Multipurpose scribing and powder distributing device and multifunctional artificial stone plate powder distributing machine
By designing a multi-purpose marking and powdering device, and utilizing multiple marking and powdering units and a rotary drive, diversified textures of artificial stone slabs are achieved, improving the efficiency and texture diversity of marking and powdering, and solving the problems of single textures and low efficiency in existing technologies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-04-10
AI Technical Summary
Existing artificial stone slab processing equipment suffers from limited texture and low efficiency, and cannot simultaneously perform grooving processing on different areas, resulting in limited texture and low efficiency in marking and powdering.
Design a multi-purpose marking and powdering device, comprising multiple marking and powdering units, each equipped with a single-use lifting device and a single-use powder sprayer, capable of individually or in multiple uses of the marking head and powder sprayer to achieve the formation of diverse patterns, and adjusting the shape of the marking end face by rotating the driver, and collecting the powder in conjunction with a vacuum cleaner.
It achieves efficient molding of diverse textures, improves the efficiency of marking and powdering and the diversity of textures, and solves the problems of single texture and low efficiency in existing technologies.
Smart Images

Figure CN224103180U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to artificial stone slab processing device field especially, it relates to a multi -purpose line marking powder device and multi -functional artificial stone slab powder distribution machine. BACKGROUND
[0002] The existing artificial stone slab will be paved with a layer of powder on its surface, and the powder layer is grooved by a grooving tool, and the groove is sprayed with powder, so as to form a three-dimensional texture on the powder layer, however, the existing grooving tool structure is single, cannot switch the grooving tool according to the texture type of the groove, leading to the shape of the formed texture is single, at the same time, the existing grooving process can only use a single grooving tool for grooving processing, cannot simultaneously groove the different areas of the powder, leading to the efficiency of grooving is low, more cannot simultaneously carry out multi -type grooving processing, thus the prior art has the problems of low line marking powder efficiency and single texture. SUMMARY
[0003] The utility model discloses a multi -purpose line marking powder device, it is transversely installed with a plurality of line marking powder units in single -purpose fixed seat, can call single -purpose line marking cutter head and single -purpose powder sprayer through the single -purpose lifter of every line marking powder unit when needing, can realize single or multiple line marking filler, thereby efficiently forms the diversified texture.
[0004] The utility model discloses further a multi -functional artificial stone slab powder distribution machine, it has used above -mentioned a multi -purpose line marking powder device.
[0005] In order to achieve this purpose, the utility model adopts the following technical scheme:
[0006] A multi -purpose line marking powder device, including: single -purpose fixed seat and line marking powder unit,
[0007] A plurality of line marking powder units are respectively installed in the single -purpose fixed seat in horizontal arrangement,
[0008] Every line marking powder unit respectively includes: single -purpose lifter, single -purpose lifting seat, single -purpose line marking cutter head and single -purpose powder sprayer,
[0009] Single -purpose lifting seat is installed in single -purpose fixed seat and can be lifted, single -purpose line marking cutter head and single -purpose powder sprayer are connected to single -purpose lifting seat respectively, the output end of single -purpose lifter is connected to single -purpose lifting seat, is used for driving single -purpose lifting seat lifting movement, drives single -purpose line marking cutter head and single -purpose powder sprayer lifting movement,
[0010] Single -purpose line marking cutter head of every line marking powder unit is equipped with the line marking end face of different shape.
[0011] Optimally, the line marking cloth powder unit further comprises a single-purpose rotating seat and a single-purpose rotating driver;
[0012] The single-purpose rotating seat is rotatably mounted on the single-purpose lifting seat, and the single-purpose line marking cutter head is mounted on the single-purpose rotating seat; the output end of the single-purpose rotating driver is connected to the single-purpose rotating seat to drive the single-purpose rotating seat to rotate and drive the single-purpose line marking cutter head to rotate.
[0013] Optimally, the line marking end surface of part of the line marking cloth powder unit is provided with a line marking disc and line marking partition columns; the upper ends of the line marking partition columns are mounted on the line marking disc, and a plurality of line marking partition columns are distributed around the line marking disc, and gaps are formed between adjacent two line marking partition columns;
[0014] The line marking end surface of part of the line marking cloth powder unit is provided with a vertically extending line marking cutter plate;
[0015] The line marking end surface of part of the line marking cloth powder unit is a vertically extending line marking column, and the line marking column is coaxially aligned with the output end of the single-purpose rotating driver.
[0016] A multifunctional artificial stone slab powder distributing machine comprises a wide-line filling device, a powder distributing machine frame, a calling lifting driver, and the multifunctional line marking cloth powder device as claimed in the claim;
[0017] The wide-line filling device and the single-purpose fixed seat are liftably mounted on the powder distributing machine frame; part of the calling lifting driver is connected to the wide-line filling device to drive the wide-line filling device to lift;
[0018] The wide-line filling device comprises a wide-line cloth hopper, a wide-line cloth frame, and a wide-line rotating driver;
[0019] The wide-line cloth hopper is provided with a wide-line feeding channel; the wide-line cloth frame is provided with a length-width cloth port, and the input end of the length-width cloth port is communicated with the output end below the wide-line feeding channel; the length-width ratio of the length-width cloth port is greater than 1;
[0020] The wide-line rotating driver is used to drive the wide-line cloth frame to rotate to adjust the length direction and width direction of the length-width cloth port.
[0021] Optimally, the wide-line filling device further comprises a wide-line filling machine frame and a tamping device;
[0022] The wide-line cloth hopper, the wide-line rotating driver, and the tamping device are respectively mounted on the wide-line filling machine frame;
[0023] The output end of the tamping device extends into the wide-line feeding channel;
[0024] The tamping device comprises a tamping lifting driver and a tamper.
[0025] The output end of the ramming lifting driver is connected to the rammer, and is used to drive the rammer to move up and down, so that the rammer moves up and down in the wide groove feeding channel and / or the long and wide feeding port. The ramming lifting driver is used to drive the rammer to move up and down, so that the rammer moves up and down in the wide groove feeding channel and / or the long and wide feeding port, and the powder in the wide groove feeding channel and / or the long and wide feeding port is crushed, mainly by the up and down movement of the rammer.
[0026] Optimally, the ramming device further comprises a ramming rotating driver.
[0027] The ramming rotating driver is installed on the wide groove filler frame, and the output end of the ramming rotating driver is connected to the ramming lifting driver, and is used to drive the ramming lifting driver to rotate, so that the rammer rotates.
[0028] The rammer comprises a ramming fixed plate and a ramming column.
[0029] A plurality of the ramming columns are arranged in a straight line on the same ramming fixed plate, and a gap is formed between two adjacent ramming columns. The output end of the ramming lifting driver is connected to the ramming fixed plate, and is used to drive the ramming fixed plate to move up and down, so that the plurality of ramming columns move up and down.
[0030] Optimally, the stone texture forming device is further included.
[0031] Part of the calling lifting drivers are connected to the stone texture forming device, and are used to drive the stone texture forming device to move up and down.
[0032] The stone texture forming device comprises a filler moving frame, a texture spraying mechanism, a slotting mechanism and a wide groove filler moving mechanism.
[0033] The texture spraying mechanism and the slotting mechanism are respectively connected to the filler moving frame. The output end of the wide groove filler moving mechanism is connected to the filler moving frame, and is used to drive the filler moving frame to move.
