A food cutting machine with a quickly adjustable cutting spacing
By setting the first and second cutter sets in the food cutting machine and adjusting the cutting distance using the displacement mechanism, the existing shredders have solved the problem of complex operation and low efficiency when cutting food of different widths, and a fast, safe and efficient shredding effect is achieved.
Patent Information
- Application Number
- CN202211334983.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-28
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2042-10-28
AI Technical Summary
When existing wire cutters need to cut food of different widths, they need to change the tool set, resulting in complex operation, high safety risks and low working efficiency.
A food cutting machine that can quickly adjust the cutting spacing is designed. By setting the first and second cutter groups in the main machine base, and using the displacement mechanism to form a cutting channel through different combinations, thereby achieving the effect of cutting threads of different thicknesses.
Users only need to control the displacement mechanism to achieve the effect of cutting threads of different thicknesses, simplifying the operation process, reducing safety risks, and improving work efficiency.
Smart Images

Figure CN116001009B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food processing, and particularly relates to a food cutting machine capable of quickly adjusting the cutting spacing. Background Art
[0002] In order to better cut food materials into filaments or strips, existing wire-cutting machines often process food materials by setting two groups of cutter groups. Specifically, the two groups of cutter groups are arranged vertically. After the upper cutter group slices the food materials, the lower cutter group then cuts the food materials into strips.
[0003] The spacing between the blades in a general cutter group is fixed. If different widths of food materials need to be cut, it is necessary to use a wire-cutting machine with different blade spacings, resulting in an increase in processing costs. For this reason, there has emerged on the market a wire-cutting machine that can achieve different thickness wire-cutting effects by replacing the cutter group. The position of the cutter group of this wire-cutting machine is fixed, and the spacing between the blades in the cutter group is also equidistant. To achieve different wire-cutting effects, the upper and lower two-layer cutter groups with different blade spacings need to be replaced simultaneously, so as to achieve different thickness wire-cutting effects.
[0004] However, when users need to operate different wire-cutting effects, they often need to cut off the power supply of the wire-cutting machine and disassemble the machine first. Frequent operation will lead to an increase in safety risks and a significant reduction in work efficiency.
[0005] Therefore, further improvement is needed. Summary of the Invention
[0006] The purpose of the present invention is to overcome the deficiencies of the above-mentioned existing technologies, and to provide a food cutting machine capable of quickly adjusting the cutting spacing, aiming to at least solve one of the above-mentioned technical problems in the existing technology to a certain extent.
[0007] The purpose of the present invention is achieved as follows:
[0008] A food cutting machine capable of quickly adjusting the cutting spacing includes a main machine base. A first cutter group and a second cutter group are vertically distributed in the main machine base. A plurality of blades are respectively arranged in the first cutter group and the second cutter group. A plurality of upper cutting areas with different blade spacings are formed in the first cutter group, and a plurality of lower cutting areas with different blade spacings are formed in the second cutter group. The first cutter group and / or the second cutter group is connected with a displacement mechanism, and the displacement mechanism enables different combinations of the upper cutting area and the lower cutting area to form a wire-cutting channel for cutting food with different widths.
[0009] The first cutter group and the second cutter group are respectively connected with corresponding drive motors.
[0010] A partition is provided between the first cutter group and the second cutter group. A transition material opening for allowing food to enter the lower cutting area from the upper cutting area is provided between the first cutter group and the partition. The displacement mechanism includes an inner guiding portion provided on the partition and a sliding portion provided on the first cutter group. The sliding portion slides along the inner guiding portion to make the first cutter group move back and forth along the direction of the inner guiding portion. The first cutter group forms a wire-cutting channel by combining different upper cutting areas and lower cutting areas through movement along the direction of the inner guiding portion.
[0011] The blades in the first cutter group are perpendicular to the blades in the second cutter group. The first cutter group forms a wire-cutting channel by combining the upper cutting area and the lower cutting area in a one-to-one correspondence through movement along the direction of the inner guiding portion.
