A bread sprinkling device

By designing a bread-spreading device and using a collection mechanism to gather excess material, the problems of material waste and pollution are solved, and the precise spreading and recycling of materials are achieved, thereby improving food safety.

CN223568561UActive Publication Date: 2025-11-21QINGDAO MEIKE FOOD CO LTD
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Patent Information

Application Number
CN202423302646.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-21
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing bread topping devices result in material waste and baking pan contamination, are inaccurate in topping application, and are difficult to recycle.

Method used

A bread-sprinkling device was designed, comprising a first conveying mechanism, a sprinkling mechanism, and a collecting mechanism. The sprinkling mechanism sprinkles the material onto the baking tray through the sprinkling port, and the collecting mechanism collects the excess material, ensuring that the material falls onto the bread, thus reducing waste and pollution.

Benefits of technology

It enables precise material distribution and recycling, reducing material waste and baking pan contamination, and improving food safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bread scattering device relates to food processing technical field, technical scheme is, including first conveying mechanism, can be in horizontal direction to the baking tray and is transported, scattering mechanism, set up above the conveying path of first conveying mechanism, collection mechanism, set up between scattering mechanism and first conveying mechanism, collection mechanism includes: collection tray, and the baking tray on first conveying mechanism is parallel, is equipped with a plurality of scattering holes on collection tray, and scattering hole is through -hole, and scattering hole is corresponding with the bread placement position on the baking tray, guide groove combination, set up on collection tray, and scattering on collection tray can slide along guide groove combination, the beneficial effects of the utility model are, the device of this scheme can decorate the scattering of surface to bread, baking cake and other food, especially suitable for the scattering of granular material, such as sesame, chocolate needle etc.
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Description

TECHNICAL FIELD

[0001] The utility model relates to food processing technical field, concretely is a bread material scattering device. BACKGROUND

[0002] Due to the diversity of the present bread products, the product (bread) surface needs to be decorated, and the decoration product surface decoration mainly has spraying, material scattering, cutting and other methods. Except the cutting method, such as spraying, material scattering form, the material for decoration is often expensive, and the poor decoration method will cause additional consumption of part of the decoration material, so the original material scattering system is updated for the consideration of material saving.

[0003] The product needs to be taken as the carrier in the decoration process, and the material scattering rod for decorating the product surface is in the shape of a cylindrical spiral groove, and the material is scattered on the product surface through spiral rotation. Because the spiral cannot scatter a circle, the excess material for decoration is scattered on the surface of the baking tray. And the excess material scattering has the following two problems:

[0004] 1. The material scattering on the surface of the baking tray has no utilization value after baking and can only be directly discarded, causing material waste.

[0005] 2. The material scattering attached to the surface of the baking tray increases the cleaning difficulty, and the material scattering located at the edge of the baking tray sometimes cannot be completely cleaned and will pollute the product placed again, causing food safety problems. INVENTION CONTENTS

[0006] In view of one of the deficiencies of the prior art, the utility model provides a bread material scattering device, and solves the problems.

[0007] To achieve the above purpose, the utility model provides the following technical scheme: a bread material scattering device, comprising:

[0008] The first conveying mechanism can convey the baking tray in the horizontal direction;

[0009] The material scattering mechanism is arranged above the conveying path of the first conveying mechanism, the lower part of the material scattering mechanism is provided with a material scattering port, and the material scattering port is arranged towards the first conveying mechanism;

[0010] The collecting mechanism is arranged between the material scattering mechanism and the first conveying mechanism; the collecting mechanism comprises:

[0011] The collecting disc is parallel to the baking tray on the first conveying mechanism, a plurality of material scattering holes are formed in the collecting disc, the material scattering holes are through holes, and the material scattering holes correspond to the bread placing positions on the baking tray;

[0012] The guide groove combination is arranged on the collecting disc, and the material scattering on the collecting disc can slide along the guide groove combination.

[0013] Preferably, the utility model further comprises:

[0014] A second conveying mechanism is linked with the collecting mechanism, and the second conveying mechanism can drive the collecting disc to move synchronously above the baking tray.

