CN213650887U - Automatic change and be stained with salt device - Google Patents

Automatic change and be stained with salt device Download PDF

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Publication number
CN213650887U
CN213650887U CN202022750314.7U CN202022750314U CN213650887U CN 213650887 U CN213650887 U CN 213650887U CN 202022750314 U CN202022750314 U CN 202022750314U CN 213650887 U CN213650887 U CN 213650887U
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China
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salt
mounting plate
net chain
conveying net
rotating shaft
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CN202022750314.7U
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Chinese (zh)
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陈洋洋
陈恒雷
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Kaifeng Shengfeng Machinery Equipment Co ltd
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Kaifeng Shengfeng Machinery Equipment Co ltd
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Abstract

The utility model discloses an automatic salt dipping device, which comprises a frame, a salt pond, a transmission mechanism, a first conveying net chain and a second conveying net chain; the salt pond is arranged on the rack; the first conveying net chain and the second conveying net chain move up and down in parallel and in the same direction in the salt pond; the salt materials to be stained are carried between the first conveying net chain and the second conveying net chain; the utility model discloses the technical scheme who takes has solved the current salt mode of being stained with and generally has been stained with the salt for assembly line workman is manual to be stained with the salt in the salt pond and leads to that working strength is big, be stained with salt inefficiency and be unfavorable for food safety in production's problem.

Description

Automatic change and be stained with salt device
Technical Field
The utility model relates to a food processing technology field, concretely relates to automatic change and be stained with salt device.
Background
The dried beancurd sticks are also called as dried bean curd sticks, are light yellow in color, bright in oil surface, strong in bean fragrance and delicious in taste; wherein the content of protein is up to more than 45%. At present, bean production of dried beancurd sticks is carried out in two ways; the first is manual production: after the bean is soaked and ground into pulp, the soybean milk is boiled and crusted by adopting a steamer, the skin is lifted and hung on a cross bar, when the beancurd skin is half-dried, the beancurd skin is taken down and manually rolled into a bamboo tube shape or folded and furled, and the beancurd skin is continuously dried and then packaged into finished beancurd sticks. The method has simple process and low cost, but has high labor intensity, low production efficiency and low yield due to manual operation, and cannot meet the market demand; the second is to adopt the machine production, the mechanical equipment for producing the dried beancurd sticks at present is a mode of utilizing steam to heat and form a film, hot steam is introduced into a steam coil pipe, the hot steam is sprayed on a conveying belt through the action of hot gas emitted by the steam coil pipe and the conveying belt passing above the steam coil pipe, and then the bean milk liquid can be favorably formed into beancurd sheets on the conveying belt; the dried beancurd sticks or bean curd sheets can be produced in the steam heating film forming mode; in order to ensure that the produced dried beancurd sticks and bean curd sheets have a certain shelf life, the dried beancurd sticks and bean curd sheets are generally subjected to salt dipping preservation on the dried beancurd sticks or bean curd sheets after primary drying, and then subjected to secondary drying and shearing to obtain final products; the current salt dipping mode is generally the problem that the assembly line worker manually dips salt in the salt pond to cause that working strength is big, the salt dipping efficiency is low and be unfavorable for food safety production.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic change and be stained with salt device solves and is stained with the salt mode now and generally for the manual salt of being stained with of assembly line workman leads to working strength big, be stained with salt inefficiency and be unfavorable for the problem of food safety in production in the salt pond.