[0034] The texture spraying mechanism comprises a slurry spray gun and a spray gun accessory.
[0035] The slurry spray gun is installed on the filler moving frame. The spray gun accessory comprises an inner sleeve and an outer sleeve.
[0036] The inner sleeve is provided with an inner cavity, and the spray nozzle of the slurry spray gun is installed in the inner cavity; the outer sleeve is provided with an outer cavity, and the inner sleeve is limited in the outer cavity; one end of the inner sleeve is limited in one end of the outer cavity, and the other end of the inner sleeve is located at the outer port of the other end of the outer cavity; a powder feeding output channel is formed between the outer cavity and the inner sleeve; the outer sleeve is provided with a powder inlet port communicated with the powder feeding output channel.
[0037] The slotting mechanism comprises a slotting cutter; the slotting cutter is installed on the filler moving frame.
[0038] Optimally, the stone texture forming device further comprises a processing switching assembly.
[0039] The processing switching assembly comprises a processing switching turret and a processing switching driver.
[0040] The processing switching turret is rotatably installed on the filler moving frame; the texture spraying mechanism and the slotting mechanism are respectively installed on the processing switching turret; the output end of the processing switching driver is connected to the processing switching turret, for driving the processing switching turret to rotate, and driving the texture spraying mechanism and the slotting mechanism to rotate.
[0041] The slotting mechanism comprises a cutter lifting driver.
[0042] The cutter lifting driver is installed on the processing switching turret; the output end of the cutter lifting driver is connected to the slotting cutter, for driving the slotting cutter to lift and move.
[0043] Optimally, a dust collector is further included.
[0044] The dust collector comprises a dustproof cover, a dust suction pipe and a centralized dust collection pipe.
[0045] Each of the line marking powder units is correspondingly arranged in the dustproof cover; the input end of the dust suction pipe is communicated with one of the dustproof covers, and the output ends of the plurality of dust suction pipes are communicated with the centralized dust collection pipe.
[0046] Optimally, the inner sleeve comprises a fixed sleeve and an inner branch pipe.
[0047] The outer sleeve is provided with an outer pipe fixing base at the end away from the outer port.
[0048] One end of the fixed sleeve is connected to one end of the inner branch pipe, and the other end of the fixed sleeve is limited in the outer pipe fixing base; the other end of the inner branch pipe is located at the outer port.
[0049] The spray gun accessory further comprises an inner tube fastening tip, the outer tube sleeve is provided with an outer tube fixing seat at one end away from the outer tube opening, an outer seat fixing hole is arranged on the outer side of the outer tube fixing seat, the inner tube fastening tip is limited in the outer seat fixing hole, one end of the inner tube fastening tip extends into the inner part of the outer tube fixing seat and abuts against the inner tube sleeve, and one end of the inner tube sleeve is detachably limited in the outer tube fixing seat.
[0050] Compared with the prior art, one of the above technical solutions has the following beneficial effects:
[0051] The present scheme provides a multi-purpose line marking cloth powder device, which is provided with a plurality of line marking cloth powder units transversely mounted on a single-purpose fixing seat. When needed, a single-purpose line marking cutter head and a single-purpose powder sprayer can be called through a single-purpose lifter of each line marking cloth powder unit, so that single or multiple line marking fillers can be realized, thereby efficiently forming diversified lines, and the problems of low efficiency and single line of the existing line marking cloth powder are solved. BRIEF DESCRIPTION OF DRAWINGS
[0052] Figure 1 is a structural schematic diagram of one embodiment of a multifunctional artificial stone slab powder distributing machine;
[0053] Figure 2 is a structural schematic diagram of one embodiment of a multi-purpose line marking cloth powder device;
[0054] Figure 3 is a structural schematic diagram of one embodiment of a multi-purpose line marking cloth powder device;
[0055] Figure 4 is a structural schematic diagram of one embodiment of a wide-line filler device;
[0056] Figure 5 is a structural schematic diagram of one embodiment of a wide-line filler device;
[0057] Figure 6 is a structural schematic diagram of one embodiment of a wide-line cloth distributing frame;
[0058] Figure 7 is a structural schematic diagram of one embodiment of a stone texture forming device;
[0059] Figure 8 is a structural schematic diagram of one embodiment of a stone texture forming device in a multifunctional artificial stone slab powder distributing machine;
[0060] Figure 9 is a structural schematic diagram of one embodiment of a slurry spray gun and a spray gun accessory when assembled;
[0061] Figure 10is an exploded structural schematic view of one embodiment of a slurry spray gun and spray gun accessory assembly;
[0062] Figure 11 is a cross-sectional structural schematic view of one embodiment of a slurry spray gun and spray gun accessory assembly. DETAILED DESCRIPTION
[0063] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for the purpose of explaining the present application, and should not be understood as limiting the present application.
[0064] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", "inner side", "outer side", "inner end", "outer end", "axial", "radial", "circumferential" and the like indicate the orientation or 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 do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features, which are used to distinguish the described features, and have no order or importance. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0065] As Figures 1-11 A multi-purpose line marking chalk device 8 comprises a single-purpose fixing seat 80 and a line marking chalk unit 81.
[0066] A plurality of line marking chalk units 81 are respectively installed in the single-purpose fixing seat 80 in transverse arrangement.
[0067] Each line marking chalk unit 81 comprises a single-purpose lifter 811, a single-purpose lifting seat 812, a single-purpose line marking cutter head 813, a single-purpose chalk sprayer 814 and a single-purpose mortar gun 817.
[0068] The single-use lifting seat 812 is liftably installed on the single-use fixing seat 80; the single-use line marking cutter head 813, the single-use powder sprayer 814 and the single-use shotcrete gun 817 are respectively connected to the single-use lifting seat 812; the output end of the single-use lifter 811 is connected to the single-use lifting seat 812, for driving the single-use lifting seat 812 to move up and down, and driving the single-use line marking cutter head 813 and the single-use powder sprayer 814 to move up and down.
[0069] The single-use line marking cutter head 813 of each line marking powder unit 81 is provided with a line marking end face 810 which is different in shape.
[0070] The present scheme provides a multi-purpose line marking powder device 8, which is provided with a plurality of line marking powder units 81 installed transversely on the single-use fixing seat 80, and can call the single-use line marking cutter head 813, the single-use powder sprayer 814 and the single-use shotcrete gun 817 of each line marking powder unit 81 through the single-use lifter 811 of the line marking powder unit 81 when needed, so as to realize single or multiple line marking and filling, and thus efficiently form diversified patterns, thereby solving the problems of low efficiency and single pattern of the existing line marking powder.
