Equipment for manufacturing quartz stone plate with textures

By using the capping and color spraying mechanism in the quartz stone slab production equipment, the equipment structure is simplified, the accuracy and beauty of texture generation are improved, and the production cost is reduced.

CN223456256UActive Publication Date: 2025-10-21佛山赛元自动化设备有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422575903.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-10-21
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The existing quartz stone slab texture production equipment has a complex structure and high cost, and the texture accuracy depends on the density of the top column, resulting in bloated equipment and high manufacturing costs.

Method used

The top cracking mechanism and the color spraying mechanism are adopted. By setting a top rod at the bottom of the supporting belt, the top rod moves horizontally in the horizontal and vertical directions to form preset cracks, and the color material is sprayed into the nozzle, which simplifies the equipment structure and improves the texture generation accuracy and beauty.

Benefits of technology

It realizes the natural and precise generation of quartz stone plate texture, simplifies the equipment structure and reduces production costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223456256U_ABST
    Figure CN223456256U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of quartz stone plate production, and provides equipment for manufacturing quartz stone plates with textures, which comprises a rack, a top cracking mechanism and a color spraying mechanism, the top cracking mechanism and the color spraying mechanism are respectively mounted on the rack, and the rack comprises a bottom frame, a moving frame in sliding connection with the bottom frame and a material supporting belt arranged on the bottom frame. The movable frame is erected on the top of the bottom frame. The jacking mechanism is mounted on the bottom frame and located at the bottom of the working face of the material supporting belt, and the jacking mechanism comprises a jacking rod, a first horizontal power piece for driving the jacking rod to horizontally move in the transverse direction of the bottom frame, a second horizontal power piece for driving the jacking rod to horizontally move in the longitudinal direction of the bottom frame and a jacking power piece for driving the jacking rod to jack up or reset the material supporting belt; the color spraying mechanism is installed on the moving frame, an X-axis moving power piece for driving the color spraying mechanism to horizontally move along the X axis and a Y-axis moving power piece for driving the color spraying mechanism to horizontally move along the Y axis are installed on the moving frame, the color spraying mechanism comprises a lifting power piece and a spraying head, and the lifting power piece drives the spraying head to ascend and descend.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to quartz stone plate production technical field, especially in a kind of for manufacturing textured quartz stone plate equipment. BACKGROUND

[0002] Compared with ordinary natural stone materials such as marble and granite, artificial quartz stone material is harder, more solid, less water-absorbing, more resistant to dirt, more resistant to scratches, more resistant to breakage, more resistant to chemical corrosion and more resistant to heat.

[0003] Currently, in order to form natural and random lines and colors on artificial quartz stone plate, the slightly wet and soft slab that has not been heated and solidified is usually placed on a platform with a plurality of top columns arranged in a matrix, and then the corresponding top columns are raised to crack the slab according to the path of the desired pattern, and then the desired colorant is injected into the crack, and then the treated slightly wet slab is moved into a vacuum press for pressing, and finally the pressed material is moved into a curing oven for heating and solidification into a hardened quartz stone plate. Since the accuracy of the lines depends on the density of the top columns, in order to improve the accuracy of crack formation, the density of the top columns must be increased, and each top column needs to be equipped with a separate power component for driving the lifting, resulting in a bulky and complex structure of the equipment and high manufacturing cost.

[0004] The technical problem to be solved by the utility model is how to solve the problem of complex structure and high cost of existing quartz stone plate texture production equipment. UTILITY MODEL CONTENT

[0005] In order to overcome the shortcomings of the prior art, the utility model aims to provide a quartz stone plate texture production equipment with the characteristics of simple structure and convenient use.

[0006] The utility model adopts the technical scheme of a quartz stone plate texture production equipment, which comprises a rack, a crack mechanism and a color spraying mechanism mounted on the rack respectively, and the rack comprises a base frame, a moving frame slidably connected to the base frame, and a material supporting belt arranged on the base frame, and the moving frame is arranged on the top of the base frame.

[0007] The crack mechanism is mounted on the base frame and located at the bottom of the working surface of the material supporting belt, and the crack mechanism comprises a top rod, a first horizontal power component for driving the top rod to move horizontally along the base frame, a second horizontal power component for driving the top rod to move horizontally along the base frame, and a jacking power component for driving the top rod to lift the material supporting belt or reset it.

