Egg dumpling baking operation table
By introducing a quantitative filling mechanism into the egg dumpling baking equipment, the quantitative filling and synchronous coupling of egg paste are achieved, which solves the problem of long filling time and inconsistent raw and mature levels of egg paste, and improves the production efficiency and consistency of egg dumplings.
Patent Information
- Application Number
- CN202422090157.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing egg dumpling baking equipment lacks a quantitative filling mechanism for egg paste, which leads to a long filling time of egg paste and inconsistent degree of raw and cooked egg paste, affecting work efficiency and consistency.
An egg dumpling braising operation table including egg slurry bucket, slurry feeding tube, upper valve, dosing tank, lower valve and connecting rod assembly is designed. The connecting rod assembly drives the coordinated movement of the upper valve and lower valve to achieve the quantitative filling of egg slurry and the synchronous buckle of the mold to ensure that the egg slurry is simultaneously filled and formed uniform egg skin.
The quantitative filling of egg paste is achieved, which shortens the filling time, ensures the consistent raw and cooked degree of multiple egg dumplings, and improves the working efficiency and the consistency of the quality of egg dumplings.
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Figure CN223262203U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processing, in particular to an egg dumpling baking operating table. Background Art
[0002] Egg dumplings are a delicacy with a strong local flavor and traditional savory taste. They are made with egg as the skin and filled with various meat fillings. They have a fresh and fragrant taste, are rich in nutrition, and are deeply loved by people. Various egg dumpling baking devices have been proposed in the prior art, such as a manual electric heating and patterned egg dumpling mold with publication number CN208657958U. The egg dumpling mold includes a fixed template and a movable template. The movable template is fixed to the fixed template by a flip mechanism. The fixed template and the movable template are respectively provided with mutually cooperating arcuate grooves. The edges of the arcuate grooves on the movable template are provided with patterns. The fixed template and the movable template are also provided with electric heating pipes for heating the arcuate grooves. The utility model fills the arcuate grooves with a fixed amount of egg liquid, and the sizes are uniform. The egg dumplings wrapped in the mold have regular shapes.
[0003] However, the above-mentioned mold does not have a quantitative egg paste filling mechanism, which requires manual filling of egg paste into multiple grooves of the mold in sequence, which takes a long time. After filling the egg paste, the mold is flipped and closed. Since the egg paste is added at different times, the egg skins are formed at the same time, resulting in different degrees of doneness of multiple egg dumplings on the mold, which is not conducive to improving work efficiency and consistency of egg dumplings. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides an egg dumpling baking table which can achieve quantitative egg paste, and simultaneously add egg paste and buckle egg skin, so that multiple egg dumplings are cooked to the same degree, thereby improving work efficiency and egg dumpling consistency.
[0005] The utility model discloses an egg dumpling baking operating table, comprising a base plate, a supporting plate and a mold, wherein the supporting plate is mounted on the base plate, and the mold is mounted on the supporting plate; the utility model also comprises an egg slurry bucket, a slurry feeding pipe, multiple upper valves, multiple quantitative tanks, multiple lower valves and a connecting rod assembly, wherein the egg slurry bucket is mounted on the base plate through a bracket, the input end of the slurry feeding pipe is connected to the output end of the egg slurry bucket, the multiple output ends of the slurry feeding pipe are respectively connected to the input ends of the multiple upper valves, the output ends of the multiple upper valves are respectively connected to the input ends of the multiple quantitative tanks, positioning chambers are provided inside the multiple quantitative tanks, the output ends of the multiple quantitative tanks are respectively connected to the input ends of the multiple lower valves, the output ends of the multiple lower valves are respectively located above the multiple grooves of the mold, the multiple upper valves and the multiple lower valves are connected through a connecting rod assembly, and the connecting rod assembly drives the multiple upper valves to open at the same time while the multiple lower valves open at the same time. The egg slurry is stored in the egg slurry barrel, and the egg slurry is transported to the multiple upper valves through the slurry feeding pipe. The multiple upper valves are driven to open and the multiple lower valves are closed by the connecting rod assembly, so that the egg slurry is input into the quantitative chambers of the multiple quantitative tanks through the multiple upper valves for quantitative measurement. When the multiple grooves of the mold reach the set temperature, the multiple upper valves are closed and the multiple lower valves are opened by the connecting rod assembly, so that a certain amount of egg slurry is poured into the multiple grooves of the mold through the multiple lower valves. After the egg slurry is shaped in the multiple grooves of the mold, the filling is added, and the mold is buckled to form the egg dumplings, thereby achieving quantitative measurement of the egg slurry and simultaneously filling the multiple grooves of the mold with egg slurry. The filling time is short, and since the egg slurry is poured at the same time and the egg skins are formed by buckling at the same time, the multiple egg dumplings on the mold are made to the same degree of doneness, thereby improving work efficiency and consistency of the egg dumplings.
