Pastry baking equipment

By employing a drive mechanism and a heating mechanism in the pastry baking equipment, automated turning and uniform heating are achieved, solving the problem that existing egg waffle devices cannot turn the pastries, thus improving production efficiency and hygiene.

CN223799148UActive Publication Date: 2026-01-16NINGBO YUNYI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520132267.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-01-16
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing fully automatic egg waffle machines cannot flip the waffles, resulting in one side sticking to the bottom. Furthermore, manual production is labor-intensive, inefficient, costly, and difficult to ensure hygiene.

Method used

The pastry baking equipment adopts a first heating mechanism and a second heating mechanism. It achieves bidirectional drive through a drive mechanism, and with the help of a micro switch and a driven connection structure, it realizes automatic turning of the batter and uniform heating.

Benefits of technology

It achieves automated repeated flipping and uniform heating, improving production efficiency, reducing manual labor intensity and costs, and ensuring hygienic conditions.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223799148U_ABST
    Figure CN223799148U_ABST
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Abstract

The utility model discloses pastry baking equipment which comprises a first heating mechanism, a second heating mechanism and a driving mechanism, a driving shaft of the driving mechanism is fixedly connected with the first heating mechanism, and the first heating mechanism and the second heating mechanism are arranged on the two sides of the driving shaft respectively. The first heating mechanism and / or the second heating mechanism are / is provided with a driven connecting structure so as to be matched with and attract the second heating mechanism and the first heating mechanism. The driving shaft controls the first heating mechanism to rotate, and when the driven connecting structure works, the second heating mechanism moves along with the first heating mechanism; at least one first placing groove is formed in the first heating mechanism, at least one second placing groove is formed in the second heating mechanism, and heating pipes are arranged at the bottom of the first groove and the bottom of the second groove. Compared with the prior art, the heating device has the advantages of being simple in structure and capable of achieving automatic repeated turning and even heating.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the automatic food production field, concretely relates to a kind of pastry baking equipment. BACKGROUND

[0002] Egg cake, with egg, granulated sugar, flour, milk, oil etc. Cause juice, pour in the middle of two special honeycomb-shaped iron template, place on fire and bake into. Use tool to take out egg cake, egg cake is golden yellow, with the smell of cake, plus the middle is hollow, when biting, the taste is particularly elastic, egg cake is sold, all adopt manual production, manual operation can enhance the labor intensity of manual work, and when one person operates, need to order and need to make and package, it will consume more time, cause low production efficiency, health cannot be guaranteed, manual production cost is higher, and manual production for a long time, efficiency will be lower and lower, therefore a kind of full-automatic device for making egg cake, for example, Chinese utility model patent CN215992536U "a kind of full-automatic device for making egg cake" but this full-automatic egg cake device cannot turn over, due to batter gravity effect, it is easy to cause the condition of one side batter, therefore it is very important to obtain a kind of pastry baking equipment that can be heated uniformly. SUMMARY

[0003] To solve at least one of the above technical problems, the utility model provides a kind of pastry baking equipment, including first heating mechanism, second heating mechanism and drive mechanism, the drive shaft of the drive mechanism is fixedly connected with the first heating mechanism, the first heating mechanism and second heating mechanism are separately arranged on the both sides of the drive shaft, the first heating mechanism and / or the second heating mechanism is equipped with driven connection structure to cooperate suction second heating mechanism, first heating mechanism;The drive shaft controls the rotation of the first heating mechanism, when the driven connection structure works second heating mechanism follows the movement of the first heating mechanism;

[0004] At least one first placing groove is formed in the first heating mechanism, and at least one second placing groove is formed in the second heating mechanism,

[0005] The bottom of the first placing groove and the bottom of the second placing groove are both provided with a heating pipe.

[0006] The first microswitch and the second microswitch are respectively fixed on the support frame, and the first driving element and the second driving element are respectively arranged on the first heating mechanism and the second heating mechanism to cooperate with the first microswitch and the second microswitch.

