A detachable cabinet type mincing machine
Patent Information
- Application Number
- CN202522234321.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-22
AI Technical Summary
[0004]为解决现有技术中存在的清洗不便、维护困难、生产效率低等问题,本实用新型提供一种可拆卸式柜式绞切机,通过模块化设计实现绞肉总成与切片总成的独立驱动与快速拆装,提升设备的卫生性能、操作便利性和生产效率
[0024] (1) By designing the slicing assembly as a "pull-out and detachable" unit slicing component, and with the disassembly and assembly parts and locking nuts at the front ends of the first and second rotating shafts, users can disassemble the entire slicing module in tens of seconds without the need for tools. This design completely solves the problems of cumbersome disassembly and assembly, numerous dead corners, and incomplete cleaning of traditional slicer blades, greatly improving the hygiene performance of the equipment, effectively preventing bacterial growth, and meeting the strict hygiene standards of the food processing industry.
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Figure CN224747389U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of meat processing equipment, and more specifically, it relates to a detachable cabinet-type meat chopper. Background Technology
[0002] In industries such as catering, meat processing, and food production, the pre-processing of meat raw materials is a crucial step. Traditional methods rely on manual cutting or the use of single-function processing equipment, resulting in high labor intensity, low production efficiency, and difficulties in ensuring hygiene. With the development of automated and integrated equipment, mechanical devices with meat grinding or slicing functions have emerged on the market. However, most of these devices are single-function, and users who need to complete both grinding and slicing processes simultaneously must equip themselves with multiple devices. This not only increases equipment investment costs and space requirements but also leads to cumbersome operation, inconvenient material transfer, and the risk of cross-contamination.
[0003] While some existing modular meat processing equipment attempts to integrate multiple functions, significant shortcomings remain in structural design, transmission efficiency, and ease of use and maintenance. For example, most existing slicing devices employ an integrated blade disc structure, with a high degree of integration between the blade and transmission components, making daily cleaning and maintenance inconvenient. When it is necessary to replace slicing blades of different thicknesses, the operation is complex and time-consuming, severely impacting the equipment's flexibility and work efficiency. Utility Model Content
[0004] To address the problems of inconvenient cleaning, difficult maintenance, and low production efficiency in existing technologies, this utility model provides a detachable cabinet-type meat grinder. Through modular design, it enables independent driving and quick assembly / disassembly of the meat grinder assembly and the slicing assembly, thereby improving the hygiene performance, ease of operation, and production efficiency of the equipment.
[0005] The purpose and effectiveness of this utility model of a detachable cabinet-type slicing machine are achieved by the following specific technical means:
[0006] A detachable cabinet-type slicing machine includes:
[0007] A hollow frame, the upper part of which is provided with an operating table, and the operating table is respectively provided with a first inlet and a second inlet with a cover plate;
[0008] The meat grinder assembly and slicer assembly, which are built into the hollow frame, are secured by the first bracket;
[0009] The first and second drive components, which are built into the hollow frame, are fixed by the second bracket; the first drive component is located below the slicing assembly and drives the slicing assembly to work by means of a pulley; the second drive component is located below the meat grinder assembly and drives the meat grinder assembly to work by means of a pulley.
[0010] The front side of the hollow frame has an opening at the front end of the slicing assembly;
[0011] The slicing assembly includes
[0012] A transmission box is fixedly installed inside the hollow frame; the transmission box is equipped with a first gear and a second gear, which mesh with the second gear.
[0013] The first and second rotating shafts rotate in parallel through the transmission box; one end of the first rotating shaft passes through the rear end of the transmission box and is fitted with a second pulley, and the other end passes through the first gear and exits the transmission box; the front end of the second rotating shaft passes through the second gear and exits the transmission box, forming a disassembly and assembly part with the exit section of the first rotating shaft.
[0014] The unit slicing assembly is detachably mounted on the disassembly and assembly section, and the bottom of the unit slicing assembly is connected to a guide plate that communicates with the outside of the hollow frame.
[0015] Tighten the locking nut to the front end of the first and second rotating shafts to limit the movement of the unit slice assembly.
[0016] Furthermore, the unit slicing assembly includes a mounting frame, two parallel tubular shafts rotatably disposed inside the mounting frame, a slicing blade fixedly sleeved on the tubular shafts, limiters at both ends of the tubular shafts, and a comb blade fixedly mounted on the mounting frame via a support rod.
