Rotary meat carrying table type high-speed full-automatic slicing machine
By using a rotating meat-carrying platform structure and an interlaced transmission component, the problems of complex structure and low efficiency of existing slicers are solved, achieving efficient and low-cost slicing operations and reducing waste of tailings.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ANHUI HUALING KITCHEN EQUIP
- Filing Date
- 2026-02-28
- Publication Date
- 2026-04-17
AI Technical Summary
Existing slicers are complex in structure, inefficient, and costly, and also suffer from limited cutting speed and waste of raw materials.
It adopts a rotating meat-carrying platform structure, including components such as a fixed barrel ring, a rotating disc, a limiting bracket, and a push rod. The transmission and cutting components are designed in an alternating manner to achieve efficient rotating slicing.
It improves the working efficiency of the slicer, reduces manufacturing costs, reduces waste of tail material, and enhances the overall slicing efficiency.
Smart Images

Figure CN121867261A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of food machinery technology, and more specifically, to a rotary meat-carrying tabletop high-speed fully automatic slicer. Background Technology
[0002] With the improvement of people's living standards, meat slicers are widely used. However, existing slicers have the following drawbacks: 1. The meat-carrying platform for the meat pieces is a reciprocating motion, and the transmission structure driving the platform is mostly a crank-connecting rod-slider type. This results in a complex structure, including many parts such as a separate motor, reducer, crank-connecting rod mechanism, slider, round rail, square rail, slider bracket, meat-carrying platform, upper slide rod bracket, lower slide rod bracket, slide rod, baffle, meat block press, push rod, and push rod clamping assembly. This makes processing and assembly difficult and increases manufacturing costs. The crank-connecting rod-slider method inherently suffers from drawbacks such as reversing impact, limited operating speed, and low efficiency. It's adequate for moderate-volume cutting, but clearly unsuitable for applications requiring large-volume cutting. Changing the transmission ratio to increase cutting speed has limited effectiveness; otherwise, severe machine impact and wobbling occur. Furthermore, it can only cut one piece of meat at a time, resulting in low efficiency. Secondly, the thickness adjustment component has a complex structure, requiring high precision in component processing, making assembly difficult and increasing manufacturing costs. Thirdly, because the material needs to be controlled by a pressure block, a portion of leftover material remains after cutting, wasting ingredients and increasing operating costs. Currently, with the increasing popularity of chain restaurants and pre-prepared meals, the demand for high-efficiency food slicers is constantly rising. Against this backdrop, the development of high-efficiency food slicers is a market expectation, with a focus on solving the impact and vibration phenomena caused by the high speed of the meat-carrying platform. Summary of the Invention
[0003] The problem this invention aims to solve is to provide a high-speed, fully automatic rotating meat-carrying tabletop slicer. This slicer features a simple structure, stable operation, and the ability to run at high speeds, significantly improving machine efficiency. Furthermore, the thickness adjustment plate assembly in the slicer has a simple structure, fewer components, and lower precision requirements, thus greatly reducing manufacturing costs. In addition, it can slice all meat pieces completely, with virtually no or very little waste, saving raw materials.
[0004] This invention discloses a high-speed fully automatic rotating meat-carrying table slicing machine, which includes a frame, a transmission assembly, a cutting assembly, a thickness adjustment assembly, a rotating meat-carrying table assembly, and a fixed barrel ring. The fixed barrel ring is fixed on the table panel of the frame, and the rotating meat-carrying table assembly is located inside the fixed barrel ring, coaxial with the fixed barrel ring, and the two do not contact each other. The cutting assembly and the thickness adjustment assembly are both located outside the opening of the fixed barrel ring, and the transmission assembly is located below the frame, with its two ends connected to the cutting assembly and the rotating meat-carrying table assembly, respectively.
