CN211608102U - Full-automatic dried tofu preparation equipment - Google Patents

Full-automatic dried tofu preparation equipment Download PDF

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CN211608102U
CN211608102U CN201922501299.XU CN201922501299U CN211608102U CN 211608102 U CN211608102 U CN 211608102U CN 201922501299 U CN201922501299 U CN 201922501299U CN 211608102 U CN211608102 U CN 211608102U
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plate
frame
driving
stacking
automatic
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丁国华
麻志刚
何德金
韩玉保
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Jincaidi Food Co ltd
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Jincaidi Food Co ltd
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Abstract

The invention discloses full-automatic dried tofu manufacturing equipment, and belongs to the technical field of dried tofu manufacturing equipment. Including the pot brine of a little, be equipped with driving motor and drive mechanism on the pot brine of a little, driving motor's output shaft is connected with drive mechanism, the last agitator that is connected with of drive mechanism, drive mechanism's one end is kept away from to the agitator extends to pot brine of a little inboardly, driving motor makes the agitator realize circumferential motion on vertical plane through drive mechanism. Utilize the agitator to realize circumferential motion in the point steamed bucket and then realize mixing high-efficiently in the vertical plane, improve its production efficiency greatly, guarantee the quality of its bean curd simultaneously.

Description

Full-automatic dried tofu preparation equipment
Technical Field
The invention belongs to the technical field of dried tofu manufacturing equipment, and particularly relates to a series of high-efficiency dried tofu manufacturing equipment from brine dripping to slicing.
Background
The bean products are vegetable protein products which are very popular to people for eating, and the bean products are produced by the traditional manual mode for a long time, the production efficiency is low, and the product quality can not be guaranteed. For example, the conventional production method of dried tofu is that soybeans are ground into soybean milk and then marinated, then the jellied bean curd formed after marinating is poured onto a template prepared in advance, a template frame is buckled on the template, the template is uniformly paved and then wrapped with cloth, the template frame is removed, the wrapped jellied bean curd and the template are put into a press together, the whole process needs manual operation, the labor intensity is quite high, and the efficiency is quite low. The production quality of the uncongealed tofu needs to be effectively controlled, otherwise, the resource waste or the taste reduction of the dried tofu products can be caused, and the sales work of enterprises is influenced.
Current patent number is 201420247237.5, the name is a full-automatic dried tofu production facility through retrieving, including a plurality of bittern barrel and press, be provided with agitator motor on the bittern barrel, newly state bittern barrel below and be provided with the distributor to through the pipeline intercommunication, the distributor below is provided with and send the board mechanism, send and lay the template in the board mechanism, detain the framed on the template, the afterbody of sending the board mechanism is provided with discharge mechanism, send board mechanism one side to be provided with the frame mechanism that returns of carrying the framed, and be provided with between the two and draw the frame mechanism, draw the frame mechanism will the framed send to send in the template of board mechanism, send board mechanism, return frame mechanism and draw the frame mechanism and all be provided with the cylinder and the push rod of being connected with the cylinder, be provided with the shifting block on the push rod. The production line realizes automatic operation, improves the production efficiency, can finish 350 templates per hour, reduces the labor and reduces the labor intensity. However, a specific scheme solution is not provided for fully mixing the brine and the soybean milk in the brine dripping barrel, so that the quality of the generated uncongealed tofu is low, and the waste of raw materials is caused.
Current patent number through the retrieval is 201420247117.5, the name is distributor in dried tofu production facility, including a plurality of some brine barrels, is provided with agitator motor on some brine barrels, its characterized in that: a distributor is arranged below the brine dripping bucket and is communicated with the brine dripping bucket through a pipeline, a liquid level batcher is arranged in the distributor, and a taper flow guide block is arranged at an outlet of the distributor. Realize assembly line automation and operate, improved production efficiency, 350 templates can be accomplished every hour, reduced the manual work, reduced intensity of labour moreover, including automatic control, make the distributor ration accurate, the uncongealed beancurd volume that spreads on every template is unanimous basically, makes the dried tofu quality after the pressing of later stage press keep unanimous, and the quality is ensured. The quantitative discharge of the uncongealed beancurd is realized only through the distribution mechanism, but an effective scheme is not provided for the internal uncongealed beancurd forming quality, and the quality problem of uncongealed beancurd generation in the prior art cannot be effectively solved.
Disclosure of Invention
The invention aims to overcome the defects in the prior art, and provides full-automatic dried tofu manufacturing equipment, which can realize high-efficiency mixing and stirring, greatly improve the generation quality of uncongealed tofu and manufacture dried tofu with high quality and mouthfeel.
