CN112956500B - Device for heating egg liquid into cake - Google Patents

Device for heating egg liquid into cake Download PDF

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Publication number
CN112956500B
CN112956500B CN202110270920.5A CN202110270920A CN112956500B CN 112956500 B CN112956500 B CN 112956500B CN 202110270920 A CN202110270920 A CN 202110270920A CN 112956500 B CN112956500 B CN 112956500B
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China
Prior art keywords
rotating shaft
rod
gear
fixing plate
fixing
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CN202110270920.5A
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CN112956500A (en
Inventor
谢康胜
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Guangzhou Meicheng Food Technology Co ltd
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Guangzhou Meicheng Food Technology Co ltd
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21BBAKERS' OVENS; MACHINES OR EQUIPMENT FOR BAKING
    • A21B5/00Baking apparatus for special goods; Other baking apparatus
    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21BBAKERS' OVENS; MACHINES OR EQUIPMENT FOR BAKING
    • A21B3/00Parts or accessories of ovens
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/80Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Meat, Egg Or Seafood Products (AREA)

Abstract

The invention relates to a heating device, in particular to a device for heating egg liquid into cakes. The invention provides a device capable of uniformly and rapidly processing egg cakes and facilitating heating of egg liquid of a cleaning device into cakes. In order to solve the technical problem, the device for heating egg liquid into cakes comprises: the motor fixing device comprises a first fixing plate, a motor, a first fixing rod, a second fixing rod and a motor, wherein the motor is arranged on one side of the first fixing plate; the feeding mechanism is arranged on the first fixing plate; the heating mechanism is arranged on the first fixing plate. According to the egg liquid heating forming machine, the feeding mechanism and the heating mechanism are arranged, the conveying assembly conveys the mold added with the egg liquid to the upper part of the electric heating furnace, and the electric heating furnace in an open state heats the egg liquid in the mold, so that the effect of quickly heating and forming the egg liquid is achieved; the invention achieves the effect of preventing egg liquid from depositing and layering by arranging the stirring mechanism and rotating the brush in the stirring mechanism.

