CN112873423B - Cake cutting device for wood sticks - Google Patents

Cake cutting device for wood sticks Download PDF

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Publication number
CN112873423B
CN112873423B CN202110055179.0A CN202110055179A CN112873423B CN 112873423 B CN112873423 B CN 112873423B CN 202110055179 A CN202110055179 A CN 202110055179A CN 112873423 B CN112873423 B CN 112873423B
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China
Prior art keywords
block
rotating shaft
sliding
shaft
sliding block
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Application number
CN202110055179.0A
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Chinese (zh)
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CN112873423A (en
Inventor
罗仕兵
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Nanjing Antuo Technology Co ltd
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Nanjing Antuo Technology Co ltd
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Priority to CN202110055179.0A priority Critical patent/CN112873423B/en
Publication of CN112873423A publication Critical patent/CN112873423A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B5/00Sawing machines working with circular or cylindrical saw blades; Components or equipment therefor
    • B27B5/02Sawing machines working with circular or cylindrical saw blades; Components or equipment therefor characterised by a special purpose only
    • B27B5/06Sawing machines working with circular or cylindrical saw blades; Components or equipment therefor characterised by a special purpose only for dividing plates in parts of determined size, e.g. panels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B25/00Feeding devices for timber in saw mills or sawing machines; Feeding devices for trees
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B27/00Guide fences or stops for timber in saw mills or sawing machines; Measuring equipment thereon
    • B27B27/02Guide fences or stops for timber in saw mills or sawing machines; Measuring equipment thereon arranged laterally and parallel with respect to the plane of the saw blade
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B27/00Guide fences or stops for timber in saw mills or sawing machines; Measuring equipment thereon
    • B27B27/10Devices for moving or adjusting the guide fences or stops
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B29/00Gripping, clamping, or holding devices for the trunk or log in saw mills or sawing machines; Travelling trunk or log carriages
    • B27B29/02Clamping angles; Gripping equipment thereon
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B31/00Arrangements for conveying, loading, turning, adjusting, or discharging the log or timber, specially designed for saw mills or sawing machines
    • B27B31/08Discharging equipment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27BSAWS FOR WOOD OR SIMILAR MATERIAL; COMPONENTS OR ACCESSORIES THEREFOR
    • B27B5/00Sawing machines working with circular or cylindrical saw blades; Components or equipment therefor
    • B27B5/29Details; Component parts; Accessories

Abstract

The invention relates to a cake cutting device, in particular to a cake cutting device for a wooden stick. The cake cutting device for the wood stick is free from manual fixing and processing, high in flexibility and high in processing efficiency. The invention provides a cake cutting device for a wooden stick, which comprises: the base is used for installing the whole device; the cutting mechanism is arranged in the middle of the top of the base; and the limiting mechanism is arranged on one side of the cutting mechanism. The baffle plate is matched with the clamping bolt, the position of the baffle plate can be adjusted according to different requirements, and then the clamping bolt is rotated, so that the clamping bolt can fix the baffle plate at the top of the mounting table, and wood sticks with different widths can be cut out by the saw gear.

Description

Cake cutting device for wood sticks
Technical Field
The invention relates to a cake cutting device, in particular to a cake cutting device for a wooden stick.
Background
The wood stick is widely applied to furniture and home decoration, and the traditional wood stick processing is to adopt a whole piece of wood to manufacture the wood stick through cutting, then cut off the wood stick, and spray paint decorative layers on the surface to achieve the product style required by users. In the processing process, the wooden sticks are required to be fixed manually and pushed to the position of the blade for cutting, and as each wooden stick is required to be made of solid wood materials, the labor intensity of workers in the cutting process is high, and as no protective measures are provided, the wooden sticks have potential safety hazards to the workers. Therefore, most of the prior art machines for cutting wood sticks have been used, and at the moment, because the flexibility of the machine is not high, if wood sticks with different lengths are cut according to the requirements of users, the limiting parts of the machine need to be replaced, so that the machining efficiency is low.
Therefore, a cake cutting device for a wooden stick, which does not need manual fixing and processing, has high flexibility and high processing efficiency, needs to be designed.
Disclosure of Invention
In order to overcome the defects of low flexibility and low processing efficiency of a machine caused by manual fixing and processing of a wood stick, the cake cutting device for the wood stick is free from manual fixing and processing, high in flexibility and high in processing efficiency.
A cut cake device for stick, including: the base is used for installing the whole device; the cutting mechanism is arranged in the middle of the top of the base; and the limiting mechanism is arranged on one side of the cutting mechanism.
Optionally, the cutting mechanism comprises: the first struts are uniformly arranged at the top of the base, and the number of the first struts is four; the mounting table is arranged between the tops of the first support posts; the base plate is arranged on one side of the top of the base; the first servo motor is arranged at the top of the base plate; the first bearing seat is arranged at the bottom of the mounting table; the first rotating shaft is arranged in the first bearing seat; the first belt transmission assembly is arranged between the output shaft of the first servo motor and the first rotating shaft; and the saw gear is arranged on the first rotating shaft.
Optionally, the limiting mechanism includes: the baffle is arranged at the top of the mounting table; the first connecting blocks are symmetrically arranged on one side of the baffle plate, and the number of the first connecting blocks is two; the clamping bolts are arranged on the first connecting block in a rotary mode, the number of the clamping bolts is two, and the clamping bolts are matched with round holes in the top of the mounting table.