In order to achieve the purpose, the invention adopts the following scheme:
the utility model provides a full-automatic dried tofu preparation equipment, includes the steamed bucket of point, be equipped with driving motor and drive mechanism on the steamed bucket of point, driving motor's output shaft and drive mechanism are connected, the last agitator that is connected with of drive mechanism, drive mechanism's one end is kept away from to the agitator extends to the steamed bucket of point inboardly, driving motor makes the agitator realize circumferential motion on vertical plane through drive mechanism.
Furthermore, drive mechanism includes driving shaft and driven shaft that are parallel to each other, driving shaft and driven shaft all rotate through the bearing frame and connect on the brine curdling bucket, a tip of driving shaft is equipped with the driving medium, the driving medium forms the transmission with driving motor's output shaft and is connected, the equal fixedly connected with connecting rod of one end that the driving shaft and driven shaft kept away from the driving medium, the one end that the bearing frame was kept away from to the connecting rod is connected with the agitator rotation.
Further, the bottom of the brine dripping bucket is equipped with the delivery port, delivery port department is equipped with the valve, the delivery port has distribution device through the pipe connection, distribution device passes through the pipeline and communicates with the delivery port, distribution device's bottom is equipped with type frame conveying mechanism, type frame conveying mechanism's afterbody is equipped with apron conveying mechanism, pile up mechanism, squeezing mechanism, split mechanism, panel turnover mechanism and stripping mechanism in proper order.
Further, the distribution mechanism comprises a distribution box, a distribution driving piece and an opening and closing unit, a liquid level batcher and a discharge port are arranged on the distribution box, the liquid level batcher controls the opening and closing of the distribution driving piece, the distribution driving piece is fixedly connected to the distribution box, the opening and closing unit is arranged at the discharge port, and the opening and closing process of the opening and closing unit is realized through the reciprocating motion of the driving end of the distribution driving piece.
Further, the unit that opens and shuts includes fixed plate, flashboard and guide plate, fixed plate fixed connection is in discharge gate department, be equipped with the stopper on the fixed plate, flashboard sliding connection is in the fixed plate, the flashboard is connected with the drive end fixed connection of distribution driving piece, the guide plate rotates to be connected on the flashboard, one side that the flashboard was dorsad to the flashboard is equipped with the locating piece that matches with the stopper.
Further, be equipped with the flattening structure on the distributor box, the flattening structure includes automatic lift, dwang and flattening piece, on the automatic lift installation fixed plate, fixedly connected with rack on the automatic lift, the dwang rotates to be connected on the fixed plate, the rotation end of dwang is equipped with the gear with rack toothing, the one end that the fixed plate was kept away from to the dwang is equipped with the piece that resets, the flattening piece is connected on the dwang through the piece that resets, the flattening piece is used for the flattening by discharge gate exhaust bean curd.
Further, type frame conveying mechanism includes first conveyer belt and type frame mould, be equipped with the limiting plate on the global of type frame mould, a plurality of hole that leaks has been seted up on the type frame mould, apron conveying mechanism includes second conveyer belt and type frame apron, type frame apron and type frame mould phase-match, a plurality of through-hole has been seted up on the apron.
Further, the stacking mechanism includes the mount, piles up driving piece and stacked structure, the mount sets up the afterbody at type frame conveying mechanism, it installs on the mount to pile up driving piece fixed mounting, stacked structure includes mounting, guide and piles up the piece, mounting and guide fixed connection, the mounting is connected with the output that piles up the driving piece, the vertical removal of guide is on the mount, the bottom of guide is equipped with the rotation axis, be equipped with the torsional spring on the rotation axis, it passes through torsional spring and connects on the rotation axis to pile up the piece, it realizes the matching with the limiting plate after the anticlockwise rotation takes place through the torsional spring to pile up the piece.
Further, the plate turning mechanism comprises a fixed frame, a plate turning driving piece and a pressure plate structure, the plate turning driving piece is fixedly arranged at the tail part of the splitting mechanism, the output shaft of the turning plate driving part is fixedly connected with the fixed frame, the pressure plate structure comprises an automatic telescopic part, a mounting part, an extrusion part and a clamping part, the automatic telescopic piece is fixedly arranged on the mounting piece which is fixedly connected on the fixed frame, the extrusion part is fixedly connected with the movable end of the automatic telescopic part, the clamping part is transversely and movably arranged on the fixed frame, the outer side of the clamping piece is sleeved with a return spring, the return spring is connected to the fixed frame, the clamping piece is hinged with a hinge rod, the one end that clamping piece was kept away from to articulated pole is articulated to be connected with the guide bar, the guide bar activity sets up on fixed frame, the one end that the articulated pole was kept away from to the guide bar is laminated with the extruded article.