Description

Device for heating egg liquid into cake
Technical Field
The invention relates to a heating device, in particular to a device for heating egg liquid into cakes.
Background
The egg cake is a food which is prepared by mixing eggs and batter together and spreading the mixture on the surface of a pot to be heated into cake, the egg cake making is usually completed manually, the pot is generally small, only one egg cake can be made at a time, the shapes of the egg cakes are basically different because people manually pour egg liquid on the pot, the egg liquid is easily poured on other places carelessly when people pour the egg liquid, a workbench can be dirtied, and the subsequent cleaning is troublesome.
Patent application No. CN202010401994.3 relates to an egg cake processing device, which comprises a supporting component, a rolling component, a raw material component, a separating component, a transmission component and a heating component, wherein the transmission component is fixedly arranged on the supporting component, the heating component is respectively arranged on the rolling component and in the transmission component, and the rolling component, the separating component and the raw material component are all arranged on the transmission component and are sequentially arranged along the transmission direction of the transmission component; the egg cake raw materials are placed in the raw material assembly and transferred to the rolling assembly through the raw material assembly, the egg cake raw materials are heated by the heating assembly on the rolling assembly to form semi-mature egg cakes, the semi-mature egg cakes are separated to the transmission assembly through the separation assembly, the semi-mature egg cakes on the transmission assembly are transmitted by the transmission assembly and are heated to the mature egg cakes through the heating assembly arranged in the transmission assembly. This egg cake processingequipment, the egg cake is heated evenly, can continuous processing, simple structure, convenient to use, be heated evenly, the shaping is effectual and degree of automation is high, production efficiency is high. But the raw material placing place and the subsequent heating place of the device are directly positioned on the surface of the device, and the residues on the surface are difficult to clean.
Therefore, the device capable of uniformly and quickly processing the egg cakes and facilitating the heating of egg liquid of the cleaning device into cakes is designed.
Disclosure of Invention
In order to overcome the defects that the efficiency of artificially making the egg cake is low and the cleaning of a making tool and a workbench is troublesome, the technical problem is as follows: provides a device which can evenly and rapidly process egg cakes and is convenient for heating egg liquid of a cleaning device into cakes.
The technical scheme of the invention is as follows: an egg liquid heating cake-shaped device, comprising:
the motor is arranged on one side of the first fixing plate;
the first fixing rod is provided with four first fixing rods;
the feeding mechanism is arranged on the first fixing plate;
the heating mechanism is arranged on the first fixing plate.
Further, feeding mechanism includes:
the output shaft of the motor is connected with the first rotating shaft;
the first rotating shaft is provided with a first gear lack;
two second rotating shafts are rotatably arranged between the two first fixing rods;
one side of the second rotating shaft at one side is provided with a first straight gear which is meshed with the first missing gear;
and the two second rotating shafts are provided with conveying components.
Further, the heating mechanism includes:
the second supporting rods are symmetrically arranged on one side and the other side of the first fixing plate;
the electric heating furnace is arranged among the four second supporting rods;
the button is arranged on one side of the electric heating furnace in a rotating mode.
Further, still including pushing down the mechanism, push down the mechanism including:
the first fixing plate is symmetrically and rotatably provided with a first rotating shaft;
the grooved wheels are arranged on the third rotating shaft;
the first fixing plate is symmetrically provided with slide rails;
the first fixing plate is symmetrically provided with a first supporting rod;
the third support rod is provided with a third support rod;
two first rod pieces are arranged on the upper side of the extrusion plate and penetrate through the sliding rail to be connected with the grooved wheel in a sliding mode.
Further, still including automatic reciprocating mechanism, automatic reciprocating mechanism is including:
one side of the first fixing plate is symmetrically provided with a fourth supporting rod;
