Bean curd forming, squeezing and dewatering equipment

By setting up transportation, cooling, pressing and unloading devices, the problems of inconvenient unloading, slow cooling and high food safety risks in tofu production are solved. Automatic unloading, cooling and cloth-free pressing are realized, which improves the usability of the equipment and food safety.

CN223452799UActive Publication Date: 2025-10-21SHANDONG DAOFANG BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422546345.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-10-21
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

Existing tofu production equipment is not convenient for feeding, the machines are not easy to use, and the lack of cooling equipment causes the tofu to cool down slowly, resulting in a high risk of spoilage. In addition, pathogens and dirt are easily mixed in during the pressing process, posing a high food safety risk.

Method used

A conveying device, a positioning and cooling device, a pressing device, a unloading device and a slitting device are set up to realize automatic unloading, cooling and pressing without cloth wrapping, thereby improving the usability of the machine and reducing food safety risks.

Benefits of technology

It realizes automatic feeding and cooling of tofu, reduces the risk of spoilage, lowers food safety risks, avoids the mixing of pathogens and dirt, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of bean curd production, in particular to bean curd forming, squeezing and dewatering equipment, which automatically discharges bean curd by arranging a conveying device and a discharging device, improves the usability of the machine, cools the bean curd by arranging a positioning and cooling device, reduces the risk of bean curd decay, and improves the production efficiency. By arranging the conveying device and the pressing device, the tofu is subjected to cloth-wrapping-free pressing forming, the possibility that germs and dirt are mixed into the tofu in the production process is reduced, and the food safety risk is reduced; comprising a body; the conveying device, the positioning and cooling device, the pressing device, the discharging device and the slitting device are all mounted on the machine body.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of bean curd production, in particular to a bean curd forming, squeezing and dewatering equipment. BACKGROUND

[0002] Bean curd is a common bean product, which needs to be pressed into shape in the production process.

[0003] For example, the utility model patent represented by the publication number CN208403076U bean curd pressing machine, its main structure includes pressure device, feeding plate and mould, the pressure device presses bean curd, the feeding plate automatically feeds bean curd, and the mould determines the shape of bean curd and contains bean flower.

[0004] However, the existing technical equipment still has the following problems when in use: it is inconvenient to feed the machine, the machine has poor ease of use, and lacks cooling equipment, the bean curd cools slowly, the risk of spoilage is large, and the existing pressing method needs to use a large amount of cloth, which can easily mix bacteria and dirt into the bean curd in the production process, and the food safety risk is high. UTILITY MODEL CONTENTS

[0005] To solve the above technical problems, the utility model provides a bean curd forming, squeezing and dewatering equipment, which automatically feeds bean curd by setting a conveying device and a feeding device, improves the ease of use of the machine, cools the bean curd by setting a positioning cooling device, reduces the risk of spoilage of the bean curd, and presses and shapes the bean curd without cloth by setting a conveying device and a pressing device, reduces the possibility of mixing bacteria and dirt into the bean curd in the production process, and reduces the food safety risk.

[0006] The utility model discloses a kind of bean curd forming, squeezing and dewatering equipment, including body;Further including conveying device, positioning cooling device, pressing device, feeding device and slitting device, conveying device, positioning cooling device, pressing device, feeding device and slitting device are all installed on body;Body provides support and transports finished product bean curd, conveying device transports bean flower and contains bean curd, positioning cooling device positions conveying device and cools bean curd, pressing device presses and dewatering bean curd, feeding device feeds finished product bean curd, and slitting device automatically slits finished product bean curd.

[0007] Preferably, the body includes a plurality of support seats, a bottom plate, a bracket one, two brackets two and a conveyor belt, the bottom plate is installed at the top end of the plurality of support seats, the bracket one and the two brackets two are both installed at the top end of the bottom plate, and the bracket one has a through hole one and a plurality of through holes two at the top end, and the conveyor belt is installed on the two brackets two;Provide support, and the conveyor belt transports finished product bean curd.

