CN219913887U - Drying device for cleaning machine - Google Patents

Drying device for cleaning machine Download PDF

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Publication number
CN219913887U
CN219913887U CN202320362010.4U CN202320362010U CN219913887U CN 219913887 U CN219913887 U CN 219913887U CN 202320362010 U CN202320362010 U CN 202320362010U CN 219913887 U CN219913887 U CN 219913887U
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China
Prior art keywords
driving arm
driving
feeding
discharging
drying
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CN202320362010.4U
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Chinese (zh)
Inventor
全晓霞
贾泓超
许程超
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Zhejiang Aike Semiconductor Equipment Co ltd
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Zhejiang Aike Semiconductor Equipment Co ltd
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Abstract

The utility model discloses a drying device for a cleaning machine, which comprises a feeding mechanical module, a drying module and a discharging mechanical module, wherein the feeding mechanical module is close to a feeding unit of the drying module, the discharging mechanical module is close to a discharging unit of the drying module, and the feeding unit comprises a feeding mounting seat, a feeding cylinder and a feeding groove part. The utility model discloses a drying device for a cleaning machine, wherein a feeding area is provided with a plurality of workpieces which are required to be dried after being cleaned, the workpieces are clamped by a feeding mechanical module and then are placed into a feeding groove, a cylinder is started to push the workpieces into one end of a conveyor belt so as to be dried in a drying unit, the other end of the conveyor belt conveys the workpieces to a discharging roller after the drying is finished, and finally the workpieces fall into a discharging area below the discharging groove, so that the workpieces clamped by the discharging mechanical module are orderly discharged.

