Equipment capable of simultaneously frying and baking eggs
By designing an automated egg frying and baked egg equipment, the problem of low efficiency of manual egg frying is solved, and the automatic shelling, adjustment, separation and frying of eggs are realized, which improves efficiency and reduces costs. The fried eggs have a runny core.
Patent Information
- Application Number
- CN202422915887.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-28
AI Technical Summary
When frying eggs in restaurants, hotels and other places, manual operation is inefficient, cannot meet high production demands, and increases labor costs and fatigue.
Design an egg-frying and baking device that can simultaneously fry and bake eggs, including a conveying mechanism, an egg-breaking mechanism, and a frying and baking mechanism. The device uses a motor and reducer to drive components such as a chain, friction sleeve, and shell-breaking plate to achieve the automatic egg-breaking, adjusting, separating, and frying and baking process.
The automated processing of eggs is realized, which improves work efficiency and reduces labor costs. In addition, the fried eggs have runny cores, which is in line with the habit of people in Guangdong and Guangxi to eat runny eggs with rice.
Smart Images

Figure CN223453128U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to egg processing technical field, especially a kind of equipment that can fry and bake egg simultaneously. BACKGROUND
[0002] In restaurant, hotel, dining room and so on, a large number of eggs are often needed in cooking process, which is not only because egg is the basic raw material for making various delicacies, but also because they play an important role in many dishes, eggs can not only be used to make classic fried eggs, fried eggs and boiled eggs, but also often used as key ingredients of baked rice, Italian noodles, cakes, cakes and other foods.
[0003] When frying eggs, it is usually manually operated, however, when a large number of eggs need to be processed, manual operation alone cannot meet the production demand, and will greatly increase labor cost, long time high intensity manual operation not only low efficiency, and easy to cause operator fatigue, affect work quality and production efficiency, for the above problems, the following scheme is proposed. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of equipment that can fry and bake egg simultaneously, by setting shell breaking plate and frying plate, can automatically complete the work of breaking egg and frying egg, solve the problem that existing manual operation alone cannot meet the production demand.
[0005] To solve the above technical problems, the utility model is realized by the following technical solutions:
[0006] The utility model is a kind of equipment that can fry and bake egg simultaneously, including transmission mechanism, transmission mechanism includes shell, shell top fixedly connected with egg placing frame, shell interior is provided with egg, still include;
[0007] Egg breaking mechanism, egg breaking mechanism includes the support plate one of fixedly connected in the inner wall top of shell, the back surface of support plate one is fixedly connected with motor three, and the output end of motor three is fixedly connected with threaded rod;
[0008] Frying and baking mechanism, frying and baking mechanism includes frying plate fixedly connected in the inner wall bottom of shell, and the front surface of shell inner wall is fixedly connected with motor four, and the output end of motor four is fixedly connected with gear shaft one.
[0009] Further, the left inner wall of the shell is fixedly connected with a right-angle reducer one, the right side of the right-angle reducer one is fixedly connected with a motor one, the output end of the motor one is fixedly connected with the input end of the right-angle reducer one, the output end of the right-angle reducer one is fixedly connected with a rotating shaft one, the outer surface of the rotating shaft one is meshingly connected with a chain, the inner wall of the chain is rotatably connected with a rotating sleeve, the inner wall of the shell is fixedly connected with a motor two, the right side of the motor two is fixedly connected with a right-angle reducer two, the output end of the motor two is fixedly connected with the input end of the right-angle reducer two, the output end of the right-angle reducer two is fixedly connected with a rotating shaft two, the outer surface of the rotating shaft two is fixedly connected with two friction sleeves, the eggs are placed in the egg placing frame, the eggs will automatically slide to between the two rotating sleeves, at the same time, the motor one is started, the motor one will drive the rotating shaft one to rotate through the right-angle reducer one, the rotating shaft one will drive the two chains to move in the process of rotating, the chains will drive a plurality of rotating sleeves one to move in the process of moving, at this time, the eggs will move with the rotating sleeves one, when the rotating sleeve carrying the eggs moves to the outer surface thereof being in contact with the outer surface of the friction sleeve, the motor one is controlled to stop running, and the motor two is started, the motor two will drive the rotating shaft two to rotate through the right-angle reducer two, the rotating shaft two will drive the two friction sleeves to rotate in the process of rotating, at this time, the friction sleeves will drive the rotating sleeves to rotate alone through the friction force, thereby driving the eggs to rotate, the direction of the eggs is automatically adjusted, a plurality of eggs can be placed at one time, the rotating sleeves are made of plastic, the eggs can be placed at random in a state of not affecting transportation, at the same time, the eggs can be automatically adjusted through the rotation of the subsequent rotating sleeves, thereby facilitating the subsequent operation.
[0010] Further, the outer surface of the threaded rod is rotatably connected with a supporting plate two, the top of the supporting plate two is fixedly connected with the top of the inner wall of the shell, the inner wall of the supporting plate two is fixedly connected with a limiting rod one, the outer surface of the limiting rod one is fixedly connected with the inner wall of the supporting plate one, the outer surface of the threaded rod is threadedly connected with a moving block, the inner wall of the moving block is slidably connected with the outer surface of the limiting rod one, the bottom of the moving block is fixedly connected with a fixed frame, after the eggs are adjusted, the motor two is turned off, the motor one is started to continue driving the eggs to move, the adjusted eggs will directly fall into the two half containers, at this time, the motor one is turned off, the motor three is started to drive the threaded rod to rotate, the threaded rod will drive the moving block to move to the front in the process of rotating, the moving block will drive the fixed frame to move as a whole in the process of moving.
