CN116691049A - Automatic control dried tofu hydraulic press for dried tofu production - Google Patents
Automatic control dried tofu hydraulic press for dried tofu production Download PDFInfo
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- CN116691049A CN116691049A CN202310847820.3A CN202310847820A CN116691049A CN 116691049 A CN116691049 A CN 116691049A CN 202310847820 A CN202310847820 A CN 202310847820A CN 116691049 A CN116691049 A CN 116691049A
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- plate
- surrounding
- dried tofu
- supporting
- push
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- 235000013527 bean curd Nutrition 0.000 title claims abstract description 162
- 238000004519 manufacturing process Methods 0.000 title claims abstract description 16
- 230000003014 reinforcing effect Effects 0.000 claims description 45
- 238000003860 storage Methods 0.000 claims description 31
- 239000000463 material Substances 0.000 claims description 25
- 238000003756 stirring Methods 0.000 claims description 17
- 238000001125 extrusion Methods 0.000 claims description 11
- 238000003825 pressing Methods 0.000 claims description 11
- 230000000903 blocking effect Effects 0.000 claims description 4
- 235000013305 food Nutrition 0.000 claims description 4
- 229910001220 stainless steel Inorganic materials 0.000 claims description 4
- 239000010935 stainless steel Substances 0.000 claims description 4
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 8
- 230000000694 effects Effects 0.000 description 4
- 238000002347 injection Methods 0.000 description 4
- 239000007924 injection Substances 0.000 description 4
- 238000005728 strengthening Methods 0.000 description 3
- 244000068988 Glycine max Species 0.000 description 2
- 235000010469 Glycine max Nutrition 0.000 description 2
- 230000005484 gravity Effects 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 239000008267 milk Substances 0.000 description 2
- 210000004080 milk Anatomy 0.000 description 2
- 235000013336 milk Nutrition 0.000 description 2
- 239000002994 raw material Substances 0.000 description 2
- 241001391944 Commicarpus scandens Species 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000002146 bilateral effect Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 239000012535 impurity Substances 0.000 description 1
- JEIPFZHSYJVQDO-UHFFFAOYSA-N iron(III) oxide Inorganic materials O=[Fe]O[Fe]=O JEIPFZHSYJVQDO-UHFFFAOYSA-N 0.000 description 1
- 230000007935 neutral effect Effects 0.000 description 1
- 230000002093 peripheral effect Effects 0.000 description 1
- 230000002787 reinforcement Effects 0.000 description 1
- 230000001629 suppression Effects 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B9/00—Presses specially adapted for particular purposes
- B30B9/02—Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material
- B30B9/04—Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material using press rams
- B30B9/06—Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material using press rams co-operating with permeable casings or strainers
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23C—DAIRY PRODUCTS, e.g. MILK, BUTTER OR CHEESE; MILK OR CHEESE SUBSTITUTES; MAKING THEREOF
- A23C20/00—Cheese substitutes
- A23C20/02—Cheese substitutes containing neither milk components, nor caseinate, nor lactose, as sources of fats, proteins or carbohydrates
- A23C20/025—Cheese substitutes containing neither milk components, nor caseinate, nor lactose, as sources of fats, proteins or carbohydrates mainly containing proteins from pulses or oilseeds
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B15/00—Details of, or accessories for, presses; Auxiliary measures in connection with pressing
- B30B15/30—Feeding material to presses
- B30B15/302—Feeding material in particulate or plastic state to moulding presses
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B15/00—Details of, or accessories for, presses; Auxiliary measures in connection with pressing
- B30B15/32—Discharging presses
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B30—PRESSES
- B30B—PRESSES IN GENERAL
- B30B9/00—Presses specially adapted for particular purposes
- B30B9/02—Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material
- B30B9/26—Permeable casings or strainers
- B30B9/265—Press cloths
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/80—Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking
- Y02P60/85—Food storage or conservation, e.g. cooling or drying
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Food Science & Technology (AREA)
- Polymers & Plastics (AREA)
- Beans For Foods Or Fodder (AREA)
Abstract
The application relates to the technical field of dried tofu manufacturing equipment, in particular to an automatic control dried tofu hydraulic machine for manufacturing dried tofu. The technical problems of the application are as follows: provides a self-control dried tofu hydraulic machine for manufacturing dried tofu, which is convenient to use. The technical implementation scheme of the application is as follows: the utility model provides a dried tofu manufacturing is with automatic control dried tofu hydraulic press, includes base, slide rail, slip template and hydraulic pressure subassembly etc. the lower part left and right sides of base all is connected with the slide rail, and sliding connection has the slip template between the slide rail, and the upper portion of base is connected with hydraulic pressure subassembly. According to the application, the first blanking plate and the second blanking plate are used for controlling the beancurd to fall, so that the total quantity of the beancurd falling from the control bin is fixed every time, the beancurd dosage is convenient to control by people, the surrounding baffle is opened in a rotating and opening mode when the dried beancurd is taken away, the shape of the dried beancurd is difficult to be damaged by the surrounding baffle, and the surrounding baffle can be opened, so that people can conveniently clean the surrounding baffle, and the use of people is convenient.
Description
Technical Field
The application relates to the technical field of dried tofu manufacturing equipment, in particular to an automatic control dried tofu hydraulic machine for manufacturing dried tofu.