[0008] Preferably, the conveying device comprises two rails, a support three, two groups of support four, two groups of rollers, a rotating shaft, a gear one, a speed reducer, a gear two, a motor, a plurality of expansion joints, a support five and a mold, both rails are installed at the top of the bottom plate, both groups of support four are installed at the bottom of the support three, both groups of rollers are rotatably installed on both groups of support four respectively, and both groups of rollers are in rolling connection with the two rails respectively, the rotating shaft is installed on the front group of rollers through the front group of support four, the gear one is installed on the rotating shaft, the speed reducer is fixedly installed at the bottom of the support three, the gear two is rotatably installed on the side end wall of the speed reducer, and the gear two is in gear meshing with the gear one, the motor is fixedly installed on the side end wall of the speed reducer, and the motor provides power to the gear two through the speed reducer, the plurality of expansion joints are all installed at the top of the support three, the support five is installed at the top of the plurality of expansion joints, the expansion joint left end is provided with a material guiding block matched with the arc of the conveying belt, the support five top is provided with a plurality of insertion blocks, the mold bottom is provided with a plurality of insertion grooves, the support five and the mold are separably connected through the insertion blocks and the insertion grooves, and the insertion blocks and the insertion grooves are located at the front and back ends of the support five and the mold, the mold is internally provided with a circulating water channel, and both left and right ends of the mold are provided with sliding rails one; the motor provides power, which is transmitted through the speed reducer, the gear two, the gear one and the rotating shaft, to drive the front group of rollers to rotate, the rotation of the rollers drives the support three, the expansion joint, the support five and the mold to move together, and the mold is away from the pressing position during feeding, facilitating feeding, the expansion joint provides power to drive the support five to move up and down, and when tofu pressing is completed, the downward movement of the support five facilitates the unloading of tofu, and the material guiding block of the support five prevents the tofu from breaking due to gravity during the movement to the surface of the conveying belt.

[0009] Preferably, the positioning and cooling device comprises a water tank, a circulating pump, two circulating pipes, two self-sealing valves and a support six, the water tank is installed at the top of the bottom plate, the circulating pump is installed at the top of the water tank, both circulating pipes are installed at the front end of the circulating pump, both circulating pipes are provided with a conical rubber joint at the front end respectively, both self-sealing valves are installed at the entrances and exits of the circulating water channel of the mold respectively, both circulating pipes are separably connected with both self-sealing valves through the two conical rubber joints respectively, the support six is installed at the front end of the water tank, the support six is internally provided with sliding rails two, and the sliding rails two and the sliding rails one of the mold are in sliding connection; the support six guides the mold, the circulating pipe positions the mold, the conical rubber joint facilitates the connection or separation of the circulating pipe and the self-sealing valve, when the circulating pipe is connected with the self-sealing valve, the circulating pump provides power to extract the cold water in the water tank and circulate it into the circulating water channel of the mold, so as to reduce the temperature of the mold and cool the tofu during tofu pressing.

[0010] Preferably, the pressing device comprises a cylinder one, a plurality of guide posts one and a pressing plate, the cylinder one is installed at the through hole one of the support one, the plurality of guide posts one are slidably installed in the plurality of through holes two of the support one respectively, and the pressing plate is installed at the bottom ends of the cylinder one and the plurality of guide posts one; the cylinder one provides power to drive the pressing plate to move up and down, and the pressing plate moves downward to press and dehydrate the bean curd.

[0011] Preferably, the discharging device comprises a support seven, a cylinder two, two sleeves, two guide posts two and a pushing plate, the support seven is installed at the top end of the bottom plate, two through holes three are formed in the support seven, the cylinder two is installed at the top end of the support seven, the two sleeves are installed at the two through holes three respectively, the two guide posts two are slidably installed in the two through holes three and the two sleeves respectively, and the pushing plate is installed at the left ends of the cylinder two and the two guide posts two; the cylinder two provides power to drive the pushing plate to move left and right, and the pushing plate moves left to push the bean curd to discharge.