[0006] Preferably, the upper valve comprises an upper valve housing, an upper rotating shaft and an upper plug, the input end of the upper valve housing is connected to the output end of the slurry feeding pipe, the output end of the upper valve housing is connected to the input end of the quantitative tank, the upper rotating shaft is rotatably mounted on the upper valve housing, the upper plug is mounted on the upper rotating shaft, the upper plug is located inside the upper valve housing, and the upper plug blocks the input end of the upper valve housing; the lower valve comprises a lower valve housing, a lower rotating shaft and a lower plug, the input end of the lower valve housing is connected to the output end of the quantitative tank, the lower rotating shaft is rotatably mounted on the lower valve housing, the lower plug is mounted on the lower rotating shaft, the lower plug is located in the lower valve housing, the lower plug blocks the output end of the lower valve housing, and the upper rotating shaft and the lower rotating shaft are transmission-connected to the connecting rod assembly; at the beginning, the upper plug blocks the input end of the upper valve housing The upper and lower rotating shafts are driven to rotate counterclockwise at the same time by the connecting rod assembly, driving the upper and lower rotating shafts to rotate counterclockwise at the same time, so that the upper plug blocks the input end of the upper valve housing, and the lower plug opens the output end of the lower valve housing, so that the egg slurry is filled into the quantitative tank through the slurry feeding pipe and the upper valve to complete the quantitative operation. The upper and lower rotating shafts are driven to rotate counterclockwise at the same time by the connecting rod assembly, driving the upper and lower plugs to rotate counterclockwise at the same time, so that the upper plug blocks the input end of the upper valve housing, and the lower plug opens the output end of the lower valve housing, so that the egg slurry in the quantitative tank is discharged through the lower valve, thereby realizing the quantitative operation of the quantitative tank. The structure is simple and the practicability is good.
[0007] The axle up and down groove at two ends embeds respectively in two guide rails up and down of being made up of the groove on the attachment piece, and the tooth on the attachment piece is meshed with tooth on upper sprocket wheel, the lower sprocket.
[0008] Preferably, it also includes multiple sliding sleeve frames, multiple sliding rods, multiple floats and multiple blocking pieces, the tops of the multiple quantitative tanks are all provided with vent holes, the multiple sliding sleeve frames are respectively installed on the tops of the multiple quantitative tanks, the upper parts of the multiple sliding rods are respectively slidably inserted in the multiple sliding sleeve frames, the lower parts of the multiple sliding rods extend into the interiors of the multiple quantitative tanks, the lower ends of the multiple sliding rods are all provided with floats and blocking pieces, the multiple blocking pieces are all located above the multiple floats, and the multiple blocking pieces are larger than the through-holes of the multiple quantitative tanks; when the egg slurry is input into the interiors of the multiple quantitative tanks, the air inside the multiple quantitative tanks is discharged through the vent holes, when the egg slurry contacts the multiple floats, the buoyancy of the multiple floats lifts the multiple sliding rods and the multiple blocking pieces, when the multiple blocking pieces block the vent holes of the multiple quantitative tanks, the air inside the multiple quantitative tanks is no longer discharged, and the egg slurry in the multiple quantitative tanks is quantitatively measured; when the egg slurry in the multiple quantitative tanks is discharged outward, the multiple floats and the multiple blocking pieces descend, so that the external air enters the multiple quantitative tanks through the through-holes of the multiple quantitative tanks, which is convenient for rapid discharge of the egg slurry.
