CN214416756U - Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency - Google Patents

Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency Download PDF

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Publication number
CN214416756U
CN214416756U CN202023248077.0U CN202023248077U CN214416756U CN 214416756 U CN214416756 U CN 214416756U CN 202023248077 U CN202023248077 U CN 202023248077U CN 214416756 U CN214416756 U CN 214416756U
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spraying
conveying
dazzle
heating
cover plate
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CN202023248077.0U
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王庆芳
刘育维
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Zhejiang Chenheng Technology Co ltd
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Zhejiang Chenheng Technology Co ltd
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Abstract

The utility model provides a vehicle-mounted glass apron paint finishing that helps raising efficiency, its includes conveying mechanism, clean preheating machine constructs, anti-dazzle spraying machine constructs, heating mechanism to and prevent fingerprint spraying machine structure. The cleaning and preheating mechanism comprises a first shell, a first slide rail, an atmospheric plasma generating device, a plasma nozzle and a heating nozzle. The plasma sprayer and the heating sprayer respectively clean and preheat the glass cover plate, so that the preheated glass cover plate passes through the spraying of the anti-dazzle spraying mechanism, the anti-dazzle film can be quickly formed by the anti-dazzle solution, the phenomenon that the anti-dazzle solution on the glass cover plate can shift in the moving process of the glass cover plate is prevented from causing incomplete film forming, and the quality and the qualification rate of products are improved. The heating mechanism further solidifies the anti-glare film, prevents that anti-glare solution from remaining on the glass apron and preventing the fingerprint solution from causing the influence to the spraying to improve product quality, improve the temperature of glass apron simultaneously, be convenient for prevent fingerprint solution filming.