[0071] Specifically, the number of line marking powder units 81 is multiple, and the multiple line marking powder units 81 are installed transversely on the single-use fixing seat 80; since each line marking powder unit 81 is provided with a single-use lifter 811, when a certain line marking powder unit 81 needs to be used, the single-use lifter 811 of the line marking powder unit 81 can be started, the single-use lifter 811 drives the single-use lifting seat 812 to move down, thereby driving the single-use line marking cutter head 813, the single-use powder sprayer 814 and the single-use shotcrete gun 817 of the single-use lifting seat 812 to move down; the line marking end face 810 of the single-use line marking cutter head 813 contacts the powder on the surface of the slab, thereby opening a groove in the powder; simultaneously, the single-use powder sprayer 814 can be called as needed, the single-use powder sprayer 814 can supplement the powder in the opened groove, the powder is filled into the groove, thereby forming a three-dimensional pattern; in addition, the single-use shotcrete gun 817 can be called, the single-use shotcrete gun 817 can output slurry to the surface of the blank; and the single-use line marking cutter head 813 of each line marking powder unit 81 is provided with a line marking end face 810 which is different in shape, that is, different single-use line marking cutter heads 813 contact the powder through the line marking end face 810, the groove opened by the powder is different in shape, and thus the pattern is different after the powder is filled, and diversified patterns can be formed. Meanwhile, the present scheme can also start a single line marking powder unit 81 or simultaneously start multiple line marking powder units 81, when the single-use line marking cutter heads 813 of multiple line marking powder units 81 are called, multiple grooves can be opened and multiple powders can be filled at the same time, thereby improving the efficiency of line marking and powder filling.
[0072] The powder output by the single powder sprayer 814 can be artificial stone material, colorant or other powder that can improve the decorative effect of artificial stone, and is mainly used for powder supplementing of the blank plate. The slurry output by the single slurry gun 817 can be color slurry, glaze slurry, ink, paint and the like.
[0073] The single lifting device 811 is a mechanism with a lifting function, such as a cylinder, a combination of a motor and a screw rod, a mechanical hand or the like, as long as it can drive the single lifting seat 812 to lift.
[0074] The single line drawing and powder distributing unit 81 can further comprise a single rotating seat 815 and a single rotating driver 816.
[0075] The single rotating seat 815 is rotatably mounted on the single lifting seat 812, and the single line drawing cutter head 813 is mounted on the single rotating seat 815. The output end of the single rotating driver 816 is connected to the single rotating seat 815, and is used to drive the single rotating seat 815 to rotate, thereby driving the single line drawing cutter head 813 to rotate.
[0076] The single line drawing and powder distributing unit 81 can drive the single line drawing cutter head 813 to rotate as needed, so that the single line drawing cutter head 813 can groove the powder in a rotating state, thereby accelerating the shearing of the powder by the line drawing end face 810. The powder moves under the driving action of the line drawing end face 810 and is adaptively distributed to any position of the groove body, so that the groove is more realistic after being filled with powder. Specifically, the single line drawing cutter head 813 is rotatably mounted on the single lifting seat 812 through the single rotating seat 815. When line drawing or groove drawing is needed, the single rotating driver 816 can be started to drive the single lifting seat 812 to rotate relative to the single lifting seat 812, thereby driving the single line drawing cutter head 813 of the single lifting seat 812 to rotate, so as to shear the powder by the single line drawing cutter head 813. The single line drawing cutter head 813 can also be used to adjust the angle of the groove.
[0077] The single rotating driver 816 is a mechanism with a rotating function, such as a motor or a combination of a motor and a speed reducer, as long as it can drive the single rotating seat 815 to rotate.
[0078] The line drawing end face 810 of part of the single line drawing and powder distributing unit 81 is provided with a line drawing disc 8101 and a line drawing partition column 8102. The upper end of the line drawing partition column 8102 is mounted on the line drawing disc 8101, and a plurality of line drawing partition columns 8102 are distributed around the line drawing disc 8101. Adjacent two line drawing partition columns 8102 form a gap.
[0079] The line drawing end face 810 of part of the single line drawing and powder distributing unit 81 is provided with a vertically extending line drawing cutter plate 8103.
[0080] Part of the scribe cloth powder unit 81 scribe end face 810 is a vertical extension of the scribe column 8104, the scribe column 8104 coaxial alignment in the output end of the single rotation driver 816.
[0081] Different scribe cloth powder units 81 of the scheme can be according to the different shape to shear the powder; for scribe column 8102 type scribe end face 810, the number of scribe column 8102 is multiple, and is distributed around the center of scribe disc 8101, when the single rotation driver 816 directly or indirectly drive scribe disc 8101 rotation, scribe disc 8101 drive scribe column 8102 rotation at the same time, multiple scribe column 8102 rotation around the center axis of scribe disc 8101, thereby improving the range of slot. For scribe knife plate 8103 type scribe end face 810, scribe knife plate 8103 is mainly used to draw a line on the powder groove body, can form groove after filling powder; at the same time, the single rotation driver 816 can drive the single rotation seat 815 rotation, thereby adjusting the rotation of scribe knife plate 8103, can adjust the scribe angle of scribe knife plate 8103, can make scribe knife plate 8103 with different angle to draw groove. For single scribe column 8104 type scribe end face 810, scribe column 8104 coaxial alignment in the output end of the single rotation driver 816, the single rotation driver 816 drive single scribe knife head 813 rotation of single rotation seat 815, scribe column 8104 and powder contact, can open the narrowest groove. Thus the scheme can be according to the needs of the call specific scribe cloth powder unit 81, and according to the processing needs of the powder slot.
[0082] Multi scribe cloth powder device, still includes: dust collector 77;
[0083] The dust collector 77 includes: dustproof machine cover 771, dust suction pipe 772 and centralized dust collection pipe 773;
[0084] Each scribe cloth powder unit is arranged in the dustproof machine cover 771, the input end of the dust suction pipe 772 is communicated with one of the dustproof machine cover 771, and the output end of the plurality of dust suction pipes 772 is communicated with the centralized dust collection pipe 773.
[0085] The multi-purpose chalk cloth powder device of the scheme is provided with a dust collector 77, which is provided with a dustproof cover 771, the inner cavity of the dustproof cover 771 covers each chalk cloth powder unit, and only the working area of the chalk cloth powder unit is exposed to an opening; because the dustproof cover 771 is in the working period of the chalk cloth powder unit, the powder floating in the air near the cloth powder or cloth pulp is sucked into the inner cavity under the action of negative pressure, the dust suction pipe 772 transfers the powder in the inner cavity to the centralized dust collection pipe 773 under the action of negative pressure, the dustproof covers 771 corresponding to multiple chalk cloth powder units are concentrated through the dust suction pipe 772 and collected to the centralized dust collection pipe 773, and the centralized dust collection pipe 773 is connected to the factory dust collection pipeline (not shown).
[0086] Among them, the centralized dust collection pipe 773 of the scheme can be directly or indirectly connected to an air extractor to form negative pressure in the dustproof cover 771. Or form negative pressure in the factory dust collection pipeline, and the powder in the air is output to the factory dust collection pipeline through negative pressure.
[0087] A multifunctional artificial stone plate powder distributing machine, comprising: a wide-line filler device 1, a powder distributing machine frame 82, a calling lifting driver 83 and the above-mentioned multi-purpose chalk cloth powder device 8;
[0088] The wide-line filler device 1 and the single-purpose fixed seat 80 are installed on the powder distributing machine frame 82 in a lifting manner; part of the calling lifting driver 83 is connected to the wide-line filler device, and is used to drive the wide-line filler device to lift;
[0089] The wide-line filler device 1 comprises a wide-line cloth hopper 11, a wide-line cloth frame 12 and a wide-line rotating driver 13.
