Pulp pickling device for green plums and application method of pulp pickling device
Technical Field
The invention relates to the technical field of fruit processing, in particular to a green plum pulp curing device and a using method thereof.
Background
Green plums are rich in nutrition fruits and traditional Chinese medicinal materials, are popular among consumers because of the effects of astringing lung, astringing intestine, promoting fluid production, calming ascarid and the like, are often used for making various foods, including dark plums prepared through a pickling process, and various derived foods such as dark plums dried, dark plum jam, dark plum juice and the like, and pickling is a vital link in the processing flow of the foods, so that the flavor and the taste of the green plums can be remarkably improved, and the rich possibility and depth are added for food processing.
When pickling green plums, the traditional pickling mode is generally adopted, green plum pulp is directly stacked in a container for pickling, and the pickling mode is used for piling up green plum pulp and is only dependent on the permeation of pickling liquid, so that uneven pickling and insufficient pickling are often caused, and the integrity of pulp can be damaged due to the separation of pickled and piled green plums, so that the taste and quality of a final product are influenced.
Therefore, the application provides a green plum pulp curing device and a using method thereof to solve the problems.
Disclosure of Invention
Aiming at the problems in the prior art, the invention aims to provide a green plum pulp curing device and a use method thereof, which solve the problems of uneven curing, insufficient curing, pulp damage and raw material waste caused by stacking in the green plum curing process of the existing curing device.
In order to solve the technical problems, the invention provides the technical scheme that the green plum pulp curing device comprises an outer matching frame, a curing tank body and a curing tank body, wherein the curing tank body is arranged in the middle of the outer matching frame; the pickling tank comprises a pickling tank body, a tank cover, a positioning plate frame, isosceles plate frames, a placing component, a static leakage waist plate, a discharging long opening, a movable leakage waist plate, an adjusting component, an arrow engraving opening, an air pressure valve pipe and a magnetic leakage assembly, wherein the sealing cover is arranged at the top of the pickling tank body, the two sealing covers are respectively arranged at the front side and the rear side of the bottom end middle of the tank cover, the middle of the positioning plate frame is provided with a hollow groove, the isosceles plate frames are equidistantly arranged at the middle of the positioning plate frame, the placing component is equidistantly arranged in the hollow groove and used for placing the equal waist plate frames, the static leakage waist plate is fixedly arranged at the upper part of the isosceles plate frames, the discharging long opening is formed in the middle of the top of the static leakage waist plate, the lower part of the equal waist plate frames slides with the movable leakage waist plate, the adjusting component is arranged at the front side and the rear side of the movable leakage waist plate and is used for adjusting the distance between the movable leakage waist plate, the arrow engraving opening is equidistantly arranged at the static leakage waist plate and the movable leakage waist plate, the air pressure valve pipe is communicated with the bottom of the pickling tank body, and the air pressure valve assembly is arranged at the bottom of the pickling tank body.
In a new embodiment, the middle parts of the front end and the rear end of the outer matching frame are fixedly provided with hydraulic rods, the middle part of the top end of the tank cover is fixedly provided with a bearing plate, and the telescopic ends of the hydraulic rods are respectively connected with the front side and the rear side of the bottom end of the bearing plate.
In a new embodiment, the outer port of the air pressure valve tube is a magnetic interface, and the air pressure valve tube is electrically connected with an air pressure detector, the air pressure detector is arranged at the front part of the air pressure valve tube, and the air pressure detector is arranged at the upper part of the right side of the pickling tank body.
In a new embodiment, the placement component comprises an L-shaped carrying plate, concave clamping grooves and two bearing transverse bars, wherein the L-shaped carrying plate is provided with a plurality of concave clamping grooves which are equidistantly arranged in the middle of a hollow groove, the concave clamping grooves are formed in the middle of one side of the top end of the L-shaped carrying plate, the concave clamping grooves are consistent with the protruding blocks in size, and the two bearing transverse bars are respectively fixedly arranged on the left side and the right side of the L-shaped carrying plate.