In order to solve the technical problem, the utility model adopts the following technical scheme: an automatic salt dipping device comprises a rack, a salt pond, a transmission mechanism, a first conveying net chain and a second conveying net chain; the salt pond is arranged on the rack; the first conveying net chain and the second conveying net chain move up and down in parallel and in the same direction in the salt pond; the salt materials to be stained are carried between the first conveying net chain and the second conveying net chain;
furthermore, the transmission mechanism comprises a driver, a first rotating shaft and a second rotating shaft; the driver drives the first rotating shaft to be connected; the two ends of the first rotating shaft are sleeved with the first gear; two ends of the second rotating shaft are sleeved with second gears; the first gear and the second gear are meshed;
further, the first conveying net chain comprises a first net chain belt, a first driving wheel and a first driven wheel; the first driving wheel and the first driven wheel are oppositely arranged at two ends of the salt pond; the first driving wheel is in transmission connection with the second rotating shaft through a belt pulley; the first net chain belt is movably sleeved on the first driving wheel and the first driven wheel;
further, the second conveying net chain comprises a second net chain belt, a second driven wheel and a carrier roller; the second driven wheel and the first rotating shaft are oppositely arranged at two ends of the salt pond; the carrier roller is arranged below the salt pond; the second net chain belt is movably sleeved on the first rotating shaft, the second driven wheel and the carrier roller;
further, a first mounting plate, a second mounting plate, a third mounting plate and a fourth mounting plate are arranged on the rack; the first mounting plate and the third mounting plate are positioned at one end of the salt pond; the second mounting plate and the fourth mounting plate are positioned at the other end of the salt pond;
further, the transmission mechanism is arranged on the second mounting plate; the first driving wheel is arranged on the second mounting plate; the first driven wheel is arranged on the first mounting plate relative to the first driving wheel; the second driven wheel is arranged on the first mounting plate relative to the transmission mechanism; the carrier rollers are arranged on the third mounting plate and the fourth mounting plate at intervals;
further, a cleaning material receiving mechanism is further arranged on one side of the bottom of the salt pond; the cleaning material receiving device comprises a material receiving box and a material brushing rod; the upper end of the material receiving box is open; the material brushing rod is rotatably arranged at the upper end of the material receiving box; the material brushing rod is provided with a material brushing sponge; the brushing sponge is contacted with the second conveying net chain;
a discharge groove is arranged on one side wall of the material receiving box; a material storage box is movably stored in the material receiving box; the storage box is placed in the material receiving box through the discharge chute in a sliding mode.
Compared with the prior art, the beneficial effects of the utility model are one of following at least:
1. the salt pond is filled with salt water with a certain concentration, and the first conveying net chain and the second conveying net chain move up and down in parallel in the salt pond, so that the first conveying net chain and the second conveying net chain clamp and convey the dried beancurd sticks or beancurd sheets to pass through the salt pond, the dried beancurd sticks or beancurd sheets are in full contact with the salt water, and the salt dipping effect is improved;
2. the first conveying net chain and the second conveying net chain are driven by the transmission mechanism to automatically carry and convey materials such as dried beancurd sticks or beancurd sheets, so that manual salt dipping is avoided, labor intensity is reduced, production efficiency is improved, and food safety and sanitation are improved;
3. first conveying network chain and second conveying network chain are driven by drive mechanism, are favorable to adjusting the translation rate and the direction of first conveying network chain and second conveying network chain, are favorable to improving the stability of smuggleing the transported substance secretly.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention.
Fig. 2 is a schematic structural diagram of another embodiment of the present invention.
Fig. 3 is a schematic structural view of a cleaning material receiving structure.
