp belt cleaning device, includes the box, the box include stirring water tank and distributor box, be provided with water inlet and delivery port on the stirring water tank, stirring water tank's axis department is provided with the agitator, is linked together through the discharging pipe between stirring water tank and the distributor box, the distributor box bottom is provided with the discharge gate, the discharge gate is provided with rotary distributor, the distributor box bottom is provided with and is used for the oblique towards the towards pipe that drenches of rotary distributor. The box body comprises a stirring water tank and a distribution box, soaking liquid is filled into the stirring water tank from a water inlet, pulp is stirred in the stirring water tank through a stirrer to be soaked and cleaned, after cleaning is finished, the soaking liquid is discharged from a water outlet, the cleaned pulp enters the distribution box from a discharge pipe, and the pulp is quantitatively distributed and discharged from the distribution box. The pulp entering the distribution box falls onto the rotary distributor, the bottom of the distribution box is provided with a shower pipe used for obliquely showering the rotary distributor, the shower pipe obliquely showers the rotary distributor, the external force of the shower can push the rotary distributor to rotate, the shower pipe can serve as the power for rotating the rotary distributor, water for showering can be slowly pressed and guided when the rotary distributor rotates, and the water after being guided by the slow pressing can flush the pulp. The rotary distributor can carry pulp to rotate together in the rotating process, the pulp is rotated to the discharge port to discharge, and quantitative discharge is realized by adjusting the rotation and stopping of the variable frequency motor. The whole device not only can clean pulp, but also can recycle leachate, and the cleaned pulp enters the distribution box and is quantitatively distributed by the rotary distributor in the distribution box.
Preferably, the top of the stirring water tank is provided with a top spray pipe, and the top spray pipe is connected with the water outlet through a circulating water pump. The circulating water pump leads out the soak solution in the stirring water tank from the water outlet to the top spraying pipe, and then the soak solution is sprayed into the stirring water tank by the top spraying pipe, and the top spraying pipe is used for spraying and cleaning the pulp in the stirring water tank, so that the cyclic utilization of the soak solution is realized.
Preferably, a bubbling pipe is arranged in the stirring water tank and close to the bottom surface. The bottom of the stirring water tank is provided with a bubbling pipe which can be connected with high-pressure air, steam and the like to aerate the soak solution and the pulp in the stirring water tank, and the soak solution and the pulp in the stirring water tank are boiled by aeration, so that the cleaning efficiency is improved.
Preferably, the stirring water tank is provided with a stirring motor for driving the stirrer. The stirring motor drives the stirrer to rotate, and the stirrer is driven to rotate to clean the soak solution and the pulp in the stirring water tank.
Preferably, a filtering plate is arranged on one side, close to the distribution box, of the stirring water tank, a filtering flow channel is formed between the filtering plate and the side wall of the stirring water tank, and the water outlet is located at the filtering flow channel. The filter plate is arranged in the stirring water tank, a filtering flow channel is formed between the filter plate and the side wall of the stirring water tank, and the leachate is filtered by the filter plate, enters the filtering flow channel and is discharged from the water outlet to perform circulating spraying.
Preferably, a guide inclined plane used for gathering the pulp to the discharge hole is arranged at the position, close to the discharge hole, of the bottom of the distribution box, the rotary distributor is located at the discharge hole and comprises a rotary discharge roller, and a plurality of discharge grooves are distributed on the outer wall of the rotary discharge roller around the axis. The bottom of distributor box has the direction inclined plane, and the direction inclined plane can gather together the direction with the pulp that gets into in the distributor box to discharge gate department, and the pulp that arrives the discharge gate falls into the blown down tank on the rotatory discharging roller, follows rotatory discharging roller and rotates, and when the blown down tank was to the below, the pulp whereabouts in the blown down tank was discharged. When the rotary discharging roller stops rotating, the pulp can be stopped from being discharged, and quantitative distribution is realized.