In a new embodiment, the adjusting component comprises an opening groove, a sliding block, a through hole and a threaded rod, wherein the opening groove is respectively formed in the left side and the right side of the front portion and the rear portion of the waist board frame, the sliding block slides in the opening groove, one inward end of the sliding block is respectively connected with the left side and the right side of the front end and the rear end of the waist board, the through hole is formed in the front portion, the rear portion, the left side and the right side of the top end of the waist board frame and is communicated with the opening groove, one end of the threaded rod is fixedly connected with the top end of the sliding block, and the other end of the threaded rod penetrates through the through hole and is fixed to the top end of the waist board frame through a nut.
In a new embodiment, the air leakage assembly comprises an air exhaust disc, an eddy fan, a butt joint magnetic tube and an inverted L-shaped butt joint magnetic tube, wherein the air exhaust disc is arranged in the middle of the right side of the top end of the tank cover, an air exhaust port is arranged at the front part of the air exhaust disc, the eddy fan is rotatably arranged in the middle of the air exhaust disc, the butt joint magnetic tube is arranged on the right side of the air exhaust disc and communicated with the air exhaust disc, and the butt joint magnetic tube is in an inverted L shape.
In a new embodiment, the air leakage assembly further comprises a connecting shaft rod, a plurality of clearance paddles, a plurality of air leakage paddles and a plurality of air leakage guide plates, wherein one end of the connecting shaft rod is connected with the middle part of the vortex fan, and the other end of the connecting shaft rod sequentially penetrates through the bottom wall of the air exhaust disc and the top wall of the tank cover and extends into the curing tank body;
The clearance oar sets up the right side of waiting waist board frame, and the clearance oar is located adjacent two between the isosceles board frame.
In a new embodiment, the left side inner wall of the pickling tank body is provided with an arc frame, the middle part of the arc frame is equidistantly provided with miter filter plates, and the arc frame is arranged at the left side of the bottom end of the tank cover.
In a new embodiment, the impurity intercepting component comprises an auxiliary matching frame, a purifying tank, a filter disc, a middle partition pipe and a conical leakage intercepting sleeve, wherein the auxiliary matching frame is arranged on the right side of the outer matching frame, the purifying tank is arranged in the middle of the top end of the auxiliary matching frame, a liquid inlet of the purifying tank is communicated with the bottom of a pickling tank body through a conveying valve pipe, the filter disc is arranged on the lower side of the inside of the purifying tank and fixedly arranged at the bottom of a positioning plate frame, the middle partition pipe is arranged in the middle of the conveying valve pipe, the conical leakage intercepting sleeve is provided with a plurality of conical leakage intercepting sleeves, the conical leakage intercepting sleeves are equidistantly arranged in the middle of the middle partition pipe, and intercepting net openings are annularly formed in the surface at equal intervals.
The application method of the green plum pulp curing device comprises the following steps:
S1, discharging, namely firstly taking an isosceles plate frame, putting green plums to be salted in through a discharging long opening, enabling the green plums to enter a limiting space between a static waist board and a movable waist board, enabling the green plums to be full along with the inclination of the static waist board, enabling the entering green plums to be in a paving state, adjusting the interval between the static waist board and the movable waist board through an adjusting assembly, and finally placing the green plums on each equal waist board frame, so that discharging operation is completed;
s2, curing, namely placing each equal waist plate frame filled with green plums into a positioning plate frame through a placing assembly, driving a tank cover to be covered with a curing tank body through a hydraulic rod after placing, enabling the positioning plate frame and the isosceles plate frames to enter the curing tank body, injecting curing liquid into the curing tank body, and entering a curing static state;
S3, utilizing curing gas, namely, during the curing process, the air pressure in the curing tank body is increased, high-pressure gas is discharged through an air pressure valve pipe and is utilized through a communicated driving air leakage component, the vortex fan is driven by the high-pressure gas to rotate by a clearance paddle connected with the vortex fan, and on one hand, clearance impurities between the two adjacent isosceles plate frames can be driven to be discharged when the clearance paddle is positioned between two adjacent isosceles plate frames and the clearance water body is moved;
S4, collecting impurities, namely continuing the step S3, collecting impurities of the materials discharged from the gap for the first time through the step-shaped miter filter plate, and collecting impurities for the second time through the filter plate and conveying the materials to the purifying tank in the process of discharging the pickling liquid, wherein the conical leakage interception sleeve in the middle partition pipe on the conveying valve pipe is used for collecting impurities for the third time, and the gap impurities, the large impurities and the small impurities are collected and reused in sequence.