Furthermore, the cutting mechanism comprises a cutting driving piece, a pressing frame and a cutting structure, the cutting driving piece is arranged at the tail of the plate turning mechanism, the output shaft of the cutting driving piece is fixedly connected with the pressing frame, a plurality of pressing grooves which are arranged at equal intervals are formed in the pressing frame, a plurality of guide pieces are arranged in the pressing grooves, the cutting structure comprises a pushing piece and a mounting plate, the output end of the pushing piece is fixedly connected with the mounting plate, the mounting plate is of a U-shaped structure, a plurality of limiting springs which are arranged at equal intervals are arranged on the mounting plate, one end, far away from the mounting plate, of each limiting spring is connected with a corresponding blade, and the blades are arranged on the mounting plate through a rotating shaft.
Compared with the prior art, the invention can obtain the following technical effects:
1. the soybean milk curdling device is provided with the drive motor, the transmission unit and the stirrer, and the stirrer is used for carrying out axial motion on soybean milk in a vertical plane under the condition that the drive motor drives the transmission unit, so that the brine and the soybean milk are fully and efficiently mixed, the quality of the molded soybean milk in the later period is further ensured, and the production efficiency is greatly improved.
2. The distribution mechanism is arranged in the bean curd extruding machine, quantitative bean curd is conveyed into the frame mold by the distribution mechanism for molding, stable discharge is realized by the guide plate in the bean curd extruding machine, the guide plate can synchronously move along with opening and closing of the flashboard, the frame mold can conveniently move on the first conveying belt, meanwhile, the leveling structure on the fixing plate can effectively level the interior of the frame mold, a level reference surface is provided for later stacking work, unevenness of a frame cover plate in the frame mold is avoided, and the quality of extrusion molding is further ensured.
3. According to the bean curd jelly forming machine, the stacking mechanism is arranged, the stacking member moves on the fixing frame in the vertical direction through the guide piece, when the stacking member meets the limiting plates, the stacking member rotates anticlockwise and is reset under the action of the torsion spring and is located between the upper limiting plate and the lower limiting plate, when the output end of the stacking driving piece is retracted, the stacking member supports the limiting plates to enable the frame mold to reach a certain height, the stacking member enters a lower process and is pressed for 15 times, and redundant moisture in bean curd jelly can be fully discharged through the frame mold and the through holes in the frame cover plate.
4. The automatic bean curd pressing device is characterized in that the automatic expansion piece is arranged on the frame, the automatic expansion piece is. The clamping of the frame mold can be realized when the internal bean curd is compressed, so that the processes finished in two steps in the traditional process are finished in one process, the production efficiency is ensured, the equipment cost is saved, and the limited space is released.
5. The cutting mechanism provided by the invention can firstly carry out surface shaping on the turned jellied bean curd, then carry out cutting on the jellied bean curd, comprehensively use the guide piece in the pressure groove on the pressure frame to ensure the cutting precision, meanwhile, the pushing piece pushes the mounting plate to move left and right or move front and back to cut the formed jellied bean curd, ensure the jellied bean curd blocks with uniform size and thickness, and provide convenience for the subsequent finished product quality. Meanwhile, the blade is connected to the mounting plate through the reset spring and keeps in a vertical state, even if the blade touches a barrier, the blade can also automatically reset under the action of the reset spring, and the phenomenon that the quality of the cut block is influenced by the rotation of the cutter is avoided.
In conclusion, the invention has the advantages of higher bittern spotting quality, higher bean curd forming quality, consistent bean curd forming block size, higher automation degree, high production efficiency, equipment cost saving, limited space release, improvement of workshop space utilization rate, great labor intensity reduction and labor cost saving.
Drawings
FIG. 1 is a schematic diagram of the system of the present invention;
FIG. 2 is a schematic view of the installation of the brine spotting bucket of the present invention;
FIG. 3 is an enlarged view of a portion of FIG. 2 at A;
FIG. 4 is a schematic structural view of the brine dripping bucket of the present invention;
FIG. 5 is an overall view of the stacking mechanism of the present invention;
FIG. 6 is a front view of the flap mechanism of the present invention;
FIG. 7 is a side view of the structure of the flap mechanism of the present invention;
FIG. 8 is a front view of the dicing mechanism structure of the present invention;
fig. 9 is a top view of the dicing mechanism structure of the present invention.
