Egg yellowing fixing machine
The automated design of the egg yolk fixing machine eliminates the need for manual handling after the eggs are cooked, improving processing efficiency and product quality, and solving the problem of time-consuming and labor-intensive manual operation in existing technologies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TAIXING AEROSPACE MACHINERY TECHNOLOGY CO LTD
- Filing Date
- 2026-03-24
- Publication Date
- 2026-05-05
AI Technical Summary
In the existing egg yolk removal process, after the eggs are cooked, they need to be manually removed one by one and placed into a collection container, which is time-consuming and labor-intensive, making it difficult to meet the needs of batch processing and resulting in low overall processing efficiency.
Design an egg yolk setter that uses a shared geared motor as the power source for both the yolk setter and the moving component to achieve full automation. Through roller rotation, steam heating, cooked egg pushing, and stepping movement of the collection box, a multi-stage linkage of mechanical transmission is achieved without manual intervention, automatically pushing the cooked eggs for collection.
Significantly reduce manual operation steps, improve processing efficiency, ensure accurate yolk centering, avoid egg breakage, and improve product quality.
Smart Images

Figure CN121970910A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of food processing machinery technology, specifically to an egg yolk fixing machine. Background Technology
[0002] Food processing machinery refers to specialized mechanical equipment applied to the entire process of food raw materials, semi-finished products and finished products. It is an important component of light industrial machinery. It is mainly used for physical and mechanical processing of various food raw materials, such as cleaning, sorting, crushing, pressing, mixing, shaping, cooking, sterilizing, cooling and packaging, so as to realize the large-scale, automated and standardized production of food.
[0003] In the existing egg yolk setting process, after the workers have finished feeding the eggs, they need to manually monitor the heating status during the yolk setting process. After the eggs are cooked, they also need to be manually removed from the yolk setting station one by one and placed into the collection container. The high degree of manual involvement is not only time-consuming and labor-intensive, but also makes it difficult to meet the batch processing needs of egg yolk setting, resulting in low overall processing efficiency.
[0004] Therefore, we proposed an egg yolk fixing machine to solve the problems mentioned above. Summary of the Invention
[0005] The purpose of this invention is to provide an egg yolk setting machine to solve the problem mentioned in the background art that in the existing egg yolk setting process, after the eggs are cooked, they still need to be manually removed from the yolk setting station and placed into the collection container one by one. This is not only time-consuming and labor-intensive, but also difficult to adapt to the batch processing needs of egg yolk setting, resulting in low overall processing efficiency.
[0006] To achieve the above objectives, the present invention provides the following technical solution: an egg yolk fixing machine, comprising a base body, a yolk fixing component, and a moving component. The yolk fixing component is disposed inside the base body, and the moving component is symmetrically disposed on both sides of the yolk fixing component. The yolk fixing component includes several parallel rollers, each roller having a roller fixedly fitted on its outer surface. A reduction motor body is fixedly connected to one outer surface of the base body by screws. An output shaft is fixedly connected to the output end of the reduction motor body. A first roller is fixedly fitted on the outer surface of the output shaft. A second roller is fixedly fitted on the outer surface of each of the rollers near the end of the reduction motor body. The moving component includes four planetary gear reducer bodies. A reduction shaft is fixedly connected to the output end of each of the four planetary gear reducer bodies. A first rotating plate is fixedly fitted on the outer surface of each of the four reduction shafts. The input ends of the four planetary gear reducer bodies are respectively fixedly connected to the ends of two rollers.
[0007] Preferably, the outer surfaces of several rollers are movably engaged with the inner wall of the machine base body near both ends, and the inner walls of the four first rotating plates are fixedly embedded with first rotating shafts near one edge.
[0008] Preferably, the four planetary gear reducer bodies are installed in pairs on the outer walls of both sides of the base body. The outer surface of the first roller is movably engaged with the track, and the outer surfaces of several second rollers are engaged with the inner walls of the track. The several second rollers are connected to the first rollers through the track.
[0009] Preferably, a plurality of first sliding shafts are fixedly connected to the inner wall of the base body and below the rollers, and a second sliding shaft is slidably sleeved on the outer surface of each of the plurality of first sliding shafts. A spring is sleeved on the inner wall of the base body and outside each of the second sliding shafts.
