Glass splitting cardboard cutting device
By introducing buffer cutting components and automated pushing guide mechanism into the glass splitting cardboard cutting device, the problems of poor cutting effects and insufficient automation of cardboard on different textures are solved, and the long life and efficient automatic cutting of the cutting blade are achieved.
Patent Information
- Application Number
- CN202311214017.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-20
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2043-09-20
AI Technical Summary
The existing glass-dividing cardboard cutting device is not effective when facing waste cardboard of different textures, resulting in increased wear of the blade and the tool holder and lacks automation performance.
The buffer cutting assembly and an automated pushing and guiding mechanism are adopted, combined with the transmission and lifting mechanism to achieve automatic cutting and guiding of cardboard, reduce blade wear, and improve the adaptability and automation of the device.
It extends the service life of the cutting blade, improves the automatic cutting efficiency of the device, reduces the loss of used cardboard, and meets the cutting needs of different textures of cardboard.
Smart Images

Figure CN117140611B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of glass production, in particular to a glass splitting paperboard cutting and processing device. Background Art
[0002] After glass is produced, it is usually necessary to separate the glass sheets with cardboard or other materials. The purpose of this is: first, the newly made glass sheets may still have some moisture or residue on the surface, which can easily cause the glass sheets to stick to each other and cause damage. Using cardboard to separate them can avoid this situation; second, the surface of the glass sheets may be easily scratched, especially during transportation and storage. Using cardboard as a separator can provide a certain degree of protection, reducing direct contact and potential scratches; third, using cardboard to separate the glass sheets makes it easier to pick up and transport each glass sheet separately. This helps reduce the risk of collision and damage during transportation;
[0003] Since the production specifications of glass plates are various, it is necessary to use corresponding cutting devices to cut some waste cardboards to meet the functional size of glass production, which can only reduce the loss of waste cardboards and achieve the effect of recycling;
[0004] However, most of the existing material devices are single-piece material devices, and some multi-piece cutting devices also have many limitations when facing the cutting operation of waste cardboard. Due to the different textures of waste cardboard, the cutting device cannot better adapt to the cutting of cardboards of different textures. Otherwise, long-term operation will lead to increased wear between the cutting blade and the knife seat, and there is a lack of corresponding buffer facilities between the blade and the knife seat; and during the operation of the existing cutting device, the material is generally loaded and unloaded manually by personnel, resulting in insufficient automation performance of the device during cutting. Summary of the Invention
[0005] In view of the deficiencies of the prior art, the present invention provides a glass splitting paperboard cutting and processing device, which solves the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions:
[0007] The glass splitting cardboard cutting processing device comprises a base and a cutting frame, the cutting frame is fixedly installed on the top of the base, a cutting mechanism is rotatably installed in the cutting frame, a transmission mechanism is assembled on the top of the cutting frame, two sets of linkage components are movably mounted on the conducting ends of the transmission mechanism, and the ends of the linkage components are respectively equipped with a pushing component and a material guiding component, a material receiving trough is placed on the top of the base, and the material receiving trough is located on one side of the material guiding component, a driving mechanism connected to the cutting mechanism is fixedly installed on the top of the base, a lifting mechanism is assembled on the top of the base, and the lifting mechanism is located on one side of the pushing component; the pushing mechanism The assembly includes a push plate and a connecting arm. The material guide assembly includes a mounting cylinder, a vertical spring, a movable seat, a guide column, a material guide plate, and a sliding component. The cutting mechanism includes a buffered cutting assembly and a buffered cutting assembly. The buffered cutting assembly includes a cutting disc assembly seat, a cutting disc, an annular spring, a guide wheel, and a positioning component. The transmission ends of the linkage assembly are respectively docked with a connecting arm and a mounting cylinder; a push plate is fixedly installed at the bottom of the connecting arm; an extended guide column is docked and installed in the mounting cylinder, and a material guide plate is movably installed on the bottom of the guide column through a movable seat. A vertical spring docked with the guide column is placed in the mounting cylinder, and both sides of the guide plate are equipped with sliding components that are slidably connected to the cutting frame.