Background
The dried bean curd is a bean curd product, the bean curd product can be divided into a beancurd, a bean curd, dried bean curd and the like according to the different water contents of the bean curd product, and the water in the beancurd is squeezed out in the general procedure of the dried bean curd, so that the beancurd becomes compact, the beancurd can be formed into the dried bean curd, and therefore, a hydraulic press is required to be used for mass production of the dried bean curd.
The patent publication No. CN107415299A discloses a dried tofu hydraulic press, which comprises a platform, the landing leg is all installed in the bottom four corners of platform, the guide post is all installed to the upper surface left and right sides of platform, the roof is installed on the outer wall top of guide post, the roof is run through on the top of guide post.
The dried tofu is manufactured by using the dried tofu hydraulic press, the dried tofu mould is firstly placed on the upper surface of the supporting plate, then the dried tofu is injected into the dried tofu mould, then the piston rod of the hydraulic cylinder drives the sliding plate and the pressing plate to move downwards, so that water in the dried tofu is pressed out, and the dried tofu is formed, but because the dried tofu hydraulic press needs to be manually injected into the dried tofu, the injection amount is inconvenient to control, if the injection amount needs to be accurately controlled, external injection equipment is required to be introduced, so that the dried tofu is inconvenient, and after a plurality of layers of dried tofu are simultaneously pressed, the dried tofu mould needs to be lifted vertically upwards to be taken out when the dried tofu is taken out, the dried tofu mould is inconvenient to lift vertically upwards, and the appearance of the dried tofu can be damaged by a little carelessness.
Disclosure of Invention
In order to overcome the defect that the existing dried tofu hydraulic machine is inconvenient to use when manufacturing dried tofu, the technical problem of the application is that: provides a self-control dried tofu hydraulic machine for manufacturing dried tofu, which is convenient to use.
The technical implementation scheme of the application is as follows: the utility model provides a dried tofu manufacturing is with automatic control dried tofu hydraulic press, including base, slide rail, slip template, hydraulic assembly, accuse material mechanism and enclose fender mechanism, the lower part left and right sides of base all is connected with the slide rail, and the slip is connected with slip template between the slide rail, and the upper portion of base is connected with hydraulic assembly, and hydraulic assembly comprises pneumatic cylinder and clamp plate, and the upper portion of base is connected with the pneumatic cylinder, and the lower part of the telescopic link of pneumatic cylinder is connected with the clamp plate, is equipped with accuse material mechanism on the base, is equipped with on the slip template and encloses fender mechanism.
In addition, particularly preferred, the material control mechanism is including backup pad, the storage silo, accuse feed bin, first blanking plate, second blanking plate and push rod, the right front side of lower part of base is connected with the backup pad, the upper left portion of backup pad is connected with the storage silo, the lower part of storage silo is connected with accuse feed bin, the storage silo communicates with accuse feed bin, the upper portion sliding type of accuse feed bin is connected with first blanking plate, first blanking plate runs through the storage silo from front to back, the rear side of first blanking plate is opened there is first blanking mouth, the lower part sliding type of accuse feed bin is connected with the second blanking plate, the second blanking plate runs through the storage silo from front to back, the front side of second blanking plate is opened there are second blanking mouth, be connected with two push rods between the front side of first blanking plate and second blanking plate, two push rods are bilateral symmetry and distribute.
In addition, particularly preferred is, still including enclosing the fender mechanism, enclose the fender mechanism including the supporting shoe, enclose the baffle, round pin and stopper, the front portion left and right sides of slip form all is connected with the supporting shoe, the rear portion left and right sides of slip form all is connected with the supporting shoe, both sides all are connected with the supporting shoe around the left portion of slip form, both sides all are connected with the supporting shoe around the right portion of slip form, all be connected with the enclosing baffle between two similar supporting shoes, four enclosing baffles are closed to form a cuboid, the left side rotation on the front upper portion of enclosing baffle of front side is connected with the round pin, the right side rotation on the rear upper portion of enclosing baffle of rear side is connected with the round pin, the front side rotation on the right upper portion of enclosing baffle of right side is connected with the round pin, the right side rotation on the front upper portion of enclosing baffle of front side is connected with the stopper, the left side on the rear upper portion of enclosing baffle of rear side is connected with the stopper, the front upper right side of enclosing baffle of left side is connected with the stopper, the upper side of enclosing baffle of rear side is connected with the stopper.
In addition, particularly preferred is, still include the release mechanism that is used for upwards jack-up gauze and bean curd, release mechanism is including first support frame, motor, lead screw, release frame and ejector, and the inside slip of slip template is connected with the ejector, and the lower part of ejector is connected with the release frame, and the front portion of slip template is connected with first support frame, is connected with the motor on the first support frame, and the lower part of the output shaft of motor is connected with the lead screw, lead screw and release frame threaded connection.
In addition, particularly preferred is, still including being used for pushing away the flat mechanism of pushing away of beancurd surface level, push away flat mechanism including second support frame, cylinder and pushing away the flat board, the right part of backup pad is connected with the second support frame, is connected with the cylinder on the second support frame, and the cylinder runs through the support frame to the left, and the left part of the telescopic link of cylinder is connected with pushes away the flat board.
