Cheese processing tablet maker

By designing a cheese slicing machine and utilizing servo motor-driven intermittent conveying and cutting components, the problem of low automation in existing cheese slicing machines has been solved, achieving efficient and low-cost cheese slicing production, making it suitable for small and medium-sized enterprises.

CN117581793BActive Publication Date: 2026-02-03JIANGSU BENYOU MASCH CO LTD
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Patent Information

Application Number
CN202311568747.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-23
Publication Date
2026-02-03
Estimated Expiration
2043-11-23

AI Technical Summary

Technical Problem

Existing cheese slicers have low levels of automation, and manual cutting is inefficient, labor-intensive, and difficult to process large quantities of cheese slices efficiently.

Method used

A cheese processing and slicing machine was designed, which uses an intermittent conveying component and a slicing and cutting component driven by a servo motor. The intermittent conveying and cutting of cheese strips is achieved through the cooperation of cams and transmission wheels. The dual components are driven by a separate servo motor, which reduces the cost and weight of the device.

Benefits of technology

It enables efficient slicing of cheese strips, reduces labor intensity and production costs, is suitable for small and medium-sized enterprises, has broad market prospects, and saves time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a cheese processing and slicing machine, which comprises a slicing table, the bottom of the slicing table is uniformly supported and fixed through a plurality of groups of supporting legs, cheese strips are placed on the surface of the slicing table, a falling channel is formed in the end of the slicing table, a collecting box is mounted at the bottom of the falling channel, a fixing frame is screw-connected and mounted on the slicing table, an intermittent conveying assembly is mounted on the left side of the fixing frame, and a slicing and cutting assembly is mounted on the right side of the fixing frame; the slicing and cutting assembly is composed of a servo motor, a cam, a transmission wheel, a mounting seat, a blade, a rotating shaft, a supporting seat, a limiting track, a limiting block and a return spring. The cheese processing and slicing machine can realize the driving source of the intermittent conveying assembly and the slicing and cutting assembly through a group of servo motors, so that the cost and weight of the device can be reduced, the selling price is lowered, small and medium-sized enterprises can purchase the device, and the market prospect is wide. Meanwhile, the driving manual slicing mode is very time-saving and labor-saving when a large amount of cheese is sliced.
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Description

Technical Field

[0001] This invention relates to the field of cheese processing equipment, specifically a cheese processing and slicing machine. Background Technology

[0002] Cheese is a fermented milk product, similar in nature to common yogurt. Both are made through fermentation and contain beneficial lactic acid bacteria. However, cheese is more concentrated than yogurt, almost like a solid food, and therefore has a richer nutritional value. Each kilogram of cheese is made from 10 kilograms of milk, containing abundant protein, calcium, fat, phosphorus, and vitamins, making it a purely natural food. In terms of processing, cheese is fermented milk; in terms of nutrition, cheese is concentrated milk.

[0003] During cheese production, cheese is first formed into cheese blocks, and then cut into cheese slices. If manual cutting is used, it is not only labor-intensive but also inefficient.

[0004] Existing typical cheese slicers generally include a handle and a cutting plate fixed to the end of the handle. One edge of the cutting plate is configured with a sharp cutting blade, and the cutting blade is set to have a gap with the end of the handle. Cheese slices pass through the gap between the cutting blade and the end of the handle. It can be seen that the existing mechanical cheese slicers have a relatively low level of automation, and are very time-consuming and labor-intensive when slicing large quantities of cheese. In view of this, this case came into being. Summary of the Invention

[0005] The purpose of this invention is to provide a cheese processing and slicing machine to solve the defects mentioned in the background art.

[0006] To achieve the above objectives, a cheese processing and slicing machine is provided, including a slicing table. The bottom of the slicing table is evenly supported and fixed by multiple sets of support legs. Cheese strips are placed on the surface of the slicing table, and a falling channel is opened at the end of the slicing table. At the same time, a collection box is installed at the bottom of the falling channel, and a fixing frame is screwed onto the slicing table. An intermittent conveying component is installed on the left side of the fixing frame, and a slicing and cutting component is installed on the right side of the fixing frame.

[0007] The cutting assembly consists of a servo motor, a cam, a transmission wheel, a mounting base, a blade, a rotating shaft, a support base, a limit rail, a limit block, and a return spring. The servo motor is fixed to the mounting frame via a base, and the output shaft of the servo motor is fixed to the rotating shaft. A cam and a second sprocket are mounted on the rotating shaft. A transmission wheel is mounted on the bottom of the cam and is movably mounted on the mounting base. The blade is fixedly mounted on the bottom of the mounting base.