[0011] Further, the fixed frame is fixedly connected with two fixed shafts, the outer surfaces of the two fixed shafts are rotatably connected with two half containers, the two half containers are meshedly connected, the bottoms of the two half containers are fixedly connected with two fixed columns respectively, the left side of the fixed frame is provided with a reset spring, the front face and the back face of the reset spring are fixedly connected with the outer walls of the two fixed columns respectively, the outer wall of the half container close to the front face is fixedly connected with a connecting plate one, the outer wall of the half container close to the back face is fixedly connected with a connecting plate two, the inner wall of the shell is fixedly connected with a supporting plate three on the right side, the left side of the supporting plate three is fixedly connected with a limiting shell, the left side of the supporting plate three is fixedly connected with three gradually convex blocks, the bottom of the supporting plate three is also fixedly connected with a gradually convex block, the bottom of the supporting plate three is in contact with a rotating rod, the outer surface of the rotating rod is rotatably connected with the inner wall of the fixed frame, the outer wall of the rotating rod is in contact with a connecting plate three, the inner wall of the connecting plate three is slidably connected with a lifting rod, the outer surface of the lifting rod is slidably connected with the inner wall of the fixed frame, the inner wall of the lifting rod is rotatably connected with a hook plate, the outer surface of the hook plate is rotatably connected with the inner wall of the half container, the outer wall of the hook plate is in contact with a sliding plate, the left side of the sliding plate is fixedly connected with a shell breaking plate, when the rotating rod moves to be in contact with the gradually convex block corresponding to the rotating rod, with the continuous movement of the rotating rod, the rotating rod will rotate around the connecting position between the rotating rod and the fixed frame, thereby driving the connecting plate three to move upwards, the connecting plate three will drive the hook plate to move upwards through the lifting rod in the process of moving upwards, after the hook plate moves upwards, the hook plate will be separated from the sliding plate, at this time, the sliding plate can move freely left and right, and the sliding rod is no longer limited by the limiting shell at this time, therefore, the sliding plate will move to the left side under the contraction action of the spring, in the process of moving, the sliding plate will drive the shell breaking plate to move.
[0012] Further, the inner wall of the sliding plate is fixedly connected with a spring, one end of the spring away from the sliding plate is fixedly connected with a baffle, the outer surface of the baffle is fixedly connected with the outer wall of the half container, the top of the inner wall of the fixed frame is fixedly connected with a limiting block one, the inner wall of the limiting block one is slidably connected with a sliding rod, the outer surface of the sliding rod is fixedly connected with a limiting plate, the outer surface of the sliding plate is slidably connected with a limiting block two, the outer wall of the limiting block two is fixedly connected with the outer wall of the half container, the shell breaking plate will break the eggshell by impact force in the process of moving to the left, and when the connecting plate one moves to contact the corresponding convex block, the connecting plate one will rotate around the fixed shaft with the corresponding half container under the action of the convex block as the connecting plate one continues to move, since the two half containers are meshed and connected, the half container corresponding to the connecting plate one will drive the other half container to rotate in the opposite direction in the process of rotating, thereby making the two half containers move away from each other at one end away from the connecting plate one, and the two shell breaking plates will also move away from each other, thereby pushing the eggs apart, the egg white and yolk in the eggs will fall between the two half containers, and the eggshell will be left in the two half containers due to the limiting action of the shell breaking plate, at this time, the motor three is controlled to reverse to drive the moving block to move to the back, when the fixed frame moves a distance, the two half containers will be reset under the action of the reset spring, and when the sliding rod recontacts the limiting shell, the sliding rod will move to the right along the inner wall of the limiting shell and reset the sliding plate through the limiting plate as the sliding rod continues to move to the back, at this time, the hook plate will move downward under the action of gravity and rehook the sliding plate, when the fixed frame moves to the initial position, the moving block is continued to drive the fixed frame to move to the back until the connecting plate two contacts the corresponding convex block, the connecting plate two will drive the half container close to the back to rotate around the corresponding fixed shaft under the action of the corresponding convex block as the connecting plate two is continuously driven to the back, thereby making the two half containers move away from each other at one end away from the connecting plate two, at this time, the eggshell will fall into the waste discharge channel between the two half containers without the limitation of the shell breaking plate, after the above work is completed, the fixed frame is driven as a whole by the motor three to move to the front until the fixed frame as a whole returns to the initial position, and the motor three is turned off, at this time, the egg breaking work is completed, this design can automatically break the shell and push the eggs, and separate the eggshell and the material inside the eggshell, without manual operation, which can improve the work efficiency and reduce the labor cost.
[0013] Further, the gear shaft one is connected with the rack one in front engagement, the outer surface of the rack one is slidably connected with the inner wall of the shell, the bottom of the rack one is fixedly connected with the heating chamber, the fallen egg white and egg yolk will fall above the frying plate, at this time, the heated frying plate will fry the eggs, at the same time, the motor four and the heating chamber are started, the motor four drives the gear shaft one to rotate, the gear shaft one drives the rack one to move to the right side in the rotating process, the rack one drives the heating chamber one to move to the right side, until the heating chamber covers the frying plate, at this time, the eggs can be heated and baked by the heating chamber, and the egg white and egg yolk can be shielded.
