Forming machine for quick-frozen sesame seed cakes
The design of detachable molds and fasteners solves the problem of inconvenient operation when making dough of different sizes with existing equipment, and enables flexible mold selection and efficient dough forming.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI SHENGYILONG FOOD CO LTD
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-24
AI Technical Summary
Existing flatbread forming equipment requires changing trays and pressing plates when making flatbreads of different sizes, which is inconvenient to operate.
A forming machine for quick-frozen flatbreads was designed, which adopts a structure with detachable molds and fixing parts, allowing the molds to be flexibly installed and removed on the tray, and the dough is extruded and shaped by an electric push rod.
It allows for the production of dough of different sizes by selecting the appropriate mold according to needs without changing the tray and pressing plate, making the operation more convenient and ensuring the dough forming effect.
Smart Images

Figure CN224155034U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cooking machinery technology, specifically to a forming machine for quick-frozen flatbreads. Background Technology
[0002] Baked flatbread is a specialty food that is loved by many for its color, aroma, and taste. In the process of making baked flatbread, the dough needs to be squeezed to form a flatbread.
[0003] For example, patent CN216533512U discloses a tooling for forming flatbread dough. Although this tooling achieves automatic sensing and compaction forming, and punching during the process, and its modular assembly greatly improves production efficiency, in actual use, the compaction plate extends into a custom plastic mold to squeeze the dough into flatbread. Therefore, the size of the custom plastic mold and the compaction plate are fixed and compatible, and the custom plastic mold is fixed on the tray. Therefore, when different sizes of flatbread need to be made, the compaction plate, the tray, and the custom plastic mold need to be replaced at the same time, which is inconvenient and needs to be improved. Utility Model Content
[0004] The purpose of this invention is to provide a forming machine for quick-frozen flatbreads to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A forming machine for quick-frozen flatbread includes a base plate with a movable tray on the base plate. A detachable mold is mounted on the tray via an mounting component. The mold is used to hold dough. The tray is also provided with a fixing component for connecting the mold. The base plate is also provided with a support, and the support is provided with an extrusion component for extruding the dough inside the mold. An unlocking component is provided on the base plate located below the support. The tray is moved to the unlocking component to release the connection between the mold and the tray.
[0007] Preferably, the tray is provided with a fixing groove, and the bottom end of the mold is provided with a fixing block with one end extending through the fixing groove. The protruding end of the fixing block is provided with a connecting hole, and the mounting part extends into the connecting hole for connecting the mold on the tray.
[0008] Preferably, the mounting component includes a mounting block located at the bottom of the tray. The mounting block has a mounting cavity, and the mounting cavity contains a movable first moving block and a liftable second moving block. One end of the second moving block extends out of the mounting cavity. The first moving block has a connecting rod that can extend into a connecting hole. The first moving block has a first inclined surface, and the second moving block has a second inclined surface that cooperates with the first inclined surface. The second moving block moves downward to drive the first moving block closer to the fixed block. The first moving block has a first spring, which drives the first moving block away from the fixed block. The mounting cavity also contains a guide to limit the movement direction of the first moving block.
[0009] Preferably, the first moving block is provided with a first vertical surface that communicates with the first inclined surface, and the second moving block is provided with a second vertical surface and a third vertical surface that communicate with the second inclined surface. When the first vertical surface contacts the second vertical surface, it is used to keep the connecting rod in the mounting cavity and maintain this state. When the first vertical surface contacts the third vertical surface, it is used to keep the connecting rod in the connecting hole and maintain this state.
[0010] Preferably, the extended end of the second moving block is provided with a third inclined surface, and the unlocking component includes an unlocking block located on the base plate below the bracket. The unlocking block is provided with a fourth inclined surface that cooperates with the third inclined surface. When the third inclined surface contacts the fourth inclined surface, it is used to drive the second moving block to move upward, thereby causing the connecting rod to fall out of the connecting hole.
[0011] Preferably, the base plate has positioning holes facing each other, and the tray has mounting holes facing each other. The fastener includes a handle that passes through the mounting hole at one end and can be raised and lowered. The end of the handle near the base plate has a detachable crossbeam. The handle also has a guide rod that passes through the base plate and extends into the crossbeam. A second spring is sleeved on the guide rod located at the lower end of the base plate. The second spring is used to push the handle down and extend into the positioning hole.
[0012] Preferably, the guide includes a first guide groove disposed on the opposite sidewall of the mounting cavity, and a first guide block disposed on the opposite sidewall of the first moving block, which slides within the first guide groove.