[0007] Through the above technical solution, the driving mechanism of this utility model can be a bidirectional drive motor. The bidirectional drive motor rotates forward to drive the first heating mechanism to rotate towards the second heating mechanism. Then, the driven connection structure works and engages. The bidirectional drive motor reverses after receiving a signal from the second micro switch. Due to the action of the driven connection structure, the second heating mechanism will follow the first heating mechanism. After reaching the first micro switch, the bidirectional drive motor receives a signal and rotates forward to achieve reciprocating motion. The batter can flow in the reciprocating motion, and uniform heating can be achieved in the first placement groove.

[0008] Preferably, at least one second connector is provided on the side wall of the second heating mechanism, and the second connector has a channel for the drive shaft to pass through, so that the second connector and the drive shaft are rotatably connected. A first connector is fixed to the first heating mechanism, the drive shaft passes through the first connector, and the first connector is fixed to the drive shaft by fasteners.

[0009] Preferably, when the first heating mechanism and the second heating mechanism are joined together, the first placement groove and the second placement groove are at least partially connected to form a chamber, which can be used to make spherical foods such as egg waffles and takoyaki.

[0010] The system also includes a support frame, on which the drive mechanism is fixed. The support frame has a support groove with a high-temperature resistant bushing inside. The end of the drive shaft is inserted into the high-temperature resistant bushing, and the output end of the drive mechanism is fixedly connected to the drive shaft via a coupling. At least one limiting member is threadedly connected to the bottom of the support frame. The top of the limiting member forms a limiting surface for supporting the bottom of the first heating mechanism or the bottom of the second heating mechanism. The limiting member is positioned near the outer edge of the first heating mechanism or the second heating mechanism.

[0011] Through the above technical solution, since the first heating mechanism and the second heating mechanism have heating tubes, a high-temperature resistant bushing is used to increase the service life of this utility model. The setting of the limiting member can support the bottom surface of the first lower shell and the second lower shell, that is, adjust the tilt angle of the first heating mechanism and the second heating mechanism. For example, when adding batter, the first heating mechanism and the second heating mechanism are placed horizontally.

[0012] The driven connection structure includes an electromagnetic adsorption device and an adsorption element, which are respectively fixed to the first heating mechanism and the second heating mechanism.

[0013] The bottom of the support frame is fixed with a gravity detection device, which can detect the size of the added batter and then send the data to an external controller, which can control the stopping of adding batter.

[0014] Preferably, further comprising a slide rail, one side of the slide rail is fixed with a guide rail, the guide rail is provided with a gear slot, a walking motor is fixed on the sliding block of the slide rail, the output end of the walking motor is fixedly connected with a gear engaged with the gear slot, the walking motor rotates to control the sliding block to slide on the slide rail, and the two ends of the weight detection device are connected with the sliding block and the support frame respectively.

[0015] Through the technical scheme, the guide rail and the gear slot can realize the linear movement of the support frame of the utility model, so as to cooperate with the next or previous machining process.

[0016] The first heating mechanism comprises a first base body, the first placing groove is arranged on the upper surface of the first base body, a heating pipe is arranged on the lower surface of the first base body, and the lower surface of the first base body is fixed with a first lower shell to protect the heating pipe.

[0017] The lower surface of the first base body is provided with a first placing groove, the heating pipe is arranged in the first placing groove, the lower surface of the second base body is provided with a second placing groove, and the heating pipe is arranged in the second placing groove.

[0018] Compared with the prior art, the utility model has the advantages that the utility model is simple in structure and can realize automatic repeated turning and uniform heating. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a perspective view of the utility model;

[0020] Figure 2 It is a sectional view of the utility model;

[0021] Reference signs:

[0022] 1 first heating mechanism; 101 first placing groove; 102 first connecting piece; 103 first base body; 104 first lower shell

[0023] 2 second heating mechanism; 201 second placing groove; 202 second connecting piece; 203 second base body; 204 second lower shell; 205 circular arc groove; 206 entrance and exit;

[0024] 3 drive mechanism; 301 bidirectional drive motor; 302 drive shaft;