Preferably, the inside push pedal that corresponds with the position on direction inclined plane of distributor box, the fixed push rod that is provided with in the push pedal, the push rod runs through direction inclined plane, the one end that the push pedal was kept away from to the push rod is provided with the baffle, the cover is equipped with reset spring on the push rod, reset spring is located between baffle and the direction inclined plane surface, the distributor box bottom corresponds with the position of baffle and is provided with pulse advancing mechanism, pulse advancing mechanism includes drive shaft and the epaxial cam group of drive with baffle parallel arrangement, the cam group includes that the interval sets up a plurality of cam in the drive shaft, the extending direction of a plurality of cam centers on the crisscross distribution of axis of drive shaft, the. After pulp enters the distribution box, the pulp is distributed by the rotary distributor, at the moment, pulp is stacked above the rotary distributor, the driving motor drives the driving shaft to rotate, the cam group on the driving shaft rotates, the cam can push and press the baffle in the rotating process, the baffle is close to and compresses the reset spring towards the direction of the distribution box, the baffle moves to drive the push rod and the push plate to move, the pulp stacked above the rotary distributor is close to the middle direction by the push plate, and the pulp near the middle moves downwards due to the fact that the push plate is parallel to the guide inclined plane and forms oblique thrust to the pulp, so that the pulp near the middle moves upwards, and the pulp near the side wall of the distribution. When the cam rotates for a certain angle and is far away from the baffle, the return spring pushes the baffle to return, and then the push rod and the push plate are driven to return. The extension directions of a plurality of cams in the cam group are distributed in a staggered manner, so that the reciprocating motion of the baffle plate and the push plate can be realized, pulse pushing is formed, and further pulp stacked above the rotary distributor is subjected to pulse vibration and displacement, the pulp vibration can vibrate the moisture on the outer surface to separate from the pulp, the pulp positions can enable the pulp to rub against each other, and the adhesion degree between the mucosa or impurities on the surface of the pulp and the pulp is reduced.
Preferably, the edge of the upper end of the push plate is provided with a blocking bulge extending towards the direction of the guide inclined plane, the edge of the lower end of the push plate extends to be provided with a pulp protection strip, and an included angle between the pulp protection strip and the push plate is an obtuse angle. When the push plate reciprocates, the blocking bulge at the edge of the upper end of the push plate can block pulp from entering the space between the push plate and the guide inclined plane, so that the push plate is prevented from being blocked, and the pulp close to the side wall of the distribution box can be guided to fall into the push plate to be pushed out in an inclined manner when being displaced downwards. The pulp pushed obliquely is close to the middle of the distribution box to extrude the pulp originally in the middle, so that the pulp originally in the middle is extruded upwards to move, and further, the circular displacement in the vertical direction is formed, the pulp is tangent to the pulp, and the rotation can be formed in the circular displacement process. And the pulp close to the middle can be protected by the pulp protection strip extending from the edge of the lower end of the push plate, so that the pulp is prevented from being excessively extruded by the rotary distributor, and the pulp is prevented from being damaged when the rotary distributor rotates. And the pulp protection strip can guide the pulp approaching to the middle, so that the circular displacement in the vertical direction can be more smooth.
Preferably, the inner wall of the distribution box is provided with an arc salient point at a position close to the guide inclined plane, and the arc salient point is formed by stamping the side wall of the distribution box from outside to inside. Set up the circular arc bump on the distributor box inner wall, when the pulp that is close to the distributor box inner wall receives push pedal reciprocating motion and the whereabouts, can with fall the in-process and rub with the circular arc bump under, not only the displacement forms the friction, forms the rotatory tangential friction that also can form of pulp at the displacement in-process, further slows down the mucous membrane on pulp surface or the degree of gluing between impurity and the pulp. The arc salient points are formed by a stamping process, namely, the arc salient points are stamped from outside to inside on the side wall of the distribution box, the arc salient points are formed on the inner wall, and then the arc depressions are formed on the outer wall, so that the arc salient points are convenient to process and manufacture.
Therefore, the utility model discloses a pulp belt cleaning device possesses following advantage: the whole device not only can clean pulp, but also can recycle leachate, and the cleaned pulp enters the distribution box and is quantitatively distributed by the rotary distributor in the distribution box.
Drawings
FIG. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a cross-sectional view taken at A-A of FIG. 2;
FIG. 4 is a partial sectional view of the push rod of the bottom of the distribution box in the initial state in the embodiment 2;
fig. 5 is a partial sectional view of the push rod of the bottom of the distribution box in embodiment 2 in an advanced state.
Illustration of the drawings: 1-stirring motor, 2-top spray pipe, 3-stirring water tank, 4-distribution box, 5-discharge pipe, 6-water outlet, 7-filter plate, 8-rotary discharge roller, 9-stirrer, 10-bubbling pipe, 11-water inlet, 12-discharge port, 13-flushing pipe, 14-circulating water pump, 15-discharge groove, 16-arc salient point, 17-push plate, 18-push rod, 19-reset spring, 20-baffle, 21-cam, 22-driving shaft, 23-stop bulge and 24-pulp protection strip.