[0015] Preferably, the first conveying mechanism comprises:

[0016] The first conveying assembly can horizontally and linearly convey the baking tray.

[0017] The first guiding assembly is arranged on the conveying path of the first conveying assembly, and the first guiding assembly can adjust the position of the baking tray during conveying.

[0018] Preferably, the first guiding assembly comprises:

[0019] Two guiding plates are respectively arranged on both sides of the conveying path of the first conveying assembly, and the two guiding plates are parallel to each other, and the distance between the two guiding plates corresponds to the width of the baking tray.

[0020] Preferably, the material scattering mechanism comprises:

[0021] The hopper is provided with a long strip-shaped discharge opening at the bottom.

[0022] The material scattering assembly is arranged at the bottom of the hopper and is movably connected with the hopper, and the material scattering assembly can open or close the discharge opening at the bottom of the hopper.

[0023] Preferably, the device further comprises:

[0024] The rack is a support structure of each mechanism of the device; the hopper is arranged at the upper part of the rack, and the hopper is rotatably connected with the rack.

[0025] The material scattering mechanism further comprises:

[0026] The buffer is arranged between the hopper and the rack, and the buffer can buffer the rotation of the hopper.

[0027] Preferably, the material scattering assembly comprises:

[0028] The middle shaft is a rod body, and the rod body is provided with a material groove distributed on the side surface.

[0029] The shaft shell is sleeved outside the middle shaft, and at least one through slot is formed in the shaft shell; the shaft shell is rotatably arranged at the discharge opening of the hopper.

[0030] The material scattering driving assembly is linked with the middle shaft and the shaft shell, and can drive the middle shaft and the shaft shell to rotate.

[0031] Preferably, the interior of the shaft shell is a cylindrical cavity; and the outer diameter of the middle shaft corresponds to the inner diameter of the shaft shell.

[0032] The middle shaft is provided with a plurality of annular bosses, and the outer diameter of the annular boss is equal to the outer diameter of the middle shaft; a material groove is arranged between every two adjacent annular bosses.

[0033] The material groove is a spiral groove.

[0034] The material scattering assembly is used for scattering granular materials.

[0035] Preferably, the collecting mechanism comprises:

[0036] The outer frame is a rectangular frame.

[0037] The support plate is arranged inside the outer frame, and the support plate is provided with a material scattering hole.

[0038] The limiting piece is arranged corresponding to each material scattering hole on the support plate, and the limiting piece is an annular plate body and is fixedly arranged on the material scattering hole of the support plate.

[0039] The material discharging groove is arranged on one side of the outer frame, and the outer frame and the support plate are provided with a guide groove assembly, and the material discharging groove and the guide groove assembly are communicated.

[0040] Preferably, the collecting mechanism further comprises:

[0041] The material discharging baffle is arranged on the moving path of the collecting disc, and the material discharging baffle can shield the outlet end of the material discharging groove.

[0042] The discharging assembly is arranged on the rack, and the discharging assembly is a groove structure arranged obliquely, the inlet end of the discharging assembly is a high horizontal end, and the inlet end is arranged towards the collecting disc; when the collecting disc moves to the outside of the material discharging baffle, the material discharging groove moves to the inlet end of the discharging assembly.

[0043] The second guide assembly is arranged on one side of the discharging assembly, and the second guide assembly corresponds to the outer frame of the collecting disc; the second guide assembly comprises a plurality of rotating wheels.

