A sheet cutting apparatus
Patent Information
- Application Number
- CN202521722889.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-14
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-08-14
AI Technical Summary
[0002]鸡胗、鸭胗等较厚的肉块在食用加工时,需要切割成片,这样不仅放方便烹饪、深加工,而且有利于提高产品的品相,目前鸡胗、鸭胗切片主要通过人工切割,但是无法切成之字形的连片结构,因此迫切需要一种可以将鸡胗、鸭胗,甚至猪肉块、牛肉块等肉块切割成连片的切割装置
[0013]通过以上设置,本实用新型使用时,还安装有平台板以及罩体等结构,工作时,各侧刀轴通过驱动装置驱动转动,从而带动各侧圆切刀旋转进行切割,上压紧带和下输送带则形成夹持输送带,可将产品自动送入到两侧旋转的圆切刀之间,在输送的过程中完成切割,这样工人只需要将待切割产品放在下输送带的前端及进料端即可,因此该种圆切刀结构不仅可以实现鸡胗、鸭胗、肉块等之字形的连片切割,还能避免彻底切断连接,保证连切美观完整,而且便于配合上压紧带和下输送带实现自动化切割,有效提高切割效率。
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Figure CN224738403U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a cutting device, specifically a continuous cutting device. Background Technology
[0002] Thicker pieces of meat, such as chicken gizzards and duck gizzards, need to be sliced before consumption. This not only makes cooking and further processing easier but also improves the appearance of the product. Currently, chicken gizzards and duck gizzards are mainly sliced manually, but it is impossible to cut them into a zigzag pattern of continuous slices. Therefore, there is an urgent need for a cutting device that can cut chicken gizzards, duck gizzards, and even pork and beef chunks into continuous slices. Utility Model Content
[0003] In order to solve the above problems, the purpose of this utility model is to provide a continuous cutting device.
[0004] To achieve the above objectives, the technical solution of this utility model is as follows: a continuous cutting device, comprising a cutter shaft arranged vertically to the left and right and a driving device for driving the cutter shafts on each side to rotate. Each cutter shaft on each side is provided with equally spaced circular cutters, and the circular cutters on the left and right sides are arranged in an alternating pattern, such that each circular cutter on one side extends to the space between the circular cutters on the other side. Each side of the circular cutter is covered with a vertical guide plate on the opposite side. Each guide plate on each side has a horizontal elongated blade opening for the circular cutter to pass through, and a gap is left between the opposite side of each guide plate and the cutting edge of the circular cutter on the other side.
[0005] Furthermore, an upper pressing belt and a lower conveyor belt are arranged vertically between the guide plates, and the closed ends of the upper pressing belt and the lower conveyor belt are supported by pulleys respectively. The upper and lower pulleys are driven by drive devices, so that the lower part of the upper pressing belt and the upper part of the lower conveyor belt move at the same speed and in the same direction.
[0006] Furthermore, an upper pressure plate is provided inside the upper pressing belt, and the upper pressure plate presses down on the upper part of the upper pressing belt through an elastic structure. A lower support plate is provided inside the lower conveyor belt to support the upper part of the lower conveyor belt, and the upper pressure plate is located directly above the lower support plate.
[0007] Furthermore, the two ends of the guide plate are bent outward to form a guiding slope, and the two ends of the long strip blade opening extend to the two end slopes of the guide plate.
[0008] Furthermore, the inclined surfaces at both ends of the guide plate continue to bend to form fixed ends perpendicular to the guide plate body, and hollow horizontal strip-shaped adjustment openings are respectively provided at the fixed ends at both ends, so that the guide plate can be adjusted and connected to the fixed structure of the circular cutter through bolts and nuts.
[0009] Furthermore, the upper pressure plate has an I-shaped structure, and each of the four corners is penetrated by a vertical fixing rod. Each fixing rod on the upper surface of the upper pressure plate is fitted with a downward pressure spring. The upper end of the downward pressure spring is in close contact with the nut at the top of the fixing rod, so that the four corners of the upper pressure plate are pressed tightly against the upper surface of the lower part of the upper pressure band under the downward pressure of each downward pressure spring.
