CN222875543U - Automatic veneering machine for flame-retardant plate production - Google Patents
Automatic veneering machine for flame-retardant plate production Download PDFInfo
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- CN222875543U CN222875543U CN202421874171.2U CN202421874171U CN222875543U CN 222875543 U CN222875543 U CN 222875543U CN 202421874171 U CN202421874171 U CN 202421874171U CN 222875543 U CN222875543 U CN 222875543U
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Abstract
The utility model relates to the technical field of veneers, and provides an automatic veneering machine for producing flame-retardant plates, which comprises a processing platform and a pair of squeeze rollers, wherein the squeeze rollers are arranged at the top and the bottom of the processing platform, a gluing conveying assembly is arranged on the processing platform, quick-drying assemblies are arranged at two sides of the processing platform, a spreading assembly is arranged on the processing platform, a flattening conveying roller is arranged on the surface and the inside of the processing platform, a glue storage box is fixedly connected to the surface of the processing platform, and a gap is reserved between the bottom of the glue storage box and the processing platform. Through above-mentioned technical scheme, solved the conveying end among the correlation technique and kept in contact with panel, the impurity on the conveying end surface can be attached to panel, and most wainscot machines can not in time drop and retrieve the conveying end surface attached impurity and handle, when increasing follow-up clean step, can influence the problem of follow-up panel wainscot processing because of the conveying end surface is uneven because of attached impurity easily.
Description
Technical Field
The utility model relates to the technical field of veneers, in particular to an automatic veneering machine for producing flame-retardant plates.
Background
In the plate production process, the corresponding veneering machine is required to carry out veneering treatment on the plate, the position of the plate needs to be corrected by adopting the corresponding veneering machine, then the plate is veneered, in the existing veneering machine is used for veneering the plate, impurities on the plate can be attached to the surface of the conveying end due to continuous contact of the conveying end, most veneers cannot timely fall off and recycle the impurities attached to the surface of the conveying end, the follow-up plate veneering treatment is easily affected due to the fact that the surface of the conveying end is uneven due to the fact that the impurities are attached to the surface of the conveying end, in addition, the dry glue treatment cannot be carried out in advance in the existing veneering process, and the waiting time is long.
Accordingly, improvements are made to the above problems.
Disclosure of utility model
The utility model provides an automatic veneering machine for producing flame-retardant plates, which solves the problems that in the related art, a conveying end is continuously contacted with plates, impurities on the surfaces of the conveying end can be attached to the plates, most veneers cannot timely fall off and recycle the impurities attached to the surfaces of the conveying end, and the veneering treatment of the subsequent plates is easily affected due to the fact that the surface of the conveying end is uneven due to the attached impurities while the subsequent cleaning steps are increased.
The technical proposal of the utility model comprises that
The device comprises a processing platform and a pair of squeeze rollers, wherein the squeeze rollers are arranged at the top and the bottom of the processing platform;
the gluing conveying assembly is arranged on the processing platform;
the quick-drying components are arranged on two sides of the processing platform;
The scraping assembly is arranged on the processing platform;
the gluing conveying assembly comprises a pair of flattening conveying rollers, the flattening conveying rollers are arranged on the surface and inside of the processing platform, the surface of the processing platform is fixedly connected with a glue storage box, and a gap is reserved between the bottom of the glue storage box and the processing platform.
As a further technical scheme, the side surface of the glue storage box is provided with an extrusion cylinder, the output end of the extrusion cylinder is positioned in the glue storage box, the output end of the extrusion cylinder is connected with an extrusion plate, the surface of the glue storage box is provided with a laminating groove, and the surface of the laminating groove is provided with a plurality of glue outlets.
As a further technical scheme, the glue injection pipe is arranged at the top of the glue storage box, the surface of the processing platform is provided with a glue pressing roller, and the glue pressing roller is driven to rotate by a motor.
As a further technical scheme, the quick-drying assembly comprises a fan, the fan is installed at the bottom of the processing platform, heating boxes are arranged on two sides of the processing platform, the heating boxes are connected with heat insulation pipelines at the output ends of the fan, and air outlets are formed in the side surfaces of the heating boxes.
As a further technical scheme, the scraping assembly comprises a pair of side openings, the side openings are formed in the surfaces of two sides of the processing platform, fixing rods are arranged on the surfaces of two sides of the processing platform, and telescopic cylinders are arranged on the surfaces of the fixing rods.