[0005] Furthermore, the cross-section of the fixed barrel ring is not a complete circle, with one section being a plane and an opening on the plane; the rotating meat loading platform assembly includes a rotating disc and two meat feeding units, which are obliquely symmetrical with respect to the rotation center line of the rotating disc; each meat feeding unit includes a limiting bracket, a push rod, a push spring, a push plate, and a reset handle; the rotating disc is located above the platform and connected to the transmission assembly. The rotating disc is composed of an oblong base plate and two upright rectangular plates, with the center of the oblong base plate being the rotation center. The limiting bracket is L-shaped, with its horizontal side fixed to the top of the rotating disc and its vertical side having a rectangular protrusion. The middle section of the push rod has a keyway, and the inner end of the keyway has an annular groove. The keyway of the middle section of the push rod mates with the rectangular protrusion of the limiting bracket. One end is equipped with a reset handle, and the other end mates with and is secured to the hole of the push plate. The push spring is sleeved on the outer circle of the push rod and is located between the vertical side of the limiting bracket and the push plate.
[0006] Furthermore, the annular groove of the booster rod is perpendicularly connected to and symmetrically arranged with the keyway.
[0007] Furthermore, each meat feeding unit also includes an L-shaped guide plate and a knurled nut. The horizontal side of the L-shaped guide plate is provided with a waist-shaped groove and is connected to the waist-shaped plate of the rotating disk through the knurled nut. The vertical side of the L-shaped guide plate is parallel to the inner side of the rectangular plate of the rotating disk.
[0008] Furthermore, the cutting assembly includes a blade holder, a blade shaft, and a cutting blade; the thickness adjustment assembly includes a thickness adjustment plate bracket and a thickness adjustment plate. The blade holder is fixed on the top of the worktable panel. The left and right sections of the blade shaft are fitted with the inner holes of the blade holder. The part of the blade shaft located inside the blade holder is connected to the transmission assembly. The slicing blade is connected to the right end of the blade shaft. A large pulley is mounted at the rear end of the blade shaft, and a cutting blade is mounted at the front end. The thickness adjustment plate bracket is connected to the fixed barrel ring. One side of the thickness adjustment plate is rotatably connected to the thickness adjustment plate bracket, and the other end is a free end located outside the opening of the fixed barrel ring. The slicing blade is located between the thickness adjustment plate and the opening of the fixed barrel ring. The axes of the slicing blade and the rotating meat loading platform assembly are perpendicularly intersecting, and they rotate at different speeds.
[0009] Furthermore, the shape of the free end of the thickness adjustment plate matches the slicing blade.
[0010] Furthermore, the thickness adjustment assembly also includes an adjusting bolt, a preload spring, a threaded pivot pin, and a thickness adjustment handle; the thickness adjustment plate bracket is fixed to the barrel wall in front of the opening of the fixed barrel ring, one side of the thickness adjustment plate is rotatably connected to the upper and lower plates of the bracket through upper and lower threaded pivot pins, the adjusting bolt is locked in the U-shaped opening of the horizontal plate of the thickness adjustment plate bracket, the preload spring is sleeved on the adjusting bolt, one end of the adjusting bolt is equipped with a thickness adjustment handle, and the other end is locked in the groove of the thickness adjustment plate.
[0011] Furthermore, the high-speed fully automatic slicing machine also includes a tongue plate, which extends forward and outward from the rear side of the fixed barrel ring plane opening, and matches the concave shape of the slicing blade and is slightly lower than the blade edge.
[0012] Furthermore, the bottom of the fixed barrel ring has four evenly distributed protrusions that correspond to the four annular short grooves on the tabletop.
[0013] Furthermore, the transmission mechanism includes a reducer, a main shaft, a small pulley, a central flange, a motor, a multi-ribbed belt, and a large pulley. The motor is horizontally fixed under the table panel with shafts at both ends. The small pulley is located on the left end of the motor shaft, and the large pulley is located on the cutter shaft. The multi-ribbed belt connects the small pulley and the large pulley. The right end of the motor is connected to the reducer. The central flange is fixed under the table panel. The lower end of the main shaft mates with the vertically upward output hole of the reducer, and its upper end mates with the central flange, passes through the table panel, and connects to the rotating disk body through the flange end.