[0044] Compared with the prior art, the device has the following beneficial effects: the device can be used for surface decoration of bread, baked cakes and other foods, and is especially suitable for scattering granular materials such as sesame and chocolate needles. Through the arrangement of the collecting mechanism, the device can effectively control the range of the scattered materials falling on the baking tray, collect the excess scattered materials on the collecting disc, and well control the material falling position on the baking tray, and the device is convenient for recycling the excess scattered materials and does not cause additional pollution to the baking tray. BRIEF DESCRIPTION OF DRAWINGS

[0045] Figure 1 The figure is a schematic diagram of the overall structure of the embodiment of the application Figure 1 ;

[0046] Figure 2 The figure is a schematic diagram of the overall structure of the embodiment of the application Figure 2 ;

[0047] Figure 3 Figure 1 is a schematic view of a baking device according to an embodiment of the present application; Figure 2 Figure 1A is a partial enlarged view of A in Figure 1;

[0048] Figure 4 Figure 2 is a schematic view of a spreading mechanism structure according to an embodiment of the present application; Figure 1

[0049] Figure 5 Figure 3 is a schematic view of a spreading mechanism structure according to an embodiment of the present application; Figure 2

[0050] Figure 6 Figure 3A is a partial enlarged view of A in Figure 3; Figure 5

[0051] Figure 4 is a schematic view of a collecting mechanism structure according to an embodiment of the present application. Figure 7 Figure 4A is a partial enlarged view of A in Figure 4;

[0052] Figure 4B is a partial enlarged view of B in Figure 4;

[0053] 100, baking tray; 101, frame

[0054] 1, first conveying mechanism; 11, first conveying assembly; 12, first guiding assembly;

[0055] 2, spreading mechanism; 21, hopper; 22, spreading assembly; 221, middle shaft; 222, shaft shell; 223, spreading driving assembly; 23, buffer;

[0056] 3, collecting mechanism; 31, collecting tray; 311, outer frame; 312, support plate; 313, limiting piece; 314, discharging groove; 32, discharging baffle; 33, discharging assembly; 34, guiding assembly;

[0057] 4, second conveying mechanism. DETAILED DESCRIPTION

[0058] The technical solutions in the embodiments of the present application will be described clearly and completely below 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 labor fall within the protection scope of the present application.

[0059] Please refer to Figures 1-7 The present application provides the following technical solutions:

[0060] ​​The bread sprinkling device comprises a rack 101, which is a frame structure and serves as the base support structure of the device, a first conveying mechanism 1 arranged on the rack 101 and capable of conveying the baking tray 100 in the horizontal direction, a sprinkling mechanism 2 arranged on the upper part of the rack 101 and above the conveying path of the first conveying mechanism 1, the lower part of the sprinkling mechanism 2 being provided with a sprinkling opening, and the sprinkling opening being arranged towards the first conveying mechanism 1. A collecting mechanism 3 is arranged between the sprinkling mechanism 2 and the first conveying mechanism 1, the collecting mechanism 3 comprising a collecting tray 31, the collecting tray 31 being parallel to the baking tray 100 on the first conveying mechanism 1, a plurality of sprinkling holes being arranged on the collecting tray 31, the sprinkling holes being through holes and corresponding to the bread placing positions on the baking tray 100, and a guide groove combination being arranged on the collecting tray 31, the sprinkling on the collecting tray 31 being capable of sliding along the guide groove combination. A second conveying mechanism 4 is further arranged on the rack 101, the second conveying mechanism 4 being linked with the collecting mechanism 3, and the second conveying mechanism 4 being capable of driving the collecting tray 31 to move synchronously above the baking tray 100.

[0061] The present scheme is suitable for sprinkling small granular materials, such as sesame, on bread. Similar food making can also be used, such as sesame sesame cakes. The device uses the collecting tray 31 to receive and limit the sesame sprinkled by the sprinkling mechanism 2, and the sesame only falls through the sprinkling holes on the collecting tray 31, so that it can be more accurately placed on the position of the bread, and the excess sesame is left on the collecting tray 31 and slides along the guide groove combination, facilitating subsequent recycling. By means of the first conveying mechanism 1 and the second conveying mechanism 4, the collecting tray 31 and the baking tray 100 move synchronously, ensuring that the collecting tray 31 receives and collects the sprinkling during the sprinkling process.

[0062] On the basis of the above-mentioned embodiment, the first conveying mechanism 1 comprises a first conveying assembly 11, which is a straight conveying belt, two first rotating shafts being arranged on the rack 101, and a conveying belt being arranged around the two first rotating shafts, one of the first rotating shafts and the motor shaft of the motor being linked by a sprocket and chain combination, and the baking tray 100 being placed on the conveying belt of the first conveying assembly 11 for transmission.

