Knife rest mechanism of cake splitting machine cutter

By designing a cake slitting machine cutting tool holder mechanism including a conveyor belt, a rotating motor, a telescopic rotating shaft, a knife holder and a fixed frame, the problem of fine parts adhesion and bacterial growth during slicing of the cake cutter is solved, and a safer and more efficient cake slitting effect is achieved.

CN222885196UActive Publication Date: 2025-05-20ZHANGZHOU WANLI MASCH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421867416.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-05-20
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

When cutting cakes, existing cake cutters easily carry out fine parts of the cake and stick to the surface of the cutter, resulting in bacterial growth and damage incisions.

Method used

A cake slitting machine cutting tool holder mechanism including a conveyor belt, a rotating motor, a telescopic rotating shaft, a knife holder and a fixed frame is designed. The knife holder consists of blades, cutter heads, limiting channels, moving blocks and press plates. Through the control of the telescopic rotation shaft, the blade can smoothly cut the cake, and through the design of press plates and rubber layers, it prevents the crushed material from being bonded and damaged by the blade.

Benefits of technology

It effectively prevents the cake crumbs from sticking to the surface of the cutter, reduces the risk of bacterial growth, and avoids unnecessary damage to the cake, so that the cutter can perform slitting operations more smoothly.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222885196U_ABST
    Figure CN222885196U_ABST
Patent Text Reader

Abstract

The utility model discloses a cutter rest mechanism of a cutter of a cake splitting machine, which structurally comprises a conveying belt, a cake blank, a rotating motor, a telescopic rotating shaft, a cutter rest and a fixing frame, and the cutter rest comprises a blade, a cutter head, a limiting channel, a moving block and a pressing plate. When the tool bit drives the blade to continuously move downwards, the two sides of the position of the cutting-in opening are fixed and cannot be extruded and deformed by the blade, and when the blade needs to move upwards after cutting, the two pressing plates abut against the surface of the blade, crushed materials on the surface of the blade are intercepted at a cutting gap, and the blade can be pulled out in an unbonded mode. According to the cake cutting device, when a cutter cuts a cake blank, the portions, on the two sides of a notch, of the cake blank can slightly abut against and be fixed, the cutter can smoothly cut in the cake blank, notch extrusion cannot be caused to the cake blank, and when the cutter is pulled out of the cake blank, broken materials bonded to the surface are intercepted and fall off, and follow-up bonding is prevented.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the field of cutter holders of cutting knives, and more specifically, particularly relates to a cutter holder mechanism of a cutting knife for a cake slicing machine. Background Technique

[0002] After the cake embryo is baked, it is necessary to evenly cut the round cake into single pieces for convenient subsequent production and processing. In order to cut the cake embryo into pieces more conveniently and quickly, a double-station cake slicing machine is used to convey and slice the cake.

[0003] Based on the above, the inventor of the present utility model found that the existing cutter holders of cake cutting knives mainly have the following deficiencies, such as:

[0004] When the cutter holder of the slicing machine moves up and down and rotates for slicing, when the cutting knife cuts into the cake embryo and then moves out, fine parts inside the cake embryo will be taken out together and adhered to the surface of the cutting knife. After standing for a period of time, they will dry and adhere to the surface of the cutting knife and breed bacteria. When the cutting knife makes the next cut, it will expand the surface contact position of the cutting knife, causing damage to the cake embryo.

[0005] Therefore, it is necessary to propose a cutter holder mechanism of a cutting knife for a cake slicing machine. Content of the Utility Model

[0006] In order to solve the above technical problems, when the cutter holder of the slicing machine moves up and down and rotates for slicing, when the cutting knife cuts into the cake embryo and then moves out, fine parts inside the cake embryo will be taken out together and adhered to the surface of the cutting knife. After standing for a period of time, they will dry and adhere to the surface of the cutting knife and breed bacteria. When the cutting knife makes the next cut, it will expand the surface contact position of the cutting knife, causing damage to the cake embryo.

