A polishing and waxing device for processing quartz stone plates

By introducing a flipping component and a dust removal component into the quartz stone slab processing device, the problem of residual debris after polishing was solved, enabling thorough dust removal and smooth waxing of the slab surface, thus improving processing quality and efficiency.

CN120190746BActive Publication Date: 2025-12-09CRAFTSMAN QUARTZ TECH CO LTD
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Patent Information

Application Number
CN202510481784.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-12-09
Estimated Expiration
2045-04-17

AI Technical Summary

Technical Problem

Existing quartz stone slab processing equipment lacks an effective dust removal mechanism after polishing, resulting in polishing debris residue that affects subsequent waxing. Furthermore, the fixed dust removal position in some devices leads to unsatisfactory dust removal results.

Method used

A polishing and waxing device with a flipping component and a dust removal component was designed. The flipping component flips the plate to remove dust, and the combination structure of the suction fan and the filter plate achieves thorough dust removal. The combination of the clamping component and the conveying component enables the smooth execution of the polishing and waxing processes.

Benefits of technology

It achieves thorough dust removal from the surface of the polished board, avoids debris residue, ensures the smooth progress of the subsequent waxing process and surface quality, and facilitates the maintenance of the polishing roller and waxing cylinder.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a polishing and waxing device for quartz stone plate processing, which comprises a device shell, the device shell comprises a middle shell and a connecting shell, and the connecting shell is integrally arranged on the two sides of the middle shell, a moving assembly with an open top is arranged in each of the two connecting shells, a lifting assembly is arranged in each of the moving assemblies, a polishing roller and a wax feeding cylinder are arranged at the bottom of the lifting assembly in each of the moving assemblies, and a corresponding dust removal assembly is arranged at the bottom of the overturning assembly, which is used for overturning the polished quartz stone plate. The polishing and waxing device for quartz stone plate processing; the polishing roller and the wax feeding cylinder are arranged in the moving assembly, and the moving assembly can also move outward in the connecting shell, so that the polishing roller and the wax feeding cylinder can be conveniently maintained when the moving assembly moves outward and the open top structure of the moving assembly is matched.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of flue gas quartz stone processing, in particular to a polishing and waxing device for quartz stone plate processing. BACKGROUND

[0002] Quartz stone plate is a common building material and decorative material, widely used in home decoration, commercial space and industrial field. It is divided into natural quartz stone plate and artificial quartz stone plate, natural quartz stone is a rock formed by nature for millions of years, mainly composed of silicon dioxide (SiO2), usually containing a small amount of feldspar, mica and other minerals. Its hardness is high, wear resistance is strong, artificial quartz stone is the mainstream product on the market. It is made of more than 90% natural quartz sand as raw material, supplemented by resin, pigment, curing agent and other additives, through vacuum vibration forming, high temperature curing and other processes, and in order to improve the gloss, appearance and durability of the surface of quartz stone, polishing and waxing device is generally used for processing, through polishing process, the surface of quartz stone is smooth and flat, with gloss, and through waxing process, a protective film can be formed on the surface of quartz stone to prevent stains and liquid penetration, so that polishing and grinding device is essential in the process of quartz stone processing. When processing, the fixed size of the quartz stone plate after processing is conveyed to the lower part of the polishing mechanism by the conveying mechanism for polishing work, then the conveying mechanism continues to move to move the plate to the lower part of the waxing mechanism for waxing work, so that the output of the conveying mechanism can be output;

[0003] For example, application No. 201610501995.9, a quartz stone polishing and waxing device, it includes support plate and fixed leg fixed on the support plate; The support plate is fixed with driving motor A, driving motor A is connected with driving gear A, driving gear A is wound with chain A; The lower side of the support plate is fixed with driving motor B, driving motor B is connected with driving gear B, driving gear B is wound with chain B; The lower side of the support plate is provided with canvas polishing roller, leather polishing roller, felt polishing roller and plush polishing roller; The right side of the plush polishing roller is provided with waxing roller, the waxing roller is connected with the rotating shaft E, one end of the rotating shaft E is connected with the small gear A; The middle part of the fixed leg is fixed with the fixed vertical plate, one end of the fixed vertical plate is provided with the roller shaft A, the other end of the fixed vertical plate is provided with the roller shaft B, the outer circumference of the roller shaft B is wound with the large belt, the plate is placed on the large belt; One end of the roller shaft B is connected with the rotating motor; The roller shaft C is connected with the rotating motor; The present application has the advantages of simple operation and stable operation;