[0008] Furthermore, the driving mechanism includes a motor 1 and a pulley assembly. The motor 1 is fixedly mounted on the top of the base, and the output end of the motor 1 is connected to the cutting mechanism through the pulley assembly.
[0009] Furthermore, the cutting machine frame includes a cutting cavity, side baffles, a material guide table, and support legs. The top of the base is fixedly equipped with a material guide table through the support legs. The cutting cavity is fixedly installed on the top of the material guide table, and the front and rear sides of the top of the material guide table are fixedly installed with side baffles.
[0010] Furthermore, the transmission mechanism includes a transmission assembly and a rotating assembly. The transmission assembly is fixedly installed on the top of the cutting chamber, and the rotating assembly engaged with the transmission assembly is fixedly installed on the top of the cutting chamber.
[0011] Furthermore, the transmission assembly includes a cylinder, a mounting seat, a mounting block, a guide rod, and a tooth plate. The mounting seat is fixedly mounted on the top of the cutting chamber, the cylinder is fixedly mounted on the outside of the mounting seat, the mounting block is docked with the output end of the cylinder, the tooth plate is fixedly mounted on the mounting block, and the guide rod passing through the mounting block is fixedly mounted on the mounting seat, and the guide rod is at the same level as the tooth plate.
[0012] Furthermore, the rotating assembly includes a rotating disk, a guide gear, and a rotating shaft. The top of the cutting chamber is fixedly and rotatably mounted with a rotating shaft, the top of the rotating shaft is fixedly mounted with a rotating disk, and the rotating shaft is sleeved with a guide gear that cooperates with the tooth plate.
[0013] Furthermore, the cutting mechanism also includes a lower roller body, an upper roller body, and a gear set. The lower roller body and the upper roller body are rotatably installed in the cutting chamber respectively, and the same end of the lower roller body and the upper roller body is equipped with a gear set that meshes with each other. The lower roller body and the upper roller body are respectively equipped with a guide wheel and a cutting disc assembly base, and the guide wheel and the cutting disc assembly base are positioned by a positioning component. The cutting disc assembly base is equipped with a cutting disc, and an annular spring is arranged between the cutting disc and the cutting disc assembly base.
[0014] Furthermore, the linkage assembly includes a push plate, a movable arm, and a guide seat. The movable arm is movably installed on the top of the rotating disk through a pin shaft, the guide seat is fixedly installed on the top of the side baffle, and the end of the movable arm is movably installed with a push plate that passes through the guide seat, and the push plate is respectively installed and connected to the connecting arm and the mounting cylinder.
[0015] Furthermore, the lifting mechanism includes a discharge plate, a motor, a threaded barrel, a toggle gear, a driven gear, and a threaded column. The threaded barrel is rotatably installed on the top of the base, an extended threaded column is docked and installed in the threaded barrel, and a driven gear is mounted on the threaded barrel. The motor is fixedly installed on the top of the base, and the output end of the motor is rotatably installed with a toggle gear that cooperates with the driven gear.
[0016] Furthermore, the sliding component is composed of an oblique groove and a guide block. The oblique groove is arranged on the inner side of the side baffle, and the guide block is placed in the oblique groove and is slidably connected to the guide plate.
[0017] The present invention provides a glass splitting paperboard cutting and processing device. Compared with the prior art, it has the following beneficial effects:
[0018] The cardboard slitting operation is completed by cooperating with the buffer cutting component, and the built-in buffer component is used for lining operation, which effectively reduces the friction wear between the blade and the knife seat during the cutting operation and extends the service life of the cutting blade.