[0014] Further, the bottom of the shell is fixedly connected with the motor five, the output end of the motor five is fixedly connected with the gear shaft two, the outer surface of the gear shaft two is rotatably connected with the inner wall of the shell, the left side of the gear shaft two is fixedly connected with the rack two, the outer surface of the rack two is slidably connected with the inner wall of the shell, the top of the rack two is fixedly connected with the fixed shell, the inner wall of the fixed shell is rotatably connected with the pushing plate, the outer surface of the pushing plate is slidably connected with the fixed plate, the outer surface of the fixed plate is fixedly connected with the inner wall of the shell, the right side of the pushing plate is fixedly connected with the connecting rod, the top of the fixed plate is fixedly connected with the pushing plate, after frying and baking, the motor four is started again to drive the heating chamber to move to the left side, so that the heating chamber is reset, then the motor five is started to drive the gear shaft two to rotate, the gear shaft two drives the fixed shell to move to the front through the rack two, the fixed shell drives the pushing plate to move in the moving process, so that the fried eggs are automatically pushed out through the pushing plate, and the connecting rod is also moved in the moving process of the pushing plate, when the connecting rod contacts with the pushing plate, with the continuous movement of the pushing plate, the upper end of the connecting rod is pushed to the back by the pushing plate, the connecting rod rotates around the connection between the connecting rod and the pushing plate, so as to drive the pushing plate to rotate, so that the processed eggs cannot be completely discharged because part of the processed eggs remain on the pushing plate, the fallen egg white and egg yolk can be automatically processed, and the work of heating and baking is carried out at the same time, so that the double-layer effect is achieved, the frying of the eggs is accelerated, the whole egg can be kept, the fried eggs have a runny center, and the habit of eating runny egg rice in Guangdong and Guangxi is met.
[0015] The utility model has the following beneficial effects:
[0016] The utility model discloses a friction sleeve is set up, concretely is placing the egg in the egg frame, and the egg will automatically slide to between two rotating sleeves, and simultaneously starts motor no. 1, and motor no. 1 will drive rotating shaft no. 1 to rotate through right-angle speed reducer no. 1, and rotating shaft no. 1 will drive two chains to move in the process of rotating, and the chain will drive several rotating sleeve no. 1 and move in the process of moving, at this moment, the egg will follow rotating sleeve no. 1 and move, when the rotating sleeve that carries the egg moves to the outer surface and the outer surface of friction sleeve contact, control motor no. 1 stops running, and starts motor no. 2, and motor no. 2 will drive rotating shaft no. 2 to rotate through right-angle speed reducer no. 2, and rotating shaft no. 2 will drive two friction sleeve no. 1 and rotate in the process of rotating, at this moment, the friction sleeve will drive rotating sleeve to rotate alone through friction, and then drive the egg to rotate, and the direction of the egg is automatically adjusted, this design can be put into multiple eggs at a time, and the rotating sleeve is plastic glue, so that the egg can be placed at random in the state of not affecting transportation, and simultaneously through the rotation of subsequent rotating sleeve, the egg can be automatically adjusted, and subsequent operation is facilitated.
[0017] The utility model is provided with a shell breaking plate. Specifically, after adjusting the eggs, the motor 2 is turned off and the motor 1 is started to continue to drive the eggs to move. The adjusted eggs will directly fall into the two half containers. At this time, the motor 1 is turned off and the motor 3 is started to drive the threaded rod to rotate. The threaded rod will drive the moving block to move toward the front during the rotation process. The moving block will drive the fixed frame to move as a whole during the movement process. When the rotating rod moves to contact the corresponding gradually protruding block, as it continues to move, the rotating rod will rotate around the connection between it and the fixed frame, thereby driving the connecting plate 3 to move upward. During the upward movement of the connecting plate 3, the hook plate will be driven to move upward through the lifting rod. After the hook plate moves upward, it will be separated from the sliding plate. At this time, the sliding plate can freely move to the left. When the two halves are engaged, the half-container corresponding to the connecting plate 1 will drive the other half-container to rotate in the opposite direction during the rotation, thereby making the two half-containers move away from each other at the end away from the connecting plate 1, and the two half-containers will also The two shell-breaking plates are driven away from each other respectively, thereby splitting the egg. The egg white and yolk in the egg will fall from between the two half containers, while the eggshell will remain in the two half containers due to the restriction of the shell-breaking plates. At this time, the motor is controlled to reverse three times to drive the moving block to move to the back side. After the fixed frame moves a certain distance, the two half containers will be reset under the action of the reset spring. When the sliding rod contacts the limit shell again, as the sliding rod continues to move toward the back side, the sliding rod will move to the right along the inner wall of the limit shell, and then drive the sliding plate to reset through the limit plate. At this time, the hook plate will move downward under the action of gravity and hook the sliding plate again. When the fixed frame moves to the initial position as a whole, it will continue to drive the fixed frame to move to the back side through the moving block until the connection is complete. The connecting plate 2 contacts with the corresponding gradually protruding block. As the connecting plate 2 continues to be driven toward the back, the connecting plate 2 will drive the half container close to the back to rotate around the corresponding fixed axis under the action of the corresponding gradually protruding block, thereby making the two half containers move away from each other at the end away from the connecting plate 2. At this time, the eggshell will fall into the waste discharge channel from between the two half containers due to the lack of restriction of the shell-breaking plate. After completing the above work, the fixed frame is driven to move toward the front as a whole again by controlling the motor 3 until the fixed frame as a whole returns to its initial position, and the motor 3 is turned off. At this time, the egg breaking work is completed. This design can automatically break the shell and remove the egg, and separate the eggshell and the material inside the eggshell without manual operation. It can improve work efficiency and reduce labor costs at the same time.