[0014] The advantages of this high-speed fully automatic slicer are as follows: 1. Rotary meat loading platform assembly: 1. It consists of only a few parts, including a fixed ring, rotating disc, limit bracket, push rod, push spring, push plate, and reset handle. Its simple structure and convenient assembly greatly reduce manufacturing costs. 2. It operates smoothly without the impact of reciprocating meat loading platforms switching directions at both ends, and can operate at higher speeds, significantly improving efficiency. 3. It can slice two meat rolls in one rotation, doubling efficiency. The overall efficiency is no less than 2.5 times that of traditional models, making it a highly efficient product. 2. The thickness adjustment plate assembly has a simple structure, fewer components, and lower processing precision requirements, thus greatly reducing manufacturing costs. 3. It can slice all meat pieces completely, with virtually no or very little waste, which is also significant in terms of saving raw materials. Attached Figure Description
[0015] Figure 1 This invention relates to a high-speed fully automatic slicer with a three-dimensional structure. Figure 1 .
[0016] Figure 2 This invention relates to a high-speed fully automatic slicer with a three-dimensional structure. Figure 2 .
[0017] Figure 3 This is a top view of the high-speed fully automatic slicer of the present invention.
[0018] Figure 4 It is along Figure 3 A cross-sectional view along line AA in the middle.
[0019] Figure 5 It is along Figure 3 A cross-sectional view along the BB line.
[0020] Figure 6 This is a schematic diagram of the rotating meat loading platform assembly.
[0021] Figure 7 This is a schematic diagram of the fixed barrel ring and the thickness adjustment component. Detailed Implementation
[0022] To further understand the content of this invention, the invention will be described in detail below with reference to the accompanying drawings and embodiments.
[0023] Example 1 from Figure 1 , Figure 2 , Figure 3 As can be seen, the present invention discloses a high-speed fully automatic rotating meat-carrying table slicing machine, which includes a frame 100, a transmission assembly, a cutting assembly 200, a thickness adjustment assembly 300, a rotating meat-carrying table assembly 400, and a fixed barrel ring 501. The fixed barrel ring 501 is fixed on the table panel 101 of the frame 100. The rotating meat-carrying table assembly 400 is located inside the fixed barrel ring 501, coaxial with the fixed barrel ring 501, and the two do not contact each other. The cutting assembly 200 and the thickness adjustment assembly 300 are both located outside the opening of the fixed barrel ring 501. The transmission assembly is located below the frame 100, and its two ends are respectively connected to the cutting assembly 200 and the rotating meat-carrying table assembly 400.
[0024] The high-speed fully automatic slicer of the present invention uses a frame 100 as the basic body to support the various components. The components are installed on the upper and lower parts of the table panel 101. Both ends of the transmission component have outputs. One end is connected to the rotating meat loading table component 400 to realize the rotational feeding of meat blocks, and the other end is connected to the cutting component 200 to realize the cutting of meat blocks. The thickness adjustment component 300 is used to adjust the thickness of the meat slices.
[0025] The advantages of the high-speed fully automatic slicer of the present invention are: the rotating meat loading platform assembly 400 moves in a circular motion, its operation is stable, there is no impact from the reciprocating meat loading platform changing direction at both ends, and it can operate at a high speed, which greatly improves the working efficiency of the machine.