Compared with the prior art, the green plum curing space can be formed by arranging the waist plate frames, the static waist plate, the dynamic waist plate and the arrow engraving openings, so that green plums are obliquely laid and prevented from being stacked, more green plums are convenient to place and are cured fully and uniformly, subsequent taking out is convenient, and the arrow engraving openings promote uniform penetration of curing liquid.
2. Through setting up open slot, slider, through-hole and threaded rod, can adjust the waist board position of leaking that moves simply directly perceivedly to ensure that it is stable accurate, realize with quiet flexible regulation of leaking waist board interval, simplify operation and maintenance, the green plum raw materials tiling of adaptation within a certain range size is pickled.
3. Through setting up exhaust dish, vortex fan, butt joint magnetic tube, even axostylus axostyle and clearance oar, realize pickling jar internal atmospheric pressure smooth and easy discharge on the one hand, on the other hand utilize jar internal atmospheric pressure to drive vortex fan rotation to drive its connecting axostylus axostyle and clearance oar that connects and stir pickling liquid, promote the liquid flow and adjacent two raw materials impurity between the isosceles board frame to discharge, reinforcing pickling liquid flow activity promotes the movable contact effect with the green plum, and this state need not manual observation, and this operation can be accomplished in intelligent pressure release.
4. Through setting up radian frame and miter filter plate, collect between two adjacent isosceles board frames along with pickling liquid surge exhaust raw materials impurity, convenient follow-up taking, the processing of other green plum products of follow-up being convenient for keeps pickling jar internal pickling environment clean simultaneously, also can make full use of raw materials cost, practices thrift economic cost.
5. Through setting up delivery valve pipe, filter disc, median septum pipe and interception net mouth, carry out the raw materials impurity in the flowing back in-process pickling liquid through the filter disc, and through the intraductal toper hourglass of median septum pipe on the delivery valve pipe interception net mouth of cutting, hold back finer raw materials impurity in the liquid of pickling jar body bottom outflow, improve the interception efficiency of impurity, ensure that pickling liquid is clean, be convenient for follow-up pickling utilization.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of another perspective view of the present invention.
FIG. 3 is a schematic diagram of the position structure of the air pressure detector of the present invention.
FIG. 4 is a schematic diagram of the inner structure of the curing tank of the present invention.
Fig. 5 is a schematic view of the structure of the locating plate frame of the present invention.
Fig. 6 is a schematic view of a placement module according to the present invention.
Fig. 7 is a schematic view of the structure of the adjusting assembly of the present invention.
Fig. 8 is a side view of an isosceles bezel of the present invention.
Fig. 9 is a schematic view showing the position and the state of the static waist plate and the dynamic waist plate according to the present invention.
Fig. 10 is a schematic view of the structure of the venting assembly of the present invention.
FIG. 11 is a schematic view of the arc frame position structure of the present invention.
FIG. 12 is a schematic view of a septum tube according to the present invention.
The reference numerals in the figure are 1, an outer matching frame, 2, a curing tank body, 3, curing liquid, 4, a tank cover, 5, a locating plate frame, 6, a hollow groove, 7, an isosceles plate frame, 8, a placing component, 801, an L-shaped carrying plate, 802, a concave clamping groove, 803, a bearing transverse bar, 9, a static leakage waist plate, 10, a discharging long hole, 11, a movable leakage waist plate, 12, a lug, 13, a regulating component, 1301, an opening groove, 1302, a sliding block, 1303, a through hole, 1304, a threaded rod, 14, an arrow hollow hole, 15, a pneumatic valve pipe, 16, a venting component, 1601, an exhaust disc, 1602, an exhaust port, 1603, a vortex fan, 1604, a butt magnet pipe, 1605, a connecting shaft rod, 1606, a clearance paddle, 17, a miscellaneous cutting component, 1701, an auxiliary matching frame, 1702, a purifying tank, 1703, a conveying valve pipe, 1704, a filter disc, 1705, a pipe, 1706, a conical leakage sleeve, 18, a hydraulic rod, 19, a bearing plate, 20, a detector, 21, a radian, a filter plate, a diagonal filter plate and a filter plate frame.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present invention are within the scope of the present invention.