[0008] The intermittent conveying assembly consists of a transmission block, a connecting piece, a transmission seat, a transmission plate, a first fixed seat, a main transmission arm, a driven transmission arm, a second fixed seat, a drive plate, a first sprocket, a chain, and a second sprocket. Both the second fixed seat and the first fixed seat are screwed to the fixed frame. The drive plate is movably mounted on the second fixed seat, and the end of the drive plate away from the second fixed seat is movably connected to the main transmission arm. The driven transmission arm is fixedly mounted on the main transmission arm, and the end of the driven transmission arm away from the main transmission arm is fixed to the transmission seat. The end of the transmission seat is welded to the connecting piece, and the surface of the connecting piece is welded to the transmission block.

[0009] Furthermore, the cam and the transmission wheel are arranged opposite to each other, and the rotation of the cam drives the mounting base and the blade to move downward to slice the cheese strip through the transmission wheel. A limiting groove is opened on the surface of the slicing table, and the limiting groove is arranged opposite to the blade. At the same time, the size of the blade is smaller than the size of the limiting groove.

[0010] Furthermore, the mounting base is made of metal with an isosceles triangular bottom cross-section, and a positioning groove is provided at the bottom of the mounting base. The upper end of the blade is inserted into the positioning groove and fixed by bolts.

[0011] Furthermore, limiting blocks are fixedly installed at both ends of the bottom of the mounting base, and the film preparation table and the fixing frame are supported and fixed by a support base. At the same time, a limiting track is opened on the inner wall of the support base, and the size of the limiting track is adapted to the limiting block. The limiting block is slidably set inside the limiting track.

[0012] Furthermore, a mounting plate is welded to the upper side of the end of the support base, and a return spring is installed between the mounting plate and the mounting base, with two sets of return springs arranged in parallel.

[0013] Furthermore, a placement groove is formed on the surface of the slicing table, and the depth of the placement groove is 0.5cm. The placement groove is adapted to the size of the cheese strip, and the cheese strip is inserted into the inside of the placement groove. The cheese strip is intermittently driven to move laterally inside the placement groove by an intermittent conveying component and is sliced ​​by a slicing and cutting component.

[0014] The surface of the film preparation table is screwed with a contamination-proof guard frame, and the top of the contamination-proof guard frame has an operation hole. The size of the contamination-proof guard frame is larger than the size of the transmission block, and the length of the contamination-proof guard frame is greater than the lateral movement range of the transmission block. The blade on the film preparation and cutting assembly consists of a positioning heating seat, mounting holes, a spiral groove, a heating wire, and a cutting part. The surface of the positioning heating seat has mounting holes and a spiral groove, and the heating wire is fixedly installed inside the spiral groove. The bottom of the positioning heating seat is fixedly connected to the cutting part.

[0015] Furthermore, the end of the main transmission arm away from the drive plate is movably connected to the transmission plate, and the end of the transmission plate away from the main transmission arm is movably connected to the first fixed seat. At the same time, the main transmission arm and the slave transmission arm are combined to form a "Y" shape.

[0016] Furthermore, the cross-section of the transmission block is set as a right-angled trapezoid, and the movement trajectory of the transmission block is set as an ellipse. At the same time, the transmission block drives the cheese strip to move intermittently during the movement.

[0017] Furthermore, the end of the drive plate away from the main transmission arm is movably mounted on the end of the second fixed base via a rotating shaft, and the rotating shaft at the end of the drive plate is fixed to the output shaft of the first sprocket. At the same time, the sizes of the first sprocket and the second sprocket are matched, and the first sprocket and the second sprocket are driven by a chain.

[0018] Furthermore, the drive plate rotates through the main transmission arm, the driven transmission arm, the drive seat, the connecting piece, and the transmission block. The transmission block drives the cheese strip to move intermittently across the blade, and after the cheese slices are sliced, they slide from the falling track into the falling channel and are collected by the collection box.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] 1. When the main transmission arm and the slave transmission arm are moving, the end of them that is away from the drive plate is limited by the transmission plate. The main transmission arm and the slave transmission arm swing back and forth, and the cheese strips are intermittently conveyed and sliced ​​through the transmission block.