[0012] Preferably, the cutting device comprises a support eight, a plurality of cutter one, a support nine, a cylinder three, two guide posts three and a cutter three, the support eight and the support nine are both installed on the two supports two, the plurality of cutter one are installed on the support eight at intervals, two through holes four are formed in the support nine, the cylinder three is fixedly installed at the top end of the support nine, the two guide posts three are slidably installed in the two through holes four respectively, and the cutter three is installed at the bottom ends of the cylinder three and the two guide posts three; the cutter one cuts the finished product bean curd conveyed by the conveying belt for the first time, so that the bean curd becomes strip-shaped, the cylinder three provides power to drive the cutter three to move up and down, the cutter three moves downward to cut the finished product bean curd, and the cutter three reciprocatingly moves up and down to cut the finished product bean curd into uniform blocks.

[0013] Compared with the prior art, the bean curd production device has the beneficial effects that: the finished product bean curd can be automatically discharged, the labor intensity of workers is small; the bean curd can be cooled during pressing, the risk of bean curd spoilage is small; and cloth is not used in the pressing process, so the food safety risk is low. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 is the axonometric structure schematic diagram of the utility model;

[0015] Figure 2 is the axonometric structure schematic diagram of the fuselage;

[0016] Figure 3 is the axonometric structure schematic diagram of the conveying device;

[0017] Figure 4 is the axonometric structure schematic diagram of the positioning cooling device and the pressing device;

[0018] Figure 5 is the axonometric structure schematic diagram of the discharging device;

[0019] Figure 6 is the axonometric structure schematic diagram of the cutting device.

[0020] Markings in the attached figure: 01, fuselage; 11, support base; 12, bottom plate; 13, bracket 1; 14, bracket 2; 15, conveyor belt; 02, conveying device; 21, roller; 22, bracket 3; 23, bracket 4; 24, roller; 25, shaft; 26, gear 1; 27, reducer; 28, gear 2; 29, motor; 71, telescopic joint; 72, bracket 5; 73, mold; 03, positioning cooling device; 31, water Box; 32. Circulation pump; 33. Circulation pipe; 34. Self-sealing valve; 35. Bracket six; 04. Pressing device; 41. Cylinder one; 42. Guide pillar one; 43. Pressing plate; 05. Unloading device; 51. Bracket seven; 52. Cylinder two; 53. Casing; 54. Guide pillar two; 55. Push plate; 06. Cutting device; 61. Bracket eight; 62. Cutter one; 63. Bracket nine; 64. Cylinder three; 65. Guide pillar three; 66. Cutter two. DETAILED DESCRIPTION

[0021] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.

[0022] Example 1

[0023] like Figure 1 As shown, it includes a body 01; it also includes a conveying device 02, a positioning and cooling device 03, a pressing device 04, a feeding device 05 and a cutting device 06, and the conveying device 02, the positioning and cooling device 03, the pressing device 04, the feeding device 05 and the cutting device 06 are all installed on the body 01; the body 01 provides support and transports the finished tofu, the conveying device 02 transports the tofu pudding and holds the tofu, the positioning and cooling device 03 positions the conveying device 02 and cools the tofu, the pressing device 04 presses and dehydrates the tofu, the feeding device 05 feeds the finished tofu, and the cutting device 06 automatically cuts the finished tofu;

[0024] like Figure 2 As shown, the fuselage 01 includes multiple support bases 11, a bottom plate 12, a bracket 13, two brackets 14 and a conveyor belt 15. The bottom plate 12 is installed on the top of the multiple support bases 11. The bracket 13 and the two brackets 14 are both installed on the top of the bottom plate 12. The top of the bracket 13 is provided with a through hole 1 and multiple through holes 2. The conveyor belt 15 is installed on the two brackets 14.