In addition, particularly preferred still including the vibration mechanism who is used for automatic knocking accuse feed bin, vibration mechanism is including stirring the board, the supporting seat, vibrations spare, torsional spring and plectrum, push away the upper portion of flat board and be connected with stirring the board, the left and right sides of accuse feed bin all is connected with the supporting seat, all rotate on the supporting seat and be connected with vibrations spare, vibrations spare all with accuse feed bin extrusion fit, all around being equipped with the torsional spring between the lower part front and back both sides of vibrations spare and the similar supporting seat, the torsional spring all winds on the supporting seat, the lower part of vibrations spare all rotates and is connected with the plectrum, plectrum all with similar vibrations spare extrusion fit.
In addition, particularly preferred is, still including being used for carrying out the strengthening mechanism of strengthening to the surrounding board, strengthening mechanism is including pushing down the board, the reinforcing frame, linear spring and gusset plate, the upper portion left and right sides of hydraulic assembly's clamp plate all is connected with pushing down the board, pushing down the board and all being connected with the base slidingtype, the rear portion left and right sides of base all is connected with the reinforcing frame, the reinforcing frame all with similar pushing down board extrusion fit, the reinforcing frame all is connected with the gusset plate in one side that is close to each other, the equal extrusion fit of gusset plate and similar surrounding board, all around being equipped with two linear springs between one side that the reinforcing frame is kept away from each other and the base, linear spring all winds on corresponding reinforcing frame.
Furthermore, it is particularly preferred that the peripheral baffles are all of food grade stainless steel.
The beneficial effects are that: 1. according to the application, the first blanking plate and the second blanking plate are used for controlling the beancurd to fall, so that the total quantity of the beancurd falling from the control bin is fixed every time, the beancurd dosage is convenient to control by people, the surrounding baffle is opened in a rotating and opening mode when the dried beancurd is taken away, the shape of the dried beancurd is difficult to be damaged by the surrounding baffle, and the surrounding baffle can be opened, so that people can conveniently clean the surrounding baffle, and the use of people is convenient.
2. According to the application, the gauze and the bean curd are jacked up upwards through the pushing-out piece, so that the bean curd is conveniently wrapped by the corners of the gauze by people, and the use of people is facilitated.
3. According to the application, after the bean curd is jacked up by the pushing-out piece, the upper part of the bean curd is pushed by the pushing-out plate, so that the upper part of the bean curd is smoother and more attractive, and the bean curd is convenient for people to use.
4. According to the application, the poking plate is used for extruding the poking plate, so that the poking plate drives the vibration piece to rotate, the vibration piece can reversely rotate under the action of the torsion spring and knock the control bin, the beancurd in the control bin can fall off through vibration, raw material waste is avoided, and the use of people is facilitated.
5. According to the application, the reinforcing frame is extruded by the lower push plate, so that the reinforcing frame can drive the reinforcing plate to move to clamp the surrounding baffle plate, the condition that the surrounding baffle plate deforms and breaks away when the bean curd is extruded can be avoided, and the reinforcing frame is convenient for people to use.
Drawings
Fig. 1 is a schematic perspective view of the present application.
Fig. 2 is a schematic view of a partial perspective structure of the present application.
Fig. 3 is a schematic view of a first perspective structure of the material control mechanism of the present application.
Fig. 4 is a schematic view of a second perspective structure of the material control mechanism of the present application.
Fig. 5 is a schematic view of a first perspective structure of the enclosure mechanism of the present application.
Fig. 6 is a schematic view of a second perspective structure of the enclosure mechanism of the present application.
Fig. 7 is a schematic perspective view of the ejector mechanism of the present application.
Fig. 8 is a schematic view of a first perspective structure of the pushing mechanism of the present application.
Fig. 9 is a schematic view of a second perspective structure of the leveling mechanism of the present application.
Fig. 10 is a schematic perspective view of a vibration mechanism according to the present application.
Fig. 11 is a schematic perspective view of a reinforcement mechanism according to the present application.
In the figure: 1. the device comprises a base, 2, a sliding rail, 3, a sliding template, 4, a hydraulic component, 5, a material control mechanism, 51, a supporting plate, 52, a storage bin, 53, a material control bin, 54, a first blanking plate, 55, a second blanking plate, 56, a push rod, 6, a surrounding and blocking mechanism, 61, a supporting block, 62, a surrounding and blocking plate, 63, a rotating pin, 64, a limiting block, 7, a pushing mechanism, 71, a first supporting frame, 72, a motor, 73, a screw rod, 74, a pushing frame, 75, a pushing piece, 8, a pushing mechanism, 81, a second supporting frame, 82, a cylinder, 83, a pushing plate, 9, a vibration mechanism, 91, a stirring plate, 92, a supporting seat, 93, a vibration piece, 94, a torsion spring, 95, a pulling piece, 10, a reinforcing mechanism, 101, a pushing plate, 102, a reinforcing frame, 103, a linear spring, 104 and a reinforcing plate.
Detailed Description
Although the application may be described with respect to a particular application or industry, those skilled in the art will recognize the broader applicability of the application. Those of ordinary skill in the art will recognize such things as: terms such as above, below, upward, downward, etc. are used for describing the drawings, and do not represent limitations upon the scope of the present application defined by the appended claims. Such as: any numerical designation of the first or second, etc. is merely exemplary and is not intended to limit the scope of the present application in any way.