[0018] The utility model discloses a frying plate is set up, concretely is the egg white and egg yolk that falls will fall on the frying plate top, the frying plate will carry out frying egg work when heating, and simultaneously start motor four with heating chamber, and motor four will drive gear shaft no. 1 to rotate, and gear shaft no. 1 will drive rack no. 1 to move to the right side in the process of rotating, and rack no. 1 will drive heating chamber no. 1 and move to the right side, until the heating chamber covers the top of frying plate, at this time, can carry out the work of hot baking of egg through heating chamber, and also can shield egg white and egg yolk, after frying and baking are completed, restart motor four and drive heating chamber to move to the left side, make heating chamber reset, subsequently start motor no. 5 and drive gear shaft no. 2 to rotate, and gear shaft no. 2 will drive fixed shell to move to the front through rack no. 2, and fixed shell will drive pusher plate no. 1 and move in the process of moving, and then the egg that fries is automatically pushed out through pusher plate, and pusher plate will drive the upper end of connecting rod no. 1 to the back in the process of moving, and connecting rod will rotate around its connecting portion with pusher plate, and then drive pusher plate to rotate, prevent the egg that processes to have part to remain on pusher plate and can not completely discharge, this design can automatically process the egg white and egg yolk that falls, and carry out hot baking and frying work simultaneously, reach double-layer effect together, speed up frying egg, also can keep the whole good-looking egg, and the egg heart of frying egg has flow, conforms to the habit of eating flow egg and rice of Guangdong and Guangxi people.
[0019] Of course, implementing any product of the utility model does not necessarily need to achieve all the advantages mentioned above. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will introduce the drawing needed to be used in the embodiment description, obviously, the drawing in the following description only is some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, still can obtain other drawings according to these drawings.
[0021] Figure 1 It is the whole structure schematic diagram of the utility model;
[0022] Figure 2 It is the inside structure schematic diagram of the shell of the utility model;
[0023] Figure 3 It is the whole structure schematic diagram of the rotating sleeve of the utility model;
[0024] Figure 4 It is the whole structure schematic diagram of the moving block of the utility model;
[0025] Figure 5 It is the whole structure schematic diagram of the support plate three of the utility model;
[0026] Figure 6 It is the whole structure schematic view of the half container of the utility model;
[0027] Figure 7 It is the whole structure schematic view of the hook plate of the utility model;
[0028] Figure 8 It is the whole structure schematic view of the limiting plate of the utility model;
[0029] Figure 9 It is the whole structure schematic view of the frying plate of the utility model.
[0030] In the drawing, the component list represented by each sign is as follows:
[0031] 1, transmission mechanism; 101, shell; 102, egg placing frame; 103, chicken egg; 104, motor one; 105, right-angle speed reducer one; 106, rotating shaft one; 107, chain; 108, rotating sleeve; 109, motor two; 110, right-angle speed reducer two; 111, rotating shaft two; 112, friction sleeve; 2, egg breaking mechanism; 201, support plate one; 202, motor three; 203, threaded rod; 204, support plate two; 205, limiting rod one; 206, moving block; 207, fixed frame; 2071, fixed shaft; 208, half container; 2081, baffle; 2082, fixed column; 2083, return spring; 209, connecting plate one; 210, connecting plate two; 212, support plate three; 213, limiting shell; 214, gradually convex block; 215, rotating rod; 216, connecting plate three; 217, lifting rod; 218, hook plate; 219, sliding plate; 220, shell breaking plate; 221, spring; 222, sliding rod; 223, limiting plate; 224, limiting block one; 225, limiting block two; 3, frying mechanism; 301, frying plate; 302, motor four; 303, gear shaft one; 304, rack one; 305, heating chamber; 306, motor five; 307, gear shaft two; 308, rack two; 309, fixed shell; 310, fixed plate; 311, pushing plate; 312, connecting rod; 313, pushing plate. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0033] Please refer to Figures 1-9As shown, the utility model is a kind of equipment that can fry and bake eggs simultaneously, including transmission mechanism 1, transmission mechanism 1 includes shell 101, shell 101 top is fixedly connected with egg frame 102, shell 101 inside is provided with egg 103, still include;
[0034] Break egg mechanism 2, break egg mechanism 2 includes support plate one 201 fixedly connected in the top of the inner wall of shell 101, support plate one 201 back is fixedly connected with motor three 202, and the output end of motor three 202 is fixedly connected with threaded rod 203;
[0035] Fry and bake mechanism 3, fry and bake mechanism 3 includes fry plate 301 fixedly connected in the bottom of the inner wall of shell 101, and the front surface of the inner wall of shell 101 is fixedly connected with motor four 302, and the output end of motor four 302 is fixedly connected with gear shaft one 303.
[0036] The left side of the inner wall of the shell 101 is fixedly connected with a right-angle speed reducer one 105, the right side of the right-angle speed reducer one 105 is fixedly connected with a motor one 104, the output end of the motor one 104 is fixedly connected with the input end of the right-angle speed reducer one 105, the output end of the right-angle speed reducer one 105 is fixedly connected with a rotating shaft one 106, the outer surface of the rotating shaft one 106 is meshingly connected with a chain 107, the inner wall of the chain 107 is rotatably connected with a rotating sleeve 108, the inner wall of the shell 101 is fixedly connected with a motor two 109, the right side of the motor two 109 is fixedly connected with a right-angle speed reducer two 110, the output end of the motor two 109 is fixedly connected with the input end of the right-angle speed reducer two 110, the output end of the right-angle speed reducer two 110 is fixedly connected with a rotating shaft two 111, the outer surface of the rotating shaft two 111 is fixedly connected with two friction sleeves 112, the egg 103 is placed in the egg placing frame 102, the egg 103 will automatically slide to between the two rotating sleeves 108, at the same time, the motor one 104 is started, the motor one 104 will drive the rotating shaft one 106 to rotate through the right-angle speed reducer one 105, the rotating shaft one 106 will drive the two chains 107 to move in the process of rotating, the chains 107 will drive the several rotating sleeves 108 to move in the process of moving, at this time, the egg 103 will move together with the rotating sleeve 108, when the rotating sleeve 108 carrying the egg 103 moves to the outer surface thereof being in contact with the outer surface of the friction sleeve 112, the motor one 104 is controlled to stop running, and the motor two 109 is started, the motor two 109 will drive the rotating shaft two 111 to rotate through the right-angle speed reducer two 110, the rotating shaft two 111 will drive the two friction sleeves 112 to rotate in the process of rotating, at this time, the friction sleeve 112 will drive the rotating sleeve 108 to rotate alone through the friction force, and then drive the egg 103 to rotate, the direction of the egg 103 is automatically adjusted, a plurality of eggs can be placed at one time through this design, the rotating sleeve 108 is plastic, the egg 103 can be placed at random in the state of not affecting transportation, at the same time, the egg 103 can be automatically adjusted through the rotation of the subsequent rotating sleeve 108, which is convenient for subsequent operation.