[0010] Preferably, one end of each of the springs is fixedly connected to the inner wall of the base body, and each pair of the first sliding shafts is a group, with a louvered plate fixedly connected between one end of each pair of the first sliding shafts in each group.
[0011] Preferably, the springs are grouped in pairs, and the ends of the two springs in each group that are away from the base body are fixedly connected to the outer surface of the corresponding louver near both sides. Movable plates are fixedly connected to both sides of the outer surface of the louver.
[0012] Preferably, the inner wall of the base body is movably fitted with several movable shafts, and the several movable shafts are grouped in pairs. A collection box is fixedly connected between the two ends of each pair of movable shafts, and the inner wall of the several collection boxes is lined with soft pads.
[0013] Preferably, the outer surfaces of both sides of the base body are provided with placement grooves, the four first rotating shafts are arranged in pairs, and a first moving plate is movably sleeved between the outer surfaces of the two pairs of first rotating shafts, and the first moving plate adapts and engages the moving shaft in the placement groove.
[0014] Preferably, a second rotating shaft is fixedly embedded in the inner wall of each of the two first movable plates near the two side edges, and a second rotating plate is fixedly connected to the end of each of the four second rotating shafts away from the first movable plate.
[0015] Preferably, a third rotating shaft is fixedly connected to one side of the outer surface of each of the four second rotating plates near the edge. The four third rotating shafts are grouped in pairs, and a second moving plate is fixedly sleeved between the outer surfaces of the two third rotating shafts in each group. The electromagnetic steam engine body is provided on the inner wall of the base body at the bottom.
[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. The yolk fixing component and the moving component of this device share the same geared motor as the power source, realizing full automation of the process after feeding without manual intervention: the roller rotation, steam heating, cooked egg pushing, and collection box step movement are completed through multi-level linkage of mechanical transmission. After the eggs are cooked, the moving component will automatically push the movable plate and louvered plate to push the cooked eggs out from between the rollers, while driving the collection box to step and switch positions to realize continuous collection of cooked eggs. There is no need for manual removal and placement of eggs one by one, which greatly reduces the number of manual operation steps and improves the processing efficiency of egg yolk fixing.
[0017] 2. This device uses a geared motor to drive all rollers to rotate synchronously at a slow speed. The friction between the rollers and the eggs causes the eggs to rotate at a uniform speed. At the same time, the steam from the electromagnetic steam generator at the bottom heats the eggs evenly. The eggs are cooked during the rotation process, and the yolks remain in the center of the egg under the combined action of centrifugal force and thermal motion, which in principle ensures the accuracy of yolk centering. Furthermore, the steam heating through the gaps in the louvers allows the eggs to be heated more evenly, effectively preventing local burning. This ensures that the yolks of every processed egg are consistently centered, improving product quality.
[0018] 3. The device has a soft pad on the inner wall of the collection box, which can effectively cushion the cooked eggs falling from the rollers, preventing the eggs from being damaged or cracked due to impact, and greatly reducing the loss of eggs during processing. On the other hand, the louvered plate is connected to a spring and sliding shaft structure, which has a certain buffer and adjustment space when pushing the eggs, and can be adapted to eggs of different sizes, improving the flexibility of the device. Attached Figure Description
[0019] Figure 1 This is a front perspective view of an egg yolk fixing machine according to the present invention; Figure 2 This is a perspective view of the base body of an egg yolk fixing machine according to the present invention; Figure 3 This is a perspective view of the roller portion of an egg yolk fixing machine according to the present invention; Figure 4 This is a perspective view of the louvered plate portion of an egg yolk fixing machine according to the present invention; Figure 5 This is a perspective view of the planetary gear reducer body of an egg yolk fixing machine according to the present invention; Figure 6 This is a perspective view of the moving shaft portion of an egg yolk fixing machine according to the present invention; Figure 7 This is a perspective view of the collection box portion of an egg yolk fixing machine according to the present invention; Figure 8 This is a perspective view of the placement slot portion of an egg yolk fixing machine according to the present invention.