Detailed Description
The technical solution of the present invention is further specifically described below by way of examples and with reference to the accompanying drawings.
Example 1: as shown in fig. 1, 2 and 3, a pulp cleaning device comprises a box body, the box body comprises a stirring water tank 3 and a distribution box 4, a water inlet 11 and a water outlet 6 are arranged on the stirring water tank, a stirrer 9 is arranged at the axis of the stirring water tank, the stirring water tank and the distribution box are communicated through a discharge pipe 5, a discharge port 12 is arranged at the bottom of the distribution box, a rotary distributor is arranged at the discharge port, and the rotary distributor is driven by a variable frequency motor. The top of the stirring water tank is provided with a top spray pipe 2 which is connected with a water outlet through a circulating water pump 14. A bubbling pipe 10 is arranged in the stirring water tank and close to the bottom surface. The stirring water tank is provided with a stirring motor 1 for driving the stirrer. One side of the stirring water tank, which is close to the distribution box, is provided with a filter plate 7, a filtering flow passage is formed between the filter plate and the side wall of the stirring water tank, and the water outlet is positioned at the filtering flow passage. The position that the bottom of the distributor is close to the discharge gate is provided with the direction inclined plane that is used for gathering together pulp to the discharge gate, and rotatory distributor is located the discharge gate, and rotatory distributor includes rotatory discharging roller 8, and it has a plurality of blown down tanks 15 to distribute around the axis on the outer wall of rotatory discharging roller. The bottom of the distribution box is provided with a shower pipe 13 for cleaning the pulp at the discharge port.
The box body comprises a stirring water tank and a distribution box, soaking liquid is filled into the stirring water tank from a water inlet, pulp is stirred in the stirring water tank through a stirrer to be soaked and cleaned, after cleaning is finished, the soaking liquid is discharged from a water outlet, the cleaned pulp enters the distribution box from a discharge pipe, and the pulp is quantitatively distributed and discharged from the distribution box. The pulp entering the distribution box falls onto the rotary distributor, the bottom of the distribution box is provided with a shower pipe used for obliquely showering the rotary distributor, the shower pipe obliquely showers the rotary distributor, the external force of the shower can push the rotary distributor to rotate, the shower pipe can serve as the power for rotating the rotary distributor, water for showering can be slowly pressed and guided when the rotary distributor rotates, and the water after being guided by the slow pressing can flush the pulp. The rotary distributor can carry pulp to rotate together in the rotating process, the pulp is rotated to the discharge port to discharge, and quantitative discharge is realized by adjusting the rotation and stopping of the variable frequency motor. The whole device not only can clean pulp, but also can recycle leachate, and the cleaned pulp enters the distribution box and is quantitatively distributed by the rotary distributor in the distribution box. The circulating water pump leads out the soak solution in the stirring water tank from the water outlet to the top spraying pipe, and then the soak solution is sprayed into the stirring water tank by the top spraying pipe, and the top spraying pipe is used for spraying and cleaning the pulp in the stirring water tank, so that the cyclic utilization of the soak solution is realized. The bottom of the stirring water tank is provided with a bubbling pipe which can be connected with high-pressure air, steam and the like to aerate the soak solution and the pulp in the stirring water tank, and the soak solution and the pulp in the stirring water tank are boiled by aeration, so that the cleaning efficiency is improved. The stirring motor drives the stirrer to rotate, and the stirrer is driven to rotate to clean the soak solution and the pulp in the stirring water tank. The filter plate is arranged in the stirring water tank, a filtering flow channel is formed between the filter plate and the side wall of the stirring water tank, and the leachate is filtered by the filter plate, enters the filtering flow channel and is discharged from the water outlet to perform circulating spraying. The bottom of distributor box has the direction inclined plane, and the direction inclined plane can gather together the direction with the pulp that gets into in the distributor box to discharge gate department, and the pulp that arrives the discharge gate falls into the blown down tank on the rotatory discharging roller, follows rotatory discharging roller and rotates, and when the blown down tank was to the below, the pulp whereabouts in the blown down tank was discharged. When the rotary discharging roller stops rotating, the pulp can be stopped from being discharged, and quantitative distribution is realized.