[0013] Preferably, the extrusion component includes an electric push rod disposed within a bracket, and the output end of the electric push rod is provided with a pressure plate.
[0014] Preferably, the base plate is provided with a track along the moving direction of the tray, and the tray is provided with a slider that slides within the track.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] 1. This utility model, through the detachable setting of the mold located on the tray, allows for the selection of a suitable mold according to specific needs when making dough of different sizes. Compared with the existing ones, this application does not require the replacement of the tray and the pressing plate, which is more convenient.
[0017] 2. In this utility model, the mold located on the tray can be fixed during the movement of the mold on the tray, thereby ensuring that the mold can move to the position below the pressure plate so as to squeeze the dough in the mold and make the dough into a flatbread. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a forming machine for quick-frozen flatbread according to the present invention.
[0019] Figure 2 This is a structural schematic diagram of the base plate, tray, bracket and extrusion component of this utility model.
[0020] Figure 3 This is a schematic diagram of the mold structure in this utility model.
[0021] Figure 4 This is a schematic diagram of the structure of the tray and slider in this utility model.
[0022] Figure 5 This is a schematic diagram of the structure of the handle, crossbeam, guide rod, and second spring in this utility model.
[0023] Figure 6 This is a schematic diagram of the mounting block in this utility model.
[0024] Figure 7 This is a cross-sectional view of the mounting block in this utility model.
[0025] The meanings of the labels in the diagram are as follows:
[0026] 100. Base plate; 101. Rail; 102. Positioning hole; 110. Pallet; 112. Handle; 120. Bracket; 121. Electric push rod; 122. Pressure plate;
[0027] 200. Unlock block; 210. Mold;
[0028] 300. Fixing block; 301. Connecting hole;
[0029] 400, slider; 410, fixing groove; 411, mounting hole; 412, through hole;
[0030] 500, Guide rod; 501, Second spring; 520, Crossbeam;
[0031] 600. Mounting block; 610. Second moving block; 620. Guide post; 621. Connecting rod;
[0032] 700, mounting cavity; 701, first guide groove; 710, first moving block; 711, first guide block; 720, third inclined surface; 721, third vertical surface; 722, second vertical surface; 723, second guide block; 730, first spring; 740, cover plate. Detailed Implementation
[0033] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings and embodiments. It should be understood that the embodiments are merely illustrative of this utility model and are not intended to limit it.
[0034] The following is in conjunction with the appendix Figures 1-7 This embodiment will be described in further detail.
[0035] Please see Figures 1-3 This embodiment of a forming machine for quick-frozen flatbread includes a base plate 100, a movable tray 110 on the base plate 100, a detachable mold 210 on the tray 110 via an mounting component, the mold 210 being used to hold dough, the tray 110 also having a fixing component for connecting the mold 210, a support 120 on the base plate 100, an extrusion component on the support 120 for extruding the dough inside the mold 210, and an unlocking component on the base plate 100 located below the support 120, the tray 110 being moved to the unlocking component to release the connection between the mold 210 and the tray 110.
[0036] In this embodiment, the extrusion component includes an electric push rod 121 disposed within the support 120. The output end of the electric push rod 121 is provided with a pressure plate 122. When producing the dough, a mold 210 of the required size can be placed on the tray 110, the dough can be placed inside the mold 210, the mold 210 can be fixed by the operating fixing component, the tray 110 can be moved towards the support 120, and the mold 210 can be moved to the position below the pressure plate 122. The unlocking component can disconnect the mold 210 from the tray 110, the electric push rod 121 can be activated to move the pressure plate 122 down to the position above the mold 210, and the dough inside the mold 210 can be extruded to deform the dough into a dough. The tray 110 can be moved away from the support 120 to remove the mold 210 from the tray 110 and the dough can be removed from the mold 210 and then frozen.
[0037] Specifically, in order to restrict the movement direction of the pallet 110, the base plate 100 is provided with a track 101 relative to the movement direction of the pallet 110, and the pallet 110 is provided with a slider 400 that slides within the track 101.
[0038] The detachable design of the mold 210 on the tray 110 allows for the selection of the appropriate mold 210 according to specific needs when making dough of different sizes. Compared with the existing design, this embodiment does not require replacement of the tray 110 and the pressing plate 122, making it more convenient.