[0020] In the picture: 1. Base body; 2. Fixed yellow assembly; 201. Gear motor body; 202. Output shaft; 203. Track; 204. Roller; 205. Roller; 206. First roller; 207. Second roller; 208. First sliding shaft; 209. Second sliding shaft; 210. Spring; 211. Louver; 212. Movable plate; 213. Moving shaft; 214. Collection box; 215. Soft pad; 216. Placement slot; 3. Moving assembly; 301. Planetary gear reducer body; 302. Gear reduction shaft; 303. First rotating plate; 304. First rotating shaft; 305. First moving plate; 306. Second rotating shaft; 307. Second rotating plate; 308. Third rotating shaft; 309. Second moving plate; 4. Electromagnetic steam engine body. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] Please see Figure 1-8The present invention provides a technical solution: an egg yolk fixing machine, including a base body 1, a yolk fixing component 2, and a moving component 3. The yolk fixing component 2 is disposed inside the base body 1, and the moving component 3 is symmetrically disposed on both sides of the yolk fixing component 2. The yolk fixing component 2 includes several parallel rollers 204, and rollers 205 are fixedly sleeved on the outer surface of each roller 204. A reduction motor body 201 is fixedly connected to one outer surface of the base body 1 by screws. An output shaft 202 is fixedly connected to the output end of the reduction motor body 201. A first roller 206 is fixedly sleeved on the outer surface of 202, and a second roller 207 is fixedly sleeved on the outer surface of several rollers 204 near one end of the geared motor body 201; the moving component 3 includes four planetary gear reducer bodies 301, the output ends of the four planetary gear reducer bodies 301 are fixedly connected to reduction shafts 302, the outer surfaces of the four reduction shafts 302 are fixedly sleeved with first rotating plates 303, and the input ends of the four planetary gear reducer bodies 301 are respectively fixedly connected to the two ends of two rollers 204 one by one. The inner wall of the base body 1 is fitted with several movable shafts 213. Each pair of movable shafts 213 forms a group, and a collection box 214 is fixedly connected to both ends of each group of two movable shafts 213. The inner walls of each collection box 214 are lined with soft pads 215. Placement slots 216 are provided on both outer surfaces of the base body 1. Four first rotating shafts 304 are grouped in pairs. A first movable plate 305 is movably fitted between the outer surfaces of two groups of first rotating shafts 304, and the first movable plate 305 adapts and engages the movable shafts 213 with the placement slots 216. Inside 16, the inner walls of the two first movable plates 305 are fixedly embedded with second rotating shafts 306 near the two side edges. The ends of the four second rotating shafts 306 away from the first movable plates 305 are fixedly connected to second rotating plates 307. The outer surfaces of the four second rotating plates 307 are fixedly connected to third rotating shafts 308 near the edge. The four third rotating shafts 308 are grouped in pairs. The outer surfaces of the two third rotating shafts 308 in each group are fixedly fitted with second movable plates 309. The inner wall of the base body 1 is provided with an electromagnetic steam engine body 4 at the bottom.