Optionally, the device further comprises a moving mechanism, the moving mechanism is arranged between the top of the base and the mounting table, and the moving mechanism comprises: the second support is arranged on one side, far away from the base plate, of the top of the base; the second servo motor is arranged at the top of the second support column; the first rotary disc is arranged on the output shaft of the second servo motor; the first fixed shaft is arranged on the first rotary table; the second connecting block is rotatably arranged on the first fixed shaft; the second fixing shaft is arranged on the second connecting block; the first sliding block is arranged in the mounting table in a sliding mode and is rotationally connected with the second fixed shaft; the first sliding chute block is arranged on the first sliding block; the first stop block is arranged in the first chute block in a sliding manner; the second sliding block is arranged on the first stop block and is in sliding contact with the first chute block; the first spring is arranged between the second sliding block and the inner wall of the first sliding groove block; the sleeve is arranged at the end part of the second sliding block; the bolts are all rotationally arranged on the sleeve, and the number of the bolts is three.
Optionally, still including screens mechanism, screens mechanism sets up in one side of mount table, screens mechanism including: the second chute block is arranged on one side of the mounting table; the third sliding block is arranged in the second sliding groove block in a sliding manner; the clamping block is arranged at the end part of the third sliding block; and the second spring is arranged between the third sliding block and the second sliding groove block.
Optionally, the utility model also comprises a sliding mechanism, wherein the sliding mechanism is arranged at the top of the mounting table and comprises: the fourth sliding block is arranged on one side of the baffle close to the second chute block in a sliding manner; the third chute block is arranged at the top of the mounting table; the fifth sliding block is arranged in the third sliding groove block in a sliding mode and is connected with the fourth sliding block; and the third spring is arranged between the fourth sliding block and the third sliding groove block, and the third spring is sleeved on the fifth sliding block.
Optionally, still including extracting mechanism, extracting mechanism sets up at the mount table top, extracting mechanism including: the third connecting block is arranged on the fourth sliding block; the first rack is arranged on the third connecting block; the second bearing seat is arranged on the mounting table; the second rotating shaft is arranged in the second bearing seat; the first straight gear is arranged on the second rotating shaft; the third bearing seat is arranged on one side of the second bearing seat; the third rotating shaft is arranged in the third bearing seat; the second straight gear is arranged on the third rotating shaft, and the first straight gear is meshed with the second straight gear; the first bevel gear is arranged on the third rotating shaft; the fourth bearing seat is arranged on one side of the baffle plate; the fourth rotating shaft is arranged in the fourth bearing seat; the second bevel gear is arranged on the fourth rotating shaft, and the first bevel gear is meshed with the second bevel gear; the fifth bearing seat is arranged on one side of the baffle close to the fourth bearing seat; the fifth rotating shaft is arranged in the fifth bearing seat; the second belt transmission assembly is arranged between the fifth rotating shaft and the fourth rotating shaft; the third support is arranged at one side of the top of the baffle plate, which is far away from the fifth bearing seat; the first fixed sliding block is arranged at the top of the third support column; the third straight gear is arranged on the fifth rotating shaft; the fourth connecting block is arranged at the top of the first fixed sliding block; the second rack is arranged on one side of the first fixed sliding block, close to the fifth bearing seat, in a sliding manner and meshed with the third straight gear; the fourth spring is arranged between the top of the second rack and the fourth connecting block; the round groove block is arranged at the bottom of the second rack; the second fixed sliding blocks are symmetrically arranged in the grooves at the lower part of the second rack, and the number of the second fixed sliding blocks is two; the sixth sliding block is arranged in the groove at the lower part of the second rack; the clamping teeth are arranged between the sixth sliding block and the two second fixed sliding blocks in a sliding mode; and the fifth spring is arranged between the latch and the sixth sliding block.
Optionally, the device further comprises a striking mechanism, the striking mechanism is arranged between the top of the mounting table and the material taking mechanism, and the striking mechanism comprises: the sixth bearing seat is arranged on one side of the fifth bearing seat; the second stop block is arranged on one side, close to the sixth bearing seat, of the second rack; the fourth chute block is arranged on one side of the fifth bearing seat, which is close to the sixth bearing seat; the seventh sliding block is arranged in the fourth sliding groove block in a sliding manner; an eighth slider arranged on top of the seventh slider; the sixth spring is arranged between the eighth sliding block and the fourth sliding groove block, and is sleeved on the seventh sliding block; the third rack is arranged at the bottom of the seventh sliding block; the seventh bearing seat is arranged on one side of the fixed plate on the fifth bearing seat; the sixth rotating shaft is arranged in the seventh bearing seat; the fourth straight gear is arranged on the sixth rotating shaft and meshed with the third rack; the third bevel gear is arranged on the sixth rotating shaft; the eighth bearing seat is arranged on one side, far away from the seventh bearing seat, of the fixing plate on the fifth bearing seat; the seventh rotating shaft is arranged in the eighth bearing seat; the fourth bevel gear is arranged on the seventh rotating shaft, and the third bevel gear is meshed with the fourth bevel gear; the eighth rotating shaft is rotatably arranged on the fixed plate on the fifth bearing seat; the third belt transmission assembly is arranged between the seventh rotating shaft and the eighth rotating shaft; the ninth rotating shaft is rotatably arranged on a fixed plate on the fifth bearing seat, and the eighth rotating shaft is connected with the ninth rotating shaft; the second rotary table is arranged on the ninth rotary shaft; the connecting rod is arranged on one side of the fifth bearing seat; the third fixed shaft is arranged on the connecting rod; the rotating rod is rotatably arranged on the third fixed shaft; the fifth connecting blocks are symmetrically arranged on one side of the rotating rod, and the number of the fifth connecting blocks is two; the fourth fixed shaft is arranged between the fifth connecting blocks; the sixth connecting block is rotatably arranged on the fourth fixed shaft; the fifth fixed shaft is arranged at the top of the second rotary table, and the sixth connecting block is rotationally connected with the fifth fixed shaft; the striking column is arranged on one side of the rotating rod; the material blocking block is arranged in the middle of the top of the mounting table.