[0004] However, the above device in the process of processing, because the polishing process is in the waxing process before, because of polishing, will produce a large amount of debris, the traditional device after polishing, not set corresponding dust removal mechanism, so as to lead to subsequent in waxing, will appear plate surface protruding serious phenomenon, and although some device set corresponding dust removal mechanism, but in the dust removal, because the position of dust removal is fixed, and thus also will lead to the dust removal effect is not ideal phenomenon. SUMMARY

[0005] The purpose of the present application is to provide a kind of polishing waxing device for quartz stone plate processing, to solve the above background technology proposed in the current market device in the process of processing, because the polishing process is in the waxing process before, because of polishing, will produce a large amount of debris, the traditional device after polishing, not set corresponding dust removal mechanism, so as to lead to subsequent in waxing, will appear plate surface protruding serious phenomenon occurs, and although some device set corresponding dust removal mechanism, but in the dust removal, because the position of dust removal is fixed, and thus also will lead to the dust removal effect is not ideal problem.

[0006] To achieve the above object, the present application provides the following technical scheme: a kind of polishing waxing device for quartz stone plate processing, including device shell, the device shell includes middle shell and connecting shell, and the two sides of middle shell are integrally installed with connecting shell, 2 The inside of connecting shell is provided with the moving assembly of top opening, and the inside of moving assembly is provided with lifting assembly, the bottom of lifting assembly in 2 The polishing roller and waxing cylinder are respectively arranged in the inside of moving assembly, and they are used for polishing and waxing work of quartz stone plate respectively, the inside of the middle shell is provided with turnover assembly, corresponding dust removal assembly is arranged in the bottom of the turnover assembly, the turnover assembly is used to turn over the quartz stone plate after polishing, and the quartz stone plate after turning over corresponds with dust removal assembly, completes the effect of being sucked and dusted by dust removal assembly, the inside of the connecting shell is also provided with conveying assembly, for the conveying work of plate, the inside of the turnover assembly is provided with clamping assembly, and clamping assembly is composed of 2 groups of conveying assembly, for conveying work of quartz stone plate entering the inside of turnover assembly, the outside of the middle shell is also provided with collecting box corresponding to the position of dust removal assembly, for the recycling work of dust sucked by dust removal assembly.

[0007] Preferably, the bottom of the moving assembly is provided with two connecting seats, and a conveying assembly is arranged between the two connecting seats, and the outer sides of the connecting seats are connected with the sliding assembly inside the fixed cover, the sliding assembly comprises a rotary motor, a one-way screw rod and an engaging cylinder, the top end of the rotary motor is coaxially connected with the one-way screw rod, the outer side of the one-way screw rod is threadedly connected with the engaging cylinder, the outer side of the engaging cylinder is provided with a connecting sliding block, and the outer wall of the connecting seat is connected with the connecting sliding block, and the connecting sliding block slides in the limiting sliding groove on the outer wall of the connecting shell, and the bottom of the moving assembly is provided with a reserved hole, and the position of the reserved hole corresponds to the positions of the polishing roller and the wax feeding cylinder.

[0008] Preferably, the conveying assembly comprises rotary shafts arranged at equal intervals, and the outer sides of the rotary shafts are arranged with conveying rollers connected coaxially at equal intervals, the top end of each rotary shaft is coaxially connected with a belt pulley, and the belt pulleys are connected through a belt, and the top end of one of the rotary shafts is provided with a servo motor, and the belt pulleys and the belt on the conveying assembly inside the connecting shell are arranged in the hollow structure inside the connecting seat.

[0009] Preferably, the lifting assembly is symmetrically arranged in two groups inside the moving assembly, and the two groups of lifting assemblies are controlled through a control assembly, the control assembly comprises a control motor, a conveying belt and a conveying disc, the control motor is arranged at the middle position of the outer wall of the moving assembly, the top end of the control motor is coaxially connected with a driving disc, two groups of conveying belts are symmetrically arranged outside the driving disc and connected with the conveying disc, and the top end of the conveying disc is coaxially connected with the lifting assembly.

