Dough mixer and cake making machine

By designing the mixing paddle motions at the material preparation station and the dough-forming station in the dough mixer, the problem of poor dough mixing effect of existing equipment has been solved, achieving efficient dough forming and uniform quality, thus improving the dough forming efficiency and quality.

CN223585141UActive Publication Date: 2025-11-25DONGGUAN ASSIDUOUS ELECTRONICS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423322663.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing mixing equipment is ineffective and inefficient in the dough kneading process, resulting in inconsistent dough shape, texture, and quality from person to person.

Method used

Design a dough mixer, including a chassis, a dough-forming component, a mixing component, and a drive component. By setting a material-waiting station and a dough-forming station on the mixing paddle, and using a drive head to drive the mixing paddle to move at intervals in the axial direction, efficient mixing and kneading are achieved to form a uniform and high-quality dough.

Benefits of technology

It improves the efficiency and quality of dough formation, ensures consistency in dough shape and quality, reduces the risk of damage to the bottom wall of the mixing chamber, and extends the service life of the mixing blade.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dough kneading machine and a cake making machine, and relates to the technical field of food processing.The dough kneading machine comprises a base plate, a clustering assembly, a stirring assembly and a driving assembly, and a support is fixed to the base plate; the clustering assembly is arranged between the chassis and the bracket, and a stirring cavity is formed in the clustering assembly; the stirring assembly comprises a driving head and a stirring paddle, the driving head is rotatably connected to the support and is in transmission connection with the stirring paddle, the stirring paddle is provided with a material waiting station and a clustering station in the stirring cavity, and the material waiting station and the clustering station are arranged at intervals in the axis direction of the stirring paddle; the driving assembly is in transmission connection with the driving head, so that the driving head drives the stirring paddle to be switched from the material waiting station to the clustering station, and the stirring paddle rotates around the axis of the stirring paddle; according to the technical scheme provided by the utility model, the dough forming efficiency and the dough forming quality of dough in the dough mixer can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to food processing technical field, especially a kind of dough mixer and pie making machine. BACKGROUND

[0002] At present, manually knead dough not only time-consuming and laborious, and its kneading degree also varies from person to person, leading to the shape, taste and quality of the formed dough will have great difference due to the production process that cannot be standardized and unified, therefore, electric stirring equipment is often used for dough mixing, however, the dough mixing effect and efficiency of the existing stirring equipment are not good. SUMMARY

[0003] The main purpose of the utility model is to provide a kind of dough mixer and pie making machine, to improve the dough forming efficiency and dough forming quality in dough mixer.

[0004] To achieve the above object, the utility model provides a dough mixer, comprising:

[0005] A base plate is provided with a support;

[0006] A dough forming assembly is arranged between the base plate and the support, and is provided with a stirring cavity;

[0007] A stirring assembly comprises a driving head and a stirring paddle, the driving head is rotatably connected to the support and is drivingly connected to the stirring paddle, the stirring paddle has a material waiting station and a dough forming station in the stirring cavity, and the material waiting station and the dough forming station are arranged along the axial direction of the stirring paddle;

[0008] A driving assembly is drivingly connected to the driving head to drive the stirring paddle to switch from the material waiting station to the dough forming station by the driving head, and to rotate the stirring paddle around its axis.

[0009] In an embodiment, the dough forming assembly comprises a stirring cup and a tray, the stirring cup is connected to the support, the tray is movably mounted on the base plate and located below the stirring cup, and the stirring cavity is formed between the tray and the stirring cup;

[0010] In the material waiting station, the stirring paddle is connected to the stirring cup, and in the dough forming station, the stirring paddle is drivingly connected to the driving head.

[0011] In an embodiment, the driving head is located above the stirring paddle, and a plurality of first limiting blocks and second limiting blocks that can be limited to fit are arranged between the driving head and the stirring paddle;

[0012] An installation gap is formed between two adjacent first limiting blocks, the second limiting block is arranged corresponding to the installation gap at the material waiting station, and the second limiting block is clamped with the first limiting block at the dough forming station.

[0013] In an embodiment, a guide surface is arranged between the first limiting block and the second limiting block, and the guide surface is used to guide the stirring paddle to switch from the material waiting station to the dough forming station.

[0014] In an embodiment, the cross-sectional shape of the first limiting block and the second limiting block is a rhombus.

[0015] In an embodiment, the first limiting block and the second limiting block are connected with a third limiting block, and the third limiting block is used to stop the separation of the first limiting block and the second limiting block at the dough forming station.

[0016] In an embodiment, the stirring cup is provided with a through hole, the stirring paddle is arranged in the through hole, and the stirring paddle is clamped on the edge of the through hole at the material waiting station.

[0017] In an embodiment, at least one elastic buckle is arranged on the stirring paddle, and the elastic buckle is clamped with the stirring cup.

[0018] In an embodiment, the free end of the elastic buckle is provided with a pressing portion.