[0009] Preferably, it also includes multiple screws, the sliding rod is a threaded sleeve, the blocking piece is sleeved on the lower part of the sliding rod, the screw is rotated and threaded into the sliding rod, the lower end of the screw extends out from under the sliding rod, and the float is installed on the lower end of the screw; the screw is rotated to adjust the distance between the blocking piece and the float, thereby adjusting the quantitative amount of egg slurry in multiple quantitative tanks, and the versatility is good.
[0010] Preferably, it also includes a ball column, a ball seat and multiple springs. The ball column is set in the middle of the lower end surface of the support plate, the ball column is rotatably connected to the ball seat, the ball seat is installed on the base plate, the lower ends of multiple springs are installed on the base plate, the upper ends of multiple springs are connected to the lower end surface of the support plate, and the multiple springs are located on the outside of the ball seat; multiple springs elastically support the support plate, and the ball column and the ball seat cooperate to movably position the support plate. After the egg paste is poured into the multiple grooves of the mold, the support plate is shaken to tilt the mold back and forth, so that the egg paste flows evenly and spreads in the multiple grooves of the mold, thereby improving the baking efficiency and quality of the egg paste.
[0011] Preferably, it also includes cross bar one and cross bar two, the mold is arranged as a front half mold and a back half mold, the front half mold and the back half mold are connected by a hinge, the front end of the front half mold is rotatably connected to the front end of the support plate by a hinge, cross bar one is installed on the side of the front half mold, and cross bar two is installed on the side of the back half mold; when the egg paste is shaped in multiple grooves of the mold and the filling is placed on the egg skin, the back half mold of the mold is buckled onto the front half mold through cross bar two, and after the egg dumpling is buckled into shape, the front half mold together with the back half mold is flipped toward the front side of the support plate through cross bar one, and the back half mold is freely opened after the front half mold is flipped out of the front side of the support plate, so that the egg dumpling can fall off freely from the mold, thereby realizing fast feeding.
[0012] Compared with the prior art, the beneficial effects of the present invention are: achieving quantitative egg paste, and also achieving simultaneous filling of egg paste into multiple grooves of the mold, with a short filling time. Since the egg paste is filled and the egg skin is formed at the same time, the multiple egg dumplings on the mold are made to the same degree of doneness, thereby improving work efficiency and egg dumpling consistency. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a front sectional structural diagram of the present invention;
[0014] Figure 2 It is a schematic diagram of the side sectional structure of the utility model;
[0015] Figure 3 This is a structural diagram of the utility model in the egg slurry filling state;
[0016] Figure 4 This is a schematic structural diagram of the utility model in the egg shell fastening state;
[0017] Figure 5 It is a structural diagram of the utility model in the blanking state;
[0018] Figure 6 It is a partial cross-sectional structural diagram of the slurry delivery pipe, upper valve, quantitative tank and lower valve;
[0019] Figure 7 It is a structural diagram of a sliding sleeve frame, a sliding rod, a float, a plug and a screw.
[0020] Markings in the accompanying drawings: 1. Base plate; 2. Support plate; 3. Mould; 4. Egg slurry bucket; 5. Slurry delivery pipe; 6. Upper valve; 7. Metering tank; 8. Lower valve; 9. Upper valve housing; 10. Upper rotating shaft; 11. Upper plug; 12. Lower valve housing; 13. Lower rotating shaft; 14. Lower plug; 15. Upper arm; 16. Lower arm; 17. Pull rod; 18. Slide rack; 19. Slide rod; 20. Float; 21. Blocking piece; 22. Screw; 23. Ball column; 24. Ball seat; 25. Spring; 26. Cross bar one; 27. Cross bar two. DETAILED DESCRIPTION
[0021] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention. Example 1
