Polishing and waxing device for quartz stone plate processing
By introducing flipped components and dust removal components into the quartz stone sheet processing device, the flip and dust removal of the sheet are solved, and the problem of dust removal after polishing in the existing device is solved, and the processing effect is improved.
Patent Information
- Application Number
- CN202510481784.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2045-04-17
AI Technical Summary
The existing quartz stone sheet processing device does not have a dust removal mechanism after polishing, resulting in the surface of the sheet protruding during subsequent waxing, and the dust removal effect of some devices is not ideal.
A polishing and waxing device including a flip assembly and a dust removal assembly is designed to achieve flip and dust removal of the plate by rotating the flip assembly and conveying the clamping assembly, and thorough dust removal is performed using a suction fan and a filter plate.
Effectively remove debris and dust from the surface of the board, avoiding prominent phenomena during subsequent waxing, and improving the dust removal effect.
Smart Images

Figure CN120190746A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field related to the processing of flue gas quartz stone, and specifically relates to a polishing and waxing device for processing quartz stone plates. Background Technique
[0002] Quartz stone plates are a common building material and decorative material, widely used in home decoration, commercial spaces, and industrial fields. It is divided into two types: natural quartz stone plates and artificial quartz stone plates. Natural quartz stone is a rock formed naturally over millions of years, with the main component being silicon dioxide (SiO2), usually containing a small amount of minerals such as feldspar and mica. It has high hardness and strong wear resistance. Artificial quartz stone is the mainstream product in the current market. It uses more than 90% natural quartz sand as raw material, supplemented with additives such as resin, pigment, and curing agent, and is manufactured through processes such as vacuum vibration molding and high-temperature curing. When processing quartz stone, in order to improve the gloss, aesthetics, and durability of its surface, a polishing and waxing device is generally used for treatment. Through the polishing process, the surface of the quartz stone can be made smooth and flat with gloss. And through the waxing process, a protective film can be formed on the surface of the quartz stone to prevent the penetration of stains and liquids. Therefore, in the process of quartz stone processing, it is essential to use a polishing and grinding device. When it is in processing, first, the processed quartz stone plate with a fixed size is transported to the lower part of the polishing mechanism by the conveying mechanism for polishing work. After that, the conveying mechanism continues to move, moving the plate to the lower part of the waxing mechanism for waxing work, and then it can be output along with the conveying mechanism;
[0003] For example, a quartz stone polishing and waxing device with the application number 201610501995.9, which includes a support plate and legs fixed on the support plate; a driving motor A is fixed on the support plate, the driving motor A is connected with a driving gear A, and a chain A is wound around the driving gear A; a driving motor B is fixed on the lower side of the support plate, the driving motor B is connected with a driving gear B, and a chain B is wound around the driving gear B; a canvas polishing roller, a leather polishing roller, a felt polishing roller, and a plush polishing roller are arranged on the lower side of the support plate; a waxing roller is arranged on the right side of the plush polishing roller, the waxing roller is connected with a rotating shaft E, and one end of the rotating shaft E is connected with a small gear A; a fixed vertical plate is fixed in the middle of the leg, one end of the fixed vertical plate is provided with a roller shaft A, the other end of the fixed vertical plate is provided with a roller shaft B, a large belt is wound around the outer circumference of the roller shaft B, and a plate is placed on the large belt; one end of the roller shaft B is connected with a rotating motor; the roller shaft C is connected with a rotating motor; the present invention has the advantages of simple operation and stable operation;
[0004] However, when the above-mentioned device is in processing, since the polishing process is before the waxing process, a large amount of debris will be generated during polishing. After traditional devices finish polishing, no corresponding dust removal mechanism is set, resulting in a serious protrusion on the surface of the board during subsequent waxing. In addition, although some devices are equipped with corresponding dust removal mechanisms, due to the fixed dust removal position, the dust removal effect is not ideal. Summary of the Invention
[0006] The purpose of the present invention is to provide a polishing and waxing device for quartz stone boards, so as to solve the problems in the background technology. When the current market devices are in processing, since the polishing process is before the waxing process, a large amount of debris will be generated during polishing. After traditional devices finish polishing, no corresponding dust removal mechanism is set, resulting in a serious protrusion on the surface of the board during subsequent waxing. In addition, although some devices are equipped with corresponding dust removal mechanisms, due to the fixed dust removal position, the dust removal effect is not ideal.
