A continuous cross-coating production device
By introducing a pushing and sliding mechanism into the coating production device, air bubbles in the adhesive are broken, achieving uniform adhesion and firm bonding of the coating, thus solving the problem of reduced coating quality caused by air bubbles in the prior art.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-22
- Publication Date
- 2026-03-24
AI Technical Summary
In existing coating production equipment, air bubbles generated inside the adhesive during the production process reduce the adhesion and strength of the coating.
A continuous cross-coating production device is adopted. By setting up a pushing mechanism and a sliding mechanism, the filaments are made to shake in the glue to break air bubbles, and the glue is evenly distributed by inertia.
It improves the uniformity and adhesion of the coating, reduces the presence of air bubbles, and enhances the overall quality of the coating.
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Figure CN118238500B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of coating production, in particular to a continuous cross-coating production device. BACKGROUND
[0002] The coating production device is a device for manufacturing coating materials, which is usually composed of a series of working units and related equipment for uniformly coating paint, glue or other adhesives on the substrate.
[0003] The waterproof coating production device disclosed in CN105499060A comprises a first output assembly for outputting a first film, a forming assembly arranged together with the first output assembly, and the forming assembly comprises a roller for driving the first film to move and a first coating mechanism for coating the first film on the roller with paint.
[0004] The existing coating production device needs to use glue to bond the upper and lower threads together during the production process, and air bubbles will be generated in the interior of the glue during the bonding process. After drying, the air bubbles become gaps, and there is no substantial fixed connection, which leads to the decrease of the bonding degree and firmness of the coating.
[0005] To solve the above problems, a continuous cross-coating production device is proposed. SUMMARY
[0006] The present application aims to provide a continuous cross-coating production device, which solves the problem of the decrease of the bonding degree and firmness of the coating caused by the air bubbles generated in the interior of the glue during the bonding process.
[0007] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a continuous cross-coating production device, comprising a base, a first support plate fixedly connected to the rear side above the base, a hot press fixedly connected to the front lower side of the upper end of the first support plate, a second support plate fixedly connected to the front end of the first support plate, a roller rotatably connected to the inner side of the second support plate, a pushing mechanism fixedly connected to the inner side of the first support plate, and a sliding mechanism arranged below the pushing mechanism.
[0008] The pushing mechanism comprises a sliding assembly and a buckle assembly, and the buckle assembly is arranged below the sliding assembly.
[0009] The sliding assembly comprises a first air cylinder fixedly connected to the inner side of the lower end of the first supporting plate, an output end of the first air cylinder is provided with a first air rod, a front end of the first air rod is provided with a first connecting plate, a lower end of the first connecting plate is fixedly connected with a second connecting plate, a right side front end of the first supporting plate is fixedly connected with a third supporting plate, an inner wall of the lower end of the third supporting plate is provided with a first guide slot, an inner side of the first guide slot is provided with a first guide rod, the first guide rod is fixedly connected with the second connecting plate, an inner wall of the upper end of the third supporting plate is fixedly connected with a second air cylinder, a left end of the second air cylinder is vertically and slidably connected with a third connecting plate, an inner wall of the upper end of the first supporting plate is provided with a second guide slot, an inner side of the second guide slot is provided with a second guide rod, a lower end of the third connecting plate is fixedly connected with a fourth connecting plate, and the second guide rod is fixedly connected with the fourth connecting plate.
[0010] Preferably, the first connecting plate is vertically and slidably connected with the first air rod, and the central axis of the first connecting plate is perpendicular to the central axis of the second connecting plate.
[0011] Preferably, the first guide slot is inclined at both ends and straight at the middle, and the first guide slot is clearance-fitted with the first guide rod.
[0012] Preferably, the second guide slot is inclined at both ends and straight at the middle, and the second guide slot is clearance-fitted with the second guide rod.
[0013] Preferably, the inner sides of the second connecting plate and the fourth connecting plate are provided with first sliding grooves, the buckle assembly comprises a first sliding block provided in the first sliding groove, an inner side of the first sliding block is provided with a threaded rod, the threaded rod is rotationally connected with the second connecting plate, a lower end of the first sliding block is fixedly connected with a first connecting rod, an inner side of the first connecting rod is provided with a first recess, an inner wall of the first recess is provided with a first hole, an inner side of the first recess is provided with a first push rod, an inner side of the first push rod is provided with a second recess, a limiting rod is slidably connected to the inner side of the second recess, the limiting rod is nested in the inner side of the first hole, an upper end of the first push rod is fixedly connected with a spring, an upper end of the third supporting plate is fixedly connected with a third guide slot, an inner side of the third guide slot is provided with a third guide rod, the third guide slots are equidistantly distributed on the second supporting plate, the third guide rod is clearance-fitted with the third guide slot, an upper end of the third guide rod is fixedly connected with a clamp, and an inner side of the clamp is provided with a second hole.