[0019] In an embodiment, the side of the support away from the driving assembly is provided with a mounting boss, and the stirring cup is fixedly arranged on the mounting boss.

[0020] The outer surface of the stirring cup is provided with at least one mounting protrusion, and the mounting boss is provided with a first guide sliding groove corresponding to the mounting protrusion, so that the mounting protrusion is rotationally clamped with the first guide sliding groove.

[0021] The utility model also provides a cake making machine, the cake making machine comprises a baking machine and a dough mixer as described above, and the baking machine and the dough mixer are separately arranged or integrally arranged.

[0022] In an embodiment, the baking machine comprises a mounting disc, a mounting frame and a cake pressing module, the mounting frame is fixed on the mounting disc, and the cake pressing module is mounted on the mounting frame.

[0023] In an embodiment, when the baking machine and the dough mixer are integrally arranged, the bottom disc and the mounting disc are the same base, and the support and the mounting frame are arranged side by side on the base.

[0024] In an embodiment, the support and the mounting frame are connected by screws.

[0025] And / or, the dough mixer further includes a feeding module and an auxiliary frame for mounting the feeding module, the feeding module being located above the mixing chamber, the auxiliary frame being connected to the support and also to the mounting frame.

[0026] In the technical solution of this utility model, a bracket is used as an assembly base on the chassis. The dough-forming component is placed between the chassis and the bracket, and the stirring component and the drive component are installed together on the bracket to ensure that each component is assembled in place and to achieve efficient transmission between the components. The waiting station and the dough-forming station are spaced apart along the axial direction of the stirring paddle and correspond to the lower limit position and upper limit position of the stirring paddle in the stirring cup cavity, respectively. The movement range of the stirring paddle is reasonably designed to ensure that the shape and quality of the formed dough meet the requirements of dough kneading. Furthermore, when the drive component starts to work, because the drive head is connected to the stirring paddle, the drive head is driven to rotate and drive the stirring paddle to move from the waiting station to the dough-forming station. The stirring paddle rotates around the axis of the stirring paddle in the dough-forming station. This allows the stirring paddle to fully stir and knead the raw materials in the stirring cavity to obtain a uniform and high-quality dough, which helps to improve the dough-forming efficiency and dough-forming quality. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of an embodiment of the pancake maker provided by the present invention, in which the dough mixer and the pancake maker are integrated.

[0029] Figure 2 for Figure 1 A schematic diagram of the structure of a Chinese-style cake-making machine after removing part of its outer casing;

[0030] Figure 3 for Figure 2 Assembly diagram of medium-pressure disc module, mounting bracket and mounting plate;

[0031] Figure 4 for Figure 2 Assembly diagram of the agglomeration component, mixing component, support frame and chassis;

[0032] Figure 5 This is a schematic diagram of an embodiment of the dough mixer provided by this utility model, in which the dough mixer and the pancake maker are set separately;

[0033] Figure 6 for Figure 5Structure schematic diagram of dough mixer after removing part of shell;

[0034] Figure 7 Structure schematic diagram of one embodiment of the baking machine provided by the utility model, at this time, the dough mixer and the baking machine are separately arranged;

[0035] Figure 8 For Figure 7 Structure schematic diagram of the baking machine after removing part of shell;

[0036] Figure 9 Structure schematic diagram of one embodiment of the bracket cooperating with the driving head provided by the utility model;

[0037] Figure 10 For Figure 9 Local enlarged view of A;

[0038] Figure 11 For Figure 9 Structure schematic diagram of the driving head;

[0039] Figure 12 Structure schematic diagram of one embodiment of the stirring paddle and the stirring cup cooperating provided by the utility model;

[0040] Figure 13 For Figure 12 Structure schematic diagram of the stirring paddle.

[0041] Explanation of reference numerals:

[0042] 10, bracket; 11, mounting boss; 111, first guide sliding groove; 112, clamping protrusion; 12, guide boss; 121, second guide sliding groove; 13, limiting counterbore; 20, bunching assembly; 21, stirring cup; 211, via hole; 212, feeding hole; 213, mounting protrusion; 22, tray; 30, stirring assembly; 31, driving head; 311, plug interface; 312, first limiting block; 3121, first guide inclined surface; 313, mounting gap; 314, toothed structure; 32, stirring paddle; 321, second limiting block; 3211, second guide inclined surface; 322, third limiting block; 323, elastic buckle; 3231, pressing portion; 324, material passing opening; 40, bottom disc; 50, driving assembly; 60, mounting disc; 61, lower baking tray; 70, mounting frame; 71, mounting seat; 711, first support frame; 7111, threaded hole; 7112, cake inlet; 7113, cake outlet; 712, second support frame; 7121, positioning column; 72, support column; 80, auxiliary frame; 81, connecting column; 91, cake pressing module; 92, feeding module.

[0043] The realization, functional features and advantages of the utility model will be further explained in combination with embodiments and with reference to the drawings. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0045] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0046] In addition, if the embodiments of the present application involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.