[0007] To achieve the above purpose, the present invention provides the following technical solution: A polishing and waxing device for quartz stone boards includes a device housing. The device housing includes a middle housing and connecting housings. The connecting housings are integrally installed on both sides of the middle housing. Inside each of the two connecting housings, there is a moving component with an open top, and inside each moving component, there is a lifting component. At the bottom of the lifting components inside the two moving components, there are respectively a polishing roller and a waxing cylinder, which are respectively used for polishing and waxing quartz stone boards. Inside the middle housing, there is a flipping component, and at the bottom of the flipping component, there is a corresponding dust removal component. The flipping component is used for flipping the polished quartz stone board, and the flipped quartz stone board corresponds to the dust removal component, achieving the effect of being sucked and dusted by the dust removal component. Inside the connecting housing, there is also a conveying component for conveying the board. Inside the flipping component, there is a clamping component, and the clamping component is composed of two groups of conveying components, which are used for conveying the quartz stone board entering the flipping component. Outside the middle housing, there is also a collection box corresponding to the position of the dust removal component for recycling the dust sucked by the dust removal component.
[0008] Preferably, connecting seats are installed on both sides of the bottom of the moving component, and a conveying component is arranged between the two connecting seats. The outer sides of the connecting seats are connected to the sliding component inside the fixed cover. The sliding component includes a rotating motor, a unidirectional lead screw, and an engaging cylinder. The top of the rotating motor is coaxially connected to the unidirectional lead screw, and the engaging cylinder is threadedly connected to the outside of the unidirectional lead screw. A connecting slider is arranged on the outside of the engaging cylinder and is connected to the outer wall of the connecting seat, and the connecting slider slides in the limiting chute on the outer wall of the connecting housing. A reserved hole is arranged at the bottom of the moving component, and the position of the reserved hole corresponds to the positions of the polishing roller and the waxing cylinder.
[0009] Preferably, the conveying component includes rotating shafts arranged at equal intervals, and conveying rollers coaxially connected are distributed at equal intervals on the outside of the rotating shafts. The top of the rotating shaft is coaxially connected to a pulley, and adjacent pulleys are connected by a belt. A servo motor is arranged at the top of one of the rotating shafts, and the pulleys and belts on the conveying component located inside the connecting housing are arranged in the hollow structure inside the connecting seat.
[0010] Preferably, two groups of lifting components are symmetrically arranged inside the moving component, and the two groups of lifting components are controlled by a control component. The control component includes a control motor, a conveyor belt, and a conveying disc. The control motor is arranged at the middle position of the outer wall of the moving component, and its top is coaxially connected to a driving disc. Two groups of conveyor belts are symmetrically arranged on the outside of the driving disc and are connected to the conveying disc. The top of the conveying disc is coaxially connected to the lifting component.
[0011] Preferably, the lifting component includes a bidirectional lead screw, a rotating cylinder, a rotating rod, and a connecting block. Two groups of rotating cylinders threadedly connected are symmetrically arranged on the outside of the bidirectional lead screw. The bottom of the rotating cylinder is axially connected to one side of the rotating rod, and the other side of the rotating rod is also axially connected to the connecting block. Bearings are used to connect between the two groups of connecting blocks and between the polishing roller and the waxing cylinder. A rotating motor is arranged on one side of the polishing roller and the waxing cylinder to control the rotation of the polishing roller and the waxing cylinder. The rotating motor is arranged in the hollow structure inside the connecting block.
[0012] Preferably, the flipping component includes two rotating rings, and an arc-shaped groove is arranged inside the rotating rings. Driving components are symmetrically arranged on both sides of the outside of the rotating rings to control the rotation of the rotating rings. The two rotating rings are connected by two groups of intermediate seats arranged symmetrically. The inside of the intermediate seat is arranged as a hollow structure, and two groups of conveying components are arranged up and down between the two groups of symmetrically arranged intermediate seats. The pulleys and belts on the two groups of conveying components located inside the intermediate housing are arranged inside the intermediate seat.