In the figure: 10. a brine dripping bucket; 11. a water outlet; 12. a drive motor; 13. a stirrer; 14. a drive shaft; 15. a driven shaft; 16. a transmission member; 17. a connecting rod; 20. a dispensing mechanism; 21. a distribution box; 211. an automatic lifter; 212. rotating the rod; 213. a leveling member; 214. a reset member; 22. a dispensing drive; 23. a discharge port; 24. a fixing plate; 241. a limiting block; 25. a shutter plate; 26. a baffle; 261. positioning blocks; 30. a form frame conveying mechanism; 31. a frame mold; 311. a limiting plate; 32. a mould frame cover plate; 40. a cover plate conveying mechanism; 50. a stacking mechanism; 51. a fixed mount; 52. a stacking drive; 53. a fixing member; 54. a guide member; 55. stacking the components; 56. a rotating shaft; 60. a squeezing mechanism; 70. a splitting mechanism; 80. a panel turnover mechanism; 81. a fixing frame; 82. a flap drive; 83. an automatic telescopic member; 84. a mounting member; 85. an extrusion; 86. a clamping member; 87. a return spring; 88. a guide bar; 90. a dicing mechanism; 91. a dicing drive member; 92. pressing the frame; 93. pressing a groove; 94. a pusher member; 95. mounting a plate; 96. a limiting spring; 97. a blade.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example 1:
as shown in fig. 1 and 4, a full-automatic dried tofu preparation device, including a brine dripping bucket 10, the top of brine dripping bucket 10 is equipped with driving motor 12 and drive mechanism, the output shaft of driving motor 12 is connected with drive mechanism, the last agitator 13 that is connected with of drive mechanism, agitator 13 is T-shaped structure, the one end that drive mechanism was kept away from to agitator 13 extends to brine dripping bucket 10 inboard, the bottom of agitator 3 that is located brine dripping bucket 10 is the stirring board, realize stirring high-efficiently, driving motor 12 makes agitator 13 realize circumferential motion in vertical direction through drive mechanism. When the soybean milk curdling device is used, firstly, soybean milk is led into the curdling barrel 10, then, when the driving motor 12 drives the transmission unit to enable the stirrer 13 to make vertical circumferential motion, brine is synchronously added to enable the soybean milk to be efficiently and fully mixed with the brine, and then, standing is carried out for 30 minutes to obtain the soybean milk. Utilize agitator 13 to realize circumferential motion in the vertical plane and then realize mixing high-efficiently in the steamed bucket 10 of point, improve its production efficiency greatly, guarantee the quality of its bean curd simultaneously.
Further preferred scheme, drive mechanism includes driving shaft 14 and driven shaft 15 that are parallel to each other, and driving shaft 14 and driven shaft 15 all rotate through the bearing frame and connect on the brine curdling bucket 10, and a tip of driving shaft 14 is equipped with driving medium 16, and driving medium 16 forms transmission with the output shaft of driving motor 12 and is connected, and driving shaft 14 and driven shaft 15 keep away from the equal fixedly connected with connecting rod 17 of one end of driving medium 16, and the one end that the bearing frame was kept away from to connecting rod 17 rotates with agitator 13 and is connected. The output end of the driving motor 12 is utilized to drive the transmission part 16 on the driving shaft 14 to enable the driving shaft 14 and the driven shaft 15 to synchronously rotate, and further, the connecting rod 17 is driven to enable the stirring function in the vertical plane to be achieved.
Example 2:
as shown in fig. 1 to 8, different from embodiment 1, a water outlet 11 is provided at the bottom of a brine dripping bucket 10, a valve is provided at the water outlet 11, the water outlet 11 is connected to a distribution mechanism 20 through a pipeline, the distribution mechanism 20 is communicated with the water outlet 11 through a pipeline, a frame conveying mechanism 30 is provided at the bottom of the distribution mechanism 20, and a cover plate conveying mechanism 40, a stacking mechanism 50, a squeezing mechanism 60, a splitting mechanism 70, a plate turning mechanism 80 and a block cutting mechanism 90 are sequentially provided at the tail of the frame conveying mechanism 30.