In the drawings: 1. a frame; 2. a salt pond; 3. a driver; 4. a first rotating shaft; 5. a second rotating shaft; 8. a first net chain belt; 9. a first drive wheel; 10. a first driven wheel; 12. a second net chain belt; 13. a second driven wheel; 14. a carrier roller; 15. a first mounting plate; 16. a second mounting plate; 17. a third mounting plate; 18. a fourth mounting plate; 19. cleaning the material receiving mechanism; 20. a material receiving box; 21. a material brushing rod; 22. brushing material sponge; 23. a discharge chute; 24. a storage box.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and 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, an automatic salt dipping device comprises a frame 1, a salt pond 2, a transmission mechanism, a first conveying net chain and a second conveying net chain; the salt pond 2 is arranged on the frame 1; the first conveying net chain and the second conveying net chain move up and down in parallel and in the same direction in the salt pond 2; the salt materials to be stained are carried between the first conveying net chain and the second conveying net chain; in the embodiment, the frame 1 and the salt pond 2 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the requirement; the salt pond 2 is fixed on the frame 1, and any reasonable fixing mode can be selected according to the requirement; in the embodiment, the concentration of the brine in the salt pond 2 can be reasonably set according to needs; in the embodiment, the first conveying net chain and the second conveying net chain are both made of conventional materials with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to needs; in the embodiment, the distance between the first conveying net chain and the second conveying net chain is set appropriately, and reasonable debugging and installation can be selected according to needs, so that materials such as dried beancurd sticks and bean skins can be clamped between the first conveying net chain and the second conveying net chain;
the salt pond 2 is filled with salt water with a certain concentration, and the first conveying net chain and the second conveying net chain move up and down in parallel in the salt pond 2, so that the first conveying net chain and the second conveying net chain clamp and convey the dried beancurd sticks or beancurd sheets to pass through the salt pond 2, the dried beancurd sticks or beancurd sheets are in full contact with the salt water, and the salt dipping effect is improved; the first conveying net chain and the second conveying net chain are driven by the transmission mechanism to automatically carry and convey materials such as dried beancurd sticks or beancurd sheets, so that manual salt dipping is avoided, labor intensity is reduced, production efficiency is improved, and food safety and sanitation are improved; first conveying network chain and second conveying network chain are driven by drive mechanism, are favorable to adjusting the translation rate and the direction of first conveying network chain and second conveying network chain, are favorable to improving the stability of smuggleing the transported substance secretly.
The transmission mechanism comprises a driver 3, a first rotating shaft 4 and a second rotating shaft 5; the driver 3 drives the first rotating shaft 4 to be connected; the two ends of the first rotating shaft 4 are sleeved with a first gear; two ends of the second rotating shaft 5 are sleeved with second gears; the first gear is meshed with the second gear; in the embodiment, the driver 3 adopts a conventional commercially available motor and is electrically connected to an external power supply, and any reasonable motor type and structure and a proper connection and installation mode can be selected according to requirements; in this time, it is caucasian that the first rotating shaft 4 and the second rotating shaft 5 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the needs; in the embodiment, the first rotating shaft 4 is connected with the output shaft of the motor by a conventional commercially available coupling, and any reasonable connection mode can be selected according to needs; in the fourth and the fourth aspects, the first gear and the second gear are both made of conventional materials with certain mechanical strength, and any reasonable material and structure can be selected according to needs; the first gear is meshed with the second gear, and after the first rotating shaft 4 is driven by the motor to rotate, the first gear is transmitted to the second rotating shaft 5 through the meshing action of the first gear and the second gear, so that the second rotating shaft 5 can be driven to rotate on one side of the first rotating shaft 4; the two ends of the first rotating shaft 4 and the second rotating shaft 5 are respectively installed by adopting conventional commercially available bearing pieces, and any reasonable installation mode of the bearing piece structure can be selected according to needs; the first rotating shaft 4 and the second rotating shaft 5 are respectively beneficial to linkage of the first conveying network chain and the second conveying network chain, and are beneficial to improving the stability and reliability of linkage conveying of the first conveying network chain and the second conveying network chain; in this embodiment, the motor may also be connected to a conventional numerical control system, and any one of the reasonable numerical control systems may be selected as needed, which is beneficial to appropriately adjusting and controlling the motor.
The first conveying net chain comprises a first net chain belt 8, a first driving wheel 9 and a first driven wheel 10; the first driving wheel 9 and the first driven wheel 10 are oppositely arranged at two ends of the salt pond 2; the first driving wheel 9 is in transmission connection with the second rotating shaft 5 through a belt pulley; the first net chain belt 8 is movably sleeved on the first driving wheel 9 and the first driven wheel 10; in the embodiment, the first net chain belt 8 is made of a conventional material with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to the requirement; in the embodiment, the belt pulley is made of conventional commercial products, and any reasonable structure and installation mode can be selected according to needs; in the embodiment, after the first driving wheel 9 and the second rotating shaft 5 are in transmission connection through the belt pulley, the second rotating shaft 5 drives the first rotating shaft 4 to rotate, so that the first driven wheel 10 is driven to rotate through the connection of the first net chain belt 8, and the first conveying net chain can stably move; in this embodiment, the first driving wheel 9 and the first driven wheel 10 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the requirement; in this embodiment, the two ends of the first driving wheel 9 and the first driven wheel 10 are both fixedly mounted by using conventional commercially available bearing parts.