Description

Drying device for cleaning machine
Technical Field
The utility model belongs to the technical field of workpiece drying, and particularly relates to a drying device for a cleaning machine.
Background
The cleaning machine is mechanical equipment which can be used for replacing manual work to clean stains and smudges such as oil, wax, dust, oxide layer and the like on the surface of a workpiece, and the cleaning equipment is seen in the market as follows: ultrasonic cleaning, high-pressure spray cleaning, laser cleaning, steam cleaning, dry ice cleaning, composite cleaning equipment and the like.
After cleaning, the workpiece needs to be quickly dried so as to quickly carry out the next process step, the existing drying equipment mostly adopts a manual mode in the process of drying and conveying the workpiece, the workpiece to be dried is firstly placed into the inlet end of the drying unit and then is taken out from the outlet end of the drying unit after drying is finished, and the mode is time-consuming and labor-consuming, low in efficiency and has a certain potential safety hazard.
Accordingly, the above problems are further improved.
Disclosure of Invention
The utility model mainly aims to provide a drying device for a cleaning machine, wherein a feeding area is provided with a plurality of workpieces which need to be dried after being cleaned, the workpieces are clamped by a feeding mechanical module and then are placed into a feeding groove part, a cylinder is started to push the workpieces into one end of a conveyor belt so as to be dried in a drying unit, the other end of the conveyor belt conveys the workpieces to a discharging roller after the drying is finished, then the workpieces are conveyed to a discharging groove part and finally fall into a discharging area below the discharging groove part, and finally the workpieces clamped by the discharging mechanical module are orderly discharged so as to be convenient for the next step, and the drying device has the advantages of high efficiency, automation, high safety and the like.
The utility model further aims to provide a drying device for the cleaning machine, which is capable of grabbing and placing workpieces on a feeding unit through the matching movement of the mechanical arms, grabbing and taking the workpieces of the Liao unit out and placing the workpieces on next step equipment through the mechanical arms after the drying of the drying unit is completed, and has the advantages of high efficiency, convenience in use, stable structure and the like.
In order to achieve the above object, the present utility model provides a drying device for a cleaning machine, for drying a cleaned workpiece, comprising a feeding mechanical module, a drying module and a discharging mechanical module, wherein the feeding mechanical module is close to a feeding unit of the drying module and the discharging mechanical module is close to a discharging unit of the drying module, wherein:
the feeding unit comprises a feeding mounting seat, a feeding cylinder and a feeding groove part, wherein the feeding cylinder and the feeding groove part are fixedly mounted on the feeding mounting seat and are positioned at the driving end of the feeding cylinder, and one side of the feeding groove part, which is far away from the feeding cylinder, is positioned at the inlet end of the drying unit;
the discharging unit comprises a discharging installation seat, a discharging roller and a discharging groove part, wherein the discharging roller and the discharging groove part are both installed on the discharging installation seat, the discharging groove part is located on the rolling direction side of the discharging roller (the workpiece dried by the drying unit slides to the discharging groove part through the discharging roller), and one side of the discharging groove part, which is far away from the discharging roller, is located at the outlet end of the drying unit.
As a further preferable technical scheme of the above technical scheme, the drying unit includes a box, a heater and a conveyor belt, the heater and the conveyor belt are both built in the box, one end of the conveyor belt is close to the feed chute portion and the other end of the conveyor belt is close to the discharge roller (a workpiece on the conveyor belt is dried by the heater and then transported out).
As a further preferable technical scheme of the above technical scheme, one side of the feeding unit is provided with a feeding area and one side of the discharging unit is provided with a discharging area (the feeding area is provided with a plurality of workpieces which need to be dried after being cleaned, the workpieces are clamped by the feeding mechanical module and then put into the feeding groove part, the cylinder is started, the workpieces are pushed into one end of the conveying belt so as to be dried by the drying unit, the other end of the conveying belt conveys the workpieces to the discharging roller after the drying is finished, the workpieces are conveyed to the discharging groove part and finally fall into the discharging area below the discharging groove part, and finally the workpieces clamped by the discharging mechanical module are orderly discharged so as to facilitate the next step, and the conveying belt has the advantages of high efficiency, automation, high safety and the like.
As a further preferable technical scheme of the above technical scheme, the feeding mechanical module and the discharging module each comprise a mounting seat, a base, a first driving arm, a second driving arm, a third driving arm and a fourth driving arm, wherein:
the base is fixedly arranged on the mounting seat through a fixing piece and is provided with a control panel;
the first driving arm is arranged on one side of the base far away from the mounting seat and is rotationally connected with the base, the second driving arm is arranged on one side of the first driving arm far away from the base and is rotationally connected with the first driving arm, and a first rotation axis between the first driving arm and the base is perpendicular to a second rotation axis between the second driving arm and the first driving arm;