[0021] 2. The intermittent conveying component and the slicing and cutting component can be driven by a single servo motor, eliminating the need for two separate drive sources. This reduces the cost and weight of the device, making it more affordable for small and medium-sized enterprises and thus offering a promising market prospect. Furthermore, the manual slicing method is very time-saving and labor-saving when slicing large quantities of cheese. Attached Figure Description

[0022] Figure 1 This is a front view schematic diagram of the structure of the present invention;

[0023] Figure 2 The structure of this invention Figure 1 A schematic diagram of the AA cross-sectional structure in the diagram;

[0024] Figure 3 This is a schematic diagram illustrating the cutting and conveying of the cheese strip structure of the present invention;

[0025] Figure 4 This is a schematic diagram of the transmission block and transmission assembly structure of the present invention;

[0026] Figure 5This is a schematic diagram of the cross-sectional structure of the placement slot of the present invention;

[0027] Figure 6 This is a schematic diagram of the anti-fouling protective frame of the present invention;

[0028] Figure 7 This is a schematic diagram of the blade structure of the present invention.

[0029] The diagram labels are as follows: 1. Slicing table; 100. Anti-fouling frame; 1001. Operating hole; 2. Placement slot; 3. Cheese strip; 4. Limiting slot; 5. Support leg; 6. Drop track; 7. Collection box; 8. Drop channel; 9. Fixing frame; 10. Slicing and cutting assembly; 101. Servo motor; 102. Cam; 103. Drive wheel; 104. Mounting base; 105. Blade; 1051. Positioning heating base; 1052. Mounting hole; 1053. Swirling slot; 1054. Adding... Hot wire; 1055, Cutting section; 106, Rotating shaft; 107, Support base; 108, Limiting track; 109, Limiting block; 110, Return spring; 11, Intermittent conveying assembly; 111, Transmission block; 112, Connecting piece; 113, Transmission seat; 114, Transmission plate; 115, First fixed seat; 116, Main transmission arm; 117, Slave transmission arm; 118, Second fixed seat; 119, Drive plate; 120, First sprocket; 121, Chain; 122, Second sprocket. Implementation

[0030] Detailed implementation method one: Please refer to Figure 1-7 The present invention provides a technical solution: a cheese processing and slicing machine, including a slicing table 1, the bottom of the slicing table 1 is evenly supported and fixed by multiple sets of support legs 5, cheese strips 3 are placed on the surface of the slicing table 1, and a falling channel 8 is opened at the end of the slicing table 1. At the same time, a collection box 7 is installed at the bottom of the falling channel 8, and a fixing frame 9 is screwed onto the slicing table 1. An intermittent conveying component 11 is installed on the left side of the fixing frame 9, and a slicing and cutting component 10 is installed on the right side of the fixing frame 9.

[0031] The film cutting assembly 10 consists of a servo motor 101, a cam 102, a transmission wheel 103, a mounting base 104, a blade 105, a rotating shaft 106, a support base 107, a limit track 108, a limit block 109, and a return spring 110. The servo motor 101 is fixed on the mounting frame 9 via a base. The output shaft of the servo motor 101 is fixed to the rotating shaft 106. The cam 102 and the second sprocket 122 are respectively mounted on the rotating shaft 106. The transmission wheel 103 is mounted on the bottom of the cam 102 and is movably mounted on the mounting base 104. The blade 105 is fixedly mounted on the bottom of the mounting base 104.

[0032] The intermittent conveying assembly 11 consists of a transmission block 111, a connecting piece 112, a transmission seat 113, a transmission plate 114, a first fixed seat 115, a main transmission arm 116, a driven transmission arm 117, a second fixed seat 118, a drive plate 119, a first sprocket 120, a chain 121, and a second sprocket 122. The second fixed seat 118 and the first fixed seat 115 are both screwed and fixed to the fixed frame 9. The drive plate 119 is movably mounted on the second fixed seat 118, and the end of the drive plate 119 away from the second fixed seat 118 is movably connected to the main transmission arm 116. The driven transmission arm 117 is fixedly mounted on the main transmission arm 116, and the end of the driven transmission arm 117 away from the main transmission arm 116 is fixed to the transmission seat 113. The end of the transmission seat 113 is welded and fixed to the connecting piece 112, and the surface of the connecting piece 112 is welded and fixed to the transmission block 111.