The second conveying net chain comprises a second net chain belt 12, a second driven wheel 13 and a carrier roller 14; the second driven wheel 13 and the first rotating shaft 4 are oppositely arranged at two ends of the salt pond 2; the carrier roller 14 is arranged below the salt pond 2; the second net chain belt 12 is movably sleeved on the first rotating shaft 4, the second driven wheel 13 and the carrier roller 14; in the embodiment, the second conveying net chain belt is made of conventional materials with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to needs; in this embodiment, the second driven wheel 13 and the carrier roller 14 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to needs; in this embodiment, the second driven wheel 13 is fixedly mounted by using a conventional commercially available bearing member, and any reasonable material can be selected as required; in this embodiment, the first rotating shaft 4 is driven by the motor to rotate and then drives the second driven wheel 13 to rotate through the connection of the second net chain belt 12, which is beneficial to the stable movement of the second conveying net chain belt; in this embodiment, the supporting rollers 14 are arranged below the second net chain belt 12, which is beneficial to supporting the second conveying net chain belt and improving the moving stability of the second conveying net chain belt.
A first mounting plate 15, a second mounting plate 16, a third mounting plate 17 and a fourth mounting plate 18 are arranged on the rack 1; the first mounting plate 15 and the third mounting plate 17 are positioned at one end of the salt pond 2; the second mounting plate 16 and the fourth mounting plate 18 are positioned at the other end of the salt pond 2; the transmission mechanism is arranged on the second mounting plate 16; the first driving wheel 9 is arranged on the second mounting plate 16; the first driven wheel 10 is arranged on the first mounting plate 15 relative to the first driving wheel 9; the second driven wheel 13 is arranged on the first mounting plate 15 relative to the transmission mechanism; the carrier rollers 14 are arranged on a third mounting plate 17 and a fourth mounting plate 18 at intervals; in this embodiment, the first mounting plate 15, the second mounting plate 16, the third mounting plate 17, and the fourth mounting plate 18 are all made of conventional materials with certain mechanical strength, and any reasonable material can be selected as required; in this embodiment, the first mounting plate 15, the second mounting plate 16, the third mounting plate 17 and the fourth mounting plate 18 are all fixedly arranged on the rack 1 in a conventional fixed connection manner, and any one of reasonable fixed connection manners can be selected as required; in this embodiment, the first mounting plate 15 and the third mounting plate 17 are arranged at one end of the salt pond 2, the first mounting plate 15 is positioned above the third mounting plate 17, the first mounting plate 15 is positioned above the salt pond 2, and the third mounting plate 17 is positioned below the salt pond 2; the second mounting plate 16 and the fourth mounting plate 18 are arranged at the other end of the salt pond 2, the second mounting plate 16 is positioned above the fourth mounting plate 18, the second mounting plate 16 is positioned above the salt pond 2, and the fourth mounting plate 18 is positioned below the salt pond 2; the transmission mechanism is arranged on the second mounting plate 16, and the first driving wheel 9 is also arranged on the second mounting plate 16, so that the transmission rotation is facilitated to drive the first driving wheel 9 to rotate, and the first driven wheel 10 arranged on the upper surface of the first mounting plate 15 correspondingly is driven to rotate, so that the first conveying net chain belt moves on the upper part of the salt pond 2; the second is followed driving mechanism and is set up on first mounting panel 15 lower surface relatively from driving wheel 13, and bearing roller 14 arranges the upper surface that sets up at third mounting panel 17, fourth mounting panel 18, and first axis of rotation 4 drives the second and rotates from driving wheel 13, is favorable to the second to carry the net chain belt to remove in salt pond 2 lower part to be favorable to the second to carry the material that the net chain belt will be stained with salt and accomplish to carry out salt pond 2, be favorable to getting into next processing station.