[0037] The outer surface of the threaded rod 203 is rotationally connected with the support plate two 204, the top of the support plate two 204 is fixedly connected with the inner wall top of the shell 101, the inner wall of the support plate two 204 is fixedly connected with the limiting rod one 205, the outer surface of the limiting rod one 205 is fixedly connected with the inner wall of the support plate one 201, the outer surface of the threaded rod 203 is threadedly connected with the moving block 206, the inner wall of the moving block 206 is slidably connected with the outer surface of the limiting rod one 205, and the bottom of the moving block 206 is fixedly connected with the fixed frame 207; after the eggs 103 are adjusted, the motor two 109 is turned off, the motor one 104 is started to continue to drive the eggs 103 to move, the adjusted eggs 103 will directly fall into the two half containers 208, at this time, the motor one 104 is turned off, the motor three 202 is started to drive the threaded rod 203 to rotate, the threaded rod 203 will drive the moving block 206 to move to the front in the process of rotating, and the moving block 206 will drive the fixed frame 207 to integrally move in the process of moving.
[0038] The outer wall of the fixed frame 207 is fixedly connected with two fixed shafts 2071, the outer surfaces of the two fixed shafts 2071 are both rotationally connected with a half container 208, the two half containers 208 are meshedly connected, the bottoms of the two half containers 208 are respectively fixedly connected with fixed columns 2082, the left side of the fixed frame 207 is provided with a return spring 2083, the front face and the back face of the return spring 2083 are respectively fixedly connected with the outer walls of the two fixed columns 2082, the outer wall of the half container 208 close to the front face is fixedly connected with a connecting plate one 209, the outer wall of the half container 208 close to the back face is fixedly connected with a connecting plate two 210, the inner wall of the shell 101 is fixedly connected with a supporting plate three 212 on the right side, the left side of the supporting plate three 212 is fixedly connected with a limiting shell 213, the left side of the supporting plate three 212 is fixedly connected with three gradually convex blocks 214, the bottom of the supporting plate three 212 is also fixedly connected with a gradually convex block 214, the bottom of the supporting plate three 212 is in contact with a rotating rod 215, the outer surface of the rotating rod 215 is rotationally connected with the inner wall of the fixed frame 207, the outer wall of the rotating rod 215 is in contact with a connecting plate three 216, the inner wall of the connecting plate three 216 is slidably connected with a lifting rod 217, the outer surface of the lifting rod 217 is slidably connected with the inner wall of the fixed frame 207, the inner wall of the lifting rod 217 is rotationally connected with a hook plate 218, the outer surface of the hook plate 218 is rotationally connected with the inner wall of the half container 208, the outer wall of the hook plate 218 is in contact with a sliding plate 219, the left side of the sliding plate 219 is fixedly connected with a shell breaking plate 220, when the rotating rod 215 moves to be in contact with the gradually convex block 214 corresponding to it, as it continues to move, the rotating rod 215 will rotate around the connection between it and the fixed frame 207, thereby driving the connecting plate three 216 to move upwards, the connecting plate three 216 will drive the hook plate 218 to move upwards in the process of moving upwards through the lifting rod 217, after the hook plate 218 moves upwards, it will be separated from the sliding plate 219, at this time, the sliding plate 219 can move freely left and right, and at this time, the sliding rod 222 is also no longer limited by the limiting shell 213, therefore, the sliding plate 219 will move to the left side under the contraction of the spring 221, the sliding plate 219 will drive the shell breaking plate 220 to move in the process of moving.
[0039] The inner wall of the sliding plate 219 is fixedly connected with a spring 221, one end of the spring 221 away from the sliding plate 219 is fixedly connected with a baffle 2081, the outer surface of the baffle 2081 is fixedly connected with the outer wall of the half container 208, the top of the inner wall of the fixed frame 207 is fixedly connected with a limiting block one 224, the inner wall of the limiting block one 224 is slidably connected with a sliding rod 222, the outer surface of the sliding rod 222 is fixedly connected with a limiting plate 223, the outer surface of the sliding plate 219 is slidably connected with a limiting block two 225, the outer wall of the limiting block two 225 is fixedly connected with the outer wall of the half container 208, the shell breaking plate 220 will break the eggshell of the egg 103 by impact force in the process of moving to the left, and when the connecting plate one 209 moves to contact the corresponding convex block 214, with the continuous movement of the connecting plate one 209, the connecting plate one 209 will rotate around the fixed shaft 2071 with the corresponding half container 208 under the action of the convex block 214, because the two half containers 208 are meshed and connected, the half container 208 corresponding to the connecting plate one 209 will drive the other half container 208 to rotate in the opposite direction in the process of rotating, so that the two half containers 208 are away from each other at one end away from the connecting plate one 209, and the two shell breaking plates 220 are also driven to move away from each other, so as to push the egg 103 apart, the egg white and yolk in the egg 103 will fall between the two half containers 208, and the eggshell will be left in the two half containers 208 due to the limiting action of the shell breaking plate 220, at this time, the motor three 202 is controlled to reverse to drive the moving block 206 to move to the back, when the fixed frame 207 moves a distance, the two half containers 208 will be reset under the action of the reset spring 2083, and when the sliding rod 222 recontacts the limiting shell 213, with the continuous movement of the sliding rod 222 to the back, the sliding rod 222 will move to the right along the inner wall of the limiting shell 213, so as to reset the sliding plate 219 through the limiting plate 223, at this time, the hook plate 218 will move downward under the action of gravity and rehook the sliding plate 219, when the fixed frame 207 moves to the initial position as a whole, the fixed frame 207 is continuously driven to move to the back through the moving block 206, until the connecting plate two 210 contacts the corresponding convex block 214, with the connecting plate two 210 being continuously driven to the back, the connecting plate two 210 will drive the half container 208 close to the back to rotate around the corresponding fixed shaft 2071 under the action of the corresponding convex block 214, so that the two half containers 208 are away from each other at one end away from the connecting plate two 210, at this time, the eggshell will fall into the waste discharge channel from the two half containers 208 without the limitation of the shell breaking plate 220, after the above work is completed, the fixed frame 207 is driven as a whole to move to the front again through the control of the motor three 202, until the fixed frame 207 as a whole returns to the initial position, and the motor three 202 is turned off, at this time, the egg breaking work is completed,At the same time, it can also reduce labor costs.