[0026] Example 2 from Figure 1 , Figure 2 , Figure 3 , Figure 6As can be seen, the present invention discloses a rotating meat-carrying tabletop high-speed fully automatic slicer: the cross-section of the fixed barrel ring 501 is not a complete circle, with a section being a plane and an opening on the plane; the rotating meat-carrying table assembly 400 includes a rotating disc body 401 and two meat-carrying feeding units, the two meat-carrying feeding units being obliquely symmetrical with respect to the rotation center line of the rotating disc body 401; each meat-carrying feeding unit includes a limiting bracket 402, a push rod 405, a push spring 406, a push plate 407, and a reset handle 408; the rotating disc body 401 is located above the tabletop 101 and connected to the transmission assembly, the rotating disc body 401 having an oblong base The plate and two upright rectangular plates at the front and back form a whole. The center of the waist-shaped base plate is the rotation center. The limiting bracket 402 is L-shaped. Its horizontal side is fixed on the top of the rotating disk 401. The hole on its vertical side is provided with a rectangular protrusion. The middle section of the push rod 405 is provided with a keyway. The inner end of the keyway is provided with an annular groove. The keyway of the middle section of the push rod 405 cooperates with the rectangular protrusion of the limiting bracket 402. One end is equipped with a reset handle 408. The other end cooperates with the hole of the push plate 407 and is fastened. The push spring 406 is sleeved on the outer circle of the push rod 405 and is located between the vertical side of the limiting bracket 402 and the push plate 407.
[0027] Among them, the annular groove of the booster rod 405 is perpendicular to and symmetrically arranged with the keyway.
[0028] The advantages of the rotating meat loading platform assembly 400 are: it only has a few parts, including a fixed barrel ring, a rotating disc, a limit bracket, a push rod, a push spring, a push plate, and a reset handle. The structure is simple, the processing and assembly are convenient, and the manufacturing cost is greatly reduced. It can cut two meat rolls in one rotation, which doubles the efficiency. The overall efficiency is no less than 2.5 times that of traditional models, making it a high-efficiency product.
[0029] In the rotating meat loading platform assembly 400: each of the two oblique angles of the waist-shaped base plate of the rotating disc 401 is a meat loading area, so two long rectangular meat blocks 6 can be placed longitudinally in a staggered manner at one time. The meat block 6 is placed in the meat loading area along the inner edge of the rectangular plate of the rotating disc 401, with one end in contact with the inner wall of the fixed barrel ring 501 and the other end in contact with the push plate 407, which provides a pushing effect on the meat block. When the rotating meat loading platform assembly 400 rotates: centrifugal force keeps the meat block in contact with the inner wall of the fixed barrel ring. At the beginning of cutting, the distance between the center of mass of the meat block and the center of rotation is relatively close and the centrifugal force is small. The meat block needs to be pushed by the push spring to superimpose the centrifugal force to achieve the feeding of the meat block along the inner wall of the rectangular plate, thereby ensuring the stability of the cutting process. As cutting progresses, the center of mass of the meat block moves forward and the distance between it and the center of rotation increases, and the centrifugal force increases. The meat block gradually detaches from the push part and no longer needs the push force, so it can move along the inner wall of the rectangular plate to achieve feeding. In summary, the rotating meat loading platform assembly serves as both a meat loading mechanism and a feeding mechanism, thus having a dual function.
[0030] The transmission component drives the rotating disc 401 to rotate. When the meat block comes to the opening of the fixed barrel ring, it extends out of the opening. The cutting component set at this point cuts the meat block. Since there are two meat blocks on the rotating meat loading platform component, two mutton rolls can be cut out after the rotating meat loading platform component rotates once, which greatly improves the cutting efficiency.
[0031] Before inserting the meat chunk 6, first align the keyway of the push rod 405 with the rectangular protrusion of the limiting bracket 402. Then pull the push rod 405 until the center of its annular groove aligns with the rectangular protrusion of the limiting bracket 402. At this point, the distance between the push plate 407 and the limiting bracket 402 is minimal, and the push spring 406 is compressed to its shortest length. Next, rotate the push rod 405 by an angle using the reset handle 408, so that both sides of the annular groove contact the rectangular protrusion of the limiting bracket 402, locking the push rod 405 in place. It cannot move back and forth; then, two pieces of meat are loaded: the two pieces of meat are placed on the waist-shaped base plate of the turntable body 401 and respectively against the inner walls of the front and rear rectangular plates, ensuring that one end of the meat pieces contacts the inner wall of the fixed barrel ring 501; after loading the meat pieces, the push rod 405 is rotated by the reset handle 408 so that the center of the annular groove, i.e., the keyway, corresponds to the rectangular protrusion of the limit bracket 402, unlocking the push rod 405 to release the push spring 406, which pushes the push plate 407 towards the meat pieces, thus providing a pushing effect. Since the meat pieces 6 do not need to be pressed before feeding, they can be completely cut, with little or no waste, which is of positive significance in terms of saving raw materials.