Example 1
The utility model provides a dried tofu manufacturing is with automatic control dried tofu hydraulic press, as shown in fig. 1 and 2, including base 1, slide rail 2, slip template 3, hydraulic assembly 4, accuse material mechanism 5 and enclose fender mechanism 6, the lower part left and right sides of base 1 all is connected with slide rail 2, sliding connection has slip template 3 between the slide rail 2, the upper portion of base 1 is connected with hydraulic assembly 4, hydraulic assembly 4 comprises pneumatic cylinder and clamp plate, the upper portion of base 1 is connected with the pneumatic cylinder, the lower part of the telescopic link of pneumatic cylinder is connected with the clamp plate, be equipped with the accuse material mechanism 5 that is used for controlling every layer of dried tofu quantity on the base 1, be equipped with on the slip template 3 and be used for enclosing fender support dried tofu and can not destroy fender mechanism 6 of dried tofu shape.
As shown in fig. 1, fig. 3 and fig. 4, the material control mechanism 5 includes a supporting plate 51, a storage bin 52, a material control bin 53, a first blanking plate 54, a second blanking plate 55 and a push rod 56, the right front side of the lower portion of the base 1 is connected with the supporting plate 51, the left upper portion of the supporting plate 51 is connected with the storage bin 52, the lower portion of the storage bin 52 is connected with the material control bin 53, the storage bin 52 is communicated with the material control bin 53, the upper portion of the material control bin 53 is slidably connected with the first blanking plate 54, the first blanking plate 54 penetrates through the storage bin 52 from front to back, the rear side of the first blanking plate 54 is provided with a first blanking port, the lower portion of the material control bin 53 is slidably connected with a second blanking plate 55, the second blanking plate 55 penetrates through the storage bin 52 from front to back, the front side of the second blanking plate 55 is provided with two push rods 56, the two push rods 56 are distributed symmetrically left and right, and the material control bin 53 is controlled by the first blanking plate 54 and the second blanking plate 55, so that the quantity of dried bean curd 53 is controlled by each time.
As shown in fig. 1, fig. 5 and fig. 6, still including enclosing the fender mechanism 6, enclose the fender mechanism 6 including supporting shoe 61, enclose baffle 62, rotating pin 63 and stopper 64, the front portion left and right sides of slip form 3 all is connected with supporting shoe 61, the rear portion left and right sides of slip form 3 all is connected with supporting shoe 61, both sides all are connected with supporting shoe 61 around the left portion of slip form 3 around the right portion, all be connected with enclosing baffle 62 between two supporting shoes 61 that are close, enclosing baffle 62 is food level stainless steel material, four enclosing baffle 62 are closed to form a cuboid, the left side rotation of the front upper portion of enclosing baffle 62 of front side is connected with rotating pin 63, the right side rotation of the rear upper portion of enclosing baffle 62 of rear side is connected with rotating pin 63, the front side rotation of the front upper portion of enclosing baffle 62 of left side is connected with rotating pin 63, the front upper portion of right side of enclosing baffle 62 is connected with rotating pin 63, the front upper portion of enclosing baffle 62 of front side is connected with stopper 64 through the left side of upper baffle 62 that is destroyed, the front side of enclosing baffle 62 is connected with the upper side of upper baffle 64 through the upper limit stopper of the upper side of the front side of the upper limit block, the front side of enclosing baffle 62 is connected with the upper side of the upper limit block 64 through the upper side of the upper limit block of the upper side of the front side of the limit block 62 is connected with the upper side of the limit cap 62.
When the automatic control dried bean curd hydraulic machine for producing dried bean curd is used for producing dried bean curd, a collecting box for collecting impurities falling from the upper part is firstly arranged at the lower part of a base 1, a layer of gauze is paved on a sliding template 3, then the upper part of a storage bin 52 is opened, and the dried bean curd is manually injected into the storage bin 52, at the moment, because a first blanking port on a first blanking plate 54 is positioned in the storage bin 53, a second blanking port of a second blanking plate 55 is positioned outside the storage bin 53, the dried bean curd can enter the storage bin 53 through the storage bin 52 and fall onto the second blanking plate 55 through the first blanking port, at the moment, the second blanking plate 55 can prevent the dried bean curd from falling from the storage bin 53, and after the dried bean curd is fully filled in the storage bin 53 and the storage bin 52, the injection of the dried bean curd into the storage bin 52 is stopped, then the sliding template 3 is moved forward by hand, so that the sliding template 3 drives the supporting block 61, the surrounding baffle plate 62, the rotating pin 63 and the limiting block 64 to move forward, finally, the sliding template 3 is required to be positioned right below the control bin 53, then the push rod 56 is moved backward by hand quickly, so that the push rod 56 drives the first blanking plate 54 and the second blanking plate 55 to move backward quickly, at the moment, the first blanking port on the first blanking plate 54 is required to be positioned outside the control bin 53, the second blanking port on the second blanking plate 55 is positioned inside the control bin 53, at the moment, the bean curd between the first blanking plate 54 and the second blanking plate 55 falls down on the sliding template 3 through the second blanking port, and the bean curd is caught by gauze, at the same time, the first blanking plate 54 blocks