[0008] The color spraying mechanism is installed on the moving frame, the moving frame is provided with an X-axis moving power element for driving the color spraying mechanism to move horizontally along the X-axis and a Y-axis moving power element for driving the color spraying mechanism to move horizontally along the Y-axis, and the color spraying mechanism comprises a lifting power element and a spray head, the lifting power element drives the spray head to move close to or away from the material supporting belt.

[0009] The equipment for manufacturing the textured quartz stone plate provided by the application can move the ejector rod horizontally along the transverse direction and the longitudinal direction of the base frame, move the ejector rod along a preset crack path, and lift the material supporting belt, so that a crack with a preset path is formed on the plate blank, and then the spray head sprays colorant into the crack, so that the plate blank has a single-color or multi-color texture or pattern, which greatly improves the appearance of the artificial quartz stone plate; since the position of the ejector rod can be changed and moved according to the path of the required texture, the texture is more natural and has higher precision, the structure of the equipment is simplified, and the cost is reduced.

[0010] In some embodiments, the crack forming mechanism further comprises a longitudinal moving beam, the first horizontal power element is installed on the base frame, the output end of the first horizontal power element is in transmission connection with the longitudinal moving beam, the second horizontal power element is installed on the longitudinal moving beam, the lifting power element is in sliding connection with the longitudinal moving beam, and the second horizontal power element is in transmission connection with the lifting power element.

[0011] In some embodiments, the crack forming mechanism further comprises a crack forming sliding seat in sliding connection with the longitudinal moving beam, the longitudinal moving beam is provided with a third guide element corresponding to the crack forming sliding seat, the second horizontal power element is in transmission connection with the crack forming sliding seat, and the crack forming power element is installed on the crack forming sliding seat.

[0012] In some embodiments, the crack forming mechanism further comprises a transverse fixing beam vertically arranged on the longitudinal moving beam, the transverse fixing beam is installed on the base frame, the longitudinal moving beam is installed with a transverse sliding seat in sliding cooperation with the transverse fixing beam, the first horizontal power element is in transmission cooperation with the transverse sliding seat, and the transverse fixing beam is provided with a fourth guide element corresponding to the transverse sliding seat.

[0013] In some embodiments, the base frame is provided with a material supporting plate, the material supporting plate is arranged at the bottom of the working surface of the material supporting belt, and the material supporting plate is provided with a clearance groove corresponding to the ejector rod.

[0014] By arranging the material supporting plate at the bottom of the material supporting belt, the above technical scheme can provide support for the material supporting belt, so that the material supporting belt is prevented from being depressed due to stress concentration and the quality of the plate blank is affected, and the clearance groove can prevent the lifting of the ejector rod from being interfered by the material supporting plate.

[0015] In some embodiments, the mobile frame comprises a gantry frame slidingly connected with the base frame, a Y-axis sliding table slidingly connected with the gantry frame, and a Z-axis sliding table slidingly connected with the Y-axis sliding table, the X-axis moving power element is installed on the gantry frame, and is used to drive the gantry frame to move horizontally along the X-axis relative to the base frame, the Y-axis moving power element is installed on the Y-axis sliding table, and is used to drive the Y-axis sliding table to move horizontally along the Y-axis relative to the gantry frame, the Z-axis moving power element is also installed on the Y-axis sliding table, and is used to drive the Z-axis sliding table to move vertically along the Z-axis relative to the Y-axis sliding table, and the lifting power element is connected with the Z-axis sliding table.

[0016] In some embodiments, the color spraying mechanism further comprises a slotting cutter, the slotting cutter is arranged on one side of the spray head, and the lifting power element drives the spray head to approach or move away from the slotting cutter relative to the material supporting belt.

[0017] By using the above technical solution, when the top cracking method is not applicable to form the texture path on the slab, the slotting cutter can be used to form the pattern on the slab, and then the color can be sprayed to obtain the required texture.

[0018] In some embodiments, the color spraying mechanism further comprises a dust suction cover installed on the Z-axis sliding table, and the dust suction cover covers the spray head and the slotting cutter.

