Meat sawing machine
By introducing a movable cutting unit and a hand detection system into the cutting machine, the safety accidents and contamination problems of traditional cutting machines when cutting frozen meat have been solved, achieving safe and efficient cutting of frozen meat.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional meat cutters pose safety risks and environmental pollution from cutting debris when cutting frozen meat.
A fracture machine with a movable fracture unit and a detection system was designed. The movement of the fracture unit is controlled by detecting the operator's hand contact, which prevents the hand from contacting the cutting part. Various cutting components and lubricants are used to improve cutting efficiency.
It effectively prevents users from cutting their hands and improves the convenience of cutting frozen meat and the cleanliness of the environment.
Smart Images

Figure CN121753847A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a fracture machine with improved ease of operation, specifically a fracture machine that improves ease of operation and can easily cut through the inner flesh. Background Technology
[0002] Generally speaking, a bending machine or band saw is a mechanical device in which a band saw blade is suspended between band saw wheels that rotate inward and outward on an infinite track, while the material to be cut (such as various meats, bones, or frozen foods) is placed on a table and cut into appropriate lengths.
[0003] The bone-cutting machine is mainly used to cut bones for meat, but in recent years, its applications have expanded to include cutting bones and various frozen meats, fish, or frozen tuna.
[0004] The breaking device described above is used to open and close the cover on one side of the body, to maintain various components or remove foreign objects, including band saw wheels placed on the upper and lower parts of the body.
[0005] Traditional meat cutters pose a safety risk to users when cutting frozen meat. In other words, during the process of the user pushing the frozen meat into the band saw for cutting, a conventional meat cutter has a problem: if the frozen meat is cut quickly, the user's hand may come into contact with the band saw, resulting in a safety accident.
[0006] In addition, traditional meat cutting machines have the problem of producing debris that falls onto the workshop floor when cutting frozen meat, contaminating the working environment.
[0007] Existing technical documents
[0008] Patent documents
[0009] Patent Document 1: KR10-2011-0009206 Summary of the Invention
[0010] The problem that the invention aims to solve
[0011] This invention provides a meat cutter with improved ease of operation, which can easily cut the internal meat and prevent safety accidents that may occur when cutting frozen meat.
[0012] Methods for solving problems
[0013] According to an embodiment of the present invention, a breaking machine that improves operational convenience to solve the above-mentioned problems is a breaking machine that improves the operational convenience of cutting frozen meat. The machine comprises: an upper body unit containing the frozen meat, with a through slit formed in one direction; a breaking unit installed in the body unit, movable in one direction, inserted into the through slit, and movable in a translational manner in the vertical direction, and including a breaking portion capable of cutting the frozen meat; a support unit rotatably mounted in the breaking unit for pressurizing the frozen meat onto the breaking unit; a recovery device placed below the breaking device and installed in the vehicle body assembly; block-shaped units movable in the vertical direction within the body unit, spaced along a direction starting from the side portion of the through slit, protruding to the upper part of the body unit, and accessible to the operator's hand; and a control unit capable of detecting the contact between the breaking portion and the operator's hand, and controlling the breaking unit and the blocking unit based on the detection result. The machine includes...
[0014] A fracture unit is a fracture unit support unit installed in a vehicle body unit; a fracture unit body portion installed on the upper side of the fracture unit support has an internal installation space, the fracture portion is inserted vertically at the lower part, and the support unit is rotatably installed on one side; a fracture unit bridge, wherein the upper and lower and bilateral portions are fixed to the inner wall of the fracture unit body portion; a fracture unit guide portion is installed at the lower part of the fracture unit, and a guide hole penetrating vertically is opened at its center; a fracture unit motor unit 1260 is installed in the fracture unit and configured to generate rotational driving force; a fracture unit crank portion is coaxially coupled to the fracture unit motor unit 1260, which is connected via... The fracture unit motor unit 1260 rotates under rotational driving force and has a protruding guide pin at the edge; the slider member consists of a guide slit extending in a horizontal orthogonal direction, within which an extension is formed along the intersection direction, and a slider unit consisting of a slider member connected to the lower part of the slider member, extending in the vertical direction, inserted into a guide hole, and connected to the lower part of its fracture portion; one slider constituting the guide slit is mounted at each end of the inner wall of the member, the extension length is variable along the intersection direction, the extension contracts along the intersection direction, and the fracture unit elastically supports the guide pin; the fracture unit elastic support is an elastic support cylinder member formed by one side being mounted on the inner wall of the slider member and its length being adjustable along the cross direction; coupled to the elastic support cylinder On the other side of the body component, an elastic support spring component that can be stretched and extended along the cross direction is formed; an elastic support support member, one side of which is coupled to