[0023] In this embodiment, when using an egg yolk fixing machine, the operator only needs to place the eggs to be processed one by one between two adjacent rollers 205 of the yolk fixing component 2. The parallel arrangement of the rollers 205 provides stable support for the eggs. No additional fixing or positioning of the eggs is required. After loading, no further manual operation is needed. The equipment can be started directly to enter the fully automated processing flow. The geared motor body 201 on one side of the machine base 1 is started. After the geared motor body 201 starts, it first drives the output shaft 202 and the first roller 206 to rotate. Through the conveyor belt 203, all rollers 206 are driven to rotate. 4. The roller 205 rotates slowly in the same direction, rotating with the roller 204 and causing the egg to rotate at a uniform speed. The bottom electromagnetic steam generator 4 is activated to continuously generate steam to evenly heat the rotating egg, achieving the cooking process of centering and shaping the yolk. During the cooking process, the power of the geared motor 201 is synchronously transmitted to the planetary gear reducer 301 of the moving component 3, which sequentially drives the reduction shaft 302 and the first rotating plate 303 to move. Through the multi-stage linkage of the first rotating shaft 304, the second rotating shaft 306, the second rotating plate 307, and the third rotating shaft 308, the second moving plate 309 is driven to drive the movable plate 212. Along with the louvered plate 211, cooked eggs are automatically pushed out from between the rollers 205. Simultaneously, the first moving plate 305 of the moving component 3 drives the moving shaft 213 to move in a stepping motion, achieving automatic switching of the collection box 214 position. Workers replenish empty collection boxes 214, and the collection box 214 with the most eggs moves into the placement slot 216, completing the continuous automatic collection of cooked eggs without the need for manual egg removal and placement. Once the collection box 214 is full, workers only need to collect and place the collection box 214 from the placement slot 216. After the operation is completed, the reduction motor body 201 and the electromagnetic steam are turned off. The main body 4, the yolk fixing component 2 and the moving component 3 of this device share the geared motor body 201 as the power source, realizing the full automation of the process without manual intervention after feeding: the rotation of the roller 204, steam heating, pushing of cooked eggs, and stepping movement of the collection box 214 are completed through multi-level linkage of mechanical transmission. After the eggs are cooked, the moving component 3 will automatically push the movable plate 212 and the louvered plate 211 to push the cooked eggs out from between the rollers 205, and at the same time drive the collection box 214 to step and switch positions to realize the continuous collection of cooked eggs. There is no need for manual removal and placement of eggs one by one, which greatly reduces the number of manual operation steps and improves the processing efficiency of yolk fixing.
[0024] like Figure 1-8As shown, the outer surfaces of several rollers 204 are movably engaged with the inner walls of the machine base body 1 near both ends. The inner walls of the four first rotating plates 303 are fixedly embedded with first rotating shafts 304 near one edge. The four planetary gear reducer bodies 301 are installed in pairs on the outer walls of the two sides of the machine base body 1. The outer surfaces of the first rollers 206 are movably engaged with the track 203. The outer surfaces of several second rollers 207 are engaged with the inner walls of the track 203, and the several second rollers 207 are connected to the first rollers 206 through the track 203.
[0025] In this embodiment, when an egg yolk fixing machine is in use, the operator places the eggs to be processed one by one steadily between two adjacent rollers 205 of the yolk fixing component 2. The parallel arrangement of the rollers 205 provides stable support for the eggs, ensuring that there is no risk of the eggs tipping over or slipping after placement. No additional fixing is required. Once the loading is completed, the next step can be carried out. The reduction motor body 201 on one side of the machine base body 1 is started. The reduction motor body 201 drives the output shaft 202 and the first roller 206 to rotate. Through the transmission of the crawler 203, all rollers 204 are driven to rotate synchronously and in the same direction at the same speed. When the rollers 204 rotate, the rollers 205 on their outer surface generate friction with the eggs, causing the eggs to rotate at a uniform speed with the rollers 205. While the roller 204 drives the egg to rotate, the electromagnetic steam generator 4 at the bottom of the base 1 is activated. The electromagnetic steam generator 4 continuously generates steam, providing a heat source for cooking the egg and setting the yolk. The steam generated by the electromagnetic steam generator 4 passes through the gaps in the louvers 211, heating the egg from all directions as it rotates at a uniform speed. The egg is gradually cooked during the continuous and stable rotation. During the cooking process, the yolk inside the egg remains in the center of the egg under the combined action of centrifugal force and thermal motion, ensuring the accuracy of yolk centering and preventing the yolk from shifting or sticking to the shell. The geared motor 201 and the electromagnetic steam generator 4 continue to operate until the egg is fully cooked. After the steam is dispersed through the gaps in the louvers 211, it allows all parts of the egg to be heated evenly, effectively avoiding localized burning or uneven cooking, ensuring that every processed egg reaches the desired doneness. The consistent centered yolk effect significantly improves the quality of egg yolk processing. After all eggs are cooked and yolks are set, first turn off the electromagnetic steam generator 4, then turn off the geared motor 201. Once the equipment has completely stopped, remove the processed eggs from between the rollers 205, completing the entire yolk setting process. This device drives all rollers 204 to rotate synchronously and slowly via the geared motor 201. The friction between the rollers 205 and the eggs causes the eggs to rotate at a uniform speed. Simultaneously, the steam from the electromagnetic steam generator 4 at the bottom heats the eggs evenly. As the eggs cook during rotation, the yolks remain centered due to the combined effects of centrifugal force and thermal motion, ensuring precise yolk centering in principle. Furthermore, the steam heating through the gaps in the louvers 211 allows for more even heating of the eggs, effectively preventing localized burning and ensuring consistent yolk centering in every processed egg, thus improving product quality.