[0047] At present, manually kneading and stirring the dough not only consumes time and effort, but also varies in degree due to different people, resulting in great differences in the shape, taste and quality of the formed dough due to the non-standardized production process. Therefore, electric stirring equipment is often used for dough mixing. However, the dough mixing effect and efficiency of the existing stirring equipment are not good.

[0048] In order to solve the technical problem, the present application provides a dough mixer.

[0049] Please refer to Figures 1 to 6In the embodiment of the utility model, the dough mixer comprises a chassis 40, a dough forming assembly 20, a stirring assembly 30 and a driving assembly 50, the chassis 40 is fixed with a support 10; the dough forming assembly 20 is arranged between the chassis 40 and the support 10 and is internally provided with a stirring cavity; the stirring assembly 30 comprises a driving head 31 and a stirring paddle 32, the driving head 31 is rotatably connected to the support 10 and is in driving connection with the stirring paddle 32, the stirring paddle 32 has a material receiving station and a dough forming station in the stirring cavity, the material receiving station and the dough forming station are arranged along the axial direction of the stirring paddle 32; the driving assembly 50 is in driving connection with the driving head 31 to drive the stirring paddle 32 to switch from the material receiving station to the dough forming station through the driving head 31 and make the stirring paddle 32 rotate around its axis, so as to improve the dough forming efficiency and quality of the dough mixer.

[0050] In the technical scheme of the utility model, the support 10 is used as an assembly base on the chassis 40, the dough forming assembly 20 is arranged between the chassis 40 and the support 10, and the stirring assembly 30 and the driving assembly 50 are installed on the support 10, so that the components are assembled in place and efficient transmission between the components is realized; the material receiving station and the dough forming station are arranged along the axial direction of the stirring paddle 32 and correspond to the lower limit position and the upper limit position of the stirring paddle 32 in the stirring cup 21 cavity respectively, the movement range of the stirring paddle 32 is reasonably designed, the shape and quality of the formed dough meet the dough mixing requirements, and when the driving assembly 50 starts to work, the driving head 31 is in driving connection with the stirring paddle 32, the driving head 31 rotates to drive the stirring paddle 32 to move from the material receiving station to the dough forming station, and the stirring paddle 32 rotates around the axis of the stirring paddle 32 in the dough forming station, so that the stirring paddle 32 can fully stir and knead the raw materials in the stirring cavity, the dough is uniform and of high quality, and the dough forming efficiency and quality are improved.

[0051] Specifically, the stirring cavity defined by the dough forming assembly 20 is used to limit the raw materials provided by the feeding module 92, and then the stirring paddle 32 of the stirring assembly 30 can stir and knead the raw materials to provide uniform and high-quality dough to the next process.

[0052] Wherein, on the chassis 40, the support 10 is taken as the assembling base, the dough assembly 20 is arranged between the chassis 40 and the support 10, and the stirring assembly 30 and the driving assembly 50 are installed on the support 10 together, so as to ensure that the components are assembled in place and realize efficient transmission between the components; the stirring paddle 32 is at least partially arranged in the stirring cavity, when being in the material waiting station, the stirring paddle 32 can be relatively fixed in the stirring cavity, that is, the lower limit position of the stirring paddle 32 corresponding to the material waiting station, so as to effectively prevent the further sinking of the stirring paddle 32, reduce the risk of damage to the bottom wall of the stirring cavity, prolong the service life of the stirring paddle 32, and the stirring paddle 32 and the driving head 31 can abut against each other or form a gap, so as to ensure that, when being in the material waiting station, the driving head 31 inefficiently drives the stirring paddle 32 to rotate or cannot drive the stirring paddle 32 to rotate, thereby effectively reducing the risk of mis-stirring; when being in the dough forming station, the stirring paddle 32 is in transmission connection with the driving head 31, that is, the upper limit position of the stirring paddle 32 corresponding to the dough forming station, so that the dough forming station is located above the material waiting station, when the driving head 31 is driven to rotate by the driving assembly 50, the driving head 31 drives the stirring paddle 32 to move upwards, so as to switch from the material waiting station to the dough forming station, increase the dough kneading space between the stirring paddle 32 and the bottom wall of the stirring cavity, improve the uniformity of stirring and the uniformity of the dough, and when being in the dough forming station, the stirring paddle 32 always rotates synchronously with the driving head 31, so as to facilitate the stirring paddle 32 to stir and knead the raw materials in the stirring cavity, obtain uniform and high-quality dough, and further improve the dough forming efficiency and quality of the dough.

[0053] The driving assembly 50 can be arranged above the support 10, so as to support the driving assembly 50 by the support 10 and improve the driving stability of the driving head 31, wherein the driving assembly 50 comprises a motor and a gear set in transmission connection, the circumferential side of the driving head 31 is formed with a toothed structure 314 matched with the gear set, so that the gear set drives the driving head 31 to rotate through the toothed structure 314 under the driving action of the motor, thereby driving the stirring paddle 32 to rotate synchronously, and completing the stirring operation; in this way, the transmission efficiency is improved; and the driving head 31 also has high structural strength, thereby improving the driving reliability. Of course, other transmission mechanisms capable of driving the driving head 31 to rotate are also applicable to the present application.