Compared with the prior art, the invention has the following advantages: 1. the baffle plate is matched with the clamping bolt, the position of the baffle plate can be adjusted according to different requirements, and then the clamping bolt is rotated, so that the clamping bolt can fix the baffle plate at the top of the mounting table, and wood sticks with different widths can be cut out by the saw gear.
2. The second sliding block, the first spring, the sleeve and the bolt are matched, the wood stick is placed in the sleeve, the end part of the wood stick is propped against the baffle, the wood stick is clamped under the action of the first spring, then the bolt is rotated, the bolt is enabled to fix the wood stick in the sleeve, after the wood stick is cut off, the second sliding block continuously pushes the wood stick backwards under the action of the first spring, and the wood stick is propped against the baffle again, so that the wood stick is continuously fixed.
3. Adopt the cooperation between fixture block, second slider and the second spring, the second slider moves leftwards and contacts with the fixture block, and the second spring is compressed, makes the fixture block the second slider, and when the stick was cut off, the second slider did not move forward to make the stick that cuts off drop, so as to guarantee that the stick that cuts off at every turn is the equidistance.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a first part of the present invention.
Fig. 3 is a schematic perspective view of a second part of the present invention.
Fig. 4 is a schematic perspective view of a third portion of the present invention.
Fig. 5 is a schematic perspective view of a fourth part of the present invention.
Fig. 6 is a schematic perspective view of a fifth part of the present invention.
Fig. 7 is a schematic perspective view of a sixth part of the present invention.
Fig. 8 is a schematic perspective view of a seventh part of the present invention.
Fig. 9 is a schematic perspective view of an eighth portion of the present invention.
Fig. 10 is a schematic perspective view of an eighth portion of the present invention.
Fig. 11 is a schematic perspective view of an eighth portion of the present invention.
The reference symbols in the drawings: 1-base, 2-cutting mechanism, 20-first pillar, 21-mounting table, 22-backing plate, 23-first servo motor, 24-first bearing seat, 25-first rotating shaft, 26-first belt transmission component, 27-saw gear, 3-limiting mechanism, 30-baffle, 31-first, 32-latch, 4-moving mechanism, 40-second pillar, 41-second servo motor, 42-first turntable, 43-first fixed shaft, 44-first slider, 45-second fixed shaft, 46-second connecting block, 47-first chute block, 48-first stopper, 49-second slider, 410-first spring, 411-sleeve, 412-bolt, 5-latch mechanism, 50-second chute block, 51-clamping block, 52-third sliding block, 53-second spring, 6-sliding mechanism, 60-fourth sliding block, 61-third sliding block, 62-fifth sliding block, 63-third spring, 7-taking mechanism, 70-third connecting block, 71-first rack, 72-second bearing block, 73-second rotating shaft, 74-first straight gear, 75-third bearing block, 76-third rotating shaft, 77-second straight gear, 78-first bevel gear, 79-fourth bearing block, 710-fourth rotating shaft, 711-second bevel gear, 712-fifth bearing block, 713-fifth rotating shaft, 714-second belt transmission component, 715-third supporting column, 716-first fixed sliding block, 717-third spur gear, 718-second rack, 719-fourth connecting block, 720-fourth spring, 721-round slot block, 722-second fixed slider, 723-latch, 724-sixth slider, 725-fifth spring, 8-striking mechanism, 80-sixth bearing block, 81-second stopper, 82-fourth slot block, 83-seventh slider, 84-sixth spring, 85-eighth slider, 86-third rack, 87-seventh bearing block, 88-sixth spindle, 89-fourth spur gear, 810-eighth bearing block, 811-seventh spindle, 812-third bevel gear, 813-fourth bevel gear, 814-eighth spindle, 815-third belt drive assembly, 816-ninth spindle, 817-second turntable, 818-connecting rod, 819-third fixed shaft, 820-rotary rod, 821-fifth connecting block, 822-fourth fixed shaft, 823-fifth fixed shaft, 824-sixth connecting block, 825-striking column, 826-block.
Detailed Description
The following describes the technical scheme with reference to specific embodiments, and it should be noted that: terms indicating orientations, such as up, down, left, right, etc., are used herein only with respect to the position of the illustrated structure in the corresponding drawings. The parts themselves are numbered herein, for example: first, second, etc. are used solely to distinguish between the described objects and do not have any sequential or technical meaning. And the application is said to be as follows: connection, coupling, unless specifically stated otherwise, includes both direct and indirect connection (coupling).
Example 1
A cut cake device for stick, as shown in figure 1, includes base 1, shutdown mechanism 2 and stop gear 3, and the middle part of base 1 top is equipped with shutdown mechanism 2, and shutdown mechanism 2 right part is equipped with stop gear 3.