[0013] Preferably, the driving assembly includes a driving motor, a driving wheel, a driving gear, a support rod, a meshing gear, and a rotating cam. The support rod is connected to the bottom of the intermediate housing, and a driving motor bolted to one side of the support rod. The top of the driving motor is coaxially connected to a driving wheel corresponding to the rotating ring. At the top of the driving wheel, a driving gear is also coaxially connected. An outer side of the driving gear is provided with a meshing gear meshing therewith, and the top of the meshing gear is coaxially connected to a rotating cam. The position of the rotating cam corresponds to the position of the dust removal assembly. An outer side of the meshing gear is also provided with a fixing rod connected to the bottom of the intermediate housing.
[0014] Preferably, the dust removal assembly includes a filter plate, a sliding plate, a compression spring, a suction port, and a suction fan. Both sides of the filter plate are integrally installed on the sliding plate, and a compression spring is arranged at the bottom of the sliding plate to move up and down in a rectangular groove. A suction port is correspondingly arranged at the bottom of the filter plate, and the bottom of the suction port penetrates through the suction fan. The other side of the suction fan penetrates through the inside of the collection box.
[0015] Preferably, symmetric reset assemblies are arranged on both sides below the waxing cylinder. The reset assembly includes two connecting cylinders. One side of the two connecting cylinders is connected to the inner wall of the moving assembly, and a reset spring is arranged inside thereof and connected to the movable cylinder. The top of the movable cylinder is connected to the mounting cover, and a wax roller is clamped in the middle of the mounting cover.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: The polishing and waxing device for quartz stone plates;
[0017] A flipping assembly and a storage assembly are provided. After the plate is polished by the polishing roller, the plate will be transported to the clamping assembly in the middle of the flipping assembly through the conveying assembly at the bottom of the moving assembly for clamping work. Then, the entire flipping assembly is controlled to rotate. Coupled with the setting of the dust removal assembly at the bottom, the dust adhering to the surface of the plate after polishing will automatically fall during the inclined rotation, and thorough suction work is carried out through the suction fan to completely remove the debris on its surface. Then, through the conveying work of the two sets of conveying mechanisms inside the clamping assembly, the plate after complete dust removal can be conveyed to the bottom of the waxing cylinder for waxing work, ensuring that there will be no large protrusions during subsequent waxing;
[0018] The polishing roller and the waxing cylinder are both arranged inside the moving assembly, and the moving assembly can also move outward inside the connecting housing. Therefore, when it moves outward, with the setting of the opening structure at the top of the moving assembly, it is convenient for workers to perform maintenance work on the polishing roller and the waxing cylinder;
[0019] When the flipping component performs flipping and dust removal, debris will first fall through the filter plate. The setting of the filter plate can buffer the falling of dust, avoiding excessive suction at one time and preventing the phenomenon of blockage at the suction port. At the same time, the filter plate can also vibrate under the rotation of the rotating cam, thus preventing the filter plate from being blocked.
[0020] There are 2 groups of wax rollers symmetrically arranged. When the waxing cylinder descends for waxing, it will squeeze and separate the 2 groups of wax rollers. During the squeezing process, combined with the rotation of the waxing cylinder, the waxing cylinder can be evenly stained with wax, and thus the effect of automatic waxing can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is the front view structural schematic diagram of the present invention;
[0022] Figure 2 is the half-sectional front view structural schematic diagram of the present invention;
[0023] Figure 3 is the half-sectional bottom view structural schematic diagram of the present invention;
[0024] Figure 4 is the enlarged structural schematic diagram of the flipping component of the present invention;
[0025] Figure 5 is the enlarged front view structural schematic diagram of the moving component of the present invention;
[0026] Figure 6 is the partial enlarged structural schematic diagram of the flipping component of the present invention;
[0027] Figure 7 is the partial enlarged structural schematic diagram of the dust removal component of the present invention;
[0028] Figure 8 is the connecting bottom view structural schematic diagram of the connecting seat and the conveying component of the present invention;
[0029] Figure 9 is the partial enlarged structural schematic diagram of the conveying component of the present invention;
[0030] Figure 10 is the back view structural schematic diagram of the moving component of the present invention;
[0031] Figure 11 is the structural schematic diagram of the control component of the present invention.