[0090] The wide-line cloth hopper 11 is provided with a wide-line feeding channel 111; the wide-line cloth frame 12 is provided with a long-width cloth feeding port 121, and the input end of the long-width cloth feeding port 121 is communicated with the output end below the wide-line feeding channel 111; the length-width ratio of the long-width cloth feeding port 121 is greater than 1.
[0091] The wide-line rotating driver 13 is used to drive the wide-line cloth frame 12 to rotate, so as to adjust the length direction 1211 and the width direction 1212 of the long-width cloth feeding port 121.
[0092] The multifunctional artificial stone slab powder distributing machine can mobilize the wide-line filler device and / or the multi-purpose line distributing powder device 8 according to needs. When the wide-line filler device 1 is called, the wide-line filler device 1 is mainly considered to be provided with a long and wide distributing port 121 with a length-width ratio greater than 1, and the length direction 1211 and the width direction 1212 of the long and wide distributing port 121 can be adjusted under the driving action of the wide-line rotating driver 13, so that the width control of the filler texture can be realized, the filling efficiency of the wide and narrow texture is improved, the plate blank can form a three-dimensional, natural and unique beautiful texture, the texture is closer to the natural texture, and the problems of lack of three-dimensional and natural feeling of the existing artificial stone slab texture and low filling efficiency are solved.
[0093] Specifically, the wide-line distributing hopper 11 is provided with a wide-line feeding passage 111, which is equivalent to a funnel structure. The inner diameter of the wide-line feeding passage 111 gradually narrows from top to bottom, that is, the wide-line feeding passage 111 forms a large-diameter end at the upper end and a small-diameter end at the lower end. The large-diameter end is more convenient for receiving the material from above, and the small-diameter end can output the powder to the long and wide distributing port 121 of the wide-line distributing frame 12. The long and wide distributing port 121 has a certain length-width ratio, and the length-width ratio is greater than 1, that is, the length is greater than the width. After the long and wide distributing port 121 receives the powder, the powder will be distributed according to the inner diameter profile of the long and wide distributing port 121, so as to be distributed according to the length and width of the long and wide distributing port 121. The output end of the wide-line rotating driver 13 is directly or indirectly connected to the wide-line distributing frame 12 for driving the wide-line distributing frame 12 to rotate and drive the long and wide distributing port 121 to rotate, so as to adjust the length direction 1211 and the width direction 1212 of the long and wide distributing port 121. When the wide-line distributing frame 12 distributes powder to a certain area, the side of the wide-line distributing frame 12 in the length direction 1211 is perpendicular to the powder distribution direction, so the width of the powder distribution is large. When the side of the wide-line distributing frame 12 in the width direction 1212 is perpendicular to the powder distribution direction, the width of the powder distribution is small. Further, the length direction 1211 or the width direction 1212 can be inclined towards the powder distribution direction, so that the width of the powder distribution is smaller than the length or the width of the long and wide distributing port 121. The projection of the wide-line distributing frame 12 in the length direction 1211 or the width direction 1212 to the powder distribution area can control the width of the filler texture, so that the width can concentrate the powder distribution in a certain area, avoid the waste of powder, and improve the filling efficiency of the wide and narrow texture.
[0094] The wide-line rotating driver 13 is a mechanism with a known driving rotating function, such as a motor, or a combination of a motor and a speed reducer.
[0095] In one embodiment, the wide-textured fabric frame 12 is rotatably mounted at the lower end of the wide-textured fabric hopper 11, and the output end of the wide-textured fabric rotating driver 13 is connected to the wide-textured fabric frame 12 for driving the wide-textured fabric frame 12 to rotate relative to the wide-textured fabric hopper 11. In this embodiment, the wide-textured fabric hopper 11 is fixed, for example, fixed to the wide-textured fabric filling frame 14, the wide-textured fabric frame 12 is rotatably mounted to the wide-textured fabric hopper 11, and only the output end of the wide-textured fabric rotating driver 13 needs to be connected to the wide-textured fabric frame 12 to drive the long and wide fabric port 121 to rotate, thereby adjusting the length direction 1211 and the width direction 1212 of the long and wide fabric port 121.
[0096] In one embodiment, the wide-textured fabric frame 12 is rotatably mounted at the lower end of the wide-textured fabric hopper 11, and the output end of the wide-textured fabric rotating driver 13 is connected to the wide-textured fabric frame 12 for driving the wide-textured fabric frame 12 to rotate relative to the wide-textured fabric hopper 11. In this embodiment, the wide-textured fabric hopper 11 is fixed, for example, fixed to the wide-textured fabric filling frame 14, the wide-textured fabric frame 12 is rotatably mounted to the wide-textured fabric hopper 11, and only the output end of the wide-textured fabric rotating driver 13 needs to be connected to the wide-textured fabric frame 12 to drive the long and wide fabric port 121 to rotate, thereby adjusting the length direction 1211 and the width direction 1212 of the long and wide fabric port 121.
[0097] The wide-rib rotating driver 13 comprises a wide-rib rotating motor 131, a wide-rib rotating driving wheel 132 and a wide-rib rotating driven wheel 133. The output end of the wide-rib rotating motor 131 is connected to the wide-rib rotating driving wheel 132 for driving the wide-rib rotating driving wheel 132 to rotate. The wide-rib rotating driven wheel 133 is coaxially connected to the wide-rib cloth frame 12 and rotates synchronously with the wide-rib cloth frame 12. The wide-rib rotating driving wheel 132 drives the wide-rib rotating driven wheel 133 to rotate, thereby driving the wide-rib cloth frame 12 to rotate. The wide-rib rotating motor 131 drives the wide-rib rotating driving wheel 132 to rotate, which directly or indirectly drives the wide-rib rotating driven wheel 133 to rotate. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are gears, which are engaged with each other. The wide-rib rotating driving wheel 132 directly drives the wide-rib rotating driven wheel 133 to rotate, thereby driving the wide-rib cloth frame 12 to rotate. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are gears, which are engaged with a same toothed chain. The wide-rib rotating driving wheel 132 drives the wide-rib rotating driven wheel 133 to rotate through the toothed chain, thereby driving the wide-rib cloth frame 12 to rotate. In one embodiment, the wide-rib rotating driving wheel 132 and the wide-rib rotating driven wheel 133 are common wheels, which are synchronously connected by a synchronous belt. The wide-rib rotating driving wheel 132 drives the wide-rib rotating driven wheel 133 to rotate through the toothed chain, thereby driving the wide-rib cloth frame 12 to rotate.
[0098] The wide-rib filling device 1 further comprises a wide-rib filling rack 14 and a tamping device 15.
[0099] The wide-rib cloth hopper 11, the wide-rib rotating driver 13 and the tamping device 15 are respectively installed on the wide-rib filling rack 14.
[0100] The output end of the tamping device 15 extends into the wide-rib feeding channel 111.
[0101] The tamping device 15 comprises a tamping lifting driver 151 and a tamping device 152.
[0102] The output end of the tamping lifting driver 151 is connected to the tamping device 152 for driving the tamping device 152 to move up and down, so that the tamping device 152 moves up and down in the wide-rib feeding channel 111 and / or the long-wide cloth port 121. The tamping lifting driver 151 drives the tamping device 152 to move up and down, so that the tamping device 152 moves up and down in the wide-rib feeding channel 111 and / or the long-wide cloth port 121. The tamping lifting driver 151 can crush the powder in the wide-rib feeding channel 111 and / or the long-wide cloth port 121, mainly by the lifting action of the tamping device 152.