[0025] like Figure 3As shown, the conveying device 02 includes two tracks 21, a bracket three 22, two groups of bracket four 23, two groups of rollers 24, a rotating shaft 25, a gear one 26, a reducer 27, a gear two 28, a motor 29, a plurality of extension joints 71, a bracket five 72 and a mold 73, both of the tracks 21 are installed at the top of the bottom plate 12, both groups of bracket four 23 are installed at the bottom of the bracket three 22, both groups of rollers 24 are rotatably installed on both groups of bracket four 23 respectively, and both groups of rollers 24 are rolling matched with both tracks 21 respectively, the rotating shaft 25 is installed on the front group of rollers 24 through the front group of bracket four 23, the gear one 26 is installed on the rotating shaft 25, the reducer 27 is fixedly installed at the bottom of the bracket three 22, the gear two 28 is rotatably installed on the side end wall of the reducer 27, and the gear two 28 is in gear meshing with the gear one 26, the motor 29 is fixedly installed on the side end wall of the reducer 27, and the motor 29 provides power for the gear two 28 through the reducer 27, the plurality of extension joints 71 are all installed at the top of the bracket three 22, the bracket five 72 is installed at the top of the plurality of extension joints 71, the extension joint 71 is provided with a material guiding block matched with the arc of the conveying belt 15 at the left end, the bracket five 72 is provided with a plurality of plug blocks at the top, the mold 73 is provided with a plurality of plug grooves at the bottom, and the bracket five 72 and the mold 73 are separably connected through the plug blocks and the plug grooves, and the plug blocks and the plug grooves are located at the front and back ends of the bracket five 72 and the mold 73, the mold 73 is internally provided with a circulating water channel, and both left and right ends of the mold 73 are provided with sliding rails one;

[0026] As shown, Figure 4 The positioning and cooling device 03 includes a water tank 31, a circulating pump 32, two circulating pipes 33, two self-sealing valves 34 and a bracket six 35, the water tank 31 is installed at the top of the bottom plate 12, the circulating pump 32 is installed at the top of the water tank 31, both of the circulating pipes 33 are installed at the front end of the circulating pump 32, both of the circulating pipes 33 are provided with a tapered rubber joint at the front end respectively, both of the self-sealing valves 34 are installed at the entrance and exit of the circulating water channel of the mold 73, both of the circulating pipes 33 are separably connected with both of the self-sealing valves 34 through the two tapered rubber joints respectively, the bracket six 35 is installed at the front end of the water tank 31, and the bracket six 35 is internally provided with sliding rails two, which are sliding matched with the sliding rails one of the mold 73;

[0027] As shown, Figure 4 The pressing device 04 includes a cylinder one 41, a plurality of guide columns one 42 and a pressing plate 43, the cylinder one 41 is installed at the through hole one of the bracket one 13, the plurality of guide columns one 42 are slidingly installed in the plurality of through holes two of the bracket one 13 respectively, and the pressing plate 43 is installed at the bottom ends of the cylinder one 41 and the plurality of guide columns one 42;

[0028] As shown, Figure 5As shown, the blanking device 05 includes a support seven 51, a cylinder two 52, two sleeves 53, two guide columns two 54 and a push plate 55, the support seven 51 is installed at the top end of the bottom plate 12, two through holes three are arranged on the support seven 51, the cylinder two 52 is installed at the top end of the support seven 51, the two sleeves 53 are respectively installed at the two through holes three, the two guide columns two 54 are respectively and slidingly installed in the two through holes three and the two sleeves 53, and the push plate 55 is installed at the left end of the cylinder two 52 and the two guide columns two 54;

[0029] The splitting device 06 includes a support eight 61, a plurality of cutter one 62, a support nine 63, a cylinder three 64, two guide columns three 65 and a cutter three 66, the support eight 61 and the support nine 63 are both installed on the two supports two 14, the plurality of cutter one 62 is installed on the support eight 61 at intervals, two through holes four are arranged on the support nine 63, the cylinder three 64 is fixedly installed at the top end of the support nine 63, the two guide columns three 65 are respectively and slidingly installed in the two through holes four, and the cutter three 66 is installed at the bottom end of the cylinder three 64 and the two guide columns three 65.