[0019] The pushing component is used to return the cardboard at the front end, prompting the cardboard to enter the cutting mechanism for cutting. The guiding component can complete the return and guidance of the cut plate, and guide the cut cardboard. This can not only ensure the automated operation of the device, but also achieve the effect of echoing in and out. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0021] Figure 1It shows a schematic structural diagram of the cutting device of the present invention in a first overall state;
[0022] Figure 2 It shows a schematic diagram of the second overall state structure of the cutting device of the present invention;
[0023] Figure 3 It shows a schematic structural diagram of the driving mechanism and cutting mechanism of the present invention in an assembled state;
[0024] Figure 4 It shows a schematic structural diagram of the buffer cutting assembly of the present invention in an assembled state;
[0025] Figure 5 It shows the structural schematic diagram of the lifting mechanism of the present invention in the material lifting state;
[0026] Figure 6 The figure shows the overall structural diagram of the material guide assembly of the present invention;
[0027] As shown in the figure: 1. Base; 2. Driving mechanism; 21. Motor 1; 22. Pulley assembly; 3. Cutting frame; 31. Cutting chamber; 32. Side baffle; 33. Material guide table; 34. Support leg; 4. Pushing assembly; 41. Pushing plate; 42. Connecting arm; 5. Transmission mechanism; 51. Transmission assembly; 511. Cylinder; 512. Mounting seat; 513. Mounting block; 514. Guide rod; 515. Tooth plate; 52. Rotating assembly; 521. Rotating disk; 522. Guide gear; 523. Rotating shaft; 6. Material guide assembly; 61. Mounting cylinder; 62. Vertical spring; 6 3. Movable seat; 64. Guide column; 65. Guide plate; 66. Sliding component; 7. Lifting mechanism; 71. Feed plate; 72. Motor; 73. Threaded barrel; 74. Spur gear; 75. Driven gear; 76. Threaded column; 8. Linkage assembly; 81. Feed plate; 82. Movable arm; 83. Guide seat; 9. Cutting mechanism; 91. Lower roller; 92. Buffer cutting assembly; 921. Cutting disc assembly base; 922. Cutting disc; 923. Annular spring; 924. Guide wheel; 925. Positioning component; 93. Upper roller; 94. Gear set; 10. Feed chute. DETAILED DESCRIPTION
[0028] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0029] Example 1
[0030] In order to solve the technical problems in the background technology, the following glass splitting cardboard cutting and processing device is provided:
[0031] Combine Figures 1-6 As shown, the glass split cardboard cutting and processing device provided by the present invention includes a base 1 and a cutting frame 3, the cutting frame 3 is fixedly installed on the top of the base 1, and a cutting mechanism 9 is rotatably installed in the cutting frame 3. The top of the cutting frame 3 is equipped with a transmission mechanism 5, and the conducting ends of the transmission mechanism 5 are respectively movably equipped with two groups of linkage components 8, and the ends of the linkage components 8 are respectively equipped with a pushing component 4 and a material guide component 6. A material receiving trough 10 is placed on the top of the base 1, and the material receiving trough 10 is located on one side of the material guide component 6. A driving mechanism 2 that is transmission-connected to the cutting mechanism 9 is fixedly installed on the top of the base 1, and a lifting mechanism 7 is equipped on the top of the base 1, and the lifting mechanism 7 is located on one side of the pushing component 4;
[0032] The pushing assembly 4 includes a pushing plate 41 and a connecting arm 42. The material guiding assembly 6 includes a mounting tube 61, a vertical spring 62, a movable seat 63, a guide column 64, a material guiding plate 65, and a sliding component 66. The cutting mechanism 9 includes a buffer cutting assembly 92. The buffer cutting assembly 92 includes a cutting disc mounting base 921, a cutting disc 922, an annular spring 923, a guide wheel 924, and a positioning component 925. The transmission ends of the linkage assembly 8 are respectively docked with the connecting arm 42 and the mounting tube 61; the pushing plate 41 is fixedly installed at the bottom of the connecting arm 42; the extending guide column 64 is docked and installed in the mounting tube 61, and the guide plate 65 is movably installed on the bottom of the guide column 64 through the movable seat 63. The vertical spring 62 docked with the guide column 64 is arranged in the mounting tube 61, and both sides of the guide plate 65 are equipped with sliding components 66 that are slidably connected to the cutting frame 3.