[0010] Preferably, the lifting assembly comprises a bidirectional screw rod, a rotating cylinder, a rotating rod and a connecting block, the outer sides of the bidirectional screw rod are symmetrically provided with two rotating cylinders connected through threads, the bottom of each rotating cylinder is connected with one side of the rotating rod through a shaft, the other side of the rotating rod is also connected with the connecting block through a shaft, the two connecting blocks are connected with the polishing roller and the wax feeding cylinder through bearings, one side of the polishing roller and the wax feeding cylinder is provided with a rotating motor for controlling the rotation of the polishing roller and the wax feeding cylinder, and the rotating motor is arranged in the hollow structure inside the connecting block.

[0011] Preferably, the turnover assembly comprises two rotating rings, and the inner sides of the rotating rings are provided with arc-shaped grooves, the outer sides of the rotating rings are symmetrically provided with driving assemblies for controlling the rotation of the rotating rings, the two rotating rings are connected through two groups of symmetrical intermediate seats, the inner sides of the intermediate seats are provided with hollow structures, and two groups of conveying assemblies are arranged above and below the two groups of symmetrical intermediate seats, and the belt pulleys and the belts on the two groups of conveying assemblies inside the intermediate shell are arranged in the intermediate seats.

[0012] Preferably, the driving assembly comprises a driving motor, a driving wheel, a driving gear, a supporting rod, an engaging gear and a rotating cam, one side of the supporting rod is connected with the bottom of the middle shell body, and a driving motor is bolted on one side of the supporting rod, the top end of the driving motor is coaxially connected with a driving wheel corresponding to the rotating ring, a driving gear is coaxially connected with the top end of the driving wheel, the outer side of the driving gear is provided with an engaging gear which is in mesh with the driving gear, the top end of the engaging gear is coaxially connected with a rotating cam, the position of the rotating cam corresponds to the position of the dust removal assembly, and the outer side of the engaging gear is also provided with a fixed rod connected with the bottom of the middle shell body.

[0013] Preferably, the dust removal assembly comprises a filter plate, a sliding plate, a compression spring, a suction port and a suction fan, the filter plate is integrally installed on both sides of the sliding plate, the bottom of the sliding plate is provided with a compression spring which moves up and down in the rectangular groove, the bottom of the filter plate is also provided with a suction port corresponding, and the bottom of the suction port is penetrated by the suction fan, and the other side of the suction fan is penetrated by the inside of the collection box.

[0014] Preferably, the lower two sides of the waxing cylinder are provided with symmetrical reset assemblies, and the reset assembly comprises two connecting barrels, one side of the two connecting barrels is connected with the inner wall of the moving assembly, and a reset spring is arranged in the inside and connected with the movable cylinder, the top end of the movable cylinder is connected with the mounting cover, and the mounting cover is provided with a clamping wax roller in the middle.

[0015] Compared with the prior art, the polishing and waxing device for quartz stone plate processing has the following advantages:

[0016] The polishing and waxing device for quartz stone plate processing has the following advantages:

[0017] The polishing roller and the waxing cylinder are arranged in the inside of the moving assembly, and the moving assembly can also move outwardly in the inside of the connecting shell body, so that the polishing roller and the waxing cylinder can be conveniently maintained when the moving assembly moves outwardly.

[0018] When the turnover assembly is used for turnover dust removal, the debris falls through the filter plate first, the filter plate is provided, can buffer the falling work of dust, avoid the phenomenon that the suction port is blocked by sucking too much at one time, and the filter plate can also vibrate under the rotation of the rotating cam, so that the filter plate does not appear the phenomenon of blockage;

[0019] The wax roller is symmetrically provided with two groups, and when the waxing cylinder is lowered for waxing, it will be extruded and separated from the two groups of wax rollers, and when extruded, the rotation of the waxing cylinder can make the waxing cylinder evenly stick to the wax, so that the effect of automatic waxing can be achieved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a front view structure schematic diagram of the present application;

[0021] Figure 2 It is a half cut front view structure schematic diagram of the present application;

[0022] Figure 3 It is a half cut bottom view structure schematic diagram of the present application;

[0023] Figure 4 It is an enlarged structure schematic diagram of the turnover assembly of the present application;

[0024] Figure 5 It is an enlarged structure schematic diagram of the moving assembly of the present application;

[0025] Figure 6 It is a local enlarged structure schematic diagram of the turnover assembly of the present application;

[0026] Figure 7 It is a local enlarged structure schematic diagram of the dust removal assembly of the present application;

[0027] Figure 8 It is a top view structure schematic diagram of the connecting seat and the conveying assembly of the present application;

[0028] Figure 9 It is a local enlarged structure schematic diagram of the conveying assembly of the present application;

[0029] Figure 10 It is a back structure schematic diagram of the moving assembly of the present application;

[0030] Figure 11 It is a control assembly structure schematic diagram of the present application.