[0022] like Figures 1 to 6As shown, an egg dumpling baking operating table includes a base plate 1, a supporting plate 2 and a mold 3, the supporting plate 2 is installed on the base plate 1, and the mold 3 is installed on the supporting plate 2; it also includes an egg slurry bucket 4, a slurry feeding pipe 5, multiple upper valves 6, multiple quantitative tanks 7, multiple lower valves 8 and a connecting rod assembly, the egg slurry bucket 4 is installed on the base plate 1 through a bracket, the input end of the slurry feeding pipe 5 is connected to the output end of the egg slurry bucket 4, the multiple output ends of the slurry feeding pipe 5 are respectively connected to the input ends of the multiple upper valves 6, the output ends of the multiple upper valves 6 are respectively connected to the input ends of the multiple quantitative tanks 7, the interiors of the multiple quantitative tanks 7 are all provided with positioning chambers, the output ends of the multiple quantitative tanks 7 are respectively connected to the input ends of the multiple lower valves 8, and the output ends of the multiple lower valves 8 are respectively connected The output ends are respectively located above the multiple grooves of the mold 3, and the multiple upper valves 6 and the multiple lower valves 8 are connected by a connecting rod assembly. The connecting rod assembly drives the multiple upper valves 6 to open at the same time while the multiple lower valves 8 are closed at the same time; the upper valve 6 includes an upper valve shell 9, an upper rotating shaft 10 and an upper plug 11. The input end of the upper valve shell 9 is connected to the output end of the slurry feeding pipe 5, and the output end of the upper valve shell 9 is connected to the input end of the quantitative tank 7. The upper rotating shaft 10 is rotatably mounted on the upper valve shell 9, and the upper plug 11 is mounted on the upper rotating shaft 10. The upper plug 11 is located inside the upper valve shell 9, and the upper plug 11 blocks the input end of the upper valve shell 9; the lower valve 8 includes a lower valve shell 12, a lower rotating shaft 13 and a lower plug 14. The output end of the lower valve shell 12 is connected to the output end of the slurry feeding pipe 5, and the output end of the upper valve shell 9 is connected to the input end of the quantitative tank 7. The inlet end is connected to the output end of the quantitative tank 7, the lower rotating shaft 13 is rotatably installed on the lower valve housing 12, the lower plug 14 is installed on the lower rotating shaft 13, the lower plug 14 is located in the lower valve housing 12, the lower plug 14 blocks the output end of the lower valve housing 12, the upper rotating shaft 10 and the lower rotating shaft 13 are transmission-connected to the connecting rod assembly; the connecting rod assembly includes an upper arm 15, a lower arm 16 and a pull rod 17, the upper end of the upper arm 15 is connected to the upper rotating shaft 10, the upper end of the lower arm 16 is connected to the lower rotating shaft 13, the lower arm 16 is parallel to the upper arm 15, the upper end of the pull rod 17 is rotatably connected to the middle part of the upper arm 15, the lower end of the pull rod 17 is rotatably connected to the lower end of the lower arm 16, and the lower end of the upper arm 15 is set The handle also includes a ball column 23, a ball seat 24 and multiple springs 25. The ball column 23 is set in the middle of the lower end surface of the support plate 2. The ball column 23 is rotatably connected to the ball seat 24. The ball seat 24 is installed on the base plate 1. The lower ends of multiple springs 25 are installed on the base plate 1. The upper ends of multiple springs 25 are connected to the lower end surface of the support plate 2. The multiple springs 25 are located on the outside of the ball seat 24; it also includes a cross bar 1 26 and a cross bar 27. The mold 3 is set as a front half mold and a rear half mold. The front half mold and the rear half mold are connected by a hinge. The front end of the front half mold is rotatably connected to the front end of the support plate 2 by a hinge. The cross bar 1 26 is installed on the side of the front half mold, and the cross bar 2 27 is installed on the side of the rear half mold.