[0007] The purpose and effect of a cutter holder mechanism of a cutting knife for a cake slicing machine of the present utility model are achieved by the following specific technical means:

[0008] Its structure includes a conveyor belt, a cake embryo, a rotating motor, a telescopic rotating shaft, a cutter holder, and a fixed frame. The cake embryo is placed on the surface of the conveyor belt for conveying. The telescopic rotating shaft is connected to the rotating motor through a transmission belt. The cutter holder is installed below the telescopic rotating shaft for telescopic rotation control. The fixed frame is placed above the conveyor belt and below the cutter holder to adjust and fix the position of the cake embryo;

[0009] The tool holder includes a blade, a blade head, a limiting track, a moving block, and a pressure plate. The moving block is embedded in the limiting track for movement. The bottom ends of the moving block on both sides are fixed to the upper surface of the pressure plate. The blade head moves and rotates through the control of the telescopic rotating shaft to drive the whole. The pressure plates are provided with two and are symmetrically distributed and installed. The position between the two is fitted and abutted when the blade moves up and down. The pressure plate can abut and fix the parts on both sides of the cutting when the blade is cutting. The moving block is provided with two groups, both of which penetrate the limiting track for limited movement.

[0010] As a further improvement of the utility model, the limiting path is integrated with the cutter head, the blade and the cutter head are an integrated structure, the fixing frame is symmetrically installed in its own groove to allow the blade to cut more smoothly, and the knife holder is provided with two pieces that can process two cake embryos at the same time.

[0011] As a further improvement of the utility model, the moving block includes a second slideway, an extension block, a clamping block, and a positioning groove. The second slideway and the extension block are an integrated structure. The left and right ends of the clamping block are clamped into the inner groove of the second slideway for limited movement. The bottom end of the extension block is fixed in the positioning groove. The positioning groove is provided with four fixed on the upper surface of the pressure plate.

[0012] As a further improvement of the utility model, the block includes an auxiliary sliding block, a support block, an active block, and a positioning block. The support block extends the distance of the active block. The positioning block is provided with two blocks installed on the left and right sides of the active block. The support block supports the auxiliary sliding block to be clamped into the second slideway for position limiting. The positioning block is clamped into the limit track to limit the activity space of the active block.

[0013] As a further improvement of the utility model, the pressure plate includes a partition, a support plate, an elastic core, a rubber layer, and a soft pressure layer. The elastic core is fixed to the side of the support plate, the rubber layer is wrapped around the outer surface of the elastic core, and a positioning groove is fixed on the upper surface of the support plate.

[0014] As a further improvement of the utility model, the interlayer is attached between the soft laminate and the support plate, and the elastic core itself has a rebound effect, which plays a role in supporting and limiting bending and assisting return when the connecting part is stressed. The rubber layer is made of rubber material and can better resist the contact part.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] 1. When the knife holder moves down to cut the cake embryo, the pressure plate will first press against the upper surface of the cake embryo. When the cutter head drives the blade to continue to move down, the pressure plate will stay on the surface of the cake embryo. The pressure plate will hold the two sides of the position cut by the blade against each other, so that the blade can cut smoothly. The auxiliary slide block extended by the active block will move along the second slideway, so that the blade can cut smoothly, and the two sides of the inlet position will not be squeezed and deformed by the blade through fixation. When the blade needs to move upward after cutting, the two pressure plates will press against the surface of the blade, and the scraps on its surface will be intercepted at the cut gap, so that the blade can be pulled out without adhesion. When the cutter cuts the cake embryo, the cake embryos on both sides of the incision will be slightly held against each other and fixed, so that the cutter can cut smoothly without squeezing the cake embryo. When the cutter is pulled out of the cake embryo, the scraps adhered to the surface will be intercepted and dropped to prevent subsequent adhesion.