[0039] It should be emphasized that the area of the pressure plate 122 in this embodiment is relatively large. The area of the pressure plate 122 is larger than that of the largest mold 210, and the mold 210 is fixed at the center of the tray 110. In this way, when the pressure plate 122 moves down, it can squeeze the dough in the molds 210 of different sizes.
[0040] The fixing component ensures that the mold 210 on the tray 110 can be fixed during the movement of the tray 110, thereby ensuring that the mold 210 can move to the position below the pressure plate 122 so as to squeeze the dough in the mold 210 and finally shape the dough into a flatbread.
[0041] The unlocking mechanism eliminates the need for manual release of the mold 210. When the tray 110 moves to the area below the support 120, the unlocking mechanism automatically releases the mold 210, allowing the mold 210 to be removed after the tray 110 moves out of the area below the support 120.
[0042] Combination Figures 1-4 As shown, in this embodiment, the tray 110 is provided with a fixing groove 410, and the bottom end of the mold 210 is provided with a fixing block 300 with one end extending through the fixing groove 410. The protruding end of the fixing block 300 is provided with a connecting hole 301, and the mounting component extends into the connecting hole 301 to connect the mold 210 on the tray 110.
[0043] In this embodiment, when it is necessary to fix the mold 210 on the tray 110, firstly, the fixing block 300 is inserted into the fixing groove 410, and then the mounting part is operated to extend into the connecting hole 301, thereby completing the fixing of the mold 210. When it is necessary to remove the mold 210 from the tray 110, the mounting part is operated to detach it from the connecting hole 301, and then the mold 210 is moved up.
[0044] Combination Figures 3-7As shown, in this embodiment, the mounting component includes a mounting block 600 located at the bottom of the tray 110. The mounting block 600 has a mounting cavity 700, and the mounting cavity 700 has a movable first moving block 710 and a liftable second moving block 610. One end of the second moving block 610 extends out of the mounting cavity 700. The first moving block 710 has a connecting rod 621 that can extend into the connecting hole 301. The first moving block 710 has a first inclined surface, and the second moving block 610 has a second inclined surface that cooperates with the first inclined surface. The second moving block 610 moves downward to drive the first moving block 710 closer to the fixed block 300. The first moving block 710 has a first spring 730, which drives the first moving block 710 away from the fixed block 300. The mounting cavity 700 also has a guide for restricting the movement direction of the first moving block 710.
[0045] In this embodiment, when it is necessary to fix the mold 210, the second moving block 610 can be moved downward, so that the second inclined surface presses against the first inclined surface. Under the guidance of the guide, the first moving block 710 moves towards the fixing block 300, so that the connecting rod 621 extends into the connecting hole 301 to fix the mold 210. When it is necessary to release the fixation of the mold 210, the second moving block 610 is moved upward, the second inclined surface disengages from the first inclined surface, and under the elastic force of the first spring 730, the first moving block 710 moves away from the fixing block 300, so that the connecting rod 621 disengages from the connecting hole 301.
[0046] Specifically, the first moving block 710 is provided with a threaded hole, and a guide post 620 with one end protruding is threadedly connected inside the threaded hole. The first spring 730 is sleeved on the guide post 620. Under the elastic force of the first spring 730, the first moving block 710 can move towards the second moving block 610.
[0047] The guide includes a first guide groove 701 located on the opposite side wall of the mounting cavity 700, and a first guide block 711 located in the first guide groove 701 and sliding on the opposite side wall of the first moving block 710. The first guide groove 701 includes a horizontal groove and a vertical groove that are interconnected. When the first moving block 710 moves, the first guide block 711 can slide in the horizontal groove, thereby restricting its direction of movement.
[0048] Combination Figures 3-7 As shown, in this embodiment, the first moving block 710 is provided with a first vertical surface that communicates with the first inclined surface, and the second moving block 610 is provided with a second vertical surface 722 and a third vertical surface 721 that communicate with the second inclined surface. When the first vertical surface contacts the second vertical surface 722, it is used to keep the connecting rod 621 in the mounting cavity 700 and maintain this state. When the first vertical surface contacts the third vertical surface 721, it is used to keep the connecting rod 621 inserted into the connecting hole 301 and maintain this state.
[0049] In this embodiment, when the first vertical surface contacts the second vertical surface 722, under the elastic force of the first spring 730, the second moving block 610 is squeezed by the first moving block 710 to move upward and maintain this state. At this time, the connecting rod 621 is located inside the mounting cavity 700. When the second moving block 610 moves downward, the first vertical surface contacts the third vertical surface 721. At this time, the connecting rod 621 extends out of the mounting cavity 700. Since the first inclined surface does not contact the second inclined surface at this time, even if the first moving block 710 is pushed by the first spring 730, the first moving block 710 will not move away from the fixed block 300 and can maintain this state.