[0012] A feeding pipe is provided on the main frame corresponding to the position above the first cutter group. The feeding end of the feeding pipe extends upward to the outside of the main frame, and its discharging end extends downward to the position of the upper cutting area.
[0013] The displacement mechanism further includes a push rod for pushing the first cutter group to move along the direction of the inner guiding portion. One end of the push rod is fixedly connected to the first cutter group, and the other end extends upward to the outside of the main frame. An outer guiding portion corresponding to the push rod is provided on the main frame, and the outer guiding portion is parallel to the inner guiding portion.
[0014] An anti-slip hand-pushing portion is provided at one end of the push rod corresponding to the outside of the main frame.
[0015] The feeding pipe is fixedly connected with a movable plate for slidably connecting with the main frame. The movable plate is linked with the push rod to make the feeding pipe move between the positions above different upper cutting areas. A linkage sliding groove corresponding to the push rod is provided on the movable plate, and an avoidance opening corresponding to the feeding pipe is provided on the main frame.
[0016] The beneficial effects of the present invention are as follows:
[0017] By providing the displacement mechanism, the relative position of the projection between the first cutter group and the second cutter group can be adjusted, so as to form different wire-cutting channels between the first cutter group and the second cutter group, thereby realizing wire-cutting effects of different thicknesses. During the adjustment process, the user only needs to control the displacement mechanism, which simplifies the user's operation and improves work efficiency.
[0018] The additional aspects and advantages of the present invention will become obvious in the following description part, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of the first working state of an embodiment of the present invention Figure 1 。
[0020] Figure 2 is a schematic structural diagram of the first working state of an embodiment of the present invention Figure 2 。
[0021] Figure 3 Structural schematic diagram of the second working state of the embodiment of the present invention Figure 1 。
[0022] Figure 4 Structural schematic diagram of the second working state of the embodiment of the present invention Figure 2 。
[0023] Figure 5 Structural schematic diagram of the third working state of the embodiment of the present invention Figure 1 。
[0024] Figure 6 Structural schematic diagram of the third working state of the embodiment of the present invention Figure 2 。
[0025] Figure 7 Exploded schematic diagram of the embodiment of the present invention. Detailed implementation manners
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] Refer to Figures 1 - 7 , the food cutter capable of quickly adjusting the cutting spacing includes a main seat 1. A first cutter group 21 and a second cutter group 22 are vertically distributed in the main seat 1. A plurality of blades 2 are respectively arranged in the first cutter group 21 and the second cutter group 22. A plurality of upper cutting areas A with different blade 2 spacings are formed in the first cutter group 21, and a plurality of lower cutting areas B with different blade 2 spacings are formed in the second cutter group 22. During operation, the upper cutting area A first cuts the food into slices of corresponding thickness, and then the lower cutting area B cuts the food into filaments of corresponding thickness.
[0028] The first cutter group 21 and / or the second cutter group 22 is connected with a displacement mechanism. The displacement mechanism enables the upper cutting area A and the lower cutting area B to form a wire-cutting channel for cutting foods of different widths through different combinations. By setting the displacement mechanism, the relative position of the projections between the first cutter group 21 and the second cutter group 22 can be adjusted, so as to form different wire-cutting channels between the first cutter group 21 and the second cutter group 22, thereby realizing wire-cutting effects of different thicknesses. During the adjustment process, the user only needs to control the displacement mechanism, which simplifies the user's operation and improves the work efficiency.
[0029] Furthermore, the first cutter group 21 and the second cutter group 22 are respectively connected with corresponding drive motors 3. The user can control the working states of the first cutter group 21 and the second cutter group 22 according to actual needs by controlling the corresponding drive motors 3, such as the rotation speeds of the first cutter group 21 and the second cutter group 22, so that the wire-cutting effect is more flexible and variable.