[0063] A first guide assembly 12 is arranged on the conveying path of the first conveying assembly 11, the first guide assembly 12 comprising two parallel guide plates, one being arranged on each side of the conveying path of the first conveying assembly 11, and the spacing between the two guide plates corresponding to the width of the baking tray 100. The guide plates are provided with a horn structure towards the entering direction of the baking tray 100. Because the baking tray 100 needs to be loaded and unloaded in the device, the baking tray cannot be fixed with the device, but can only be placed and taken out, so as to ensure that the baking tray 100 and the collecting tray 31 are aligned, the first guide assembly 12 is arranged, and the position and posture of the baking tray 100 in the conveying process are adjusted by the structure of the guide plate.

[0064] On the basis of the above-mentioned embodiments, referring to Figures 4 to 6 The spreading mechanism 2 comprises a hopper 21 and a spreading assembly 22. The bottom of the hopper 21 is provided with a long strip-shaped discharge port, and the overall structure is a horn-shaped structure with a large upper part and a small lower part. A top cover is arranged on the hopper 21, and the top cover is connected to the body of the hopper 21 through a combination of lock buckles and hooks. The spreading assembly 22 is arranged at the discharge port of the bottom of the hopper 21, and the spreading assembly 22 is movably connected to the hopper 21, so that the discharge port of the bottom of the hopper 21 can be opened or closed. The spreading assembly 22 can control the discharge of the discharge port as needed, and the specific mode can be various. The hopper 21 and the rack 101 are rotationally connected, and a buffer 23 is arranged between the hopper 21 and the rack 101. When the hopper 21 rotates, the buffer 23 buffers the rotating action of the hopper 21. The buffer 23 of the present scheme is selected to be a gas spring, one end of the buffer 23 is rotationally connected to the rack 101, and the other end is rotationally connected to the outer wall of the hopper 21.

[0065] Through the structure, when it is necessary to supplement and add spreading, the top cover can be opened, and then the corresponding spreading can be directly put into the hopper 21. When it is necessary to replace the spreading, the remaining spreading in the hopper 21 may be poured out, so that the structure of the rotationally connected hopper 21 and the rack 101 is adopted, which is convenient for cleaning the internal spreading and also convenient for daily maintenance and cleaning of the inside of the hopper 21.

[0066] On the basis of the above-mentioned embodiments, the spreading assembly 22 comprises a middle shaft 221 and a shaft shell 222. The middle shaft 221 is a circular rod body, and a material groove is arranged on the side of the rod body; the shaft shell 222 is a circular cylinder body, the shaft shell 222 is sleeved outside the middle shaft 221, two through grooves are symmetrically arranged on the shaft shell 222, and the through grooves are arranged along the axis direction of the shaft shell 222. The shaft shell 222 is rotationally arranged at the discharge port of the hopper 21. A spreading drive assembly 223 is arranged in linkage with the middle shaft 221 and the shaft shell 222, the spreading drive assembly 223 comprises a motor and a synchronous belt combination, and the motor of the spreading drive assembly 223 is fixedly arranged outside the hopper 21. The middle shaft 221 and the shaft shell 222 are driven to rotate by the spreading drive assembly 223.

[0067] The rotation of the middle shaft 221 and the shaft shell 222 can be synchronous or non-synchronous. If the structure is considered as the priority, the synchronous rotation of the shaft shell 222 and the middle shaft 221 can be realized by driving one of them by the spreading drive assembly 223. Taking sesame as an example, when one of the through slots on the shaft shell 222 is located inside the hopper 21, the sesame falls into the trough of the middle shaft 221 through the through slot. With the rotation of the middle shaft 221 and the shaft shell 222, the through slot is rotated to the lower side of the discharge port of the hopper 21, at which time the through slot is exposed at the lower part of the hopper 21, and the sesame in the trough of the middle shaft 221 can fall down, and the sesame passing through the collection disc 31 falls on the bread in the baking tray 100, realizing the spreading decoration on the surface of the bread.

