Dough dividing cutter head
By simplifying the structure of the dough dividing blade and using a bolt and nut connection between the connector and the cutting blade, the problem of numerous parts and inconvenient disassembly and assembly in the existing technology is solved, achieving easy disassembly, assembly, and cleaning.
Patent Information
- Application Number
- CN202520469448.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-18
AI Technical Summary
The existing dough dividing and rounding machine has a complex cutting disc structure with many parts, which makes disassembly and cleaning inconvenient.
A dough dividing blade was designed, which uses a connector to fasten the cutting blade with bolts and nuts, simplifying the structure and reducing the number of parts. It automatically aligns during connection, making it easy to disassemble and clean.
It achieves fewer parts, simpler structure, convenient disassembly and assembly, and easy cleaning, thereby improving the maintenance efficiency and cleaning effect of the equipment.
Smart Images

Figure CN223830269U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food processing, and in particular to a dough dividing blade. Background Technology
[0002] In the food processing industry, it is sometimes necessary to manually cut and roll a large lump of dough into multiple small dough balls. A dough dividing and rolling machine can free up hands by dividing a large lump of dough into small portions and then rolling them into balls. When using an existing dough dividing and rolling machine (website: https: / / mbd.baidu.com / newspage / data / videolanding?nid=sv_4903015760059212911&sourceFrom=share), first place a large lump of dough on a tray, then clamp the tray onto the rolling plate. The cutting blade moves downwards to divide the large lump of dough into multiple small portions. Then, by driving the rolling plate below to eccentrically reciprocate, the previously cut small portions are rolled into balls.
[0003] However, existing dough dividing and rounding machines have the following shortcomings: the dividing blade has a complex structure, many parts, is inconvenient to disassemble and assemble, and is not easy to clean after disassembly. Utility Model Content
[0004] The purpose of this invention is to address the problems existing in the background technology by proposing a dough dividing blade with fewer parts and a relatively simple structure. The connector passes through the mounting port on the divider frame and is fastened to the cutting blade with bolts and nuts, making it easy to disassemble and clean after disassembly.
[0005] The present invention provides a dough dividing blade, comprising a cutting blade, a connector, and a separator. The cutting blade includes multiple first blades, each with a convex connecting plate at its top and a connecting groove. The connector has a central mounting hole, multiple slots evenly distributed around the mounting hole for insertion of the connecting plate, and a horizontally penetrating connecting hole. A bolt passing through the slots and connecting groove is inserted into the connecting hole, and the bolt is threaded with a nut to secure the cutting blade to the connector. The separator has a mounting opening for the connector to pass through and multiple fixing holes evenly distributed around the mounting opening.
[0006] Preferably, the inner ends of the plurality of first blades are connected to each other, and the slitting blade also includes a second blade connected to the outer ends of the plurality of first blades and having a circular structure, and a plurality of third blades uniformly connected to the outer circumferential surface of the second blades. The plurality of first blades divide the inner space of the second blades equally, and the plurality of first blades and the plurality of third blades are all distributed radially along the second blade.
[0007] Preferably, three first blades are evenly distributed, one second blade is provided, and eight third blades are evenly distributed.
[0008] Preferably, the outer ends of the plurality of third blades are connected to a fourth blade with a ring-shaped structure, and a plurality of fifth blades are evenly arranged radially on the outer circumferential surface of the fourth blade.
[0009] Preferably, four first blades are evenly distributed, one second blade is provided, ten third blades are evenly distributed, one fourth blade is provided, and sixteen fifth blades are evenly distributed.
[0010] Preferably, the divider includes a mounting plate, a connecting column, and a partition section connected sequentially from top to bottom. Multiple connecting columns and partition sections are provided and connected one-to-one. The mounting port and fixing hole are located on the mounting plate, and a gap is left between two adjacent partition sections for the slitting blade to pass through.
[0011] Compared with the prior art, the present invention has the following beneficial technical effects: the present invention has fewer parts and a relatively simple structure. The connector is passed through the mounting port on the separator and is fastened to the slitting blade by bolts and nuts. When connected, the connecting groove automatically aligns with the connecting hole, which makes it easy to pass the bolt through the connecting hole, connecting groove and slot, and easy to tighten the nut for installation. It is also easy to remove during disassembly and easy to clean after disassembly. Attached Figure Description
[0012] Figure 1 This is a structural schematic diagram from above, representing an embodiment of the present invention.