the fifth rotating shafts are rotatably arranged on the two fourth supporting rods;
a fourth rotating shaft is symmetrically and rotatably arranged on one side of the first fixing plate;
a fourth rotating shaft and a fifth rotating shaft on one side of the first bevel gear set are provided with the first bevel gear set;
a second pulley set is arranged on the lower sides of the fourth rotating shaft on one side and the third rotating shaft on one side;
a second spur gear is arranged on one side of the fifth rotating shaft and is positioned on one side of the first gear-lacking gear;
a second bevel gear set is arranged on the fourth rotating shaft and the fifth rotating shaft on one side;
a third pulley set is arranged on the lower side of the fourth rotating shaft on one side and the third rotating shaft on one side;
further, still including intermittent type unloading mechanism, intermittent type unloading mechanism is including:
the first fixing plate is symmetrically provided with a first supporting rod;
the upper sides of the fifth supporting rods are provided with clamping rods in a sliding manner;
the first spring is sleeved on the inner side of the clamping rod;
the inner sides of the two fifth support rods are provided with support parts;
the blanking frame is arranged between the two supporting parts;
the two fifth supporting rods are provided with second discharging frames;
the first discharging frame is arranged on the lower side of the second discharging frame, is positioned in the two clamping rods and is positioned on the upper side of the discharging frame;
a fifth supporting rod on one side of the sixth supporting rod is provided with a sixth supporting rod;
the sixth rotating shaft is rotatably arranged on the sixth supporting rod;
the fourth belt pulley is wound on the sixth rotating shaft and the third rotating shaft on one side;
and a second gear is omitted, and a sixth rotating shaft is provided with a second gear which is meshed with the gear on the lower side of the blanking frame.
Further, still including rabbling mechanism, rabbling mechanism including:
the second discharging frame is provided with a second fixing rod;
the brush is rotatably arranged on the fifth fixed rod and is positioned in the second feeding frame;
the fifth fixing rod is provided with a connecting rod;
the connecting rod is rotatably provided with a seventh rotating shaft;
a third bevel gear set is arranged on one side of the seventh rotating shaft and the upper side of the brush;
an eighth rotating shaft is rotatably arranged on one side of the fifth fixing rod;
a fourth bevel gear set is arranged on the upper side of the eighth rotating shaft and the front side of the seventh rotating shaft;
and a third straight gear is arranged on the lower side of the eighth rotating shaft and is meshed with a gear below the blanking frame.
Furthermore, there is the gear unloading frame below, and it has the hole to open on unloading frame and the gear, and when the hole rotated and aligns with first blowing frame, the egg liquid could fall.
The beneficial effects of the invention are: 1. according to the egg liquid heating forming machine, the feeding mechanism and the heating mechanism are arranged, the conveying assembly conveys the mold added with the egg liquid to the upper part of the electric heating furnace, and the electric heating furnace in an open state heats the egg liquid in the mold, so that the effect of quickly heating and forming the egg liquid is achieved;
2. according to the invention, the pressing mechanism is arranged, the third rotating shaft in the pressing mechanism rotates to drive the grooved pulley to rotate, so that the first rod piece is driven to move downwards, the extrusion plate is driven to move downwards, when the extrusion plate moves above the heated egg liquid, the egg liquid is extruded into a cake shape, and the effect of extruding the heated egg cake into a more uniform shape is achieved;
3. the automatic reciprocating mechanism is arranged, so that the effect of replacing a person to manually rotate the third rotating shaft to drive the extrusion plate to move is achieved;
4. according to the egg liquid layering prevention device, the stirring mechanism is arranged, the brush in the stirring mechanism rotates to stir the egg liquid in the second material placing frame, and the effect of preventing the egg liquid from being deposited and layered is achieved.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the feeding mechanism of the present invention.
Fig. 3 is a schematic perspective view of the heating mechanism of the present invention.
Fig. 4 is a schematic perspective view of the pressing mechanism of the present invention.
Fig. 5 is a schematic perspective view of the reciprocating mechanism of the present invention.