[0050] Specifically, a second guide groove is provided on the opposite side wall of the mounting cavity 700, and a second guide block 723 is provided on the second moving block 610, which slides in the second guide groove, thereby restricting the movement direction of the second moving block 610.
[0051] In this embodiment, when assembling the fastener, firstly, the second guide block 723 is aligned with the second guide groove, and the second moving block 610 is slid into the mounting cavity 700. Then, the first guide block 711 is aligned with the vertical groove in the first guide groove 701, and the first moving block 710 is placed into the mounting cavity 700. Next, the first spring 730 is placed on one side of the first moving block 710, and the guide post 620 is threaded through the first spring 730 and connected to one side of the first moving block 710. Finally, the opening of the mounting cavity 700 is closed by the cover plate 740.
[0052] Combination Figures 3-7 As shown, in this embodiment, the extended end of the second moving block 610 is provided with a third inclined surface 720, and the unlocking component includes an unlocking block 200 located on the base plate 100 below the bracket 120. The unlocking block 200 is provided with a fourth inclined surface that cooperates with the third inclined surface 720. When the third inclined surface 720 contacts the fourth inclined surface, it is used to drive the second moving block 610 to move upward, thereby causing the connecting rod 621 to fall out of the connecting hole 301.
[0053] In this embodiment, when the tray 110 moves to a position below the bracket 120, the fourth inclined surface can press against the third inclined surface 720. Under the guidance of the second guide groove, the second moving block 610 moves upward. Under the pushing force of the first spring 730, the connecting rod 621 can retract into the mounting cavity 700, thereby releasing the fixation of the fixing block 300.
[0054] Combination Figures 1-5As shown, in this embodiment, the base plate 100 is provided with positioning holes 102, and the tray 110 is provided with mounting holes 411. The fixing component includes a handle 112 that passes through the mounting hole 411 at one end. The end of the handle 112 near the base plate 100 is provided with a detachable crossbeam 520. The handle 112 is also provided with a guide rod 500 that passes through the base plate 100 and extends into the crossbeam 520. A second spring 501 is sleeved on the guide rod 500 located at the lower end of the base plate 100. The second spring 501 is used to push the handle 112 down and into the positioning hole 102.
[0055] In this embodiment, under the elastic force of the second spring 501, the crossbeam 520 can drive the handle 112 to move down and extend into the positioning hole 102. At this time, the tray 110 will not move accidentally. When it is necessary to move the tray 110, the handle 112 can be moved up so that its lower end falls out of the positioning hole 102 and the tray 110 can be moved by moving the handle 112.
[0056] The positioning holes 102 are provided in two sets, located on the bottom plate 100 below the support 120 and on the upper plate surface of the bottom plate 100 away from the support 120. When the handle 112 is inserted into the bottom plate 100 below the support 120, the tray 110 will not move easily when the extruder is extruding the dough. When the handle 112 is inserted into the plate surface of the bottom plate 100 away from the support 120, the tray 110 will not move easily when the mold 210 is disassembled and assembled on the tray 110.
[0057] Specifically, the crossbeam 520 is provided with threaded holes, and the guide rod 500 is connected to the crossbeam 520 by bolts. The handle 112 is inverted U-shaped, and both ends of the handle 112 pass through the tray 110. The tray 110 is also provided with through holes 412 for the guide rod 500 to pass through. During assembly, first, the lower end of the handle 112 is passed through the tray 110. Then, the crossbeam 520 is passed through the handle 112 and fixed to it with countersunk screws. Finally, the guide rod 500 is installed on the handle 112 and the crossbeam 520.
[0058] In actual use, the mold 210 of the required size is placed on the tray 110, the dough is placed inside the mold 210, the mold 210 is fixed by the operating fixing device, the handle 112 is moved upward and the tray 110 is moved closer to the support 120, which moves the mold 210 to the position below the pressure plate 122. The unlocking device can disconnect the mold 210 from the tray 110. The electric push rod 121 is activated to move the pressure plate 122 down to the position above the mold 210, which squeezes the dough inside the mold 210, causing the dough to be shaped into a flatbread. The tray 110 is moved away from the support 120 to remove the mold 210 from the tray 110 and the flatbread is removed from the mold 210.