[0025] 4 driven connection structure; 5 heating pipe; 6 gravity detection device;

[0026] 701 first micro switch; 702 second micro switch; 703 first driving member; 704 second driving member;

[0027] 801 support frame; 802 support groove; 803 high-temperature-resistant shaft sleeve; 804 shaft coupling; 805 limiting member;

[0028] 901 sliding rail; 902 guide rail; 903 tooth groove; 904 walking motor; 905 gear; 906 sliding block. DETAILED DESCRIPTION

[0029] In order to make the person skilled in the art better understand the utility model, so that the scope of protection of the utility model is more clearly limited, the utility model is described in detail below with regard to some specific embodiments of the utility model. It should be noted that the following is only some specific embodiments of the concept of the utility model, and is only a part of the embodiments of the utility model, and the specific and direct description of the related structure is only for the convenience of understanding the utility model, and each specific feature does not of course, directly limit the implementation range of the utility model.

[0030] With reference to the drawings, the utility model adopts the following technical scheme, a kind of pastry baking equipment, including first heating mechanism 1, second heating mechanism 2 and drive mechanism 3, the drive shaft 302 of the drive mechanism 3 is fixedly connected the first heating mechanism 1, the first heating mechanism 1 and second heating mechanism 2 are separately arranged in the two sides of the drive shaft 302, the first heating mechanism 1 and / or the second heating mechanism 2 is equipped with driven connection structure 4 to cooperate suction second heating mechanism 2, first heating mechanism 1;The drive shaft 302 controls the rotation of the first heating mechanism 1, when the driven connection structure 4 works second heating mechanism 2 follows the first heating mechanism 1 movement;

[0031] At least one first placing recess 101 is opened in the first heating mechanism 1, and at least one second placing recess 201 is opened in the second heating mechanism 2,

[0032] The bottom of the first placing recess and the bottom of the second placing recess are each provided with a heating pipe 5.

[0033] The support frame 801 is respectively fixed with a first micro switch 701 and a second micro switch 702, and the first heating mechanism 1 and the second heating mechanism 2 are respectively provided with a first driving member 703 and a second driving member 704 matched with the first micro switch 701 and the second micro switch 702.

[0034] By the above technical scheme, the driving mechanism 3 can be a bidirectional driving motor 301, the bidirectional driving motor 301 drives the first heating mechanism 1 to rotate towards the second heating mechanism 2, then the driven connection structure 4 works and is attracted, the bidirectional driving motor 301 reverses after obtaining the signal of the second micro switch 702, and the second heating mechanism 2 moves along with the first heating mechanism 1 due to the action of the driven connection structure 4, the bidirectional driving motor 301 obtains the signal and rotates forward after reaching the first micro switch 701, reciprocating motion is realized, and the batter and the like can flow in the reciprocating motion, and the first placing groove 101 and the first placing groove 101 can realize uniform heating.

[0035] Preferably, at least one second connecting piece 202 is arranged on the side wall of the second heating mechanism 2, and a channel for the driving shaft 302 to pass through is arranged on the second connecting piece 202, so that the second connecting piece 202 and the driving shaft 302 are rotationally connected. The first heating mechanism 1 is fixed with a first connecting piece 102, the driving shaft 302 passes through the first connecting piece 102, and the first connecting piece 102 is fixed with the driving shaft 302 by a fastener.

[0036] Preferably, the first heating mechanism 1 and the second heating mechanism 2 are folded, and the first placing groove 101 and the second placing groove 201 at least partially communicate to form a cavity, so that spherical foods such as egg rolls and octopus are made.

[0037] Further comprising a support frame 801, the driving mechanism 3 is fixed on the support frame 801, the support frame 801 is provided with a support groove 802, a high-temperature-resistant shaft sleeve 803 is built-in the support groove 802, the end of the driving shaft 302 is inserted into the high-temperature-resistant shaft sleeve 803, and the output end of the driving mechanism 3 is fixedly connected with the driving shaft 302 through a shaft coupling 804. In other embodiments, the driving mechanism can also be a pneumatic cylinder or other device with driving force, that is, the rotation of the driving shaft can be controlled.