Before starting the device, the staff adjusts the position of stop gear 3 according to the requirement, fixes after the adjustment finishes, starts cutting mechanism 2 work, then the staff removes the stick to cutting mechanism 2's position, makes cutting mechanism 2 cut off the stick, and the stick of cutting off drops to base 1, and after the stick was cut off completely, cut off cutting mechanism 2, and the staff can collect the stick of cutting off at last.
Example 2
On the basis of embodiment 1, as shown in fig. 2 and 3, the cutting mechanism 2 comprises a first support 20, an installation table 21, a base plate 22, a first servo motor 23, a first bearing seat 24, a first rotating shaft 25, a first belt transmission assembly 26 and a saw gear 27, wherein four first support 20 are uniformly arranged at the top of the base 1, the installation table 21 is arranged between the tops of the first support 20, the base plate 22 is arranged at the left part of the top of the base 1, the first servo motor 23 is arranged at the top of the base plate 22, the first bearing seat 24 is arranged at the bottom of the installation table 21, the first rotating shaft 25 is arranged in the first bearing seat 24, the first belt transmission assembly 26 is connected between the output shaft of the first servo motor 23 and the first rotating shaft 25, and the saw gear 27 is connected on the first rotating shaft 25.
The first servo motor 23 is started by a worker to work, the first servo motor 23 drives the first rotating shaft 25 to rotate through the first belt transmission assembly 26, the first rotating shaft 25 drives the saw gear 27 to rotate, and the saw gear 27 cuts off the wood stick.
Stop gear 3 is including baffle 30, first linkage block 31 and latch 32, and baffle 30 has been placed at the mount table 21 top, and baffle 30 rear side symmetry is equipped with first linkage block 31, all rotates on the first linkage block 31 and is equipped with latch 32, and latch 32 all cooperatees with the round hole at mount table 21 top.
The staff can adjust the position of baffle 30 according to the requirement, then rotates clip 32, makes clip 32 fix baffle 30 at the mount table 21 top, when cutting off the work, supports the rod tip at baffle 30, then promotes the rod to the left, makes saw gear 27 cut off the rod, after cutting off, moves the rod to the original position right, makes the rod tip support baffle 30 again, so reciprocating.
Example 3
On the basis of embodiment 2, as shown in fig. 4 to 11, the device further comprises a moving mechanism 4, wherein the moving mechanism 4 is arranged between the right side of the top of the base 1 and the mounting table 21, the moving mechanism 4 comprises a second support column 40, a second servo motor 41, a first rotary table 42, a first fixed shaft 43, a first sliding block 44, a second fixed shaft 45, a second connecting block 46, a first sliding chute block 47, a first stop block 48, a second sliding block 49, a first spring 410, a sleeve 411 and a bolt 412, the right side of the top of the base 1 is provided with the second support column 40, the second servo motor 41 is arranged at the top of the second support column 40, a first rotary table 42 is arranged on an output shaft of the second servo motor 41, a first fixed shaft 43 is arranged on the first rotary table 42, a second connecting block 46 is arranged on the second fixed shaft 46, a first sliding block 44 is arranged in the mounting table 21 in a sliding manner, the first sliding block 44 is connected with the second fixed shaft 45 in a sliding manner, a first sliding chute block 47 is arranged on the first sliding block 47, a first sliding block 48 is arranged in the sliding manner, a first sliding block 48 is connected with the second sliding block 49 is arranged on the second sliding block 47, a first sliding block 49 is arranged on the second sliding block 49 is connected with the second sliding block 49, and the first sliding block 49 is arranged between the first sliding block and the first sliding block 47 and the second sliding block is in a sliding block 49 is arranged on the sliding block 49.
The staff can pull the first stop block 48 forward to drive the second slide block 49 to slide forward, place the stick in the sleeve 411, make the tip of stick support baffle 30, press from both sides tightly the stick under the effect of first spring 410, then rotate bolt 412, make bolt 412 fix the stick in the sleeve 411, then start the work of second servo motor 41, the second servo motor 41 drives first carousel 42 and rotates, first carousel 42 drives first fixed axle 43 and moves circularly, thereby drive first slider 44 through the second connecting block 46 and slide about, first slider 44 drives first spout piece 47 and slides about, thereby drive the stick to move about, make the stick cut off by saw gear 27 constantly, after the stick cuts off, under the effect of first spring 410, second slider 49 continues to push the stick backward, make the stick support baffle 30 again, the stick resets under the drive of first slider 44 simultaneously.
The clamping mechanism 5 is arranged on the front side of the mounting table 21, the clamping mechanism 5 comprises a second chute block 50, a clamping block 51, a third sliding block 52 and a second spring 53, the second chute block 50 is arranged on the front side of the mounting table 21, the third sliding block 52 is arranged in the second chute block 50 in a sliding mode, the clamping block 51 is arranged at the end portion of the third sliding block 52, and the second spring 53 is arranged between the third sliding block 52 and the second chute block 50.
When the first chute block 47 slides leftwards, the second slide block 49 moves leftwards to be in contact with the clamping block 51, the second spring 53 is compressed, the second slide block 49 is uniformly provided with a plurality of grooves at intervals, so that the clamping block 51 clamps the second slide block 49, when a wood stick is cut off, the second slide block 49 does not move, so that the cut wood stick falls down, when the first chute block 47 slides rightwards, the second slide block 49 moves rightwards to be out of contact with the clamping block 51, the second spring 53 is reset, at the moment, under the action of the first spring 410, the second slide block 49 continues to push the wood stick backwards to enable the wood stick to lean against the baffle 30 again, and when the clamping block 51 contacts the second slide block 49 again, the clamping block 51 clamps the position of the next groove, so that the cut wood stick is ensured to be equidistant.