[0010] Furthermore, the lower support plate is fixed to the center of the lower base plate, and the two ends of the lower base plate extend outward. The circular cutters on each side are located between the upper and lower frame plates on each side. The four corners of the upper and lower frame plates on each side are fixedly connected by vertical support rods. The upper and lower ends of the cutter shaft pass through the bearing seats fixed to the upper and lower frame plates respectively. The drive device of the cutter shaft is located above the upper frame plate.
[0011] Furthermore, multiple adjustment holes for the left and right blade groups are provided at both ends of the lower base plate, arranged along the length of the lower base plate. The lower frame plate is adjustablely connected to the lower base plate by bolts and nuts that pass through its body and the adjustment holes for the left and right blade groups.
[0012] Furthermore, the upper surface of the upper pressure plate and the lower surface of the lower support plate are respectively provided with guide grooves arranged along the running direction of the upper pressing belt and the lower conveyor belt, and the rubber protrusions set in the center of the inner ring of the upper pressing belt and the lower conveyor belt are respectively located in the guide grooves.
[0013] With the above configuration, this utility model is also equipped with a platform plate and a cover. During operation, the blade shafts on each side are driven to rotate by a drive device, thereby driving the circular cutters on each side to rotate and cut. The upper clamping belt and the lower conveyor belt form a clamping conveyor belt, which can automatically feed the product between the rotating circular cutters on both sides and complete the cutting during the conveying process. In this way, the worker only needs to place the product to be cut at the front end and the feeding end of the lower conveyor belt. Therefore, this circular cutter structure can not only realize the zigzag continuous cutting of chicken gizzards, duck gizzards, meat chunks, etc., but also avoid completely cutting off the connection, ensuring that the continuous cut is beautiful and complete. Moreover, it is easy to cooperate with the upper clamping belt and the lower conveyor belt to realize automated cutting, effectively improving the cutting efficiency. Attached Figure Description
[0014] The present invention will now be further described with reference to the accompanying drawings.
[0015] Fig. 1 This is a three-dimensional structural diagram of the present invention; Fig. 2 This is a schematic diagram of the main structure of this utility model; Fig. 3 This is a three-dimensional structural diagram of the circular cutting blade part of this utility model. Detailed Implementation
[0016] like Figs. 1-3As shown, a continuous cutting device includes a cutter shaft 1 that rotates vertically to the left and right and a drive device for driving the cutter shaft 1 to rotate, such as by a motor. Each cutter shaft 1 is provided with equidistant circular cutters 2, and the circular cutters 2 are arranged alternately at equal intervals, so that each circular cutter 2 on one side extends to the space between the circular cutters 2 on the other side. Each side of the circular cutter 2 is covered with a vertical guide plate 3, and each guide plate 3 has a horizontal elongated blade opening 4 for the circular cutter 2 to pass through. A gap is left between the opposite side of each guide plate 3 and the cutting edge of the circular cutter 2 on the other side.
[0017] To automate the feeding of the material between the left and right circular cutters 2 for cutting, an upper pressing belt 5 and a lower conveyor belt 6 are arranged vertically between the guide plates 3. The closed ends of the upper pressing belt 5 and the lower conveyor belt 6 are supported by pulleys, and the upper and lower pulleys are driven by a drive device, such as a motor, so that the lower part of the upper pressing belt 5 and the upper part of the lower conveyor belt 6 move at the same speed and in the same direction. The upper pressing belt 5 and the lower conveyor belt 6 are like the current conveyor belt structure, which can be driven to rotate by a motor, so as to realize the conveying function and also perform a certain pressing effect during conveying.