[0033] Working principle: When in use, place the cheese strip 3 that needs to be sliced ​​on the slicing table 1. At this time, turn on the external switch of the servo motor 101. The servo motor 101 is used as the driving source to slice the cheese strip 3 through the slicing and cutting component 10.

[0034] The long cheese strip 3 is intermittently conveyed by the intermittent conveying component 11, and the intermittent conveying distance is consistent with the thickness of the cheese slice after slicing.

[0035] The working method of the slicing and cutting assembly 10 is as follows: the cam 102 rotates under the drive of the motor, which causes the cam 102 to drive the transmission wheel 103 to move downward, which causes the blade 105 to move downward, and cut the cheese strip 3 into slices.

[0036] Specific Implementation Method 2: This implementation method is a further limitation of Specific Implementation Method 1. The cam 102 and the transmission wheel 103 are arranged opposite to each other, and the rotation of the cam 102 drives the mounting base 104 and the blade 105 to move downward through the transmission wheel 103 to perform the slicing work on the cheese strip 3. A limiting groove 4 is opened on the surface of the slicing table 1, and the limiting groove 4 is arranged opposite to the blade 105. At the same time, the size of the blade 105 is smaller than the size of the limiting groove 4.

[0037] like Figure 1-2 As shown: When the protrusion on the cam 102 contacts the transmission wheel 103, it can drive the transmission wheel 103 to move downward, and at this time the return spring 110 is compressed.

[0038] When the protrusion on the cam 102 disengages from the drive wheel 103, the return spring 110 resets, causing the blade 105 to return to its initial position, completing one slicing cycle of the cheese strip 3.

[0039] Specific Implementation Method 3: This implementation method is a further limitation of Specific Implementation Method 1. The mounting base 104 is made of metal and has an isosceles triangle structure at the bottom. A positioning groove is opened at the bottom of the mounting base 104, and the upper end of the blade 105 is inserted into the positioning groove and fixed by bolts.

[0040] like Figure 1-2 As shown: The upper end of the blade 105 is inserted into the positioning groove and fixed by bolts; the blade 105 is detachable, which facilitates the replacement of the blade 105.

[0041] A return spring 110 is installed on the mounting base 104; when the mounting base 104 moves downward, the return spring 110 is stretched.

[0042] When the force acting on the mounting base 104 disappears, the return spring 110 rebounds, causing the mounting base 104 to return to its initial position.

[0043] Specific Implementation Method 4: This implementation method is a further limitation of Specific Implementation Method 1. Limiting blocks 109 are fixedly installed at both ends of the bottom of the mounting base 104, and the film preparation table 1 and the fixing frame 9 are supported and fixed by the support base 107. At the same time, a limiting track 108 is opened on the inner wall of the support base 107, and the size of the limiting track 108 is adapted to the limiting block 109. The limiting block 109 is slidably disposed inside the limiting track 108.

[0044] like Figure 1-2 As shown: When the mounting base 104 is raised or lowered, the limiting blocks 109 at both ends are slidably set inside the limiting rail 108, which can limit and guide the vertically moving mounting base 104, and prevent the blade 105 from tilting when it is raised or lowered.

[0045] Specific Implementation Method 5: This implementation method is a further limitation of Specific Implementation Method 1. A mounting plate is welded to the upper side of the end of the support base 107, and a return spring 110 is installed between the mounting plate and the mounting base 104. At the same time, the two sets of return springs 110 are arranged in parallel.

[0046] like Figure 2 As shown: hooks are welded on the mounting base 104 and the mounting plate. The return spring 110 can be installed between the mounting base 104 and the mounting plate through the two sets of oppositely arranged hooks.

[0047] Specific Implementation Method Six: This implementation method is a further limitation of Specific Implementation Method One. The surface of the slice table 1 is provided with a placement groove 2, and the depth of the placement groove 2 is 0.5cm. At the same time, the placement groove 2 is adapted to the size of the cheese strip 3, and the cheese strip 3 is inserted into the inside of the placement groove 2. The cheese strip 3 is intermittently driven to move laterally inside the placement groove 2 by the intermittent conveying component 11 and is sliced ​​by the slice cutting component 10.