A cleaning material receiving mechanism 19 is further arranged on one side of the bottom of the salt pond 2; the cleaning material receiving device comprises a material receiving box 20 and a material brushing rod 21; the upper end of the material receiving box 20 is open; the brushing rod 21 is rotatably arranged at the upper end of the material receiving box 20; a brushing sponge 22 is arranged on the brushing rod 21; the brushing sponge 22 is in contact with the second conveying net chain; in this embodiment, when the second conveying net chain moves below the salt pond 2, the salt water adhered to the second conveying net chain belt may drip around, which causes environmental pollution and is not beneficial to food safety production; a cleaning material receiving structure is arranged on one side of the bottom of the salt pond 2, residual salt water on the surface of the second conveying net chain belt is firstly brushed down through a material brushing rod 21, and the salt water is received through a material receiving box 20, so that the salt water is prevented from dripping everywhere, and the cleaning performance is improved; the brushing sponge 22 is beneficial to absorbing saline water, and the cleaning efficiency is improved; in this embodiment, the brush material sponge 22 is made of a conventional commercially available sponge material with a certain mechanical strength, and any reasonable material can be selected according to the requirement; in the embodiment, the bottom of the brushing rod 21 is connected with a movable rod, two ends of the movable rod are hinged with the material receiving and inner walls at two sides by adopting conventional hinged connecting pieces, and any reasonable hinged connecting piece, such as a torsion spring, can be selected according to needs, so that the elastic resetting of the brushing rod 21 is facilitated; the material brushing rods 21 can be abutted against the material conveying net chains when contacting with the second conveying net chains, and meanwhile, the material brushing device has certain flexibility and is beneficial to improving the cleaning efficiency.
A discharge groove 23 is arranged on one side wall of the material receiving box 20; a storage box 24 is movably received in the material receiving box 20; the storage box 24 is slidingly stored in the material receiving box 20 through the discharging groove 23; in this embodiment, the storage box 24 is disposed in the material receiving box 20, and the storage box 24 is slidably retracted in the material receiving box 20 in a drawer type, so that the saline water collected by transferring can be improved, and the cleaning and recycling efficiency can be improved.
Example 2: as shown in fig. 2 and 3, an automatic salt dipping device comprises a frame 1, a salt pond 2, a transmission mechanism, a first conveying net chain and a second conveying net chain; the salt pond 2 is arranged on the frame 1; the first conveying net chain and the second conveying net chain move up and down in parallel and in the same direction in the salt pond 2; the salt materials to be stained are carried between the first conveying net chain and the second conveying net chain; in the embodiment, the frame 1 and the salt pond 2 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the requirement; the salt pond 2 is fixed on the frame 1, and any reasonable fixing mode can be selected according to the requirement; in the embodiment, the concentration of the brine in the salt pond 2 can be reasonably set according to needs; in the embodiment, the first conveying net chain and the second conveying net chain are both made of conventional materials with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to needs; in the embodiment, the distance between the first conveying net chain and the second conveying net chain is set appropriately, and reasonable debugging and installation can be selected according to needs, so that materials such as dried beancurd sticks and bean skins can be clamped between the first conveying net chain and the second conveying net chain;
the salt pond 2 is filled with salt water with a certain concentration, and the first conveying net chain and the second conveying net chain move up and down in parallel in the salt pond 2, so that the first conveying net chain and the second conveying net chain clamp and convey the dried beancurd sticks or beancurd sheets to pass through the salt pond 2, the dried beancurd sticks or beancurd sheets are in full contact with the salt water, and the salt dipping effect is improved; the first conveying net chain and the second conveying net chain are driven by the transmission mechanism to automatically carry and convey materials such as dried beancurd sticks or beancurd sheets, so that manual salt dipping is avoided, labor intensity is reduced, production efficiency is improved, and food safety and sanitation are improved; first conveying network chain and second conveying network chain are driven by drive mechanism, are favorable to adjusting the translation rate and the direction of first conveying network chain and second conveying network chain, are favorable to improving the stability of smuggleing the transported substance secretly.