[0038] The bottom of the support frame 801 is threadedly connected with at least one limiting piece 805, and the top of the limiting piece 805 forms a limiting surface for supporting the bottom of the first heating mechanism 1 or the bottom of the second heating mechanism 2. The limiting piece 805 is arranged at the edge position close to the outer side of the first heating mechanism 1 and the second heating mechanism 2.

[0039] By the above technical scheme, since the first heating mechanism 1 and the second heating mechanism 2 have heating pipes 5, the high-temperature-resistant shaft sleeve is used in cooperation to increase the service life of the utility model, and the limiting piece 805 can support the bottom surface of the first lower housing 104 and the second lower housing 204, that is, the inclination angle of the first heating mechanism 1 and the second heating mechanism 2 can be adjusted, for example, the first heating mechanism 1 and the second heating mechanism 2 are horizontally placed when the batter is added.

[0040] In the embodiment, the driven connection structure 4 comprises an electromagnetic adsorption device and an adsorption member, and the electromagnetic adsorption device and the adsorption member are fixed on the first heating mechanism 1 and the second heating mechanism 2 respectively.

[0041] In other embodiments, the driven connection structure can be a connecting column arranged on the first heating mechanism 1 and a connecting groove arranged on the second heating mechanism 2, and the connecting column is inserted into the connecting groove to realize linkage of the two.

[0042] The bottom of the support frame 801 is fixed with a gravity detection device 6, which can detect the size of the added batter, and then the data can be sent to an external controller, and the controller can control the stop of adding the batter.

[0043] Preferably, the sliding rail 901 is fixed with a guide rail 902 on one side, the guide rail 902 is provided with a gear slot 903, the sliding block 906 of the sliding rail 901 is fixed with a walking motor 904, the output end of the walking motor 904 is fixedly connected with a gear 905 engaged with the gear slot 903, the walking motor 904 rotates to control the sliding block 906 to slide on the sliding rail 901, and the two ends of the weight detection device are connected with the sliding block 906 and the support frame 801 respectively.

[0044] Through the above technical scheme, the guide rail 902 and the gear slot 903 can realize the linear movement of the support frame 801 of the utility model, so as to cooperate with the next or previous processing procedure.

[0045] The first heating mechanism 1 comprises a first base body 103, the first placing groove 101 is arranged on the upper surface of the first base body 103, the lower surface of the first base body 103 is provided with a heating pipe 5, and the lower surface of the first base body 103 is fixed with a first lower shell 104 to protect the heating pipe 5; the second heating mechanism 2 comprises a second base body 203, the second placing groove 201 is arranged on the upper surface of the second base body 203, the lower surface of the second base body 203 is provided with a heating pipe 5, and the lower surface of the second base body 203 is fixed with a second lower shell 204 to protect the heating pipe 5.

[0046] The lower surface of the first base body 103 is provided with a first placing groove, the heating pipe 5 is fixed in the first placing groove, the lower surface of the second base body 203 is provided with a second placing groove, the heating pipe 5 is fixed in the second placing groove, and the first lower shell 104 and the second lower shell 204 are both provided with a circular arc groove 205, and the circular arc groove 205 and the first placing groove form an entrance and exit 206 for the heating pipe 5.

[0047] Compared with the prior art, the utility model has the advantages of simple structure, automatic repeated turning, and uniform heating.

[0048] Thus far, the technical scheme of the utility model has been described in combination with the preferred embodiments shown in the drawings, but it is easily understood by those skilled in the art that the protection scope of the utility model is obviously not limited to these specific embodiments. Those skilled in the art can make equivalent changes or replacements to the related technical features without deviating from the principles of the utility model, and the technical schemes after these changes or replacements will all fall within the protection scope of the utility model.