[0031] In the figure: 1, device shell; 1001, intermediate shell; 1002, connecting shell; 2, moving assembly; 21, reserved hole; 3, fixed cover; 31, rotary motor; 32, one-way screw rod; 33, meshing cylinder; 4, collection box; 5, connecting seat; 6, conveying assembly; 61, rotating shaft; 62, conveying roller; 63, pulley; 64, belt; 7, control assembly; 71, control motor; 72, conveying belt; 73, conveying disc; 8, lifting assembly; 81, two-way screw rod; 82, rotating cylinder; 83, rotating rod; 84, connecting block; 9, polishing roller; 10, turnover assembly; 101, rotating ring; 102, driving assembly; 1021, driving motor; 1022, driving wheel; 1023, driving gear; 1024, support rod; 1025, meshing gear; 1026, rotating cam; 103, intermediate seat; 11, clamping assembly; 12, reset assembly; 121, connecting cylinder; 122, reset spring; 123, movable cylinder; 124, mounting cover; 125, wax roller; 13, dust removal assembly; 131, filter plate; 132, sliding plate; 133, compression spring; 134, suction port; 135, suction fan; 14, waxing cylinder; 15, limiting sliding slot. DETAILED DESCRIPTION

[0032] Hereinafter, the present application will be further described in conjunction with specific embodiments, and it should be noted that the following described embodiments or technical features can be combined with each other in any manner without conflict to form new embodiments.

[0033] In the description of the present application, it should be noted that for orientation words, such as terms "center", "transverse", "longitudinal", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate the orientation and positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and cannot be understood as limiting the specific protection scope of the present application.

[0034] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and do not necessarily describe a specific order or sequence.

[0035] Please refer to Figures 1-11The application provides a polishing and waxing device for quartz stone plate processing, which has a turnover assembly 10 and a dust removal assembly 13, and specifically, when in use, the whole device is fixed at a suitable position under the action of the device shell 1, then the whole device is connected with an external power supply, after that, the whole device can start to work, the external quartz stone plate reaches the conveying assembly 6 at the bottom of the moving assembly 2, the conveying assembly 6 is started to drive the plate to convey, so that the plate is conveyed to the bottom of the polishing roller 9, then the lifting assembly 8 is controlled to descend, so that it drives the polishing roller 9 to descend to the surface of the plate to polish the plate, after polishing, the conveying assembly 6 conveys the plate again into the clamping assembly 11 in the turnover assembly 10, then the turnover assembly 10 is controlled to turn over, so that the plate is selected, then the dust removal assembly 13 is started to completely remove dust on the surface of the plate, after dust removal, the plate is again made to have the front face upward, then the two conveying assemblies 6 in the clamping assembly 11 are started to rotate in opposite directions to convey the plate again, so that the plate is conveyed to the conveying assembly 6 at the bottom of the waxing cylinder 14, then the waxing cylinder 14 is controlled to descend to contact the surface of the plate, so that the effect of waxing the plate is achieved, finally, the plate is discharged through the conveying assembly 6.

[0036] The application provides a polishing and waxing device for quartz stone plate processing, which has a turnover assembly 10 and a dust removal assembly 13, and specifically, when in use, the whole device is fixed at a suitable position under the action of the device shell 1, then the whole device is connected with an external power supply, after that, the whole device can start to work, the external quartz stone plate reaches the conveying assembly 6 at the bottom of the moving assembly 2, the conveying assembly 6 is started to drive the plate to convey, so that the plate is conveyed to the bottom of the polishing roller 9, then the lifting assembly 8 is controlled to descend, so that it drives the polishing roller 9 to descend to the surface of the plate to polish the plate, after polishing, the conveying assembly 6 conveys the plate again into the clamping assembly 11 in the turnover assembly 10, then the turnover assembly 10 is controlled to turn over, so that the plate is selected, then the dust removal assembly 13 is started to completely remove dust on the surface of the plate, after dust removal, the plate is again made to have the front face upward, then the two conveying assemblies 6 in the clamping assembly 11 are started to rotate in opposite directions to convey the plate again, so that the plate is conveyed to the conveying assembly 6 at the bottom of the waxing cylinder 14, then the waxing cylinder 14 is controlled to descend to contact the surface of the plate, so that the effect of waxing the plate is achieved, finally, the plate is discharged through the conveying assembly 6.

