CN218227897U - Inside dust cleaning device of 3D printer - Google Patents

Inside dust cleaning device of 3D printer Download PDF

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Publication number
CN218227897U
CN218227897U CN202222019910.7U CN202222019910U CN218227897U CN 218227897 U CN218227897 U CN 218227897U CN 202222019910 U CN202222019910 U CN 202222019910U CN 218227897 U CN218227897 U CN 218227897U
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China
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pipe
casing
assembly
sliding
printer
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CN202222019910.7U
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Chinese (zh)
Inventor
江武
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Jiangsu Brozan Intelligent Technology Co ltd
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Tianjin Boruizhan Intelligent Technology Co ltd
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Abstract

The application provides an inside dust cleaning device of 3D printer belongs to 3D printer technical field. This inside dust cleaning device of 3D printer, including wasing structure and air-dry structure, it includes casing, reciprocating sliding subassembly, cleans the subassembly, sprays water subassembly and pallet to wash the structure, reciprocating sliding subassembly set up in the casing, clean the subassembly with reciprocating sliding subassembly connects, spray water subassembly with reciprocating sliding subassembly connects, the pallet set up in the casing, it includes hair-dryer, branch pipe and air-out subassembly to air-dry the structure, the branch pipe with the casing intercommunication, the hair-dryer install in casing one side, the branch pipe both ends respectively with the hair-dryer with the butt joint intercommunication of air-out subassembly. In this application, the convenient self-cleaning of inside landing slab of 3D printer, the landing slab after convenient quick air-drying washs simultaneously.