The sliding mechanism 6 is arranged at the top of the mounting table 21, the sliding mechanism 6 comprises a fourth sliding block 60, a third sliding groove block 61, a fifth sliding block 62 and a third spring 63, the fourth sliding block 60 is arranged at the front side of the baffle 30 in a sliding mode, the third sliding groove block 61 is arranged at the top of the mounting table 21, the fifth sliding block 62 is arranged in the third sliding groove block 61 in a sliding mode, the fifth sliding block 62 is connected with the fourth sliding block 60, the third spring 63 is arranged between the fourth sliding block 60 and the third sliding groove block 61, and the third spring 63 is sleeved on the fifth sliding block 62.
Before the device is started, the position of the third sliding groove block 61 can be adjusted according to the position of the limiting mechanism 3, the third sliding groove block 61 is fixed after the adjustment is finished, then when the cutting operation is carried out, the end part of the wood rod is propped against the fourth sliding block 60, so that the fourth sliding block 60 and the wood rod move towards the saw gear 27 together, the fifth sliding block 62 is driven to slide leftwards, the third spring 63 is compressed, and after the cutting operation is finished, the wood rod is driven to move rightwards and reset under the cooperation of the third spring 63 and the first sliding block 44.
The utility model also comprises a material taking mechanism 7, the top of the mounting table 21 is provided with the material taking mechanism 7, the material taking mechanism 7 comprises a third connecting block 70, a first rack 71, a second bearing 72, a second rotating shaft 73, a first straight gear 74, a third bearing seat 75, a third rotating shaft 76, a second straight gear 77, a first bevel gear 78, a fourth bearing seat 79, a fourth rotating shaft 710, a second bevel gear 711, a fifth bearing seat 712, a fifth rotating shaft 713, a second belt transmission component 714, a third support 715, a first fixed slide 716, a third straight gear 717, a second rack 718, a fourth connecting block 719, a fourth spring 720, a circular groove block 721, a second fixed slide 722, a latch 723, a sixth slide 724 and a fifth spring 725, a third connecting block 70 is arranged on the fourth slide 60, a first rack 71 is arranged on the third connecting block 70, a second bearing seat 72 is arranged on the mounting table 21, a second rotating shaft 73 is arranged in the second bearing seat 72, the second rotating shaft 73 is provided with a first straight gear 74, the rear side of the second rotating shaft 72 is provided with a third bearing seat 75, a third rotating shaft 76 is arranged in the third bearing seat 75, the third rotating shaft 76 is provided with a second straight gear 77, the first straight gear 74 is meshed with the second straight gear 77, the third rotating shaft 76 is provided with a first bevel gear 78, the left side of the baffle 30 is provided with a fourth bearing seat 79, the fourth bearing seat 79 is internally provided with a fourth rotating shaft 710, the fourth rotating shaft 710 is provided with a second bevel gear 711, the first bevel gear 78 is meshed with the second bevel gear 711, the left side of the baffle 30 is provided with a fifth bearing seat 712, a fifth rotating shaft 713 is arranged in the fifth bearing seat 712, a second belt transmission assembly 714 is arranged between the fifth rotating shaft 713 and the fourth rotating shaft 710, the right part of the top of the baffle 30 is provided with a third support post 715, the top of the third support post 715 is provided with a first fixed slide 716, the fifth rotating shaft 713 is provided with a third straight gear 717, the top of the first fixed sliding block 716 is provided with a fourth connecting block 719, the left side of the first fixed sliding block 716 is provided with a second rack 718 in a sliding mode, the second rack 718 is meshed with a third straight gear 717, a fourth spring 720 is arranged between the top of the second rack 718 and the fourth connecting block 719, the bottom of the second rack 718 is provided with a round groove block 721, second fixed sliding blocks 722 are symmetrically arranged in grooves in the lower portion of the second rack 718, a sixth sliding block 724 is arranged in grooves in the lower portion of the second rack 718, a latch 723 is arranged between the sixth sliding block 724 and the two second fixed sliding blocks 722 in a sliding mode, and a fifth spring 725 is arranged between the latch 723 and the sixth sliding block 724.
Before the device is started, the position of the second shaft 72 can be adjusted according to the position of the limiting mechanism 3, after the adjustment is finished, the second shaft 713 is fixed, when the fourth slider 60 moves leftwards, the first rack 71 is driven to move leftwards, the first rack 71 is meshed with the first straight gear 74, thereby the third shaft 76 is driven to rotate through the meshing of the first straight gear 74 and the second straight gear 77, the third shaft 76 is driven to rotate through the meshing of the first bevel gear 78 and the second bevel gear 711, the fourth shaft 710 drives the fifth shaft 713 to rotate through the second belt transmission assembly 714, the fifth shaft 713 drives the third straight gear 717 to rotate, the second rack 718 is driven to move downwards through the meshing of the third straight gear 717 and the second rack 718, the fourth spring 720 is stretched, the second rack 718 drives the round groove block 721 to move downwards to the position of the fourth slider 60, the cut-off wood rod is pushed into the round groove block 721 at this moment, under the action of the fifth spring 725, the clamping tooth is driven to rotate the wood rod to clamp the wood rod 60 rightwards, and when the fourth slider 60 is cut off, the fourth rod 720 is driven to move upwards through the fourth spring 718, and the fourth rod 718 is driven to move upwards through the reset member.