[0032] Example 3 from Figure 1 , Figure 2 , Figure 3 , Figure 6 As can be seen, the present invention provides a rotating meat-carrying tabletop high-speed fully automatic slicer: each meat-carrying feeding unit further includes an L-shaped guide plate 403 and a knurled nut 404. The horizontal side of the L-shaped guide plate 403 is provided with a waist-shaped groove and is connected to the waist-shaped plate of the rotating disk body 401 through the knurled nut 404. The vertical side of the L-shaped guide plate 403 is parallel to the inner side of the rectangular plate of the rotating disk body 401.
[0033] The L-shaped guide plate 403 positions the meat block in the width direction, thereby ensuring that the meat block moves along the inner wall of the rectangular plate of the rotating disc 401 to achieve feeding. The waist-shaped groove allows the guide plate 403 to move laterally to adapt to different widths of the meat block cross-sectional area.
[0034] Example 4 from Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 7As can be seen, the present invention discloses a rotary meat-carrying tabletop high-speed fully automatic slicing machine: the cutting assembly 200 includes a blade holder 201, a blade shaft 202, and a cutting blade 203; the thickness adjustment assembly includes a thickness adjustment plate support 302 and a thickness adjustment plate 303; the blade holder 201 is fixed on the tabletop 101; the left and right sections of the blade shaft 202 are fitted with the inner holes of the blade holder 201; the portion of the blade shaft 202 located inside the blade holder 201 is connected to the transmission assembly; and the slicing blade 203 is connected to the right end of the blade shaft 202; the blade shaft... The rear end of 202 is equipped with a large pulley 207 and the front end is equipped with a cutting blade 203. The thickness adjustment plate bracket 302 is connected to the fixed barrel ring 501. One side of the thickness adjustment plate 303 is rotatably connected to the thickness adjustment plate bracket 302, and the other end is a free end located outside the opening of the fixed barrel ring 501. The slicing blade 203 is located between the thickness adjustment plate 303 and the opening of the fixed barrel ring 501. The axes of the slicing blade 203 and the rotating meat loading platform assembly 400 are perpendicularly intersecting, and the two rotate at different speeds.
[0035] The shape of the free end of the thickness adjustment plate 303 matches that of the slicing blade 203. The thickness adjustment plate 303 serves as the size-fixing plate in a conventional slicing machine.
[0036] The transmission assembly drives the cutting blade 203 to rotate. When the meat block rotates to the opening of the fixed barrel ring 501, the meat block will contact the thickness adjustment plate 303. At this time, the rotating slicing blade 203 cuts the meat. Since there are two meat blocks on the rotating meat loading platform assembly, two mutton rolls can be cut out after one rotation of the meat loading platform assembly.
[0037] Example 5 from Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 7 As can be seen, the present invention discloses a rotary meat-carrying tabletop high-speed fully automatic slicer: the thickness adjustment component further includes an adjusting bolt 304, a pre-tightening spring 305, a threaded pivot pin 306, and a thickness adjustment handle 301; the thickness adjustment plate bracket 302 is fixed on the barrel wall on the front side of the opening of the fixed barrel ring 501, one side of the thickness adjustment plate 303 is rotatably connected to the upper and lower plates of the bracket 302 through the upper and lower threaded pivot pins 306, the adjusting bolt 304 is locked in the U-shaped opening of the horizontal plate of the thickness adjustment plate bracket 302, the pre-tightening spring 305 is sleeved on the adjusting bolt 304, one end of the adjusting bolt 304 is equipped with the thickness adjustment handle 301, and the other end is locked in the groove of the thickness adjustment plate 303.