As a further technical scheme, the output end of the telescopic cylinder is connected with a scraping plate, a pair of collecting boxes are arranged at the bottom of the processing platform, and the collecting boxes are located right below the side ports.
As a further technical scheme, the size of the interval between the flattening conveying rollers is the same as the bottom height of the glue storage box.
As a further technical scheme, the surface of the laminating groove is an arc transition structural surface, and the rubber press roller is positioned at the top of the laminating groove.
As a further technical scheme, the contact end of the scraping plate and the plate is positioned right above the side opening.
As a further technical scheme, a detachable plug-in connection structure is adopted between the collecting box and the processing platform.
The working principle and the beneficial effects of the utility model are as follows:
The glue spreading and conveying assembly is arranged in the utility model, and under the interaction of the structures such as the flattening conveying roller, the glue storage tank, the extrusion cylinder, the extrusion plate, the laminating groove, the glue outlet, the glue injection pipe, the glue pressing roller and the like, the glue storage tank with the arc-shaped laminating groove can be laminated with the surface of the flame-retardant plate, in the conveying process, glue is extruded at the glue outlet, can be uniformly smeared on the surface of the moving flame-retardant plate and can be quickly laminated with the flame-retardant plate at the lower layer, the time of exposing the glue in the air can be reduced, the dust pollution condition is reduced, and the glue spreading and veneering effects are good.
Drawings
The utility model will be described in further detail with reference to the drawings and the detailed description.
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is an isometric view of the present utility model;
FIG. 3 is an isometric view of another view of the present utility model;
FIG. 4 is a cross-sectional view of the present utility model;
In the figure, 1 part of a processing platform, 2 parts of a squeeze roller, 3 parts of a gluing conveying component, 3 parts of a flattening conveying roller, 3 parts of a glue storage tank, 3 parts of an extrusion cylinder, 3 parts of an extrusion plate, 3 parts of a laminating groove, 3 parts of a glue outlet, 3 parts of a glue injection pipe, 3 parts of a glue pressing roller, 4 parts of a quick drying component, 4 parts of a fan, 4 parts of a heating box, 4 parts of a heat insulation pipeline, 4 parts of a gas outlet, 5 parts of a scraping component, 5 parts of a side opening, 5 parts of a fixing rod, 5 parts of a telescopic cylinder, 5 parts of a scraper, 5 parts of a collecting box.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by one of ordinary skill in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1-4, the embodiment provides an automatic veneering machine for producing flame retardant boards, which comprises
A processing platform 1 and a pair of squeeze rollers 2, wherein the squeeze rollers 2 are arranged at the top and the bottom of the processing platform 1;
A glue spreading and conveying assembly 3, wherein the glue spreading and conveying assembly 3 is arranged on the processing platform 1;
the quick-drying assemblies 4 are arranged on two sides of the processing platform 1;
the scraping assembly 5 is arranged on the processing platform 1;
The gluing conveying assembly 3 comprises a pair of flattening conveying rollers 3-1, the flattening conveying rollers 3-1 are arranged on the surface and inside of the processing platform 1, a glue storage tank 3-2 is fixedly connected to the surface of the processing platform 1, a gap is reserved between the bottom of the glue storage tank 3-2 and the processing platform 1, an extrusion cylinder 3-3 is arranged on the side surface of the glue storage tank 3-2, the output end of the extrusion cylinder 3-3 is positioned in the glue storage tank 3-2, the output end of the extrusion cylinder 3-3 is connected with an extrusion plate 3-4, a laminating groove 3-5 is formed in the surface of the glue storage tank 3-2, a plurality of glue outlets 3-6 are formed in the surface of the laminating groove 3-5, a glue injection pipe 3-7 is arranged at the top of the glue storage tank 3-2, a glue pressing roller 3-8 is arranged on the surface of the processing platform 1, and the glue pressing roller 3-8 is driven to rotate by a motor.