[0026] like Figure 1-8As shown, several first sliding shafts 208 are fixedly connected to the inner wall of the base body 1 and below the roller 204. Second sliding shafts 209 are slidably sleeved on the outer surfaces of the several first sliding shafts 208. Springs 210 are sleeved on the inner wall of the base body 1 and outside each second sliding shaft 209. One end of each spring 210 is fixedly connected to the inner wall of the base body 1. The several first sliding shafts 208 are grouped in pairs. A louvered plate 211 is fixedly connected between one end of each pair of first sliding shafts 208 in each pair. The several springs 210 are grouped in pairs. The ends of each pair of springs 210 away from the base body 1 are fixedly connected to the outer surfaces of the corresponding louvered plates 211 near both sides. Movable plates 212 are fixedly connected to both sides of the outer surfaces of the several louvered plates 211.
[0027] In this embodiment, when using the egg yolk setting machine, the initial feeding operation is completed first. Eggs of different sizes are placed one by one between two adjacent rollers 205 of the yolk setting component 2 to ensure that the eggs are stably supported by the rollers 205. Then, the equipment is started to complete the cooking and yolk setting process. After the eggs are fully cooked, the moving component 3 of the equipment will drive the relevant components to push the movable plate 212. The movable plate 212 further drives the louvered plate 211 to move towards the rollers 205, pushing the cooked eggs between the rollers 205. Because springs 210 are connected to both sides of the louvered plate 211, and the springs 210 are connected to the sliding shaft structure composed of the first sliding shaft 208 and the second sliding shaft 209, the louvered plate 211 pushes the eggs without... When handling eggs of the same size, this structure provides corresponding buffering and adjustment space, flexibly adapting to eggs of different sizes. This ensures that eggs of all sizes can be smoothly pushed without causing jamming or breakage due to size differences. After the cooked egg is pushed out between the rollers 205 by the louvered plate 211, it will naturally fall from the rollers 205 into the collection box 214 below. The inner wall of the collection box 214 is pre-lined with a soft pad 215, which effectively cushions the falling cooked egg, offsetting the impact and preventing breakage or cracking due to impact, thus significantly reducing egg loss during processing. Simultaneously, after the eggs have finished falling and being collected, they fall into the collection box. While collecting the material, the power of the geared motor 201 continues to be transmitted to the planetary gear reducer 301 of the moving component 3, driving the reduction shaft 302 to continue rotating, thereby driving the first rotating plate 303 to complete the second half of its full rotation. The first rotating plate 303 drives the first moving plate 305 to move via the first rotating shaft 304. The first moving plate 305 then pulls the second moving plate 309 away from the fixed component 2 through the linkage of the second rotating shaft 306, the second rotating plate 307, and the third rotating shaft 308, until the second moving plate 309 is completely separated from the movable plate 212. The movable plate 212, under the elastic restoring force of the spring 210, drives the hundred The blade 211 returns to its initial position, and at the same time, the second sliding shaft 209 slides back to its original position along the first sliding shaft 208. The entire egg-pushing component is reset, ready to be pushed again after the next batch of eggs is cooked. The staff can directly take the cooked eggs out of the collection box 214 from the machine base 1. The device has a soft pad 215 on the inner wall of the collection box 214, which can effectively cushion the cooked eggs falling from the roller 205, preventing the eggs from being damaged or cracked due to impact, and greatly reducing the loss of eggs during processing. On the other hand, the louvered plate 211 is connected to the spring 210 and the first sliding shaft 208, which has a certain buffer and adjustment space when pushing eggs, and can adapt to eggs of different sizes, improving the flexibility of the device.