Description

Inside dust cleaning device of 3D printer
Technical Field
The application relates to the field of 3D printers, in particular to an inside dust cleaning device of a 3D printer.
Background
Three-dimensional Printer, also called three-dimensional Printer (3D Printer, abbreviated as 3 DP) is a process of Rapid Prototyping (RP), and a three-dimensional model is made layer by using a layer-by-layer stacking method, the operation process is similar to that of a traditional Printer, except that the traditional Printer prints ink on paper to form a two-dimensional plane drawing, and the three-dimensional Printer forms a three-dimensional entity by stacking and superposing liquid photosensitive resin materials, molten plastic wires, gypsum powder and other materials layer by layer in a binder jetting or extruding mode.
Present 3D printer is generally through the three-dimensional entity that printing technique will need to print through liquid photosensitive resin material, fused plastics silk, materials such as gesso are printed on glass platform board, this just makes and prints the completion back, have the residue to store up on it, consequently need carry out the washing to glass platform board and just can carry out the printing operation next time, artificial dismantlement is washd and is consumed artificial simultaneously, also can influence printing efficiency, simultaneously after the washing is accomplished, need artifical the wiping to dry, can't carry out quick air-drying to glass platform board, influence subsequent printing operation, thereby influence work efficiency.
SUMMERY OF THE UTILITY MODEL
In order to compensate above not enough, this application provides an inside dust cleaning device of 3D printer, aims at improving the unable self-cleaning of glass landing board and quick air-dry problem of 3D printer.
The embodiment of the application provides an inside dust cleaning device of 3D printer, including wasing structure and air-dry structure, it includes casing, reciprocating sliding subassembly, cleans the subassembly, sprays water subassembly and platform board to wash the structure, reciprocating sliding subassembly set up in the casing, clean the subassembly with reciprocating sliding subassembly connects, spray water subassembly with reciprocating sliding subassembly connects, the platform board set up in the casing, air-dry structure includes hair-dryer, branch pipe and air-out subassembly, the branch pipe with the casing intercommunication, the hair-dryer install in casing one side, the branch pipe both ends respectively with the hair-dryer with the butt joint intercommunication of air-out subassembly.
In the above implementation process, when the cleaning is needed, the motor is turned on, the rotating shaft is driven to rotate by the motor to drive the rotating shaft and the rack plate to be indirectly meshed, so that the sliding shell slides on the sliding plate in a reciprocating manner, the connecting rod, the fixed plate and the brush are fixed at the bottom of the sliding shell, the platform plate is cleaned in a reciprocating manner, cleaning is facilitated, cleaning is better, and meanwhile, external water passes through the water inlet pipe, the hose, the connecting pipe, the hard pipe and the first nozzle and is sprayed to the platform plate, the platform plate is convenient to clean, residues on the platform plate are easier to clean.
In a specific embodiment, reciprocal slide subassembly includes motor, slip casing, pivot, semi-gear, rack plate, the motor install in casing one side, the slip casing with casing sliding connection, the pivot with the motor is connected, the pivot with semi-gear inner circle interference fit, the correspondence of slip casing inner wall both sides is provided with the rack plate, the semi-gear corresponds with both sides the rack plate intermittent type nature meshing.
In the implementation process, the platform board is cleaned by the reciprocating driving cleaning assembly and the water spraying assembly through the cooperation of the motor, the sliding shell, the rotating shaft, the half gear and the rack plate.
In a specific embodiment, a bearing is embedded on one side of the shell, and the rotating shaft is in interference fit with an inner ring of the bearing.
In the implementation process, the rotating shaft is in interference fit with the bearing inner ring, so that convenience can be brought to the rotating shaft and the shell to be connected in a rotating mode, and loss is reduced.
In a specific embodiment, a sliding plate is arranged in the shell, and a sliding block is arranged on one side of the sliding shell and is in sliding connection with the sliding plate.
In the implementation process, the number of the sliding blocks is two, and the two sliding blocks are connected with the sliding plate in a sliding mode, so that the position of the reciprocating sliding assembly can be conveniently fixed, and the reciprocating sliding assembly can slide along the sliding plate.
In a specific embodiment, the sweeping assembly comprises a connecting rod, a fixing plate and a brush, the connecting rod is connected with the sliding shell, the fixing plate is connected with the connecting rod, and the brush is arranged on one side of the fixing plate.
In the above-mentioned realization process, brush one end with the landing slab contact, the connecting rod pass through the bolt with the slip casing is fixed, uses through the cooperation between connecting rod, fixed plate and the brush, and is convenient right residue on the landing slab cleans.
In a specific embodiment, the water spray subassembly includes inlet tube, hose, connecting pipe, hard tube and first shower nozzle, the inlet tube with the casing intercommunication, the hose both ends respectively with the inlet tube with the connecting pipe butt joint intercommunication, the connecting pipe set up in slip casing one side, the connecting pipe with the hard tube intercommunication, hard tube one side intercommunication has a plurality of first shower nozzle.