[0038] The threaded pivot pin 306 forms the fulcrum for vertical rotation: rotating the thickness adjustment handle 301 causes the adjusting bolt 304 to rotate the thickness adjustment plate 303 around the threaded pivot pin 306, adjusting its opening and closing degree relative to the slicing blade 203, thus adjusting the slice thickness. The preload spring 305 ensures that the thickness adjustment plate 303 remains stable at different angles.
[0039] Among them, the adjusting bolt 304 preferably has a fine thread, and the root of the adjusting bolt 304 has a T-shaped spherical surface.
[0040] The T-shaped spherical surface at the root of the adjusting bolt 304 reduces damage to the adjusting plate 303.
[0041] The thickness adjustment component in the slicer of this invention has fewer components and lower processing precision requirements, thus greatly reducing manufacturing costs.
[0042] Example 6 from Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 7 It is understood that the present invention provides a rotating meat-carrying tabletop high-speed fully automatic slicer: the high-speed fully automatic slicer also includes a tongue plate 502, and a tongue plate 502 extends forward and outward from the rear side of the plane opening of the fixed barrel ring 501, which matches the concave shape of the slicing blade 203 and is slightly lower than the blade edge.
[0043] The tongue plate 502 serves as a guide: when the remaining meat piece after cutting continues to rotate, its cut surface rotates along the tongue plate 502 to the inner ring of the fixed barrel 501. At the same time, the tongue plate 502 also serves as a blade guard plate in a conventional slicer.
[0044] The flat part of the fixed barrel ring 501 is the cutting area. The front and rear sides of the opening are respectively equipped with a thickness adjustment plate assembly for adjusting the slice thickness and an arc-shaped tongue that acts as a blade guard.
[0045] Example 7 from Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 As can be seen, the present invention provides a rotating meat-carrying tabletop high-speed fully automatic slicer: the bottom of the fixed barrel ring 501 has four evenly distributed protrusions, which correspond to the four annular short grooves on the tabletop 101.
[0046] The connection between the fixed barrel ring 501 and the tabletop 101 is reliable while also ensuring easy disassembly.
[0047] Example 8 from Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5As can be seen, the present invention discloses a rotary meat-carrying tabletop high-speed fully automatic slicer: the transmission mechanism includes a reducer 111, a main shaft 112, a small pulley 113, a central flange 114, a motor 115, a multi-ribbed belt 116, and a large pulley 117. The motor 115 is horizontally fixedly installed under the tabletop 101 with shafts at both ends. The small pulley 113 is located on the left end shaft of the motor 115, and the large pulley 117 is located on the cutter shaft 202. The multi-ribbed belt 116 connects the small pulley 113 and the large pulley 117. The right end of the motor 115 is connected to the reducer 111. The central flange 114 is fixed under the tabletop 101. The lower end of the main shaft 112 is engaged with the vertically upward output hole of the reducer 111, and its upper end is engaged with the central flange 114, passing through the tabletop 101 and then connected to the rotating disc 401 through the flange end.
[0048] When motor 115 operates, its left output shaft transmits power to the large pulley via a small pulley and a multi-ribbed belt, driving the cutter shaft 202 and the slicing blade 203 to rotate. Figure 2 As can be seen, the slicing blade 203 rotates in the direction of the arrow to achieve cutting; the motor 115 works, and its right output shaft transmits power to the rotating disk 401 through the reducer 111 and the main shaft 112, driving the rotating disk 401 and the booster assembly on it to rotate. The booster assembly provides assistance, causing the slicing blade 203 to cut the meat piece. Figure 3 It can be seen that the rotating disk 401 rotates clockwise to feed the material; the clockwise rotation of the slicing blade 203 and the clockwise rotation of the rotating disk 401 work together to achieve cutting.
[0049] The slicing blade 203 and the rotating meat loading platform assembly 400 have their axes perpendicularly intersecting, and they rotate at different speeds. The rotation direction of the worm gear pair of the reducer 111 is selected to match the rotation direction of the two.