[0019] By using the above technical solution, the dust suction cover can prevent the smoke generated when the color is sprayed or the slotting cutter is used to form the slot from floating into the production workshop space and causing pollution, and the intercepted smoke can be sucked away through the dust suction pipeline for treatment, thereby reducing pollution.

[0020] In some embodiments, the conveying mechanism is further arranged at one end of the base frame, and the conveying mechanism comprises a conveying frame and a conveying belt, the conveying frame is arranged at one end of the base frame, and the conveying belt is movably connected with the conveying frame.

[0021] By using the above technical solution, the conveying mechanism can be arranged to facilitate the transfer of the slab.

[0022] In some embodiments, the transition mechanism comprises a transition frame connected with the conveying belt and the material supporting belt, a paper pushing frame movably connected with the transition frame, and a paper clamping frame installed on the mobile frame, the paper pushing frame is provided with a paper pushing power element, the paper pushing power element drives the paper pushing frame to extend out of the transition frame or retract into the transition frame, and the paper clamping frame is provided with a paper clamping element for clamping the paper.

[0023] The technical scheme is adopted, since the plate blank which has not been solidified by pressure and heating is very soft and fragile, in order to prevent the plate blank from being damaged during transportation, a layer of release paper is laid on the bottom of the plate blank, and in order to prevent the plate blank from being deformed or damaged during the conveying and supporting of the conveying belt and the supporting belt, a transition frame for supporting the plate blank is arranged between the conveying belt and the supporting belt, when the plate blank is transferred between the conveying belt and the supporting belt, the release paper is lifted by the paper lifting frame, and the release paper is clamped by the clamping paper piece on the paper clamping frame, and the release paper is dragged and slid through the transition frame together with the plate blank by the movement of the moving frame. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0025] Figure 2 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 1 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0026] Figure 3 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 2 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0027] Figure 4 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 3 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0028] Figure 5 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 1 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0029] Figure 6 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 5

[0030] Figure 7 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 2 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0031] Figure 8 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application;

[0032] Figure 9 is a schematic diagram of the three-dimensional structure of the equipment for manufacturing textured quartz stone plates according to the first embodiment of the present application; Figure 8

[0033] ​​In the figure: 100, the equipment for manufacturing textured quartz stone plate; 10, the frame; 11, the base frame; 12, the moving frame; 121, the gantry frame; 122, the Y-axis sliding table; 123, the Z-axis sliding table; 124, the X-axis moving power element; 125, the Y-axis moving power element; 126, the Z-axis moving power element; 13, the material supporting belt; 131, the working surface; 14, the material supporting plate; 15, the air clearance groove; 20, the jacking mechanism; 21, the jacking rod; 22, the first horizontal power element; 23, the second horizontal power element; 24, the jacking power element; 25, the longitudinal moving beam; 26, the jacking sliding seat; 27, the transverse fixed beam; 28, the transverse sliding seat; 30, the color spraying mechanism; 31, the lifting power element; 32, the spray head; 33, the slotting cutter; 34, the slotting power element; 35, the main shaft sliding table; 36, the dust suction cover; 40, the conveying mechanism; 41, the conveying frame; 42, the conveying belt; 50, the transition mechanism; 51, the transition frame; 52, the paper jacking frame; 53, the paper jacking power element; 54, the paper clamping frame; 55, the paper clamping element. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0035] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can also be present. When an element is referred to as being "comprise a plurality of" it can be any number of two or more. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for the purpose of illustration only and are not intended to be limiting.

[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0037] First embodiment:

[0038] Please refer to Figures 1 to 7For the first embodiment of the utility model a kind of for manufacturing textured quartz stone plate equipment 100, including rack 10, top crack mechanism 20 and color spraying mechanism 30 respectively installed on rack 10, top crack mechanism 20 is used to lift the billet placed on rack 10, so that the crack of preset path is formed on billet, color spraying mechanism 30 is used to spray the colorant required in crack, so that the billet after being pressurized, heated and polished is formed with natural texture.