[0017] 2. The blade will pass between the two rubber layers during the downward movement, squeezing the rubber layers. The upper end of the soft laminate is supported by the support plate to fix the overall horizontal shape. The material of the soft laminate and the rubber layer itself can play a role of resisting against the surface of the cake embryo to assist in fixation. When the blade needs to be pulled out, the elastic core supports the resistance of the rubber layer to scrape the blade surface. The scraps will remain in the slitting gap to prevent the blade from sticking later. When the blade moves and cuts, it can stick to the blade surface and resist, effectively scraping off the bonded scraps. Brief Description of the Figures

[0018] Figure 1 This is a structural schematic diagram of a cake cutting machine of the utility model.

[0019] Figure 2 This is a structural schematic diagram of the knife holder mechanism of a cake cutting machine cutter of the utility model.

[0020] Figure 3 This is a three-dimensional structural schematic diagram of a moving block of the utility model.

[0021] Figure 4 This is a three-dimensional exploded structural diagram of a moving block of the utility model.

[0022] Figure 5 This is a three-dimensional structural schematic diagram of a card block of the utility model.

[0023] Figure 6 This is a schematic diagram of the internal structure of a pressing plate of the utility model.

[0024] In the figure: conveyor belt-1, cake embryo-2, rotating motor-3, telescopic rotating shaft-4, knife holder-5, fixed frame-6, blade-01, knife head-02, limit track-03, moving block-04, pressing plate-05, second slideway-41, extension block-42, card block-43, positioning groove-44, auxiliary slide block-g1, support block-g2, active block-g3, positioning block-g4, ​​interlayer-51, support plate-52, elastic core-53, rubber layer-54, soft pressing layer-55. Specific implementation method

[0025] The following is a further description of the utility model in conjunction with the accompanying drawings:

[0026] Example 1:

[0027] As attached Figure 1 To Attachment Figure 5 Shown:

[0028] The utility model provides a knife holder mechanism for a cake cutting machine, which structure includes a conveyor belt 1, a cake embryo 2, a rotating motor 3, a telescopic rotating shaft 4, a knife holder 5, and a fixed frame 6. The cake embryo 2 is placed on the surface of the conveyor belt 1 for transportation. The telescopic rotating shaft 4 is connected to the rotating motor 3 through a conveyor belt. The knife holder 5 is installed below the telescopic rotating shaft 4 for telescopic rotation control. The fixed frame 6 is placed above the conveyor belt 1 and below the knife holder 5 to adjust and fix the position of the cake embryo 2;

[0029] The tool holder 5 includes a blade 01, a blade head 02, a limiting track 03, a moving block 04, and a pressing plate 05. The moving block 04 is embedded in the limiting track 03 for movement. The bottom ends of the moving block 04 are fixed to the upper surface of the pressing plate 05. The blade head 02 is moved and rotated by the control of the telescopic rotating shaft 4 to drive the whole. The pressing plate 05 is provided with two and symmetrically distributed installations. The position between the two is fitted and abutted when the blade 01 moves up and down. The pressing plate 05 can abut and fix the parts on both sides of the cutting when the blade 01 is cutting. The moving block 04 is provided with two groups, both of which penetrate the limiting track 03 for limiting movement. The pressing plate 05 is installed in a horizontal position.

[0030] Wherein, the limiting path 03 and the cutter head 02 are integrated, the blade 01 and the cutter head 02 are an integrated structure, the fixing frame 6 is symmetrically installed in its own groove to allow the blade 01 to cut more smoothly, the knife holder 5 is provided with two pieces that can process two cake embryos 2 at the same time, and the moving block 04 is a symmetrical structure that is U-shaped as a whole and can be moved and adjusted.

[0031] Among them, the moving block 04 includes a second slideway 41, an extension block 42, a clamping block 43, and a positioning groove 44. The second slideway 41 and the extension block 42 are of an integrated structure. The left and right ends of the clamping block 43 are clamped into the inner groove of the second slideway 41 for limited movement. The bottom end of the extension block 42 is fixed in the positioning groove 44. Four positioning grooves 44 are provided and fixed on the upper surface of the pressing plate 05. Four second slideways 41 are provided and two are in a group.