[0017] Furthermore, the mounting frame is composed of two wall panels and multiple tie rods with nuts; a bearing is provided at the connection between the tube shaft and the wall panel; the upper edges of the two wall panels are provided with snap-fit grooves facing each other; the support rod is fitted into the snap-fit grooves.
[0018] Furthermore, the meat grinder assembly includes a machine body, which is a hollow cylindrical structure with a feeding port on its upper side; a perforated plate is embedded in the front end of the machine body, and a machine head is detachably sleeved on the front end of the machine body; an auger is rotatably disposed in the machine body, and a reamer is sleeved on the front end of the auger via a square shaft; the other end of the square shaft is rotatably inserted into the machine head; the diameter of the central shaft of the auger gradually increases from the tail to the head; and a drive shaft is rotatably disposed in the machine body, with its front end connected to the tail of the auger, and its rear end extending out of the machine body and sleeved on a first pulley.
[0019] Furthermore, the transmission ratio between the first pulley and the second drive component is 65:280; the transmission ratio between the second pulley and the first drive component is 65:180.
[0020] Furthermore, the bottom of the hollow frame is equipped with a set of wheels.
[0021] Furthermore, the bottom sidewall of the hollow frame is provided with a group of heat dissipation holes.
[0022] Furthermore, the hollow frame has handle grooves on its side walls.
[0023] Compared with the prior art, the present invention has the following beneficial effects:
[0024] (1) By designing the slicing assembly as a "pull-out and detachable" unit slicing component, and with the disassembly and assembly parts and locking nuts at the front ends of the first and second rotating shafts, users can disassemble the entire slicing module in tens of seconds without the need for tools. This design completely solves the problems of cumbersome disassembly and assembly, numerous dead corners, and incomplete cleaning of traditional slicer blades, greatly improving the hygiene performance of the equipment, effectively preventing bacterial growth, and meeting the strict hygiene standards of the food processing industry.
[0025] (2) The unit slicing component adopts a modular design, which allows users to quickly replace the pre-installed components with different cutting tools according to different slicing thickness requirements, achieving "ready to use after replacement", significantly improving production efficiency and equipment usage flexibility. At the same time, the comb blade is embedded in the snap-fit groove of the wall panel through the support rod, making disassembly and assembly equally simple and convenient for individual cleaning or replacement.
[0026] (3) The meat grinder assembly, combined with the auger with a gradually changing central shaft diameter, increases the feed rate while improving the material propulsion and extrusion effect, making the meat grinding process smoother and the output uniform and delicate, significantly improving the production efficiency per unit time. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of the shredder;
[0028] Figure 2 This is a schematic diagram of the internal structure of a shredder;
[0029] Figure 3 This is a schematic diagram of the meat grinder assembly.
[0030] Figure 4 This is a schematic diagram of the internal structure of the meat grinder assembly;
[0031] Figure 5 This is a schematic diagram of the slice assembly structure;
[0032] Figure 6 This is a schematic diagram of the exploded structure of the sliced assembly;
[0033] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0034] Hollow frame 1, operating table 2, second inlet 22, first inlet 21, opening 23, slicing assembly 3, unit slicing component 31, comb blade 37, support rod 3701, transmission box 32, first gear 3201, second gear 3202, second pulley 33, locking nut 34, first rotating shaft 3501, second rotating shaft 3502, mounting frame 36, wall panel 3601, tie rod 3602, bearing 3603, clamp 3604 slot, 38 tube shaft, 3801 slicing blade, 3802 limiting component, 4 meat grinder assembly, 41 machine body, 4101 feeding port, 43 machine head, 44 perforated plate, 45 drive shaft, 46 auger, 47 square shaft, 48 reamer, 42 first pulley, 15 first bracket, 14 second bracket, 51 first drive component, 52 second drive component, 16 guide plate, 11 traveling wheel set, 12 heat dissipation hole set, 13 handle slot. Detailed Implementation
[0035] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0036] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0037] Example:
[0038] like Figures 1-6 As shown, a detachable cabinet-type meat grinder has a hollow stainless steel frame 1 as its main body, with an integrated operating table 2 on top. The operating table 2 has two oil inlets with flip-up covers: a first inlet 21 on the left for feeding meat to be ground, and a second inlet 22 on the right for feeding meat to be sliced. This dual-inlet design separates the meat grinding and slicing functions, avoiding cross-contamination and improving operational safety. An opening 23 is provided on the front side of the hollow frame 1 at the corresponding position of the slicing assembly 3, facilitating replacement and maintenance of the slicing assembly 3. Additionally, a guide plate 16 is provided on the front of the hollow frame 1, through which the sliced material is smoothly discharged into an external container.