Claims

1. A pastry baking apparatus, characterized by: The utility model provides a heating device, including first heating mechanism (1), second heating mechanism (2) and drive shaft (302), drive shaft (302) fixed connection first heating mechanism (1) or second heating mechanism (2), first heating mechanism (1) and second heating mechanism (2) are separately arranged in drive shaft (302) both sides, and first heating mechanism (1) and / or second heating mechanism (2) are equipped with driven connection structure (4) to cooperate and connect second heating mechanism (2), first heating mechanism (1);Drive shaft (302) controls first heating mechanism (1) rotation, when driven connection structure (4) works second heating mechanism (2) follows first heating mechanism (1) movement; First heating mechanism (1) is equipped with at least one first placing recess (101) on, and second heating mechanism (2) is equipped with at least one second placing recess (201) on, The bottom of the first placing recess (101) and the bottom of the second placing recess (201) are both provided with a heating pipe (5).

2. The pastry baking apparatus of claim 1, wherein: The sidewall of the second heating mechanism (2) is provided with at least one second connecting piece (202), and the second connecting piece (202) is provided with a passage for the drive shaft (302) to pass through to enable the second connecting piece (202) and the drive shaft (302) to be rotationally connected.

3. The pastry baking apparatus of claim 1, wherein: The first placing recess (101) and the second placing recess (201) at least partially communicate to form a chamber after the first heating mechanism (1) and the second heating mechanism (2) are folded.

4. The pastry baking apparatus of claim 1, wherein: The utility model also includes a support frame (801) and a driving mechanism (3), the driving mechanism (3) is fixed on the support frame (801), the support frame (801) is provided with a support groove (802), a high-temperature-resistant shaft sleeve (803) is built-in the support groove (802), the end of the drive shaft (302) is inserted into the high-temperature-resistant shaft sleeve (803), and the output end of the driving mechanism (3) is fixedly connected with the drive shaft (302) through a shaft coupling (804).

5. A patisserie baking apparatus according to claim 4, characterised in that: The bottom of the support frame (801) is threadedly connected with at least one limiting piece (805), and the top of the limiting piece (805) forms a limiting surface for supporting the bottom of the first heating mechanism (1) or the bottom of the second heating mechanism (2).

6. The pastry baking apparatus of claim 4, wherein: The support frame (801) is respectively fixed with a first microswitch (701) and a second microswitch (702), and the first heating mechanism (1) and the second heating mechanism (2) are respectively provided with a first driving member (703) and a second driving member (704) matched with the first microswitch (701) and the second microswitch (702).

7. The pastry baking apparatus of claim 1, wherein: The driven connection structure (4) includes an electromagnetic attraction device and an attraction member, and the electromagnetic attraction device and the attraction member are separately arranged in the first heating mechanism (1) and the second heating mechanism (2).

8. The pastry baking apparatus of claim 4, wherein: The bottom of the support frame (801) is fixed with a gravity detection device (6).

9. The pastry baking apparatus of claim 1, wherein: Also include slide rail (901), one side of the slide rail (901) is fixed with guide rail (902), the guide rail (902) is opened with tooth slot (903), the slider (906) of the slide rail (901) is fixed with walking motor (904), the output end of walking motor (904) is fixedly connected with gear (905) engaged with tooth slot (903), walking motor (904) rotates to control slider (906) to slide on slide rail (901), the both ends of weight detection device are connected slider (906) and support frame (801) respectively.

10. The pastry baking apparatus of claim 1, wherein: The first heating mechanism (1) comprises a first base body (103), the first placement groove (101) is arranged on the upper surface of the first base body (103), the lower surface of the first base body (103) is provided with a heating pipe (5), and the lower surface of the first base body (103) is fixedly connected with a first lower shell (104) to protect the heating pipe (5); the second heating mechanism (2) comprises a second base body (203), the second placement groove (201) is arranged on the upper surface of the second base body (203), the lower surface of the second base body (203) is provided with a heating pipe (5), and the lower surface of the second base body (203) is fixedly connected with a second lower shell (204) to protect the heating pipe (5).

Citation Information

Patent Citations

  • Full-automatic egg puff making device

    CN215992536U