In this embodiment, in order to realize the gluing veneering effect of avoiding the pollution, the gluing conveying component 3 is designed, all be provided with flattening conveying roller 3-1 at processing platform 1 surface and inside, be used for pushing away fire-retardant board, processing platform 1 surface is provided with glue storage tank 3-2 and injecting tube 3-7, sustainable to inside supplementary glue, laminating groove 3-5 has been seted up at the top of glue storage tank 3-2, glue outlet 3-6 has been seted up to laminating groove 3-5 surface, be used for flowing out glue, glue storage tank 3-2 installs extrusion cylinder 3-3 in one side, extrusion cylinder 3-3 output is connected with extrusion plate 3-4 and is located glue storage tank 3-2 inside, accessible extrusion cylinder 3-3 promotes extrusion plate 3-4 and extrudes glue at glue outlet 3-6, still be provided with glue roller 3-8, glue roller 3-8 passes through the motor drive rotation, the fire-retardant board of upper strata can make glue even smearing surface, glue immediately after gluing with the fire-retardant board of lower floor, can reduce the circumstances of pollution.
Further, the quick-drying assembly 4 comprises a fan 4-1, the fan 4-1 is mounted at the bottom of the processing platform 1, heating boxes 4-2 are arranged on two sides of the processing platform 1, the heating boxes 4-2 and the output end of the fan 4-1 are connected with heat insulation pipelines 4-3, and air outlets 4-4 are formed in the side surfaces of the heating boxes 4-2.
In this embodiment, in order to accelerate the effect of glue drying and shortening the molding time, a quick-drying component 4 is designed, a fan 4-1 is installed at the bottom of a processing platform 1, heating boxes 4-2 are installed at two sides, the heating boxes 4-2 can heat the entering gas, a heat insulation pipeline 4-3 is connected between the output end of the fan 4-1 and the heating boxes 4-2, an air outlet 4-4 is formed in the side surface of the heating boxes 4-2, hot gas can be blown in between flame retardant plates to be attached immediately through the air outlet 4-4, and the effect of pre-drying the glue and strengthening adhesion is enhanced.
Further, the scraping assembly 5 comprises a pair of side ports 5-1, the side ports 5-1 are formed in two side surfaces of the processing platform 1, fixing rods 5-2 are arranged on two side surfaces of the processing platform 1, telescopic cylinders 5-3 are mounted on the surfaces of the fixing rods 5-2, scraping plates 5-4 are connected to the output ends of the telescopic cylinders 5-3, a pair of collecting boxes 5-5 are arranged at the bottom of the processing platform 1, and the collecting boxes 5-5 are located right below the side ports 5-1.
In this embodiment, in order to realize the clearance and collect the glue effect that overflows when extrudeing, designed the frictioning subassembly 5, all offered side mouth 5-1 in the both sides of processing platform 1, the side is fixed with dead lever 5-2 and flexible cylinder 5-3, and flexible cylinder 5-3 output is connected with scraper blade 5-4, and scraper blade 5-4 accessible flexible cylinder 5-3 control adjustment transverse position still is provided with collecting box 5-5 in the bottom for collect the glue of scraping.
Further, the size of the interval between the flattening conveying rollers 3-1 is the same as the height of the bottom of the glue storage box 3-2.
In this embodiment, through the same height, further flattening correction is carried out to the flame retardant panel, ensures the flattening effect of wainscot.
Further, the surface of the fitting groove 3-5 is an arc transition structural surface, and the rubber roller 3-8 is positioned at the top of the fitting groove 3-5.
In the embodiment, the lamination grooves 3-5 can be matched with the surface radian in the conveying process of the upper flame-retardant plate through the arc-shaped surface, so that the glue can be uniformly coated on the surface of the flame-retardant plate.
Further, the contact end of the scraping plate 5-4 and the plate is positioned right above the side opening 5-1.
In the embodiment, one end of the scraping plate 5-4 is arranged right above the side opening 5-1, so that the scraped glue can be ensured to directly fall into the collecting box 5-5, and cleaning is convenient.
Further, a detachable plug-in connection structure is adopted between the collecting box 5-5 and the processing platform 1.
In the embodiment, through a detachable connection mode, the collecting box 5-5 for collecting certain glue can be pulled out downwards, and the glue is conveniently cleaned after being taken out.
The upper flame-retardant plate is required to be inserted between the rubber pressing roller 3-8 and the laminating groove 3-5, the lower flame-retardant plate is inserted between the flattening conveying roller 3-1, conveying is started simultaneously, the extruding air cylinder 3-3 is started in the conveying process, the extruding air cylinder 3-3 pushes the extruding plate 3-4, glue is extruded and laminated on the surface of the upper flame-retardant plate at the glue outlet 3-6, the fan 4-1 and the heating box 4-2 are started, air of the fan 4-1 is heated by the heating box 4-2 and then blown into a gap between the upper flame-retardant plate and the lower flame-retardant plate, then the air is extruded and laminated by the extruding roller 2, and along with moving, the scrapers 5-4 at two sides scrape the overflowed glue into the collecting box 5-5.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.