[0014] Preferably, the threaded rod is threadedly connected with the first sliding block, the two ends of the threaded rod are oppositely threaded, and the outer side of the first sliding block is attached to the inner side of the first sliding groove.
[0015] Preferably, the inner side of the first groove is attached to the outer side of the first push rod, and the appearance structure of the first push rod is a cuboid.
[0016] Preferably, the left side of the limiting rod is an inclined surface, the right end surface of the limiting rod is an inclined surface, and the right end surface of the limiting rod is attached to the left side of the second groove.
[0017] Preferably, the sliding mechanism comprises a first magnet fixedly connected to the inner side of the base, a second magnet arranged above the middle of the base, a second sliding groove arranged on the inner side of the second magnet, a second sliding block arranged on the inner side of the second sliding groove, a first rubber pad slidably connected to the rear end of the second sliding block, a stop lever fixedly connected to the upper end of the second sliding block, a limiting groove arranged inside the upper end of the stop lever, the limiting groove and the first push rod being in clearance fit, third magnets fixedly connected to the lower ends of the two sides of the clamp, and a second rubber pad slidably connected to the left side of the second sliding block.
[0018] Preferably, the lower end of the second sliding groove is wider than the upper end of the second sliding groove, and the widths of the upper and lower ends of the second sliding groove are both greater than the width of the second sliding block.
[0019] Compared with the prior art, the present application has the following advantages:
[0020] The continuous cross-coating production device provided by the present application drives the sliding mechanism to slide through the push mechanism, causes the silk thread that has been attached to shake, and causes the bubbles in the glue to break under the action of inertia, thereby reducing the bubbles between the silk threads and achieving the purpose of more uniform coating and attachment. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 The figure is a schematic diagram of the coating production process of the present application;
[0022] Figure 2 The figure is a schematic diagram of the overall three-dimensional structure of the present application;
[0023] Figure 3 The figure is a schematic diagram of the second connecting plate of the present application;
[0024] Figure 4 The figure is a schematic diagram of the front view of the second connecting plate of the present application;
[0025] Figure 5 The figure is a schematic diagram of the front view of the second magnet of the present application;
[0026] Figure 6 The figure is a schematic diagram of the top view of the second support plate of the present application;
[0027] Figure 7 The figure is a schematic diagram of the front view of the first support plate of the present application;
[0028] Figure 8 The structure schematic diagram of A in the present application Figure 3 The structure schematic diagram of B in the present application
[0029] Figure 9 The structure schematic diagram of A in the present application Figure 4 The structure schematic diagram of B in the present application
[0030] In the figure: 1, base; 2, first support plate; 3, hot press; 4, second support plate; 5, roller; 6, pushing mechanism; 7, sliding mechanism; 61, sliding assembly; 62, buckle assembly; 6101, first air cylinder; 6102, first air rod; 6103, first connecting plate; 6104, second connecting plate; 6105, third support plate; 6106, first guide groove; 6107, first guide rod; 6111, second air cylinder; 6112, third connecting plate; 6108, second guide groove; 6109, second guide rod; 6110, fourth connecting plate; 8, first sliding groove; 6201, first sliding block; 6202, threaded rod; 6203, first connecting rod; 6204, first recess; 6205, first hole; 6206, first push rod; 6207, second recess; 6208, limiting rod; 6209, spring; 6213, third guide groove; 6210, third guide rod; 6211, clamp; 6212, second hole; 701, first magnet; 702, second magnet; 703, second sliding groove; 704, second sliding block; 705, first rubber pad; 706, stop rod; 707, limiting groove; 708, third magnet; 709, second rubber pad. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0032] Please refer to Figures 1-9 The present application provides a technical solution: a continuous cross-coating production device, comprising a base 1, a first support plate 2 fixedly connected to the upper rear side of the base 1, a hot press 3 fixedly connected to the upper front side of the lower side of the first support plate 2, a second support plate 4 fixedly connected to the front end of the first support plate 2, a roller 5 rotatably connected to the inner side of the second support plate 4, a pushing mechanism 6 fixedly connected to the inner side of the first support plate 2, and a sliding mechanism 7 arranged below the pushing mechanism 6.
[0033] The pushing mechanism 6 comprises a sliding assembly 61 and a buckle assembly 62, and the buckle assembly 62 is arranged below the sliding assembly 61.