[0039] As Figure 1 With Figure 2 As shown in the drawing, rack 10 includes chassis 11, mobile frame 12 slidably connected with chassis 11 and material supporting belt 13 arranged on chassis 11, mobile frame 12 is erected on the top of chassis 11;Top crack mechanism 20 is installed on chassis 11 and located at the bottom of working surface 131 of material supporting belt 13, the working surface 131 of material supporting belt 13 refers to the side of material supporting belt 13 supporting billet, and top crack mechanism 20 includes top rod 21, first horizontal power element 22 driving top rod 21 to move horizontally along the transverse direction of chassis 11, second horizontal power element 23 driving top rod 21 to move horizontally along the longitudinal direction of chassis 11, and jacking power element 24 driving top rod 21 to lift or reset material supporting belt 13;Color spraying mechanism 30 is installed on mobile frame 12, and X-axis moving power element 124 driving color spraying mechanism 30 to move horizontally along X-axis and Y-axis moving power element 125 driving color spraying mechanism 30 to move horizontally along Y-axis are installed on mobile frame 12, and color spraying mechanism 30 includes lifting power element 31 and spray head 32, and lifting power element 31 drives spray head 32 to approach or move away from material supporting belt 13.

[0040] As Figure 3 With Figure 4 As shown in the drawing, top crack mechanism 20 further includes longitudinal moving beam 25, first horizontal power element 22 is installed on chassis 11, output end of first horizontal power element 22 is in transmission connection with longitudinal moving beam 25, second horizontal power element 23 is installed on longitudinal moving beam 25, jacking power element 24 is in sliding connection with longitudinal moving beam 25, and second horizontal power element 23 is in transmission connection with jacking power element 24.

[0041] Further, top crack mechanism 20 further includes top crack sliding seat 26 in sliding connection with longitudinal moving beam 25, longitudinal moving beam 25 is provided with third guide element corresponding to top crack sliding seat 26, second horizontal power element 23 is in transmission connection with top crack sliding seat 26, and top crack power element is installed on top crack sliding seat 26.

[0042] Further, the roof cracking mechanism 20 further comprises a transverse fixed beam 27 arranged perpendicularly to the longitudinal moving beam 25, the transverse fixed beam 27 is installed on the base frame 11, the longitudinal moving beam 25 is installed with a transverse sliding seat 28 in sliding cooperation with the transverse fixed beam 27, the first horizontal power element 22 is in transmission cooperation with the transverse sliding seat 28, and the transverse fixed beam 27 is provided with a fourth guide element corresponding to the transverse sliding seat 28.

[0043] In the embodiment, the number of the roof cracking mechanism 20 is eight groups, and the first horizontal power element 22 is an SCT cylinder (a cylinder with multiple stroke positions), the second horizontal power element 23 is a servo motor, and the roof lifting power element 24 is a cylinder. Specifically, the cylinder body of the first horizontal power element 22 is installed on the base frame 11, the telescopic rod is connected with the longitudinal moving frame 12, the transverse sliding seat 28 is installed on the longitudinal moving frame 12, and the transverse linear guide rail in sliding cooperation with the transverse sliding seat 28 is arranged on the transverse fixed beam 27; the second horizontal power element 23 drives the roof cracking sliding seat 26 to slide on the longitudinal moving beam 25 through the cooperation of the synchronous belt and the synchronous wheel, and the longitudinal linear guide rail in sliding cooperation with the transverse sliding seat 28 is arranged on the longitudinal moving beam 25.

[0044] It should be noted that although the number of the roof cracking mechanism 20 in the above embodiment is eight groups, it is not specifically limited to eight groups, and the number of the roof cracking mechanism 20 can be increased or decreased according to actual needs. Moreover, although the second horizontal power element 23 and the roof cracking sliding seat 26 are in transmission cooperation through the cooperation of the synchronous belt and the synchronous wheel, in other embodiments, they can also be in transmission cooperation through the cooperation of the ball screw and the nut, or through the cooperation of the chain wheel and the chain. The first horizontal power element 22, the second horizontal power element 23 and the roof cracking power element can also adopt other types of power elements.

[0045] In an embodiment, the base frame 11 is provided with a material supporting plate 14, the material supporting plate 14 is arranged at the bottom of the working surface 131 of the material supporting belt 13, and the material supporting plate 14 is provided with a clearance groove 15 corresponding to the jacking rod 21. By arranging the material supporting plate 14 at the bottom of the material supporting belt 13, support force can be provided for the material supporting belt 13 to avoid the material supporting belt 13 from being depressed due to force concentration and affecting the quality of the slab, and by arranging the clearance groove 15, interference of the jacking rod 21 caused by the jacking of the material supporting plate 14 can be prevented.