Fig. 6 is a schematic perspective view of the intermittent blanking mechanism of the present invention.
Fig. 7 is a schematic perspective view of the stirring mechanism of the present invention.
Description of reference numerals: 1: first fixing plate, 2: a motor, 3: first fixed link, 4: feeding mechanism, 41: first rotating shaft, 42: first missing gear, 43: second rotating shaft, 44: first straight gear, 45: conveying assembly, 5: heating mechanism, 51: second support bar, 52: electric heater, 54: button, 6: pressing mechanism, 61: third rotating shaft, 62: sheave, 63: slide rail, 64: first pin, 65: extrusion plate, 66: third support bar, 7: automatic reciprocating mechanism, 71: fourth support bar, 72: first bevel gear set, 73: second pulley group, 74: second spur gear, 75: second bevel gear set, 76: fourth rotating shaft, 77: third pulley group, 710: fifth rotation shaft, 8: intermittent blanking mechanism, 81: fifth support bar, 82: clamping lever, 83: first spring, 84: blanking frame, 85: support member, 86: first discharge frame, 87: second discharge frame, 88: fourth pulley, 89: sixth support bar, 810: sixth rotation shaft, 811: second missing gear, 9: stirring mechanism, 92: fifth fixing lever, 93: brush, 94: third bevel gear set, 95: seventh rotation shaft, 96: connecting rod, 97: fourth bevel gear set, 98: eighth rotation shaft, 99: and a third spur gear.
Detailed Description
Embodiments of the present invention will be described below with reference to the drawings.
Example 1
The utility model provides an egg liquid heats into pie device, as shown in figure 1, figure 2 and figure 3, including first fixed plate 1, motor 2, first dead lever 3, feeding mechanism 4 and heating mechanism 5, be equipped with left side rear portion on first fixed plate 1 and be equipped with motor 2, be equipped with four first dead levers 3 on first fixed plate 1, be equipped with feeding mechanism 4 on first fixed plate 1, be equipped with heating mechanism 5 on first fixed plate 1.
When egg liquid needs to be heated into a cake shape, the egg liquid to be processed is placed into a mold, the mold is placed on a feeding mechanism 4, a motor 2 is started, an output shaft of the motor 2 drives the feeding mechanism 4 to rotate backwards, a heating mechanism 5 is manually opened, when the mold moves to the heating mechanism 5, the heating mechanism 5 heats the mold, the egg liquid inside is heated and formed, after the egg liquid is heated and formed, the feeding mechanism 4 continues to move backwards, people take the mold off, the motor 2 is closed, the feeding mechanism 4 stops rotating, and people close the heating mechanism 5.
The feeding mechanism 4 comprises a first rotating shaft 41, a first gear lacking 42, a second rotating shaft 43, a first straight gear 44 and a conveying assembly 45, the first rotating shaft 41 is connected to an output shaft of the motor 2, the first gear lacking 42 is arranged on the first rotating shaft 41, the two second rotating shafts 43 are rotatably arranged between the two first fixing rods 3, the first straight gear 44 is arranged on the left side of the second rotating shaft 43 on the rear side, the first straight gear 44 is meshed with the first gear lacking 42, and the conveying assembly 45 is arranged on the front second rotating shaft 43 and the rear second rotating shaft 43.
People put the mould that has added egg liquid on transport module 45, start motor 2, the output shaft of motor 2 rotates and drives first pivot 41 and rotate, thereby drive first scarce gear 42 and rotate, when first scarce gear 42 moves to and meshes with first straight gear 44, drive first straight gear 44 and rotate, thereby drive the second pivot 43 of rear side and rotate, and then drive transport module 45 and rotate backward, the second pivot 43 of front side is driven and rotates, make the mould follow and move backward, when first scarce gear 42 moves to and breaks away from with first straight gear 44, first straight gear 44 stall, the second pivot 43 of rear side stall, transport module 45 stops the backward rotation, the second pivot 43 stall of front side, the mould stops the backward movement, the mould interval moves backward, realize the purpose of heating, after heating mechanism 5 heats the liquid in the mould, people take the mould that moves to the back from transport module 45, close motor 2, first pivot 41 stall, first scarce gear 42 stops rotating, thereby first scarce gear 42 stops rotating, second straight gear 44 stops rotating, transport module 45 stops rotating.
The heating mechanism 5 comprises second support rods 51, an electric heating furnace 52 and a button 54, the second support rods 51 are symmetrically arranged on the left and right of the first fixing plate 1, the electric heating furnace 52 is arranged between the four second support rods 51, and the button 54 is rotatably arranged on the right side of the electric heating furnace 52.