[0054] Please refer to Figure 4 and Figure 6In the embodiment of the utility model, the dough assembly 20 includes the stirring cup 21 and the tray 22, the stirring cup 21 is connected to the support 10, the tray 22 is movably installed on the bottom disc 40 and is located below the stirring cup 21, and the stirring cavity is formed between the tray 22 and the stirring cup 21; at the material waiting station, the stirring paddle 32 is connected to the stirring cup 21, and at the dough forming station, the stirring paddle 32 is in transmission connection with the driving head 31; it can be understood that the stirring cup 21 is hollow and has a bottom opening structure, the tray 22 serves as the bottom wall of the stirring cavity and reliably bears the raw materials, and also facilitates the formation of dough on the tray 22; since the tray 22 is movably installed on the bottom disc 40, the formed dough can be conveniently removed, that is, when the dough is formed, the tray 22 can be controlled to deviate relative to the stirring cup 21, so that the bottom of the stirring cup 21 is exposed and the dough falls off, and the dough can be conveniently removed for the next process. In other embodiments, the bottom of the stirring cup 21 is provided with a flap that can be turned relative to the cup body, and the bottom of the stirring cup 21 can also be opened and the dough can be removed from the stirring cup 21; and the stirring paddle 32 is connected to the stirring cup 21, so that the stirring paddle 32 is relatively fixed in the stirring cavity, thereby effectively preventing further sinking of the stirring paddle 32 and reducing the risk of damage to the bottom wall of the stirring cavity.

[0055] Optionally, in the embodiment of the utility model, the driving head 31 is located above the stirring paddle 32, a plurality of first limiting blocks 312 and second limiting blocks 321 that can be limited in position are arranged between the driving head 31 and the stirring paddle 32; an installation gap 313 is formed between two adjacent first limiting blocks 312, at the material waiting station, the second limiting blocks 321 are arranged corresponding to the installation gap 313, and at the dough forming station, the second limiting blocks 321 are clamped with the first limiting blocks 312; in this way, the installation gap 313 between two adjacent first limiting blocks 312 is reasonably utilized to realize compact design of the driving head 31 and the stirring paddle 32, and at the same time, it is ensured that the driving head 31 can be reliably switched to the dough forming station through clamping of the first limiting blocks 312 and the second limiting blocks 321 and drive the stirring paddle 32 to rotate together, thereby reducing the risk of disengagement of the first limiting blocks 312 and the second limiting blocks 321 at the dough forming station and improving the reliability of synchronous rotation of the driving head 31 and the stirring paddle 32.

[0056] Among them, as Figures 10 to 12, the driving head 31 is provided with an insertion port 311 for inserting the stirring paddle 32, and a plurality of first limiting blocks 312 are arranged on the inner wall surface of the insertion port 311 in the circumferential direction of the driving head 31, and the outer wall surface of the stirring paddle 32 is provided with a plurality of second limiting blocks 321; or, the end of the stirring paddle 32 away from the tray 22 is provided with an insertion port 311, and a plurality of first limiting blocks 312 are arranged on the inner wall surface of the insertion port 311, and the driving head 31 is connected with an insertion piece inserted into the insertion port 311, and the outer wall surface of the insertion piece is provided with a plurality of second limiting blocks 321, so that the connection strength of the driving head 31 and the stirring paddle 32 at the agglomeration station can be increased, the risk of separation of the two can be reduced, and the transmission reliability between the driving head 31 and the stirring paddle 32 can be improved.

[0057] Taking the example that the first limiting block 312 is arranged on the driving head 31 and the second limiting block 321 is arranged on the stirring paddle 32, the first limiting block 312 is arranged around the axis of the driving head 31 at intervals and uniformly, and the second limiting block 321 is arranged around the axis of the stirring paddle 32 at intervals and uniformly; at the material waiting station, the second limiting block 321 can be located in the mounting gap 313 and be arranged side by side with the first limiting block 312 at the same height, or be close to the mounting gap 313 and be higher or lower than the height at which the first limiting block 312 is located; at the agglomeration station, the first limiting block 312 and the second limiting block 321 are mutually clamped and limited.