[0046] Optionally, the clearance groove 15 can be a large-size through groove, or a plurality of small-size through grooves can be arranged according to requirements, and each through groove can correspond to one or more than one roof cracking mechanism 20.

[0047] Preferably, in order to prevent the jacking rod 21 from piercing the material supporting belt 13, the top of the jacking rod 21 should be arc-shaped or planar.

[0048] As Figure 5As shown, the moving frame 12 comprises a portal frame 121 slidably connected with the base frame 11, a Y-axis sliding table 122 slidably connected with the portal frame 121, and a Z-axis sliding table 123 slidably connected with the Y-axis sliding table 122, the X-axis moving power element 124 is installed on the portal frame 121 for driving the portal frame 121 to move horizontally along the X-axis relative to the base frame 11, the Y-axis moving power element 125 is installed on the Y-axis sliding table 122 for driving the Y-axis sliding table 122 to move horizontally along the Y-axis relative to the portal frame 121, and the Z-axis moving power element 126 is also installed on the Y-axis sliding table 122 for driving the Z-axis sliding table 123 to move vertically along the Z-axis relative to the Y-axis sliding table 122, the lifting power element 31 is connected with the Z-axis sliding table 123, and the spray head 32 is also installed on the Z-axis sliding table 123.

[0049] Optionally, the X-axis moving power element 124, the Y-axis moving power element 125, and the Z-axis moving power element 126 are all servo motors, and the above-mentioned power components are all driven through the gear and rack cooperation; the lifting power element 31 is a gas cylinder.

[0050] In an embodiment, the color spraying mechanism 30 further comprises a slotting cutter 33 arranged on one side of the spray head 32, and the lifting power element 31 drives the spray head 32 and the slotting cutter 33 to approach or move away from the material supporting belt 13. In some cases, the slotting cutter 33 is used to form patterns on the slab instead of using the top cracking method to form the texture path on the slab, and then the color is sprayed to obtain the required texture.

[0051] Further, the slotting cutter 33 is driven to rotate by a slotting power element 34 installed on the Z-axis sliding table 123.

[0052] Optionally, when the stroke of the Z-axis sliding table 123 is insufficient, the color spraying mechanism 30 can further comprise a main shaft sliding table 35 slidably connected with the Z-axis sliding table 123, the spray head 32, the slotting cutter 33, and the slotting power element 34 are installed on the main shaft sliding table 35, and the main shaft sliding table 35 is driven to move up and down relative to the Z-axis sliding table 123 by the lifting power element 31.

[0053] Preferably, the color spraying mechanism 30 further comprises a dust collection cover 36 slidably connected with the Z-axis sliding table 123, the dust collection cover 36 covers the spray head 32 and the slotting cutter 33, and the dust collection cover 36 is driven to move up and down relative to the Z-axis sliding table 123 by a gas cylinder. The dust collection cover 36 can prevent the smoke generated during the color spraying or the slotting by the slotting cutter 33 from floating into the space of the production workshop and causing pollution, and the intercepted smoke can be sucked away and treated through the dust collection pipeline, thereby reducing pollution.

[0054] In order to facilitate the conveying of the slab, the equipment 100 for manufacturing the textured quartz slab further comprises a conveying mechanism 40 arranged at one end of the base frame 11, the conveying mechanism 40 comprising a conveying frame 41 arranged at one end of the base frame 11 and a conveying belt 42 movably connected with the conveying frame 41.

[0055] Optionally, the color spraying mechanism 30 can operate synchronously with the top cracking mechanism 20, i.e. the color spraying operation is performed simultaneously with the top cracking operation, or the color spraying operation is performed after the top cracking mechanism 20 forms the cracks of the required path on the slab.