People rotate the button 54 to heat the electric heating furnace 52, when the mould moves to the electric heating furnace 52, the electric heating furnace 52 heats the mould to heat and form the egg liquid in the mould, when the mould does not need to be heated, people rotate the button 54 to close the electric heating furnace 52, and the electric heating furnace 52 stops heating.
Example 2
Based on the embodiment 1, as shown in fig. 1, 4, 5, 6, and 7, the pressing device 6 further includes a pressing mechanism 6, the pressing mechanism 6 includes a third rotating shaft 61, a grooved pulley 62, a sliding rail 63, first rod members 64, a pressing plate 65, and a third supporting rod 66, the third rotating shaft 61 is rotatably disposed on the first fixing plate 1 in a left-right symmetry manner, the grooved pulley 62 is disposed on each of the third rotating shafts 61, the sliding rail 63 is symmetrically disposed on the first fixing plate 1 in a left-right symmetry manner, the third supporting rod 66 is symmetrically disposed on the first fixing plate 1 in a left-right symmetry manner, the pressing plate 65 is slidably disposed on the third supporting rod 66, two first rod members 64 are disposed on the upper side of the pressing plate 65, and the first rod members 64 pass through the sliding rail 63 and are slidably connected to the grooved pulley 62.
When the mold moves to the lower side of the extrusion plate 65, a person manually rotates the third rotating shaft 61 to drive the grooved pulley 62 to rotate, so as to drive the first rod piece 64 to move downwards and further drive the extrusion plate 65 to move downwards, when the extrusion plate 65 moves to the position above the heated egg liquid, the egg liquid is extruded into a cake shape, after the egg liquid is extruded, the third rotating shaft 61 is rotated to drive the grooved pulley 62 to rotate, so as to drive the first rod piece 64 to move upwards and further drive the extrusion plate 65 to move upwards, when the extrusion plate does not need to be extruded, the third rotating shaft 61 is stopped to rotate, the grooved pulley 62 stops rotating, the first rod piece 64 stops moving, and the extrusion plate 65 stops moving.
The automatic reciprocating mechanism 7 is further included, the automatic reciprocating mechanism 7 comprises a fourth support rod 71, a first bevel gear set 72, a second pulley set 73, a second spur gear 74, a second bevel gear set 75, a fourth rotating shaft 76, a third pulley set 77 and a fifth rotating shaft 710, the fourth support rod 71 is arranged on the rear side of the first fixing plate 1 in a bilateral symmetry mode, a fifth rotating shaft 710 is arranged on the two fourth support rods 71 in a rotating mode, the second spur gear 74 is arranged on the left side of the fifth rotating shaft 710, the second spur gear 74 is located on the rear side of the first lacking gear 42, a fourth rotating shaft 76 is arranged on the rear side of the first fixing plate 1 in a bilateral symmetry rotating mode, the second bevel gear set 75 is arranged on the fourth rotating shaft 76 on the left side and the fifth rotating shaft 710, the first bevel gear set 72 is arranged on the fourth rotating shaft 76 on the right side and the fifth rotating shaft 710, the third pulley set 77 is arranged on the fourth rotating shaft 76 on the left side and the third rotating shaft 61 on the left side, and the fourth rotating shaft 76 on the right side and the third rotating shaft 61 are arranged on the lower side and are arranged on the second pulley set 73.
When the first missing gear 42 moves to be meshed with the second straight gear 74, the second straight gear 74 is driven to rotate, so that the fifth rotating shaft 710 is driven to rotate, and the second bevel gear set 75 and the first bevel gear set 72 are driven to rotate, so that the fourth rotating shaft 76 rotates, and the third pulley set 77 and the second pulley set 73 are driven to rotate, and the third rotating shaft 61 is driven to rotate, the third rotating shaft 61 is driven to rotate manually instead of a person, when the first missing gear 42 moves to be disengaged from the second straight gear 74, the second straight gear 74 stops rotating, the fifth rotating shaft 710 stops rotating, the second bevel gear set 75 and the first bevel gear set 72 stop rotating, so that the fourth rotating shaft 76 stops rotating, the third pulley set 77 and the second pulley set 73 stop rotating, and the third rotating shaft 61 stops rotating.