[0013] Figure 2 This is a structural schematic diagram from the lower view of an embodiment of the present invention;
[0014] Figure 3 This is an exploded view of the structure of an embodiment of the present utility model;
[0015] Figure 4 This is a schematic diagram of the partition frame.
[0016] Reference numerals: 1. Slitting blade; 11. First blade; 111. Connecting groove; 12. Second blade; 13. Third blade; 2. Connecting head; 21. Mounting hole; 22. Slot; 23. Connecting hole; 3. Divider; 31. Mounting plate; 311. Mounting port; 32. Connecting column; 33. Partition plate. Detailed Implementation
[0017] Example 1
[0018] like Figures 1-4 As shown in the figure, the dough dividing disc proposed in this embodiment includes a cutting blade 1, a connector 2, and a divider 3.
[0019] The slitting blade 1 includes three first blades 11, a second blade 12 connected to the outer ends of the three first blades 11 and having a circular structure, and eight third blades 13 evenly connected to the outer circumferential surface of the second blade 12. The inner ends of the three first blades 11 are connected to each other, and the three first blades 11 equally divide the inner space of the second blade 12. The three first blades 11 and the eight third blades 13 are radially distributed along the second blade 12. Three compartments are formed between the first blades 11 and the second blade 12, and eight compartments are formed between the second blade 12 and the third blades 13. An outer ring plate, as in the prior art, is also provided around the third blades 13. The outer ring plate is located around the eight compartments and is not part of the structure of the dough dividing blade disc. Figure 3 As shown, the top of the first blade 11 has an upwardly protruding connecting plate portion, and the connecting plate portion has a connecting groove 111.
[0020] The connector 2 has a central mounting hole 21, three slots 22 evenly distributed around the mounting hole 21 for inserting the connecting plate, and a horizontally penetrating connecting hole 23 through the slot 22. The mounting hole 21 is used to connect to the bottom of the lifting mechanism on the dough dividing and rolling machine, enabling the connector 2 and the cutting blade 1 to rise and fall. When the cutting blade 1 descends, it can cut a large lump of dough below into eleven small dough balls. A bolt passes through the slot 22 and the connecting groove 111 through the connecting hole 23. The bolt is threaded with a nut to fasten the cutting blade 1 to the connector 2. After the connecting plate is inserted into the slot 22, the top of the first blade 11 contacts the bottom of the connector 2, and the connecting groove 111 automatically aligns with the connecting hole 23. At this time, the bolt can be passed through the connecting hole 23, the connecting groove 111, and the slot 22, and the nut can be screwed on on the other side for fastening, making disassembly and assembly convenient.
[0021] The separator 3 has a mounting opening 311 through which the connector 2 passes and multiple fixing holes evenly distributed around the mounting opening 311. The separator 3 includes a mounting plate portion 31, a connecting column portion 32, and a partition portion 33 connected sequentially from top to bottom. Each connecting column portion 32 and partition portion 33 has eleven parts, which are connected one-to-one. All partition portions 33 generally form a disc-shaped structure. The mounting opening 311 and fixing holes are located on the mounting plate portion 31, which is mounted on the dough dividing and rolling machine by bolts passing through the fixing holes. A gap is left between adjacent partition portions 33 for the blades of the slitting knife 1 to pass through. Each partition portion 33 can extend into the dividing chamber of the slitting knife 1. The slitting knife 1 divides a large lump of dough into eleven small dough balls, which are located below the partition portions 33.
[0022] This embodiment has a small number of parts and a relatively simple structure. The connector is passed through the mounting port on the divider and fastened to the slitting blade with bolts and nuts. Specifically, the connector 2 is directly put on the connecting plate at the top of the slitting blade 1, so that the connecting plate is inserted into the slot 22. The connecting groove 111 automatically aligns with the connecting hole 23, which makes it easy to pass the bolt through the connecting hole 23, the connecting groove 111 and the slot 22, and to tighten the nut for installation. It is also easy to remove during disassembly and is easy to clean after disassembly.