the bean curd from above, the bean curd falling on the sliding template 3 is a fixed quantity, because the bean curd has large water content and certain fluidity, the bean curd falling on the gauze of the sliding template 3 can be automatically paved, after the bean curd between the first blanking plate 54 and the second blanking plate 55 is poured, people can manually wrap the bean curd with the corners of the gauze paved before, then the next layer of gauze is paved on the bean curd, then the bean curd is ready to be injected, people need to quickly move and reset the push rod 56 forward by hands, so that the push rod 56 drives the first blanking plate 54 and the second blanking plate 55 to quickly move and reset, the first blanking port is positioned in the control bin 53 again, the second blanking port is positioned outside the control bin 53 again, because the space between the first blanking plate 54 and the second blanking plate 55 is in a cavity state, the bean curd in the storage bin 52 can move downwards through the first blanking port, the beancurd is refilled between the first blanking plate 54 and the second blanking plate 55, and the second blanking plate 55 can block the beancurd from falling again, then the second layer of beancurd can be paved continuously by referring to the steps, at the moment, the beancurd can be continuously piled up upwards because the baffle plates 62 can support the periphery of the beancurd, the beancurd can not rust after being repeatedly used because the baffle plates 62 are made of food grade stainless steel materials, the beancurd of the second layer is paved by using the corners of the gauze of the second layer to wrap the beancurd of the second layer, and the beancurd of the subsequent layers can be paved continuously by referring to the steps, after the beancurd of the uppermost layer is paved, all the gauze paved here has the functions of preventing the beancurd from flowing out from the sliding template 3 or the baffle plates 62, and water in the beancurd can be permeated through the gauze, so that the water can be extruded out subsequently, then the sliding template 3 is moved backwards and reset by hand, so that the sliding template 3 drives the supporting blocks 61, the surrounding baffles 62, the rotating pins 63 and the limiting blocks 64 to move backwards and reset, the hydraulic cylinders in the hydraulic assembly 4 are started, the pressing plates move downwards to be in contact with the uppermost gauze under the driving of the telescopic rods of the hydraulic cylinders, then the pressing plates can be inserted into square neutral gears between the surrounding baffles 62 along with the continuous downward movement of the pressing plates, and the beancurd is extruded downwards, so that water in the beancurd is extruded out, the water extruded out of the beancurd can fall into the collecting box, at the moment, the dried beancurd is pressed, then the pressing plates are driven by the telescopic rods of the hydraulic cylinders to move upwards and reset and push away from the surrounding baffles 62, the hydraulic cylinders are closed, then people can move the sliding template 3 forwards again by hand, so that the sliding template 3 drives the supporting blocks 61, the surrounding baffles 62, the rotating pins 63 and the limiting blocks 64 to move forwards, then the rotating pins 63 are rotated by hand to separate the rotating pins 63 from the similar limiting blocks 64, so that the surrounding baffle plates 62 are released, people can rotate the surrounding baffle plates 62 downwards by hand to enable the surrounding baffle plates 62 to be respectively rotated and opened in different directions, the manufactured dried beancurd is exposed at the moment, because the surrounding baffle plates 62 are rotated downwards and opened, the shape of the dried beancurd is not easy to break when the dried beancurd is opened, people can take the dried beancurd layer by layer and take gauze away, then clean the surrounding baffle plates 62 and the sliding template 3, reversely rotate and reset the surrounding baffle plates 62, reversely rotate and reset the rotating pins 63 by hand to enable the rotating pins 63 to be limited by the limiting blocks 64 again, and then the sliding template 3 can be moved backwards and reset by hand, so that the moving template drives the supporting blocks 61, the surrounding baffle plates 62, the rotating pins 63 and the limiting blocks 64 to be moved backwards and reset, clean up storage silo 52, accuse feed bin 53, first blanking board 54 and second blanking board 55 again can, through first blanking board 54 and the blanking of second blanking board 55 control, make the quantity of the dried bean curd that falls in the accuse feed bin 53 at every turn be fixed, thereby make things convenient for people to control the quantity that is used for making the dried bean curd of every layer, support the dried bean curd through surrounding plate 62, thereby can make the dried bean curd with the dried bean curd suppression, open surrounding plate 62 through rotating again, make surrounding plate 62 be difficult for destroying the shape of dried bean curd, and also wash surrounding plate 62 easily, in this way, just make things convenient for people to make the dried bean curd, thereby make things convenient for people to use.
Example 2
On the basis of embodiment 1, as shown in fig. 1 and 7, the device further comprises a pushing mechanism 7, the pushing mechanism 7 comprises a first supporting frame 71, a motor 72, a screw rod 73, a pushing frame 74 and a pushing piece 75, the pushing piece 75 for pushing up gauze and bean curd is slidably connected to the inside of the sliding template 3, the pushing frame 74 is connected to the lower portion of the pushing piece 75, the first supporting frame 71 is connected to the front portion of the sliding template 3, the motor 72 is connected to the first supporting frame 71, the screw rod 73 is connected to the lower portion of an output shaft of the motor 72, and the screw rod 73 is in threaded connection with the pushing frame 74.