[0103] The wide-rib filling frame 14 is a frame of the wide-rib cloth hopper 11, the wide-rib cloth frame 12, the wide-rib rotating driver 13 and the tamping device 15, etc. The output end of the tamping device 15 can extend into the wide-rib feeding channel 111 from top to bottom, and can tamp and crush the powder in the wide-rib feeding channel 111 and / or the powder in the wide-rib cloth port 121, so as to break the blocky stone material and form more powder, thereby avoiding the blocky stone material from blocking the wide-rib feeding channel 111 and / or the wide-rib cloth port 121.
[0104] The tamping lifting driver 151 is a mechanism with a lifting function, such as a cylinder, an oil cylinder, a combination of a motor and a screw rod, a mechanical arm, etc.
[0105] The tamping device 15 can further comprise a tamping rotating driver 153.
[0106] The tamping rotating driver 153 is installed on the wide-rib filling frame 14, and the output end of the tamping rotating driver 153 is connected to the tamping lifting driver 151, so as to drive the tamping lifting driver 151 to rotate and drive the tamper 152 to rotate.
[0107] The tamper 152 comprises a tamping fixed plate 1521 and a tamping column 1522.
[0108] The plurality of tamping columns 1522 are arranged in a straight line on the same tamping fixed plate 1521, and a gap is formed between two adjacent tamping columns 1522. The output end of the tamping lifting driver 151 is connected to the tamping fixed plate 1521, so as to drive the tamping fixed plate 1521 to move up and down, and drive the plurality of tamping columns 1522 to move up and down.
[0109] The tamping rotating driver 153 can drive the tamping lifting driver 151 to rotate, so as to drive the tamper 152 of the tamping lifting driver 151 to rotate. In addition to tamping and crushing the powder by lifting, the tamper 152 can also tamping and crush the powder by rotating, and can stir the powder, so as to make the powder more dispersed. The tamping rotating driver 153 is a mechanism with a rotating function, such as a motor, or a combination of a motor and a speed reducer, etc.
[0110] The plurality of tamping columns 1522 are installed on the same tamping fixed plate 1521, the output end of the tamping lifting driver 151 is connected to the tamping fixed plate 1521, the tamping lifting driver 151 drives the tamping fixed plate 1521 to lift, that is, the plurality of tamping columns 1522 are simultaneously lifted; the lower end bottom surface area of the tamping column 1522 is small, and the contact area with the powder is small, so that the pressure when the tamping column 1522 is pressed is large, and the powder can be more easily crushed. Combined with the rotating driving effect of the tamping rotating driver 153 on the tamping lifting driver 151, the tamping column 1522 can also rotate after crushing the powder, and the powder crushed in the gap between the tamping columns 1522 is more uniform.
[0111] The stone texture forming device 7 is further included.
[0112] Part of the calling lifting driver 83 is connected to the stone texture forming device 7, and is used to drive the stone texture forming device 7 to lift.
[0113] The stone texture forming device 7 includes a filler moving frame 71, a texture spraying mechanism 70, a slotting mechanism 72, and a wide-texture filler moving mechanism 73.
[0114] The texture spraying mechanism 70 and the slotting mechanism 72 are respectively connected to the filler moving frame 71; the output end of the wide-texture filler moving mechanism 73 is connected to the filler moving frame 71, and is used to drive the filler moving frame 71 to move.
[0115] The texture spraying mechanism 70 includes a slurry spray gun 6 and a spray gun accessory 5.
[0116] The slurry spray gun 6 is installed on the filler moving frame 71; the spray gun accessory 5 includes an inner sleeve 51 and an outer sleeve 52.
[0117] The inner sleeve 51 is provided with an inner tube cavity 510, and the spray gun nozzle 61 of the slurry spray gun 6 is installed in the inner tube cavity 510; the outer sleeve 52 is provided with an outer tube cavity 521, and the inner sleeve 51 is limited in the outer tube cavity 521; one end of the inner sleeve 51 is limited in one end of the outer tube cavity 521, and the other end of the inner sleeve 51 is located at the outer tube port 523 of the other end of the outer tube cavity 521; the outer tube cavity 521 and the inner sleeve 51 form a powder conveying output channel 524; the outer sleeve 52 is provided with a powder inlet port 525 connected to the powder conveying output channel 524.
[0118] The slotting mechanism 72 includes a slotting cutter 721; the slotting cutter 721 is installed on the filler moving frame 71.
[0119] The stone texture forming device 7 can drive the filler moving frame 71 to move through the wide texture filler moving mechanism 73, can drive the slurry spray gun 6 and the slotting cutter 721 to move synchronously, can output three-dimensional, natural and unique and beautiful textures through the slurry spray gun 6, and can realize synchronous movement of slotting and filling by combining synchronous movement of the slotting cutter 721, thereby solving the problem that the existing artificial stone lacks natural texture effect and needs to be filled multiple times.
[0120] Specifically, the texture spraying mechanism 70 and the slotting mechanism 72 are directly or indirectly connected to the filler moving frame 71 respectively; the wide-texture filler moving mechanism 73 can drive the filler moving frame 71 to move, thereby driving the slurry spraying gun 6 and the slotting cutter 721 on the filler moving frame 71 to move synchronously; the front and back working sequence of the slurry spraying gun 6 and the slotting cutter 721 can be determined according to needs; for example, some embodiments can be to lay powder first, and then slot on the powder; some embodiments can be to slot first, and then lay powder in the slot. For the slotting cutter 721, it can be a cutter commonly used for slotting in artificial stone plates, which contacts the powder and can form a slot structure on the powder with the movement of the filler moving frame 71; and the slurry spraying gun 6 combined with the spraying gun accessory 5 can be used to output powder and slurry; the spraying gun accessory 5 is installed on the spraying gun nozzle 61 of the slurry spraying gun 6, the spraying gun nozzle 61 can extend into the inner tube cavity 510 of the built-in sleeve 51; the outer sleeve 52 is provided with an outer tube cavity 521 for installing the built-in sleeve 51; one end of the outer tube cavity 521 is provided with an outer tube fixing seat 522 for detachably fixing the built-in sleeve 51, and the built-in sleeve 51 can be limited in the outer tube cavity 521. When the built-in sleeve 51 is limited in the outer tube cavity 521, a powder conveying output channel 524 is formed between the outer tube cavity 521 and the built-in sleeve 51, powder can be conveyed into the powder inlet tube 525, and the powder is output to the outer tube outlet 523 through the powder conveying output channel 524, thereby being output to the outside. The slurry spraying gun 6 can output slurry through the spraying gun nozzle 61 installed on the built-in sleeve 51, and the slurry is output through the built-in sleeve 51, which is equivalent to being output from the outer tube outlet 523. In this way, the powder and the slurry are output to the outside from the outer tube outlet 523 at the same time, on the one hand, the powder forms a specific texture in a random manner after being output, and the powder can freely fall to the artificial stone plate under the action of gravity to form a two-dimensional plane structure; on the other hand, the powder can mix with the slurry in the air, thereby more easily forming wet particles, the particles have a three-dimensional structure, and the size is much larger than that of a single powder, so that when falling to the artificial stone plate, a three-dimensional structure can be formed, and based on the wet state of the particles, the three-dimensional structure is not easy to disintegrate, and the structure of the three-dimensional structure is stable. More importantly, the two-dimensional plane structure and the three-dimensional structure formed have the advantages of natural, three-dimensional, natural, and unique beauty of the texture formed by natural falling. In this way, the scheme can output a three-dimensional, natural, and unique texture through the slurry spraying gun 6, and can realize synchronous movement of slotting and filling by combining the synchronous movement of the slotting cutter 721, thereby solving the problem that the existing artificial stone lacks natural texture effect and needs to be laid multiple times.