[0056] In an embodiment, the equipment further comprises a transition mechanism 50, the transition mechanism 50 comprising a transition frame 51 connecting the conveying belt 42 and the material supporting belt 13, a paper lifting frame 52 movably connected with the transition frame 51, and a paper clamping frame 54 mounted on the moving frame 12, the transition frame 51 being provided with a paper lifting driving member 53 for driving the paper lifting frame 52 to extend out of the transition frame 51 or retract into the transition frame 51, and the paper clamping frame 54 being provided with a paper clamping member 55 for clamping the paper. Since the slab that has not been cured by pressure and heat is very soft and fragile, a layer of release paper is laid on the bottom of the slab to prevent the slab from being damaged during transportation, and the transition frame 51 is arranged between the conveying belt 42 and the material supporting belt 13 to support the slab and prevent the slab from being deformed or damaged during the conveying process of the conveying belt 42 and the material supporting belt 13. When the slab is transferred between the conveying belt 42 and the material supporting belt 13, the release paper is lifted by the paper lifting frame 52, and the release paper is clamped by the paper clamping member 55 of the paper clamping frame 54, and then the release paper together with the slab is dragged and slid through the transition frame 51 by the movement of the moving frame 12.

[0057] Further, a plurality of paper lifting plates are arranged on the paper lifting frame 52 at intervals, a plurality of through holes corresponding to the paper lifting plates are arranged on the transition frame 51, the paper lifting plates are driven by a cylinder to lift the release paper by passing through the through holes, and a plurality of paper clamping members 55 are arranged on the paper clamping frame 54 at intervals, the paper clamping members 55 are driven by a cylinder to open and close, and a cylinder is arranged on the paper clamping frame 54 to drive the paper clamping members 55 to lift and lower.

[0058] The equipment further comprises a controller (not shown in the figure) for controlling the coordinated operation of the mechanisms.

[0059] The equipment 100 for manufacturing the quartz stone plate with texture of the present application can form the preset path cracks on the plate blank by setting the ejector rod 21 at the bottom of the material supporting belt 13, moving the ejector rod 21 horizontally along the transverse direction and the longitudinal direction of the chassis 11, moving the ejector rod 21 according to the preset crack path and lifting the material supporting belt 13, so that the preset path cracks can be formed on the plate blank, and then the colorant is sprayed into the cracks by the spray head 32, so that the plate blank has the single-color or multi-color texture or pattern, and the appearance of the artificial quartz stone plate is greatly improved.

[0060] Second embodiment:

[0061] As Figure 8 With Figure 9 The equipment 100 for manufacturing the quartz stone plate with texture of the second embodiment of the present application is similar in structure to the equipment in the first embodiment, and the difference is that the number of the crack forming mechanism 20 is one set, and the size of the air slot 15 on the material supporting belt 14 is large.

[0062] Finally, it should be noted that the above description is only a preferred example of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or replace some of the technical features with equivalent ones. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. An apparatus for manufacturing textured quartz stone slabs, comprising a frame (10), a top cracking mechanism (20) and a color spraying mechanism (30) respectively mounted on the frame (10), the frame (10) comprising a base frame (11), a moving frame (12) in sliding connection with the base frame (11), and a material supporting belt (13) arranged on the base frame (11), the moving frame (12) being arranged on the top of the base frame (11), characterized in that: the top cracking mechanism (20) is mounted on the base frame (11) and located at the bottom of the working surface (131) of the material supporting belt (13), the top cracking mechanism (20) comprising a top rod (21), a first horizontal power element (22) for driving the top rod (21) to move horizontally along the base frame (11) in the transverse direction, a second horizontal power element (23) for driving the top rod (21) to move horizontally along the base frame (11) in the longitudinal direction, and a jacking power element (24) for driving the top rod (21) to lift or reset the material supporting belt (13); the color spraying mechanism (30) is mounted on the moving frame (12), the moving frame (12) being provided with an X-axis moving power element (124) for driving the color spraying mechanism (30) to move horizontally along the X-axis and a Y-axis moving power element (125) for driving the color spraying mechanism (30) to move horizontally along the Y-axis, the color spraying mechanism (30) comprising a lifting power element (31) and a spray head (32), the lifting power element (31) driving the spray head (32) to move close to or away from the material supporting belt (13). The top cracking mechanism (20) further comprises a longitudinal moving beam (25), the first horizontal power element (22) being mounted on the base frame (11), the output end of the first horizontal power element (22) being in transmission connection with the longitudinal moving beam (25), the second horizontal power element (23) being mounted on the longitudinal moving beam (25), and the jacking power element (24) being in sliding connection with the longitudinal moving beam (25), the second horizontal power element (23) being in transmission connection with the jacking power element (24).