[0058] In order to ensure that the stirring paddle 32 can be reliably switched to the agglomeration station and synchronously rotate with the driving head 31, in the embodiments of the present application, a guide surface is arranged between the first limiting block 312 and the second limiting block 321, and the guide surface is used for guiding the stirring paddle 32 to switch from the material waiting station to the agglomeration station; wherein the guide surface is provided with at least one, and is located on the path of relative movement of the first limiting block 312 and the second limiting block 321, so as to ensure that the guide surface can play a guiding role and realize the mutual clamping of the first limiting block 312 and the second limiting block 321, and when the driving head 31 rotates, the corresponding first limiting block 312 and second limiting block 321 are clamped by the cooperation of the centrifugal force and the guide surface, so as to realize the relative fixation of the driving head 31 and the stirring paddle 32, which is helpful to realize the synchronous rotation of the driving head 31 and the stirring paddle 32 and improve the stirring efficiency of the stirring paddle 32. In the embodiments, for example, Figure 10 and Figure 13 The guide surface includes a first guide inclined surface 3121 and a second guide inclined surface 3211, the first guide inclined surface 3121 is formed on the first limiting block 312, and the second guide inclined surface 3211 is formed on the second limiting block 321, and at the agglomeration station, the first guide inclined surface 3121 and the second guide inclined surface 3211 abut against each other, so as to increase the acting surface and further improve the clamping reliability and reduce the possibility of the stirring paddle 32 separating from the driving head 31. Of course, other structures that are conducive to reliably switching the stirring paddle 32 to the agglomeration station and synchronously rotating with the driving head 31 are also applicable to the present application.

[0059] Optionally, in the embodiment of the utility model, the cross section shape of first limit block 312 and second limit block 321 is all diamond, when being in the material waiting station, the diamond angle vertex of adjacent two first limit block 312 and second limit block 321 is opposite, and the face corresponding to diamond side can be used as the guide surface. And because diamond is the central symmetry figure, can make second limit block 321 and the carding of any one of two first limit block 312 of adjoining.

[0060] Optionally, in the embodiment of the utility model, first limit block 312 and second limit block 321 are all connected with third limit block 322, at the agglomeration station, third limit block 322 is used for stopping the separation of first limit block 312 and second limit block 321, specifically, after first limit block 312 and second limit block 321 are mutually clamped, when the rotation speed is too large, or the friction between first limit block 312 and second limit block 321 is small, the larger force will make the relative motion between first limit block 312 and second limit block 321, by setting third limit block 322 and first limit block 312 and / or second limit block 321 abutting, the relative position between first limit block 312 and second limit block 321 can be further limited, the relative separation movement trend of first limit block 312 and second limit block 321 is restricted, the relative fixed purpose of driving head 31 and stirring paddle 32 is achieved, and the synchronous rotation of driving head 31 and stirring paddle 32 is guaranteed.

[0061] Wherein, as shown in Figure 10 A third limit block 322 is connected with first limit block 312, and one end is connected to the end of the guide surface of first limit block 312, and the other end extends away from stirring paddle 32, as shown in Figure 13 A third limit block 322 is connected with second limit block 321, and one end is connected to the end of the guide surface of second limit block 321, and the other end extends away from driving head 31, but in other embodiments, third limit block 322 is located on the extension path of the guide surface, and is not connected with first limit block 312 or second limit block 321.

[0062] Please refer to Figure 12 In the embodiment of the utility model, the stirring cup 21 is provided with a through hole 211, the stirring paddle 32 is arranged in the through hole 211, and is clamped on the edge of the through hole 211 at the material waiting station, so that the material waiting station of the stirring paddle 32 in the stirring cup 21 can be limited, and the complete separation of the stirring paddle 32 and the stirring cup 21 can be effectively avoided, and the driving effectiveness of the driving head 31 on the stirring paddle 32 is guaranteed.

[0063] In addition, the stirring cup 21 is also provided with a feeding hole 212, which is arranged on the circumferential side of the through hole and is used for abutting the discharge port of the feeding module 92, so as to improve the automation level of the dough making machine, facilitate the raw materials to enter the stirring cup 21 through the feeding hole 212, and form uniform and high-quality dough under the stirring and kneading of the stirring paddle 32.

[0064] Please refer to Figures 12 to 13 In the embodiment of the present application, the stirring paddle 32 is provided with at least one elastic buckle 323, which is connected with the stirring cup 21, so as to facilitate the assembly and disassembly of the stirring paddle 32 and the stirring cup 21. In this embodiment, the elastic buckles 323 are evenly and spacedly arranged along the circumference of the stirring paddle 32, and can provide uniform and reliable support to the whole stirring paddle 32. In this embodiment, two elastic buckles 323 are arranged. In other embodiments, a limiting pin is arranged on the stirring paddle 32 and arranged above the stirring cup 21.

[0065] Further, in order to facilitate the disassembly of the stirring paddle 32, the free end of the elastic buckle 323 is provided with a pressing portion 3231. By pressing the pressing portion 3231, the elastic buckle 323 can be deformed towards the center of the stirring paddle 32, and the elastic buckle 323 is away from the edge of the through hole 211. In this way, by reducing the radial dimension of the stirring paddle 32 at the through hole 211, the stirring paddle 32 can be separated from the stirring cup 21, and the disassembly of the stirring paddle 32 is completed. When installing the stirring paddle 32, the stirring paddle 32 is only needed to be pushed along the axis of the through hole 211, so that the elastic buckle 323 is deformed and connected to the stirring cup 21.