The device also comprises a striking mechanism 8, a striking mechanism 8 is arranged between the top of the mounting table 21 and the material taking mechanism 7, the striking mechanism 8 comprises a sixth bearing seat 80, a second stop block 81, a fourth sliding groove block 82, a seventh sliding block 83, a sixth spring 84, an eighth sliding block 85, a third rack 86, a seventh bearing seat 87, a sixth rotating shaft 88, a fourth straight gear 89, an eighth bearing seat 810, a seventh rotating shaft 811, a third bevel gear 812, a fourth bevel gear 813, an eighth rotating shaft 814, a third belt transmission assembly 815, a ninth rotating shaft 816, a second rotary disc 817, a connecting rod 818, a third fixed shaft 819, a rotary rod 820, a fifth connecting block 821, a fourth fixed shaft 822, a fifth fixed shaft 823, a sixth connecting block 824, a striking post 825 and a stop block 826, the sixth bearing seat 80 is arranged on the left side of the fifth bearing seat 712, the second stop block 81 is arranged on the left side of the second rack 718, a fourth sliding groove block 82 is arranged on the left side of the fifth bearing seat 712, a seventh sliding block 83 is arranged in the fourth sliding groove block 82 in a sliding manner, an eighth sliding block 85 is arranged at the top of the seventh sliding block 83, a sixth spring 84 is arranged between the eighth sliding block 85 and the fourth sliding groove block 82, the sixth spring 84 is sleeved on the seventh sliding block 83, a third rack 86 is arranged at the bottom of the seventh sliding block 83, a seventh bearing seat 87 is arranged on the rear side of a fixed plate at the middle part of the left side of the fifth bearing seat 712, a sixth rotating shaft 88 is arranged in the seventh bearing seat 87, a fourth straight gear 89 is arranged on the sixth rotating shaft 88, the fourth straight gear 89 is meshed with the third rack 86, a third conical gear 812 is arranged on the sixth rotating shaft 88, an eighth bearing seat 810 is arranged on the front side of a fixed plate at the middle part of the left side of the fifth bearing seat 712, a seventh rotating shaft 811 is connected with a fourth conical gear 813, the third conical gear 812 is meshed with the fourth conical gear 813, the fixed plate in the middle of the left side of the fifth bearing pedestal 712 is rotatably provided with an eighth rotating shaft 814, a third belt transmission assembly 815 is arranged between the seventh rotating shaft 811 and the eighth rotating shaft 814, the fixed plate in the middle of the left side of the fifth bearing pedestal 712 is rotatably provided with a ninth rotating shaft 816, the eighth rotating shaft 814 is connected with the ninth rotating shaft 816, the ninth rotating shaft 816 is provided with a second rotary table 817, the middle of the front side of the fifth bearing pedestal 712 is provided with a connecting rod 818, the connecting rod 818 is provided with a third fixed shaft 819, the third fixed shaft 819 is rotatably provided with a rotary rod 820, the rear part of the left side of the rotary rod 820 is symmetrically provided with a fifth connecting block 821, a fourth fixed shaft 822 is arranged between the fifth connecting blocks 821, the fourth fixed shaft 822 is rotatably provided with a sixth connecting block 824, the top of the second rotary table 817 is provided with a fifth fixed shaft 823, the rear part of the right side of the rotary rod 820 is provided with a beating post 825, and the middle of the top of the mounting table 21 is provided with a baffle 826.
When the second rack 718 drives the second stop block 81 to move upwards to push the eighth slide block 85, the eighth slide block 85 drives the third rack 86 to move upwards, the sixth spring 84 is stretched, the sixth rotating shaft 88 is driven to rotate by meshing of the third rack 86 and the fourth spur gear 89, the sixth rotating shaft 88 is driven to rotate by meshing of the third bevel gear 812 and the fourth bevel gear 813, the seventh rotating shaft 811 drives the eighth rotating shaft 814 to rotate by the third belt transmission assembly 815, the eighth rotating shaft 814 drives the second rotary table 817 to rotate by the ninth rotating shaft 816, the second rotary table 817 drives the fifth fixed shaft 823 to do circular motion, the fifth fixed shaft 823 drives the rotary rod 820 to swing by the sixth connecting block 824, so that the striking column 825 is driven to continuously strike a wood rod in the circular groove block 721, the wood rod is driven to fall out of the circular groove block 721, at this time, the worker collects the cut wood rod, when the second rack 718 drives the second stop block 81 to move downwards, the eighth slide block 85 is driven to move downwards by the reset action of the sixth spring 84, the eighth rotary table 817 is driven to rotate by the ninth rotating shaft 816, the second fixed shaft 816 moves downwards by the ninth rotating shaft 816, the fifth fixed shaft 823 moves downwards, and the fourth rack 718 stops to continuously strike the circular rack 825 after the fourth fixed shaft is reset, and the fourth fixed shaft 718 stops to rotate.
Finally, it should be noted that the above embodiments are only for illustrating the technical solution of the present invention and not for limiting the scope of the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solution of the present invention may be modified or substituted equally without departing from the spirit and scope of the technical solution of the present invention.