The green plum pulp curing device and the application method thereof solve the problems that in the green plum curing process, curing is uneven and insufficient due to stacking, pulp is damaged and raw materials are wasted in the conventional curing device, and when the green plum pulp curing device is used, an obliquely-paved green plum curing space is formed by using the waist plate frames 7, the static waist plate 9, the dynamic waist plate 11 and the arrow engraving openings 14, so that uniform permeation of curing liquid 3 is promoted while stacking is avoided, and green plums are fully cured.
The technical scheme in the embodiment of the application aims to solve the technical problems, and the general idea is as follows.
Example 1
Referring to fig. 1-12, the application provides a green plum pulp curing device, which comprises an outer frame 1, a curing tank 2, a plurality of curing tanks and a plurality of curing tanks, wherein the curing tank 2 is arranged in the middle of the outer frame 1; the curing device comprises a curing liquid 3, a tank cover 4, a positioning plate frame 5, an equal waist plate frame 7, a placement component 8, a hollow waist plate component 15, a sealing valve 15, a sealing cover 16, a curing component, a curing tank body 2, a sealing cover 2, a curing component 16, a curing component and a curing component, wherein the curing liquid 3 is arranged in the curing tank body 2, the sealing cover 4 is sealed at the top of the curing tank body 2, two positioning plate frames 5 are arranged at the front side and the rear side of the bottom end of the tank cover 4 respectively, hollow grooves 6 are formed in the middle of the positioning plate frame 5, the equal waist plate frames 7 are equidistantly arranged at the middle of the positioning plate frame 5, the sealing cover 7 is fixedly provided with the sealing waist plate 9, a discharging long opening 10 is formed in the middle of the top of the equal waist plate frame 7, a bump 12 is arranged at the middle of the front side and the rear side of the bottom end of the equal waist plate frames 7 in a sliding mode, an adjusting component 13 is arranged at the front side and the rear side of the dynamic waist plate 11 and is used for adjusting the distance between the dynamic waist plate 11 and the static waist plate 9, arrow openings 14 are equidistantly arranged at the middle of the waist plate 9 and the dynamic waist plate 11, a valve 15 is arranged at the upper right side of the equal waist plate 7, a sealing component 15 is fixedly arranged at the upper right side of the equal waist plate 2, a sealing cover 15 is arranged at the upper side of the sealing cover 4, a sealing valve 16 is arranged at the right side of the sealing cover 16 is connected with the sealing cover 16, and a sealing component is connected with the sealing cover 16 is arranged at the sealing cover 2, and is connected with the sealing cover 16, and is connected with the sealing component is connected with the sealing cover 2.
In this embodiment, please refer to fig. 1-12, through setting up wait waist board frame 7, quiet waist board 9, blowing long mouth 10, move the waist board 11 and arrow fret 14, by waiting waist board frame 7, quiet waist board 9 and move the pickling space that waist board 11 constitutes and place the green plum, firstly send the green plum raw materials into the placing space between quiet waist board 9 and the move waist board 11 through blowing long mouth 10, the green plum of putting down rolls along with the both sides inclined plane of moving waist board 11, owing to the upper and lower restriction effect of quiet waist board 9 and moving waist board 11 for the green plum of putting down takes the tiling state, can more places many green plums according to the shape of green plum on the one hand, can not produce the upper and lower pulp stack extrusion, simultaneously, later need take out the green plum after pickling, only need dismantle and move waist board 11 can collect on it, on the other hand, the green plum of the oblique tiling state that the green plum formed rolls down, still waist board 9 and move waist board 11 can make the 3 and move the end face of 3 and set up and leak the 3 can make the liquid to make between the flat side of 3 more and the hollow-out and make the effect more fully between the waist board and the green plum more convenient.
Secondly, the setting of locating grillage 5 and placing the subassembly 8 can realize the placing of a plurality of kidney board frames such as 7, realizes the pickling function of kidney board frames such as modularization, cooperates the joining of adjusting part 13, can adjust the interval between quiet hourglass waist board 9 and the dynamic drain waist board 11 to according to the green plum diameter size adjustment pickling space that needs pickling (it is noted that, every pickling space that comprises kidney board frames such as 7, quiet drain waist board 9 and dynamic drain waist board 11, can only put into the green plum that the size remains in certain scope, can not neglect the size).
