Powder spraying box for laminated glass production
By introducing electric heating tubes, interception nets and adsorption layers into the powder spraying box used in laminated glass production, the problem of dust intrusion affecting the drying of primer powder is solved, and clean drying and efficient powder spraying of the glass surface are achieved.
Patent Information
- Application Number
- CN202422581782.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-10-25
AI Technical Summary
Existing powder spraying boxes for laminated glass production lack dust-proof heating components, resulting in the inability to dry the primer powder on the glass surface after the primer powder is sprayed while reducing the entry of external dust into the box.
Add electric heating tubes, interception nets, shielding layers and adsorption layers to the powder spraying box. Use the electric heating tubes to heat and dry the glass. At the same time, the interception nets and shielding layers intercept large and small dust particles, and the adsorption layer absorbs pollutants to ensure the cleanliness of the glass surface.
It reduces dust adhesion during the powder spraying process, improves the adhesion effect of primer powder on the glass surface, and ensures the cleanliness of the interior of the powder spray box.
Smart Images

Figure CN223417556U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass powder spraying, in particular to a powder spraying box for producing laminated glass. Background Art
[0002] Laminated glass is a commonly used modern shielding component, and its interior is often filled with air or part of liquid. During the production process of laminated glass, it is often necessary to spray primer powder on the surface of the dust-free glass to facilitate the subsequent adhesion of paint. In the production of laminated glass, in order to facilitate the powder spraying of the laminated glass surface, a powder spraying box for laminated glass production is required. However, the existing powder spraying box for laminated glass production lacks dust-proof heating components. After the primer powder is sprayed, it is impossible to dry the primer powder on the glass surface while reducing the entry of dust from the external environment into the box. Utility Model Content
[0003] The purpose of the utility model is to solve the problem of drying primer powder when the existing technology is unable to reduce the dust from entering the interior. An electric heating tube, a guide shell, an interception net, a shielding layer and an adsorption layer are added to heat and dry the glass while reducing the dust from adhering to the outer surface of the glass.
[0004] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0005] A powder spraying box for laminated glass production comprises a storage device and a fixed shell, the top of the fixed shell is fixedly connected to a powder spraying mechanism, the interior of the fixed shell is fixedly connected to a transmission mechanism, the interior of the fixed shell is fixedly connected to a bearing mechanism, and the bearing mechanism is located below the transmission mechanism, the storage device comprises a fixed shell, a box door is hinged on the front of the fixed shell, and the box door is provided with two, the front of the box door is fixedly connected to two handles, the outer surface of the box door is fixedly connected to an electromagnet, the interior of the fixed shell is fixedly connected to an electric heating pipe, the top of the fixed shell is fixedly connected to two groups of derivation shells, the interior of the derivation shell is fixedly connected to an interception net, the interior of the derivation shell is fixedly connected to a shielding layer, and the shielding layer is located below the interception net, the interior of the derivation shell is fixedly connected to an adsorption layer, and the adsorption layer is located below the shielding layer;
[0006] The powder spraying mechanism includes a powder sprayer, which is fixedly connected to the top of the fixed shell and is located on the inner side of the outlet shell. The back of the powder sprayer is fixedly connected to a delivery pipe, and the output end of the delivery pipe extends to the interior of the fixed shell. The output end of the delivery pipe is fixedly connected to an output nozzle.
[0007] Preferably, the transmission mechanism includes a first servo screw, the interior of the fixed shell is fixedly connected to the first servo screw, and the first servo screw is located in front of the electric heating tube, and the output end of the first servo screw is fixedly connected to the second servo screw.
[0008] Preferably, the output end of the second servo screw is fixedly connected to a transmission rod, the tail end of the transmission rod is fixedly connected to a transmission plate, and the transmission plate is connected to the output nozzle.
[0009] Preferably, a supporting shell is fixedly connected to the interior of the fixed shell, the supporting shell is located below the first servo screw, and four supporting shells are provided. An extension rod is embedded in the inner side of the supporting shell, and a tooth groove is provided on the outer surface of the extension rod.
[0010] Preferably, the outer surface of the support shell is fixedly connected to a shielding shell, the outer surface of the shielding shell is fixedly connected to a motor, and the output end of the motor extends to the interior of the shielding shell, the output end of the motor is fixedly connected to a transmission wheel, and the transmission wheel is engaged with the tooth groove surface.