[0068] Based on the above-mentioned embodiments, referring to Figure 6 , the inside of the shaft shell 222 is a cylindrical cavity; the outer diameter of the middle shaft 221 corresponds to the inner diameter of the shaft shell 222; a plurality of annular bosses are arranged on the middle shaft 221, and the outer diameter of the annular boss is equal to the outer diameter of the middle shaft 221; a trough is arranged between adjacent two annular bosses; the trough is a spiral groove.

[0069] The middle shaft 221 is divided into a plurality of segments by the annular bosses, and a trough is arranged in each segment. The annular boss position basically has no sesame accumulation, which can better control the spreading range. The spiral trough can push the sesame into the groove during the rotation of the middle shaft 221, and the problem of crushing the sesame when contacting the inner wall of the hopper 21 is not easy to occur. When the through slot structure of the shaft shell 222 is rotated to the outside of the lower part of the hopper 21, the sesame in the spiral trough of the middle shaft 221 will be more evenly scattered and dropped with the rotation of the middle shaft 221.

[0070] Based on the above-mentioned embodiments, referring to Figure 7 , the collection disc 31 includes a rectangular frame structure of the outer frame 311, and a support plate 312 is arranged inside the outer frame 311. The support plate 312 is provided with the aforementioned spreading holes. A limiting piece 313 is arranged corresponding to each spreading hole on the support plate 312. The limiting piece 313 is an annular plate body, and is fixedly arranged on the upper side of the spreading hole of the support plate 312. The bottom edge of the limiting piece 313 is fixedly connected with the edge of the spreading hole. The outer frame 311 and the support plate 312 are provided with the aforementioned guide groove combination. A discharge groove 314 is arranged on one side of the outer frame 311, and the discharge groove 314 is communicated with the guide groove combination.

[0071] The range of sesame falling is further limited by the limiting member 313. The sesame falling into the limiting member 313 passes through the scattering hole and falls on the bread on the baking tray 100 below. Otherwise, the sesame falls on the support plate 312. The sesame on the support plate 312 enters the discharge chute 314 along the guide groove combination and is discharged and collected by the discharge chute 314.

[0072] On the basis of the above-mentioned embodiments, the guide groove combination is composed of two parts. One part is the guide groove formed by the structure of the support plate 312, and the other part is the guide groove arranged along the outer frame 311. The outlet of the guide groove of the outer frame 311 is communicated with the discharge chute 314, and the guide groove on the support plate 312 is guided into the outer frame 311.

[0073] On the basis of the above-mentioned embodiments, referring to Figure 7 , the support plate 312 is a nearly continuous wave-shaped folded plate structure. The scattering hole is arranged at the high position of the wave structure, that is, the wave peak position. Through this structure, the sesame falling outside the limiting member 313 first slides to the low concave position of the folded plate structure of the support plate 312, and then slides into the guide groove of the outer frame 311.

[0074] On the basis of the above-mentioned embodiments, a gas pipeline is arranged at the guide groove of the outer frame 311. The scattering material on the support plate 312 is blown or sucked by the gas flow to generate negative pressure, and then output from the discharge chute 314.

[0075] On the basis of the above-mentioned embodiments, unlike the baking tray 100, the collection tray 31 is relatively troublesome if it is frequently taken out for scattering collection. By arranging the discharge chute 314, it is only necessary to collect at the position corresponding to the discharge chute 314. Therefore, the collection tray 31 adopts a structure form that can be detachably connected with the second conveying mechanism 4. The second conveying mechanism 4 can adopt various structure forms such as a transmission belt, a lead screw or a rodless cylinder, as long as it can drive the collection tray 31 to reciprocate in a straight line. The collection tray 31 is connected with the corresponding movable structure of the second conveying mechanism 4 through the connecting plate outside the disc body.