[0050] By changing the speed ratio of the reducer 111, different rotational speeds of the rotating meat loading platform assembly 400 can be obtained.
[0051] The advantages of this high-speed fully automatic slicer are as follows: 1. Rotary meat loading platform assembly: 1. It consists of only a few parts, including a fixed ring, rotating disc, limit bracket, push rod, push spring, push plate, and reset handle. Its simple structure and convenient assembly greatly reduce manufacturing costs. 2. It operates smoothly without the impact of reciprocating meat loading platforms switching directions at both ends, and can operate at higher speeds, significantly improving efficiency. 3. It can slice two meat rolls in one rotation, doubling efficiency. The overall efficiency is no less than 2.5 times that of traditional models, making it a highly efficient product. 2. The thickness adjustment plate assembly has a simple structure, fewer components, and lower processing precision requirements, thus greatly reducing manufacturing costs. 3. It can slice all meat pieces completely, with virtually no or very little waste, which is also significant in terms of saving raw materials.
[0052] In summary, the high-speed fully automatic slicer of this invention has a simple structure, is easy to operate, runs smoothly and at high speed, and has excellent noise reduction. It significantly reduces manufacturing costs and greatly improves overall efficiency. The meat roll efficiency is equivalent to 2.5 times that of ordinary fully automatic slicers. It is particularly suitable for hot pot restaurants, especially local chain hot pot restaurants and the pre-prepared food industry. It is a high-performance, cost-effective product needed by catering and small food processing enterprises.
[0053] This embodiment is only a general description and is not restrictive. The accompanying drawings are only one embodiment of the present invention, and the actual structure is not limited thereto. Therefore, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A rotary table high speed fully automatic slicing machine comprising a frame (100), characterized in that: It also includes a transmission assembly, a cutting assembly (200), a thickness adjustment assembly (300), a rotating meat loading platform assembly (400), and a fixed barrel ring (501); the fixed barrel ring (501) is fixed on the platform (101) of the frame (100), the rotating meat loading platform assembly (400) is located inside the fixed barrel ring (501), coaxial with the fixed barrel ring (501), and the two do not contact each other; the cutting assembly (200) and the thickness adjustment assembly (300) are both located outside the opening of the fixed barrel ring (501), and the transmission assembly is located below the frame (100), with its two ends connected to the cutting assembly (200) and the rotating meat loading platform assembly (400) respectively.
2. The high-speed fully automatic slicer according to claim 1, characterized in that: The cross-section of the fixed barrel ring (501) is not a complete circle, with a section being a plane and an opening on the plane; the rotating meat loading platform assembly (400) includes a rotating disc body (401) and two meat feeding units, which are obliquely symmetrical with respect to the rotation center line of the rotating disc body (401); each meat feeding unit includes a limiting bracket (402), a push rod (405), a push spring (406), a push plate (407), and a reset handle (408); the rotating disc body (401) is located above the platform (101) and connected to the transmission assembly, and the rotating disc body (401) consists of an oblong base plate and two upright rectangular sections at the front and rear. The plates are assembled as a whole. The center of the waist-shaped base plate is the rotation center. The limiting bracket (402) is L-shaped. Its horizontal side is fixed on the top of the rotating disk (401). The hole on its vertical side is provided with a rectangular protrusion. The middle section of the push rod (405) is provided with a keyway. The inner end of the keyway is provided with an annular groove. The keyway of the middle section of the push rod (405) cooperates with the rectangular protrusion of the limiting bracket (402). One end is equipped with a reset handle (408). The other end cooperates with the hole of the push plate (407) and is fastened. The push spring (406) is sleeved on the outer circle of the push rod (405) and is located between the vertical side of the limiting bracket (402) and the push plate (407).
3. A high-speed fully automatic slicer according to claim 2, characterized in that: The annular groove of the booster rod (405) is perpendicularly connected to the keyway and symmetrically arranged.