[0033] The base 1 and the cutting frame 3 complete the composition of the device body, and then the cutting operation of the cardboard is completed by the cutting mechanism 9. The transmission mechanism 5 is used to transmit the linkage component 8, so that the linkage component 8 performs linkage operation. Through the alignment linkage of the linkage component 8, the pushing component 4 and the guiding component 6 are prompted so that the pushing component 4 and the guiding component 6 can perform relative movement. The cardboard at the front end is returned by the pushing component 4, so that the cardboard enters the cutting mechanism 9 for cutting operation, and the buffer-type cutting component 91 is used to complete the cardboard slitting operation. The guide component 6 can complete the return and guide of the cut plate material, and guide the cut cardboard. This can ensure the automation of the device and achieve the effect of echoing in and out. The cut cardboard is collected by the receiving trough 10. During the pushing period, the placed cardboard waiting to be cut can be automatically lifted by the lifting mechanism 7 to meet the guide height of the cardboard.
[0034] When the linkage assembly 8 is in operation, it pushes the connecting arm 42, which in turn pulls the mounting cylinder 61 to reciprocate; the connecting arm 42 pushes the push plate 41, prompting it to push the cardboard. At this time, the guide plate 65 is pulled under the traction of the sliding member 66, and the vertical spring 62 inside the mounting cylinder 61 is in a compressed state. When the push plate 41 is reset, the guide plate 65 will lead downward, and the guide plate 65 will be pressed. At this time, the cut sheet will be guided to the bottom of the guide plate 65, followed by the guide plate 65 pressing onto the cardboard, and under the action of the thrust, the cut sheet is pushed to the corresponding material receiving facility. When the assembly is pushed, it will be pressed down along the oblique groove, and the guiding operation of the cut sheet will be completed while pressing down. At this time, the vertical spring 62 will complete the clamping limit of the cardboard through its own elastic performance, and cooperate with the guide plate 65 to push the material forward.
[0035] Example 2
[0036] like Figure 1 and Figure 2 As shown, based on the above embodiment, this embodiment further provides the following content:
[0037] In this embodiment, the driving mechanism 2 includes a motor 21 and a pulley assembly 22. The motor 21 is fixedly mounted on the top of the base 1, and the output end of the motor 21 is connected to the cutting mechanism 9 through the pulley assembly 22.
[0038] During operation, the motor 1 21 is started first, and when the motor 1 21 is running, the pulley assembly 22 is driven to transmit, and the pulley assembly 22 is used to drive the cutting mechanism 9 to rotate;
[0039] The pulley assembly 22 is composed of a belt and a pulley.
[0040] In this embodiment, the cutting mechanism 9 also includes a lower roller body 91, an upper roller body 93, and a gear set 94. The lower roller body 91 and the upper roller body 93 are rotatably installed in the cutting chamber 31, and the same end of the lower roller body 91 and the upper roller body 93 is equipped with a gear set 94 that meshes with each other. The lower roller body 91 and the upper roller body 93 are respectively equipped with a guide wheel 924 and a cutting disk assembly base 921, and the guide wheel 924 and the cutting disk assembly base 921 are positioned by a positioning component 925. A cutting disk 922 is equipped on the cutting disk assembly base 921, and an annular spring 923 is provided between the cutting disk 922 and the cutting disk assembly base 921.
[0041] When the motor 21 is started, the lower roller 91 will be driven by the pulley assembly 22 to rotate. At this time, the other end of the lower roller 91 will use the gear set 94 to drive the upper roller 93 to rotate, so that the upper roller 93 and the lower roller 91 can move relative to each other. The upper roller 93 and the lower roller 91 cooperate with each other to perform synchronous guiding operations while cutting the cardboard.
[0042] The gear set 94 is composed of two sets of gears that mesh with each other;
[0043] The lower roller body 91 and the upper roller body 93 rotate relative to each other, and the guide wheels 924 and the cutting disc assembly base 921 on the lower roller body 91 and the upper roller body 93 are used to feed the introduced cardboard. At the same time, the cutting disc 922 on the cutting disc assembly base 921 is used to divide and cut the cardboard during feeding. After cutting, the cardboard will be guided out to complete the cutting.
[0044] In this embodiment, the cutting frame 3 includes a cutting chamber 31, side baffles 32, a material guide table 33, and support legs 34. The top of the base 1 is fixedly equipped with the material guide table 33 through the support legs 34. The cutting chamber 31 is fixedly installed on the top of the material guide table 33, and the front and rear sides of the top of the material guide table 33 are fixedly installed with side baffles 32.