Claims (5)

1. A cut cake device for stick, characterized by including:
the base (1), the base (1) is used for installing the whole device;
the cutting mechanism (2) is arranged in the middle of the top of the base (1);
the limiting mechanism (3) is arranged on one side of the cutting mechanism (2);
the cutting mechanism (2) comprises:
the first support posts (20) are uniformly arranged at the top of the base (1), and the number of the first support posts (20) is four;
a mounting table (21), wherein the mounting table (21) is arranged between the tops of the first support posts (20);
the base plate (22) is arranged on one side of the top of the base (1);
the first servo motor (23), the first servo motor (23) is set up in the top of the backing plate (22);
the first bearing seat (24), the first bearing seat (24) is set up in the bottom of the mounting table (21);
the first rotating shaft (25), the first rotating shaft (25) is set up in the first bearing bracket (24);
a first belt transmission assembly (26), the first belt transmission assembly (26) being arranged between the output shaft of the first servo motor (23) and the first rotating shaft (25);
a saw gear (27), the saw gear (27) being arranged on the first rotation shaft (25);
the limiting mechanism (3) comprises:
a baffle (30), wherein the baffle (30) is arranged at the top of the mounting table (21);
the first connecting blocks (31), the first connecting blocks (31) are symmetrically arranged on one side of the baffle (30), and the number of the first connecting blocks (31) is two;
the clamping bolts (32) are arranged on the first connecting block (31) in a rotating mode, the number of the clamping bolts (32) is two, and the clamping bolts (32) are matched with round holes in the top of the mounting table (21);
still including moving mechanism (4), moving mechanism (4) set up between base (1) top and mount table (21), moving mechanism (4) including:
the second support column (40) is arranged on one side, far away from the backing plate (22), of the top of the base (1);
the second servo motor (41), the second servo motor (41) is set up on the top of the second pillar (40);
a first rotary table (42), the first rotary table (42) being arranged on the output shaft of the second servo motor (41);
a first fixed shaft (43), the first fixed shaft (43) being provided on the first rotating disc (42);
the second connecting block (46), the second connecting block (46) is rotatably arranged on the first fixed shaft (43);
a second fixed shaft (45), the second fixed shaft (45) being arranged on a second connection block (46);
the first sliding block (44), the first sliding block (44) is slidably arranged in the mounting table (21), and the first sliding block (44) is rotatably connected with the second fixed shaft (45);
a first slide groove block (47), the first slide groove block (47) being arranged on the first slide block (44);
the first stop block (48), the first stop block (48) is slidably arranged in the first chute block (47);
the second sliding block (49), the second sliding block (49) is arranged on the first stop block (48), the second sliding block (49) is in sliding contact with the first chute block (47);
a first spring (410), wherein the first spring (410) is arranged between the second sliding block (49) and the inner wall of the first sliding groove block (47);
a sleeve (411), the sleeve (411) being arranged at the end of the second slider (49);
the bolts (412), the bolts (412) are all arranged on the sleeve (411) in a rotating mode, and the number of the bolts (412) is three.
2. A cake cutting device for wooden sticks according to claim 1, characterized by further comprising a detent mechanism (5), the detent mechanism (5) being arranged on one side of the mounting table (21), the detent mechanism (5) comprising:
the second chute block (50), the second chute block (50) is set up on one side of the mounting table (21);
the third sliding block (52), the third sliding block (52) is slidably arranged in the second chute block (50);
the clamping block (51) is arranged at the end part of the third sliding block (52);
and a second spring (53), wherein the second spring (53) is arranged between the third sliding block (52) and the second sliding groove block (50).
3. A cake cutting device for wooden sticks according to claim 2, characterized by a sliding mechanism (6), the sliding mechanism (6) being arranged on top of the mounting table (21), the sliding mechanism (6) comprising:
the fourth sliding block (60), the fourth sliding block (60) is slidably arranged on one side of the baffle (30) close to the second chute block (50);
a third chute block (61), the third chute block (61) being placed on top of the mounting table (21);
the fifth sliding block (62), the fifth sliding block (62) is slidably arranged in the third sliding groove block (61), and the fifth sliding block (62) is connected with the fourth sliding block (60);
and a third spring (63), wherein the third spring (63) is arranged between the fourth sliding block (60) and the third sliding groove block (61), and the third spring (63) is sleeved on the fifth sliding block (62).