the third driving arm is arranged on one side of the second driving arm far away from the first driving arm and is in rotary connection with the second driving arm, the fourth driving arm is arranged on one side of the third driving arm far away from the second driving arm and is in rotary connection with the third driving arm, and a third rotation axis between the third driving arm and the second driving arm and a fourth rotation axis between the fourth driving arm and the third driving arm are all parallel to the second rotation axis;
the fourth driving arm comprises a mounting block, a first clamping end and a second clamping end, and the first clamping end and the second clamping end are mounted on a sliding groove portion of the mounting block.
As a further preferable technical scheme of the technical scheme, the base is provided with a first driving motor, and one end of the first driving arm, which is close to the base, is connected with the driving end of the first driving motor;
the first driving arm is provided with a second driving motor, and one end, close to the first driving arm, of the second driving arm is connected with the driving end of the second driving motor;
the second driving arm is provided with a third driving motor, and one end, close to the second driving arm, of the third driving arm is connected with the driving end of the third driving motor;
the third driving arm is provided with a fourth driving motor, and one end, close to the third driving arm, of the fourth driving arm is connected with the driving end of the fourth driving motor.
As a further preferable technical scheme of the above technical scheme, the fourth driving arm is further provided with a fifth driving motor, and driving ends of the fifth driving motor are respectively connected with the first clamping end and the second clamping end.
As a further preferable technical scheme of the above technical scheme, the control panel is electrically connected with the first driving motor, the second driving motor, the third driving motor, the fourth driving motor and the fifth driving motor, respectively.
As a further preferable technical scheme of the above technical scheme, a bottom end of the mounting seat is provided with a stabilizing pad.
Drawings
Fig. 1 is a schematic view of a drying apparatus for a cleaning machine according to the present utility model.
Fig. 2 is a schematic structural view of a drying device for a cleaning machine according to the present utility model.
Fig. 3 is a schematic structural view of a feeding mechanical module and a discharging mechanical module of a drying device for a cleaning machine according to the present utility model.
Fig. 4 is a schematic structural view of a feeding mechanical module and a discharging mechanical module of a drying device for a cleaning machine according to the present utility model.
Fig. 5 is a schematic view showing a structure of a feeding unit of a drying apparatus for a cleaning machine according to the present utility model.
Fig. 6 is a schematic view showing a structure of a discharging unit of a drying apparatus for a cleaning machine according to the present utility model.
The reference numerals include: 1. a feed mechanical module; 2. a discharging mechanical module; 3. a drying module; 100. a mounting base; 110. a stabilizing pad; 200. a base; 210. a fixing member; 220. a control panel; 230. a first driving motor; 300. a first driving arm; 310. a second driving motor; 400. a second driving arm; 410. a third driving motor; 500. a third drive arm; 510. a fourth driving motor; 600. a fourth driving arm; 610. a mounting block; 620. a first clip end; 630. a second clip end; 710. a feeding unit; 711. a feeding installation seat; 712. a feed cylinder; 713. a feed chute portion; 720. a discharging unit; 721. a discharging installation seat; 722. a discharging roller; 723. a discharge chute portion; 730. a drying unit; 731. a box body.
Detailed Description
The following description is presented to enable one of ordinary skill in the art to make and use the utility model. The preferred embodiments in the following description are by way of example only and other obvious variations will occur to those skilled in the art. The basic principles of the utility model defined in the following description may be applied to other embodiments, variations, modifications, equivalents, and other technical solutions without departing from the spirit and scope of the utility model.
The utility model discloses a drying device for a cleaning machine, and the following describes the specific embodiment of the utility model further by combining with the preferred embodiment.
In the embodiments of the present utility model, it is noted by those skilled in the art that the work pieces and the like to which the present utility model relates can be regarded as the prior art.
Preferred embodiments.
As shown in fig. 1 to 6, the present utility model discloses a drying device for a cleaning machine, which is used for drying a cleaned workpiece, and comprises a feeding mechanical module 1, a drying module 3 and a discharging mechanical module 2, wherein the feeding mechanical module 1 is close to a feeding unit 710 of the drying module 3, and the discharging mechanical module 2 is close to a discharging unit 720 of the drying module 3, wherein:
the feeding unit 710 comprises a feeding mounting seat 711, a feeding cylinder 712 and a feeding groove part 713, wherein the feeding cylinder 712 and the feeding groove part 713 are fixedly mounted on the feeding mounting seat 711, the feeding groove part 713 is positioned at the driving end of the feeding cylinder 712, and one side of the feeding groove part 713 away from the feeding cylinder 712 is positioned at the inlet end of the drying unit 730;
the discharging unit 720 comprises a discharging mounting seat 721, a discharging roller 722 and a discharging groove part 723, wherein the discharging roller 722 and the discharging groove part 723 are both mounted on the discharging mounting seat 721, the discharging groove part 723 is positioned on the rolling side of the discharging roller 722 (the workpiece dried by the drying unit slides to the discharging groove part through the discharging roller), and one side of the discharging roller 722 away from the discharging groove part 723 is positioned at the outlet end of the drying unit 730.