[0040] The gear shaft one 303 is connected with the rack one 304 in front engagement, the outer surface of the rack one 304 is connected with the inner wall of the shell 101 in sliding connection, the bottom of the rack one 304 is fixedly connected with the heating chamber 305, the fallen egg white and egg yolk will fall above the frying plate 301, at this time, the heated frying plate 301 will fry the eggs, at the same time, the motor four 302 and the heating chamber 305 are started, the motor four 302 will drive the gear shaft one 303 to rotate, the gear shaft one 303 will drive the rack one 304 to move to the right side in the process of rotating, the rack one 304 will drive the heating chamber 305 to move to the right side, until the heating chamber 305 covers the frying plate 301, at this time, the eggs can be heated and baked by the heating chamber 305, and the egg white and egg yolk can also be shielded.
[0041] The bottom of the shell 101 is fixedly connected with the motor five 306, the output end of the motor five 306 is fixedly connected with the gear shaft two 307, the outer surface of the gear shaft two 307 is connected with the inner wall of the shell 101 in rotation, the left side of the gear shaft two 307 is fixedly connected with the rack two 308, the outer surface of the rack two 308 is connected with the inner wall of the shell 101 in sliding connection, the top of the rack two 308 is fixedly connected with the fixed shell 309, the inner wall of the fixed shell 309 is rotatably connected with the pushing plate 311, the outer surface of the pushing plate 311 is slidably connected with the fixed plate 310, the outer surface of the fixed plate 310 is fixedly connected with the inner wall of the shell 101, the right side of the pushing plate 311 is fixedly connected with the connecting rod 312, the top of the fixed plate 310 is fixedly connected with the pushing plate 313, after frying and baking, the motor four 302 is restarted to drive the heating chamber 305 to move to the left side, so that the heating chamber 305 is reset, then the motor five 306 is started to drive the gear shaft two 307 to rotate, the gear shaft two 307 will drive the fixed shell 309 to move to the front through the rack two 308, the fixed shell 309 will drive the pushing plate 311 to move in the process of moving, so that the fried eggs are automatically pushed out through the pushing plate 311, and the pushing plate 311 will also drive the connecting rod 312 to move in the process of moving, when the connecting rod 312 contacts with the pushing plate 313, with the continuous movement of the pushing plate 311, the upper end of the connecting rod 312 is pushed to the back by the pushing plate 313, the connecting rod 312 will rotate around the connection between the connecting rod 312 and the pushing plate 311, so as to drive the pushing plate 311 to rotate, so that the processed eggs cannot be completely discharged on the pushing plate 311, this design can automatically process the fallen egg white and egg yolk, and at the same time, the work of heating and frying is carried out, so as to achieve the double-layer effect together, which can speed up the frying of eggs, and at the same time, the whole and good-looking eggs can be kept, and the fried eggs have a runny center, which meets the eating habit of people in Guangdong and Guangxi to eat runny egg rice.