In the implementation process, first shower nozzle water spray direction orientation the landing slab, first shower nozzle sets up all around the brush prevents that liquid from splashing when spraying water, uses through the cooperation between inlet tube, hose, connecting pipe, hard tube and the first shower nozzle, can conveniently wash the residue, and it is more convenient that the messenger cleans.
In a specific embodiment, the air outlet assembly comprises an air outlet pipe and a second sprayer, the air outlet pipe is communicated with the branch pipes in a butt joint mode, and one side of the air outlet pipe is communicated with the second sprayer.
In the implementation process, the air outlet direction of the second spray nozzle is aligned to the platform board, and the platform board is conveniently and quickly air-dried through the matching between the air outlet pipe and the second spray nozzle.
In a specific embodiment, a drainage assembly is arranged in the shell, the drainage assembly comprises a collecting pipe, a supporting pipe and a drainage pipe, the collecting pipe is communicated with the supporting pipe, the supporting pipe is arranged in the shell, the drainage pipe is communicated with the supporting pipe, and the drainage pipe is communicated with the shell.
In the implementation process, the water inlet of the collecting pipe corresponds to the bottom of the platform plate, the supporting pipe conveniently supports the collecting pipe at a certain height, the cleaned sewage is conveniently collected, and the cleaned sewage is conveniently discharged through the cooperation among the collecting pipe, the supporting pipe and the sewage discharge pipe.
In a particular embodiment, the collection tube is of funnel-type design.
In the implementation process, the collecting pipe is designed to be a funnel type, so that sewage after cleaning can be collected and discharged better.
In a specific embodiment, the motor and the blower are both mounted to one side of the housing by bolts.
In the implementation process, the motor and the blower are mounted on one side of the shell through bolts, so that a user can conveniently mount, dismount and replace the blower.
Drawings
In order to more clearly explain the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and that for those skilled in the art, other related drawings can be obtained from these drawings without inventive effort.
FIG. 1 is a schematic cross-sectional structure view of an internal dust cleaning device of a 3D printer provided in an embodiment of the present application;
fig. 2 is a schematic structural diagram of a 3D printer internal dust cleaning device according to an embodiment of the present application;
fig. 3 is a schematic top view of the internal dust cleaning device of the 3D printer according to the embodiment of the present application;
FIG. 4 is a schematic bottom view of the connection between the sweeping assembly and the water spraying assembly according to the embodiment of the present disclosure.
In the figure: 10-cleaning the structure; 110-a housing; 120-a reciprocating slide assembly; 121-a motor; 122-a sliding housing; 123-a rotating shaft; 124-half gear; 125-rack plate; 130-a sweeping assembly; 131-a connecting rod; 132-a fixing plate; 133-a brush; 140-a water spray assembly; 141-a water inlet pipe; 142-a hose; 143-connecting tube; 144-a rigid tube; 145-a first showerhead; 150-a platform plate; 160-a slide plate; 170-a slide block; 180-a drainage assembly; 181-a collection tube; 182-supporting a tube; 183-sewage draining pipe; 20-air-drying the structure; 210-a blower; 220-branch pipes; 230-an air outlet assembly; 231-an air outlet pipe; 232-second showerhead.
Detailed Description
The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application.
To make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions of 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, and it is obvious that the described embodiments are some embodiments of the present application, but not all embodiments. All other embodiments obtained by a person of ordinary skill in the art without any inventive work based on the embodiments in the present application are within the scope of protection of the present application.
Referring to fig. 1, the present application provides a 3D printer internal dust cleaning apparatus, which includes a cleaning structure 10 and an air drying structure 20.
Specific washing structure 10 is convenient to wash the landing slab 150 of 3D printer, and air-dry structure 20 is convenient to carry out quick air-drying to the landing slab 150 of the 3D printer after wasing.
Referring to fig. 1, 2, 3 and 4, the cleaning structure 10 includes a housing 110, a reciprocating sliding assembly 120, a cleaning assembly 130, a water spraying assembly 140 and a platform plate 150, the reciprocating sliding assembly 120 is disposed in the housing 110, the cleaning assembly 130 is connected to the reciprocating sliding assembly 120, the water spraying assembly 140 is connected to the reciprocating sliding assembly 120, and the platform plate 150 is disposed in the housing 110.
When specifically setting up, reciprocating sliding subassembly 120 includes motor 121, slip casing 122, pivot 123, semi-gear 124, rack plate 125, motor 121 install in casing 110 one side, slip casing 122 with casing 110 sliding connection, pivot 123 with motor 121 connects, pivot 123 with semi-gear 124 inner circle interference fit, the correspondence of slip casing 122 inner wall both sides is provided with rack plate 125, semi-gear 124 corresponds with both sides rack plate 125 intermittent type nature meshing, wherein through the cooperation between motor 121, slip casing 122, pivot 123, semi-gear 124, the rack plate 125, convenient reciprocal drive cleans subassembly 130 and water spray subassembly 140 and washs platform plate 150.
When specifically setting up, casing 110 one side inlays and is equipped with the bearing, pivot 123 and bearing inner race interference fit, wherein, through pivot 123 and bearing inner race interference fit, can be convenient pivot 123 with casing 110's rotation is connected, reduces the loss.
In a specific arrangement, a sliding plate 160 is disposed in the housing 110, a sliding block 170 is disposed on one side of the sliding housing 122, and the sliding block 170 is slidably connected to the sliding plate 160, wherein two sliding blocks 170 are disposed, and the two sliding blocks 170 are slidably connected to the sliding plate 160, so that the position of the reciprocating sliding assembly 120 can be conveniently fixed, and the sliding block can slide along the sliding plate 160.