[0011] Preferably, the tail ends of the four extension rods are fixedly connected to a supporting plate, the interior of the supporting plate is fixedly connected to a spring telescopic rod, and sixteen spring telescopic rods are provided, and the tail ends of the four spring telescopic rods are fixedly connected to a clamping piece.
[0012] Compared with the prior art, the present invention has the following advantages:
[0013] The utility model adds an electric heating tube, an intercepting net, a shielding layer and an adsorption layer. The electric heating tube conducts heat to the inside of the fixed shell through the electric heating effect, so that the primer powder on the top of the glass plate is heated and dried. At the same time, the intercepting net intercepts large particles of dust in the air, the shielding layer intercepts fine particles in the air, and the adsorption layer adsorbs pollutants in the air, thereby improving the powder spraying adhesion effect of the glass plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic structural diagram of a powder spraying box for laminated glass production proposed by the present invention;
[0015] Figure 2 This is a schematic diagram of the cross-sectional structure of the connection portion above the fixed shell proposed by the present invention;
[0016] Figure 3 This is a schematic diagram of the structure of the connecting part of the transmission mechanism proposed in the utility model;
[0017] Figure 4 This is a schematic structural diagram of the cross-sectional connection portion below the fixed shell proposed in the present invention;
[0018] Figure 5This is a structural diagram of the connecting portion of the carrying mechanism proposed in the present invention;
[0019] Figure 6 This is a schematic diagram of the cross-sectional connection structure of the shielding shell proposed in the present invention;
[0020] Figure 7 This is a schematic structural diagram of the cross-sectional connection portion of the derived shell proposed in the present invention.
[0021] In the figure: 1. Storage device; 101. Fixed shell; 102. Box door; 103. Handle; 104. Electromagnet; 105. Electric heating tube; 106. Export shell; 107. Intercepting net; 108. Shielding layer; 109. Adsorption layer; 2. Powder spraying mechanism; 201. Powder sprayer; 202. Delivery pipe; 203. Output nozzle; 3. Transmission mechanism; 301. First servo screw rod; 302. Second servo screw rod; 303. Transmission rod; 304. Transmission plate; 4. Carrying mechanism; 401. Support shell; 402. Extension rod; 403. Tooth groove; 404. Shielding shell; 405. Motor; 406. Transmission wheel; 407. Carrying plate; 408. Spring telescopic rod; 409. Clamping plate. DETAILED DESCRIPTION
[0022] The technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.
[0023] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6, a powder spraying box for laminated glass production, comprising a storage device 1 and a fixed shell 101, the top of the fixed shell 101 is fixedly connected to a powder spraying mechanism 2, the interior of the fixed shell 101 is fixedly connected to a transmission mechanism 3, the interior of the fixed shell 101 is fixedly connected to a bearing mechanism 4, and the bearing mechanism 4 is located below the transmission mechanism 3, the storage device 1 comprises a fixed shell 101, the storage device 1 comprises a fixed shell 101, a box door 102, a handle 103, an electromagnet 104, an electric heating pipe 105, a guide shell 106, an intercepting net 107, a shielding layer 108 and an adsorption layer 109 provide fixed points, and at the same time provide a processing space for the glass to be powdered, the fixed shell 101 is its outer surface and the box door 102, electric heating pipe 105, guide shell 106, powder spraying machine connected to the interior 201, the first servo screw rod 301 and the support shell 401 provide a fixed point, and at the same time provide a processing space for the glass plate stored therein, the front of the fixed shell 101 is hinged with a box door 102, and there are two boxes 102, the box door 102 is opened to the front of the fixed shell 101, providing space for the user to open the box door 102 by external force, and at the same time providing a fixed point for the handle 103 and the electromagnet 104 connected to its outer surface, the front of the box door 102 is fixedly connected to two handles 103, the handle 103 is fixedly connected to the front of the box door 102, providing a fulcrum for the user to open the box door 102 by external force, the outer surface of the box door 102 is fixedly connected to the electromagnet 104, the electromagnet 104 is fixedly connected to the outer surface of the box door 102, when it is necessary to close it When the box door 102 is fixed, electric energy can be transmitted to the