[0023] The egg slurry is stored in the egg slurry bucket 4, and the egg slurry is transported to multiple upper valves 6 through the slurry feeding pipe 5. At the beginning, the upper cock 11 blocks the input end of the upper valve housing 9, and the lower cock 14 opens the output end of the lower valve housing 12. The upper arm rod 15 is pulled upward by the handle of the upper arm rod 15, so that the upper arm rod 15 drives the upper rotating shaft 10 to rotate clockwise. At the same time, the upper arm rod 15 drives the lower arm rod 16 to rotate through the pull rod 17, and the lower arm rod 16 drives the lower rotating shaft 13 to rotate clockwise, driving the upper rotating shaft 10 and the lower rotating shaft 13 to rotate clockwise, driving the upper cock 11 and the lower cock At the same time, the plug 14 rotates clockwise, so that the upper plug 11 opens the input end of the upper valve housing 9, and the lower plug 14 blocks the output end of the lower valve housing 12, so that the egg slurry is poured into the quantitative tank 7 through the slurry feeding pipe 5 and the upper valve 6 to complete the quantitative measurement. When the multiple grooves of the mold 3 reach the set temperature, the upper arm rod 15 is pulled downward by the handle of the upper arm rod 15, so that the upper arm rod 15 drives the upper rotating shaft 10 to rotate counterclockwise. At the same time, the upper arm rod 15 drives the lower arm rod 16 to rotate through the pull rod 17, and the lower arm rod 16 drives the lower rotating shaft 13 to rotate counterclockwise, driving The upper rotating shaft 10 and the lower rotating shaft 13 are driven to rotate counterclockwise, driving the upper cock 11 and the lower cock 14 to rotate counterclockwise at the same time, so that the upper cock 11 blocks the input end of the upper valve housing 9, and at the same time the lower cock 14 opens the output end of the lower valve housing 12, so that a certain amount of egg paste is poured into the multiple grooves of the mold 3 through the multiple lower valves 8. The support plate 2 is shaken to tilt the mold 3 back and forth, so that the egg paste flows evenly and flattens in the multiple grooves of the mold 3. After the egg paste is shaped in the multiple grooves of the mold 3, the filling is added, and the rear end of the mold 3 is moved by the cross bar 27. The half mold is buckled onto the front half mold. After the egg dumpling is buckled and formed, the front half mold together with the back half mold is flipped toward the front side of the support plate 2 by the cross bar 1. After the front half mold is flipped out of the front side of the support plate 2, the back half mold is freely opened, so that the egg dumpling can fall off freely from the mold 3, realizing fast feeding and quantitative egg paste. It is also possible to simultaneously add egg paste to multiple grooves of the mold 3, and the filling time is short. Since the egg paste is added at the same time and the egg skin is formed by buckling at the same time, the multiple egg dumplings on the mold are made to the same degree of doneness, thereby improving work efficiency and consistency of the egg dumplings. Example 2
[0024] like Figure 1 、 Figure 2 and Figure 7As shown, on the basis of Example 1, it also includes multiple sliding racks 18, multiple sliding rods 19, multiple floats 20 and multiple plugs 21, the tops of the multiple quantitative tanks 7 are all provided with vents, the multiple sliding racks 18 are respectively installed on the tops of the multiple quantitative tanks 7, the upper parts of the multiple sliding racks 19 are respectively slidably inserted in the multiple sliding racks 18, the lower parts of the multiple sliding rods 19 extend into the interiors of the multiple quantitative tanks 7, the lower ends of the multiple sliding rods 19 are all provided with floats 20 and plugs 21, the multiple plugs 21 are all located above the multiple floats 20, and the multiple plugs 21 are larger than the through holes of the multiple quantitative tanks 7; it also includes multiple screws 22, the sliding rod 19 is a threaded sleeve, the plug 21 is sleeved on the lower part of the sliding rod 19, the screw 22 is rotatably screwed in the sliding rod 19, the lower end of the screw 22 extends below the sliding rod 19, and the float 20 is installed on the lower end of the screw 22.
[0025] When the egg slurry is input into the interior of the multiple quantitative tanks 7, the air inside the multiple quantitative tanks 7 is discharged through the vents. When the egg slurry contacts the multiple floats 20, the buoyancy of the multiple floats 20 lifts the multiple slide bars 19 and the multiple blocking pieces 21. When the multiple blocking pieces 21 block the vents of the multiple quantitative tanks 7, the air inside the multiple quantitative tanks 7 is no longer discharged, and the quantitative amount of the egg slurry in the multiple quantitative tanks 7 is completed; when the egg slurry in the multiple quantitative tanks 7 is discharged outward, the multiple floats 20 and the multiple blocking pieces 21 descend, allowing the external air to enter the multiple quantitative tanks 7 through the through holes of the multiple quantitative tanks 7, facilitating the rapid discharge of the egg slurry. The screw 22 is rotated to adjust the distance between the blocking piece 21 and the float 20, thereby adjusting the quantitative amount of the egg slurry in the multiple quantitative tanks 7.