[0030] Embodiment 2

[0031] On the basis of embodiment 1 further comprising:

[0032] As Figure 6 shown, the splitting device 06 includes a support eight 61, a plurality of cutter one 62, a support nine 63, a cylinder three 64, two guide columns three 65 and a cutter three 66, the support eight 61 and the support nine 63 are both installed on the two supports two 14, the plurality of cutter one 62 is installed on the support eight 61 at intervals, two through holes four are arranged on the support nine 63, the cylinder three 64 is fixedly installed at the top end of the support nine 63, the two guide columns three 65 are respectively and slidingly installed in the two through holes four, and the cutter three 66 is installed at the bottom end of the cylinder three 64 and the two guide columns three 65.

[0033] First open the motor 29, the motor 29 provides power, power transmission through the reducer 27, gear two 28, gear one 26 and the shaft 25, drive a set of rollers 24 in front of rotation, roller 24 rotation driven by bracket three 22, telescopic joint 71, bracket five 72 and die 73 movement, so that the die 73 away from the pressing position, then pour into the bean flower in the die 73, after opening the motor 29, the motor 29 provides power, power transmission through the reducer 27, gear two 28, gear one 26 and the shaft 25, drive a set of rollers 24 in front of rotation, roller 24 rotation driven by bracket three 22, telescopic joint 71, bracket five 72 and die 73 movement, so that the die 73 to the pressing position, then open the cylinder 41, the cylinder 41 provides power, drive the pressure plate 43 up and down, the pressure plate 43 down to press the tofu dehydration, while opening the circulating pump 32, the circulating pump 32 provides power, extraction of water tank 31 and its circulating injection of cold water in the die 73 circulation channel, so that the die 73 temperature decreases, in the process of pressing tofu cooling tofu, tofu pressing is completed, open the telescopic joint 71, telescopic joint 71 provides power, drive bracket five 72 down, facilitate the next step, then open the cylinder 52, the cylinder 52 provides power, drive the push plate 55 left and right movement, push plate 55 left to push the tofu for unloading, unloading when the guide block of bracket five 72 prevent tofu in the movement to the surface of the conveyor belt 15 in the process of gravity broken, then reset the cylinder 52 and bracket five 72, when the tofu movement to the cutter one 62, the cutter one 62 to the conveyor belt 15 transported by the first cutting of finished tofu, so that the tofu into a strip, when the tofu movement to the cylinder 64, the cylinder 64 provides power, drive the cutter three 66 up and down movement, cutter three 66 down to the finished tofu cutting, cutter three 66 up and down reciprocating movement of finished tofu cutting into uniform block.

[0034] As Figures 1 to 6As shown, the motor 29 provides power, the power is transmitted through the speed reducer 27, the gear two 28, the gear one 26 and the rotating shaft 25, drives a group of rollers 24 in front to rotate, the roller 24 rotation drives the bracket three 22, the flexible joint 71, the bracket five 72 and the mold 73 to move together, makes the mold 73 away from the pressing position, then pours the bean flower in the mold 73, then opens the motor 29, the motor 29 provides power, the power is transmitted through the speed reducer 27, the gear two 28, the gear one 26 and the rotating shaft 25, drives a group of rollers 24 in front to rotate, the roller 24 rotation drives the bracket three 22, the flexible joint 71, the bracket five 72 and the mold 73 to move together, makes the mold 73 to reach the pressing position, then opens the cylinder one 41, the cylinder one 41 provides power, drives the pressing plate 43 to move up and down, the pressing plate 43 moves down to press and dehydrate the bean curd, at the same time, opens the circulating pump 32, the circulating pump 32 provides power, extracts the cold water in the water tank 31 and circulates and injects into the circulating water channel of the mold 73, makes the mold 73 temperature to reduce, cools the bean curd when pressing the bean curd, when the bean curd is pressed, opens the flexible joint 71, the flexible joint 71 provides power, drives the bracket five 72 to move down, facilitates the discharging, then opens the cylinder two 52, the cylinder two 52 provides power, drives the push plate 55 to move left and right, the push plate 55 moves left to push the bean curd to discharge, the guide block of the bracket five 72 prevents the bean curd from breaking in the process of moving to the surface of the conveying belt 15, then resets the cylinder two 52 and the bracket five 72, when the bean curd moves to the cutter one 62, the cutter one 62 cuts the finished product bean curd conveyed by the conveying belt 15 for the first time, makes the bean curd into strip shape, when the bean curd moves to the cylinder three 64, the cylinder three 64 provides power, drives the cutter three 66 to move up and down, the cutter three 66 moves down to cut the finished product bean curd, the cutter three 66 reciprocatingly moves up and down to cut the finished product bean curd into uniform blocks.