In this embodiment, it is further preferable that the dispensing mechanism 20 includes a dispensing box 21, a dispensing driving member 22, and an opening and closing unit, wherein a liquid level batcher and a discharge port 23 are disposed on the dispensing box 21, the liquid level batcher controls the opening and closing of the dispensing driving member 22 (air cylinder), the dispensing driving member 22 is fixedly connected to the dispensing box 21, the opening and closing unit is disposed at the discharge port 23, and the opening and closing process of the opening and closing unit is realized by the reciprocating motion of the driving end of the dispensing driving member 22. During actual production, the distribution driving member 22 is controlled by the liquid level batcher to drive the opening and closing unit to discharge the uncongealed tofu in the marinating barrel 10 to the frame conveying mechanism 30 for conveying to the next process.
In a further preferred scheme in this embodiment, the opening and closing unit includes a fixing plate 24, a shutter 25 and a guide plate 26, the fixing plate 24 is fixedly connected to the discharge port 23, a limit block 241 is disposed on the fixing plate 24, the shutter 25 is slidably connected in the fixing plate 24, the shutter 25 is fixedly connected to the driving end of the distribution driving member 22, the guide plate 26 is rotatably connected to the shutter 25, and a positioning block 261 matched with the limit block 241 is disposed on a side of the guide plate 26 opposite to the shutter 25. Drive flashboard 25 through distribution driving piece 22 and remove in fixed plate 24, and then open discharge gate 23 and discharge its inside bean curd, guide plate 26 is also opened when opening discharge gate 23, realizes that the bean curd is steadily arranged to type frame conveying mechanism 30 on, still influences later stage shaping quality when preventing to appear splashing the waste that causes the cost.
In this embodiment, it is further preferable that the mold frame conveying mechanism 30 includes a first conveying belt and a mold frame 31, a limiting plate 311 is disposed on the circumferential surface of the mold frame 31, the cover plate conveying mechanism 40 includes a second conveying belt and a mold frame cover plate 32, the mold frame cover plate 32 is matched with the mold frame 31, a plurality of through holes are disposed on the mold frame cover plate 32 and the mold frame 31 for draining water, and moisture in the uncongealed tofu is squeezed out by the squeezing mechanism 60 in the later stage through the match between the mold frame cover plate 32 and the mold frame 31.
In this embodiment, it is further preferable that the stacking mechanism 50 includes a fixed frame 51, a stacking driving member 52 and a stacking structure, the fixed frame 51 is disposed at the rear portion of the frame conveying mechanism 30, the stacking driving member 52 (air cylinder) is fixedly mounted on the fixed frame 51, the stacking structure includes a fixed member 53, a guide member 54 and a stacking member 55, the fixed member 53 is fixedly connected to the guide member 54, the fixed member 53 is connected to the output end of the stacking driving member 52, the guide member 54 vertically moves on the fixed frame 51, a rotating shaft 56 is disposed at the bottom of the guide member 54, a torsion spring is disposed on the rotating shaft 56, the stacking member 55 is connected to the rotating shaft 56 through the torsion spring, and the stacking member 55 is matched with the limit plate 311 after. During actual production, the guide 54 moves downwards along the fixing frame 51 by extending the output end of the stacking driving element 52 outwards, and when the stacking element 55 touches the limiting plate 311 in the downward movement process, the stacking element 55 is reset under the action of the torsion spring and is located between the upper limiting plate 311 and the lower limiting plate 311 after rotating, and when the output end of the stacking driving element 52 is retracted, the stacking element 55 supports the limiting plate 311 to enable the frame mold 31 to reach a certain height, and then enters the lower process for 15 times of squeezing.
In a further preferred embodiment, the plate-turning mechanism 80 includes a fixed frame 81, a plate-turning driving member 82 (motor) and a pressing plate structure, the plate-turning driving member 82 is fixedly installed at the tail part of the disassembling mechanism 70, the output shaft of the plate-turning driving member 82 is fixedly connected with the fixed frame 81, the pressing plate structure includes an automatic telescopic member 83, an installation member 84, an extrusion member 85 and a clamping member 86, the automatic telescopic member 83 (cylinder) is fixedly installed on the installation member 84, the installation member 84 is fixedly connected with the fixed frame 81, the extrusion member 85 is fixedly connected with the movable end of the automatic telescopic member 83, the clamping member 86 is transversely movably arranged on the fixed frame 81, a return spring 87 is sleeved outside the clamping member 86, the return spring 87 is connected with the fixed frame 51, a hinge rod is hinged on the clamping member 86, one end of the hinge rod, which is far away from, the end of the guide bar 88 remote from the hinge bar engages the extrusion 85. During the in-service use, the output that utilizes automatic extensible member 83 drives extruded article 85 and pushes down and makes the bean curd after compressing tightly inside squeezing, and extruded article 85 promotes guide bar 88 simultaneously and moves down and makes clamping piece 86 press from both sides tight type frame mould 31, will drive fixed frame 81 and realize the upset and realize the separation with inside bean curd and type frame mould turning over board driving piece 82, get into the stripping and slicing process.