[0030] Further, a partition plate 11 is provided between the first cutter group 21 and the second cutter group 22. A transition feed port 12 for allowing food to enter the lower cutting area B from the upper cutting area A is provided between the first cutter group 21 and the partition plate 11. The displacement mechanism includes an inner guiding portion 41 provided on the partition plate 11 and a sliding portion (not labeled in the figure) provided on the first cutter group 21. The sliding portion slides along the inner guiding portion 41 to make the first cutter group 21 move back and forth along the direction of the inner guiding portion 41. The first cutter group 21 forms a shredding channel by combining different upper cutting areas A and lower cutting areas B through movement along the direction of the inner guiding portion 41. The cooperation between the inner guiding portion 41 and the sliding portion can make the process of the first cutter group 21 forming a relative position change with the second cutter group 22 through displacement more accurate. The manufacturer can preset the opening direction of the inner guiding portion 41 so that the first cutter group 21 can be displaced according to the preset trajectory every time it is adjusted.
[0031] Further, the blades 2 in the first cutter group 21 and the blades 2 in the second cutter group 22 are perpendicular to each other, so that the lower cutting area B can better cut the sheet-shaped food formed through the upper cutting area A into filaments.
[0032] In the actual implementation process, the angle formed between the blades 2 in the first cutter group 21 and the blades 2 in the second cutter group 22 can also be within the range of 0° - 90°.
[0033] The first cutter group 21 forms a shredding channel by combining the upper cutting area A and the lower cutting area B in a one-to-one correspondence through movement along the direction of the inner guiding portion 41.
[0034] Further, a feeding pipe 5 is provided on the main machine base 1 at a position corresponding to the upper side of the first cutter group 21. The feeding end of the feeding pipe 5 extends upward to the outside of the main machine base 1, and its discharging end extends downward to the position of the upper cutting area A. Through the feeding pipe 5, the user can better put food into the upper cutting area A, increasing the safety of the equipment.
[0035] Further, the displacement mechanism further includes a push rod 6 for pushing the first cutter group 21 to move along the direction of the inner guiding portion 41. One end of the push rod 6 is fixedly connected to the first cutter group 21, and the other end extends upward to the outside of the main machine base 1. An outer guiding portion 42 corresponding to the push rod 6 is provided on the main machine base 1. The outer guiding portion 42 is parallel to the inner guiding portion 41, facilitating the user to adjust the position of the first cutter group 21 from the outside. When the user needs to achieve different thickness shredding effects, only by controlling the position of the push rod 6 is required, without stopping the machine and disassembling the main machine base 1, reducing the operation risk and further improving the work efficiency.
[0036] Further, an anti-slip hand-pushing portion 61 is provided at one end of the push rod 6 corresponding to the outside of the main machine base 1, making the operation of the user more convenient. The user can further limit and fix the position of the first cutter group 21 by performing limit fixation on the anti-slip hand-pushing portion 61.
[0037] Furthermore, the blanking pipe 5 is fixedly connected with a movable plate 51 for slidably connecting with the main seat 1. The movable plate 51 is linked with the push rod 6 to enable the blanking pipe 5 to move between the upper cutting areas A. A linkage chute 43 corresponding to the push rod 6 is arranged on the movable plate 51, and an avoidance opening 13 corresponding to the blanking pipe 5 is arranged on the main seat 1, so that when the user adjusts the position of the first cutter group 21 through the push rod 6, the position of the blanking pipe 5 is synchronously adjusted, enabling the blanking pipe 5 to move to a position above the corresponding upper cutting area A, thereby improving the accuracy of food delivery.
[0038] In this embodiment, three upper cutting areas A are provided in the first cutter group 21, namely A1, A2, and A3 respectively. Three lower cutting areas B are provided in the second cutter group 22, namely B1, B2, and B3 respectively. As Figure 1 、 Figure 2 shown, in the first working state, the first cutter group 21 moves to the first preset position, and A1 and B1 overlap in the vertical projection to form a corresponding shredding channel. As Figure 3 、 Figure 4 shown, in the second working state, the first cutter group 21 moves to the second preset position, and A2 and B2 overlap in the vertical projection to form a corresponding shredding channel. As Figure 5 、 Figure 6 shown, in the third working state, the first cutter group 21 moves to the third preset position, and A3 and B3 overlap in the vertical projection to form a corresponding shredding channel.