When specifically setting up, clean subassembly 130 includes connecting rod 131, fixed plate 132 and brush 133, connecting rod 131 with slide housing 122 is connected, fixed plate 132 with connecting rod 131 is connected, brush 133 set up in fixed plate 132 one side, wherein, brush 133 one end with platform board 150 contact, connecting rod 131 pass through the bolt with slide housing 122 is fixed, through the cooperation use between connecting rod 131, fixed plate 132 and the brush 133, the convenience is right residue on platform board 150 cleans.
When the water spraying assembly 140 is specifically arranged, the water spraying assembly 140 comprises a water inlet pipe 141, a hose 142, a connecting pipe 143, a hard pipe 144 and a first spraying head 145, the water inlet pipe 141 is communicated with the shell 110, two ends of the hose 142 are respectively communicated with the water inlet pipe 141 and the connecting pipe 143 in a butt joint manner, the connecting pipe 143 is arranged on one side of the sliding shell 122, the connecting pipe 143 is communicated with the hard pipe 144, one side of the hard pipe 144 is communicated with a plurality of first spraying heads 145, wherein the water spraying direction of the first spraying heads 145 faces the platform board 150, the first spraying heads 145 are provided with the brushes 133 all around, so that liquid splashing during water spraying is prevented, and through the matching use among the water inlet pipe 141, the hose 142, the connecting pipe 143, the hard pipe 144 and the first spraying heads 145, residues can be conveniently washed, and the cleaning is more convenient.
When specifically setting up, be provided with drainage subassembly 180 in the casing 110, drainage subassembly 180 includes collecting pipe 181, stay tube 182 and blow off pipe 183, collecting pipe 181 with stay tube 182 intercommunication, stay tube 182 set up in the casing 110, blow off pipe 183 with stay tube 182 intercommunication, blow off pipe 183 with casing 110 intercommunication, wherein, the water inlet and the landing deck 150 bottom of collecting pipe 181 correspond, and stay tube 182 conveniently supports collecting pipe 181 at a take the altitude, conveniently collects the sewage after the washing, through the cooperation between collecting pipe 181, stay tube 182 and blow off pipe 183, conveniently discharges the sewage after the washing.
In the specific arrangement, the collecting pipe 181 is designed in a funnel shape, wherein the collecting pipe 181 is designed in the funnel shape, so that sewage after cleaning can be collected and discharged better.
In a specific setting, the motor 121 and the blower 210 are both mounted on one side of the housing 110 by bolts, wherein the motor 121 and the blower 210 are both mounted on one side of the housing 110 by bolts, so that the blower can be conveniently mounted, dismounted and replaced by a user.
Referring to fig. 1, 2 and 3, the seasoning structure 20 includes a blower 210, a branch pipe 220 and an air outlet assembly 230, the branch pipe 220 is communicated with the housing 110, the blower 210 is installed at one side of the housing 110, and two ends of the branch pipe 220 are respectively communicated with the blower 210 and the air outlet assembly 230 in a butt joint manner.
When specifically setting up, air-out subassembly 230 is including air-out pipe 231 and second shower nozzle 232, air-out pipe 231 with branch pipe 220 butt joint intercommunication, it has a plurality of to go out pipe 231 one side intercommunication second shower nozzle 232, wherein, the platform board 150 is aimed at to the air-out direction of second shower nozzle 232, through the cooperation that goes out between pipe 231 and the second shower nozzle 232, convenient faster air-dries platform board 150.
This inside dust cleaning device of 3D printer's theory of operation: when needing to wash, open the motor 121, drive through the motor 121 thereby the pivot 123 is rotatory to be driven pivot 123 with the meshing of the indirection of rack plate 125, make the slip casing 122 along reciprocating sliding on the slide 160 makes and fixes the slip casing 122 bottom the connecting rod 131 the fixed plate 132 with the brush 133, it is right the platform board 150 carries out reciprocal cleaning, convenient round trip cleaning, and clear effect is better, and external water passes through simultaneously inlet tube 141, hose 142 the connecting pipe 143 the hard tube 144 with first shower nozzle 145, spout to platform board 150, it is convenient right platform board 150 washes and cleans for the residue on platform board 150 clears away more easily, simultaneously because first shower nozzle 145 all is provided with all around the brush 133, can prevent that liquid from splashing, liquid and residue after the washing pass through the lapse of brush 133, follow platform board 150 around fall into the collecting pipe 182 the blow-off pipe 183 after discharge, convenient, after swiftly accomplishing, with the slip casing 122, connecting rod 131 with the fixed plate 132 with open in the platform board 150 air-dry through second branch pipe 231, the air-drying operation shower nozzle 210, the hair-dryer 120, the hair dryer discharge pipe 181, the air-drying is carried out to the hair dryer 210, the hair dryer operation branch pipe 210, the hair dryer is carried out simultaneously, the hair dryer is carried out.
It should be noted that the specific model specifications of the motor 121, the half gear 124, the rack plate 125, the brush 133 and the blower 210 need to be determined according to the actual specification of the device, and the specific model selection calculation method adopts the prior art, so detailed description is omitted.
The power supply of the motor 121 and the blower 210 and the principle thereof will be apparent to those skilled in the art and will not be described in detail herein.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and shall be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims (10)