Example 2: the structure of this embodiment is basically the same as that of embodiment 1, the difference lies in that, as shown in fig. 4, a push plate 17 is correspondingly arranged in the distribution box corresponding to the position of the guide inclined plane, a push rod 18 is fixedly arranged on the push plate, the push rod penetrates through the guide inclined plane, a baffle 20 is arranged at one end of the push rod far away from the push plate, a return spring 19 is sleeved on the push rod, the return spring is positioned between the baffle and the outer surface of the guide inclined plane, a pulse propulsion mechanism is correspondingly arranged at the bottom of the distribution box corresponding to the position of the baffle, the pulse propulsion mechanism comprises a drive shaft 22 arranged in parallel with the baffle and a cam group arranged on the drive shaft, the cam group comprises a plurality of cams 21 arranged on the drive shaft at. The edge of the upper end of the push plate is provided with a blocking bulge 23 extending towards the direction of the guide inclined plane, the edge of the lower end of the push plate extends to be provided with a pulp protection strip 24, and the included angle between the pulp protection strip and the push plate is an obtuse angle. The inner wall of the distribution box is provided with an arc salient point 16 at a position close to the guide inclined plane, and the arc salient point is formed by stamping the side wall of the distribution box from outside to inside.
After the pulp enters the distribution box, the pulp is distributed by the rotary distributor, at the moment, the pulp is stacked above the rotary distributor, the driving motor drives the driving shaft to rotate, the cam group on the driving shaft rotates, the cam can press the baffle in the rotating process, as shown in fig. 5, the baffle is close to the distribution box and compresses the reset spring, the baffle moves to drive the push rod and the push plate to move, the pulp stacked above the rotary distributor is close to the middle direction by the push plate, and the pulp is obliquely pushed due to the fact that the push plate is parallel to the guide inclined plane, so that the pulp close to the middle moves upwards, and the pulp close to the side wall of the distribution box moves downwards. When the cam rotates for a certain angle and is far away from the baffle, the return spring pushes the baffle to return, and then the push rod and the push plate are driven to return. The extension directions of a plurality of cams in the cam group are distributed in a staggered manner, so that the reciprocating motion of the baffle plate and the push plate can be realized, pulse pushing is formed, and further pulp stacked above the rotary distributor is subjected to pulse vibration and displacement, the pulp vibration can vibrate the moisture on the outer surface to separate from the pulp, the pulp positions can enable the pulp to rub against each other, and the adhesion degree between the mucosa or impurities on the surface of the pulp and the pulp is reduced. When the push plate reciprocates, the blocking bulge at the edge of the upper end of the push plate can block pulp from entering the space between the push plate and the guide inclined plane, so that the push plate is prevented from being blocked, and the pulp close to the side wall of the distribution box can be guided to fall into the push plate to be pushed out in an inclined manner when being displaced downwards. The pulp pushed obliquely is close to the middle of the distribution box to extrude the pulp originally in the middle, so that the pulp originally in the middle is extruded upwards to move, and further, the circular displacement in the vertical direction is formed, the pulp is tangent to the pulp, and the rotation can be formed in the circular displacement process. And the pulp close to the middle can be protected by the pulp protection strip extending from the edge of the lower end of the push plate, so that the pulp is prevented from being excessively extruded by the rotary distributor, and the pulp is prevented from being damaged when the rotary distributor rotates. And the pulp protection strip can guide the pulp approaching to the middle, so that the circular displacement in the vertical direction can be more smooth. Set up the circular arc bump on the distributor box inner wall, when the pulp that is close to the distributor box inner wall receives push pedal reciprocating motion and the whereabouts, can with fall the in-process and rub with the circular arc bump under, not only the displacement forms the friction, forms the rotatory tangential friction that also can form of pulp at the displacement in-process, further slows down the mucous membrane on pulp surface or the degree of gluing between impurity and the pulp. The arc salient points are formed by a stamping process, namely, the arc salient points are stamped from outside to inside on the side wall of the distribution box, the arc salient points are formed on the inner wall, and then the arc depressions are formed on the outer wall, so that the arc salient points are convenient to process and manufacture.
It should be understood that this example is for illustrative purposes only and is not intended to limit the scope of the present invention. Furthermore, it should be understood that various changes and modifications of the present invention may be made by those skilled in the art after reading the teachings of the present invention, and these equivalents also fall within the scope of the appended claims.