Further, referring to fig. 1-3, the middle parts of the front end and the rear end of the outer matching frame 1 are fixedly provided with hydraulic rods 18, the middle parts of the top ends of the tank cover 4 are fixedly provided with bearing plates 19, the telescopic ends of the left end and the right end of the hydraulic rods 18 are respectively connected with the front side and the rear side of the bottom ends of the bearing plates 19, the tank cover 4 is connected by the bearing plates 19 through the hydraulic rods 18 and the bearing plates 19, and the hydraulic rods 18 drive the bearing plates 19 and the tank cover 4 to move up and down, so that on one hand, the curing tank body 2 and the tank cover 4 are conveniently covered, on the other hand, the positioning plate frame 5 and the waist plate frame 7 which are convenient to be installed at the bottom of the tank cover 4 are placed into the curing tank body 2, a closed curing environment is provided for green plum pulp, uniform pulp penetration of curing liquid 3 is facilitated, and a better curing effect is achieved.
Further, referring to fig. 1 and 3, the outer port of the air pressure valve tube 15 is a magnetic interface, the air pressure valve tube 15 is electrically connected with the air pressure detector 20, the air pressure detector 20 is disposed at the front of the air pressure valve tube 15, and the air pressure detector 20 is mounted at the right upper part of the curing tank 2, by disposing the air pressure valve tube 15 and the air pressure detector 20, air pressure generated by curing the curing tank 2 can be exhausted by the air pressure valve tube 15 (in the curing process, microorganisms in raw materials can ferment to generate carbon dioxide and other gases, and the gases can accumulate in the curing tank, so that the air pressure in the tank is gradually increased, the tank is usually in a sealed state, the air in the tank cannot be exhausted in time, further increasing the air pressure rise), the air pressure detector 20 is electrically connected with the air pressure valve tube 15, so that air pressure change in the curing tank can be monitored in real time, possible potential safety hazards can be avoided, and preconditions can be provided for further utilizing the curing air pressure subsequently.
Example 2
Referring to fig. 6, the placement module 8 includes an L-shaped carrying plate 801 provided with a plurality of concave clamping grooves 802, two bearing cross bars 803, and two bearing cross bars 803 are respectively and fixedly installed at the left side and the right side of the L-shaped carrying plate 801, wherein the concave clamping grooves 802 are formed in the middle of one side of the inner top end of the L-shaped carrying plate 801, and the sizes of the concave clamping grooves 802 and the convex blocks 12 are consistent.
Through setting up L shape carrier plate 801, concave slot 802 and bearing horizontal bar 803, arrange a plurality of L shape carrier plates 801 at the middle part of cavity groove 6, space resource has been utilized to the maximize, concave slot 802 on the L shape carrier plate 801 sets up moreover, can with the accurate joint of lug 12 of isosceles panel frame 7 bottom, show the steadiness of lifting etc. waist panel frame 7, and install two bearing horizontal bars 803 respectively in the left and right sides of L shape carrier plate 801, strengthen the bearing performance of L shape carrier plate 801 by a wide margin, make whole place subassembly 8 can bear heavier isosceles panel frame 7 safely, the stability and the durability of overall structure have been ensured.
Further, referring to fig. 7-9, the adjusting assembly 13 includes an open groove 1301 formed at the left and right sides of the front and rear portions of the waist plate frame 7, a slider 1302 sliding in the open groove 1301, and having inward ends connected to the left and right sides of the front and rear ends of the waist plate 11, a through hole 1303 formed at the left and right sides of the front end of the waist plate frame 7 and communicating with the open groove 1301, a threaded rod 1304 having one end fixedly connected to the front end of the slider 1302 and the other end penetrating through the through hole 1303 and being fixed to the front end of the waist plate frame 7 by nuts.
Through setting up open slot 1301, slider 1302, through-hole 1303 and threaded rod 1304, utilize to move the front and back portion left and right sides installation slider 1302 of hourglass waist board 11, this slider 1302 slides in open slot 1301, the user pulls the threaded rod 1304 of slider 1302 top installation up-and-down motion, thereby adjust the position of moving hourglass waist board 11, the rethread screws up the nut and fixes threaded rod 1304, ensure the stability and the accuracy of moving hourglass waist board 11 position, realize quiet hourglass waist board 9 and move the interval adjustment between the hourglass waist board 11, and this kind of regulation mode is simple directly perceived, easier operation, also simplify the maintenance process, reduce maintenance cost.