The transmission mechanism comprises a driver 3, a first rotating shaft 4 and a second rotating shaft 5; the driver 3 drives the first rotating shaft 4 to be connected; the two ends of the first rotating shaft 4 are sleeved with a first gear; two ends of the second rotating shaft 5 are sleeved with second gears; the first gear is meshed with the second gear; in the embodiment, the driver 3 adopts a conventional commercially available motor and is electrically connected to an external power supply, and any reasonable motor type and structure and a proper connection and installation mode can be selected according to requirements; in this time, it is caucasian that the first rotating shaft 4 and the second rotating shaft 5 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the needs; in the embodiment, the first rotating shaft 4 is connected with the output shaft of the motor by a conventional commercially available coupling, and any reasonable connection mode can be selected according to needs; in the fourth and the fourth aspects, the first gear and the second gear are both made of conventional materials with certain mechanical strength, and any reasonable material and structure can be selected according to needs; the first gear is meshed with the second gear, and after the first rotating shaft 4 is driven by the motor to rotate, the first gear is transmitted to the second rotating shaft 5 through the meshing action of the first gear and the second gear, so that the second rotating shaft 5 can be driven to rotate on one side of the first rotating shaft 4; the two ends of the first rotating shaft 4 and the second rotating shaft 5 are respectively installed by adopting conventional commercially available bearing pieces, and any reasonable installation mode of the bearing piece structure can be selected according to needs; the first rotating shaft 4 and the second rotating shaft 5 are respectively beneficial to linkage of the first conveying network chain and the second conveying network chain, and are beneficial to improving the stability and reliability of linkage conveying of the first conveying network chain and the second conveying network chain; in this embodiment, the motor may also be connected to a conventional numerical control system, and any one of the reasonable numerical control systems may be selected as needed, which is beneficial to appropriately adjusting and controlling the motor.
The first conveying net chain comprises a first net chain belt 8, a first driving wheel 9 and a first driven wheel 10; the first driving wheel 9 and the first driven wheel 10 are oppositely arranged at two ends of the salt pond 2; the first driving wheel 9 is in transmission connection with the second rotating shaft 5 through a belt pulley; the first net chain belt 8 is movably sleeved on the first driving wheel 9 and the first driven wheel 10; in the embodiment, the first net chain belt 8 is made of a conventional material with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to the requirement; in the embodiment, the belt pulley is made of conventional commercial products, and any reasonable structure and installation mode can be selected according to needs; in the embodiment, after the first driving wheel 9 and the second rotating shaft 5 are in transmission connection through the belt pulley, the second rotating shaft 5 drives the first rotating shaft 4 to rotate, so that the first driven wheel 10 is driven to rotate through the connection of the first net chain belt 8, and the first conveying net chain can stably move; in this embodiment, the first driving wheel 9 and the first driven wheel 10 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to the requirement; in this embodiment, the two ends of the first driving wheel 9 and the first driven wheel 10 are both fixedly mounted by using conventional commercially available bearing parts.
The second conveying net chain comprises a second net chain belt 12, a second driven wheel 13 and a carrier roller 14; the second driven wheel 13 and the first rotating shaft 4 are oppositely arranged at two ends of the salt pond 2; the carrier roller 14 is arranged below the salt pond 2; the second net chain belt 12 is movably sleeved on the first rotating shaft 4, the second driven wheel 13 and the carrier roller 14; in the embodiment, the second conveying net chain belt is made of conventional materials with certain mechanical strength and corrosion resistance, and any reasonable material can be selected according to needs; in this embodiment, the second driven wheel 13 and the carrier roller 14 are both made of conventional materials with certain mechanical strength, and any reasonable material can be selected according to needs; in this embodiment, the second driven wheel 13 is fixedly mounted by using a conventional commercially available bearing member, and any reasonable material can be selected as required; in this embodiment, the first rotating shaft 4 is driven by the motor to rotate and then drives the second driven wheel 13 to rotate through the connection of the second net chain belt 12, which is beneficial to the stable movement of the second conveying net chain belt; in this embodiment, the supporting rollers 14 are arranged below the second net chain belt 12, which is beneficial to supporting the second conveying net chain belt and improving the moving stability of the second conveying net chain belt.