[0037] In the application, the bottom of the intermediate shell 1001 is a hollow rectangular structure, and the bottom of the connecting shell 1002 is provided with two groups of support plates for supporting.

[0038] Wherein, according to Figure 2 、 Figure 3 、 Figure 7 and Figure 8 , the bottom of the moving assembly 2 is provided with two connecting seats 5, and the middle of the two connecting seats 5 is provided with a conveying assembly 6. The outer side of the connecting seat 5 is connected with the sliding assembly inside the fixed cover 3, and the sliding assembly includes a rotary motor 31, a one-way screw rod 32 and a meshing cylinder 33. The top end of the rotary motor 31 is coaxially connected with the one-way screw rod 32, and the outer side of the one-way screw rod 32 is threadedly connected with the meshing cylinder 33. The outer side of the meshing cylinder 33 is provided with a connecting sliding block connected with the outer wall of the connecting seat 5, and the connecting sliding block slides in the limiting sliding groove 15 on the outer wall of the connecting shell 1002. The bottom of the moving assembly 2 is provided with a reserved hole 21, and the position of the reserved hole 21 corresponds to the positions of the polishing roller 9 and the wax feeding cylinder 14.

[0039] Wherein, when the polishing roller 9 and the wax feeding cylinder 14 need to be repaired, the moving assembly 2 needs to be controlled to slide out in the connecting shell 1002. At this time, the rotary motor 31 needs to be started to drive the one-way screw rod 32 at the top end to rotate. When the one-way screw rod 32 rotates, it is threadedly connected with the meshing cylinder 33, so that the meshing cylinder 33 drives the connecting sliding block at the top end to drive the connecting seat 5 to move, and when the connecting seat 5 moves, it also drives the conveying assembly 6 and the moving assembly 2 in the middle to move.

[0040] In the application, since the top end of the moving assembly 2 is a hollow structure, when it slides out, the inside of the top end can be repaired. Since the surface of the connecting shell 1002 is provided with a limiting sliding groove 15, when the meshing cylinder 33 is threadedly connected, it will move forward and backward.

[0041] Wherein, when conveying the plate, according to Figure 8 and Figure 9 , the conveying assembly 6 includes rotating shafts 61 arranged at equal intervals, and the outer sides of the rotating shafts 61 are arranged with coaxially connected conveying rollers 62 at equal intervals. The top end of the rotating shaft 61 is coaxially connected with a belt pulley 63, and the adjacent belt pulleys 63 are connected by a belt 64. The top end of one of the rotating shafts 61 is provided with a servo motor. The belt pulleys 63 and the belt 64 on the conveying assembly 6 inside the connecting shell 1002 are arranged in the hollow structure inside the connecting seat 5.

[0042] Specifically, when the plate conveying assembly 6 is conveying the plate, the servo motor is started to drive the rotating shaft 61 at the top end of the servo motor to rotate. When the rotating shaft 61 rotates, the conveying rollers 62 coaxially connected to the rotating shaft 61 also rotate. Since the adjacent rotating shafts 61 are connected by the belts 64 and the pulleys 63, when the conveying rollers 62 on the equally spaced rotating shafts 61 rotate, the plate conveying work is completed.

[0043] Further, according to Figure 5 、 Figure 10 and Figure 11 , the lifting assembly 8 is symmetrically arranged inside the moving assembly 2 in two groups, and the two groups of lifting assemblies 8 are controlled by the control assembly 7. The control assembly 7 includes a control motor 71, a conveying belt 72, and a conveying disc 73. The control motor 71 is arranged at the middle position of the outer wall of the moving assembly 2, and a driving disc is coaxially connected to the top end of the control motor 71. Two groups of conveying belts 72 are symmetrically arranged outside the driving disc and connected to the conveying disc 73. The top end of the conveying disc 73 is coaxially connected to the lifting assembly 8.

[0044] The lifting assembly 8 includes a bidirectional screw rod 81, a rotating cylinder 82, a rotating rod 83, and a connecting block 84. Two groups of rotating cylinders 82 are symmetrically arranged outside the bidirectional screw rod 81 and are threadedly connected. 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 bearing-connected to the polishing roller 9 and the waxing cylinder 14. One side of the polishing roller 9 and the waxing cylinder 14 is provided with a rotating motor for controlling 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.