[0018] To better press down and tighten the upper pressing belt 5, an upper pressure plate 7 is installed inside the upper pressing belt 5. The upper pressure plate 7 presses down on the upper part of the upper pressing belt 5 through an elastic structure. For example, the upper pressure plate 7 has an I-shaped structure, and each of its four corners is penetrated by a vertical fixing rod 10. A downward pressure spring 11 is fitted on each of the fixing rods 10 on the upper surface of the upper pressure plate 7. The upper end of the downward pressure spring 11 is in close contact with the nut at the top of the fixing rod 10, so that the four corners of the upper pressure plate 7 are pressed tightly against the upper surface of the lower part of the upper pressing belt 5 under the downward pressure of each downward pressure spring 11. A lower support plate 8 is installed inside the lower conveyor belt 6 to support the upper part of the lower conveyor belt 6. The upper pressure plate 7 is located directly above the lower support plate 8, and the lower support plate 8 serves to support the upper part of the lower conveyor belt 6, ensuring that chicken gizzards, duck gizzards, meat pieces, etc., can be positioned precisely between the lower conveyor belt 6 and the upper pressing belt 5. The support plate 8 is fixed at the center of the lower base plate 12. The two ends of the lower base plate 12 extend outward. The circular cutters 2 on each side are located between the upper and lower frame plates 13 on each side. The four corners of the upper and lower frame plates 13 on each side are fixedly connected by vertical support rods 14. The upper and lower ends of the cutter shaft 1 pass through the bearing seats fixed to the upper and lower frame plates 13 respectively. The drive device of the cutter shaft 1 is located above the upper frame plate 13. The two ends of the lower base plate 12 are respectively provided with multiple left and right cutter adjustment holes 15 arranged along the length of the lower base plate 12. The lower frame plate 13 is adjustablely connected to the lower base plate 12 by bolts and nuts passing through its body and the left and right cutter adjustment holes 15. In this way, the spacing of the left and right frame plates 13 can also be adjusted, which facilitates the adjustment of the spacing of the left and right cutter groups. It is mainly used for fine adjustment after installation, which is convenient to adjust according to customer needs.
[0019] To facilitate the entry of chicken gizzards, duck gizzards, meat chunks, etc., into the guide plates 3, the two ends of the guide plates 3 are bent outward to form guide slopes, and the two ends of the long strip blade openings 4 extend to the two end slopes of the guide plates 3.
[0020] To facilitate adjustment of the spacing between the left and right guide plates 3, and thus make adaptive adjustments according to the width of the product, the bevels at both ends of the guide plate 3 are further bent to form fixed ends perpendicular to the body of the guide plate 3. A hollowed-out horizontal strip-shaped adjustment opening 9 is provided at each of the fixed ends, so that the guide plate 3 can be adjusted to the fixing structure of the circular cutter 2 by bolts and nuts. That is, the two ends of the guide plate 3 are fixed by the horizontal strip-shaped adjustment opening 9 and bolts and nuts, which facilitates manual adjustment.
[0021] In order to ensure the smooth operation of the upper pressing belt 5 and the lower conveyor belt 6, the upper surface of the upper pressure plate 7 and the lower surface of the lower support plate 8 are respectively provided with guide grooves 16 arranged along the running direction of the upper pressing belt 5 and the lower conveyor belt 6. The rubber protrusions 17 set in the center of the inner ring of the upper pressing belt 5 and the lower conveyor belt 6 are respectively located in the guide grooves 16. The guide grooves 16 play a limiting and guiding role for the upper pressing belt 5 and the lower conveyor belt 6. Vertical hollow adjustment plates 18 are fixed to the front and rear edges of the upper frame plate 13 respectively. The vertical adjustment holes of the hollow adjustment plates 18 are through which adjustment bolts are used to fix and connect with the front and rear edges of the upper frame plate 13. The two ends of the guide plates 3 on each side are adjustablely connected to the bottom of the hollow adjustment plates 18 on the front and rear of each side respectively.
[0022] The working principle of this utility model is as follows: This utility model also includes a platform plate and a cover, which are existing technologies and will not be described in detail here. During operation, the side cutter shafts 1 are driven to rotate by a drive device, thereby causing the side circular cutters 2 to rotate and cut. The upper clamping belt 5 and the lower conveyor belt 6 form a clamping conveyor belt, which automatically feeds the product between the rotating circular cutters 2 on both sides, completing the cutting during the conveying process. Thus, the worker only needs to place the product to be cut at the front end and feed end of the lower conveyor belt 6. Therefore, this circular cutter 2 structure can not only achieve zigzag continuous cutting of chicken gizzards, duck gizzards, meat chunks, etc., avoiding complete severing and ensuring a beautiful and complete continuous cut, but also facilitates automated cutting in conjunction with the upper clamping belt 5 and the lower conveyor belt 6, effectively improving cutting efficiency.
[0023] The above description is merely an illustrative embodiment of this utility model and is not intended to limit the scope of this utility model. Any equivalent changes and modifications made by those skilled in the art without departing from the concept and principles of this utility model should fall within the protection scope of this utility model.