Description

Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency
Technical Field
The utility model relates to an on-vehicle glass apron processing technology field, in particular to help raising efficiency on-vehicle glass apron paint finishing.
Background
Along with the intelligent development of automobiles, most automobiles have been applied to vehicle-mounted touch screens, and along with the more and more extensive application of vehicle-mounted touch screens, people also have higher and higher requirements on the vehicle-mounted touch screens, and in order to guarantee the use experience of users, AG coating film and AF coating film can be carried out on the surface of a vehicle-mounted glass cover plate. The AG coating film is an anti-glare coating film, the surface of a glass cover plate is specially treated to achieve the effect of multi-angle diffuse reflection, so that the visual angle of a picture is improved, the interference of ambient light is reduced, the reflection of light on a screen is reduced, and the coating film can be formed by adopting a spraying and baking method generally. The AF coating is a fingerprint-resistant coating, and is similar to the AG coating principle in that a layer of chemical material is coated on the outer surface of the glass cover plate, so that the surface tension of the glass is reduced to the minimum, the contact area of dust and the surface of the glass is reduced by 90%, and the glass cover plate has strong hydrophobic, oil stain resistant and fingerprint resistant capabilities, and thus the glass cover plate can keep bright and clean for a long time.
In the prior art, the AG coating film and the AF coating film of the glass cover plate need to be sprayed by two spraying devices respectively, when one coating film is finished, the glass cover plate needs to be conveyed to the other spraying device manually, so that the production efficiency is low, the spraying precision is not high due to separate spraying, and the yield of products is low.
SUMMERY OF THE UTILITY MODEL
In view of the above, the utility model provides a help to improve and imitateRate of changeThe vehicle-mounted glass cover plate spraying system aims at solving the technical problem.
The utility model provides a vehicle-mounted glass apron paint finishing that helps raising efficiency, its includes a conveying mechanism, conveying mechanism is last to be equipped with in proper order clean preheating mechanism, anti-dazzle spraying mechanism, heating mechanism and prevent fingerprint spraying mechanism. The conveying mechanism penetrates through the cleaning and preheating mechanism, the anti-dazzle spraying mechanism, the heating mechanism and the anti-fingerprint spraying mechanism. The cleaning and preheating mechanism cleans and preheats the glass cover plate passing through the cleaning and preheating mechanism. The anti-dazzle spraying mechanism comprises a second shell arranged on the conveying mechanism, a second sliding rail arranged inside the second shell, a first support with one end arranged on the second sliding rail, and two first spray heads respectively arranged on two sides of the other end of the first support. The second sliding rail is arranged at the top end inside the second shell, the sliding direction of the second sliding rail is perpendicular to the conveying direction of the conveying mechanism and is parallel to the plane where the conveying mechanism is located, and the spraying directions of the two first spray heads face the conveying mechanism and are parallel to the two first spray heads. The anti-fingerprint spraying mechanism has the same structure as the anti-dazzle spraying mechanism.
Furthermore, the conveying mechanism comprises a shell, two transmission shafts and a conveying belt, wherein the two transmission shafts are arranged at two ends of the shell respectively, the conveying belt is arranged on the two transmission shafts, and the rotation directions of the two transmission shafts are the same.
Further, the cleaning and preheating mechanism comprises a first housing arranged on the conveying mechanism, a first slide rail arranged on the inner side wall of the first housing, an atmosphere plasma generating device arranged on the first slide rail in a sliding manner, a plasma spray head arranged on the atmosphere plasma generating device, and a heating spray head arranged on the atmosphere plasma generating device, wherein the atmosphere plasma generating device is used for activating gas to form plasma.
Further, the sliding direction of the first slide rail is perpendicular to the conveying direction of the conveying mechanism and parallel to the plane of the conveying mechanism.
Further, the plasma sprayer and the heating sprayer face to the plane of the conveying mechanism.
Furthermore, the anti-dazzle spraying mechanism further comprises two first conveying pipes which are arranged on the two first spray heads respectively, one end of each first conveying pipe is connected with the corresponding first spray head, and the other end of each first conveying pipe penetrates through the corresponding second shell.
Further, the heating mechanism includes a third housing disposed on the conveying mechanism, and a heating plate disposed at a top end inside the third housing.
Compared with the prior art, the utility model provides a pair of help raising efficiency on-vehicle glass apron paint finishing passes through anti-dazzle spraying mechanism with prevent fingerprint spraying mechanism, make glass apron can carry out anti-dazzle membrane in proper order and prevent the spraying of fingerprint membrane, improve production efficiency, reduce the human cost. The cleaning and preheating mechanism respectively cleans and preheats the glass cover plate through the plasma sprayer and the heating sprayer, so that most anti-dazzle solution can quickly form an anti-dazzle film after the preheated glass cover plate passes through the spraying of the anti-dazzle spraying mechanism, and therefore the phenomenon that the anti-dazzle solution on the glass cover plate can deviate to cause incomplete film forming in the process of the heating mechanism and the glass cover plate is prevented from moving, and the quality and the qualification rate of products are improved. In addition, preheating the glass cover plate can reduce the heating time of the heating mechanism and improve the production efficiency. Heating mechanism is to the process heating mechanism's glass apron heats and toasts, makes the whole anti-dazzle membrane that form of anti-dazzle solution on the glass apron to further solidification anti-dazzle membrane prevents that anti-dazzle solution from remaining and prevents on the glass apron that the fingerprint solution causes the influence to the spraying, thereby improves product quality, improves the temperature of glass apron simultaneously, is convenient for prevent that fingerprint solution from filming.