A first mounting plate 15, a second mounting plate 16, a third mounting plate 17 and a fourth mounting plate 18 are arranged on the rack 1; the first mounting plate 15 and the third mounting plate 17 are positioned at one end of the salt pond 2; the second mounting plate 16 and the fourth mounting plate 18 are positioned at the other end of the salt pond 2; the transmission mechanism is arranged on the second mounting plate 16; the first driving wheel 9 is arranged on the second mounting plate 16; the first driven wheel 10 is arranged on the first mounting plate 15 relative to the first driving wheel 9; the second driven wheel 13 is arranged on the first mounting plate 15 relative to the transmission mechanism; the carrier rollers 14 are arranged on a third mounting plate 17 and a fourth mounting plate 18 at intervals; in this embodiment, the first mounting plate 15, the second mounting plate 16, the third mounting plate 17, and the fourth mounting plate 18 are all made of conventional materials with certain mechanical strength, and any reasonable material can be selected as required; in this embodiment, the first mounting plate 15, the second mounting plate 16, the third mounting plate 17 and the fourth mounting plate 18 are all fixedly arranged on the rack 1 in a conventional fixed connection manner, and any one of reasonable fixed connection manners can be selected as required; in this embodiment, the first mounting plate 15 and the third mounting plate 17 are arranged at one end of the salt pond 2, the first mounting plate 15 is positioned above the third mounting plate 17, the first mounting plate 15 is positioned above the salt pond 2, and the third mounting plate 17 is positioned below the salt pond 2; the second mounting plate 16 and the fourth mounting plate 18 are arranged at the other end of the salt pond 2, the second mounting plate 16 is positioned above the fourth mounting plate 18, the second mounting plate 16 is positioned above the salt pond 2, and the fourth mounting plate 18 is positioned below the salt pond 2; the transmission mechanism is arranged on the second mounting plate 16, and the first driving wheel 9 is also arranged on the second mounting plate 16, so that the transmission rotation is facilitated to drive the first driving wheel 9 to rotate, and the first driven wheel 10 arranged on the upper surface of the first mounting plate 15 correspondingly is driven to rotate, so that the first conveying net chain belt moves on the upper part of the salt pond 2; the second is followed driving mechanism and is set up on first mounting panel 15 lower surface relatively from driving wheel 13, and bearing roller 14 arranges the upper surface that sets up at third mounting panel 17, fourth mounting panel 18, and first axis of rotation 4 drives the second and rotates from driving wheel 13, is favorable to the second to carry the net chain belt to remove in salt pond 2 lower part to be favorable to the second to carry the material that the net chain belt will be stained with salt and accomplish to carry out salt pond 2, be favorable to getting into next processing station.
A cleaning material receiving mechanism 19 is further arranged on one side of the bottom of the salt pond 2; the cleaning material receiving device comprises a material receiving box 20 and a material brushing rod 21; the upper end of the material receiving box 20 is open; the brushing rod 21 is rotatably arranged at the upper end of the material receiving box 20; a brushing sponge 22 is arranged on the brushing rod 21; the brushing sponge 22 is in contact with the second conveying net chain; in this embodiment, when the second conveying net chain moves below the salt pond 2, the salt water adhered to the second conveying net chain belt may drip around, which causes environmental pollution and is not beneficial to food safety production; a cleaning material receiving structure is arranged on one side of the bottom of the salt pond 2, residual salt water on the surface of the second conveying net chain belt is firstly brushed down through a material brushing rod 21, and the salt water is received through a material receiving box 20, so that the salt water is prevented from dripping everywhere, and the cleaning performance is improved; the brushing sponge 22 is beneficial to absorbing saline water, and the cleaning efficiency is improved; in this embodiment, the brush material sponge 22 is made of a conventional commercially available sponge material with a certain mechanical strength, and any reasonable material can be selected according to the requirement; in the embodiment, the bottom of the brushing rod 21 is connected with a movable rod, two ends of the movable rod are hinged with the material receiving and inner walls at two sides by adopting conventional hinged connecting pieces, and any reasonable hinged connecting piece, such as a torsion spring, can be selected according to needs, so that the elastic resetting of the brushing rod 21 is facilitated; the material brushing rods 21 can be abutted against the material conveying net chains when contacting with the second conveying net chains, and meanwhile, the material brushing device has certain flexibility and is beneficial to improving the cleaning efficiency.