[0121] The slurry spraying gun 6 installed by the spraying gun accessory 5 of the scheme is a commonly known mechanism, which generally has a slurry inlet, an atomization control port, and a spraying gun switch control port, and other conventional structures, which will not be described here.
[0122] The stone material texture forming device 7 can further comprise a processing switching assembly 74.
[0123] The processing switching assembly 74 comprises a processing switching turret 741 and a processing switching driver 742.
[0124] The processing switching turret 741 is rotatably installed on the filler moving frame 71; the texture spraying mechanism 70 and the slotting mechanism 72 are respectively installed on the processing switching turret 741; the output end of the processing switching driver 742 is connected to the processing switching turret 741 for driving the processing switching turret 741 to rotate, thereby driving the texture spraying mechanism 70 and the slotting mechanism 72 to rotate.
[0125] The slotting mechanism 72 comprises a cutter lifting driver 722.
[0126] The cutter lifting driver 722 is installed on the processing switching turret 741; the output end of the cutter lifting driver 722 is connected to the slotting cutter 721 for driving the slotting cutter 721 to move up and down.
[0127] The front and back working sequence of the slurry spray gun 6 and the slotting cutter 721 can be determined according to requirements; in the optimal embodiment, the slurry spray gun 6 and the slotting cutter 721 can be switched by the processing switching driver 742, i.e. the texture spraying mechanism 70 or the slotting mechanism 72 is adjusted to the front of the moving direction of the filler moving frame 71; in this way, the filler moving frame 71 can keep the processing sequence of the slurry spray gun 6 and the slotting cutter 721 during the longitudinal and transverse movement of the artificial stone, and the moving paths of the two are consistent. Specifically, the output end of the processing switching driver 742 can be directly or indirectly connected to the processing switching turret 741 for driving the processing switching turret 741 to rotate, thereby driving the texture spraying mechanism 70 and the slotting mechanism 72 to rotate, so as to adjust the slurry spray gun 6 or the slotting cutter 721 to the frontmost position in the moving direction. The cutter lifting driver 722 can be used for driving the slotting cutter 721 to move up and down, so that the slotting cutter 721 can be adjusted to the required height position according to requirements, and the slotting cutter 721 can be inserted into the powder or separated from the powder; or the cutter lifting driver 722 can control the depth of the slotting cutter 721 in the powder, so as to open a slot with a specific depth.
[0128] The processing switching driver 742 is a mechanism with a driving rotation function, such as a motor, a combination of a motor and a speed reducer, a combination of a motor, a gear and a rack, etc., as long as the processing switching turret 741 can rotate.
[0129] The cutter lifting driver 722 is a mechanism with a driving lifting function, such as a combination of a motor and a screw rod, a cylinder, a mechanical hand, etc.
[0130] The stone material texturing device 7 further comprises a powder tank 75, a slurry tank 76 and a dust collector 77.
[0131] The powder tank 75 and the slurry tank 76 are installed on the filler moving frame 71; the output end of the powder tank 75 is communicated with the powder inlet tube 525; the output end of the slurry tank 76 is communicated with the spray gun nozzle 61. The powder tank 75 is used to store powder, and the slurry tank 76 is used to store slurry; the powder tank 75 can be communicated with the powder inlet tube 525 through a pipeline (or other known ways) to output powder to the powder output channel. The slurry tank 76 can be communicated with the input end of the slurry spray gun 6 through a pipeline (or other known ways), and the slurry spray gun 6 outputs the slurry through the spray gun nozzle 61. In this way, the powder and the slurry are simultaneously output from the outer tube 523 to the outside, on the one hand, the powder forms a specific texture in a random arrangement manner after output, and the powder can freely fall to the artificial stone slab under the action of gravity to form a two-dimensional plane structure; on the other hand, the powder mixes with the slurry in the air, so that it is easier to form a wet particle, which has a three-dimensional structure and is much larger in size than a single powder, and thus can form a three-dimensional structure when falling to the artificial stone slab, and the three-dimensional structure is not easy to disintegrate based on the wet state of the particle, and the three-dimensional structure is stable in structure. The dust collector 77 is installed on the filler moving frame 71. The dust collector 77 is a mechanism with a dust collection function known in the art, which can absorb dust floating above the artificial stone to improve the air cleanliness of the factory building, and can collect dust before or after the arrangement and grooving to avoid the influence of the dust on the workers' bodies or the texture of the artificial stone.
[0132] Optimally, it further comprises a stone material conveying mechanism 78; the conveying end of the stone material conveying mechanism 78 is used to receive and convey the artificial stone; the wide-texture filler moving mechanism 73 comprises an X-axis moving driving assembly 731, a Y-axis moving driving assembly 732 and a Z-axis moving driving assembly 733; the output end of the X-axis moving driving assembly 731 is connected to the Y-axis moving driving assembly 732, which is used to drive the Y-axis moving driving assembly 732 to move along the X-axis direction; the output end of the Y-axis moving driving assembly 732 is connected to the Z-axis moving driving assembly 733, which is used to drive the Z-axis moving driving assembly 733 to move along the Y-axis direction; the output end of the Z-axis moving driving assembly 733 is directly or indirectly connected to the multi-purpose line marking and powder spreading device 8, the stone material texturing device 7 or the wide-texture filler device 1, which is used to drive the multi-purpose line marking and powder spreading device 8, the stone material texturing device 7 or the wide-texture filler device 1 to move up and down along the Z-axis. The Z-axis moving driving assembly 733 can also serve as the lifting driver 83.
[0133] The stone conveying mechanism 78 is a known mechanism for driving and moving artificial stone, which can move the artificial stone to the processing area of the texture spraying mechanism 70 and the slotting mechanism 72; the wide-texture filler moving mechanism 73 is respectively provided with an X-axis moving driving assembly 731, a Y-axis moving driving assembly 732 and a Z-axis moving driving assembly 733, which correspond to the movements in the X, Y and Z axial directions respectively, and the three assemblies jointly drive the filler moving frame 71 to move towards the X, Y and Z axial directions, thereby realizing the multi-angle movement of the texture spraying mechanism 70 and the slotting mechanism 72.
[0134] The outer tube cavity 521 is sequentially provided with an outer tube tapered portion 526 and an outer tube cylindrical portion 527 along the length, which can be optimized;
[0135] The powder inlet tube 525 is arranged at the outer tube tapered portion 526; and the outer tube opening 523 is located at the outer tube cylindrical portion 527;
[0136] The inner diameter of the outer tube tapered portion 526 gradually decreases towards the direction of the outer tube opening 523;
[0137] One end of the built-in tube sleeve 51 extends out of the outer tube opening 523.