[0045] During this process, the support legs 34 are used to support the guide table 33, and the processed or unprocessed cardboard will be guided in and out of the guide table 33;
[0046] The cardboard is cut by the cutting mechanism 9 in the cutting chamber 31 . When the cutting mechanism 9 is cutting the plate, the side baffle 32 can better limit the position of the cardboard.
[0047] In this embodiment, the transmission mechanism 5 includes a transmission assembly 51 and a rotation assembly 52 . The transmission assembly 51 is fixedly mounted on the top of the cutting chamber 31 . The rotation assembly 52 , which engages with the transmission assembly 51 for transmission, is fixedly mounted on the top of the cutting chamber 31 .
[0048] When the device is cutting, the transmission component 51 is started, and the transmission component 51 drives the rotating component 52 to rotate. The rotating component 52 in the rotating state will drive the linkage component 8 to perform transmission operation, prompting the linkage component 8 to perform linkage operation on the pushing component 4 and the guiding component 6.
[0049] In this embodiment, the transmission assembly 51 includes a cylinder 511, a mounting seat 512, a mounting block 513, a guide rod 514, and a tooth plate 515. The mounting seat 512 is fixedly installed on the top of the cutting chamber 31, the cylinder 511 is fixedly installed on the outside of the mounting seat 512, the output end of the cylinder 511 is docked with the mounting block 513, the tooth plate 515 is fixedly installed on the mounting block 513, and the guide rod 514 that passes through the mounting block 513 is fixedly installed on the mounting seat 512, and the guide rod 514 is at the same level as the tooth plate 515.
[0050] According to the above content, the personnel first activates the cylinder 511, which drives the gear plate 515 to reciprocate. As the gear plate 515 reciprocates, it drives the meshing rotating component 52 to rotate;
[0051] During the transmission, the guide rod 514 can ensure the smoothness and continuity of the gear plate 515.
[0052] In this embodiment, the rotating assembly 52 includes a rotating disk 521, a guide gear 522, and a rotating shaft 523. The rotating shaft 523 is fixedly and rotatably installed on the top of the cutting chamber 31. The rotating disk 521 is fixedly installed on the top of the rotating shaft 523. The rotating shaft 523 is equipped with a guide gear 522 that cooperates with the tooth plate 515.
[0053] Through the above, the reciprocating gear plate 515 will drive the meshing guide gear 522 to rotate, prompting the guide gear 522 to drive the rotating shaft 523 to rotate, thereby realizing the rotation operation of the rotating disk 521;
[0054] The linkage operation of the linkage assembly 8 can be completed by rotating the rotating disk 521.
[0055] Example 3
[0056] like Figures 1-6 As shown, based on the above embodiment, this embodiment further provides the following content:
[0057] In this embodiment, the linkage assembly 8 includes a push plate 81, a movable arm 82, and a guide seat 83. The movable arm 82 is movably installed on the top of the rotating disk 521 through a pin shaft, and the guide seat 83 is fixedly installed on the top of the side baffle 32. The end of the movable arm 82 is movably installed with a push plate 81 that passes through the guide seat 83, and the push plate 81 is respectively installed and connected to the connecting arm 42 and the mounting cylinder 61.
[0058] The rotation of the rotating disk 521 drives the movable arm 82 to rotate and swing, prompting the movable arm 82 and the push plate 81 to push and pull. Since the push plate 81 is restricted by the sliding of the guide seat 83, the push plate 81 can only move linearly.
[0059] The linear motion of the push plate 81 is utilized to drive the components at the end to perform linkage operation.
[0060] In this embodiment, the lifting mechanism 7 includes a discharge plate 71, a motor 72, a threaded barrel 73, a toggle gear disc 74, a driven gear 75, and a threaded column 76. The threaded barrel 73 is rotatably installed on the top of the base 1, and an extended threaded column 76 is docked and installed in the threaded barrel 73. The threaded barrel 73 is provided with a driven gear 75. The motor 72 is fixedly installed on the top of the base 1, and the output end of the motor 72 is rotatably installed with a toggle gear disc 74 that cooperates with the driven gear 75.