[0076] On the basis of the above-mentioned embodiments, the collecting mechanism 3 further comprises a discharging baffle 32 arranged on the moving path of the collecting tray 31, which can shield the outlet end of the discharging groove 314. A discharging assembly 33 is arranged on the frame 101, which is a groove structure arranged obliquely, the inlet end of which is a high horizontal end, and the inlet end is arranged towards the collecting tray 31. When the collecting tray 31 moves to the outside of the discharging baffle 32, the discharging groove 314 moves to the inlet end of the discharging assembly 33; the width of the inlet end of the discharging assembly 33 is greater than that of the outlet end. In addition, a second guide assembly 34 is arranged above the discharging assembly 33, which corresponds to the outer frame 311 of the collecting tray 31; the second guide assembly 34 comprises a plurality of rotating wheels. When the collecting tray 31 moves to the position of the second guide assembly 34, the rotating wheels of the second guide assembly 34 can guide the position of the collecting tray 31.

[0077] In addition, a proximity sensor or a travel switch and the like control sensing elements can be arranged on the frame 101 corresponding to the moving path of the collecting tray 31, so as to facilitate the control of the moving position of the collecting tray 31 by the second conveying mechanism 4. At the same time, a proximity sensor or the like control sensing device can be arranged at the loading position of the baking tray 100, so as to realize the synchronous transmission of the baking tray 100 and the collecting tray 31. The control structure can adopt the prior art, which will not be described here.

[0078] In the description of the present application and its embodiments, it should be understood that the orientation or positional relationship indicated by the terms "top", "bottom", "height" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0079] In the present application and its embodiments, unless otherwise explicitly specified and limited, the terms "arranged", "mounted", "connected", "linked", "fixed" and the like should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or can be integrated; can be mechanically connected, or can be electrically connected, or can be in communication; can be directly connected, or can be indirectly connected through an intermediate medium; can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meanings of the above-mentioned terms in the present application can be understood according to the specific circumstances.

[0080] In the present application and embodiments thereof, unless specifically stated and limited otherwise, "on" or "under" of a first feature with respect to a second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Also, "over", "above", and "on top of" of a first feature with respect to a second feature includes that the first feature is directly above and obliquely above the second feature, or simply means that the first feature is horizontally higher than the second feature. "Under", "below", and "underneath" of a first feature with respect to a second feature includes that the first feature is directly above and obliquely above the second feature, or simply means that the first feature is horizontally lower than the second feature.

[0081] The above disclosure provides many different embodiments or examples for implementing different structures of the present application. For the purpose of simplicity, the elements and settings of the particular examples in the above are described in some detail. This is, of course, done without loss of generality and is intended to provide what is believed to be the most useful and readily understood description of the structures as well as to fully convey the scope of the application. Descriptions of the various embodiments and / or settings are intended merely as illustrative examples and are not intended to limit the scope of the application. Furthermore, the various examples of the present application can be used in different embodiments and / or settings without departing from the scope of the present application. It is therefore contemplated to be within the scope of the present application that the various features and aspects of the present application can be used in combination with each other, if such a feature would not technically result in inconsistency or logical contradiction. Furthermore, the present application provides examples of various specific processes and materials, but one of ordinary skill in the art can recognize that other processes can be applied and / or other materials can be used.

[0082] While the preferred embodiments of the application have been described, additional variations and modifications can be made to the embodiments without departing from the spirit and scope of the application. Therefore, it should be understood that the appended claims are intended to cover all such modifications and variations as falling within the scope of the application. Accordingly, the application is not to be taken as limited by the above description, but is only limited by the scope of the claims.

[0083] Obviously, many modifications and variations of the present application are possible in light of the above teachings. It is, therefore, to be understood that within the scope of the appended claims and their equivalents, the application can be practiced otherwise than as specifically described.

Claims

1. A bread sprinkling device, characterized in that, The device comprises: a first conveying mechanism for conveying the baking tray in a horizontal direction; a scattering mechanism arranged above the conveying path of the first conveying mechanism, the lower part of the scattering mechanism being provided with a scattering opening, the scattering opening being arranged towards the first conveying mechanism; a collecting mechanism arranged between the scattering mechanism and the first conveying mechanism, the collecting mechanism comprising: a collecting tray parallel to the baking tray on the first conveying mechanism, the collecting tray being provided with a plurality of scattering holes, the scattering holes being through holes, and the scattering holes corresponding to the bread placing positions on the baking tray; a guide groove combination arranged on the collecting tray, the scattering on the collecting tray being able to slide along the guide groove combination.