[0032] In the figure: 1. Device housing; 1001. Intermediate housing; 1002. Connecting housing; 2. Moving component; 21. Reserved hole; 3. Fixed cover; 31. Rotating motor; 32. Unidirectional lead screw; 33. Meshing cylinder; 4. Collection box; 5. Connecting seat; 6. Conveying component; 61. Rotating shaft; 62. Conveying roller; 63. Pulley; 64. Belt; 7. Control component; 71. Control motor; 72. Conveyor belt; 73. Conveying plate; 8. Lifting component; 81. Bidirectional lead screw; 82. Rotating cylinder; 83. Rotating rod; 84. Connecting block; 9. Polishing roller; 10. Flipping component; 101. Rotating ring; 102. Driving component; 1021. Driving motor; 1022. Driving wheel; 1023. Driving gear; 1024. Support rod; 1025. Meshing gear; 1026. Rotating cam; 103. Intermediate seat; 11. Clamping component; 12. Reset component; 121. Connecting cylinder; 122. Reset spring; 123. Movable cylinder; 124. Mounting cover; 125. Wax roller; 13. Dust removal component; 131. Filter plate; 132. Slide plate; 133. Compression spring; 134. Suction port; 135. Suction fan; 14. Waxing cylinder; 15. Limit sliding groove. Detailed implementation manners
[0033] Next, in combination with the detailed implementation manners, the present application will be further described. It should be noted that, on the premise of no conflict, the following-described embodiments or technical features can be arbitrarily combined with each other to form new embodiments.
[0034] In the description of the present application, it should be noted that for orientation terms, if there are terms such as "center", "transverse", "longitudinal", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicating the orientation and position relationship are based on the orientation or position relationship shown in the drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and should not be construed as limiting the specific protection scope of the present application.
[0035] It should be noted that the terms "first", "second", etc. in the description and claims of the present application are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence.
[0036] Please refer to Figures 1-11, the present invention provides a technical solution: a polishing and waxing device for quartz stone plates, including a device housing 1. The device housing 1 includes an intermediate housing 1001 and a connecting housing 1002, and the connecting housing 1002 is integrally installed on both sides of the intermediate housing 1001. A moving component 2 with an open top is provided inside each of the two connecting housings 1002, and a lifting component 8 is provided inside each moving component 2. At the bottom of the lifting components 8 inside the two moving components 2, a polishing roller 9 and a waxing cylinder 14 are respectively provided, and they are respectively used for polishing and waxing the quartz stone plates. An overturning component 10 is provided inside the intermediate housing 1001, and a corresponding dust removal component 13 is provided at the bottom of the overturning component 10. The overturning component 10 is used for turning over the polished quartz stone plates, and the turned-over quartz stone plates correspond to the dust removal component 13, achieving the effect of being sucked and dusted by the dust removal component 13. A conveying component 6 is also provided inside the connecting housing 1002 for conveying the plates. A clamping component 11 is provided inside the overturning component 10, and the clamping component 11 is composed of two groups of conveying components 6 for conveying the quartz stone plates entering the inside of the overturning component 10. A collection box 4 corresponding to the position of the dust removal component 13 is also provided outside the intermediate housing 1001 for recovering the dust sucked by the dust removal component 13;
[0037] This application provides a polishing and waxing device for quartz stone plates with an overturning component 10 and a dust removal component 13. Specifically, when in use, first, the entire device is fixed in a suitable position under the action of the device housing 1. Then, the entire device is connected to an external power supply. After that, the entire device can start working. The external quartz stone plates reach the conveying component 6 at the bottom of the moving component 2. Starting the conveying component 6 can drive the plates for conveying work, making the plates conveyed to the bottom of the polishing roller 9. Then, control the lifting component 8 to descend, so that it drives the polishing roller 9 to descend to the surface of the plate for polishing work. After polishing, the conveying component 6 conveys the plate again and then reaches the clamping component 11 inside the overturning component 10. Then, control the overturning component 10 to overturn, so that the plate is selected. Then, start the dust removal component 13 to thoroughly dust the surface of the plate. After dust removal, the plate is turned face up again. Then, start the two conveying components 6 in the clamping component 11 to rotate in the opposite direction to convey the plate again, making it conveyed to the conveying component 6 at the bottom of the waxing cylinder 14. Then, control the waxing cylinder 14 to descend and contact the surface of the plate, thus completing the effect of waxing the plate. Finally, it can be discharged through the conveying component 6;
[0038] In the present application, the bottom of the intermediate housing 1001 has a hollow rectangular structure, and the bottom of the connecting housing 1002 is provided with two sets of support plates for supporting it.