Drawings
Fig. 1 is the utility model provides a structural schematic diagram of a vehicle-mounted glass cover plate spraying system which helps to improve efficiency.
Detailed Description
Specific examples of the present invention will be described in further detail below. It should be understood that the description herein of embodiments of the invention is not intended to limit the scope of the invention.
As shown in fig. 1, it is a structural schematic diagram of a vehicle-mounted glass cover plate spraying system contributing to efficiency improvement provided by the present invention. The vehicle-mounted glass cover plate spraying system contributing to efficiency improvement comprises a conveying mechanism 10, wherein a cleaning preheating mechanism 20, an anti-dazzle spraying mechanism 30, a heating mechanism 40 and an anti-fingerprint spraying mechanism 50 are sequentially arranged on the conveying mechanism 10. It is contemplated that the vehicle glazing cover spraying system that facilitates improved efficiency may include other functional modules, such as electrical connections, control modules, cleaning modules, and medicament cartridges, etc., as is known to those skilled in the art and will not be described further herein.
The conveying mechanism 10 includes a housing 11, two transmission shafts 12 respectively disposed at two ends of the housing 11, and a conveying belt 13 disposed on the two transmission shafts 12. The conveying mechanism 10 passes through the cleaning preheating mechanism 20, the anti-glare spraying mechanism 30, the heating mechanism 40, and the anti-fingerprint spraying mechanism 50. And brackets are arranged at two ends of the shell 11 and used for supporting the shell 11. The housing 11 is used to carry other components, i.e. the transmission shaft 12 and the conveyor belt 13, but is prior art and will not be described in detail herein. The brackets 12 are provided at four corners of the housing 11 to support the housing 11. The two transmission shafts 12 are disposed at two ends of the housing 11, the two transmission shafts 12 are connected to an external rotating motor (not shown), and the two transmission shafts 12 rotate in the same direction, so as to drive the conveying belt 13 to rotate. The conveying belt 13 is used for placing a glass cover plate to be processed, and the conveying belt 13 rotates to enable the glass cover plate arranged on the conveying belt 13 to sequentially pass through the cleaning preheating mechanism 20, the anti-glare spraying mechanism 30, the heating mechanism 40 and the anti-fingerprint spraying mechanism 50 to realize spraying.
The cleaning and preheating mechanism 20 includes a first housing 21 disposed on the conveying mechanism 10, a first slide rail 22 disposed on the inner side wall of the first housing 21, an atmosphere plasma generating device 23 disposed on the first slide rail 22, a plasma nozzle 24 disposed on the atmosphere plasma generating device 23, and a heating nozzle 25 disposed on the atmosphere plasma generating device 23.
The first housing 21 is used to install the above-mentioned functional components, i.e. the first slide rail 22, the atmospheric plasma generating device 23, the plasma nozzle 24, and the heating nozzle 25. In order to enable the conveying mechanism 10 to penetrate through the first casing 21, two openings for penetrating the conveying mechanism 10 are arranged on two sides of the first casing 21. The first slide rail 22 is used for arranging and enabling the atmosphere plasma generating device 23 to slide, and the sliding direction of the first slide rail 22 is perpendicular to the conveying direction of the conveying mechanism 10 and parallel to the plane of the conveying mechanism 10, so that the plasma spray head 24 and the heating spray head 25 can slide and can be uniformly sprayed on the glass cover plate in the sliding process. One side of the atmospheric plasma generator 23 is slidably disposed on the first slide rail 22, and the other side is spaced from the heating nozzle 25. The top end of the atmospheric plasma generating device 23 is connected with the conveying gas pipe, the bottom end is provided with the plasma spray head 24, gas is introduced into the atmospheric plasma generating device 23 through the conveying pipeline, the atmospheric plasma generating device 23 activates the gas to form plasma, and the plasma is sprayed out through the plasma spray head 24. The plasma spray head 24 faces the plane of the conveying mechanism 10, so as to spray plasma onto the glass cover plate for cleaning. The heating shower head 25 is spaced apart from the atmospheric plasma generating device 23 and moves together with the plasma shower head 24, thereby preventing the heating shower head 25 and the plasma shower head 24 from being affected by each other. The heating spray head 25 faces the plane where the conveying mechanism 10 is located, the top end of the heating spray head 25 is connected with a conveying air pipe, air is guided into the heating spray head 25 through a conveying pipeline and is sprayed out after being heated by the heating spray head 25, and therefore the purpose of preheating the glass cover plate is achieved, the glass cover plate can be formed into a film more quickly after being sprayed by the anti-dazzle spraying mechanism 30, the heating time of the heating mechanism 40 is shortened, the production efficiency is improved, and the product quality is improved.
The anti-glare spraying mechanism 30 includes a second housing 31 disposed on the conveying mechanism 10, a second slide rail 32 disposed inside the second housing 31, a first bracket 33 having one end disposed on the second slide rail 32, two first nozzles 34 disposed on two sides of the other end of the first bracket 33, and two first delivery pipes 35 disposed on the first nozzles 34. The anti-glare spraying mechanism 30 is located between the cleaning and preheating mechanism 20 and the heating mechanism 40.