[0048] A contamination-proof frame 100 is screwed onto the surface of the film preparation table 1, and an operation hole 1001 is provided on the top of the contamination-proof frame 100. The size of the contamination-proof frame 100 is larger than the size of the transmission block 111, and the length of the contamination-proof frame 100 is greater than the lateral movement range of the transmission block 111. The blade 105 on the film preparation and cutting assembly 10 consists of a positioning heating seat 1051, a mounting hole 1052, a spiral groove 1053, a heating wire 1054, and a cutting part 1055. The positioning heating seat 1051 has a mounting hole 1052 and a spiral groove 1053 on its surface. The heating wire 1054 is fixedly installed inside the spiral groove 1053, and the bottom of the positioning heating seat 1051 is fixedly connected to the cutting part 1055.

[0049] like Figure 6-7 As shown: A contamination-proof frame 100 is screwed onto the surface of the slice table 1. The contamination-proof frame 100 wraps around the outside of the cheese strip 3, which can prevent the cheese strip 3 from being contaminated and avoid the lubricating oil on the rotating mechanical structure above the cheese strip 3 from dripping onto the surface of the cheese strip 3 and causing contamination. An operation hole 1001 is opened on the surface of the contamination-proof frame 100. The transmission block 111 passes through the operation hole 1001 to drive the frozen cheese strip 3 to move laterally, so as to avoid motion interference between the contamination-proof frame 100 and the transmission block 111.

[0050] When the cheese strip 3 is being cut, the lateral movement and feeding dimensions, as well as the thickness of the cut cheese strip 3, are adjusted by changing the main transmission arm 116 of different lengths. By using main transmission arms 116 of different lengths, the movement amplitude of the transmission block 111 is adjusted, thereby adjusting the contact time between the transmission block 111 and the cheese strip 3, and thus adjusting the feeding dimension and the thickness of the cut cheese strip 3. The longer the contact time between the transmission block 111 and the cheese strip 3, the thicker the cut cheese strip 3, and vice versa.

[0051] When the blade 105 cuts the frozen cheese strip 3, the positioning heating seat 1051 needs to be heated by the heating wire 1054. The heated positioning heating seat 1051 heats the cutting part 1055, so that the cheese will not stick to the blade 105 when the high-temperature cutting part 1055 cuts the frozen cheese strip 3, thus avoiding the situation of sticking to the blade.

[0052] To facilitate the transport of the cut cheese slices, the collection box 7 in this case can be replaced with a sterile conveyor belt. After the cheese slices are cut, they fall onto the conveyor belt through the drop channel 8, which facilitates the transport of the cut cheese slices.

[0053] like Figure 1-4 As shown: Cheese strips 3 are intermittently driven to move laterally inside the placement trough 2 by the intermittent conveying assembly 11 and are sliced ​​by the slicing and cutting assembly 10;

[0054] The intermittent conveying component 11 is driven by the servo motor 101, and the intermittent conveying component 11 operates as follows:

[0055] The second sprocket 122 rotates under the drive of the servo motor 101, and drives the first sprocket 120 to rotate through the chain 121. The first sprocket 120 drives the drive plate 119. The drive plate 119 drives the transmission block 111, connecting piece 112, and transmission seat 113 to perform elliptical motion through the main transmission arm 116 and the slave transmission arm 117. This causes the transmission block 111 to contact the upper surface of the cheese strip 3 and pushes the cheese strip 3 to move laterally.

[0056] Specific Implementation Method Seven: This implementation method is a further limitation of Specific Implementation Method One. The end of the main transmission arm 116 away from the drive plate 119 is movably connected to the transmission plate 114, and the end of the transmission plate 114 away from the main transmission arm 116 is movably connected to the first fixed seat 115. At the same time, the main transmission arm 116 and the slave transmission arm 117 are combined together to form a "Y" shape.

[0057] like Figure 1-5 As shown: When the main transmission arm 116 and the slave transmission arm 117 are moving, the end of them that is away from the drive plate 119 is limited by the transmission plate 114. The main transmission arm 116 and the slave transmission arm 117 swing back and forth, and the cheese strip 3 is intermittently conveyed and sliced ​​through the transmission block 111.

[0058] Specific Implementation Method Eight: This implementation method is a further limitation of Specific Implementation Method One. The cross-section of the transmission block 111 is set as a right trapezoid, and the movement trajectory of the transmission block 111 is set as an ellipse. At the same time, the transmission block 111 drives the cheese strip 3 to move intermittently during the movement.