2. The apparatus for manufacturing a textured quartz stone slab according to claim 1, wherein, The top cracking mechanism (20) further comprises a top cracking sliding seat (26) in sliding connection with the longitudinal moving beam (25), the longitudinal moving beam (25) being provided with a third guide element corresponding to the top cracking sliding seat (26), the second horizontal power element (23) being in transmission connection with the top cracking sliding seat (26), and the top cracking power element being mounted on the top cracking sliding seat (26).

3. The apparatus for manufacturing a textured quartz stone slab according to claim 2, wherein, The top cracking mechanism (20) further comprises a transverse fixed beam (27) arranged perpendicularly to the longitudinal moving beam (25), the transverse fixed beam (27) being mounted on the base frame (11), the longitudinal moving beam (25) being provided with a transverse sliding seat (28) in sliding cooperation with the transverse fixed beam (27), the first horizontal power element (22) being in transmission cooperation with the transverse sliding seat (28), and the transverse fixed beam (27) being provided with a fourth guide element corresponding to the transverse sliding seat (28).

4. The apparatus for manufacturing a textured quartz stone slab according to claim 3, wherein, The base frame (11) is provided with a material supporting plate (14), the material supporting plate (14) being arranged at the bottom of the working surface (131) of the material supporting belt (13), and the material supporting plate (14) being provided with a clearance groove (15) corresponding to the top rod (21).

5. The apparatus for manufacturing a textured quartz stone slab of claim 1, wherein, ​ 6. The apparatus for manufacturing a textured quartz stone slab of claim 1, wherein, The mobile frame (12) comprises a portal frame (121) slidably connected with the base frame (11), a Y-axis sliding table (122) slidably connected with the portal frame (121), and a Z-axis sliding table (123) slidably connected with the Y-axis sliding table (122), the X-axis moving power element (124) is installed on the portal frame (121) and used to drive the portal frame (121) to move horizontally along the X-axis relative to the base frame (11), the Y-axis moving power element (125) is installed on the Y-axis sliding table (122) and used to drive the Y-axis sliding table (122) to move horizontally along the Y-axis relative to the portal frame (121), the Z-axis moving power element (126) is also installed on the Y-axis sliding table (122) and used to drive the Z-axis sliding table (123) to move vertically along the Z-axis relative to the Y-axis sliding table (122), and the lifting power element (31) is connected with the Z-axis sliding table (123).

7. The apparatus for manufacturing a textured quartz stone slab of claim 6, wherein, The color spraying mechanism (30) further comprises a slotting cutter (33) arranged on one side of the spray head (32), and the lifting power element (31) drives the spray head (32) to move close to or away from the material supporting belt (13) together with the slotting cutter (33).

8. The apparatus for manufacturing a textured quartz stone slab of claim 6, wherein, The color spraying mechanism (30) further comprises a dust collection cover (36) installed on the Z-axis sliding table (123), and the dust collection cover (36) covers the spray head (32) and the slotting cutter (33).

9. The apparatus for manufacturing a textured quartz stone slab of claim 1, wherein, The conveying mechanism (40) is arranged at one end of the base frame (11), and the conveying mechanism (40) comprises a conveying frame (41) and a conveying belt (42), the conveying frame (41) is arranged at one end of the base frame (11), and the conveying belt (42) is movably connected with the conveying frame (41).

10. The apparatus for manufacturing a textured quartz stone slab of claim 9, wherein, The transition mechanism (50) comprises a transition frame (51) connected with the conveying belt (42) and the material supporting belt (13), a paper pushing frame (52) movably connected with the transition frame (51), and a paper clamping frame (54) installed on the mobile frame (12), the transition frame (51) is provided with a paper pushing power element (53), the paper pushing power element (53) drives the paper pushing frame (52) to extend out of the transition frame (51) or retract into the transition frame (51), and the paper clamping frame (54) is provided with a paper clamping element (55) used for clamping paper.