The second housing 31 is used for arranging the above-mentioned functional components, i.e., the second slide rail 32, the first bracket 33, the first spray head 34, and the first delivery pipe 35. In order to enable the conveying mechanism 10 to penetrate through the second housing 31, two openings for penetrating the conveying mechanism 10 are arranged on two sides of the second housing 31. The second slide rail 32 is disposed at the top end inside the second housing 31, the second slide rail 32 is used for the first bracket 33 and driving the first bracket 33 to slide, so as to drive the two first nozzles 34 disposed on the first bracket 33 to slide, and the sliding direction of the second slide rail 32 is perpendicular to the conveying direction of the conveying mechanism 10 and parallel to the plane where the conveying mechanism 10 is located, so that the first nozzles 34 can slide and can be uniformly sprayed on the glass cover plate in the sliding process. One end of the first support 33 is disposed on the second slide rail 32 and slides along with the second slide rail 32, and two first nozzles 34 are disposed on two sides of the other end of the first support 33. The spraying direction of the two first spray heads 34 faces the conveying mechanism 10, the two first spray heads 34 are arranged in parallel, one end of the first conveying pipe 35 is connected with the first spray heads 34, and the other end of the first conveying pipe penetrates through the second shell 31 and is connected with an anti-glare medicament barrel (not shown), so that the first spray heads 34 can spray anti-glare solution. Because the glass cover plate is preheated by the cleaning and preheating mechanism 20, most of the anti-dazzle solution sprayed on the glass cover plate can quickly form the anti-dazzle film, so that the phenomenon that the anti-dazzle solution on the glass cover plate can deviate in the process of moving the glass cover plate to the heating mechanism 40 is prevented, the film is not completely formed, and the product quality is influenced.
The heating mechanism 40 includes a third housing 41 provided on the conveying mechanism 10, and a heating plate 42 provided in the third housing 41. The heating mechanism 40 is located between the anti-glare coating mechanism 30 and the anti-fingerprint coating mechanism 50.
The third housing 41 is used for disposing the heating plate 42. In order to enable the conveying mechanism 10 to penetrate through the third casing 41, two openings for penetrating the conveying mechanism 10 are arranged on two sides of the third casing 41. The hot plate 42 sets up the inside top of third casing 41, hot plate 42 is located conveying mechanism 10 with between the third casing 41, hot plate 42 is used for the heating to toast the process the glass apron of heating mechanism 40 preheats the glass apron to make the anti-dazzle solution on the glass apron all form anti-dazzle membrane, prevent that anti-dazzle solution from remaining on the glass apron and cause the influence to the spraying anti-fingerprint solution, improve the temperature of glass apron simultaneously, be convenient for prevent that fingerprint solution from filming.
The fingerprint-proof spraying mechanism 50 and the anti-glare spraying mechanism 30 have the same structure and composition, but have different positions and functions, and the structure thereof is not described herein again. The anti-fingerprint spraying mechanism 50 is located in the output direction of the heating mechanism 40, and the anti-fingerprint spraying mechanism 50 is connected with an anti-fingerprint medicine barrel (not shown). When the glass cover plate enters the anti-fingerprint spraying mechanism 50, the anti-fingerprint spraying mechanism 50 sprays the anti-fingerprint solution on the glass cover plate, and the temperature is very high when the glass cover plate enters the anti-fingerprint spraying mechanism 50 due to the fact that the glass cover plate is heated by the heating mechanism 40, so that the anti-fingerprint solution sprayed on the glass cover plate can form an anti-fingerprint film quickly.
Compared with the prior art, the utility model provides a pair of help raising the efficiency on-vehicle glass apron paint finishing passes through anti-dazzle spraying mechanism 30 with prevent fingerprint spraying mechanism 50, make glass apron can carry out anti-dazzle membrane in proper order and prevent the spraying of fingerprint membrane, improve production efficiency, reduce the human cost. The cleaning and preheating mechanism 20 respectively cleans and preheats the glass cover plate through the plasma sprayer 24 and the heating sprayer 25, so that most of the anti-glare solution can quickly form an anti-glare film after the preheated glass cover plate passes through the spraying of the anti-glare spraying mechanism 30, the phenomenon that the anti-glare solution on the glass cover plate can shift to cause incomplete film forming in the process that the glass cover plate moves to the heating mechanism 40 is prevented, and the quality and the qualification rate of products are improved. In addition, preheating the glass cover plate can reduce the heating time of the heating mechanism 40 and improve the production efficiency. Heating mechanism 40 is to the process heating mechanism 40's glass apron is heated and is toasted, makes the whole anti-dazzle membrane that form of anti-dazzle solution on the glass apron to further solidification anti-dazzle membrane prevents that anti-dazzle solution from remaining on the glass apron and prevents that fingerprint solution from causing the influence to the spraying, thereby improves product quality, improves glass apron's temperature simultaneously, is convenient for prevent that fingerprint solution from filming.
The above description is only for the preferred embodiment of the present invention and should not be construed as limiting the scope of the present invention, and any modification, equivalent replacement or improvement within the spirit of the present invention is encompassed by the claims of the present invention.