[0059] During its movement, the transmission block 111 drives the cheese strip 3 to move intermittently laterally. When the end of the transmission block 111 moves directly above the cheese strip 3, it can apply force to the cheese strip 3. When the transmission block 111 continues to move from left to right, it can transport the cheese strip 3 from left to right. When the end of the transmission block 111 disengages from the cheese strip 3, the cheese strip 3 is in a stationary state, thus realizing the intermittent driving and lateral movement of the cheese strip 3; thereby realizing the intermittent slicing operation.

[0060] When the cheese strip 3 between the transmission block 111 and the blade 105 cannot be conveyed by the transmission block 111, this cheese strip 3 can be removed and sliced ​​manually.

[0061] Specific Implementation Method Nine: This implementation method is a further limitation of Specific Implementation Method One. The end of the drive plate 119 away from the main transmission arm 116 is movably mounted on the end of the second fixed seat 118 through a rotating shaft, and the rotating shaft at the end of the drive plate 119 is fixed to the output shaft of the first sprocket 120. At the same time, the sizes of the first sprocket 120 and the second sprocket 122 are adapted to each other, and the first sprocket 120 and the second sprocket 122 are driven by a chain 121.

[0062] like Figure 1-2 As shown: The transmission of the intermittent conveying component 11 is realized by the servo motor 101 as the driving source. When the servo motor 101 rotates, it drives the drive plate 119 to move through the first sprocket 120, chain 121 and second sprocket 122, so that the transmission block 111 conveys the cheese strip 3.

[0063] Specific Implementation Method 10: This implementation method is a further limitation of Specific Implementation Method 1. The drive plate 119 rotates and drives the transmission seat 113, connecting piece 112 and transmission block 111 through the main transmission arm 116, the slave transmission arm 117, and the transmission block 111. The transmission block 111 drives the cheese strip 3 to move intermittently across the blade 105 to slice it. The cheese slices slide from the falling track 6 into the falling channel 8 and are collected by the collection box 7.

[0064] like Figure 1-2 As shown, the intermittent conveying component 11 and the slicing and cutting component 10 can be driven by a single servo motor 101, eliminating the need for two separate drive sources. This reduces the cost and weight of the device, making its manufacturing cost lower and its selling price more affordable for small and medium-sized enterprises, resulting in a broad market prospect. Furthermore, the manual slicing method is very time-saving and labor-saving when slicing large quantities of cheese.

[0065] The collection box 7 can be replaced with a conveyor belt device, and the products falling from the drop channel 8 can be transported over long distances by the conveyor belt.