[0039] The above embodiments are only the preferred solutions of the present invention, and the present invention may have other implementation solutions. Those skilled in the art can also make equivalent deformations or substitutions without departing from the spirit of the present invention, and these equivalent deformations or substitutions are all included within the scope set by the claims of this application.
Claims
1. A food cutting machine capable of quickly adjusting the cutting spacing, comprising a main seat (1). Inside the main seat (1), a first knife group (21) and a second knife group (22) are vertically distributed. A number of blades (2) are respectively provided in the first knife group (21) and the second knife group (22). A number of upper cutting areas (A) with different blade (2) spacings are formed in the first knife group (21), and a number of lower cutting areas (B) with different blade (2) spacings are formed in the second knife group (22). Characterized in that, The first knife group (21) and / or the second knife group (22) is connected with a displacement mechanism, and the displacement mechanism enables the upper cutting area (A) and the lower cutting area (B) to form a wire cutting channel for cutting foods of different widths through different combinations.
2. The food cutting machine capable of quickly adjusting the cutting spacing according to claim 1, Characterized in that: The first knife group (21) and the second knife group (22) are respectively connected with corresponding drive motors (3).
3. The food cutting machine capable of quickly adjusting the cutting spacing according to claim 1 or 2, Characterized in that: A partition plate (11) is provided between the first knife group (21) and the second knife group (22). A transition material port (12) for enabling food to enter the lower cutting area (B) from the upper cutting area (A) is provided between the first knife group (21) and the partition plate (11). The displacement mechanism includes an inner guiding part (41) provided on the partition plate (11) and a sliding part provided on the first knife group (21). The sliding part slides along the inner guiding part (41) to make the first knife group (21) move back and forth along the direction of the inner guiding part (41). The first knife group (21) forms a wire cutting channel by combining different upper cutting areas (A) and lower cutting areas (B) through moving along the direction of the inner guiding part (41).
4. The food cutting machine capable of quickly adjusting the cutting spacing according to claim 3, Characterized in that: The blades (2) in the first knife group (21) and the blades (2) in the second knife group (22) are perpendicular to each other. The first knife group (21) forms a wire cutting channel by combining the upper cutting area (A) and the lower cutting area (B) in one-to-one correspondence through moving along the direction of the inner guiding part (41).
5. The food cutting machine capable of quickly adjusting the cutting spacing according to claim 4, Characterized in that: A feeding pipe (5) is provided on the main seat (1) corresponding to the position above the first knife group (21). The feeding end of the feeding pipe (5) extends upward to the outside of the main seat (1), and its discharging end extends downward to the position of the upper cutting area (A).
6. The food cutting machine capable of quickly adjusting the cutting spacing according to claim 5, Characterized in that: The displacement mechanism further includes a push rod (6) for pushing the first knife group (21) to move along the direction of the inner guiding part (41). One end of the push rod (6) is fixedly connected with the first knife group (21), and the other end extends upward to the outside of the main seat (1). An outer guiding part (42) corresponding to the push rod (6) is provided on the main seat (1), and the outer guiding part (42) is parallel to the inner guiding part (41).
7. The food cutting machine capable of quickly adjusting the cutting distance according to claim 6, characterized in that: one end of the push rod (6) corresponding to the outside of the main machine base (1) is provided with a non-slip hand-pushing part (61).
8. The food cutting machine capable of quickly adjusting the cutting distance according to claim 6, characterized in that: the material discharging pipe (5) is fixedly connected with a movable plate (51) for slidably connecting with the main machine base (1), the movable plate (51) is linked with the push rod (6) to enable the material discharging pipe (5) to move between the upper cutting areas (A) of different positions, a linkage sliding groove (43) corresponding to the push rod (6) is arranged on the movable plate (51), and an avoidance opening (13) corresponding to the material discharging pipe (5) is arranged on the main machine base (1).
Citation Information
Patent Citations
Food cutting machine capable of rapidly adjusting cutting distance
CN218614440U