Specifically, the drying unit 730 includes a box 731, a heater, and a conveyor belt, where the heater and the conveyor belt are both built in the box 731, one end of the conveyor belt is close to the feed chute 713, and the other end of the conveyor belt is close to the discharge roller 722 (the workpiece on the conveyor belt is dried by the heater and then transported).
More specifically, a feeding area is disposed on one side of the feeding unit 710 and a discharging area is disposed on one side of the discharging unit 720 (the feeding area is provided with a plurality of workpieces which need to be dried after being cleaned, the workpieces are clamped by the feeding mechanical module and then put into the feeding groove, the cylinder is started to push the workpieces into one end of the conveyor belt so as to be dried by the drying unit, the other end of the conveyor belt conveys the workpieces to the discharging roller after the drying is completed, the workpieces are conveyed to the discharging groove and finally fall into the discharging area below the discharging groove, and finally the workpieces clamped by the discharging mechanical module are orderly discharged so as to be convenient for the next step, and the conveying device has the advantages of high efficiency, automation, high safety and the like.
Further, the feeding mechanical module 1 and the discharging mechanical module 2 each include a mounting base 100, a base 200, a first driving arm 300, a second driving arm 400, a third driving arm 500 and a fourth driving arm 600, wherein:
the base 200 is fixedly mounted on the mounting base 100 through a fixing member 210, and the base 200 is provided with a control panel 220;
the first driving arm 300 is mounted on a side of the base 200 away from the mounting base 100 and the first driving arm 300 is rotatably connected with the base 200 (so that the first driving arm can realize omnibearing rotation on a horizontal plane), the second driving arm 400 is mounted on a side of the first driving arm 300 away from the base 200 and the second driving arm 400 is rotatably connected with the first driving arm 300 (so that the second driving arm can realize rotation on a vertical plane), and a first rotation axis between the first driving arm 300 and the base 200 is perpendicular to a second rotation axis between the second driving arm 400 and the first driving arm 300;
the third driving arm 500 is mounted on a side of the second driving arm 400 away from the first driving arm 300 and the third driving arm 500 is rotatably connected with the second driving arm 400 (such that the third driving arm can rotate on a vertical plane), the fourth driving arm 600 is mounted on a side of the third driving arm 500 away from the second driving arm 400 and the fourth driving arm 600 is rotatably connected with the third driving arm 500 (such that the fourth driving arm can rotate on a vertical plane), and a third rotation axis between the third driving arm 500 and the second driving arm 400, and a fourth rotation axis between the fourth driving arm 600 and the third driving arm 500 are all parallel to the second rotation axis;
the fourth driving arm 600 includes a mounting block 610, a first clamping end 620 and a second clamping end 630, wherein the first clamping end 620 and the second clamping end 630 are mounted on a sliding slot portion of the mounting block 610 (clamping a workpiece through the first clamping end and the second clamping end).
Specifically, the base 200 is provided with a first driving motor 230, and one end of the first driving arm 300, which is close to the base 200, is connected with the driving end of the first driving motor 230 (the first driving motor is used for driving the first driving arm to move in a horizontal plane);
the first driving arm 300 is provided with a second driving motor 310, and one end of the second driving arm 400, which is close to the first driving arm 300, is connected with the driving end of the second driving motor 310 (the second driving motor is used for driving the second driving arm to move in a vertical plane);
the second driving arm 400 is provided with a third driving motor 410, and one end of the third driving arm 500, which is close to the second driving arm 400, is connected with the driving end of the third driving motor 410 (the third driving motor is used for driving the third driving arm to move in a vertical plane);
the third driving arm 500 is provided with a fourth driving motor 510, and one end of the fourth driving arm 600, which is close to the third driving arm 500, is connected to the driving end of the fourth driving motor 510 (the fourth driving motor is used for driving the fourth driving arm to move in a vertical plane).
More specifically, the fourth driving arm 600 is further provided with a fifth driving motor, and the driving end of the fifth driving motor is connected to the first clamping end and the second clamping end 630 (for controlling the distance between the first clamping end and the second clamping end, so as to clamp and release the workpiece).
Further, the control panel 220 is electrically connected to the first driving motor 230, the second driving motor 310, the third driving motor 410, the fourth driving motor 510, and the fifth driving motor, respectively (for controlling the driving degree of each motor).
Further, the bottom end of the mounting base 100 is provided with a stabilizing pad 110 (enhancing stability).
It should be noted that technical features such as workpieces related to the present application should be regarded as the prior art, and specific structures, working principles, control modes and spatial arrangement modes possibly related to the technical features should be selected conventionally in the art, and should not be regarded as the utility model points of the present application, and the present application is not further specifically developed in detail.
Modifications of the embodiments described above, or equivalents of some of the features may be made by those skilled in the art, and any modifications, equivalents, improvements or etc. within the spirit and principles of the present utility model are intended to be included within the scope of the present utility model.