Claims

1. A cheese processing and slicing machine, comprising a slicing table (1), the bottom of which is uniformly supported and fixed by multiple sets of support legs (5), characterized in that: Cheese strips (3) are placed on the surface of the slice table (1), and a falling channel (8) is opened at the end of the slice table (1). At the same time, a collection box (7) is installed at the bottom of the falling channel (8), and a fixing frame (9) is screwed on the slice table (1). An intermittent conveying component (11) is installed on the left side of the fixing frame (9), and a slice cutting component (10) is installed on the right side of the fixing frame (9). The cutting assembly (10) consists of a servo motor (101), a cam (102), a transmission wheel (103), a mounting base (104), a blade (105), a rotating shaft (106), a support base (107), a limit rail (108), a limit block (109), and a return spring (110). The servo motor (101) is fixed on the mounting frame (9) via a base. The output shaft of the servo motor (101) is fixed to the rotating shaft (106). The rotating shaft (106) is equipped with a cam (102) and a second sprocket (122). The transmission wheel (103) is installed at the bottom of the cam (102), and the transmission wheel (103) is movably mounted on the mounting base (104). The blade (105) is fixedly mounted at the bottom of the mounting base (104). The intermittent conveying assembly (11) consists of a transmission block (111), a connecting piece (112), a transmission seat (113), a transmission plate (114), a first fixed seat (115), a main transmission arm (116), a slave transmission arm (117), a second fixed seat (118), a drive plate (119), a first sprocket (120), a chain (121), and a second sprocket (122). Both the second fixed seat (118) and the first fixed seat (115) are screwed onto the fixed frame (9). Simultaneously, the second fixed seat (118)... A drive plate (119) is movably mounted on the second fixed seat (118), and the end of the drive plate (119) away from the second fixed seat (118) is movably connected to the main transmission arm (116). A slave transmission arm (117) is fixedly mounted on the main transmission arm (116), and the end of the slave transmission arm (117) away from the main transmission arm (116) is fixed to the transmission seat (113). At the same time, the end of the transmission seat (113) is welded to the connecting piece (112), and the surface of the connecting piece (112) is welded to the transmission block (111). A placement groove (2) is opened on the surface of the preparation table (1), and the depth of the placement groove (2) is 0.5cm. At the same time, the placement groove (2) is adapted to the size of the cheese strip (3), and the cheese strip (3) is inserted into the inside of the placement groove (2). The cheese strip (3) is intermittently driven to move laterally inside the placement groove (2) by the intermittent conveying component (11) and is sliced ​​by the slice cutting component (10). A contamination-proof guard frame (100) is screwed onto the surface of the film preparation table (1), and an operation hole (1001) is opened on the top of the contamination-proof guard frame (100). At the same time, the size of the contamination-proof guard frame (100) is larger than the size of the transmission block (111), and the length of the contamination-proof guard frame (100) is greater than the lateral movement range of the transmission block (111). The blade (105) on the film preparation and cutting assembly (10) is composed of a positioning heating seat (1051), a mounting hole (1052), a spiral groove (1053), and a heating wire (1051). 54) and the cutting part (1055) are combined, and the surface of the positioning heating seat (1051) is provided with mounting holes (1052) and a spiral groove (1053). At the same time, the heating wire (1054) is fixedly installed inside the spiral groove (1053), and the bottom of the positioning heating seat (1051) is fixedly connected to the cutting part (1055); the end of the main transmission arm (116) away from the drive plate (119) is movably connected to the transmission plate (114), and the transmission plate (114) away from the main transmission arm (116) is... One end is movably connected to the first fixed seat (115), and the main transmission arm (116) and the slave transmission arm (117) are combined to form a "Y" shape; the cross section of the transmission block (111) is a right trapezoid, and the movement trajectory of the transmission block (111) is elliptical. During the movement, the transmission block (111) drives the cheese strip (3) to move intermittently; the end of the drive plate (119) away from the main transmission arm (116) is movably mounted on the end of the second fixed seat (118) through a rotating shaft. The drive plate (119) has a rotating shaft at its end that is fixed to the output shaft of the first sprocket (120). The first sprocket (120) and the second sprocket (122) are matched in size and are driven by a chain (121). The support base (107) has a fixed mounting plate welded to its upper end. A return spring (110) is installed between the mounting plate and the mounting base (104). The two sets of return springs (110) are arranged in parallel.

2. The cheese processing and slicing machine according to claim 1, characterized in that: The cam (102) and the transmission wheel (103) are arranged opposite to each other, and the rotation of the cam (102) drives the mounting base (104) and the blade (105) to move downward to slice the cheese strip (3) through the transmission wheel (103). The surface of the slicing table (1) is provided with a limiting groove (4), and the limiting groove (4) is arranged opposite to the blade (105). At the same time, the size of the blade (105) is smaller than the size of the limiting groove (4).

3. The cheese processing and slicing machine according to claim 1, characterized in that: The mounting base (104) is made of metal and has an isosceles triangle structure at the bottom. A positioning groove is opened at the bottom of the mounting base (104), and the upper end of the blade (105) is inserted into the positioning groove and fixed by bolts.

4. The cheese processing and slicing machine according to claim 1, characterized in that: The mounting base (104) has two fixed installations of limiting blocks (109) at its bottom ends. The film preparation table (1) and the fixing frame (9) are supported and fixed by a support base (107). At the same time, a limiting track (108) is opened on the inner wall of the support base (107), and the size of the limiting track (108) is adapted to the size of the limiting block (109). The limiting block (109) is slidably set inside the limiting track (108).

5. A cheese processing and slicing machine according to claim 1, characterized in that: The drive plate (119) rotates through the main transmission arm (116), the slave transmission arm (117) to drive the transmission seat (113), the connecting piece (112) and the transmission block (111). The transmission block (111) drives the cheese strip (3) to move intermittently across the blade (105) to slice it. The cheese slices slide from the falling track (6) into the falling channel (8) and are collected by the collection box (7).

Citation Information

Patent Citations

  • Food material slicing treatment device for food processing

    CN113664889A

  • Single-drive food slicing machine

    CN214110555U

  • Cutting knife with heated blade

    DE202018005520U1

  • Improvements in or relating to linkwork movements

    GB321940A