[0042] One specific application of the embodiment is:
[0043] In use of the device, first install the device to the designated position, and heat the frying plate 301, the frying plate 301 is internally provided with a resistance wire heating element, the frying plate 301 can be heated, the egg 103 is placed in the egg frame 102, the egg 103 will automatically slide to the two rotating sleeves 108, and the motor one 104 is started, the motor one 104 drives the rotating shaft one 106 to rotate through the right-angle speed reducer one 105, the rotating shaft one 106 drives the two chains 107 to move in the rotating process, the chains 107 drive the several rotating sleeves 108 to move in the moving process, the egg 103 moves with the rotating sleeves 108 at this time, when the rotating sleeve 108 carrying the egg 103 moves to the outer surface in contact with the outer surface of the friction sleeve 112, the control motor one 104 stops running, and the motor two 109 is started, the motor two 109 drives the rotating shaft two 111 to rotate through the right-angle speed reducer two 110, the rotating shaft two 111 drives the two friction sleeves 112 to rotate in the rotating process, the friction sleeve 112 drives the rotating sleeve 108 to rotate alone at this time, and the egg 103 is driven to rotate, the direction of the egg 103 is automatically adjusted, a plurality of eggs can be put at one time, the rotating sleeve 108 is plastic, the egg 103 can be placed at random in the state of not affecting transportation, and the egg 103 can be automatically adjusted through the rotation of the subsequent rotating sleeve 108, so that the subsequent operation is facilitated;
[0044] After the egg 103 is adjusted, the motor two 109 is turned off, the motor one 104 is started to continue to drive the egg 103 to move, the adjusted egg 103 will directly fall into the two half containers 208, at this time the motor one 104 is turned off, the motor three 202 is started to drive the threaded rod 203 to rotate, the threaded rod 203 will drive the moving block 206 to move forward during the rotation, the moving block 206 will drive the fixed frame 207 to move as a whole during the movement, when the rotating rod 215 moves to contact the corresponding convex block 214, with the continuous movement, the rotating rod 215 will rotate around the connection with the fixed frame 207, thereby driving the connecting plate three 216 to move upward, the connecting plate three 216 will drive the hook plate 218 to rotate upward through the lifting rod 217 during the upward movement, the hook plate 218 will rotate around the connection with the corresponding half container 208 during the rotation, which will be separated from the sliding plate 219, at this time the sliding plate 219 can move freely left and right, and the sliding rod 222 is no longer limited by the limiting shell 213 at this time, so the sliding plate 219 will move to the left under the contraction of the spring 221, the sliding plate 219 will drive the shell breaking plate 220 and the limiting plate 223 to move during the movement, the shell breaking plate 220 will break the eggshell 103 by impact force during the left movement, at the same time, when the connecting plate one 209 moves to contact the corresponding convex block 214, with the continuous movement of the connecting plate one 209, the connecting plate one 209 will drive the corresponding half container 208 to rotate around the fixed shaft 2071 under the action of the convex block 214, since the two half containers 208 are meshed and connected, the half container 208 corresponding to the connecting plate one 209 will drive the other half container 208 to rotate in the opposite direction during the rotation, thereby making the two half containers 208 move away from each other at the end away from the connecting plate one 209, the two half containers 208 will also drive the two shell breaking plates 220 to move away from each other, thereby breaking the egg 103, the egg white and yolk in the egg 103 will fall from between the two half containers 208, and the eggshell will be left in the two half containers 208 due to the limiting action of the shell breaking plate 220, at this time the motor three 202 is controlled to reverse to drive the moving block 206 to move backward, when the fixed frame 207 moves a distance, the two half containers 208 will be reset under the action of the reset spring 2083, and when the sliding rod 222 recontacts the limiting shell 213, with the continuous movement of the sliding rod 222 to the back, the sliding rod 222 will move to the right along the inner wall of the limiting shell 213, thereby driving the sliding plate 219 to reset through the limiting plate 223, at this time the hook plate 218 will move downward under the action of gravity and rehook the sliding plate 219, when the fixed frame 207 moves to the initial position as a whole, the fixed frame 207 is continued to be driven by the moving block 206 to move backward, until the connecting plate two 210 and the corresponding convex block 214 are in contact, with the continuous movement of the connecting plate two 210 to the back,The connecting plate two 210 will drive the half container 208 close to the back to rotate around the corresponding fixed shaft 2071 under the action of the corresponding tapered block 214, so that the two half containers 208 are away from each other at the end away from the connecting plate two 210. At this time, the eggshell will fall into the waste channel between the two half containers 208 due to the limitation of the breaking plate 220. After the above work is completed, the fixed frame 207 is driven as a whole by the control motor three 202 to move to the front again until the fixed frame 207 returns to the initial position, and the motor three 202 is turned off. At this time, the egg breaking work is completed. This design can automatically break the shell and separate the eggshell and the material inside the eggshell, without manual operation, which can improve work efficiency and reduce labor cost.
[0045] In the above process, the fallen egg white and yolk will fall above the frying plate 301. At this time, the heated frying plate 301 will perform the egg frying work, and the motor four 302 and the heating chamber 305 are started. The motor four 302 drives the gear shaft one 303 to rotate, and the gear shaft one 303 drives the rack one 304 to move to the right side during rotation. The rack one 304 drives the heating chamber 305 to move to the right side, until the heating chamber 305 covers the frying plate 301. At this time, the egg can be heated and baked by the heating chamber 305, and the egg white and yolk can also be shielded. After the frying and baking are completed, the motor four 302 is restarted to drive the heating chamber 305 to move to the left side, so that the heating chamber 305 is reset. Then, the motor five 306 is started to drive the gear shaft two 307 to rotate, and the gear shaft two 307 drives the fixed shell 309 to move to the front through the rack two 308. The fixed shell 309 drives the pushing plate 311 to move during movement, so that the fried egg is automatically pushed out by the pushing plate 311. The pushing plate 311 also drives the connecting rod 312 to move during movement. When the connecting rod 312 contacts the pushing plate 313, the pushing plate 313 pushes the upper end of the connecting rod 312 to the back as the pushing plate 311 continues to move. The connecting rod 312 rotates around its connection with the pushing plate 311, thereby driving the pushing plate 311 to rotate, preventing some processed eggs from remaining on the pushing plate 311 and being unable to be completely discharged. This design can automatically process the fallen egg white and yolk, and simultaneously perform heating and frying work, achieving a double-layer effect. The fried egg is kept intact and good-looking, and the fried egg has a runny center, which meets the habit of eating runny egg rice in Guangdong and Guangxi.
[0046] In the description of the specification, the description of the terms "one embodiment", "an example", "a specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0047] The preferred embodiments of the utility model disclosed above are only used for helping to set forth the utility model. The preferred embodiments do not describe all the details exhaustively, and also do not limit the utility model to only the specific embodiments described. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the utility model, so that the persons skilled in the art can well understand and utilize the utility model. The utility model is limited only by the claims and the entire scope and equivalents thereof.
Claims
1. A simultaneous frying and baking egg device, comprising a conveying mechanism (1), wherein the conveying mechanism (1) comprises a shell (101), a frame (102) is fixedly connected to the top of the shell (101), and a chicken egg (103) is arranged in the shell (101), characterized in that, Also includes: The broken egg mechanism (2) includes a support plate one (201) fixedly connected to the top of the inner wall of the shell (101), the back of the support plate one (201) is fixedly connected with the motor three (202), the output end of the motor three (202) is fixedly connected with the threaded rod (203); The frying mechanism (3) includes a frying plate (301) fixedly connected to the bottom of the inner wall of the shell (101), the front of the inner wall of the shell (101) is fixedly connected with the motor four (302), the output end of the motor four (302) is fixedly connected with the gear shaft one (303).