Example 3
Referring to fig. 10-11, the air leakage assembly 16 includes an air discharge tray 1601 mounted in the middle of the right side of the top end of the can cover 4, and an air discharge port 1602 mounted at the front of the air discharge tray 1601, a vortex fan 1603 rotatably mounted in the middle of the air discharge tray 1601, and a docking magnet 1604 mounted on the right side of the air discharge tray 1601, wherein the docking magnet 1604 is communicated with the air discharge tray 1601, and the docking magnet 1604 has an inverted L shape.
Further, the air leakage assembly 16 further comprises a connecting rod 1605, a plurality of clearance paddles 1606, wherein one end of the connecting rod 1605 is connected with the middle part of the vortex fan 1603, the other end of the connecting rod penetrates through the bottom wall of the exhaust disc 1601 and the top wall of the tank cover 4 in sequence and extends into the curing tank body 2, the clearance paddles 1606 are arranged on the connecting rod 1605 at equal intervals, the clearance paddles 1606 are made of corrosion-resistant materials, the clearance paddles 1606 are arranged on the right side of the isosceles plate frames 7, and the clearance paddles 1606 are positioned between two adjacent isosceles plate frames 7.
By arranging the exhaust disk 1601, the exhaust port 1602, the vortex fan 1603 and the butt-joint magnetic tube 1604, the normal operation of the air release assembly 16 is firstly dependent on the tight sealing of the curing tank 2 and the tank cover 4, and the magnetic attraction connection of the air pressure valve tube 15 and the butt-joint magnetic tube 1604 (the butt joint of the magnetic attraction interface of the air pressure valve tube 15 is a positive magnet, the butt joint of the butt-joint magnetic tube 1604 is a negative magnet), in the curing process, the air pressure generated in the curing tank 2 is discharged into the butt-joint magnetic tube 1604 through the air pressure valve tube 15, then enters the exhaust disk 1601, drives the vortex fan 1603 to rotate, and finally is discharged through the exhaust port 1602 on the exhaust disk 1601, so that the smooth air release efficiency of curing air pressure flow is ensured, the pickling air pressure can be further utilized, in addition, through the arrangement of the connecting rod 1605 and the clearance paddles 1606, the rotation of the vortex fan 1603 drives the connecting rod 1605 and the clearance paddles 1606 on the connecting rod 1605 to rotate together, the rotation of the clearance paddles 1606 drives the pickling liquid 3 in the area (the right area in the tank body) to surge, the surging pickling liquid 3 flows to the clearance between two adjacent equal waist plate frames 7, the raw material impurities which are in the pickling liquid are pushed to be dropped in the pickling liquid to be discharged to the left area in the tank body, the flowing effect of the pickling liquid is formed, the living state of the pickling liquid is guaranteed (and the state can be realized without manual observation and intelligent pressure relief), further surging contact of pickled green plums and the pickling liquid 3 is promoted, and the pickling effect is improved.
Further, referring to fig. 10, an arc frame 21 is disposed on the left inner wall of the pickling tank 2, miter filter plates 22 are equidistantly mounted in the middle of the arc frame 21, and the arc frame 21 is mounted on the left side of the bottom end of the tank cover 4.
Through setting up radian frame 21 and miter filter plate 22, can collect the raw materials impurity that drops effectively in the green plum pickling process, these raw materials impurity mainly is in the clearance department between isosceles bezel 7, clearance oar 1606 rotates the in-process of surging pickling liquid 3, from the clearance department by surging, they can be collected by side-mounting's radian frame 21 and the miter filter plate 22 landing of ladder state, not only keep pickling environment's cleanness, also can collect this raw materials impurity and carry out other product production, save raw materials cost, simultaneously, still accelerated follow-up pickling liquid 3's purification process, and with the collaborative work of air release subassembly 16, both realized the smooth emission of atmospheric pressure, and accomplished the automatic collection of raw materials impurity again, secondly, radian frame 21 and miter filter plate 22 need be carried out first step before the taking step of follow-up waiting waist bezel 7, ensure that the operating personnel can take out waiting waist bezel 7 smoothly from the left side.