The intermittent blanking mechanism 8 is further included, the intermittent blanking mechanism 8 includes a fifth support rod 81, a clamping rod 82, a first spring 83, a blanking frame 84, support members 85, a first blanking frame 86, a second blanking frame 87, a fourth belt pulley 88, a sixth support rod 89, a sixth rotating shaft 810 and a second lacking gear 811, the fifth support rod 81 is symmetrically arranged on the first fixing plate 1 in a left-right mode, the clamping rod 82 is arranged on the upper side of the fifth support rod 81 in an all-sliding mode, the first spring 83 is sleeved on the inner side of the clamping rod 82, the support members 85 are arranged on the inner sides of the two fifth support rods 81, the blanking frame 84 is arranged between the two support members 85, the sixth support rod 89 on the right side is arranged on the fifth support rod 81, the sixth rotating shaft 810 is rotatably arranged on the sixth support rod 89, the second lacking gear 811 is arranged on the sixth rotating shaft 810, the second lacking gear 811 is meshed with the gear on the lower side of the blanking frame 84, the sixth rotating shaft 810 is wound with the fourth belt pulley 88 on the third rotating shaft 61 on the right side, the second blanking frame 87 is arranged on the lower side of the first blanking frame 86, and the first blanking frame 86 is positioned on the upper side of the first blanking frame 84.
Egg liquid is put into the second feeding frame 87, the egg liquid flows into the first feeding frame 86 from the second feeding frame 87, when the third rotating shaft 61 rotates, the fourth belt pulley 88 is driven to rotate, the sixth rotating shaft 810 is driven to rotate, the second gear 811 is driven to rotate, when the second gear 811 rotates to be meshed with the gear on the feeding frame 84, the feeding frame 84 is driven to rotate, because only one hole is formed in the feeding frame 84, when the hole on the feeding frame 84 rotates to be aligned with the hole on the first feeding frame 86, the egg liquid can flow onto a lower die through the feeding frame 84, when the second gear 811 rotates to be disengaged from the gear on the feeding frame 84, the feeding frame 84 stops rotating, when the third rotating shaft 61 stops rotating, the fourth belt pulley 88 stops rotating, the sixth rotating shaft 810 stops rotating, the second gear 811 stops rotating, the egg liquid easily clamps, people can take out and clean the first feeding frame 86, the first spring 83 is driven to move from the extruded state, the feeding rod 82 drives the feeding rod 82 to move outwards, and the bacteria breeding rod 82 is squeezed and squeezed.
The stirring device further comprises a stirring mechanism 9, wherein the stirring mechanism 9 comprises a fifth fixing rod 92, a brush 93, a third bevel gear set 94, a seventh rotating shaft 95, a connecting rod 96, a fourth bevel gear set 97, an eighth rotating shaft 98 and a third straight gear 99, the fifth fixing rod 92 is arranged on the second discharging frame 87, the brush 93 is rotatably arranged on the fifth fixing rod 92, the brush 93 is positioned in the second discharging frame 87, the connecting rod 96 is arranged on the fifth fixing rod 92, the seventh rotating shaft 95 is rotatably arranged on the connecting rod 96, the third bevel gear set 94 is arranged on the rear side of the seventh rotating shaft 95 and the upper side of the brush 93, the eighth rotating shaft 98 is rotatably arranged on the front side of the fifth fixing rod 92, the fourth bevel gear set 97 is arranged on the upper side of the eighth rotating shaft 98 and the front side of the seventh rotating shaft 95, the third straight gear 99 is arranged on the lower side of the eighth rotating shaft 98, and the third straight gear 99 is meshed with a gear below the discharging frame 84.
When the blanking frame 84 rotates, the third spur gear 99 is driven to rotate, so that the eighth rotating shaft 98 is driven to rotate, the fourth bevel gear group 97 is driven to rotate, the seventh rotating shaft 95 is driven to rotate, the third bevel gear group 94 is driven to rotate, the brush 93 is driven to rotate, egg liquid in the second blanking frame 87 is stirred, the egg liquid cannot be deposited and layered, when the blanking frame 84 stops rotating, the third spur gear 99 stops rotating, the eighth rotating shaft 98 stops rotating, the fourth bevel gear group 97 stops rotating, the seventh rotating shaft 95 stops rotating, the third bevel gear group 94 stops rotating, and the brush 93 stops rotating.
Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art from this disclosure that various changes or modifications may be made therein without departing from the spirit and scope of the invention as defined in the appended claims. Therefore, the detailed description of the embodiments of the present disclosure is to be construed as merely illustrative, and not limitative of the remainder of the disclosure, but rather to limit the scope of the disclosure to the full extent set forth in the appended claims.