4. A high-speed fully automatic slicer according to claim 2, characterized in that: Each meat-carrying feeding unit also includes an L-shaped guide plate (403) and a knurled nut (404). The horizontal side of the L-shaped guide plate (403) is provided with a waist-shaped groove and is connected to the waist-shaped plate of the rotating disk body (401) through the knurled nut (404). The vertical side of the L-shaped guide plate (403) is parallel to the inner side of the rectangular plate of the rotating disk body (401).
5. A high-speed fully automatic slicer according to claim 2, characterized in that: The cutting assembly (200) includes a tool holder (201), a tool shaft (202), and a cutting blade (203). The thickness adjustment assembly includes a thickness adjustment plate bracket (302) and a thickness adjustment plate (303). The tool holder 201 is fixed on the table panel (101). The left and right sections of the tool shaft (202) are fitted with the inner holes of the tool holder (201). The part of the tool shaft (202) located inside the tool holder (201) is connected to the transmission assembly. The slicing blade (203) is connected to the right end of the tool shaft (202). The rear end of the tool shaft (202) is equipped with a large... The belt pulley (207) is equipped with a cutting blade (203) at the front end. The thickness adjustment plate bracket (302) is connected to the fixed barrel ring (501). One side of the thickness adjustment plate (303) is rotatably connected to the thickness adjustment plate bracket (302), and the other end is a free end located outside the opening of the fixed barrel ring (501). The slicing blade (203) is located between the opening of the thickness adjustment plate (303) and the fixed barrel ring (501). The axes of the slicing blade (203) and the rotating meat loading platform assembly (400) are perpendicularly intersecting, and the two rotate at different speeds.
6. A high-speed fully automatic slicer according to claim 5, characterized in that: The shape of the free end of the thickness adjustment plate (303) matches the slicing blade (203).
7. A high-speed fully automatic slicer according to claim 5, characterized in that: The thickness adjustment assembly also includes an adjusting bolt (304), a preload spring (305), a threaded pin (306), and a thickness adjustment handle (301). The thickness adjustment plate bracket (302) is fixed on the barrel wall in front of the opening of the fixed barrel ring (501). One side of the thickness adjustment plate (303) is rotatably connected to the upper and lower plates of the bracket (302) through the upper and lower threaded pins (306). The adjusting bolt (304) is inserted into the U-shaped opening of the horizontal plate of the thickness adjustment plate bracket (302). The preload spring (305) is sleeved on the adjusting bolt (304). One end of the adjusting bolt (304) is equipped with a thickness adjustment handle (301), and the other end is inserted into the groove of the thickness adjustment plate (303).
8. A high-speed fully automatic slicer according to claim 1, characterized in that: The high-speed fully automatic slicer also includes a tongue plate (502), which extends forward and outward from the rear side of the flat opening of the fixed barrel ring (501), and matches the concave shape of the slicing blade (203) and is slightly lower than the blade edge.
9. A high-speed fully automatic slicer according to claim 1, characterized in that: The bottom of the fixed barrel ring (501) has four evenly distributed protrusions, which correspond to the four annular short grooves on the table panel (101).
10. A high-speed fully automatic slicer according to claim 1, characterized in that: The transmission mechanism includes a reducer (111), a main shaft (112), a small pulley (113), a central flange (114), a motor (115), a multi-ribbed belt (116), and a large pulley (117). The motor (115) is horizontally fixed under the table panel (101) with shafts at both ends. The small pulley (113) is located on the left end of the motor (115) shaft, and the large pulley (117) is located on the cutter shaft (202). The multi-ribbed belt (116) connects the small pulley (113) and the large pulley (117). The right end of the motor (115) is connected to the reducer (111). The central flange (114) is fixed under the table panel (101). The lower end of the main shaft (112) is engaged with the vertically upward output hole of the reducer (111), and its upper end is engaged with the central flange (114) and passes through the table panel (101) before being connected to the rotating disk (401) through the flange end.