[0039] Among them, according to Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, connecting seats 5 are installed on both sides of the bottom of the moving assembly 2, and a conveying assembly 6 is arranged in the middle of the two connecting seats 5. The outside of the connecting seat 5 is connected to the sliding assembly inside the fixed cover 3. The sliding assembly includes a rotating motor 31, a one-way lead screw 32 and an engaging cylinder 33. The top of the rotating motor 31 is coaxially connected to the one-way lead screw 32, and the outside of the one-way lead screw 32 is threadedly connected to the engaging cylinder 33. A connecting slider is arranged on the outside of the engaging cylinder 33 and is connected to the outer wall of the connecting seat 5, and the connecting slider slides in the limiting chute 15 on the outer wall of the connecting housing 1002. A reserved hole 21 is arranged at the bottom of the moving assembly 2, and the position of the reserved hole 21 corresponds to the positions of the polishing roller 9 and the waxing cylinder 14;
[0040] Among them, when it is necessary to repair the polishing roller 9 and the waxing cylinder 14, it is necessary to control the moving assembly 2 to slide out inside the connecting housing 1002. At this time, it is necessary to start the rotating motor 31 to drive the one-way lead screw 32 at its top to rotate. When the one-way lead screw 32 rotates, it will be threadedly connected to the engaging cylinder 33, so that the engaging cylinder 33 drives the connecting slider at its top to drive the connecting seat 5 to move. When the connecting seat 5 moves, it will drive the conveying assembly 6 and the moving assembly 2 in the middle to move together;
[0041] In the present application, since the top of the moving assembly 2 is a hollow structure, when it slides out, maintenance work can be carried out on its interior at the top. Since the surface of the connecting housing 1002 is provided with a limiting chute 15, when the engaging cylinder 33 is threadedly connected, it will move back and forth.
[0042] Among them, when conveying the plate, according to Figure 8 and Figure 9 As shown, the conveying assembly 6 includes rotating shafts 61 arranged at equal intervals, and conveying rollers 62 coaxially connected are distributed at equal intervals on the outside of the rotating shafts 61. The top of the rotating shaft 61 is coaxially connected to a pulley 63, and adjacent pulleys 63 are connected by a belt 64. A servo motor is arranged at the top of one of the rotating shafts 61. The pulleys 63 and the belt 64 on the conveying assembly 6 inside the connecting housing 1002 are both arranged in the hollow structure inside the connecting seat 5;
[0043] Specifically, when conveying the board through the conveying component 6, it is necessary to first start the servo motor to drive the rotating shaft 61 at its top to rotate. When the rotating shaft 61 rotates, the conveying roller 62 coaxially connected to it will rotate. At the same time, since the adjacent rotating shafts 61 are connected by a belt 64 and a pulley 63, when the conveying rollers 62 on the equally spaced rotating shafts 61 all rotate, the conveying work of the board will be completed.
[0044] Further, according to Figure 5 、 Figure 10 and Figure 11 As shown, two sets of lifting components 8 are symmetrically arranged inside the moving component 2, and the two sets of lifting components 8 are controlled by a control component 7. The control component 7 includes a control motor 71, a conveyor belt 72, and a conveying disc 73. The control motor 71 is arranged at the middle position of the outer wall of the moving component 2, and a driving disc is coaxially connected to its top. Two sets of conveyor belts 72 are symmetrically arranged outside the driving disc and connected to the conveying disc 73. The top of the conveying disc 73 is coaxially connected to the lifting component 8;
[0045] The lifting component 8 includes a bidirectional lead screw 81, a rotating cylinder 82, a rotating rod 83, and a connecting block 84. Two sets of rotation cylinders 82 connected by threads are symmetrically arranged outside the bidirectional lead screw 81, and the bottom of the rotating cylinder 82 is axially connected to one side of the rotating rod 83. The other side of the rotating rod 83 is also axially connected to the connecting block 84. Both between the two sets of connecting blocks 84 and between the polishing roller 9 and the waxing cylinder 14 are connected by bearings. A rotating motor is arranged on one side of the polishing roller 9 and the waxing cylinder 14 to control the rotation of the polishing roller 9 and the waxing cylinder 14. The rotating motor is arranged in the hollow structure inside the connecting block 84;
[0046] Among them, when lifting the polishing roller 9 and the waxing cylinder 14, it is necessary to start the control motor 71 to drive the driving disc at its top to rotate. When the driving disc rotates, through the setting of the conveyor belt 72, the conveying disc 73 will rotate. When the conveying disc 73 rotates, it will drive the bidirectional lead screw 81 at its top to rotate. When the bidirectional lead screw 81 rotates, the rotation cylinders 82 symmetrically connected by threads outside it will move towards and away from each other. When it moves, the rotating rod 83 will rotate, thereby driving the connecting block 84 to move up and down. When the connecting block 84 moves up and down, it will drive the polishing roller 9 and the waxing cylinder 14 in the middle to move up and down. When the two move to the appropriate positions, then start the rotating motor inside the connecting block 84 to drive the polishing roller 9 and the waxing cylinder 14 to rotate, and then the polishing and waxing work can be completed.