inside of the electromagnet 104 through the external control component. At this time, the electromagnet 104 generates magnetic force to complete the fixation between the box doors 102. The powder spraying mechanism 2 includes a powder sprayer 201. The powder spraying mechanism 2 includes a powder sprayer 201, a conveying pipe 202 and an output nozzle 203 to provide a fixed point. The top of the fixed shell 101 is fixedly connected with the powder sprayer 201, and the powder sprayer 201 is located on the inner side of the outlet shell 106. The powder sprayer 201 provides a storage space for primer powder. When the primer powder needs to be output, electric energy can be transmitted to the inside of the powder sprayer 201 through the external control component. The powder sprayer 201 conveys the primer powder to the inside of the conveying pipe 202, and the back of the powder sprayer 201 is fixedly connected There is a conveying pipe 202, and the output end of the conveying pipe 202 extends to the interior of the fixed shell 101. When the primer powder is conveyed to the interior of the conveying pipe 202, the conveying pipe 202 conveys the primer powder to the interior of the output nozzle 203. The output end of the conveying pipe 202 is fixedly connected to the output nozzle 203. When the primer powder is conveyed to the interior of the output nozzle 203, the output nozzle 203 conveys the primer powder to the outer surface of the glass plate, thereby completing the processing of the primer powder. The transmission mechanism 3 includes a first servo screw 301. The transmission mechanism 3 includes a first servo screw 301, a second servo screw 302, a transmission rod 303 and a transmission plate 304 to adjust the position of the output nozzle 203. The interior of the fixed shell 101 is fixedly connected to the first servo screw 301.The first servo screw rod 301 is located in front of the electric heating tube 105, and the first servo screw rod 301 is fixedly connected to the inside of the fixed shell 101. When it is necessary to adjust the position of the output nozzle 203, electric energy can be transmitted to the inside of the first servo screw rod 301 through an external control component. At this time, the motor of the first servo screw rod 301 transmits the rotational force to the inside of the screw rod through the electromagnetic effect. At this time, the screw rod drives the slider to move, thereby adjusting the lateral position of the output nozzle 203. The output end of the first servo screw rod 301 is fixedly connected to the second servo screw rod 302. When it is necessary to adjust the position of the output nozzle 203, electric energy can be transmitted to the inside of the second servo screw rod 302 through an external control component. At this time, the motor of the second servo screw rod 302 transmits the rotational force to the inside of the screw rod through the electromagnetic effect. By electromagnetic effect, the rotational force is transmitted to the inside of the screw rod, and at this time the screw rod drives the slider to move, thereby adjusting the longitudinal position of the output nozzle 203. The output end of the second servo screw rod 302 is fixedly connected to the transmission rod 303, and the transmission rod 303 is fixedly connected to the output end of the second servo screw rod 302, providing a fixed point for the transmission plate 304 fixedly connected to its tail end. Under the drive of the first servo screw rod 301 and the second servo screw rod 302, the transmission rod 303 is driven to move, and the tail end of the transmission rod 303 is fixedly connected to the transmission plate 304, and the transmission plate 304 is connected to the output nozzle 203. The transmission plate 304 moves under the drive of the transmission rod 303, thereby adjusting the position of the output nozzle 203. The supporting mechanism 4 includes a support shell 40 1. The supporting mechanism includes a supporting shell 401, an extension rod 402, a tooth groove 403, a shielding shell 404, a motor 405, a transmission wheel 406, a bearing plate 407, a spring telescopic rod 408 and a clamping piece 409, which is a bearing space for the glass to be powder-sprayed. The interior of the fixed shell 101 is fixedly connected to the supporting shell 401. The supporting shell 401 is located below the first servo screw 301, and the supporting shell 401 is provided with four. The supporting shell 401 is fixed to the interior of the fixed shell 101, providing a fixing point for the extension rod 402 connected thereto, and also providing a fixing point for the shielding shell 404 fixed to its outer surface. The inner side of the supporting shell 401 is embedded with the extension rod 402, and the extension rod 402 is embedded with the interior of the