In this embodiment, it is further preferable that the dicing mechanism 90 is provided with two sets, one set of dicing mechanism 90 cuts the dice transversely, the other set of dicing mechanism 90 cuts the dice longitudinally, both sets of dicing mechanism 90 include a dicing drive 91, press frame 92 and stripping structure, stripping drive spare 91 (cylinder) sets up the afterbody at panel turnover mechanism 80, stripping drive spare 91's output shaft and pressure frame 92 fixed connection, be equipped with the indent 93 that a plurality of equidistant setting was equipped with on the pressure frame 92, be equipped with a plurality of guide plate in the indent 93, the stripping structure includes impeller 94 and mounting panel 95, the output and the mounting panel 95 fixed connection of impeller 94 (cylinder), mounting panel 95 is the U-shaped structure, be equipped with the spacing spring 96 of a plurality of equidistant on the mounting panel 95, the one end that mounting panel 95 was kept away from to every spacing spring 96 is connected with corresponding blade 97, blade 97 sets up on mounting panel 95 through the pivot. Utilize stripping and slicing driving piece 91 to drive and press frame 92 to push down, guarantee the uncongealed tofu planarization after it squeezes, prevent to produce when the stripping and slicing and can't guarantee its finished product quality in the later stage of shape, utilize impeller 94 to promote mounting panel 95 with its horizontal or longitudinal movement and then with blade 97 along the guide vane removal in indent 93 carry out the stripping and slicing, realize the uncongealed tofu piece that the size equals, spacing spring 96 will realize that blade 97 remains vertical state throughout, even touch the barrier and also can realize automatic re-setting.
Example 3:
as shown in fig. 2 and fig. 3, different from embodiment 2, a leveling structure is provided on the distribution box 21 for ensuring the quality of dried tofu molding, the leveling structure includes an automatic lifter 211 (cylinder), a rotating rod 212 and a leveling member 213, the automatic lifter 211 is installed on the distribution box 21, a rack is fixedly connected to the automatic lifter 211, the top end of the rotating rod 212 is connected to the side wall of the distribution box 21 through a rotating shaft, a gear engaged with the rack is provided at the rotating end of the rotating rod 212, a reset member 214 (spring) is provided at one end of the rotating rod 212 far away from the distribution box 21, the leveling member 213 is a roller structure, the leveling member 213 is connected to the rotating rod 212 through the reset member 214, and the leveling member 213 is used for leveling the dried tofu discharged from the discharge port 23. During actual production, utilize automatic rising ware 211 to drive the rack and go up and down to make dwang 212 realize through the gear that the rotation reaches flattening piece 213 and make inside jellied bean curd obtain the flattening on type frame mould 31, prevent that later stage type frame apron 32 when matching with type frame mould 31, because the influence of jellied bean curd unevenness to piling up the effect, and then indirectly guaranteed the quality of dried tofu.