[0023] Example 2
[0024] This embodiment proposes a dough dividing blade. Compared to Embodiment 1, in this embodiment, the dividing blade 1 includes a first blade 11, a second blade 12, a third blade 13, a fourth blade, and a fifth blade connected sequentially from the inside out, specifically by welding. The second blade 12 and the fourth blade are both annular structures, and the first blade 11, the third blade 13, and the fifth blade are radially distributed along the second blade 12. Specifically, four first blades 11 are evenly distributed, one second blade 12 is provided, ten third blades 13 are evenly distributed, one fourth blade is provided, and sixteen fifth blades are evenly distributed. Four compartments are formed between the first blade 11 and the second blade 12, ten compartments are formed between the second blade 12, the third blade 13, and the fourth blade, and sixteen compartments are formed between the fourth blade and the fifth blade. An outer ring plate, as in the prior art, is also provided around the fifth blade. The outer ring plate is located outside the sixteen compartments and is not part of the structure of the dough dividing blade. In this case, the number of slots 22 and connecting holes 23 on the connector 2 is adjusted accordingly to accommodate the connection of the four connecting plates at the top of the four first blades 11. The number and position of the connecting column part 32 and the partition part 33 in the partition frame 3 are adjusted accordingly, with thirty of them respectively, and gaps are left for the first blade 11, the second blade 12, the third blade 13, the fourth blade and the fifth blade to pass through.
[0025] In this embodiment, the slitting blade 1 can divide a large lump of dough into thirty small dough balls. The small dough balls are located below each partition 33 in the separator 3, which is suitable for the use of dividing into thirty small dough balls.
[0026] In addition, the structure of the slitting blade 1, connector 2, and divider 3 can be modified for dividing 16, 26, or 36 small dough balls.
[0027] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. A dough dividing blade, characterized in that, include: The slitting blade (1) includes a plurality of first blades (11), the top of each first blade (11) having an upwardly protruding connecting plate portion, the connecting plate portion having a connecting groove (111); The connector (2) has a central mounting hole (21), a plurality of slots (22) evenly distributed around the mounting hole (21) for inserting the connecting plate, and a horizontally penetrating connecting hole (23) through the slot (22). A bolt passing through the slot (22) and the connecting groove (111) is provided at the connecting hole (23), and the bolt is threaded with a nut for fastening the slitting blade (1) to the connector (2). The separator (3) has a mounting port (311) through which the connector (2) passes and a plurality of fixing holes evenly distributed around the mounting port (311).
2. The dough dividing blade according to claim 1, characterized in that, Multiple first blades (11) are connected to each other at one end on their inner side. The slitting blade (1) also includes a second blade (12) connected to the outer end of the multiple first blades (11) and having a circular structure, and multiple third blades (13) uniformly connected to the outer circumferential surface of the second blade (12). The multiple first blades (11) divide the inner space of the second blade (12) into equal parts. The multiple first blades (11) and the multiple third blades (13) are all radially distributed along the second blade (12).
3. A dough dividing blade according to claim 2, characterized in that, The first blade (11) has three blades evenly distributed, the second blade (12) has one blade, and the third blade (13) has eight blades evenly distributed.
4. A dough dividing blade according to claim 2, characterized in that, Multiple third blades (13) have a fourth blade with a circular structure connected to their outer ends. Multiple fifth blades are evenly arranged radially on the outer circumferential surface of the fourth blade.
5. A dough dividing blade according to claim 4, characterized in that, Four blades (11) are evenly distributed, one blade (12) is set, ten blades (13) are evenly distributed, one blade (4) is set, and sixteen blades (5) are evenly distributed.
6. A dough dividing blade according to claim 1, characterized in that, The divider (3) includes a mounting plate (31), a connecting column (32) and a partition (33) connected from top to bottom. Multiple connecting columns (32) and partitions (33) are provided and connected one-to-one. The mounting port (311) and the fixing hole are located on the mounting plate (31). A gap is left between two adjacent partitions (33) for the cutting blade (1) to pass through.