[0066] The stirring paddle 32 is provided with a material passing hole 324, which can be arranged on the edge of the kneading blade of the stirring paddle 32, or can be arranged near the center of the kneading blade. A material guide leaf is arranged at the material passing hole 324, which facilitates the introduction of the raw materials falling above the stirring paddle 32 to the material passing hole 324, so that the raw materials enter between the kneading blade and the bottom wall of the stirring chamber, and then cooperate with the rotation of the stirring paddle 32 and the kneading of the kneading convex on the kneading blade, which is helpful for the rapid formation of the dough.

[0067] Please refer to Figures 9 to 10 In the embodiment of the present application, the side of the bracket 10 away from the driving assembly 50 is provided with a mounting boss 11, and the stirring cup 21 is fixedly arranged on the mounting boss 11, so as to ensure that the stirring cup 21 is firmly mounted on the bracket 10, and facilitate the subsequent stirring operation. Specifically, the mounting convex 213 is arranged around the outside of the stirring cup 21, and the connection modes of the two include but are not limited to clamping, mortise and tenon, and buckling.

[0068] And the outer surface of the stirring cup 21 is provided with at least one hanging convex 213, the hanging convex 213 is provided with a first guide sliding groove 111 corresponding to the hanging convex 213, so that the hanging convex 213 and the first guide sliding groove 111 are rotatably connected, and then the rotatable connection of the hanging convex 213 and the first guide sliding groove 111 realizes the quick disassembly and compact connection of the stirring cup 21 and the support 10, and the rotatable connection of multiple sets of hanging convex 213 and first guide sliding groove 111 facilitates to increase the difficulty of the stirring cup 21 from the support 10. In addition, the stirring cup 21 and the support 10 can be further locked by fasteners, thereby improving the connection strength of the stirring cup 21 and the support 10.

[0069] Further, the profile line of the first guide sliding groove 111 has at least one inflection point, which helps to increase the difficulty of the hanging convex 213 from the hanging convex 11, and improves the connection reliability of the stirring cup 21 and the support 10; in the embodiment, the first guide sliding groove 111 includes a first fold section and a second fold section, and the first fold section and the second fold section are connected by bending to form an inflection point. The second fold section of the first guide sliding groove 111 can be provided with a clamping protrusion 112 matched with the hanging convex 213, so as to further strengthen the connection between the stirring cup 21 and the support 10; and / or, the hanging convex 11 is connected with a guide convex 12 provided with a second guide sliding groove 121, and the second guide sliding groove 121 is connected with the first guide sliding groove 111, so as to shorten the assembly time.

[0070] Wherein, the first fold section is arranged obliquely, the first fold section extends horizontally along the circumferential direction of the hanging convex 11, and is arranged close to the driving head 31, so that when the stirring cup 21 is assembled to the support 10, the stirring cup 21 is lifted up, so that the hanging convex 213 enters the first fold section, and the stirring cup 21 is rotated and lifted up, so that the hanging convex 213 moves along the first fold section and enters the second fold section, and the stirring cup 21 is continuously rotated, so that the hanging convex 213 moves along the second fold section, and the assembly of the stirring cup 21 is completed.

[0071] Because the first guide sliding groove 111 is provided with an inflection point, in order to ensure the movement of the hanging convex 213 on the first guide sliding groove 111, the cross section shape of the hanging convex 213 is a rhombus, and by using the parallel opposite sides and the axial symmetry characteristics of the rhombus, the hanging convex 213 can always have a side abutting against the first guide sliding groove 111 during the movement along the first guide sliding groove 111, and plays a guiding role.

[0072] The utility model discloses still propose a kind of pie making machine, the pie making machine includes dough mixer and baking pie machine, the specific structure of the dough mixer refers to above-mentioned embodiment, since the pie making machine of the present application adopts all technical solutions of above-mentioned all embodiments, at least has all beneficial effects brought by the technical scheme of above-mentioned embodiment, here no longer one by one elaboration. Among them, as Figures 1 to 4 The baking pie machine and the dough mixer are separately arranged, or,Figures 5 to 8 The baking machine and the dough mixer are integrally arranged.

[0073] In the scheme of the utility model, the dough machine comprises a dough mixer and a baking machine, that is, has the functions of dough forming and baking, when the dough mixer and the baking machine are arranged separately, the baking function and the dough forming function can be realized through a semi-automatic mode, and the use flexibility of the dough machine can be improved to meet the use requirements of users; when the dough mixer and the baking machine are arranged integrally, the baking function and the dough forming function can be realized through a full-automatic mode, and the overall performance of the dough machine can be improved, and the carrying convenience and the baking efficiency of the dough machine can be improved.

[0074] Please refer to Figure 3 and Figure 8 In the embodiment of the utility model, the baking machine comprises a mounting disc 60, a mounting frame 70 and a cake pressing module 91, the mounting frame 70 is fixed on the mounting disc 60, and the cake pressing module 91 is installed on the mounting frame 70.