[0061] When the device is performing a cutting operation, the motor 72 also needs to be started at the same time. The motor 72 drives the shifting gear plate 74 to rotate. Since the shifting gear plate 74 is not a complete gear plate body, the shifting gear plate 74 can achieve a complete rotation circle of the driven gear 75 on the threaded cylinder 73 when rotating multiple circles.
[0062] As the threaded barrel 73 rotates, the threaded barrel 73 and the threaded column 76 form a conductive relationship, and the threaded column 76 drives the discharge plate 71 to move upward or downward.
[0063] In this embodiment, the sliding component 66 is composed of an oblique groove and a guide block. The oblique groove is provided on the inner side of the side baffle 32 , and the guide block slidably connected to the guide plate 65 is placed in the oblique groove.
[0064] During this period, the guide plate 65 will slide in the sliding member 66 under the force, and its sliding state is also carried out according to the trajectory of the sliding member 66;
[0065] As the track moves upward, it provides space for guiding the sheet material. The cardboard enters from the front end and moves to the rear end after cutting. When the component is pushed, it presses down along the inclined groove, completing the guiding operation of the cut sheet material while pressing down.
[0066] The working principle and use process of the present invention:
[0067] During operation, the motor 21 is started first. When the motor 21 is running, it drives the pulley assembly 22 for transmission, and the pulley assembly 22 drives the cutting mechanism 9 to rotate, and the lower roller 91 will be driven by the pulley assembly 22 to cause itself to rotate. At this time, the other end of the lower roller 91 will use the gear set 94 to drive the upper roller 93 to rotate, causing the upper roller 93 and the lower roller 91 to move relative to each other. The lower roller 91 and the upper roller 93 rotate relatively, and the guide wheel 924 and the cutting disc assembly base 921 on the lower roller 91 and the upper roller 93 are used to feed the introduced cardboard. At the same time, the cutting disc 922 on the cutting disc assembly base 921 is used to cut the cardboard while it enters. After cutting, it will be led out to complete the cutting.
[0068] When cutting, the cylinder 511 is started, and the cylinder 511 drives the tooth plate 515 to reciprocate. The reciprocating tooth plate 515 will drive the meshing guide gear 522 to rotate, prompting the guide gear 522 to drive the rotating shaft 523 to rotate, thereby realizing the rotation operation of the rotating disk 521. During this period, the rotation of the rotating disk 521 will drive the movable arm 82 to rotate and swing, prompting the movable arm 82 and the push plate 81 to push and pull. Since the push plate 81 is limited by the sliding of the guide seat 83, the push plate 81 can only move linearly. The push plate 81 will push the connecting arm 42, and at this time, the mounting cylinder 61 will be pulled to reciprocate; the connecting arm 42 will push the push plate 41, prompting it to push the cardboard. When the material is pushed, the guide plate 65 will be pulled by the sliding component 66. At this time, the vertical spring 62 inside the mounting cylinder 61 is in a compressed state. When the push plate 41 is reset, the guide plate 65 will be guided forward. At this time, the cut sheet will be guided to the bottom of the guide plate 65, and then the guide plate 65 will be pressed onto the cardboard, and under the action of the thrust, the cut sheet will be pushed to the corresponding material receiving facility. When the component is pushed, it will be pressed down along the oblique groove, and the guiding operation of the cut sheet will be completed while pressing down. At this time, the vertical spring 62 will complete the clamping limit of the cardboard through its own elastic performance, and cooperate with the guide plate 65 to push the material forward. At this time, the cut cardboard enters the material receiving trough body 10.
[0069] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.