4. A cake cutting device for wooden sticks as claimed in claim 3, characterised by further comprising a take-off mechanism (7), the take-off mechanism (7) being arranged on top of the mounting table (21), the take-off mechanism (7) comprising:
a third connecting block (70), the third connecting block (70) being arranged on the fourth slider (60);
a first rack (71), the first rack (71) being arranged on the third connecting block (70);
a second bearing (72), the second bearing (72) being placed on the mounting table (21);
a second rotating shaft (73), wherein the second rotating shaft (73) is arranged in a second bearing seat (72);
a first spur gear (74), the first spur gear (74) being arranged on the second rotating shaft (73);
a third bearing seat (75), wherein the third bearing seat (75) is arranged on one side of the second bearing seat (72);
a third rotating shaft (76), the third rotating shaft (76) being arranged in a third bearing seat (75);
a second spur gear (77), the second spur gear (77) is arranged on the third rotating shaft (76), and the first spur gear (74) is meshed with the second spur gear (77);
a first bevel gear (78), the first bevel gear (78) being disposed on the third rotating shaft (76);
a fourth bearing seat (79), wherein the fourth bearing seat (79) is arranged on one side of the baffle (30);
a fourth rotating shaft (710), the fourth rotating shaft (710) being disposed in the fourth bearing housing (79);
a second bevel gear (711), the second bevel gear (711) being provided on the fourth rotation shaft (710), the first bevel gear (78) being engaged with the second bevel gear (711);
a fifth bearing seat (712), wherein the fifth bearing seat (712) is arranged on one side of the baffle (30) close to the fourth bearing seat (79);
a fifth rotating shaft (713), the fifth rotating shaft (713) being disposed in a fifth bearing housing (712);
a second belt transmission assembly (714), the second belt transmission assembly (714) being disposed between the fifth rotation shaft (713) and the fourth rotation shaft (710);
the third support column (715) is arranged on one side, far away from the fifth bearing seat (712), of the top of the baffle plate (30);
a first fixed slider (716), the first fixed slider (716) being disposed on top of the third strut (715);
a third spur gear (717), the third spur gear (717) being provided on the fifth rotation shaft (713);
a fourth connecting block (719), the fourth connecting block (719) being arranged on top of the first fixed slider (716);
the second rack (718), the second rack (718) is slidably arranged at one side of the first fixed sliding block (716) close to the fifth bearing seat (712), and the second rack (718) is meshed with the third straight gear (717);
a fourth spring (720), the fourth spring (720) is arranged between the top of the second rack (718) and the fourth connecting block (719);
the round groove block (721) is arranged at the bottom of the second rack (718);
the second fixed sliding blocks (722), the second fixed sliding blocks (722) are symmetrically arranged in the grooves at the lower part of the second rack (718), and the number of the second fixed sliding blocks (722) is two;
a sixth slider (724), the sixth slider (724) is arranged in a groove at the lower part of the second rack (718);
a latch (723), the latch (723) being slidably disposed between the sixth slider (724) and the two second fixed sliders (722);
a fifth spring (725), the fifth spring (725) being disposed between the latch (723) and the sixth slider (724).
5. A cake cutting device for wooden sticks according to claim 4, further comprising a striking mechanism (8), the striking mechanism (8) being arranged between the top of the mounting table (21) and the take-off mechanism (7), the striking mechanism (8) comprising:
a sixth bearing housing (80), the sixth bearing housing (80) being disposed on one side of the fifth bearing housing (712);
the second stop block (81), the second stop block (81) is set up in one side close to sixth bearing bracket (80) of the second rack (718);
a fourth chute block (82), the fourth chute block (82) being disposed on a side of the fifth bearing housing (712) adjacent to the sixth bearing housing (80);
a seventh slider (83), the seventh slider (83) being slidably disposed within the fourth chute block (82);
an eighth slider (85), the eighth slider (85) being disposed on top of the seventh slider (83);
a sixth spring (84), wherein the sixth spring (84) is arranged between the eighth sliding block (85) and the fourth sliding block (82), and the sixth spring (84) is sleeved on the seventh sliding block (83);
the third rack (86), the third rack (86) is set up in the bottom of the seventh slide block (83);
a seventh bearing housing (87), the seventh bearing housing (87) being provided on one side of the fixing plate on the fifth bearing housing (712);
a sixth rotating shaft (88), the sixth rotating shaft (88) being disposed in a seventh bearing housing (87);
a fourth spur gear (89), the fourth spur gear (89) is arranged on the sixth rotating shaft (88), and the fourth spur gear (89) is meshed with the third rack (86);
a third bevel gear (812), the third bevel gear (812) being disposed on the sixth rotation shaft (88);
an eighth bearing block (810), wherein the eighth bearing block (810) is arranged on one side of the fixed plate on the fifth bearing block (712) far away from the seventh bearing block (87);
a seventh rotating shaft (811), the seventh rotating shaft (811) being disposed in the eighth bearing housing (810);
a fourth bevel gear (813), the fourth bevel gear (813) being provided on the seventh rotation shaft (811), the third bevel gear (812) being meshed with the fourth bevel gear (813);
an eighth rotating shaft (814), the eighth rotating shaft (814) being rotatably disposed on a fixed plate on the fifth bearing housing (712);
a third belt transmission assembly (815), the third belt transmission assembly (815) being disposed between the seventh rotation shaft (811) and the eighth rotation shaft (814);
a ninth rotating shaft (816), wherein the ninth rotating shaft (816) is rotatably arranged on a fixed plate on the fifth bearing seat (712), and the eighth rotating shaft (814) is connected with the ninth rotating shaft (816);
a second turntable (817), the second turntable (817) being arranged on the ninth rotating shaft (816);
a connecting rod (818), the connecting rod (818) is arranged at one side of the fifth bearing seat (712);
a third fixed shaft (819), the third fixed shaft (819) being disposed on the connecting rod (818);
a rotating rod (820), wherein the rotating rod (820) is rotatably arranged on the third fixed shaft (819);
the fifth connecting blocks (821) are symmetrically arranged on one side of the rotating rod (820), and the number of the fifth connecting blocks (821) is two;
a fourth fixed shaft (822), the fourth fixed shaft (822) being disposed between the fifth connection blocks (821);
a sixth connection block (824), the sixth connection block (824) being rotatably disposed on the fourth fixed shaft (822);
the fifth fixed shaft (823), the fifth fixed shaft (823) is arranged at the top of the second rotary table (817), and the sixth connecting block (824) is rotationally connected with the fifth fixed shaft (823);
a striking post (825), the striking post (825) being provided at one side of the rotating lever (820);
the baffle block (826), the baffle block (826) is arranged in the middle of the top of the mounting table (21).
CN202110055179.0A 2021-01-15 2021-01-15 Cake cutting device for wood sticks Active CN112873423B (en)

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Application Number Priority Date Filing Date Title
CN202110055179.0A CN112873423B (en) 2021-01-15 2021-01-15 Cake cutting device for wood sticks

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