[0034] The sliding assembly 61 comprises a first air cylinder 6101 fixedly connected to the inner side of the lower end of the first support plate 2, the output end of the first air cylinder 6101 is provided with a first air rod 6102, the front end of the first air rod 6102 is provided with a first connecting plate 6103, the lower end of the first connecting plate 6103 is fixedly connected with a second connecting plate 6104, the connection mode between the first connecting plate 6103 and the first air rod 6102 is vertical sliding connection, and the central axis of the first connecting plate 6103 is perpendicular to the central axis of the second connecting plate 6104, so that the first connecting plate 6103 can be carried out up and down movement under the cooperation of the first guide rod 6107 and the first guide groove 6106, the right side of the front end of the first support plate 2 is fixedly connected with a third support plate 6105, the lower end of the inner wall of the third support plate 6105 is provided with the first guide groove 6106, the front and rear ends of the first guide groove 6106 are inclined in appearance, and the middle end of the first guide groove 6106 is horizontal and straight in appearance, the inner side of the first guide groove 6106 is provided with the first guide rod 6107, the connection mode between the first guide rod 6107 and the second connecting plate 6104 is fixed connection, and the cooperation mode between the first guide groove 6106 and the first guide rod 6107 is clearance fit, so that the first guide rod 6107 can move in the inner side of the first guide groove 6106, and when the first guide rod 6107 moves at the front and rear ends of the first guide groove 6106, it can move up and down, the upper end of the inner wall of the third support plate 6105 is fixedly connected with a second air cylinder 6111, the left end of the second air cylinder 6111 is vertically and slidingly connected with a third connecting plate 6112, the upper end of the inner wall of the first support plate 2 is provided with a second guide groove 6108, the inner side of the second guide groove 6108 is provided with a second guide rod 6109, the left and right ends of the second guide groove 6108 are inclined in appearance, and the middle end of the second guide groove 6108 is horizontal and straight in appearance, and the cooperation mode between the second guide groove 6108 and the second guide rod 6109 is clearance fit, so that the fourth connecting plate 6110 can move up and down when the second guide rod 6109 moves at the front and rear ends of the second guide groove 6108 under the pushing of the second air cylinder 6111, the lower end of the third connecting plate 6112 is fixedly connected with a fourth connecting plate 6110, and the connection mode between the second guide rod 6109 and the fourth connecting plate 6110 is fixed connection.
[0035] The inner side of the second connecting plate 6104 and the fourth connecting plate 6110 is provided with a first sliding groove 8, the buckle assembly 62 comprises a first sliding block 6201 provided in the inner side of the first sliding groove 8, the inner side of the first sliding block 6201 is provided with a threaded rod 6202, the connection mode between the threaded rod 6202 and the second connecting plate 6104 is rotating connection, the connection mode between the threaded rod 6202 and the first sliding block 6201 is screw connection, and the screw rotation directions of the two ends of the threaded rod 6202 are opposite, and the outer side surface of the first sliding block 6201 is attached to the inner side surface of the first sliding groove 8, so that rotating the threaded rod 6202 can drive the inner side of the first sliding block 6201 to slide to the center or slide to both sides, the lower end of the first sliding block 6201 is fixedly connected with a first connecting rod 6203, the inner side of the first connecting rod 6203 is provided with a first recess 6204, a first hole 6205 is connected to the inner wall of the first recess 6204, the inner side of the first recess 6204 is provided with a first push rod 6206, the inner side surface of the first recess 6204 is attached to the outer side surface of the first push rod 6206, and the outer appearance structure of the first push rod 6206 is a cuboid, so that the first push rod 6206 can move up and down on the inner side of the first recess 6204, but cannot rotate, the inner side of the first push rod 6206 is provided with a second recess 6207, the inner side of the second recess 6207 is slidably connected with a limiting rod 6208, the left side surface of the limiting rod 6208 is an inclined surface, the right end surface of the limiting rod 6208 is an inclined surface, and the right end surface of the limiting rod 6208 is attached to the left side surface of the second recess 6207, so that when the first push rod 6206 is pushed upward, the limiting rod 6208 can be driven to move to the center, and after the limiting rod 6208 contacts the second hole 6212, the limiting rod 6208 can move to the inner side of the central axis of the first push rod 6206 along the inclined edge of the limiting rod 6208, the upper end of the first push rod 6206 is fixedly connected with a spring 6209, the upper end of the second supporting plate 4 is fixedly connected with a third guide groove 6213, the inner side of the third guide groove 6213 is provided with a third guide rod 6210, the third guide grooves 6213 are equidistantly distributed on the second supporting plate 4, and the cooperation mode between the third guide rod 6210 and the third guide groove 6213 is clearance fit, the upper end of the third guide rod 6210 is fixedly connected with a clamp 6211, and the inside of the clamp 6211 is provided with a second hole 6212.