[0075] It can be understood that the cake pressing module 91 is a module for pressing cakes and baking cakes, mainly comprising an upper baking tray capable of pressing dough and suitable for heating dough and a driving mechanism for driving the upper baking tray to move, and the mounting disc 60 is provided with a lower baking tray 61 corresponding to the upper baking tray, in other words, in the process of making cakes, the driving mechanism is required to drive the upper baking tray to move up and down to realize the shaping of the dough, and the heating surface of the upper baking tray and the lower baking tray 61 is used to realize the baking of cakes; therefore, in order to ensure the supporting effect of the mounting frame 70 on the cake pressing module 91 (at least comprising a baking tray and a driving mechanism) and the impact force when the upper baking tray is pressed down, the mounting frame 70 can comprise a mounting seat 71 and a plurality of supporting columns 72, wherein the mounting seat 71 is installed on the mounting disc 60, each supporting column 72 is arranged at the circumferential side of the mounting seat 71, and one end is connected to the mounting disc 60 and / or the connecting part of the mounting disc 60 and the mounting seat 71, and the other end is connected to the side of the mounting seat 71 away from the mounting disc 60, which helps to disperse the force applied on the mounting seat 71 and transmit it to the mounting disc 60, so that the mounting disc 60 further participates in supporting the force generated by the cake pressing module 91, that is, the effective contact area between the mounting frame 70 and the mounting disc 60 is increased, the supporting effect and the force transmission effect of the mounting frame 70 are improved, compared with using a thick mounting seat 71, for example, a high-strength material such as aluminum alloy, the strength requirement of the mounting seat 71 can be reduced, thereby saving the cost of the mounting seat 71, reducing the weight of the mounting seat 71, improving the cost and weight of the whole baking machine or dough machine, and facilitating the carrying and use of the baking machine or dough machine. In other embodiments, the mounting frame 70 only comprises the mounting seat 71 when the strength allows.

[0076] The installation seat 71 and the installation disc 60 form a cake pressing cavity, and the installation seat 71 or the first support frame 711 is provided with an in-cake port 7112 and an out-cake port 7113 communicating with the cake pressing cavity. At this time, a dough mixing structure such as the stirring assembly 30 can be arranged near the in-cake port 7112, so that the dough stirred and formed in the stirring assembly 30 can enter the cake pressing cavity through the in-cake port 7112, or the dough is placed in the cake pressing cavity by hand, that is, the formed dough is placed on the lower baking tray 61. Then, the upper baking tray can be moved in the cake pressing cavity by the driving of the driving mechanism and is close to the lower baking tray 61, so that the dough placed in the cake pressing cavity is heated and shaped, the cake pressing operation is completed, and the dough after the cake pressing operation is taken out through the out-cake port 7113.

[0077] Please refer to Figures 2 to 4 In the embodiment of the utility model, when the baking machine and the dough mixer are integrally arranged, the bottom disc 40 and the installation disc 60 are the same base, and the support 10 and the mounting frame 70 are side by side on the base. In this way, the integration level of the baking machine can be improved, and the number of parts can be reduced, and the overall weight can be reduced. When hot, when the baking machine and the dough mixer are separately arranged, the bottom disc 40 and the installation disc 60 are independently arranged, and the corresponding shell is arranged on the bottom disc 40 and the installation disc 60 to shield and protect the internal structure.

[0078] Further, in the embodiment of the utility model, the support 10 and the mounting frame 70 are connected by screw locking; in this way, it is helpful to disperse the force and transmit it to the base, so that the base further participates in supporting the action force generated by the cake pressing module 91, the stirring assembly 30 and the like, and prolongs the service life of the support 10 and the mounting frame 70.

[0079] It can be understood that the mounting frame 70 comprises a first support frame 711 and a second support frame 712, the first support frame 711 is fixedly arranged on the mounting disc 60, the second support frame 712 is arranged above the first support frame 711 and is connected with the support column 72, when the baking machine and the dough mixer are integrally arranged, the first support frame 711 is arranged with a positioning column 7121 close to the support 10, the positioning column 7121 is arranged with a threaded hole 7111, the support 10 is arranged with a limiting counterbore 13 matched with the threaded hole 7111, a screw is sequentially arranged in the limiting counterbore 13 and the threaded hole 7111 and is locked in the threaded hole 7111, the connection between the support 10 and the mounting frame 70 is completed, in this process, the support 10 can be partially arranged on the mounting frame 70, so that the effective contact area between the support 10 and the mounting frame 70 is increased and the connection strength between the support 10 and the mounting frame 70 is improved, meanwhile, the positioning efficiency of the threaded hole 7111 and the limiting counterbore 13 is improved. In other embodiments, the connection mode of the support 10 and the mounting frame 70 comprises but is not limited to plug-in cooperation, buckle connection; when the baking machine and the dough mixer are arranged in a split mode, the support 10 does not need to be arranged with the positioning column 7121 and the mounting frame 70 does not need to be arranged with the structure with the limiting counterbore 13.