[0039] Inside the hollow frame 1, the slicing assembly 3 and the meat grinding assembly 4 are fixedly mounted via the first bracket 15, arranged side by side. The second bracket 14 is used to fix the first drive component 51 and the second drive component 52, which are located below the slicing assembly and the meat grinding assembly, respectively. Both the first drive component 51 and the second drive component 52 are three-phase asynchronous motors, which independently drive their respective functional modules via belt pulley transmission, enabling parallel operation without interference or individual use, resulting in energy saving and high efficiency.
[0040] like Figures 5-6 As shown, the core of the slicing assembly 3 is the transmission box 32 fixed inside the frame. The box contains a first gear 3201 and a second gear 3202 that mesh with each other, ensuring that the two output shafts rotate synchronously in opposite directions. The first shaft 3501 and the second shaft 3502 pass parallel through the transmission box 32, with the rear end of the first shaft 3501 extending out of the frame and connecting to the second pulley 33 to receive power from the first drive component 51. The front ends of the two shafts extend from the front side of the transmission box 32, forming a "disassembly / removal section" for installation.
[0041] The unit slicing assembly 31 is an independent module that can be pulled out and disassembled as a whole. It includes a mounting frame 36 formed by two stainless steel wall panels 3601 and multiple nut-tethered rods 3602 connected by threads. This assembly structure facilitates complete disassembly and cleaning when needed. Two parallel tube shafts 38 are rotatably supported between the two wall panels 3601 via bearings 3603. Each tube shaft 38 is fixedly fitted with a stainless steel slicing blade 3801 with sharp edges to achieve uniform slicing. Limiting elements 3802 are provided at both ends of the tube shafts 38 to prevent material deviation.
[0042] The comb 37 is fitted into the snap-fit groove 3604 on the upper edge of the wall panel 3601 via a metal support rod 3701. The structure is stable and easy to assemble and disassemble, making it convenient to clean up the sticky material fibers.
[0043] In use, the unit slicing assembly 31 is horizontally pushed into the opening 23 on the front side of the frame, so that the inner ends of the two tube shafts 38 are respectively fitted onto the outer ends of the first rotating shaft 3501 and the second rotating shaft 3502 to achieve power transmission. Then, the locking nut 34 is tightened on the front end of the two rotating shafts to axially limit the entire assembly and prevent loosening during operation. The push-in and tightening operation is simple and quick, and can be completed by ordinary users without tools, achieving the beneficial effects of rapid assembly and disassembly and thorough cleaning, greatly improving the hygiene performance and maintenance efficiency of the equipment.
[0044] like Figures 3-4As shown, the meat grinder assembly 4 includes a cylindrical body 41 made of stainless steel, with a large-sized feeding port 4101 at the top, which is significantly larger than the feeding port of traditional models, greatly improving feeding efficiency and reducing clogging. A perforated stainless steel plate 44 is embedded in the front end of the body 41 to control the coarseness of the ground meat; the front end is detachably fitted with a machine head 43, which is connected by a snap or thread for easy disassembly and cleaning.
[0045] The machine body 41 houses a rotatable auger 46, the tail of which is connected to a drive shaft 45. The rear end of the drive shaft 45 extends out of the machine body and connects to a first pulley 42, receiving power from the second drive component 52. The diameter of the auger 46's central shaft gradually increases from the tail to the head, forming a gradient spiral structure. This effectively enhances the compression and propulsion of the material, making the minced meat more delicate and uniform, and improving the quality and efficiency of mincing meat.
[0046] The front end of the auger 46 is connected to the reamer 48 via a square shaft 47. The reamer 48 is located inside the machine head 43 and cooperates with the orifice plate 44 to achieve cutting. The square shaft 47 is rotatably inserted into the machine head 43 to ensure stable power transmission.
[0047] This solution employs a belt pulley reduction transmission. The transmission ratio between the first belt pulley 42 and the second drive component 52 is 65:280, and the transmission ratio between the second belt pulley 33 and the first drive component 51 is 65:180. This transmission ratio combination has been verified through actual use. It ensures high torque during meat grinding to meet the processing requirements of large pieces of meat, while maintaining a moderate slicing speed to ensure flat and unbroken slices, thus balancing high production capacity and operational stability.