[0047] As a further preference of this embodiment, according to Figure 4 、Figure 6 and Figure 7 As shown in Figure 7 , the flipping component 10 includes two rotating rings 101. An arc-shaped groove is provided inside the rotating ring 101. On both sides of the outside of the rotating ring 101, driving components 102 are symmetrically arranged to control the rotation of the rotating ring 101. The two rotating rings 101 are connected by two groups of intermediate seats 103 symmetrically arranged in the middle. The inside of the intermediate seat 103 is arranged in a hollow structure. Two groups of conveying components 6 are arranged up and down between the two groups of symmetrically arranged intermediate seats 103. The pulleys 63 and belts 64 on the two groups of conveying components 6 inside the intermediate housing 1001 are arranged inside the intermediate seat 103.
[0048] The driving component 102 includes a driving motor 1021, a driving wheel 1022, a driving gear 1023, a support rod 1024, a meshing gear 1025, and a rotating cam 1026. The support rod 1024 is connected to the bottom of the intermediate housing 1001. A driving motor 1021 bolted to the support rod 1024 is arranged on one side of the support rod 1024. The top of the driving motor 1021 is coaxially connected to a driving wheel 1022 corresponding to the rotating ring 101. A driving gear 1023 is also coaxially connected to the top of the driving wheel 1022. A meshing gear 1025 meshing with the driving gear 1023 is arranged outside the driving gear 1023. The top of the meshing gear 1025 is coaxially connected to a rotating cam 1026. The position of the rotating cam 1026 corresponds to the position of the dust removal component 13. A fixing rod is also arranged outside the meshing gear 1025 and connected to the bottom of the intermediate housing 1001;
[0049] In this application, when turning over, it is necessary to start the driving component 102 outside the rotating ring 101 to drive the rotating ring 101 to rotate. When the rotating ring 101 rotates, it will drive the intermediate seat 103 in the middle to rotate. Since a clamping component 11 is arranged in the middle of the two intermediate seats 103, when the rotating ring 101 rotates, the clamping component 11 in the middle will drive the plate to turn over.
[0050] Among them, when driving, it is necessary to start the driving motor 1021 to drive the driving wheel 1022 at its top to rotate. When the driving wheel 1022 rotates, it will engage with the arc-shaped groove inside the rotating ring 101, thereby driving the rotating ring 101 to rotate.
[0051] Further, according to Figure 2 、 Figure 3 and Figure 7As shown in the figure, the dust removal assembly 13 includes a filter plate 131, a slide plate 132, a compression spring 133, a suction port 134, and a suction fan 135. Both sides of the filter plate 131 are integrally installed on the slide plate 132, and a compression spring 133 is arranged at the bottom of the slide plate 132 to move up and down in a rectangular groove. A suction port 134 is correspondingly arranged at the bottom of the filter plate 131, and the bottom of the suction port 134 penetrates through the suction fan 135. The other side of the suction fan 135 penetrates through the inside of the collection box 4;
[0052] Specifically, when the entire sheet is flipped by the flipping assembly 10, at this time, the suction fan 135 needs to be started so that the top of the suction port 134 sucks the air above it, so that the falling debris is sucked, passes through the filter plate 131 to reach the position of the suction port 134, and finally reaches the inside of the collection box 4 for storage;
[0053] Among them, the debris passes through the filter plate 131 for buffering. When it is buffering, since the rotary cam 1026 rotates and continuously vibrates with the top of the filter plate 131, the slide plate 132 outside the filter plate 131 vibrates up and down under the action of the compression spring 133, achieving the effect of thoroughly vibrating and falling.