[0035] The conveying belt 15, the motor 29, the plurality of flexible joints 71, the circulating pump 32, the cylinder one 41, the cylinder two 52 and the cylinder three 64 are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the technical personnel in the field to pay the creative labor.

[0036] The main function realized by the utility model is: the soybean milk is automatically discharged by setting the conveying device 02 and the discharging device 05, the machine usability is improved, the positioning cooling device 03 is set to cool the soybean milk, the soybean milk spoilage risk is reduced, the conveying device 02 and the pressing device 04 are set to press and form the soybean milk without cloth, the possibility of mixing bacteria and dirt into the soybean milk in the production process is reduced, and the food safety risk is reduced; The machine is not convenient to discharge, the machine usability is poor, and the cooling equipment is lacked, the soybean milk cooling is slow, the spoilage risk is large, and the existing pressing mode needs to use a large number of cloths, the bacteria and dirt are easily mixed into the soybean milk in the production process, and the food safety risk is high.

[0037] The above is only the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the technical field, several improvements and modifications can be made without departing from the technical principles of the utility model, and these improvements and modifications should be regarded as the protection scope of the utility model.

Claims

1. A tofu forming, pressing and dewatering apparatus comprising a machine body (01); characterized in that, It also includes conveying device (02), positioning cooling device (03), pressing device (04), blanking device (05) and slitting device (06), conveying device (02), positioning cooling device (03), pressing device (04), blanking device (05) and slitting device (06) are installed on the body (01); The body (01) provides support and transports finished product tofu, conveying device (02) transports bean flower and contains tofu, positioning cooling device (03) positions conveying device (02) and cools tofu, pressing device (04) presses tofu to dehydrate, blanking device (05) blanks finished product tofu, and slitting device (06) automatically cuts finished product tofu.

2. A soybean cur forming and pressing dewatering apparatus as claimed in claim 1, wherein, The body (01) comprises a plurality of support seats (11), a bottom plate (12), a support one (13), two support two (14) and a conveyor belt (15), the bottom plate (12) is installed at the top of the plurality of support seats (11), the support one (13) and the two support two (14) are installed at the top of the bottom plate (12), and the top of the support one (13) is provided with a through hole one and a plurality of through hole two, and the conveyor belt (15) is installed on the two support two (14).