2. A simultaneous poaching and baking egg apparatus as claimed in claim 1, wherein, The outer wall of the shell (101) is fixedly connected with a right-angle speed reducer one (105), the right side of the right-angle speed reducer one (105) is fixedly connected with a motor one (104), the output end of the motor one (104) is fixedly connected with the input end of the right-angle speed reducer one (105), the output end of the right-angle speed reducer one (105) is fixedly connected with a rotating shaft one (106), the outer surface of the rotating shaft one (106) is meshingly connected with a chain (107), the inner wall of the chain (107) is rotatably connected with a rotating sleeve (108), the inner wall of the shell (101) is fixedly connected with a motor two (109), the right side of the motor two (109) is fixedly connected with a right-angle speed reducer two (110), the output end of the motor two (109) is fixedly connected with the input end of the right-angle speed reducer two (110), the output end of the right-angle speed reducer two (110) is fixedly connected with a rotating shaft two (111), the outer surface of the rotating shaft two (111) is fixedly connected with two friction sleeves (112).
3. A simultaneous poaching and baking egg apparatus as claimed in claim 2, wherein, The outer surface of the threaded rod (203) is rotatably connected with a support plate two (204), the top of the support plate two (204) is fixedly connected with the inner wall of the shell (101), the inner wall of the support plate two (204) is fixedly connected with a limiting rod one (205), the outer surface of the limiting rod one (205) is fixedly connected with the inner wall of the support plate one (201), the outer surface of the threaded rod (203) is threadedly connected with a moving block (206), the inner wall of the moving block (206) is slidably connected with the outer surface of the limiting rod one (205), the bottom of the moving block (206) is fixedly connected with a fixed frame (207).
4. A simultaneous poaching and baking egg apparatus as claimed in claim 3, wherein, The outer wall of the fixed frame (207) is fixedly connected with two fixed shafts (2071), the outer surfaces of the two fixed shafts (2071) are rotationally connected with two half containers (208), the two half containers (208) are meshedly connected, the bottoms of the two half containers (208) are fixedly connected with two fixed columns (2082) respectively, the left side of the fixed frame (207) is provided with a reset spring (2083), the front face and the back face of the reset spring (2083) are fixedly connected with the outer walls of the two fixed columns (2082) respectively, the outer wall of the half container (208) close to the front face is fixedly connected with a connecting plate one (209), the outer wall of the half container (208) close to the back face is fixedly connected with a connecting plate two (210), the inner wall of the shell (101) is fixedly connected with a supporting plate three (212) on the right side, the left side of the supporting plate three (212) is fixedly connected with a limiting shell (213), the left side of the supporting plate three (212) is fixedly connected with three gradually convex blocks (214), the bottom of the supporting plate three (212) is also fixedly connected with a gradually convex block (214), the bottom of the supporting plate three (212) is in contact with a rotating rod (215), the outer surface of the rotating rod (215) is rotationally connected with the inner wall of the fixed frame (207), the outer wall of the rotating rod (215) is in contact with a connecting plate three (216), the inner wall of the connecting plate three (216) is slidably connected with a lifting rod (217), the outer surface of the lifting rod (217) is slidably connected with the inner wall of the fixed frame (207), the inner wall of the lifting rod (217) is rotationally connected with a hook plate (218), the outer surface of the hook plate (218) is rotationally connected with the inner wall of the half container (208), the outer wall of the hook plate (218) is in contact with a sliding plate (219), the left side of the sliding plate (219) is fixedly connected with a shell breaking plate (220).
5. A simultaneous poaching and baking egg apparatus as claimed in claim 4, wherein, The inner wall of the sliding plate (219) is fixedly connected with a spring (221), one end of the spring (221) away from the sliding plate (219) is fixedly connected with a baffle (2081), the outer surface of the baffle (2081) is fixedly connected with the outer wall of the half container (208), the inner wall of the fixed frame (207) is fixedly connected with a limiting block one (224) on the top, the inner wall of the limiting block one (224) is slidably connected with a sliding rod (222), the outer surface of the sliding rod (222) is fixedly connected with a limiting plate (223), the outer surface of the sliding plate (219) is slidably connected with a limiting block two (225), the outer wall of the limiting block two (225) is fixedly connected with the outer wall of the half container (208).
6. A simultaneous poaching and baking egg apparatus as claimed in claim 5, wherein, The front face of the gear shaft one (303) is meshedly connected with a rack one (304), the outer surface of the rack one (304) is slidably connected with the inner wall of the shell (101), and the bottom of the rack one (304) is fixedly connected with a heating chamber (305).
7. A simultaneous poaching and baking egg apparatus as claimed in claim 6, wherein, The bottom of the shell (101) is fixedly connected with motor five (306), the output end of motor five (306) is fixedly connected with gear shaft two (307), the outer surface of gear shaft two (307) is rotatably connected with the inner wall of shell (101), the left side of gear shaft two (307) is fixedly connected with rack two (308), the outer surface of rack two (308) is slidably connected with the inner wall of shell (101), the top of rack two (308) is fixedly connected with fixed shell (309), the inner wall of fixed shell (309) is rotatably connected with push material plate (311), the outer surface of push material plate (311) is slidably connected with fixed plate (310), the outer surface of fixed plate (310) is fixedly connected with the inner wall of shell (101), the right side of push material plate (311) is fixedly connected with connecting rod (312), the top of fixed plate (310) is fixedly connected with push plate (313).