[0138] The outer tube cavity 521 is divided into at least two sections along the length, specifically sequentially provided with an outer tube tapered portion 526 and an outer tube cylindrical portion 527; the outer tube tapered portion 526 is provided with a powder inlet tube 525 for inputting powder; the inner diameter of the outer tube tapered portion 526 gradually decreases towards the direction of the outer tube opening 523, which can gradually narrow the inner diameter of the powder output channel, and when the powder passes through the outer tube tapered portion 526 of the powder output channel, the powder is subjected to a pressurizing effect, so that the powder is accelerated to be output towards the direction of the outer tube opening 523 of the outer tube cylindrical portion 527. The outer tube cylindrical portion 527 has a conventional cylindrical tube profile; in this way, the large-diameter end of the outer tube tapered portion 526 can temporarily store more powder, thereby achieving the effect of reducing the pressure and buffering the powder; the gradually narrowed inner diameter of the outer tube tapered portion 526 can increase the flow rate of the powder, thereby achieving the effect of stabilizing the flow of the powder, reducing or avoiding the intermittent output of the powder, and ensuring the stable flow rate of the powder.
[0139] As Figure 11 One end of the built-in tube sleeve 51 extends out of the outer tube opening 523, i.e., the end surface of the slurry spray gun 6 and the end surface of the outer tube opening 523 are not in the same plane, which can prevent the slurry from mixing with the powder in the inside of the outer tube sleeve 52 during the output of the slurry, and the slurry and the powder are mainly mixed during the falling process, so that the distribution of the powder is more random, and the texture formed is more three-dimensional, more natural, more unique and more beautiful.
[0140] The spray gun accessory 5 further comprises a spray gun fixing seat 53; the outer tube sleeve 52 is provided with an outer tube fixing seat 522 at an end away from the outer tube opening 523; one end of the inner tube sleeve 51 is detachably limited in the outer tube fixing seat 522; the spray gun fixing seat 53 is provided with a gun seat accommodating cavity 531 for accommodating the spray gun nozzle 61 of the slurry spray gun 6; the gun seat accommodating cavity 531 is provided with a gun seat accommodating opening 532 for passing the spray gun nozzle 61; the spray gun fixing seat 53 is detachably installed on the outer tube fixing seat 522, and the spray gun fixing seat 53 connects the slurry spray gun 6 to the filler moving frame 71.
[0141] The gun seat accommodating cavity 531 is provided with a screw passing opening 533, and the outer tube fixing seat 522 is provided with an outer seat screw hole 528; the spray gun fixing seat 53 is installed on the outer tube fixing seat 522 through an outer seat screw 520, and the outer seat screw 520 passes through the screw passing opening 533 and is screwed into the outer seat screw hole 528.
[0142] The spray gun fixing seat 53 can be used to fix the slurry spray gun 6, and the slurry spray gun 6 can be fixed in any device; the spray gun nozzle 61 is installed on the spray gun nozzle 61 of the slurry spray gun 6, and the spray gun nozzle 62 is installed in the gun seat accommodating cavity 531; the spray gun nozzle 61 passes through the gun seat accommodating opening 532 of the gun seat accommodating cavity 531 and extends into the inner tube cavity 510. The spray gun fixing seat 53 is also installed on the outer tube fixing seat 522, so that the spray gun accessory 5 and the slurry spray gun 6 are fixed together.
[0143] The spray gun fixing seat 53 is installed on the outer tube fixing seat 522 through the outer seat screw 520, and the spray gun fixing seat 53 can be installed when needed; the screw rod of the outer seat screw 520 passes through the screw passing opening 533 and is screwed into the outer seat screw hole 528, and the screw head of the outer seat screw 520 is limited in the gun seat accommodating cavity 531.
[0144] Optimally, the inner tube sleeve 51 comprises a fixed tube sleeve 511 and an inner branch tube 512;
[0145] The outer tube sleeve 52 is provided with an outer tube fixing seat 522 at an end away from the outer tube opening 523;
[0146] One end of the fixed tube sleeve 511 is connected to one end of the inner branch tube 512, the other end of the fixed tube sleeve 511 is limited in the outer tube fixing seat 522, and the other end of the inner branch tube 512 is located in the outer tube opening 523;
[0147] The spray gun accessory 5 further comprises an inner tube fastening tip 54; the outer tube sleeve 52 is provided with an outer tube fixing seat 522 at one end away from the outer tube opening 523; the outer side of the outer tube fixing seat 522 is provided with an outer seat fixing hole 529; the inner tube fastening tip 54 is limited in the outer seat fixing hole 529; one end of the inner tube fastening tip 54 extends into the inner part of the outer tube fixing seat 522 and abuts against the inner tube sleeve 51, so that one end of the inner tube sleeve 51 is detachably limited in the outer tube fixing seat 522.
[0148] The inner tube sleeve 51 of the present scheme can adopt a split design, which divides the entire inner tube sleeve 51 into at least a fixed sleeve 511 and an inner divided tube 512; the fixed sleeve 511 and the inner divided tube 512 are correspondingly provided with an inner tube cavity 510 for accommodating the spray gun nozzle 61; the fixed sleeve 511 plays a main fixing and limiting role for the inner tube sleeve 51, and the inner divided tube 512 mainly accommodates the spray gun nozzle 61; in this way, the inner divided tube 512 is mainly in contact with the powder, and the powder will contact the surface of the inner divided tube 512 when passing through the powder conveying output channel 524, which causes abrasion to the inner divided tube 512, and the inner divided tube 512 is a consumable part. In this way, only the part of the inner divided tube 512 needs to be replaced after a long time of use, without the need for replacement of the entire tube.
[0149] The fixed sleeve 511 and the inner divided tube 512 can be connected into one body by a known manner, such as screw fixing, clamping fixing, threaded fixing, etc., as long as the connection is achieved.
[0150] The inner tube fastening tip 54 can be limited in the outer seat fixing hole 529 by a known manner, such as clamp fixing, spring pressing, clamping fixing, etc. When the inner tube fastening tip 54 is limited in the outer seat fixing hole 529, one end of the inner tube fastening tip 54 can extend into the inner part of the outer tube fixing seat 522, and the inner tube fastening tip 54 can contact the outer surface of the inner tube sleeve 51, specifically the fixed sleeve 511, which is limited in the outer tube fixing seat 522 under the pressing action of the inner tube fastening tip 54. Among them, different outer sides of the outer tube fixing seat 522 can be respectively provided with outer seat fixing holes 529, for example, the outer seat fixing holes 529 are arranged on two opposite outer sides, and when the two outer seat fixing holes 529 are respectively provided with inner tube fastening tips 54, the two inner tube fastening tips 54 press the inner tube sleeve 51 towards each other, so that the inner tube sleeve 51 is limited in the outer tube fixing seat 522. In the most preferred embodiment, the inner tube fastening tip 54 is screwed into the outer seat fixing hole 529. The inner tube fastening tip 54 can be provided with an external thread structure, the outer seat fixing hole 529 can be provided with an internal thread structure, and the inner tube fastening tip 54 is screwed into the outer seat fixing hole 529. Only the inner tube fastening tip 54 needs to be turned to adjust the pressing or loosening state of the inner tube sleeve 51, which facilitates the daily replacement of the inner tube sleeve 51.