The soybean milk curdling method can be realized in the concrete production process, firstly, the soybean milk is led into the curdling barrel 10, then, when the driving motor 12 drives the transmission unit to enable the stirrer 13 to make vertical circumferential motion, the brine is synchronously added to enable the soybean milk to be efficiently and fully mixed with the brine, and then, the soybean milk is kept still for 30 minutes to obtain the soybean milk. The stirrer 13 is utilized to realize circumferential motion in a vertical plane in the brine dripping bucket 10, so that efficient mixing is realized, the production efficiency is greatly improved, and the quality of the uncongealed tofu is ensured; by opening the valve of the discharge port 23, the liquid level batcher controls the distribution driving member 22 to drive the opening and closing unit to discharge the uncongealed beancurd in the marinating barrel 10 to the upper frame mold 31 of the frame conveying mechanism 30, the guide member 54 moves downwards along the fixed frame 51 by the outward extension of the output end of the stacking driving member 52, the stacking member 55 in the downward moving process is reset under the action of the torsion spring and is positioned between the upper limiting plate 311 and the lower limiting plate 311 when contacting the limiting plate 311, and when the output end of the stacking driving member 52 is retracted, the stacking member 55 supports the limiting plate 311 to enable the frame mold 31 to reach a certain height, and then enters the lower process to carry out 15 times of squeezing. The output end of the automatic telescopic part 83 is used for driving the extrusion part 85 to press down to compress the internal squeezed jellied bean curd, meanwhile, the extrusion part 85 pushes the guide rod 88 to move down to enable the clamping part 86 to clamp the frame mould 31, the turning plate driving part 82 drives the fixing frame 81 to realize turning to separate the internal jellied bean curd from the frame mould, and the cutting process is carried out. Utilize stripping and slicing driving piece 91 to drive and press frame 92 to push down, guarantee the uncongealed tofu planarization after it squeezes, prevent to produce when the stripping and slicing and can't guarantee its finished product quality in the later stage of shape, utilize impeller 94 to promote mounting panel 95 with its horizontal and longitudinal movement and then with blade 97 along the guide vane removal in indent 93 carry out the stripping and slicing, realize the uncongealed tofu piece that the size equals, spacing spring 96 will realize that blade 97 remains vertical state throughout, even touch the barrier and also can realize automatic re-setting. And squeezing the cut uncongealed tofu blocks by using additional squeezing equipment to obtain the finished dried tofu.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (10)

1. The utility model provides a full-automatic dried tofu preparation equipment, its characterized in that, includes some steamed bucket (10), be equipped with driving motor (12) and drive mechanism on some steamed bucket (10), the output shaft and the drive mechanism of driving motor (12) are connected, the last agitator (13) that is connected with of drive mechanism, drive mechanism's one end is kept away from in agitator (13) extends to some steamed bucket (10) inboardly, driving motor (12) make agitator (13) realize circumferential motion on vertical plane through drive mechanism.
2. The full-automatic dried tofu manufacturing equipment according to claim 1, wherein the transmission mechanism comprises a driving shaft (14) and a driven shaft (15) which are parallel to each other, the driving shaft (14) and the driven shaft (15) are both rotationally connected to the brine dripping bucket (10) through a bearing seat, a transmission part (16) is arranged at one end of the driving shaft (14), the transmission part (16) is in transmission connection with an output shaft of the driving motor (12), one ends of the driving shaft (14) and the driven shaft (15) far away from the transmission part (16) are both fixedly connected with a connecting rod (17), and one end of the connecting rod (17) far away from the bearing seat is rotationally connected with the stirrer (13).
3. The full-automatic dried tofu manufacturing equipment according to claim 1, wherein a water outlet (11) is arranged at the bottom of the brine dripping bucket (10), a valve is arranged at the water outlet (11), the water outlet (11) is connected with a distribution mechanism (20) through a pipeline, the distribution mechanism (20) is communicated with the water outlet (11) through a pipeline, a frame conveying mechanism (30) is arranged at the bottom of the distribution mechanism (20), and a cover plate conveying mechanism (40), a stacking mechanism (50), a squeezing mechanism (60), a splitting mechanism (70), a plate turning mechanism (80) and a block cutting mechanism (90) are sequentially arranged at the tail of the frame conveying mechanism (30).
4. The full-automatic dried tofu manufacturing equipment according to claim 3, wherein the distribution mechanism (20) comprises a distribution box (21), a distribution driving member (22) and an opening and closing unit, wherein a liquid level batcher and a discharge port (23) are arranged on the distribution box (21), the liquid level batcher controls the opening and closing of the distribution driving member (22), the distribution driving member (22) is fixedly connected to the distribution box (21), the opening and closing unit is arranged at the discharge port (23), and the opening and closing process of the opening and closing unit is realized by the reciprocating motion of a driving end of the distribution driving member (22).
5. The full-automatic dried tofu manufacturing equipment according to claim 4, wherein the opening and closing unit comprises a fixing plate (24), a gate plate (25) and a guide plate (26), the fixing plate (24) is fixedly connected at the discharge port (23), a limit block (241) is arranged on the fixing plate (24), the gate plate (25) is slidably connected in the fixing plate (24), the gate plate (25) is fixedly connected with the driving end of the distribution driving member (22), the guide plate (26) is rotatably connected on the gate plate (25), and a positioning block (261) matched with the limit block (241) is arranged on one side of the guide plate (26) opposite to the gate plate (25).