[0054] As a further preference of this embodiment, according to Figure 5 and Figure 11 As shown in the figure, symmetric reset assemblies 12 are arranged on both sides below the waxing cylinder 14. The reset assembly 12 includes two connecting cylinders 121. One side of the two connecting cylinders 121 is connected to the inner wall of the moving assembly 2, and a reset spring 122 is arranged inside and connected to the movable cylinder 123. The top of the movable cylinder 123 is connected to the mounting cover 124, and a wax roller 125 is engaged in the middle of the mounting cover 124;
[0055] Among them, when the lifting assembly 8 controls the waxing cylinder 14 to descend, it will squeeze the two symmetric wax rollers 125, so that the symmetric wax rollers 125 move inward under the action of the movable cylinder 123. When the waxing cylinder 14 descends, it needs to be controlled to rotate. Therefore, when it rotates and descends, it will come into contact with the symmetric wax rollers 125, achieving the effect of automatic waxing.
[0056] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0057] The basic principles, main features and advantages of the present application have been described above. Those skilled in the art should understand that the present application is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements will occur to the present application, and these changes and improvements all fall within the scope of the present application claimed. The scope of protection required by the present application is defined by the appended claims and their equivalents.
Claims
1. A polishing and waxing device for processing quartz stone plates, comprising a polishing and waxing device for processing quartz stone plates, comprising a device housing (1), characterized in that: The device housing (1) comprises an intermediate housing (1001) and a connecting housing (1002), and the connecting housings (1002) are integrally installed on both sides of the intermediate housing (1001), and the interiors of the two connecting housings (1002) are both provided with a moving assembly (2) with a top opening, and the interiors of the moving assemblies (2) are both provided with a lifting assembly (8), and the bottoms of the lifting assemblies (8) inside the two moving assemblies (2) are respectively provided with a polishing roller (9) and a waxing cylinder (14), and the two are respectively used for polishing and waxing the quartz stone plate, and the interior of the intermediate housing (1001) is provided with a flip assembly (10), and the bottom of the flip assembly (10) is provided with a corresponding dust removal assembly (13), and the flip assembly (10) is provided with a corresponding dust removal assembly (13). The rotating assembly (10) is used to turn over the polished quartz stone plate, and the turned quartz stone plate corresponds to the dust removal assembly (13), completing the effect of suction and dust removal by the dust removal assembly (13). The interior of the connecting shell (1002) is also provided with a conveying assembly (6) for conveying the plate. The interior of the flipping assembly (10) is provided with a clamping assembly (11), and the clamping assembly (11) is composed of two groups of conveying assemblies (6) for conveying the quartz stone plate entering the flipping assembly (10). The exterior of the intermediate shell (1001) is also provided with a collecting box (4) corresponding to the position of the dust removal assembly (13), for recovering the dust sucked by the dust removal assembly (13).
2. A polishing and waxing device for quartz stone plate processing according to claim 1, characterized in that: Connecting seats (5) are installed on both sides of the bottom of the moving component (2), and a conveying component (6) is arranged in the middle of the two connecting seats (5). The outer side of the connecting seat (5) is connected to the sliding component inside the fixed cover (3). The sliding component includes a rotating motor (31), a one-way screw (32) and an engaging cylinder (33). The top of the rotating motor (31) is coaxially connected to the one-way screw (32), and the external thread of the one-way screw (32) is connected to the engaging cylinder (33). A connecting slider is arranged on the outer side of the engaging cylinder (33) and is connected to the outer wall of the connecting seat (5). The connecting slider slides in the limiting sliding groove (15) on the outer wall of the connecting shell (1002). A reserved hole (21) is arranged at the bottom of the moving component (2), and the position of the reserved hole (21) corresponds to the position of the polishing roller (9) and the waxing cylinder (14).
3. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: The conveying assembly (6) comprises rotating shafts (61) arranged at equal intervals, and coaxially connected conveying rollers (62) are distributed at equal intervals outside the rotating shafts (61), the top end of the rotating shaft (61) is coaxially connected to a pulley (63), and adjacent pulleys (63) are connected by belts (64), a servo motor is arranged at the top end of one of the rotating shafts (61), and the pulley (63) and belt (64) on the conveying assembly (6) located inside the connecting shell (1002) are both arranged in a hollow structure inside the connecting seat (5).
4. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: Two groups of the lifting components (8) are symmetrically arranged inside the moving component (2), and the two groups of lifting components (8) are controlled by a control component (7). The control component (7) comprises a control motor (71), a conveyor belt (72) and a conveyor disc (73). The control motor (71) is arranged in the middle of the outer wall of the moving component (2), and the top end of the control motor (71) is coaxially connected to the driving disc. Two groups of conveyor belts (72) are symmetrically arranged outside the driving disc and connected to the conveyor disc (73). The top end of the conveyor disc (73) is coaxially connected to the lifting component (8).
5. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: The lifting assembly (8) comprises a bidirectional screw (81), a rotating cylinder (82), a rotating rod (83) and a connecting block (84); two groups of threaded rotating cylinders (82) are symmetrically arranged outside the bidirectional screw (81); the bottom of the rotating cylinder (82) is axially connected to one side of the rotating rod (83); the other side of the rotating rod (83) is also axially connected to the connecting block (84); the two groups of connecting blocks (84) are connected to the polishing roller (9) and the waxing cylinder (14) by bearings; a rotating motor is arranged on one side of the polishing roller (9) and the waxing cylinder (14) for controlling the rotation of the polishing roller (9) and the waxing cylinder (14); the rotating motor is arranged in a hollow structure inside the connecting block (84).
6. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: The flip assembly (10) comprises two rotating rings (101), and an arc groove is arranged inside the rotating ring (101). Driving assemblies (102) are symmetrically arranged on both sides of the outside of the rotating ring (101) for controlling the rotating ring (101) to rotate. The middle of the two rotating rings (101) is connected by two symmetrical groups of intermediate seats (103). The interior of the intermediate seats (103) is arranged as a hollow structure. Two groups of conveying assemblies (6) are arranged above and below between the two symmetrical groups of intermediate seats (103), and the pulleys (63) and belts (64) on the two groups of conveying assemblies (6) inside the intermediate shell (1001) are arranged inside the intermediate seats (103).
7. The polishing and waxing device for quartz stone plate processing according to claim 6 is characterized in that: The driving assembly (102) comprises a driving motor (1021), a driving wheel (1022), a driving gear (1023), a support rod (1024), a meshing gear (1025) and a rotating cam (1026); the support rod (1024) is connected to the bottom of the intermediate housing (1001); a driving motor (1021) bolted thereto is provided on one side of the support rod (1024); and a driving wheel (1022) corresponding to the rotating ring (101) is coaxially connected to the top of the driving motor (1021). 1022), a driving gear (1023) is coaxially connected to the top of the driving wheel (1022), a meshing gear (1025) meshing with the driving gear (1023) is arranged on the outer side of the driving gear (1023), and a rotating cam (1026) is coaxially connected to the top of the meshing gear (1025), the position of the rotating cam (1026) corresponds to the position of the dust removal component (13), and a fixing rod is also arranged on the outer side of the meshing gear (1025) and connected to the bottom of the intermediate housing (1001).
8. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: The dust removal assembly (13) comprises a filter plate (131), a slide plate (132), a compression spring (133), a suction port (134) and a suction fan (135); both sides of the filter plate (131) are integrally mounted on the slide plate (132); a compression spring (133) is provided at the bottom of the slide plate (132) to move up and down in a rectangular groove; a suction port (134) is also correspondingly provided at the bottom of the filter plate (131); the bottom of the suction port (134) is intersected by the suction fan (135); and the other side of the suction fan (135) is intersected by the interior of the collection box (4).
9. The polishing and waxing device for quartz stone plate processing according to claim 1 is characterized in that: Symmetrical reset components (12) are arranged on both sides below the waxing cylinder (14), and the reset component (12) includes two connecting cylinders (121), one side of the two connecting cylinders (121) is connected to the inner wall of the moving component (2), and a reset spring (122) is arranged inside the connecting cylinder (121) and connected to a movable cylinder (123), the top end of the movable cylinder (123) is connected to a mounting cover (124), and a locking wax roller (125) is arranged in the middle of the mounting cover (124).
Citation Information
Patent Citations
Quartz stone polishing and waxing device
CN105965373A
Cooling device of quartz cavity
CN118258151A
Quartz raw material plate surface polishing device
CN118990182A
Piercing polishing device
JP6712689B1
Cited By
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