[0045] When the polishing roller 9 and the waxing cylinder 14 are controlled to move up and down, the control motor 71 is started to drive the driving disc at the top end of the control motor 71 to rotate. When the driving disc rotates, the conveying disc 73 rotates through the arrangement of the conveying belt 72. When the conveying disc 73 rotates, the bidirectional screw rod 81 at the top end of the conveying disc 73 rotates. When the bidirectional screw rod 81 rotates, the rotating cylinders 82 symmetrically arranged outside the bidirectional screw rod 81 move towards or away from each other. When the rotating cylinders 82 move, the rotating rod 83 rotates, thereby driving the connecting block 84 to move up and down. When the connecting block 84 moves up and down, the polishing roller 9 and the waxing cylinder 14 in the middle of the connecting block 84 move up and down. When the polishing roller 9 and the waxing cylinder 14 move to the appropriate position, the rotating motor in the connecting block 84 is started to drive the polishing roller 9 and the waxing cylinder 14 to rotate, thereby completing the polishing and waxing work.

[0046] As a further preferred embodiment of the present embodiment, according to Figure 4 ,Figure 6 and Figure 7 As shown in the figure, the turnover assembly 10 comprises 2 rotating rings 101, and the inside of the rotating ring 101 is provided with an arc-shaped groove, and the outside of the rotating ring 101 is symmetrically provided with a driving assembly 102 for controlling the rotating ring 101 to rotate, and the middle of the two rotating rings 101 is connected by symmetrically arranged two groups of middle seats 103, the inside of the middle seat 103 is provided with a hollow structure, and two groups of conveying assemblies 6 are arranged above and below the symmetrically arranged two groups of middle seats 103, and the pulley 63 and the belt 64 on the two groups of conveying assemblies 6 inside the middle shell 1001 are arranged in the inside of the middle seat 103.

[0047] The driving assembly 102 comprises a driving motor 1021, a driving wheel 1022, a driving gear 1023, a supporting rod 1024, an engaging gear 1025 and a rotating cam 1026, the supporting rod 1024 is connected with the bottom of the middle shell 1001, one side of the supporting rod 1024 is provided with the driving motor 1021 which is bolted thereto, the top end of the driving motor 1021 is coaxially connected with the driving wheel 1022 corresponding to the rotating ring 101, the top end of the driving wheel 1022 is also coaxially connected with the driving gear 1023, the outside of the driving gear 1023 is provided with the engaging gear 1025 which is engaged with each other, the top end of the engaging gear 1025 is coaxially connected with the rotating cam 1026, the position of the rotating cam 1026 corresponds to the position of the dust removal assembly 13, and the outside of the engaging gear 1025 is also provided with a fixed rod connected with the bottom of the middle shell 1001.

[0048] In this application, when turning over, the driving assembly 102 on the outside of the rotating ring 101 needs to be started to drive the rotating ring 101 to rotate, and when the rotating ring 101 rotates, the middle seat 103 in the middle of the rotating ring 101 will also rotate, and since the middle of the two middle seats 103 is provided with the clamping assembly 11, the clamping assembly 11 in the middle will drive the plate to turn over when the rotating ring 101 rotates.

[0049] When driving, the driving motor 1021 needs to be started to drive the driving wheel 1022 at the top end to rotate, and when the driving wheel 1022 rotates, it will be engaged with the arc-shaped groove in the inside of the rotating ring 101, thereby driving the rotating ring 101 to rotate.

[0050] Further, according to Figure 2 , Figure 3 and Figure 7As shown, the dust removal assembly 13 comprises a filter plate 131, a sliding 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 sliding plate 132, and the bottom of the sliding plate 132 is provided with the compression spring 133 to move up and down in the rectangular groove, and the bottom of the filter plate 131 is also provided with the suction port 134, and the bottom of the suction port 134 is penetrated by the suction fan 135, and the other side of the suction fan 135 is penetrated by the inside of the collection box 4;

[0051] Specifically, when the entire plate is turned over with the turnover assembly 10, the suction fan 135 needs to be started at this time, so that the top end of the suction port 134 performs air suction work above it, so that the turnover falling debris is sucked, passes through the filter plate 131 to the position of the suction port 134, and finally reaches the inside of the collection box 4 for storage;

[0052] Wherein, the debris passes through the filter plate 131 for buffering work, and when buffering, since the rotary cam 1026 rotates, it is constantly vibrated with the top end of the filter plate 131, so that the sliding plate 132 outside the filter plate 131 vibrates up and down under the action of the compression spring 133, achieving the effect of complete vibration and falling.