[0026] like Figures 1 to 7After that, the upper arm rod 15 is pulled downward by the handle of the upper arm rod 15, so that the upper arm rod 15 drives the upper rotating shaft 10 to rotate clockwise, and at the same time, the upper arm rod 15 drives the lower arm rod 16 to rotate through the pull rod 17, and the lower arm rod 16 drives the lower rotating shaft 13 to rotate clockwise, driving the upper plug 11 and the lower plug 14 to rotate clockwise at the same time, so that the upper plug 11 opens the input end of the upper valve shell 9, and the lower plug 14 blocks the output end of the lower valve shell 12, so that the egg slurry is poured into the quantitative tank 7 through the slurry feeding pipe 5 and the upper valve 6 to complete the quantitative measurement. Drive the lower arm 16 to rotate, and the lower arm 16 drives the lower rotating shaft 13 to rotate counterclockwise, driving the upper plug 11 and the lower plug 14 to rotate counterclockwise at the same time, so that the upper plug 11 blocks the input end of the upper valve shell 9, and the lower plug 14 opens the output end of the lower valve shell 12, so that the egg slurry in the quantitative tank 7 is poured into the multiple grooves of the mold 3 through the lower valve 8, and then shake the supporting plate 2, so that the mold 3 is tilted back and forth, so that the egg slurry flows evenly and flattens in the multiple grooves of the mold 3. After the egg slurry is shaped in the multiple grooves of the mold 3, stuffing is added, and finally the back half mold of the mold 3 is fastened to the front half mold by the cross bar 2. After the egg dumplings are buckled into shape, the front half mold together with the back half mold is flipped toward the front side of the supporting plate 2 by the cross bar 1. After the front half mold flips out of the front side of the supporting plate 2, the back half mold is free to open, so that the egg dumplings can fall off freely from the mold 3.
[0027] The main functions achieved by this utility model are:
[0028] 1. Able to achieve quantitative egg slurry;
[0029] 2. Add egg paste and close the egg wrap at the same time to ensure that multiple egg dumplings are cooked to the same degree, improving work efficiency and egg dumpling consistency;
[0030] 3. Able to adjust the quantity of egg slurry;
[0031] 4. It can quickly put the baked egg dumplings into the pan.
[0032] The egg dumpling baking operating table of the present invention has an installation method, a connection method or a setting method that are all common mechanical methods, and can be implemented as long as they can achieve their beneficial effects; the base plate 1, the supporting plate 2, the mold 3, the egg slurry bucket 4, the slurry delivery pipe 5, the quantitative tank 7, the upper rotating shaft 10, the upper plug 11, the lower rotating shaft 13, the lower plug 14, the float 20, the blocking piece 21, the screw 22, the ball column 23, the ball seat 24, and the spring 25 of the egg dumpling baking operating table of the present invention are purchased on the market, and technical personnel in the industry only need to install and operate them according to the accompanying instruction manual, without the need for technical personnel in this field to pay creative labor.
[0033] All technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which this invention pertains. The terms used herein in the specification of this invention are intended solely for the purpose of describing specific embodiments and are not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0034] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. An egg dumpling baking operation table, comprising a base plate (1), a supporting plate (2) and a mold (3), wherein the supporting plate (2) is mounted on the base plate (1), and the mold (3) is mounted on the supporting plate (2); characterized in that: The invention also includes an egg slurry bucket (4), a slurry delivery pipe (5), a plurality of upper valves (6), a plurality of quantitative tanks (7), a plurality of lower valves (8) and a connecting rod assembly. The egg slurry bucket (4) is mounted on the bottom plate (1) through a bracket. The input end of the slurry delivery pipe (5) is connected to the output end of the egg slurry bucket (4). The plurality of output ends of the slurry delivery pipe (5) are respectively connected to the input ends of the plurality of upper valves (6). The output ends of the plurality of upper valves (6) are respectively connected to the input ends of the plurality of quantitative tanks (7). Positioning chambers are provided inside the plurality of quantitative tanks (7). The output ends of the plurality of quantitative tanks (7) are respectively connected to the input ends of the plurality of lower valves (8). The output ends of the plurality of lower valves (8) are respectively located above the plurality of grooves of the mold (3). The plurality of upper valves (6) and the plurality of lower valves (8) are connected by a connecting rod assembly. The connecting rod assembly drives the plurality of upper valves (6) to open simultaneously and the plurality of lower valves (8) to close simultaneously.