the elastic support spring member, and the other side is concave inward and can contact the guide pin face to face; the guide pin and the elastic support support member are made of magnetic material and have the same polarity; when the crank part of the fracture unit is rotated by the motor part 1260 of the fracture unit, the guide pin inserted into the guide groove moves in the track and the crank part of the fracture unit in the vertical direction; during the translational movement, the fracture unit, combined with the vertical translational movement of the crank part of the fracture unit, cuts the frozen meat coiled in the body unit; the guide pin moves along the guide slit while contacting the elastic support spring member. The supporting members are adjacent, and the repulsive force is generated by the elastic supporting members forming the same polarity. The slider also includes a friction-reducing lubricant applied to the inner wall forming the guide slit. The friction-reducing lubricant includes 70-90% by weight of a base oil, which is a mixture of paraffin oil and naphthenic oil, 7-18% by weight of a urea-type thickener, and 5-15% by weight of additives. The paraffin oil is a first paraffin oil containing a second paraffin oil with a viscosity of 80-120 mm² / s at 40°C of 20-25% by weight and a viscosity of 450-520 mm² / s at 40°C of 450-520 mm² / s. The base oil includes 55-65% by weight of paraffin oil and 20-30% by weight of naphthenic oil, and 100% by weight of grease component. The additives are aniline antioxidants.Molybdenum dithiocarbamate, molybdenum triphenylphosphonate, and molybdenum antimony dialkylcarbamate include one or more extreme pressure and wear additives, magnesium stearate lubricant, and calcium sulfonic acid dispersant. The extreme pressure wear additive includes 1.5–1.9% by weight of molybdenum dithiocarbamate, 0.6–1.0% by weight of triphenyl phosphate, and 2–4% by weight of antimony dialkylthiocarbamate.
[0015] The fracture is a fracture body component connected to the lower part of the slider; a fracture groove component formed on one side of the fracture body component, in contact with the frozen meat, for cutting the frozen meat; a fracture groove component formed on the fracture body component to prevent the fracture body component from deflecting; a fracture cutting component is a fracture cutting body extending in the vertical direction and connected to the fracture body component; a first fracture cutting body consists of a plurality of circular fracture grooves formed in a recessed part of the fracture cutting body, and extends from one side of the fracture cutting body from a plurality of fracture grooves between a plurality of protruding circular fracture grooves, connecting a plurality of fracture grooves and a plurality of cutting protrusions, and extending to reduce the thickness of the plurality of cutting protrusions, having a curvature with the plurality of fracture cutting grooves. The same curvature; a scraper having an auxiliary fracture blade component, the auxiliary fracture blade component being connected to a plurality of portions of the cutting protrusions and connected in the first fracture cutting body in a shape corresponding to the main components of the plurality of fracture blades, and attached to the plurality of main fracture blade components; a plurality of second fracture cutting bodies being formed on an odd number of the plurality of cutting protrusions; and a plurality of third fracture cutting bodies being rotatably mounted in the recessed grooves, the recessed grooves being formed in an even number of the recessed grooves of the plurality of cutting protrusions; the auxiliary fracture blade portion forming a semi-circular curved concave shape in the oblique blade portion formed at the lower part of the inclined portion of the scraper front. The front inclined portion is formed by chamfering at 45° to both sides of the intersecting direction. The scraper is cut at a predetermined angle on the diagonal side edge of the inclined portion, and the shape of the scraper is polygonal through the cutting line. The scraper is concave inward from the front inclined portion to form a fracture slit portion extending in the vertical direction. The main fracture blade portion is composed of cemented carbide, cermet, carbide, and cermet-ceramic cemented carbide. The second fracture cutting body is a plurality of 2-1 cutting blades extending from the odd-numbered placement direction along the cutting protrusions; a plurality of 2-2 cutting blades extend from the odd-numbered placement cutting protrusions and are placed between the 2-1 plurality of cutting blades and spaced apart along the direction of extension of the cutting protrusions; the 2 -1 The plurality of cutting blades are tilted to the left relative to one direction, and the plurality of cutting blades are tilted to the right relative to one direction. The third fracture cutting body is coupled to the inner wall of the cutting protrusion to form a recessed groove. The third fracture cutting motor is configured to generate a rotational driving force. The third fracture cutting shaft has one side connected to the third fracture cutting motor and can be rotated by the rotational driving force of the third fracture cutting motor, and the other side is rotatably coupled to the inner wall of the cutting protrusion to form a recessed groove. The third fracture cutting shaft is inserted at its center and rotated with the third fracture cutting shaft at intervals in the intersecting direction. The third fracture cutting saw blade cuts the frozen meat. The control unit is connected to the fracture point and applies a microcurrent to the fracture part.A signal receiving unit connected to the fractured component and receiving a resistance value that varies depending on the object in contact with the fractured component; a controller unit connected to the signal receiving unit that controls the signal receiving unit to stop the operation of the fracture unit motor unit 1260 when the received charge value exceeds a previously set value; a support unit protrudes from the upper part of the body unit; it includes...