1. A3D printer inside dust cleaning device is characterized by comprising
A cleaning structure (10), wherein the cleaning structure (10) comprises a shell (110), a reciprocating sliding assembly (120), a cleaning assembly (130), a water spraying assembly (140) and a platform plate (150), the reciprocating sliding assembly (120) is arranged in the shell (110), the cleaning assembly (130) is connected with the reciprocating sliding assembly (120), the water spraying assembly (140) is connected with the reciprocating sliding assembly (120), and the platform plate (150) is arranged in the shell (110);
air-dry structure (20), air-dry structure (20) include hair-dryer (210), branch pipe (220) and air-out subassembly (230), branch pipe (220) with casing (110) intercommunication, hair-dryer (210) install in casing (110) one side, branch pipe (220) both ends respectively with hair-dryer (210) with air-out subassembly (230) butt joint intercommunication.
2. The inside dust cleaning device of 3D printer of claim 1, characterized in that, reciprocal slide subassembly (120) includes motor (121), slip casing (122), pivot (123), semi-gear (124), rack plate (125), motor (121) install in casing (110) one side, slip casing (122) with casing (110) sliding connection, pivot (123) with motor (121) are connected, pivot (123) with semi-gear (124) inner circle interference fit, slip casing (122) inner wall both sides correspond and are provided with rack plate (125), semi-gear (124) correspond with both sides rack plate (125) intermittent type nature meshing.
3. The inside dust cleaning device of the 3D printer according to claim 2, wherein a bearing is embedded in one side of the housing (110), and the rotating shaft (123) is in interference fit with an inner ring of the bearing.
4. The 3D printer internal dust cleaning device according to claim 2, characterized in that a sliding plate (160) is arranged in the housing (110), a sliding block (170) is arranged on one side of the sliding housing (122), and the sliding block (170) is connected with the sliding plate (160) in a sliding manner.
5. The internal dust cleaning device for the 3D printer according to claim 2, wherein the sweeping component (130) comprises a connecting rod (131), a fixing plate (132) and a brush (133), the connecting rod (131) is connected with the sliding housing (122), the fixing plate (132) is connected with the connecting rod (131), and the brush (133) is arranged on one side of the fixing plate (132).
6. The inside dust cleaning device of the 3D printer according to claim 2, wherein the water spray assembly (140) comprises a water inlet pipe (141), a hose (142), a connecting pipe (143), a hard pipe (144) and a first spray head (145), the water inlet pipe (141) is communicated with the housing (110), two ends of the hose (142) are respectively communicated with the water inlet pipe (141) and the connecting pipe (143) in a butt joint mode, the connecting pipe (143) is arranged on one side of the sliding housing (122), the connecting pipe (143) is communicated with the hard pipe (144), and a plurality of first spray heads (145) are communicated with one side of the hard pipe (144).
7. The inside dust cleaning device for the 3D printer according to claim 1, wherein the air outlet assembly (230) comprises an air outlet pipe (231) and second nozzles (232), the air outlet pipe (231) is in butt joint communication with the branch pipes (220), and one side of the air outlet pipe (231) is communicated with a plurality of second nozzles (232).
8. The inside dust cleaning device for the 3D printer according to claim 1, wherein a drainage assembly (180) is arranged in the casing (110), the drainage assembly (180) comprises a collection pipe (181), a support pipe (182) and a drain pipe (183), the collection pipe (181) is communicated with the support pipe (182), the support pipe (182) is arranged in the casing (110), the drain pipe (183) is communicated with the support pipe (182), and the drain pipe (183) is communicated with the casing (110).
9. The 3D printer interior dust cleaning apparatus of claim 8, wherein the collection pipe (181) is of funnel-type design.
10. The inside dust cleaning device of 3D printer according to claim 2, characterized in that the motor (121) and the blower (210) are installed on one side of the housing (110) through bolts.
CN202222019910.7U 2022-08-02 2022-08-02 Inside dust cleaning device of 3D printer Active CN218227897U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222019910.7U CN218227897U (en) 2022-08-02 2022-08-02 Inside dust cleaning device of 3D printer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222019910.7U CN218227897U (en) 2022-08-02 2022-08-02 Inside dust cleaning device of 3D printer

Publications (1)

Publication Number Publication Date
CN218227897U true CN218227897U (en) 2023-01-06

Family

ID=84680648

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222019910.7U Active CN218227897U (en) 2022-08-02 2022-08-02 Inside dust cleaning device of 3D printer

Country Status (1)

Country Link
CN (1) CN218227897U (en)

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Effective date of registration: 20230802

Address after: 212000 building D35, No.99, dingmaojing 15th Road, Zhenjiang New District, Jiangsu Province

Patentee after: Jiangsu Brozan Intelligent Technology Co.,Ltd.

Address before: No. 8, Huaxin Road, Science Park, Beichen Economic and Technological Development Zone, Beichen District, Tianjin 300412

Patentee before: Tianjin boruizhan Intelligent Technology Co.,Ltd.