[0048] To enhance the mobility and adaptability of the equipment, the bottom of the hollow frame 1 is equipped with a set of braked wheels 11, facilitating flexible movement and positioning in kitchens, stalls, and other similar locations. Handle grooves 13 are provided on the side walls of the frame for easy push-pull operation. The bottom side wall also features a heat dissipation perforation group 12, composed of multiple strip-shaped holes, forming a convection channel to effectively dissipate the heat generated by the generator and transmission components during operation, preventing overheating and ensuring reliable continuous operation over extended periods.
[0049] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A detachable cabinet-type slicing machine, characterized in that, include: A hollow frame (1) is provided with an operating table (2) on its upper part. The operating table (2) has a first inlet (21) and a second inlet (22) with a cover plate. The meat grinder assembly (4) and the slicer assembly (3) are fixed inside the hollow frame (1) by the first bracket (15). The first drive unit (51) and the second drive unit (52) built into the hollow frame (1) are fixed by the second bracket (14); the first drive unit (51) is located below the slicing assembly (3) and drives the slicing assembly (3) to work by means of a pulley; the second drive unit (52) is located below the meat grinding assembly (4) and drives the meat grinding assembly (4) to work by means of a pulley. The front side of the hollow frame (1) is provided with an opening (23) at the front end of the slicing assembly (3). The slice assembly (3) includes The transmission box (32) is fixedly installed inside the hollow frame (1); the transmission box (32) is provided with a first gear (3201) and a second gear (3202), and the first gear (3201) meshes with the second gear (3202); A first rotating shaft (3501) and a second rotating shaft (3502) rotate parallel to each other through the transmission box (32); one end of the first rotating shaft (3501) passes through the rear end of the transmission box (32) and is fitted with a second pulley (33), and the other end passes through the first gear (3201) and passes through the transmission box (32); the front end of the second rotating shaft (3502) passes through the second gear (3202) and passes through the transmission box (32), forming a disassembly and assembly part with the through section of the first rotating shaft (3501); The unit slicing assembly (31) is detachably mounted on the disassembly section, and the bottom of the unit slicing assembly (31) is connected to a guide plate (16) that communicates with the outside of the hollow frame (1). The locking nut (34) is tightened at the front end of the first rotating shaft (3501) and the second rotating shaft (3502) to limit the position of the unit slice assembly (31).
2. The detachable cabinet-type slicing machine according to claim 1, characterized in that, The unit slice component (31) includes Mounting frame (36) Two parallel tube shafts (38) are rotatably disposed inside the mounting frame (36); a slicing blade (3801) is fixedly sleeved on the tube shafts (38); and limiters (3802) are respectively provided at both ends of the tube shafts (38). The comb (37) is fixedly installed on the mounting frame (36) by a support rod (3701).
3. A detachable cabinet-type slicing machine according to claim 2, characterized in that, The mounting frame (36) is composed of two wall panels (3601) and multiple tie rods (3602) with nuts; a bearing (3603) is provided at the connection between the tube shaft (38) and the wall panel (3601); the upper edges of the two wall panels (3601) are provided with snap-fit grooves (3604); the support rod (3701) is fitted into the snap-fit grooves (3604).
4. A detachable cabinet-type slicing machine according to claim 1, characterized in that, The meat grinder assembly (4) includes The machine body (41) is a hollow cylindrical structure, and a feeding port (4101) is provided on the upper side of the machine body (41); a perforated plate (44) is embedded in the front end of the machine body (41), and a machine head (43) is detachably sleeved on the front end of the machine body (41). The auger (46) is rotatably mounted in the machine body (41). The front end of the auger (46) is fitted with a reamer (48) through a square shaft (47). The other end of the square shaft (47) is rotatably inserted into the machine head (43). The diameter of the central shaft of the auger (46) gradually increases from the tail end to the head end. A drive shaft (45) is rotatably mounted in the machine body (41). The front end of the drive shaft (45) is connected to the tail end of the auger (46), and the rear end of the drive shaft (45) extends out of the machine body (41) and is fitted with a first pulley (42).
5. A detachable cabinet-type slicing machine according to claim 4, characterized in that, The transmission ratio between the first pulley (42) and the second drive member (52) is 65:280; the transmission ratio between the second pulley (33) and the first drive member (51) is 65:
180.
6. A detachable cabinet-type slicing machine according to claim 1, characterized in that, The bottom of the hollow frame (1) is provided with a set of walking wheels (11).
7. A detachable cabinet-type slicing machine according to claim 1, characterized in that, The bottom sidewall of the hollow frame (1) is provided with a heat dissipation hole group (12).
8. A detachable cabinet-type slicing machine according to claim 1, characterized in that, The hollow frame (1) has a handle groove (13) on its side wall.