[0053] As a further preferred embodiment of the present embodiment, according to Figure 5 and Figure 11 As shown, the lower two sides of the waxing cylinder 14 are provided with symmetrical reset assemblies 12, and the reset assembly 12 comprises two connecting cylinders 121, one side of the two connecting cylinders 121 is connected with the inner wall of the moving assembly 2, and the inside is provided with a reset spring 122 connected with a movable cylinder 123, the top end of the movable cylinder 123 is connected with a mounting cover 124, and the mounting cover 124 is provided with a clamping wax roller 125 in the middle;

[0054] Wherein, when the lifting assembly 8 controls the descent of the waxing cylinder 14, it will extrude the two symmetrical wax rollers 125, so that the symmetrical wax rollers 125 move inward under the action of the movable cylinder 123, and when the waxing cylinder 14 descends, it needs to be controlled to rotate, so that it will be in contact with the symmetrical wax rollers 125 during rotation and descent, achieving the effect of automatic waxing.

[0055] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.

[0056] The foregoing describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-described embodiments, and the above-described embodiments and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection claimed by the present application is defined by the appended claims and their equivalents.

Claims

1. A polishing and waxing device for quartz stone plate processing, comprising a polishing and waxing device for quartz stone plate processing, comprising a device housing (1), characterized in that, The device shell (1) includes an intermediate shell (1001) and a connecting shell (1002), and the two sides of the intermediate shell (1001) are integrally provided with the connecting shell (1002), the interiors of the two connecting shells (1002) are provided with mobile assemblies (2) with open top ends, the interiors of the mobile assemblies (2) are provided with lifting assemblies (8), the bottoms of the lifting assemblies (8) in the interiors of the two mobile assemblies (2) are respectively provided with polishing rollers (9) and waxing cylinders (14), which are respectively used for polishing and waxing quartz stone slabs, the interior of the intermediate shell (1001) is provided with a turnover assembly (10), the bottom of the turnover assembly (10) is provided with a corresponding dust removal assembly (13), the turnover assembly (10) is used for turning over the polished quartz stone slab, and the turned-over quartz stone slab corresponds to the dust removal assembly (13) to complete the dust removal effect of the dust removal assembly (13), the interior of the connecting shell (1002) is further provided with a conveying assembly (6) for conveying the slabs, the interior of the turnover assembly (10) is provided with a clamping assembly (11) composed of two conveying assemblies (6) for conveying the quartz stone slab into the interior of the turnover assembly (10), and the exterior of the intermediate shell (1001) is further provided with a collecting box (4) corresponding to the position of the dust removal assembly (13) for recycling the dust sucked by the dust removal assembly (13).

2. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The bottoms of the two sides of the mobile assembly (2) are provided with connecting seats (5), the interiors of the two connecting seats (5) are provided with conveying assemblies (6), the outer sides of the connecting seats (5) are connected with sliding assemblies in the interiors of the fixed covers (3), the sliding assembly comprises a rotary motor (31), a one-way screw rod (32) and an engagement cylinder (33), the top end of the rotary motor (31) is coaxially connected with the one-way screw rod (32), the outer side of the one-way screw rod (32) is threadedly connected with the engagement cylinder (33), the outer side of the engagement cylinder (33) is provided with a connecting sliding block connected with the outer wall of the connecting seat (5), and the connecting sliding block slides in the limiting sliding groove (15) on the outer wall of the connecting shell (1002), the bottom of the mobile assembly (2) is provided with a reserved hole (21), and the position of the reserved hole (21) corresponds to the positions of the polishing roller (9) and the waxing cylinder (14).

3. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The conveying assembly (6) comprises rotation shafts (61) arranged at equal intervals, the outer sides of the rotation shafts (61) are arranged with coaxially connected conveying rollers (62) at equal intervals, the top end of the rotation shaft (61) is coaxially connected with a belt pulley (63), and the adjacent belt pulleys (63) are connected through a belt (64), and the top end of one of the rotation shafts (61) is provided with a servo motor, and the belt pulleys (63) and the belt (64) on the conveying assembly (6) in the interior of the connecting shell (1002) are arranged in the hollow structure in the connecting seat (5).

4. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The lifting assembly (8) is symmetrically arranged inside the moving assembly (2), and the two lifting assemblies (8) are controlled by the control assembly (7), the control assembly (7) comprises a control motor (71), a conveying belt (72) and a conveying disc (73), the control motor (71) is arranged at the middle position of the outer wall of the moving assembly (2), and the top end thereof is coaxially connected with a driving disc, two sets of conveying belts (72) are symmetrically arranged outside the driving disc and connected with the conveying disc (73), and the top end of the conveying disc (73) is coaxially connected with the lifting assembly (8).

5. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The lifting assembly (8) comprises a bidirectional screw rod (81), a rotating cylinder (82), a rotating rod (83) and a connecting block (84), two sets of rotating cylinders (82) are symmetrically arranged outside the bidirectional screw rod (81) and are in threaded connection, the bottom of the rotating cylinder (82) is connected with one side of the rotating rod (83), the other side of the rotating rod (83) is also connected with the connecting block (84), the two connecting blocks (84) are connected with the polishing roller (9) and the wax feeding cylinder (14) through bearings, one side of the polishing roller (9) and the wax feeding cylinder (14) is provided with a rotating motor for controlling the rotation of the polishing roller (9) and the wax feeding cylinder (14), and the rotating motor is arranged in the hollow structure inside the connecting block (84).

6. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The turnover assembly (10) comprises two rotating rings (101), and the inside of the rotating ring (101) is provided with an arc-shaped groove, the outside of the rotating ring (101) is symmetrically provided with a driving assembly (102) on both sides, which is used for controlling the rotating work of the rotating ring (101), the two rotating rings (101) are connected through two sets of symmetrical intermediate seats (103) in the middle, the inside of the intermediate seat (103) is provided with a hollow structure, and two sets of conveying assemblies (6) are arranged above and below the two sets of symmetrical intermediate seats (103), and the pulleys (63) and the belts (64) of the two sets of conveying assemblies (6) arranged inside the intermediate shell (1001) are arranged in the inside of the intermediate seat (103).

7. The polishing and waxing device for processing quartz stone slabs according to claim 6, characterized in that: The driving assembly (102) includes a driving motor (1021), a driving wheel (1022), a driving gear (1023), a support rod (1024), an engaging gear (1025) and a rotating cam (1026), the support rod (1024) is connected with the bottom of the middle shell (1001), and the side of the support rod (1024) is provided with the driving motor (1021) bolted thereto, and the top end of the driving motor (1021) is coaxially connected with the driving wheel (1022) corresponding to the rotating ring (101), and the top end of the driving wheel (1022) is also coaxially connected with the driving gear (1023), the outer side of the driving gear (1023) is provided with the engaging gear (1025) engaged with each other, and the top end of the engaging gear (1025) is coaxially connected with the rotating cam (1026), the position of the rotating cam (1026) corresponds to the position of the dust removal assembly (13), and the outer side of the engaging gear (1025) is also provided with a fixed rod connected with the bottom of the middle shell (1001).

8. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The dust removal assembly (13) includes a filter plate (131), a sliding plate (132), a compression spring (133), a suction port (134) and a suction fan (135), the two sides of the filter plate (131) are integrally installed on the sliding plate (132), and the bottom of the sliding plate (132) is provided with the compression spring (133) moving up and down in the rectangular groove, the bottom of the filter plate (131) is also provided with the suction port (134) corresponding, and the bottom of the suction port (134) penetrates the suction fan (135), the other side of the suction fan (135) penetrates the inside of the collection box (4).

9. The polishing and waxing device for processing quartz stone slabs according to claim 1, characterized in that: The lower two sides of the wax feeding cylinder (14) are provided with symmetrical reset assemblies (12), and the reset assembly (12) includes two connecting cylinders (121), the side of the two connecting cylinders (121) is connected with the inner wall of the moving assembly (2), and the inside is provided with the reset spring (122) connected with the movable cylinder (123), the top end of the movable cylinder (123) is connected with the mounting cover (124), and the mounting cover (124) is provided with the clamped wax roller (125) in the middle.

Citation Information

Patent Citations

  • Quartz stone polishing and waxing device

    CN105965373A

  • Cooling device of quartz cavity

    CN118258151A