Claims (9)

1. The utility model provides a pulp belt cleaning device, includes the box, its characterized in that, the box include agitator tank and distributor box, be provided with water inlet and delivery port on the agitator tank, agitator tank's axis department is provided with the agitator, is linked together through the discharging pipe between agitator tank and the distributor box, the distributor box bottom is provided with the discharge gate, the discharge gate is provided with rotary distributor, the distributor box bottom is provided with and is used for the oblique towards the towards pipe that drenches of rotary distributor.
2. The pulp washing device as claimed in claim 1, wherein a top shower pipe is provided on the top of the agitation water tank, and the top shower pipe is connected to the water outlet through a circulating water pump.
3. The pulp washing apparatus as claimed in claim 1, wherein a bubbling tube is provided in said agitator tank near the bottom surface.
4. The pulp washing apparatus as claimed in claim 1, wherein said agitator water tank is provided with an agitator motor for driving the agitator.
5. The pulp washing apparatus of claim 1, wherein the side of the agitation tank adjacent to the distribution tank is provided with a filter plate, a filter passage is formed between the filter plate and the side wall of the agitation tank, and the water outlet is located at the filter passage.
6. The pulp washing device as claimed in claim 1, 2, 3, 4 or 5, wherein the bottom of the distribution box near the discharge port is provided with a guide slope for gathering the pulp towards the discharge port, the rotary distributor is located at the discharge port and comprises a rotary discharge roller, and a plurality of discharge grooves are distributed on the outer wall of the rotary discharge roller around the axis.
7. The pulp cleaning device as claimed in claim 6, wherein a push plate is disposed inside the distribution box corresponding to the guiding inclined plane, a push rod is fixedly disposed on the push plate and penetrates through the guiding inclined plane, a baffle is disposed at one end of the push rod away from the push plate, a return spring is sleeved on the push rod and located between the baffle and the outer surface of the guiding inclined plane, a pulse propelling mechanism is disposed at the bottom of the distribution box corresponding to the baffle and comprises a driving shaft parallel to the baffle and a cam set on the driving shaft, the cam set comprises a plurality of cams disposed on the driving shaft at intervals, the plurality of cams are disposed in a staggered manner along the axis of the driving shaft, and the driving shaft is driven by a motor.
8. The pulp cleaning device as claimed in claim 7, wherein the upper edge of the pushing plate is provided with a blocking protrusion extending towards the direction of the guiding slope, the lower edge of the pushing plate is provided with a pulp protection strip, and the included angle between the pulp protection strip and the pushing plate is an obtuse angle.
9. The cleaning apparatus for fruit flesh of claim 7, wherein the inner wall of the dispensing box is provided with a circular arc protrusion near the guiding slope, and the circular arc protrusion is formed by punching the side wall of the dispensing box from the outside to the inside.
CN201921405357.2U 2019-08-27 2019-08-27 Pulp cleaning device Active CN211153712U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921405357.2U CN211153712U (en) 2019-08-27 2019-08-27 Pulp cleaning device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921405357.2U CN211153712U (en) 2019-08-27 2019-08-27 Pulp cleaning device

Publications (1)

Publication Number Publication Date
CN211153712U true CN211153712U (en) 2020-08-04

Family

ID=71816841

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921405357.2U Active CN211153712U (en) 2019-08-27 2019-08-27 Pulp cleaning device

Country Status (1)

Country Link
CN (1) CN211153712U (en)

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