2. The egg dumpling baking table according to claim 1, characterized in that: The upper valve (6) comprises an upper valve housing (9), an upper rotating shaft (10) and an upper plug (11). The input end of the upper valve housing (9) is connected to the output end of the slurry feeding pipe (5), and the output end of the upper valve housing (9) is connected to the input end of the quantitative tank (7). The upper rotating shaft (10) is rotatably mounted on the upper valve housing (9). The upper plug (11) is mounted on the upper rotating shaft (10). The upper plug (11) is located inside the upper valve housing (9). The upper plug (11) blocks the input end of the upper valve housing (9). The lower valve (8) includes a lower valve housing (12), a lower rotating shaft (13) and a lower plug (14), the input end of the lower valve housing (12) is connected to the output end of the quantitative tank (7), the lower rotating shaft (13) is rotatably mounted on the lower valve housing (12), the lower plug (14) is mounted on the lower rotating shaft (13), the lower plug (14) is located in the lower valve housing (12), and the lower plug (14) blocks the output end of the lower valve housing (12), and the upper rotating shaft (10) and the lower rotating shaft (13) are transmission-connected to the connecting rod assembly.
3. The egg dumpling baking table according to claim 2, characterized in that: The connecting rod assembly includes an upper arm (15), a lower arm (16) and a pull rod (17), wherein the upper end of the upper arm (15) is connected to the upper rotating shaft (10), the upper end of the lower arm (16) is connected to the lower rotating shaft (13), the lower arm (16) is parallel to the upper arm (15), the upper end of the pull rod (17) is rotatably connected to the middle part of the upper arm (15), the lower end of the pull rod (17) is rotatably connected to the lower end of the lower arm (16), and a handle is provided at the lower end of the upper arm (15).
4. The egg dumpling baking table according to claim 1, characterized in that: The invention also includes a plurality of sliding sleeve frames (18), a plurality of sliding rods (19), a plurality of floats (20) and a plurality of plugs (21). The tops of the plurality of quantitative tanks (7) are all provided with vent holes. The plurality of sliding sleeve frames (18) are respectively installed on the tops of the plurality of quantitative tanks (7). The upper parts of the plurality of sliding rods (19) are respectively slidably inserted into the plurality of sliding sleeve frames (18). The lower parts of the plurality of sliding rods (19) extend into the interiors of the plurality of quantitative tanks (7). The lower ends of the plurality of sliding rods (19) are all provided with floats (20) and plugs (21). The plurality of plugs (21) are all located above the plurality of floats (20). The plurality of plugs (21) are larger than the through holes of the plurality of quantitative tanks (7).
5. The egg dumpling baking table according to claim 4, characterized in that: The invention also includes a plurality of screw rods (22), the slide rod (19) is a threaded sleeve, the blocking piece (21) is sleeved on the lower part of the slide rod (19), the screw rod (22) is rotatably screwed into the slide rod (19), the lower end of the screw rod (22) extends below the slide rod (19), and the float (20) is installed on the lower end of the screw rod (22).
6. The egg dumpling baking table according to claim 1, characterized in that: The invention also includes a ball column (23), a ball seat (24) and a plurality of springs (25). The ball column (23) is provided in the middle of the lower end surface of the support plate (2). The ball column (23) is rotatably connected to the ball seat (24). The ball seat (24) is mounted on the base plate (1). The lower ends of the plurality of springs (25) are mounted on the base plate (1). The upper ends of the plurality of springs (25) are connected to the lower end surface of the support plate (2). The plurality of springs (25) are located outside the ball seat (24).
7. The egg dumpling baking table according to claim 1, characterized in that: The mold (3) further comprises a first crossbar (26) and a second crossbar (27). The mold (3) is configured as a front half mold and a rear half mold. The front half mold and the rear half mold are connected via a hinge. The front end of the front half mold is rotatably connected to the front end of the support plate (2) via a hinge. The first crossbar (26) is mounted on the side of the front half mold, and the second crossbar (27) is mounted on the side of the rear half mold.
Citation Information
Patent Citations
Manual electrical heating adds decorative pattern egg dumplings mould
CN208657958U