A discharge groove 23 is arranged on one side wall of the material receiving box 20; a storage box 24 is movably received in the material receiving box 20; the storage box 24 is slidingly stored in the material receiving box 20 through the discharging groove 23; in this embodiment, the storage box 24 is disposed in the material receiving box 20, and the storage box 24 is slidably retracted in the material receiving box 20 in a drawer type, so that the saline water collected by transferring can be improved, and the cleaning and recycling efficiency can be improved.
Although the invention has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this invention. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (8)

1. The utility model provides an automatic change and be stained with salt device which characterized in that: comprises a frame, a salt pond, a transmission mechanism, a first conveying net chain and a second conveying net chain; the salt pond is arranged on the rack; the first conveying net chain and the second conveying net chain move up and down in parallel and in the same direction in the salt pond; and the materials to be stained with salt are carried between the first conveying net chain and the second conveying net chain.
2. The automatic salt dipping device according to claim 1, characterized in that: the transmission mechanism comprises a driver, a first rotating shaft and a second rotating shaft; the driver drives the first rotating shaft to be connected; the two ends of the first rotating shaft are sleeved with the first gear; two ends of the second rotating shaft are sleeved with second gears; the first gear and the second gear are meshed.
3. The automatic salt dipping device according to claim 2, characterized in that: the first conveying net chain comprises a first net chain belt, a first driving wheel and a first driven wheel; the first driving wheel and the first driven wheel are oppositely arranged at two ends of the salt pond; the first driving wheel is in transmission connection with the second rotating shaft through a belt pulley; the first net chain belt is movably sleeved on the first driving wheel and the first driven wheel.
4. The automatic salt dipping device according to claim 3, characterized in that: the second conveying net chain comprises a second net chain belt, a second driven wheel and a carrier roller; the second driven wheel and the first rotating shaft are oppositely arranged at two ends of the salt pond; the carrier roller is arranged below the salt pond; and the second net chain belt is movably sleeved on the first rotating shaft, the second driven wheel and the carrier roller.
5. The automatic salt dipping device according to claim 4, wherein: a first mounting plate, a second mounting plate, a third mounting plate and a fourth mounting plate are arranged on the rack; the first mounting plate and the third mounting plate are positioned at one end of the salt pond; and the second mounting plate and the fourth mounting plate are positioned at the other end of the salt pond.
6. The automatic salt dipping device according to claim 5, characterized in that: the transmission mechanism is arranged on the second mounting plate; the first driving wheel is arranged on the second mounting plate; the first driven wheel is arranged on the first mounting plate relative to the first driving wheel; the second driven wheel is arranged on the first mounting plate relative to the transmission mechanism; the bearing roller interval sets up on third mounting panel and fourth mounting panel.
7. The automatic salt dipping device according to claim 1, characterized in that: a cleaning material receiving mechanism is further arranged on one side of the bottom of the salt pond; the cleaning material receiving device comprises a material receiving box and a material brushing rod; the upper end of the material receiving box is open; the material brushing rod is rotatably arranged at the upper end of the material receiving box; the material brushing rod is provided with a material brushing sponge; the brushing sponge is in contact with the second conveying net chain.
8. The automatic salt dipping device according to claim 7, wherein: a discharge groove is formed in one side wall of the material receiving box; a material storage box is movably stored in the material receiving box; the storage box is placed in the material receiving box through the discharge chute in a sliding mode.
CN202022750314.7U 2020-11-24 2020-11-24 Automatic change and be stained with salt device Active CN213650887U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022750314.7U CN213650887U (en) 2020-11-24 2020-11-24 Automatic change and be stained with salt device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022750314.7U CN213650887U (en) 2020-11-24 2020-11-24 Automatic change and be stained with salt device

Publications (1)

Publication Number Publication Date
CN213650887U true CN213650887U (en) 2021-07-09

Family

ID=76687669

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022750314.7U Active CN213650887U (en) 2020-11-24 2020-11-24 Automatic change and be stained with salt device

Country Status (1)

Country Link
CN (1) CN213650887U (en)

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