[0032] Among them, the clamping block 43 includes an assisting sliding block g1, a supporting block g2, a driving block g3, and a positioning block g4. The distance that the supporting block g2 extends from the driving block g3. Two positioning blocks g4 are provided in a group and installed on the left and right sides of the driving block g3. The supporting block g2 supports the assisting sliding block g1 to be clamped into the second slideway 41 for limitation. The positioning block g4 is clamped into the limiting channel 03 to limit the movement space of the driving block g3. The positioning block g4 is smoother than the assisting sliding block g1 at the connecting part. When bearing an external force, the positioning block g4 will drive the whole to slide first. When moving to the maximum range, the part connected with the assisting sliding block g1 will slide.

[0033] The specific usage method and function of this embodiment:

[0034] In the present utility model, the baked cake embryo 2 is placed on the conveyor belt 1 for transmission. When the cake embryo 2 is transmitted below the knife rest 5, the fixed frame 6 pushes and adjusts the positions of the two cake embryos 2. The rotating motor 3 controls the telescopic rotating shaft 4 to drive the knife rest 5 to cut the cake embryo 2. When the knife rest 5 moves down to cut the cake embryo 2, the pressing plate 05 first abuts against the upper surface of the cake embryo 2. When the knife head 02 drives the blade 01 to continuously move down, the pressing plate 05 will stay on the surface of the cake embryo 2. The positioning block g4 of the moving block 04 is clamped into the limiting channel 03 for movement, so that the pressing plate 05 keeps moving down with the top blade 01. The pressing plate 05 resists and fixes the two sides of the position cut by the blade 01, enabling the blade 01 to cut smoothly. When the blade 01 continuously moves down, the moving block 04 moves to the top end of the limiting channel 03 and is blocked by a resistance. The assisting sliding block g1 extended by the driving block g3 will move along the second slideway 41, enabling the blade 01 to cut smoothly, and the two sides of the cut-in position will not be deformed by the extrusion of the blade 01 due to fixation. When the blade 01 needs to move up after cutting, the assisting sliding block g1 moves along the second slideway 41, and g4 moves along the limiting channel 03. When the knife surface is continuously withdrawn, the two pressing plates 05 resist the surface of the blade 01, intercepting the debris on its surface at the cut gap, enabling the blade 01 to be withdrawn without adhesion.

[0035] Embodiment 2:

[0036] As shown in the Figure 6 appendix

[0037] The pressing plate 05 includes a partition 51, a support plate 52, an elastic core 53, a rubber layer 54, and a soft pressing layer 55. The elastic core 53 is fixed to the side of the support plate 52, and the rubber layer 54 is wrapped around the outer surface of the elastic core 53. A positioning groove 44 is fixed on the upper surface of the support plate 52. The soft pressing layer 55 is a rubber soft layer that can better resist the surface of the cake embryo 2.

[0038] Wherein, the interlayer 51 is attached between the soft laminate 55 and the support plate 52. The elastic core 53 itself has a rebound effect, and plays a role in supporting and limiting bending and assisting return when the connecting part is stressed. The rubber layer 54 is made of rubber material and can better resist the contact part. The support plate 52 supports the overall position and shape.