6. The full-automatic dried tofu manufacturing equipment according to claim 5, characterized in that, still be equipped with the flattening structure on distributor box (21), the flattening structure includes automatic lift (211), dwang (212) and flattening piece (213), on automatic lift (211) installation fixed plate (24), fixedly connected with rack on automatic lift (211), dwang (212) rotate to be connected on fixed plate (24), the rotation end of dwang (212) is equipped with the gear with rack toothing, the one end that fixed plate (24) were kept away from in dwang (212) is equipped with piece (214) that resets, flattening piece (213) are connected on dwang (212) through piece (214) that resets, flattening piece (213) are used for the flattening by the jellied bean curd of discharge gate (23) discharge.
7. The full-automatic dried tofu manufacturing equipment according to claim 3, wherein the frame conveying mechanism (30) comprises a first conveying belt and a frame mold (31), the peripheral surface of the frame mold (31) is provided with a limiting plate (311), the frame mold (31) is provided with a plurality of water leakage holes, the cover plate conveying mechanism (40) comprises a second conveying belt and a frame cover plate (32), the frame cover plate (32) is matched with the frame mold (31), and the cover plate is provided with a plurality of through holes.
8. The full-automatic dried tofu manufacturing equipment according to claim 3, wherein the stacking mechanism (50) comprises a fixing frame (51), a stacking driving member (52) and a stacking structure, the fixing frame (51) is arranged at the tail of the frame conveying mechanism (30), the stacking driving member (52) is fixedly arranged on the fixing frame (51), the stacking structure comprises a fixing member (53), a guiding member (54) and a stacking member (55), the fixing member (53) is fixedly connected with the guiding member (54), the fixing member (53) is connected with the output end of the stacking driving member (52), the guiding member (54) vertically moves on the fixing frame (51), the bottom of the guiding member (54) is provided with a rotating shaft (56), the rotating shaft (56) is provided with a torsion spring, and the stacking member (55) is connected to the rotating shaft (56) through the torsion spring, the stacking piece (55) is matched with the limiting plate (311) after anticlockwise rotation of the torsion spring.
9. The full-automatic dried tofu manufacturing equipment according to claim 3, wherein the plate-turning mechanism (80) comprises a fixed frame (81), a plate-turning driving member (82) and a plate-pressing structure, the plate-turning driving member (82) is fixedly installed at the tail of the splitting mechanism (70), the output shaft of the plate-turning driving member (82) is fixedly connected with the fixed frame (81), the plate-pressing structure comprises an automatic telescopic member (83), an installation member (84), an extrusion member (85) and a clamping member (86), the automatic telescopic member (83) is fixedly installed on the installation member (84), the installation member (84) is fixedly connected on the fixed frame (81), the extrusion member (85) is fixedly connected with the movable end of the automatic telescopic member (83), the clamping member (86) is transversely movably arranged on the fixed frame (81), and a reset spring (87) is sleeved outside the clamping member (86), reset spring (87) are connected on mount (51), the articulated pole that is connected with on clamping piece (86), the articulated pole is kept away from the articulated guide bar (88) that is connected with of one end of clamping piece (86), guide bar (88) activity sets up on fixed frame (81), the one end and the extruded piece (85) laminating of articulated pole are kept away from to guide bar (88).
10. The full-automatic dried tofu manufacturing equipment according to claim 3, wherein the cutting mechanism (90) comprises a cutting driving member (91), a pressing frame (92) and a cutting structure, the cutting driving member (91) is arranged at the tail of the plate turnover mechanism (80), the output shaft of the cutting driving member (91) is fixedly connected with the pressing frame (92), the pressing frame (92) is provided with a plurality of pressing grooves (93) arranged at equal intervals, a plurality of guide plates are arranged in the pressing grooves (93), the cutting structure comprises a pushing member (94) and a mounting plate (95), the output end of the pushing member (94) is fixedly connected with the mounting plate (95), the mounting plate (95) is U-shaped, a plurality of limit springs (96) arranged at equal intervals are arranged on the mounting plate (95), one end of each limit spring (96) far away from the mounting plate (95) is connected with a corresponding blade (97), the blade (97) is arranged on the mounting plate (95) through a rotating shaft.
CN201922501299.XU 2019-12-31 2019-12-31 Full-automatic dried tofu preparation equipment Active CN211608102U (en)

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111011540A (en) * 2019-12-31 2020-04-17 金菜地食品股份有限公司 Full-automatic dried tofu preparation equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111011540A (en) * 2019-12-31 2020-04-17 金菜地食品股份有限公司 Full-automatic dried tofu preparation equipment
CN111011540B (en) * 2019-12-31 2024-07-05 金菜地食品股份有限公司 Full-automatic dried tofu manufacturing equipment

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