2. A bread sprinkler as claimed in claim 1, wherein The device further comprises: a second conveying mechanism linked with the collecting mechanism, the second conveying mechanism being able to drive the collecting tray to move synchronously above the baking tray.

3. A bread sprinkler as claimed in claim 2, wherein The first conveying mechanism comprises: a first conveying assembly for linearly conveying the baking tray in a horizontal direction; a first guide assembly arranged on the conveying path of the first conveying assembly, the first guide assembly being able to adjust the position of the baking tray in the conveying process.

4. A bread sprinkler as claimed in claim 3, wherein The first guide assembly comprises: a guide plate arranged on each side of the conveying path of the first conveying assembly, the two guide plates being parallel to each other, and the distance between the two guide plates corresponding to the width of the baking tray.

5. The bread sprinkler of claim 3 wherein, The scattering mechanism comprises: a hopper, the bottom of the hopper being provided with a long strip-shaped discharge opening; a scattering assembly arranged at the bottom of the hopper and movably connected with the hopper, the scattering assembly being able to open or close the discharge opening at the bottom of the hopper.

6. A bread sprinkler as claimed in claim 5, wherein the housing is formed with a plurality of apertures. The device further comprises: a rack serving as a support structure for the mechanisms of the device, the hopper being arranged at the upper part of the rack, and the hopper being rotatably connected with the rack; The scattering mechanism further comprises: a buffer arranged between the hopper and the rack, the buffer being able to buffer the rotation of the hopper.

7. A bread sprinkler as claimed in claim 6, wherein the housing is formed with a plurality of apertures. The scattering assembly comprises: a middle shaft in the form of a rod body, the rod body being provided with a material groove distributed around the rod body; a shaft shell sleeved outside the middle shaft, the shaft shell being provided with at least one through groove, and the shaft shell being rotatably arranged at the discharge opening of the hopper; a scattering driving assembly linked with the middle shaft and the shaft shell, the scattering driving assembly being able to drive the middle shaft and the shaft shell to rotate.

8. A bread sprinkler as claimed in claim 7, wherein the housing is formed with a plurality of apertures. The interior of the shaft shell is in the form of a cylindrical cavity, and the outer diameter of the middle shaft corresponds to the inner diameter of the shaft shell; a plurality of annular bosses are arranged on the middle shaft, the outer diameter of the annular bosses being equal to the outer diameter of the middle shaft, and a material groove is arranged between each two adjacent annular bosses; the material groove is in the form of a spiral groove; the scattering assembly is used for scattering granular materials.

9. The bread sprinkler of claim 6 wherein, The collecting tray comprises: an outer frame in the form of a rectangular frame body; a support plate arranged inside the outer frame, the support plate being provided with the scattering holes; a limiting piece corresponding to each scattering hole on the support plate, the limiting piece being in the form of an annular plate body, and the limiting piece being fixedly arranged on the scattering hole of the support plate; a discharge groove arranged on one side of the outer frame, the outer frame and the support plate being provided with the guide groove combination, and the discharge groove being communicated with the guide groove combination.

10. A bread sprinkler as claimed in claim 9, wherein the housing is formed from a plastics material. The collecting mechanism further comprises: a discharge baffle arranged on the moving path of the collecting tray, the discharge baffle being able to block the outlet end of the discharge groove. An ejection assembly is arranged on the frame, and the ejection assembly is a groove structure arranged obliquely, with a high-level end as an inlet end, and the inlet end is arranged towards the collecting disc; when the collecting disc moves to the outside of the discharge baffle, the discharge groove moves to the inlet end of the ejection assembly; A second guide assembly is arranged on one side of the ejection assembly, and the second guide assembly corresponds to the outer frame of the collecting disc; the second guide assembly comprises a plurality of rotating wheels.

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