supporting shell 401. The supporting plate 407 fixedly connected to the tail end provides a fixed point. When the linear force is transmitted to the inside of the extension rod 402, the supporting plate 407 of the extension rod 402 moves up and down. The outer surface of the extension rod 402 is provided with a tooth groove 403. The tooth groove 403 is opened to the outer surface of the extension rod 402. When the rotational force is transmitted to the inside of the tooth groove 403 via the transmission wheel 406, the tooth groove 403 converts the rotational force into a linear force and transmits it to the inside of the extension rod 402. The outer surface of the support shell 401 is fixedly connected to the shielding shell 404. The shielding shell 404 is fixedly connected to the outer surface of the support shell 401, providing a fixed point for the motor 405 fixedly connected to its outer surface, and at the same time providing shielding for the transmission wheel 406. The outer surface of the shielding shell 404 is fixedly connected to the motor 405.The output end of the motor 405 extends to the inside of the shielding shell 404. When the height of the glass to be sprayed needs to be adjusted, the external control component can deliver electric energy to the inside of the motor 405. At this time, the motor 405 delivers the rotating force to the inside of the transmission wheel 406 through electromagnetic effect. The output end of the motor 405 is fixedly connected with the transmission wheel 406. The transmission wheel 406 is engaged with the surface of the gear slot 403. The transmission wheel 406 delivers the rotating force to the inside of the gear slot 403 under the drive of the motor 405. The tail end of the four extension rods 402 is fixedly connected with the bearing plate 407. The bearing plate 407 is fixedly connected to the tail end of the extension rod 402. The glass is moved to the top of the bearing plate 407 before being sprayed. At this time, the bearing plate 407 provides support for the glass. The inside of the bearing plate 407 is fixedly connected with the spring telescopic rod 408. The spring telescopic rod 408 is provided with sixteen. When the glass plate is moved to the top of the bearing plate 407, the spring telescopic rod 408 is driven by the elastic potential energy to move the clamping piece 409 inward. The four spring telescopic rods 408 are fixedly connected with the clamping piece 409. The clamping piece 409 is moved inward under the drive of the spring telescopic rod 408 to generate clamping force on the glass plate on the top of the bearing plate 407 to complete the fixation of the glass plate.
[0024] Referring to Figure 1 , Figure 2 and Figure 7, the interior of the fixed shell 101 is fixedly connected with an electric heating pipe 105. When the glass plate to be dried needs to be heated and dried, the electric energy can be transmitted to the interior of the electric heating pipe 105 through the external control component. At this time, the electric heating pipe 105 transfers the heat to the interior of the fixed shell 101 through the electrothermal effect, so that the primer powder on the top of the glass plate is heated and dried. The top of the fixed shell 101 is fixedly connected with two groups of lead-out shells 106. The lead-out shell 106 is fixedly connected to the top of the fixed shell 101 to provide a fixed point for the interception net 107, the shielding layer 108 and the adsorption layer 109 fixedly connected thereto. At the same time, when the temperature inside the fixed shell 101 changes, the air pressure inside the fixed shell 101 and the external environment are balanced. The interior of the lead-out shell 106 is fixedly connected with the interception net 107. The interception net 107 is fixedly connected to the top of the fixed shell 101. It is fixedly connected to the inside of the outlet shell 106. When the air passes through the inside of the intercepting net 107, the intercepting net 107 intercepts large particles of dust in the air. The inside of the outlet shell 106 is fixedly connected to a shielding layer 108, and the shielding layer 108 is located below the intercepting net 107. The shielding layer 108 is made of filter cloth. When the air in the external environment passes through the inside of the shielding layer 108, the shielding layer 108 intercepts the fine dust in the air. The inside of the outlet shell 106 is fixedly connected to an adsorption layer 109, and the adsorption layer 109 is located below the shielding layer 108. The adsorption layer 109 is made of cloth filled with activated carbon. When the air passes through the inside of the adsorption layer 109, the adsorption layer 109 adsorbs pollutants in the air to ensure the cleanliness of the glass plate inside the fixed shell 101.