[0059] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall fall within the scope of the patent of the present utility model.
Claims
1. A forming machine for quick-frozen flatbreads, comprising a base plate (100) and a movable tray (110) on the base plate (100), characterized in that: A removable mold (210) is provided on the tray (110) via an installation component. The mold (210) is used to place dough. The tray (110) is also provided with a fixing component for connecting the mold (210). A support (120) is also provided on the base plate (100). An extrusion component is provided on the support (120) for extruding the dough in the mold (210). An unlocking component is provided on the base plate (100) located below the support (120). The tray (110) is moved to the unlocking component to release the connection between the mold (210) and the tray (110).
2. The forming machine for quick-frozen flatbread according to claim 1, characterized in that: The tray (110) is provided with a fixing groove (410), and the bottom end of the mold (210) is provided with a fixing block (300) with one end extending through the fixing groove (410). The protruding end of the fixing block (300) is provided with a connecting hole (301). The mounting part extends into the connecting hole (301) to connect the mold (210) on the tray (110).
3. The forming machine for quick-frozen flatbread according to claim 2, characterized in that: The mounting component includes a mounting block (600) located at the bottom of the tray (110). The mounting block (600) has a mounting cavity (700). The mounting cavity (700) contains a movable first moving block (710) and a liftable second moving block (610). One end of the second moving block (610) extends out of the mounting cavity (700). The first moving block (710) has a connecting rod (621) that can extend into a connecting hole (301). The first moving block (710) also has... The first inclined surface and the second moving block (610) are provided with a second inclined surface that cooperates with the first inclined surface. The second moving block (610) moves down to drive the first moving block (710) closer to the fixed block (300). The first moving block (710) is provided with a first spring (730). The first spring (730) is used to drive the first moving block (710) away from the fixed block (300). The mounting cavity (700) is also provided with a guide for limiting the moving direction of the first moving block (710).
4. A forming machine for quick-frozen flatbreads according to claim 3, characterized in that: The first moving block (710) is provided with a first vertical surface that communicates with the first inclined surface. The second moving block (610) is provided with a second vertical surface (722) and a third vertical surface (721) that communicate with the second inclined surface. When the first vertical surface contacts the second vertical surface (722), it is used to place the connecting rod (621) in the mounting cavity (700) and maintain this state. When the first vertical surface contacts the third vertical surface (721), it is used to extend the connecting rod (621) into the connecting hole (301) and maintain this state.
5. A forming machine for quick-frozen flatbreads according to claim 3, characterized in that: The extended end of the second moving block (610) is provided with a third inclined surface (720). The unlocking component includes an unlocking block (200) located on the base plate (100) below the bracket (120). The unlocking block (200) is provided with a fourth inclined surface that cooperates with the third inclined surface (720). When the third inclined surface (720) contacts the fourth inclined surface, it is used to drive the second moving block (610) to move upward, thereby causing the connecting rod (621) to fall out of the connecting hole (301).
6. A forming machine for quick-frozen flatbreads according to claim 1, characterized in that: The base plate (100) is provided with positioning holes (102) opposite to each other, and the tray (110) is provided with mounting holes (411) opposite to each other. The fastener includes a handle (112) that passes through the mounting hole (411) at one end and can be raised and lowered. The end of the handle (112) near the base plate (100) is provided with a detachable crossbeam (520). The handle (112) is also provided with a guide rod (500) that passes through the base plate (100) and extends into the crossbeam (520). A second spring (501) is sleeved on the guide rod (500) located at the lower end of the base plate (100). The second spring (501) is used to push the handle (112) down and extend into the positioning hole (102).
7. A forming machine for quick-frozen flatbreads according to claim 3, characterized in that: The guide includes a first guide groove (701) located on the opposite side wall of the mounting cavity (700), and a first guide block (711) located in the first guide groove (701) is provided on the opposite side wall of the first moving block (710).
8. A forming machine for quick-frozen flatbreads according to claim 1, characterized in that: The extrusion component includes an electric push rod (121) disposed in a bracket (120), and the output end of the electric push rod (121) is provided with a pressure plate (122).
9. A forming machine for quick-frozen flatbreads according to claim 1, characterized in that: The base plate (100) is provided with a track (101) opposite to the moving direction of the tray (110), and the tray (110) is provided with a slider (400) that slides in the track (101).
Citation Information
Patent Citations
Sesame seed cake wrapper forming tool
CN216533512U