Claims (7)

1. The utility model provides a vehicle-mounted glass apron paint finishing that helps raising efficiency which characterized in that: the vehicle-mounted glass cover plate spraying system contributing to improving the efficiency comprises a conveying mechanism, wherein a cleaning and preheating mechanism, an anti-dazzle spraying mechanism, a heating mechanism and an anti-fingerprint spraying mechanism are sequentially arranged on the conveying mechanism, the conveying mechanism penetrates through the cleaning and preheating mechanism, the anti-dazzle spraying mechanism, the heating mechanism and the anti-fingerprint spraying mechanism, the cleaning and preheating mechanism cleans and preheats a glass cover plate passing through the cleaning and preheating mechanism, the anti-dazzle spraying mechanism comprises a second shell arranged on the conveying mechanism, a second slide rail arranged in the second shell, a first support with one end arranged on the second slide rail in a sliding manner, and two first spray nozzles respectively arranged on two sides of the other end of the first support, and the second slide rail is arranged at the top end in the second shell, the sliding direction of the second sliding rail is perpendicular to the conveying direction of the conveying mechanism and is parallel to the plane where the conveying mechanism is located, the spraying directions of the two first spray heads face the conveying mechanism, the two first spray heads are arranged in parallel, and the anti-fingerprint spraying mechanism has the same structure as the anti-dazzle spraying mechanism.
2. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 1, wherein: the conveying mechanism comprises a shell, two transmission shafts and a conveying belt, wherein the two transmission shafts are arranged at two ends of the shell respectively, the conveying belt is arranged on the two transmission shafts, and the rotating directions of the two transmission shafts are the same.
3. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 1, wherein: the cleaning and preheating mechanism comprises a first shell arranged on the conveying mechanism, a first sliding rail arranged on the inner side wall of the first shell, an atmosphere plasma generating device arranged on the first sliding rail in a sliding mode, a plasma spray head arranged on the atmosphere plasma generating device, and a heating spray head arranged on the atmosphere plasma generating device, wherein the atmosphere plasma generating device is used for activating gas to form plasma.
4. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 3, wherein: the sliding direction of the first sliding rail is perpendicular to the conveying direction of the conveying mechanism and parallel to the plane of the conveying mechanism.
5. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 3, wherein: the plasma sprayer and the heating sprayer face to the plane of the conveying mechanism.
6. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 1, wherein: the anti-dazzle spraying mechanism further comprises two first conveying pipes which are arranged on the two first spray heads respectively, one end of each first conveying pipe is connected with the corresponding first spray head, and the other end of each first conveying pipe penetrates through the corresponding second shell.
7. The vehicle glazing cover spray system contributing to improved efficiency as claimed in claim 1, wherein: the heating mechanism comprises a third shell arranged on the conveying mechanism and a heating plate arranged at the top end in the third shell.
CN202023248077.0U 2020-12-29 2020-12-29 Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency Active CN214416756U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023248077.0U CN214416756U (en) 2020-12-29 2020-12-29 Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023248077.0U CN214416756U (en) 2020-12-29 2020-12-29 Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency

Publications (1)

Publication Number Publication Date
CN214416756U true CN214416756U (en) 2021-10-19

Family

ID=78053922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023248077.0U Active CN214416756U (en) 2020-12-29 2020-12-29 Vehicle-mounted glass cover plate spraying system beneficial to improving efficiency

Country Status (1)

Country Link
CN (1) CN214416756U (en)

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