[0151] Although the embodiments of the utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.
Claims
1. A multi-purpose line marking chalk device, characterized by, It comprises: Single fixed seat and line cloth powder unit; A plurality of said line cloth powder unit is respectively arranged in the horizontal direction and is installed in the single fixed seat; Each of said line cloth powder unit respectively comprises: single lifting device, single lifting seat, single line cutter head, single powder sprayer and single shotcrete gun; The single lifting seat is installed in the single fixed seat; the single line cutter head, the single powder sprayer and the single shotcrete gun are connected to the single lifting seat; the output end of the single lifting device is connected to the single lifting seat, which is used to drive the single lifting seat to move up and down, and drive the single line cutter head and the single powder sprayer to move up and down; The single line cutter head of each line cloth powder unit is provided with line end faces of different shapes.
2. The multi-purpose line marking chalk device of claim 1, wherein, The line cloth powder unit further comprises: single rotating seat and single rotating driver; The single rotating seat is rotatably installed in the single lifting seat, and the single line cutter head is installed in the single rotating seat; the output end of the single rotating driver is connected to the single rotating seat, which is used to drive the single rotating seat to rotate and drive the single line cutter head to rotate.
3. The multi-purpose line marking chalk device of claim 2, wherein, The line end face of part of the line cloth powder unit is provided with a line disc and a line dividing column; the upper end of the line dividing column is installed in the line disc, and a plurality of line dividing columns are distributed around the line disc, and a gap is formed between adjacent two line dividing columns; Part of the line end face of the line cloth powder unit is provided with a vertically extending line cutter plate; Part of the line end face of the line cloth powder unit is a vertically extending line column, and the line column is coaxially aligned with the output end of the single rotating driver.
4. The multi-purpose line marking chalk device of claim 1, wherein, It further comprises: Dust collector; The dust collector comprises: dustproof cover, dust suction pipe and centralized dust collection pipe; Each of said line cloth powder unit is arranged in said dustproof cover, the input end of said dust suction pipe is communicated with one of said dustproof cover, and the output end of a plurality of said dust suction pipes is communicated with said centralized dust collection pipe.
5. A multifunctional artificial stone panel powder distributing machine, characterized in that, It comprises: Wide line filler device, powder distribution frame, calling lifting driver and multi-purpose line cloth powder device of any one of claims 1-4; The single fixed seat and the wide line filler device are installed in the powder distribution frame; Part of the calling lifting driver is connected to the wide line filler device, which is used to drive the wide line filler device to lift; The wide line filler device comprises: wide line feeding hopper, wide line feeding frame and wide line rotating driver; The wide line feeding hopper is provided with a wide line feeding channel; the wide line feeding frame is provided with a long and wide feeding port, the input end of which is communicated with the output end below the wide line feeding channel; the length-width ratio of the long and wide feeding port is greater than 1; The wide line rotating driver is used to drive the wide line feeding frame to rotate, so as to adjust the length direction and width direction of the long and wide feeding port.
6. The multifunctional artificial stone panel powder distributing machine according to claim 5, characterized in that, The wide line filler device further comprises: wide line filler frame and tamping device; The wide line feeding hopper, wide line rotating driver and tamping device are respectively installed in the wide line filler frame; The output end of the tamping device extends into the wide line feeding channel; The tamping device comprises: tamping lifting driver and tamper. The output end of the tamping lifting driver is connected to the tamping device, and is used to drive the tamping device to move up and down, so that the tamping device moves up and down in the wide groove feeding channel and / or the long and wide feeding port.
7. The multifunctional artificial stone panel powder distributing machine according to claim 6, characterized in that, The tamping device further comprises a tamping rotating driver. The tamping rotating driver is installed on the wide groove filler frame, and the output end of the tamping rotating driver is connected to the tamping lifting driver, and is used to drive the tamping lifting driver to rotate, so that the tamping device rotates. The tamping device comprises a tamping fixed plate and tamping columns. A plurality of tamping columns are arranged in a straight line on the same tamping fixed plate, and a gap is formed between adjacent two tamping columns.
8. The multifunctional artificial stone panel powder distributing machine according to any one of claims 5-7, characterized in that, The output end of the tamping lifting driver is connected to the tamping fixed plate, and is used to drive the tamping fixed plate to move up and down, so that the plurality of tamping columns move up and down. Further comprising: A stone texture forming device; Part of the calling lifting driver is connected to the stone texture forming device, and is used to drive the stone texture forming device to move up and down. The stone texture forming device comprises a filler moving frame, a texture spraying mechanism, a slotting mechanism and a wide groove filler moving mechanism. The texture spraying mechanism and the slotting mechanism are respectively connected to the filler moving frame, and the output end of the wide groove filler moving mechanism is connected to the filler moving frame, and is used to drive the filler moving frame to move. The texture spraying mechanism comprises a slurry spray gun and a spray gun accessory. The slurry spray gun is installed on the filler moving frame, and the spray gun accessory comprises an inner sleeve and an outer sleeve. The inner sleeve is provided with an inner sleeve cavity, and the spray gun nozzle of the slurry spray gun is installed in the inner sleeve cavity.
9. The multi-functional engineered stone slab powder distributing machine according to claim 8, characterized in that, The outer sleeve is provided with an outer sleeve cavity, and the inner sleeve is limited in the outer sleeve cavity. One end of the inner sleeve is limited in one end of the outer sleeve cavity, and the other end of the inner sleeve is located in the outer port of the other end of the outer sleeve cavity. The outer sleeve cavity and the inner sleeve form a powder conveying output channel, and the outer sleeve is provided with a powder inlet tube port connected to the powder conveying output channel. The slotting mechanism comprises a slotting cutter, and the slotting cutter is installed on the filler moving frame. The stone texture forming device further comprises a processing switching assembly. The processing switching assembly comprises a processing switching turret and a processing switching driver. The processing switching turret is rotatably installed on the filler moving frame, and the texture spraying mechanism and the slotting mechanism are respectively installed on the processing switching turret. The output end of the processing switching driver is connected to the processing switching turret, and is used to drive the processing switching turret to rotate, so that the texture spraying mechanism and the slotting mechanism rotate. The slotting mechanism comprises a cutter lifting driver. The cutter lifting driver is installed on the processing switching turret, and the output end of the cutter lifting driver is connected to the slotting cutter, and is used to drive the slotting cutter to move up and down.
10. The multi-functional engineered stone slab powder distributing machine according to claim 8, characterized in that, The built-in pipe sleeve comprises a fixed pipe sleeve and an inner pipe; The outer pipe sleeve is provided with an outer pipe fixing base at one end away from the outer pipe opening; One end of the fixed pipe sleeve is connected to one end of the inner pipe, and the other end of the fixed pipe sleeve is limited in the outer pipe fixing base, and the other end of the inner pipe is located in the outer pipe opening; The lance accessory further comprises an inner pipe fastening tip; the outer side of the outer pipe fixing base is provided with an outer base fixing hole; the inner pipe fastening tip is limited in the outer base fixing hole; one end of the inner pipe fastening tip extends into the inner part of the outer pipe fixing base and abuts against the built-in pipe sleeve, so that one end of the built-in pipe sleeve is detachably limited in the outer pipe fixing base.