[0070] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. Glass splitting cardboard cutting and processing device, characterized by: The utility model comprises a base and a cutting frame, the top of the base is fixedly mounted with a cutting frame, a cutting mechanism is rotatably mounted in the cutting frame, a transmission mechanism is assembled on the top of the cutting frame, two sets of linkage components are movably mounted on the conducting ends of the transmission mechanism, and the ends of the two sets of linkage components are respectively equipped with a pushing component and a material guiding component, a material receiving trough body is placed on the top of the base, and the material receiving trough body is located on one side of the material guiding component, a driving mechanism connected to the cutting mechanism is fixedly mounted on the top of the base, a lifting mechanism is assembled on the top of the base, and the lifting mechanism is located on one side of the pushing component; The pushing assembly includes a pushing plate and a connecting arm, the guiding assembly includes a mounting cylinder, a vertical spring, a movable seat, a guide post, a guiding plate, and a sliding component, the cutting mechanism includes a buffer cutting assembly, and the buffer cutting assembly includes a cutting disc mounting seat, a cutting disc, an annular spring, a guide wheel, and a positioning component; the transmission ends of the two linkage assemblies are respectively docked with the connecting arm and the mounting cylinder; the bottom of the connecting arm is fixedly mounted with a pushing plate; a guide post extending from the mounting cylinder is installed in the mounting cylinder, and the bottom of the guide post is movably mounted with a guiding plate through a movable seat, a vertical spring docked with the guide post is arranged in the mounting cylinder, and sliding components slidably connected to the cutting frame are assembled on both sides of the guiding plate; The cutting machine frame includes a cutting chamber, side baffles, a material guide table, and support legs. The top of the base is fixedly equipped with a material guide table through the support legs. The top of the material guide table is fixedly equipped with a cutting chamber. The front and rear sides of the top of the material guide table are fixedly equipped with side baffles. The transmission mechanism includes a transmission assembly and a rotating assembly. The transmission assembly is fixedly installed on the top of the cutting chamber, and the rotating assembly engaged with the transmission assembly is fixedly installed on the top of the cutting chamber. The transmission assembly includes a cylinder, a mounting seat, a mounting block, a guide rod, and a tooth plate. The mounting seat is fixedly mounted on the top of the cutting chamber, the outer side of the mounting seat is fixedly mounted on the cylinder, the output end of the cylinder is docked with the mounting block, the tooth plate is fixedly mounted on the mounting block, and the guide rod that passes through the mounting block is fixedly mounted on the mounting seat, and the guide rod is at the same level as the tooth plate. The rotating assembly includes a rotating disk, a guide gear, and a rotating shaft. The top of the cutting chamber is rotatably mounted with the rotating shaft, the top of the rotating shaft is fixedly mounted with a rotating disk, and the rotating shaft is sheathed with a guide gear that cooperates with the tooth plate. The cutting mechanism also includes a lower roller body, an upper roller body, and a gear set. The lower roller body and the upper roller body are rotatably installed in the cutting chamber respectively. The same end of the lower roller body and the upper roller body is equipped with a gear set that meshes with each other. The lower roller body is equipped with a guide wheel, and the upper roller body is equipped with a cutting disc assembly base. The guide wheel and the cutting disc assembly base are positioned by a positioning component. The cutting disc assembly base is equipped with a cutting disc, and an annular spring is provided between the cutting disc and the cutting disc assembly base. Each group of linkage components includes a push plate, a movable arm, and a guide seat. The movable arm is movably installed on the top of the rotating disk through a pin shaft, the guide seat is fixedly installed on the top of the side baffle, and the end of the movable arm is movably installed with a push plate that passes through the guide seat, and the push plates of the two groups of linkage components are respectively installed and connected to the connecting arm and the mounting cylinder.
2. The glass split paperboard cutting and processing device according to claim 1, characterized in that: The driving mechanism includes a motor 1 and a pulley assembly. The motor 1 is fixedly installed on the top of the base, and the output end of the motor 1 is transmission-connected to the cutting mechanism through the pulley assembly.
3. The glass split paperboard cutting and processing device according to claim 1, characterized in that: The lifting mechanism includes a discharge plate, a motor, a threaded barrel, a toggle gear, a driven gear, and a threaded column. The threaded barrel is rotatably installed on the top of the base, an extended threaded column is docked and installed in the threaded barrel, and a driven gear is sleeved on the threaded barrel. The motor is fixedly installed on the top of the base, and the output end of the motor is rotatably installed with a toggle gear that cooperates with the driven gear.
4. The glass split paperboard cutting and processing device according to claim 3, characterized in that: The sliding component is composed of an oblique groove and a guide block. The oblique groove is arranged on the inner side of the side baffle, and the guide block is arranged in the oblique groove and is slidably connected to the material guide plate.
Citation Information
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