Further, referring to fig. 1, 5 and 6, the impurity intercepting assembly 17 comprises an auxiliary frame 1701 installed on the right side of the outer frame 1701, a purifying tank 1702 installed in the middle of the top end of the auxiliary frame 1701 and having a liquid inlet of the purifying tank 1702 communicated with the bottom of the pickling tank 2 through a delivery valve tube 1703, a filter disc 1704 installed on the lower side of the inside of the purifying tank 1702 and fixedly installed on the bottom of the positioning plate frame 5, a middle partition tube 1705 installed in the middle of the delivery valve tube 1703, and a conical leakage intercepting sleeve 1706 provided with a plurality of intercepting net openings and installed in the middle of the middle partition tube 1705 at equal intervals and having an annular intercepting net opening at equal intervals on the surface.
Through setting up auxiliary frame 1701, purifying tank 1702, delivery valve pipe 1703, filter disc 1704, middle riser 1705 and interception net mouth, collect through filter disc 1704 at first and carry out the 3 discharge processes of pickling liquid, pickling raw materials impurity that drops in the pickling tank body 2, after follow-up locating plate frame 5 rises, can dismantle filter disc 1704, collect the raw materials impurity of top, simultaneously, still utilize the toper hourglass to intercept the cooperation of cover 1706 and interception net mouth in delivery valve pipe 1703 department, the interception net mouth that its surface equidistance annular was offered can intercept the finer raw materials impurity in the liquid that pickling tank body 2 bottom was flowed out effectively, improve the interception efficiency of impurity, still ensured that the inside raw materials impurity of pickling liquid 3 that needs to purify is less, finally flow into purifying tank 1702, wait for subsequent pickling utilization.
Example 4
Referring to fig. 1-12, the application also provides a use method of the green plum pulp curing device, which comprises the following steps:
S1, discharging, namely firstly taking an equal waist plate frame 7, putting green plums to be salted through a discharging long opening 10, enabling the green plums to enter a limiting space between a static waist plate 9 and a movable waist plate 11, enabling the green plums to be full along with the inclination of the static waist plate 9, enabling the entering green plums to be in a paving state, adjusting the interval between the static waist plate 9 and the movable waist plate 11 through an adjusting component 13, and finally placing the green plums on each equal waist plate frame 7, so that discharging operation is completed;
S2, curing, namely placing each equal waist plate frame 7 filled with green plums into a positioning plate frame 5 through a placing assembly 8, driving a tank cover 4 to be covered with a curing tank body 2 through a hydraulic rod 18 after placing, enabling the positioning plate frame 5 and the isosceles plate frames 7 to enter the curing tank body 2, and then injecting curing liquid 3 into the curing tank body 2 to enter a curing static state;
S3, utilizing pickling gas, namely, during the pickling process, the air pressure in the pickling tank body 2 is increased, high-pressure gas is discharged through the air pressure valve pipe 15 and utilized through the communicated driving air release assembly 16, the vortex fan 1603 is driven by the high-pressure gas to rotate by the gap paddles 1606 connected with the high-pressure gas, and on one hand, the gap paddles 1606 are positioned between two adjacent isosceles plate frames 7 due to the flushing flow of pickling liquid 3 generated by the gap paddles 1606, and meanwhile, gap impurities between the gap paddles can be driven to be discharged when a gap water body is moved;
S4, collecting impurities, namely continuing the step S3, collecting impurities of the materials discharged from the gap once through the step-shaped miter filter plate 22, and when the subsequent pickling liquid 3 is discharged, firstly collecting impurities twice through the filter plate 1704, and then conveying the materials to the purifying tank 1702, wherein the materials are collected for three times through the conical leakage interception sleeve 1706 in the middle partition tube 1705 on the conveying valve tube 1703, and the gap impurities, the large impurities and the small impurities are collected and reused in sequence.
The foregoing embodiments are merely for illustrating the technical solution of the present invention, but not for limiting the same, and although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those skilled in the art that modifications may be made to the technical solution described in the foregoing embodiments or equivalents may be substituted for parts of the technical features thereof, and that such modifications or substitutions do not depart from the spirit and scope of the technical solution of the embodiments of the present invention in essence.