[0025] The functional principle of the present invention can be explained through the following operation mode: first, the box door 102 is opened by external force, and then the glass plate is moved to the top of the carrier plate 407. At this time, the spring telescopic rod 408, driven by the elastic potential energy, drives the clamping piece 409 to generate a clamping force on the glass plate to complete the fixation of the glass plate. Then, the box door 102 is closed to transmit electric energy to the inside of the electromagnet 104. At this time, the electromagnet 104 generates magnetic force to complete the fixation of the box door 102. Then, through the external control component, the electric energy is respectively transmitted to the inside of the powder sprayer 201. At this time, the powder sprayer 201 delivers the primer powder to the delivery pipe 202. The delivery pipe 202 delivers the primer powder to the inside of the output nozzle 203, and the output nozzle 203 delivers the primer powder to the outer surface of the glass plate. Then, through the external control component, electric energy is delivered to the inside of the first servo screw rod 301 and the second servo screw rod 302 to adjust the position of the output nozzle 203 to complete the powder spraying of the entire glass plate. Then, through the external control component, electric energy is delivered to the inside of the electric heating tube 105. At this time, the electric heating tube 105 conducts heat to the inside of the fixed shell 101 through the electrothermal effect, so that the primer powder on the top of the glass plate is heated and dried, completing the powder spraying of the glass plate.
[0026] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model and are not limiting. Although the utility model is described in detail with reference to the preferred embodiments, ordinary technicians in this field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the purpose and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.
Claims
1. A powder spraying box for producing laminated glass, comprising a storage device (1) and a fixed shell (101), wherein a powder spraying mechanism (2) is fixedly connected to the top of the fixed shell (101), a transmission mechanism (3) is fixedly connected to the interior of the fixed shell (101), and a bearing mechanism (4) is fixedly connected to the interior of the fixed shell (101), and the bearing mechanism (4) is located below the transmission mechanism (3), characterized in that: The storage device (1) comprises a fixed shell (101), the front of the fixed shell (101) is hinged with a box door (102), and two boxes (102) are provided, the front of the box door (102) is fixedly connected to two handles (103), the outer surface of the box door (102) is fixedly connected to an electromagnet (104), the interior of the fixed shell (101) is fixedly connected to an electric heating pipe (105), the top of the fixed shell (101) is fixedly connected to two groups of export shells (106), the interior of the export shell (106) is fixedly connected to an interception net (107), the interior of the export shell (106) is fixedly connected to a shielding layer (108), and the shielding layer (108) is located below the interception net (107), and the interior of the export shell (106) is fixedly connected to an adsorption layer (109), and the adsorption layer (109) is located below the shielding layer (108); The powder spraying mechanism (2) comprises a powder sprayer (201), the top of the fixed shell (101) is fixedly connected to the powder sprayer (201), and the powder sprayer (201) is located inside the outlet shell (106), the back of the powder sprayer (201) is fixedly connected to a delivery pipe (202), and the output end of the delivery pipe (202) extends into the interior of the fixed shell (101), and the output end of the delivery pipe (202) is fixedly connected to an output nozzle (203).
2. A powder spray box for laminated glass production according to claim 1, characterized in that: The transmission mechanism (3) comprises a first servo screw (301), the interior of the fixed housing (101) is fixedly connected to the first servo screw (301), and the first servo screw (301) is located in front of the electric heating tube (105), and the output end of the first servo screw (301) is fixedly connected to the second servo screw (302).
3. A powder spray box for laminated glass production according to claim 2, characterized in that: The output end of the second servo screw (302) is fixedly connected to a transmission rod (303), the tail end of the transmission rod (303) is fixedly connected to a transmission plate (304), and the transmission plate (304) is connected to the output nozzle (203).
4. A powder spray box for laminated glass production according to claim 1, characterized in that: A support shell (401) is fixedly connected to the interior of the fixed shell (101), and the support shell (401) is located below the first servo screw rod (301). Four support shells (401) are provided, and an extension rod (402) is engaged and connected to the inner side of the support shell (401). The outer surface of the extension rod (402) is provided with a tooth groove (403).
5. A powder spray box for laminated glass production according to claim 4, characterized in that: The outer surface of the support shell (401) is fixedly connected to a shielding shell (404), the outer surface of the shielding shell (404) is fixedly connected to a motor (405), and the output end of the motor (405) extends into the interior of the shielding shell (404), the output end of the motor (405) is fixedly connected to a transmission wheel (406), and the transmission wheel (406) is engaged with the surface of the tooth groove (403).
6. A powder spray box for laminated glass production according to claim 5, characterized in that: The tail ends of the four extension rods (402) are fixedly connected to a supporting plate (407), the interior of the supporting plate (407) is fixedly connected to a spring telescopic rod (408), and sixteen spring telescopic rods (408) are provided. The tail ends of the four spring telescopic rods (408) are fixedly connected to a clamping piece (409).