Claims (10)
1. An automatic veneering machine for producing flame retardant plates is characterized by comprising
The device comprises a processing platform (1) and a pair of squeeze rollers (2), wherein the squeeze rollers (2) are arranged at the top and the bottom of the processing platform (1);
The gluing conveying assembly (3), the gluing conveying assembly (3) is arranged on the processing platform (1);
The quick-drying assemblies (4) are arranged on two sides of the processing platform (1);
The scraping assembly (5) is arranged on the processing platform (1);
The gluing conveying assembly (3) comprises a pair of flattening conveying rollers (3-1), the flattening conveying rollers (3-1) are arranged on the surface and inside of the processing platform (1), a glue storage box (3-2) is fixedly connected to the surface of the processing platform (1), and a gap is reserved between the bottom of the glue storage box (3-2) and the processing platform (1).
2. The automatic veneering machine for producing flame retardant boards according to claim 1, wherein an extrusion cylinder (3-3) is arranged on the side surface of the glue storage tank (3-2), the output end of the extrusion cylinder (3-3) is positioned in the glue storage tank (3-2), the output end of the extrusion cylinder (3-3) is connected with an extrusion board (3-4), a laminating groove (3-5) is formed in the surface of the glue storage tank (3-2), and a plurality of glue outlets (3-6) are formed in the surface of the laminating groove (3-5).
3. An automatic veneering machine for producing flame retardant boards according to claim 2, wherein the glue injection pipe (3-7) is installed at the top of the glue storage box (3-2), the surface of the processing platform (1) is provided with a glue pressing roller (3-8), and the glue pressing roller (3-8) is driven to rotate by a motor.
4. The automatic veneering machine for producing flame retardant boards according to claim 1, wherein the quick-drying assembly (4) comprises a fan (4-1), the fan (4-1) is installed at the bottom of the processing platform (1), heating boxes (4-2) are arranged on two sides of the processing platform (1), the heating boxes (4-2) are connected with heat insulation pipelines (4-3) with the output ends of the fan (4-1), and air outlets (4-4) are formed in the side surfaces of the heating boxes (4-2).
5. An automatic veneering machine for producing flame retardant boards according to claim 1, wherein the scraping assembly (5) comprises a pair of side openings (5-1), the side openings (5-1) are formed in two side surfaces of the processing platform (1), fixing rods (5-2) are arranged on two side surfaces of the processing platform (1), and telescopic cylinders (5-3) are arranged on the surfaces of the fixing rods (5-2).
6. The automatic veneering machine for producing flame retardant boards according to claim 5, wherein the output end of the telescopic cylinder (5-3) is connected with a scraping plate (5-4), a pair of collecting boxes (5-5) are arranged at the bottom of the processing platform (1), and the collecting boxes (5-5) are located right below the side ports (5-1).
7. An automatic veneering machine for producing fire retardant boards according to claim 1, characterized in that the distance between the flattening conveying rollers (3-1) is the same as the height of the bottom of the glue storage tank (3-2).
8. An automatic veneering machine for producing flame retardant boards according to claim 3, wherein the surface of the laminating groove (3-5) is an arc transition structure surface, and the rubber press roller (3-8) is positioned at the top of the laminating groove (3-5).
9. An automatic facing machine for the production of fire-retardant panels according to claim 6, characterized in that the contact end of the scraper (5-4) with the panel is located directly above the side mouth (5-1).
10. An automatic veneering machine for producing fire retardant panels according to claim 6, characterized in that a removable plug-in connection is used between the collection box (5-5) and the processing platform (1).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421874171.2U CN222875543U (en) | 2024-08-05 | 2024-08-05 | Automatic veneering machine for flame-retardant plate production |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421874171.2U CN222875543U (en) | 2024-08-05 | 2024-08-05 | Automatic veneering machine for flame-retardant plate production |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222875543U true CN222875543U (en) | 2025-05-16 |
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ID=95678403
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421874171.2U Active CN222875543U (en) | 2024-08-05 | 2024-08-05 | Automatic veneering machine for flame-retardant plate production |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222875543U (en) |
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2024
- 2024-08-05 CN CN202421874171.2U patent/CN222875543U/en active Active
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