Claims
1. A continuous cutting device, comprising a cutter shaft (1) arranged vertically to the left and right and a driving device for driving the cutter shaft (1) to rotate on each side, characterized in that: Each side cutter shaft (1) is provided with a spaced-apart circular cutter (2), and the left and right circular cutters (2) are arranged in an alternating manner, so that each circular cutter (2) on one side extends to the other side of the circular cutter (2). Each side of the circular cutter (2) is covered with a guide plate (3), and each side guide plate (3) has a long strip blade opening (4) for passing through the circular cutter (2). A gap is left between the opposite side of each side guide plate (3) and the cutting edge of the other side circular cutter (2).
2. The continuous cutting device as described in claim 1, characterized in that: An upper pressing belt (5) and a lower conveyor belt (6) are arranged vertically between the guide plates (3). The closed ends of the upper pressing belt (5) and the lower conveyor belt (6) are supported by pulleys respectively. The upper and lower pulleys are driven by a drive device, so that the lower part of the upper pressing belt (5) and the upper part of the lower conveyor belt (6) move at the same speed and in the same direction.
3. The continuous cutting device as described in claim 2, characterized in that: An upper pressure plate (7) is provided inside the upper pressing belt (5), and the upper pressure plate (7) presses down on the upper part of the upper pressing belt (5) through an elastic structure. A lower support plate (8) is provided inside the lower conveyor belt (6) to support the upper part of the lower conveyor belt (6), and the upper pressure plate (7) is located directly above the lower support plate (8).
4. The continuous cutting device as described in claim 1, characterized in that: The two ends of the guide plate (3) are bent outward to form a guide slope, and the two ends of the long strip blade opening (4) extend to the two ends of the guide plate (3).
5. The continuous cutting device as described in claim 4, characterized in that: The inclined surfaces at both ends of the guide plate (3) continue to bend to form fixed ends perpendicular to the body of the guide plate (3). Hollow horizontal strip-shaped adjustment openings (9) are provided at the fixed ends at both ends, so that the guide plate (3) can be adjusted and connected to the circular cutter (2) through the fixing structure of bolts and nuts.
6. The continuous cutting device as described in claim 3, characterized in that: The upper pressure plate (7) is an I-shaped structure, and each of the four corners is penetrated by a vertical fixing rod (10). Each fixing rod (10) on the upper surface of the upper pressure plate (7) is fitted with a downward pressure spring (11). The upper end of the downward pressure spring (11) is in close contact with the nut at the top of the fixing rod (10), so that the four corners of the upper pressure plate (7) are pressed tightly against the upper surface of the lower part of the upper pressure band (5) under the downward pressure of each downward pressure spring (11).
7. The continuous cutting device as described in claim 3, characterized in that: The lower support plate (8) is fixed at the center of the lower base plate (12). The two ends of the lower base plate (12) extend outward. The circular cutters (2) on each side are located between the upper and lower frame plates (13) on each side. The four corners of the upper and lower frame plates (13) on each side are fixedly connected by vertical support rods (14). The upper and lower ends of the cutter shaft (1) pass through the bearing seats fixed on the upper and lower frame plates (13) respectively. The drive device of the cutter shaft (1) is located above the upper frame plate (13).
8. The continuous cutting device as described in claim 7, characterized in that: The bottom plate (12) has multiple left and right blade adjustment holes (15) arranged along the length of the bottom plate (12) at both ends. The lower frame plate (13) is adjustablely connected to the bottom plate (12) by bolts and nuts passing through its body and the left and right blade adjustment holes (15).
9. The continuous cutting device as described in claim 3, characterized in that: The upper surface of the upper pressure plate (7) and the lower surface of the lower support plate (8) are respectively provided with guide grooves (16) arranged along the running direction of the upper pressing belt (5) and the lower conveyor belt (6). The rubber protrusions (17) set in the center of the inner ring of the upper pressing belt (5) and the lower conveyor belt (6) are respectively located in the guide grooves (16).
10. The continuous cutting device as described in claim 7, characterized in that: Vertical hollow adjustment plates (18) are fixed to the front and rear edges of the upper frame plate (13). The vertical adjustment holes of the hollow adjustment plates (18) are filled with adjustment bolts for fixing and connecting with the front and rear edges of the upper frame plate (13). The two ends of the guide plates (3) on each side are adjustablely connected to the bottom of the hollow adjustment plates (18) on the front and rear of each side.