[0028] The usage and working principle of this device: When using an egg yolk fixing machine, the operator places the eggs to be processed one by one between two adjacent rollers 205 of the yolk fixing component 2. The parallel arrangement of the rollers 205 provides stable support for the eggs, ensuring that they will not tip over or slip during subsequent rotation, thus laying the foundation for centering and fixing the yolk. At this time, the reduction motor body 201 on one side of the machine base 1 is started. The output end of the reduction motor body 201 drives the output shaft 202 to rotate. The first... Roller 206 rotates accordingly; since the first roller 206 meshes with the second roller 207 at the ends of all rollers 204 through the track 203, the transmission action of the track 203 will drive all rollers 204 to rotate slowly in the same direction at the same speed; when the rollers 204 rotate, the rollers 205 on their outer surfaces rotate synchronously, and through the friction between the rollers 205 and the egg, the egg itself is driven to rotate at a uniform speed. At the same time that the rollers 204 drive the egg to rotate, the electromagnetic steam engine body 4 at the bottom of the base body 1 is started. 4. The heating chamber inside the base body 1 causes the water inside the base body 1 to rapidly heat up through electromagnetic induction, quickly bringing the water to a boiling state and continuously generating high-temperature saturated steam. The steam, passing through the gaps between the louvers 211, evenly heats the eggs between the two rollers 205. The eggs are heated under continuous, slow rotation, and the yolk inside remains centered under the combined action of centrifugal force and thermal motion until the eggs are fully cooked, achieving the core effect of a centered and fixed yolk. During the cooking process of the eggs, the planetary gear reducer body 301, which is connected to both ends of the roller 204, starts to work as the roller 204 rotates. Its output end drives the reduction shaft 302 to rotate, which in turn drives the first rotating plate 303 to rotate around the reduction shaft 302. The first rotating plate 303 drives the first moving plate 305 to move through the first rotating shaft 304. The first moving plate 305 then pushes the second moving plate 309 to move towards the yolk fixing component 2 through the multi-stage linkage of the second rotating shaft 306, the second rotating plate 307, and the third rotating shaft 308.At this time, the second movable plate 309 first contacts the movable plate 212 on the outside of the louvered plate 211, and pushes the movable plate 212 to move away from the roller 205. The movable plate 212 drives the louvered plate 211 to act directly on the cooked egg between the two rollers 205, pushing the egg out of the supporting position between the two rollers 205. The louvered plate 211 will drive the second sliding shaft 209 to slide along the axial direction of the first sliding shaft 208, while compressing and stretching the connected spring 210. Through the sliding of the first sliding shaft 208 and the second sliding shaft 209 and the elastic deformation of the spring 210, an adjustable range of motion is provided for the pushing action of the louvered plate 211. The egg pushed out by the louvered plate 211 will roll off the outer surface of the roller 205. The eggs fall into the collection box 214 below. The inner wall of the collection box 214 is lined with a soft pad 215 to cushion the falling eggs and prevent damage or cracking due to impact. While the second moving plate 309 pushes the eggs, the first moving plate 305 simultaneously drives its compatible moving shaft 213 to move stepwise within the machine base 1. The moving shaft 213 moves the collection box 214, causing it to switch positions as the shaft moves. Empty collection boxes 214 continuously move to the egg-dropping position of the roller 205. The collection box 214 with the most eggs moves into the placement slot 216, achieving continuous and orderly collection of cooked eggs and completing the entire egg yolk setting process.
[0029] The wiring diagrams of the geared motor body 201, the planetary gear reducer body 301, and the electromagnetic steam engine body 4 in this invention are common knowledge in the field. Their working principles are known technologies. The appropriate model is selected according to actual use. Therefore, the control method and wiring layout of the geared motor body 201, the planetary gear reducer body 301, and the electromagnetic steam engine body 4 will not be explained in detail.
[0030] In this invention, the geared motor body 201 adopts the 4IK25GN-C / 4GN75K model, the planetary gear reducer body 301 adopts the BPTAW45 series right-angle planetary reducer model, and the electromagnetic steam engine body 4 adopts the Zhongxin 52KG quick-install electromagnetic steam generator model.