[0080] Please refer to Figure 2 In the embodiment of the present application, the dough mixer further comprises a feeding module 92 and an auxiliary frame 80 for mounting the feeding module 92, the feeding module 92 is arranged above the stirring cavity, the auxiliary frame 80 is connected with the support 10 and the mounting frame 70; it can be understood that the feeding module 92 is arranged above the stirring cavity and is used for providing raw materials to the stirring cavity, the feeding module 92 is assembled in the dough mixer or the baking machine through the connection between the auxiliary frame 80 and the support 10, the support 10 supports the auxiliary frame 80 and the feeding module 92, so that the raw materials can reliably enter the stirring cavity and the agglomeration efficiency is improved; the auxiliary frame 80 is connected with the mounting frame 70, which helps to disperse the force applied on the auxiliary frame 80 and the support 10 and transmit the force to the mounting frame 70, so that the mounting frame 70 further participates in supporting the force generated by the feeding module 92, wherein a plurality of connecting columns 81 are arranged on the auxiliary frame 80 at intervals, part of the connecting columns 81 are connected with the support 10 and part of the connecting columns 81 are connected with the mounting frame 70, specifically, the connecting columns 81 are connected with the positioning column 7121 of the second support frame 712 of the mounting frame 70, and the connection mode of the connecting columns 81 with the support 10 and the mounting frame 70 comprises but is not limited to screw locking, buckle connection and plug-in cooperation.

[0081] The above description is only an exemplary embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structural transformation made by using the content of the present application specification and drawings or directly / indirectly applied in other related technical fields is included in the patent protection range of the present application.

Claims

1. A dough mixer characterized by comprising: The application relates to a dough kneading machine, which comprises a base plate, a support fixed on the base plate, a dough kneading assembly arranged between the base plate and the support, and a stirring assembly. The dough kneading assembly comprises a stirring cup and a tray, the stirring cup is connected to the support, the tray is movably arranged on the base plate and located below the stirring cup, and the stirring cup and the tray form the stirring cavity. In the material receiving position, the stirring paddle is connected to the stirring cup, and in the dough kneading position, the stirring paddle is in transmission connection with the driving head. The driving head is located above the stirring paddle, and a plurality of first limiting blocks and second limiting blocks in position-limiting connection are arranged between the driving head and the stirring paddle. Adjacent two first limiting blocks form an installation gap, in the material receiving position, the second limiting block is arranged corresponding to the installation gap, and in the dough kneading position, the second limiting block is in clamping connection with the first limiting block.

2. A dough mixer as claimed in claim 1, characterized in that A guide surface is arranged between the first limiting block and the second limiting block, and the guide surface is used for guiding the stirring paddle to switch from the material receiving position to the dough kneading position. The cross section of the first limiting block and the second limiting block is in the shape of a rhombus.

3. A dough mixer as claimed in claim 2, wherein The first limiting block and the second limiting block are connected with a third limiting block, and in the dough kneading position, the third limiting block is used for stopping the separation of the first limiting block and the second limiting block. The stirring cup is provided with a through hole, the stirring paddle is arranged in the through hole, and in the material receiving position, the stirring paddle is clamped on the edge of the through hole.

4. A dough mixer as claimed in claim 3, characterised in that The stirring paddle is provided with at least one elastic buckle, the elastic buckle is in clamping connection with the stirring cup. The free end of the elastic buckle is provided with a pressing part. The side, away from the driving assembly, of the support is provided with a mounting boss, and the stirring cup is fixed on the mounting boss.

5. The dough mixer of claim 2 wherein, The outer surface of the stirring cup is provided with at least one mounting protrusion, and the mounting boss is provided with a first guide sliding groove corresponding to the mounting protrusion, so that the mounting protrusion is in rotating clamping connection with the first guide sliding groove.

6. A dough mixer as claimed in claim 5 wherein, The application relates to a baking machine and a dough kneading machine as claimed in any one of claims 1 to 7, and the baking machine and the dough kneading machine are arranged separately or integrally. The baking machine comprises a mounting disc, a mounting frame and a cake pressing module, the mounting frame is fixed on the mounting disc, and the cake pressing module is arranged on the mounting frame.

7. The dough mixer of claim 2 wherein, When the baking machine and the dough kneading machine are arranged integrally, the base plate and the mounting disc are the same base, and the support and the mounting frame are arranged side by side on the base. The support and the mounting frame are connected through screw locking.

8. A cake making machine characterised in that, ​ 9. The cake making machine of claim 8, wherein, ​ 10. The cake making machine of claim 9, wherein, ​ ​ And / or, the dough mixer further comprises a feeding module and a sub-frame for mounting the feeding module, the feeding module is located above the mixing cavity, the sub-frame is connected with the support and the mounting frame.