3. A soybean cur forming and pressing dewatering apparatus as claimed in claim 2, wherein, The conveying device (02) comprises two rolling tracks (21), a support three (22), two groups of support four (23), two groups of rollers (24), a rotating shaft (25), a gear one (26), a speed reducer (27), a gear two (28), a motor (29), a plurality of telescopic joints (71), a support five (72) and a mold (73), two rolling tracks (21) are installed at the top of the bottom plate (12), two groups of support four (23) are installed at the bottom of the support three (22), two groups of rollers (24) are rotatably installed on two groups of support four (23) respectively, and two groups of rollers (24) are rollingly matched with two rolling tracks (21) respectively, the rotating shaft (25) passes through the front group of support four (23) and is installed on the front group of rollers (24), the gear one (26) is installed on the rotating shaft (25), the speed reducer (27) is fixedly installed at the bottom of the support three (22), the gear two (28) is rotatably installed on the side end wall of the speed reducer (27), and the gear two (28) and the gear one (26) are in gear engagement, the motor (29) is fixedly installed on the side end wall of the speed reducer (27), and the motor (29) provides power to the gear two (28) through the speed reducer (27), a plurality of telescopic joints (71) are installed at the top of the support three (22), a support five (72) is installed at the top of the plurality of telescopic joints (71), a guide block matching the arc of the conveyor belt (15) is arranged at the left end of the telescopic joint (71), a plurality of insertion blocks are arranged at the top of the support five (72), a plurality of insertion slots are arranged at the bottom of the mold (73), the support five (72) and the mold (73) are detachably connected through the insertion blocks and the insertion slots, and the insertion blocks and the insertion slots are located at the front and rear ends of the support five (72) and the mold (73), a circulating water channel is arranged in the mold (73), and slide rails one are arranged at the left and right ends of the mold (73).

4. A soybean cur forming and pressing dewatering apparatus as claimed in claim 3, wherein, The positioning cooling device (03) comprises a water tank (31), a circulating pump (32), two circulating pipes (33), two self-sealing valves (34) and a bracket six (35), the water tank (31) is installed at the top end of the bottom plate (12), the circulating pump (32) is installed at the top end of the water tank (31), the two circulating pipes (33) are both installed at the front end of the circulating pump (32), the front end of the two circulating pipes (33) is respectively provided with a tapered rubber joint, the two self-sealing valves (34) are respectively installed at the inlet and outlet of the circulating water channel of the mold (73), the two circulating pipes (33) are respectively and separably connected with the two self-sealing valves (34) through the two tapered rubber joints, the bracket six (35) is installed at the front end of the water tank (31), and the bracket six (35) is internally provided with a sliding rail two, and the sliding rail two and the sliding rail one of the mold (73) are in sliding fit.

5. The tofu molding, pressing and dewatering apparatus according to claim 2, wherein The pressing device (04) comprises a cylinder one (41), a plurality of guide columns one (42) and a pressing plate (43), the cylinder one (41) is installed at the through hole one of the bracket one (13), the plurality of guide columns one (42) are respectively and slidably installed in the plurality of through holes two of the bracket one (13), and the pressing plate (43) is installed at the bottom end of the cylinder one (41) and the plurality of guide columns one (42).

6. A soybean cur forming and pressing dewatering apparatus as claimed in claim 2, wherein, The blanking device (05) comprises a bracket seven (51), a cylinder two (52), two sleeve pipes (53), two guide columns two (54) and a pushing plate (55), the bracket seven (51) is installed at the top end of the bottom plate (12), the bracket seven (51) is provided with two through holes three, the cylinder two (52) is installed at the top end of the bracket seven (51), the two sleeve pipes (53) are respectively installed at the two through holes three, the two guide columns two (54) are respectively and slidably installed in the two through holes three and the two sleeve pipes (53), and the pushing plate (55) is installed at the left end of the cylinder two (52) and the two guide columns two (54).

7. A soybean cur forming and pressing dewatering apparatus as claimed in claim 2, wherein, The slitting device (06) comprises a bracket eight (61), a plurality of cutter one (62), a bracket nine (63), a cylinder three (64), two guide columns three (65) and a cutter three (66), the bracket eight (61) and the bracket nine (63) are both installed on the two brackets two (14), the plurality of cutter one (62) are installed on the bracket eight (61) at intervals, the bracket nine (63) is provided with two through holes four, the cylinder three (64) is fixedly installed at the top end of the bracket nine (63), the two guide columns three (65) are respectively and slidably installed in the two through holes four, and the cutter three (66) is installed at the bottom end of the cylinder three (64) and the two guide columns three (65).

Citation Information

Patent Citations

  • Bean curd briquetting machine

    CN208403076U