Because the surrounding baffle plate 62 has certain degree of depth, so in order to make things convenient for people to wrap up the beancurd with the corner of gauze, can be through ejecting 75 with gauze and beancurd upwards, then when placing the gauze of bottom, need spread the gauze on ejecting 75 upper portion, then can start motor 72, the output shaft of motor 72 drives lead screw 73 and rotates, thereby make lead screw 73 drive ejecting frame 74 upwards move, then ejecting frame 74 just drives ejecting 75 and upwards move, so ejecting 75 just can be with gauze and beancurd upwards, the step that consults earlier just can be with the beancurd of ejecting, thereby make people can be more convenient with beancurd package up through the corner of gauze, then spread next layer of gauze, in order to pour into the beancurd of next layer, need make the output shaft of motor 72 drive lead screw 73 reverse rotation, thereby make ejecting frame 74 drive ejecting 75 a bit down, the step that earlier mentioned is last to pour into beancurd, then can drive ejecting frame 73 through the output shaft of motor 72 again, thereby can drive the step that the beancurd of ejecting 75 and the beancurd of making gradually, thereby make people can be through the beancurd with the step 75 upwards move, and the beancurd is convenient when making up through the gauze, thereby the multilayer is convenient for people to use.
As shown in fig. 1, 8 and 9, the soybean milk machine further comprises a leveling mechanism 8, the leveling mechanism 8 comprises a second supporting frame 81, an air cylinder 82 and a leveling plate 83, the right part of the supporting plate 51 is connected with the second supporting frame 81, the second supporting frame 81 is connected with the air cylinder 82, the air cylinder 82 penetrates through the supporting frame leftwards, and the left part of a telescopic rod of the air cylinder 82 is connected with the leveling plate 83 for leveling the upper surface of the soybean milk.
After the beancurd is injected on the gauze, the upper part of the beancurd can be pushed to be flat through the pushing plate 83, after the beancurd is injected by people, the sliding template 3 is positioned at the front side, the sliding template 3 is just right left of the pushing piece 83, the upper surface of the beancurd is basically flush with the upper side of the surrounding baffle plate 62 due to the lifting of the pushing piece 75, the air cylinder 82 can be started, the pushing plate 83 can move leftwards under the driving of the telescopic rod of the air cylinder 82, the pushing plate 83 can move leftwards against the upper side of the surrounding baffle plate 62 at the moment, so that the upper surface of the beancurd is pushed to be flat, then the telescopic rod of the air cylinder 82 drives the pushing plate 83 to move rightwards to reset, the air cylinder 82 is closed, the beancurd is wrapped by the corners of the gauze, and the following beancurd can be pushed to be flat in the same way, the upper part of the beancurd is pushed to be flat through the pushing plate 83, the upper part of the beancurd is more flat, and the beancurd is more attractive, and the beancurd is convenient to use by people.
As shown in fig. 1 and 10, still including vibration mechanism 9, vibration mechanism 9 is including stirring board 91, supporting seat 92, vibrations 93, torsional spring 94 and plectrum 95, the upper portion of pushing away flat 83 is connected with stirring board 91, the left and right sides of accuse feed bin 53 all is connected with supporting seat 92, all rotate on the supporting seat 92 and be connected with vibrations 93, vibrations 93 all with accuse feed bin 53 extrusion fit, all around being equipped with torsional spring 94 between the lower part front and back both sides of vibrations 93 and the similar supporting seat 92, torsional spring 94 all winds on supporting seat 92, the lower part of vibrations all rotates and is connected with plectrum 95, plectrum 95 all with the similar vibrations 93 extrusion fit, through stirring board 91 removal extrusion plectrum 95, make plectrum 95 can drive corresponding vibrations 93 rotation, thereby make vibrations 93 to beat accuse feed bin 53 once under the effect of torsional spring 94.
When the push plate 83 moves leftwards, the push plate 83 drives the toggle plate 91 to move leftwards, so that the toggle plate 91 is firstly contacted with the right toggle piece 95, under the pushing of the toggle plate 91, the right toggle piece 95 has a clockwise rotating trend, but because the right toggle piece 95 is limited by the right vibrating piece 93, the right toggle piece 95 can only press the right vibrating piece 93, so that the right vibrating piece 93 rotates clockwise along with the right vibrating piece 93, at the moment, the right torsion spring 94 is twisted, after the toggle plate 91 moves leftwards until the toggle plate 91 is not contacted with the right toggle piece 95, the right toggle piece 95 and the vibrating piece 93 are released, under the action of the right torsion spring 94, the right vibrating piece 93 and the right toggle piece 95 rotate anticlockwise and reset, meanwhile, the right vibrating piece 93 can perform one knocking on the control bin 53, then the toggle plate 91 continues to move leftwards, when the toggle plate 91 moves to be contacted with the left toggle piece 95, under the drive of the toggle plate 91, the left toggle plate 95 rotates clockwise, so that the toggle plate 91 can continuously move leftwards to cross the left toggle plate 95, after the toggle plate 91 crosses the left toggle plate 95, the left toggle plate 95 rotates anticlockwise under the action of self gravity to reset, when the toggle plate 91 moves rightwards to reset, the toggle plate 91 contacts with the left toggle plate 95 first, the left toggle plate 95 has a anticlockwise rotation trend under the push of the toggle plate 91, but because the left toggle plate 95 is limited by the left vibration piece 93, the left toggle plate 95 only can press the left vibration piece 93, so that the left vibration piece 93 rotates anticlockwise together, at the moment, the left torsion spring 94 twists, after the toggle plate 91 moves rightwards to be out of contact with the left toggle plate 95, the left toggle plate 95 and the vibration piece 93 are released, under the effect of left torsional spring 94, left vibrations piece 93 and left plectrum 95 clockwise turn reset, simultaneously left vibrations piece 93 can strike control feed bin 53 once, then stir board 91 and continue to move right, when stir board 91 moves to the plectrum 95 contact on the right side, under the drive of stir board 91, the plectrum 95 on the right side anticlockwise rotates, thereby stir board 91 can continue to move right and cross right side plectrum 95 and reset, after stir board 91 passes right side plectrum 95, right side plectrum 95 can rotate the reset clockwise under self gravity effect, remove extrusion plectrum 95 through stir board 91, make plectrum 95 can drive corresponding vibrations piece 93 and rotate, thereby make vibrations piece 93 can strike control feed bin 53 once under the effect of torsional spring 94, then the bean curd that adheres to in the control feed bin 53 just can fall, the raw materials just can be fully utilized, thereby make things convenient for people to use.