[0031] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An egg yolk fixing machine, comprising a base body (1), characterized in that: It also includes a yellowing component (2) and a moving component (3), wherein the yellowing component (2) is disposed inside the base body (1), and the moving component (3) is symmetrically disposed on both sides of the yellowing component (2); The yellowing component (2) includes several parallel rollers (204), and rollers (205) are fixedly sleeved on the outer surface of each roller (204). A geared motor body (201) is fixedly connected to one side of the outer surface of the base body (1) by screws. An output shaft (202) is fixedly connected to the output end of the geared motor body (201). A first roller (206) is fixedly sleeved on the outer surface of the output shaft (202). A second roller (207) is fixedly sleeved on the outer surface of each roller (204) near the end of the geared motor body (201). The moving component (3) includes four planetary gear reducer bodies (301), and each of the four planetary gear reducer bodies (301) is fixedly connected to a reduction shaft (302). Each of the four reduction shafts (302) has a first rotating plate (303) fixedly fitted on its outer surface. The input ends of the four planetary gear reducer bodies (301) are respectively fixedly connected to the two ends of two rollers (204).
2. The egg yolk fixing machine according to claim 1, characterized in that: The outer surfaces of several rollers (204) are movably engaged with the inner wall of the machine base body (1) near both ends, and the inner walls of the four first rotating plates (303) are fixedly embedded with first rotating shafts (304) near one edge.
3. The egg yolk fixing machine according to claim 2, characterized in that: The four planetary gear reducer bodies (301) are installed in pairs on the outer walls of the two sides of the base body (1). The outer surface of the first roller (206) is movably engaged with the track (203). The outer surfaces of several second rollers (207) are engaged with the inner wall of the track (203), and several second rollers (207) are connected to the first roller (206) through the track (203).
4. The egg yolk fixing machine according to claim 3, characterized in that: A plurality of first sliding shafts (208) are fixedly connected to the inner wall of the base body (1) and below the roller (204). A second sliding shaft (209) is slidably sleeved on the outer surface of the plurality of first sliding shafts (208). A spring (210) is sleeved on the inner wall of the base body (1) and outside each second sliding shaft (209).
5. The egg yolk fixing machine according to claim 4, characterized in that: One end of each of the springs (210) is fixedly connected to the inner wall of the base body (1). Each pair of the first sliding shafts (208) forms a group, and a louver (211) is fixedly connected between one end of each pair of the first sliding shafts (208) in each group.
6. The egg yolk fixing machine according to claim 5, characterized in that: Several springs (210) are grouped in pairs. The ends of the two springs (210) in each group that are away from the base body (1) are fixedly connected to the outer surface of the corresponding louver (211) near both sides. Movable plates (212) are fixedly connected to both sides of the outer surface of several louver (211).
7. The egg yolk fixing machine according to claim 6, characterized in that: The inner wall of the base body (1) is movably fitted with several movable shafts (213). Each pair of movable shafts (213) forms a group, and a collection box (214) is fixedly connected between the two ends of each pair of movable shafts (213). The inner walls of the collection boxes (214) are covered with soft pads (215).
8. The egg yolk fixing machine according to claim 7, characterized in that: The base body (1) has placement slots (216) on both outer surfaces. The four first rotating shafts (304) are arranged in pairs. A first moving plate (305) is movably sleeved between the outer surfaces of the two pairs of first rotating shafts (304), and the first moving plate (305) adapts and snaps the moving shaft (213) into the placement slot (216).
9. The egg yolk fixing machine according to claim 8, characterized in that: The inner walls of the two first movable plates (305) are fixedly embedded with second rotating shafts (306) near the two side edges, and the ends of the four second rotating shafts (306) away from the first movable plates (305) are fixedly connected with second rotating plates (307).
10. The egg yolk fixing machine according to claim 9, characterized in that: A third rotating shaft (308) is fixedly connected to one side of the outer surface of each of the four second rotating plates (307) near the edge. The four third rotating shafts (308) are in pairs. A second moving plate (309) is fixedly sleeved between the outer surfaces of the two third rotating shafts (308) in each pair. An electromagnetic steam engine body (4) is provided on the inner wall of the base body (1) at the bottom.