Claims (2)

1. The utility model provides an egg liquid heats into cake form device which characterized by, including:
the motor fixing device comprises a first fixing plate (1) and a motor (2), wherein the motor (2) is arranged on one side of the first fixing plate (1);
the first fixing rod (3), four first fixing rods (3) are arranged on the first fixing plate (1);
the feeding mechanism (4) is arranged on the first fixing plate (1);
the heating mechanism (5) is arranged on the first fixing plate (1);
the feeding mechanism (4) comprises:
the output shaft of the motor (2) is connected with the first rotating shaft (41);
the first gear (42) is arranged on the first rotating shaft (41);
two second rotating shafts (43) are rotatably arranged between the two first fixing rods (3);
the first straight gear (44) is arranged on one side of the second rotating shaft (43) on one side, and the first straight gear (44) is meshed with the first gear lacking part (42);
the conveying assemblies (45) are arranged on the two second rotating shafts (43);
the heating mechanism (5) comprises:
the second supporting rods (51) are symmetrically arranged on one side and the other side of the first fixing plate (1);
the electric heating furnace (52) is arranged among the four second support rods (51);
a button (54), wherein the button (54) is rotatably arranged at one side of the electric heating furnace (52);
still including pushing down mechanism (6), pushing down mechanism (6) including:
the third rotating shaft (61) is symmetrically and rotatably arranged on the first fixing plate (1);
the grooved wheels (62) are arranged on the third rotating shaft (61);
the sliding rails (63) are symmetrically arranged on the first fixing plate (1);
the third supporting rod (66) is symmetrically arranged on the first fixing plate (1);
the third support rod (66) is provided with an extrusion plate (65) in a sliding way;
the upper side of the extrusion plate (65) is provided with two first rod pieces (64), and the first rod pieces (64) penetrate through the sliding rail (63) and are connected with the grooved wheel (62) in a sliding manner;
still including automatic reciprocating mechanism (7), automatic reciprocating mechanism (7) including:
a fourth supporting rod (71), wherein the fourth supporting rod (71) is symmetrically arranged on one side of the first fixing plate (1);
the fifth rotating shaft (710) is rotationally arranged on the two fourth supporting rods (71);
a fourth rotating shaft (76), wherein the fourth rotating shaft (76) is symmetrically and rotatably arranged on one side of the first fixing plate (1);
a first bevel gear set (72) is arranged on the fourth rotating shaft (76) and the fifth rotating shaft (710) on one side of the first bevel gear set (72);
a second pulley set (73) is arranged at the lower side of the fourth rotating shaft (76) at one side and the third rotating shaft (61) at one side;
a second spur gear (74) is arranged on one side of the fifth rotating shaft (710), and the second spur gear (74) is positioned on one side of the first missing gear (42);
a second bevel gear set (75) is arranged on the fourth rotating shaft (76) and the fifth rotating shaft (710) on one side of the second bevel gear set (75);
a third pulley group (77), wherein the third pulley group (77) is arranged on the lower sides of the fourth rotating shaft (76) on one side and the third rotating shaft (61) on one side;
still including intermittent type unloading mechanism (8), intermittent type unloading mechanism (8) including:
the fifth supporting rod (81) is symmetrically arranged on the first fixing plate (1);
the clamping rods (82) are arranged on the upper sides of the fifth supporting rods (81) in a sliding mode;
the first spring (83) is sleeved on the inner side of the clamping rod (82);
the supporting parts (85) are arranged on the inner sides of the two fifth supporting rods (81);
a blanking frame (84), wherein the blanking frame (84) is arranged between the two supporting components (85);
the second discharging frames (87) are arranged on the two fifth supporting rods (81);
the first discharging frame (86) is placed on the lower side of the second discharging frame (87), the first discharging frame (86) is positioned in the two clamping rods (82), and the first discharging frame (86) is positioned on the upper side of the discharging frame (84);
a sixth supporting rod (89) is arranged on the fifth supporting rod (81) on one side of the sixth supporting rod (89);
the sixth rotating shaft (810), the sixth supporting rod (89) is rotatably provided with the sixth rotating shaft (810);
the fourth belt pulley (88) is wound on the sixth rotating shaft (810) and the third rotating shaft (61) on one side;
a second gear (811) is arranged on the sixth rotating shaft (810), and the second gear (811) is meshed with the gear on the lower side of the blanking frame (84);
still including rabbling mechanism (9), rabbling mechanism (9) including:
a fifth fixing rod (92), wherein the second discharging frame (87) is provided with the fifth fixing rod (92);
the brush (93) is rotationally arranged on the fifth fixing rod (92), and the brush (93) is positioned in the second material placing frame (87);
the connecting rod (96) is arranged on the fifth fixing rod (92);
a seventh rotating shaft (95), wherein the connecting rod (96) is rotatably provided with the seventh rotating shaft (95);
a third bevel gear set (94), wherein the third bevel gear set (94) is arranged on one side of the seventh rotating shaft (95) and the upper side of the brush (93);
an eighth rotating shaft (98) is rotatably arranged on one side of the fifth fixing rod (92);
a fourth bevel gear set (97), wherein the fourth bevel gear set (97) is arranged on the upper side of the eighth rotating shaft (98) and the front side of the seventh rotating shaft (95);
a third spur gear (99), the lower side of the eighth rotating shaft (98) is provided with the third spur gear (99), and the third spur gear (99) is meshed with a gear below the blanking frame (84).
2. The apparatus as claimed in claim 1, wherein the lower portion of the feeding frame (84) has a gear, and the feeding frame (84) and the gear have holes, such that the egg drops when the holes are rotated to be aligned with the first feeding frame (86).
CN202110270920.5A 2021-03-12 2021-03-12 Device for heating egg liquid into cake Active CN112956500B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110270920.5A CN112956500B (en) 2021-03-12 2021-03-12 Device for heating egg liquid into cake

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110270920.5A CN112956500B (en) 2021-03-12 2021-03-12 Device for heating egg liquid into cake

Publications (2)

Publication Number Publication Date
CN112956500A CN112956500A (en) 2021-06-15
CN112956500B true CN112956500B (en) 2023-04-18

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CN113331707B (en) * 2021-06-23 2024-02-23 广东德厨商业管理有限公司 Pancake baking device convenient for pancake production
CN113647424B (en) * 2021-07-07 2023-08-25 福建鹿辰食品有限公司 Food pancake making equipment

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CN104351285A (en) * 2014-11-17 2015-02-18 王光云 Automatic steamed bun baking machine
TWM548444U (en) * 2017-05-31 2017-09-11 Lamorning Co Ltd Machine for automatically making cake crust
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