As shown in fig. 1 and 11, the device further comprises a reinforcing mechanism 10, the reinforcing mechanism 10 comprises a lower push plate 101, reinforcing frames 102, linear springs 103 and reinforcing plates 104, the lower push plate 101 is connected to the left side and the right side of the upper portion of the pressing plate of the hydraulic component 4, the lower push plate 101 is connected with the base 1 in a sliding mode, the reinforcing frames 102 are connected to the left side and the right side of the rear portion of the base 1 in a sliding mode, the reinforcing frames 102 are in press fit with the similar lower push plate 101, reinforcing plates 104 for clamping and reinforcing the surrounding plates 62 are connected to one sides of the reinforcing frames 102, the reinforcing plates 104 are in press fit with the similar surrounding plates 62, two linear springs 103 are wound between one sides of the reinforcing frames 102 away from each other and the base 1, and the linear springs 103 are wound on the corresponding reinforcing frames 102.
When the pressing plate of the hydraulic assembly 4 moves downwards, the pressing plate drives the lower pushing plate 101 to move downwards, so that under the extrusion of the lower pushing plate 101, the reinforcing frame 102 moves to one side in the mutually approaching direction, so that the reinforcing frame 102 drives the reinforcing plate 104 to move to one side in the mutually approaching direction, at the moment, the linear springs 103 compress, the reinforcing plate 104 can clamp the surrounding baffle plate 62 to reinforce the surrounding baffle plate 62, deformation and scattering of the surrounding baffle plate 62 during pressing of dried tofu are avoided, when the pressing plate moves upwards to reset, the lower pushing plate 101 also moves upwards to reset, the reinforcing frame 102 is released, under the action of the linear springs 103, the reinforcing frame 102 moves to one side in the mutually separating direction to reset, so that the corresponding reinforcing plate 104 moves along with the reset, at the moment, the surrounding baffle plate 62 is loosened, the reinforcing plate 102 is extruded by the lower pushing plate 101, so that the reinforcing plate 104 can reinforce the surrounding baffle plate 62, deformation and scattering of the surrounding baffle plate 62 are avoided, and the use is facilitated for people.
The foregoing has outlined rather broadly the more detailed description of the application in order that the detailed description of the principles and embodiments of the application may be implemented in conjunction with the detailed description of the application that follows, the examples being merely intended to facilitate an understanding of the method of the application and its core concepts; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in accordance with the ideas of the present application, the present description should not be construed as limiting the present application in view of the above.
Claims (8)
1. The utility model provides a dried tofu manufacturing is with automatic control dried tofu hydraulic press, including base (1), slide rail (2), slip template (3) and hydraulic pressure subassembly (4), the lower part left and right sides of base (1) all is connected with slide rail (2), slip type is connected with slip template (3) between slide rail (2), the upper portion of base (1) is connected with hydraulic pressure subassembly (4), hydraulic pressure subassembly (4) are by pneumatic cylinder and clamp plate constitution, the upper portion of base (1) is connected with the pneumatic cylinder, the lower part of the telescopic link of pneumatic cylinder is connected with the clamp plate, characterized by: the automatic feeding device also comprises a material control mechanism (5) and a surrounding blocking mechanism (6), wherein the material control mechanism (5) is arranged on the base (1), and the surrounding blocking mechanism (6) is arranged on the sliding template (3).
2. The automatic control dried tofu hydraulic press for producing dried tofu according to claim 1, characterized in that the material control mechanism (5) comprises a supporting plate (51), a storage bin (52), a material control bin (53), a first blanking plate (54), a second blanking plate (55) and a push rod (56), wherein the supporting plate (51) is connected to the right front side of the lower part of the base (1), the storage bin (52) is connected to the left upper part of the supporting plate (51), the material control bin (53) is connected to the lower part of the storage bin (52), the storage bin (52) is communicated with the material control bin (53), the upper part of the material control bin (53) is connected with a first blanking plate (54) in a sliding manner, the first blanking plate (54) penetrates through the storage bin (52) from front to back, the first blanking plate (54) is provided with a first blanking port, the second blanking plate (55) is connected to the lower part of the second blanking plate (55) in a sliding manner, the front side of the second blanking plate (55) penetrates the storage bin (52) from front to back, the second blanking plate (54) is provided with a second blanking port, and the first blanking plate (54) and the two push rods (56) are symmetrically distributed between the two right sides.