[0016] Invention Effects
[0017] According to the present invention, during the cutting and cleaving process, if contact between the operator's hand and the cleaved portion of the frozen meat is detected, and if contact between the worker's hand and the frozen meat is detected, a block unit protrudes, allowing the operator's hand to be pushed away from the cleaved portion. Therefore, it serves to prevent serious accidents such as fractures or severed injuries to the user's hand.
[0018] Furthermore, since the fractured portion cuts the frozen meat through the first or third fracture cutting body, it has the effect of making the frozen meat easier to cut. Attached Figure Description
[0019] Figure 1 The accompanying drawing illustrates a fracture device structure that improves operational convenience according to an embodiment of the present invention.
[0020] Figure 2 This is a structural diagram illustrating a block-shaped unit installed in a body unit according to an embodiment of the present invention.
[0021] Figure 3 The accompanying drawing illustrates the pressurization of frozen meat by a support unit according to an embodiment of the present invention.
[0022] Figure 4 The accompanying drawing illustrates a protruding block-shaped unit that obstructs the worker's hand during the cutting of frozen meat according to an embodiment of the present invention.
[0023] Figure 5 The accompanying drawing illustrates a crack structure according to an embodiment of the present invention.
[0024] Figure 6 This is a perspective view showing the structure of the fracture cutting member according to an embodiment of the present invention.
[0025] Figure 7 A side view illustrating the fracture cutting member structure according to an embodiment of the present invention.
[0026] Figure 8 This is a structural plan view of a crack cutting component according to an embodiment of the present invention.
[0027] Figure 9 This is a schematic diagram illustrating the disassembly of the third cleavage cutting saw blade structure according to an embodiment of the present invention.
[0028] Figure 10 A plan view illustrating the structure of the third cleavage cutting saw blade according to an embodiment of the present invention.
[0029] Figure 11 The accompanying drawing illustrates the support unit structure according to an embodiment of the present invention.
[0030] Figure 12 The illustration shows a hand pushing frozen meat.
[0031] Figure 13 It shows a hand in contact with a broken, cut component, and a protruding block-like unit to protect the hand. Detailed Implementation
[0032] The embodiments are described in detail below with reference to the accompanying drawings. However, various modifications can be made to the embodiments, and therefore the scope of the patent application is not limited to or restricted by these embodiments. Any changes, equivalents, or substitutions to the embodiments should be understood to be included within the scope of the claims.
[0033] The specific structural or functional descriptions of the embodiments are provided for illustrative purposes only and may be modified and implemented in various forms. Therefore, the embodiments are not limited to a particular form of disclosure, and the scope of this specification includes changes, uniformities, or substitutions incorporated into the descriptive concepts.
[0034] Terms such as first or second can be used to describe various components, but the interpretation of these terms should only be used to distinguish one component from another. For example, the first component can be named the second component, and similarly, the second component can be named the first component.
[0035] When a component is said to be "connected" to another component, it should be understood that it may be directly connected to or connected to another component, but there may be another component between them.
[0036] The terminology used in the embodiments is for illustrative purposes only and should not be construed as restrictive. Singular expressions include plural expressions unless the context clearly implies otherwise. In this specification, the terms "comprising" or "having" should be understood to mean the presence of the functions, numbers, steps, actions, components, parts, or combinations thereof described herein, and should not exclude the presence or addition of one or more other functions or numbers, steps, actions, components, parts, or combinations thereof.
[0037] Unless otherwise defined, all terms used herein, including technical or scientific terms, have the same meaning as commonly understood by one of ordinary knowledge in the art to which the embodiments pertain. Terms such as those defined in common dictionaries should be interpreted as having the meaning consistent with their meaning in the relevant descriptive context and should not be interpreted in an idealistic or overly formal sense unless expressly defined in this application.
Claims
1. A crusher, used to improve the convenience of cutting frozen meat, wherein, include: Body unit, in which frozen meat is located at the top and forms a through slit in one direction; The breaking unit is installed in the main unit so that it can move in one direction, be inserted into the through slit, and move in a translational manner in the vertical direction, and includes a breaking part capable of cutting frozen meat. A support unit, rotatably mounted in the breaking unit, is used to pressurize the frozen meat onto the breaking unit; A recovery device placed below the fracture device and installed in the vehicle body assembly; The block-shaped unit, which is installed and moved vertically within the main body unit, protrudes from the upper part of the main body unit at intervals along the direction starting from the side portion of the through seam, and can be touched by the operator's hand. It can detect the contact between the fractured part and the operator's hand, and control the control unit of the fracture unit and the stop unit based on the detection results.
Citation Information
Patent Citations
Organic luminescent device and process for producing the same
KR1020110009206A