[0039] Specific usage and function of this embodiment:

[0040] In the utility model, when the knife holder 5 moves down to cut the cake embryo 2, the pressing plate 05 first contacts and fixes the surface of the cake embryo 2. During the downward movement of the blade 01, it will pass between the two rubber layers 54, squeezing the rubber layer 54 so that the rubber layer 54 can be bent and fit on the surface of the blade 01. The elastic core 53 inside limits the bending range. The soft pressing layer 55 contacts the rubber layer 54 on the surface of the cake embryo 2, playing a slight fixing role, so that the blade 01 can be smoothly cut. The upper end of the soft pressing layer 55 is supported and fixed by the supporting plate 52 to maintain the overall horizontal shape. The materials of the soft pressing layer 55 and the rubber layer 54 can contact and assist in fixing the surface of the cake embryo 2. When the blade 01 needs to be pulled out, the elastic core 53 supports the contact force of the rubber layer 54 to scrape the surface of the blade 01, so that when the blade 01 is pulled out, the scraps will be left in the cutting gap to prevent the blade 01 from sticking later.

[0041] The above-mentioned technical effects can be achieved by utilizing the technical solution described in the utility model, or by those skilled in the art designing similar technical solutions inspired by the technical solution of the utility model, which all fall within the protection scope of the utility model.

Claims

1. A knife holder mechanism for a cake cutting machine, the structure of which comprises a conveyor belt (1), a cake embryo (2), a rotating motor (3), a telescopic rotating shaft (4), a knife holder (5), and a fixed frame (6), wherein the cake embryo (2) is placed on the surface of the conveyor belt (1) for conveying, the telescopic rotating shaft (4) and the rotating motor (3) are connected through a conveyor belt, the knife holder (5) is installed below the telescopic rotating shaft (4) for telescopic rotation control, and the fixed frame (6) is placed above the conveyor belt (1) and below the knife holder (5) for position adjustment and fixing of the cake embryo (2), characterized in that: The tool holder (5) comprises a blade (01), a blade head (02), a limiting track (03), a moving block (04), and a pressing plate (05); the moving block (04) is embedded in the limiting track (03) for movement; the bottom ends of both sides of the moving block (04) are fixed to the upper surface of the pressing plate (05); the blade head (02) is moved and rotated by the control of the telescopic rotating shaft (4) to drive the whole; two pressing plates (05) are provided and symmetrically distributed and installed; the position between the two pressing plates is fitted and abutted when the blade (01) moves up and down; the pressing plate (05) can abut and fix the parts on both sides of the cutting when the blade (01) is cutting.

2. The knife holder mechanism of a cake cutting machine according to claim 1, characterized in that: The limiting path (03) and the cutter head (02) are integrated, the blade (01) and the cutter head (02) are an integrated structure, and the fixing frame (6) is installed in a symmetrical position in its own groove to enable the blade (01) to cut more smoothly.

3. The knife holder mechanism of a cake cutting machine according to claim 1, characterized in that: The moving block (04) comprises a second slideway (41), an extension block (42), a clamping block (43) and a positioning groove (44); the second slideway (41) and the extension block (42) are an integrated structure; the left and right ends of the clamping block (43) are clamped into the inner groove of the second slideway (41) for limited movement; the bottom end of the extension block (42) is fixed in the positioning groove (44).

4. The knife holder mechanism of a cake cutting machine according to claim 3, characterized in that: The clamping block (43) comprises an auxiliary sliding block (g1), a supporting block (g2), an active block (g3), and a positioning block (g4); the supporting block (g2) extends a distance from the active block (g3); a group of two positioning blocks (g4) are installed on the left and right sides of the active block (g3); the supporting block (g2) supports the auxiliary sliding block (g1) to be clamped into the interior of the second slideway (41) for limiting.

5. The knife holder mechanism of a cake cutting machine according to claim 1, characterized in that: The pressing plate (05) comprises a partition layer (51), a support plate (52), an elastic core (53), a rubber layer (54), and a soft pressing layer (55); the elastic core (53) is fixed to the side of the support plate (52), and the rubber layer (54) is wrapped around the outer surface of the elastic core (53).

6. The knife holder mechanism of a cake cutting machine according to claim 5, characterized in that: The partition layer (51) is attached between the soft laminate layer (55) and the support plate (52), and the elastic core (53) itself has a rebound effect, and plays a role in supporting, limiting bending and assisting return when the connecting part is subjected to force.