Claims (8)

1. The utility model provides a drying device for cleaning machine for dry the work piece after wasing, its characterized in that includes feeding mechanical module, drying module and ejection of compact mechanical module, feeding mechanical module is close to drying module's feeding unit and ejection of compact mechanical module is close to drying module's ejection of compact unit, wherein:
the feeding unit comprises a feeding mounting seat, a feeding cylinder and a feeding groove part, wherein the feeding cylinder and the feeding groove part are fixedly mounted on the feeding mounting seat and are positioned at the driving end of the feeding cylinder, and one side of the feeding groove part, which is far away from the feeding cylinder, is positioned at the inlet end of the drying unit;
the discharging unit comprises a discharging installation seat, a discharging roller and a discharging groove part, wherein the discharging roller and the discharging groove part are both installed on the discharging installation seat, the discharging groove part is positioned on the rolling direction side of the discharging roller, and one side of the discharging groove part, which is far away from the discharging roller, is positioned at the outlet end of the drying unit.
2. The drying device for a cleaning machine according to claim 1, wherein the drying unit comprises a case, a heater and a conveyor belt, both of which are built in the case, one end of the conveyor belt is close to the feed chute portion and the other end of the conveyor belt is close to the discharge roller.
3. A dryer for a washing machine according to claim 2, characterized in that one side of the feed unit is provided with a feed zone and one side of the discharge unit is provided with a discharge zone.
4. A dryer apparatus for a cleaning machine according to claim 3, wherein the feeding mechanical module and the discharging mechanical module each comprise a mounting base, a first driving arm, a second driving arm, a third driving arm, and a fourth driving arm, wherein:
the base is fixedly arranged on the mounting seat through a fixing piece and is provided with a control panel;
the first driving arm is arranged on one side of the base far away from the mounting seat and is rotationally connected with the base, the second driving arm is arranged on one side of the first driving arm far away from the base and is rotationally connected with the first driving arm, and a first rotation axis between the first driving arm and the base is perpendicular to a second rotation axis between the second driving arm and the first driving arm;
the third driving arm is arranged on one side of the second driving arm far away from the first driving arm and is in rotary connection with the second driving arm, the fourth driving arm is arranged on one side of the third driving arm far away from the second driving arm and is in rotary connection with the third driving arm, and a third rotation axis between the third driving arm and the second driving arm and a fourth rotation axis between the fourth driving arm and the third driving arm are all parallel to the second rotation axis;
the fourth driving arm comprises a mounting block, a first clamping end and a second clamping end, and the first clamping end and the second clamping end are mounted on a sliding groove portion of the mounting block.
5. The drying apparatus for a cleaning machine according to claim 4, wherein the base is provided with a first driving motor and one end of the first driving arm near the base is connected with a driving end of the first driving motor;
the first driving arm is provided with a second driving motor, and one end, close to the first driving arm, of the second driving arm is connected with the driving end of the second driving motor;
the second driving arm is provided with a third driving motor, and one end, close to the second driving arm, of the third driving arm is connected with the driving end of the third driving motor;
the third driving arm is provided with a fourth driving motor, and one end, close to the third driving arm, of the fourth driving arm is connected with the driving end of the fourth driving motor.
6. The drying apparatus for a cleaning machine according to claim 5, wherein the fourth driving arm is further provided with a fifth driving motor, and driving ends of the fifth driving motor are connected to the first clamping end and the second clamping end, respectively.
7. The drying apparatus for a cleaning machine according to claim 6, wherein the control panel is electrically connected to the first driving motor, the second driving motor, the third driving motor, the fourth driving motor, and the fifth driving motor, respectively.
8. The drying apparatus for a cleaning machine according to claim 7, wherein the bottom end of the mounting base is provided with a stabilizing pad.
CN202320362010.4U 2023-02-23 2023-02-23 Drying device for cleaning machine Active CN219913887U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320362010.4U CN219913887U (en) 2023-02-23 2023-02-23 Drying device for cleaning machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320362010.4U CN219913887U (en) 2023-02-23 2023-02-23 Drying device for cleaning machine

Publications (1)

Publication Number Publication Date
CN219913887U true CN219913887U (en) 2023-10-27

Family

ID=88433575

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320362010.4U Active CN219913887U (en) 2023-02-23 2023-02-23 Drying device for cleaning machine

Country Status (1)

Country Link
CN (1) CN219913887U (en)

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