3. The automatic control dried bean curd hydraulic press according to claim 2, further comprising a surrounding mechanism (6), wherein the surrounding mechanism (6) comprises supporting blocks (61), surrounding plates (62), rotating pins (63) and limiting blocks (64), the left and right sides of the front part of the sliding template (3) are respectively connected with the supporting blocks (61), the left and right sides of the rear part of the sliding template (3) are respectively connected with the supporting blocks (61), the front and rear sides of the right part of the sliding template (3) are respectively connected with the supporting blocks (61), surrounding plates (62) are respectively connected between two adjacent supporting blocks (61) in a rotating manner, four surrounding plates (62) are closed to form a cuboid, the left side of the front upper part of the surrounding plate (62) in the front side is rotationally connected with the rotating pins (63), the right side of the rear upper part of the surrounding plate (62) in the rear side is rotationally connected with the rotating pins (63), the left side of the left upper part of the surrounding plate (62) in the rear side is rotationally connected with the upper part of the limiting blocks (64), the front upper part of the surrounding plate (62) in the rear side is rotationally connected with the front upper part of the surrounding plate (62) in the rear side of the surrounding plate (62), the front side of the upper left part of the surrounding baffle plate (62) on the left side is connected with a limiting block (64), the rear side of the upper right part of the surrounding baffle plate (62) on the right side is connected with a limiting block (64), and the limiting blocks (64) are in clamping fit with similar rotating pins (63).
4. A self-control dried bean curd hydraulic machine for producing dried bean curd according to claim 3, further comprising a push-out mechanism (7) for pushing up gauze and dried bean curd, wherein the push-out mechanism (7) comprises a first support frame (71), a motor (72), a screw rod (73), a push-out frame (74) and a push-out piece (75), the push-out piece (75) is slidably connected to the inside of the sliding template (3), the push-out frame (74) is connected to the lower part of the push-out piece (75), the first support frame (71) is connected to the front part of the sliding template (3), the motor (72) is connected to the first support frame (71), the screw rod (73) is connected to the lower part of an output shaft of the motor (72), and the screw rod (73) is in threaded connection with the push-out frame (74).
5. The automatic control dried bean curd hydraulic machine for producing dried bean curd according to claim 4, further comprising a leveling mechanism (8) for leveling the surface of the dried bean curd, wherein the leveling mechanism (8) comprises a second supporting frame (81), an air cylinder (82) and a leveling plate (83), the right part of the supporting plate (51) is connected with the second supporting frame (81), the second supporting frame (81) is connected with the air cylinder (82), the air cylinder (82) penetrates through the supporting frame leftwards, and the left part of a telescopic rod of the air cylinder (82) is connected with a leveling plate (83).
6. The automatic control dried tofu hydraulic press for manufacturing dried tofu according to claim 5, further comprising a vibration mechanism (9) for automatically knocking the control bin (53), wherein the vibration mechanism (9) comprises a stirring plate (91), a supporting seat (92), a vibration piece (93), a torsion spring (94) and a stirring piece (95), the stirring plate (91) is connected to the upper portion of the pushing plate (83), the supporting seats (92) are connected to the left side and the right side of the control bin (53), the vibration piece (93) is connected to the supporting seat (92) in a rotating mode, the vibration piece (93) is in extrusion fit with the control bin (53), a torsion spring (94) is arranged between the front side and the rear side of the lower portion of the vibration piece (93) and the adjacent supporting seat (92), the torsion spring (94) is wound on the supporting seat (92), the stirring piece (95) is connected to the lower portion of the vibration piece in a rotating mode, and the stirring piece (95) is in extrusion fit with the adjacent vibration piece (93).
7. The automatic control dried bean curd hydraulic press for manufacturing dried bean curd according to claim 6, further comprising a reinforcing mechanism (10) for reinforcing the surrounding baffle plate (62), wherein the reinforcing mechanism (10) comprises a lower push plate (101), a reinforcing frame (102), linear springs (103) and reinforcing plates (104), the lower push plate (101) is connected to the left side and the right side of the upper portion of the pressing plate of the hydraulic assembly (4), the lower push plate (101) is connected with the base (1) in a sliding mode, the reinforcing frame (102) is connected to the left side and the right side of the rear portion of the base (1) in a sliding mode, the reinforcing frame (102) is in press fit with the similar lower push plate (101), reinforcing plates (104) are connected to one side, close to each other, of the reinforcing plates (104) is in press fit with the similar surrounding baffle plate (62), two linear springs (103) are arranged between one side, far away from each other, of the reinforcing frame (102) and the base (1), and the linear springs (103) are wound on the corresponding reinforcing frames (102).
8. An automatic control hydraulic machine for making dried tofu according to claim 7, characterized in that the surrounding baffles (62) are all made of food grade stainless steel.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202310847820.3A CN116691049A (en) | 2023-07-12 | 2023-07-12 | Automatic control dried tofu hydraulic press for dried tofu production |
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Application Number | Priority Date | Filing Date | Title |
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CN202310847820.3A CN116691049A (en) | 2023-07-12 | 2023-07-12 | Automatic control dried tofu hydraulic press for dried tofu production |
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CN116691049A true CN116691049A (en) | 2023-09-05 |
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CN202310847820.3A Withdrawn CN116691049A (en) | 2023-07-12 | 2023-07-12 | Automatic control dried tofu hydraulic press for dried tofu production |
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2023
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Application publication date: 20230905 |