[0036] The sliding mechanism 7 comprises a first magnet 701 fixedly connected to the inner side of the base 1, a second magnet 702 arranged above the middle of the base 1, a second sliding groove 703 arranged on the inner side of the second magnet 702, a second sliding block 704 arranged on the inner side of the second sliding groove 703, a first rubber pad 705 slidingly connected to the rear end of the second sliding block 704, a stop lever 706 fixedly connected to the upper end of the second sliding block 704, a limiting groove 707 arranged in the upper end of the stop lever 706, the limiting groove 707 and the first push rod 6206 are in clearance fit, a third magnet 708 fixedly connected to the lower end of both sides of the clamp 6211, a second rubber pad 709 slidingly connected to the left side of the second sliding block 704, the lower end of the second sliding groove 703 is wider than the upper end of the second sliding groove 703, and the width of the upper and lower ends of the second sliding groove 703 is greater than the width of the second sliding block 704, so that the second sliding block 704 can move forward and backward and left and right on the inner side of the second sliding groove 703, but will not move out of the inner side of the second sliding groove 703.
[0037] After the silk threads in the X-axis and Y-axis directions are spread, glued, dried, buffered and cut, the coating of the X-axis and Y-axis directions needs to be alternately covered, and the specific operation is as follows:
[0038] The third guide rod 6210 below the clamp 6211 of two-direction coating is put into the inner side of the corresponding third guide slot 6213, so that the coating inside the clamp 6211 is tight, and the coating in the X-axis direction needs to be covered. When the first air cylinder 6101 is started to drive the first air rod 6102 to move forward, the first connecting plate 6103 is driven to move forward, the second connecting plate 6104 is driven to move forward, and the first guide rod 6107 fixedly connected to the right end of the second connecting plate 6104 is driven to move forward, so that the trajectory of the first guide rod 6107 first moves upward, then smoothly slides, and finally moves downward and forward. When the second connecting plate 6104 moves forward, the threaded rod 6202 and the first sliding block 6201 move forward and downward, the first connecting rod 6203, the first push rod 6206 and the limiting rod 6208 move forward and downward, so that the first connecting rod 6203 can move to the inner side of the second hole 6212. After the bevel edge of the limiting rod 6208 contacts the edge of the second hole 6212, it can move along the bevel edge of the limiting rod 6208 to the center axis of the first connecting rod 6203, push the first push rod 6206 upward, and then make the spring 6209 store energy. After passing through the second hole 6212, the limiting rod 6208 resets. When the first air rod 6102 moves back, the clamp 6211 is pulled upward. When the first push rod 6206 moves to the inside of the limiting slot 707 of the stop rod 706, it will push the second sliding block 704 to move downward and rearward. The first push rod 6206 is stopped by the bottom surface of the limiting slot 707 and moves upward to pull the limiting rod 6208 to the inner side of the first connecting rod 6203. The clamp 6211 is out of the control range of the first connecting rod 6203 due to the attraction of the third magnet 708 fixedly connected to the lower end of the two sides of the clamp 6211. When the coating in the Y-axis direction needs to be covered, the corresponding second air cylinder 6111 is started to drive the coating in the Y-axis direction to move, and the hot press 3 is started to heat and press the glue to melt and bond together, realizing the alternating covering of the coating in the X-axis and Y-axis directions, reducing the operation process, thereby achieving the purpose of reducing the cracking and loosening of the coating.
[0039] When the paste is pasted, bubbles will be generated in the inside of the paste, which will affect the pasting degree of the coating. The bubbles need to be reduced. The specific operation is as follows:
[0040] When the stop lever 706 moves at the rear side, the first rubber pad 705 is pushed to be compressed, and when the first push rod 6206 leaves the inner side of the limiting groove 707, the stop lever 706 drives the clamp 6211 and the glue coated on the inner side of the clamp 6211 to shake, so that the glue can be shaken more uniformly under the action of inertia, and the bubbles in the glue can break under the action of inertia, so that the coating of the X axis and the Y axis is more uniform.
[0041] When different widths of coating need to be alternately covered, the specific operation is as follows:
[0042] When different widths of coating need to be alternately covered, the specific operation is as follows:
[0043] It should be noted that in this text, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0044] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A continuous cross-coating production apparatus, comprising a base (1), a first support plate (2) fixedly connected to the rear side above the base (1), a hot press (3) fixedly connected to the lower front side of the upper end of the first support plate (2), a second support plate (4) fixedly connected to the front end of the first support plate (2), and a roller (5) rotatably connected to the inner side of the second support plate (4), characterized in that: A pushing mechanism (6) is fixedly connected to the inner side of the first support plate (2), and a sliding mechanism (7) is provided below the pushing mechanism (6). The pushing mechanism (6) includes a sliding component (61) and a latching component (62), the latching component (62) being disposed below the sliding component (61); The sliding assembly (61) includes a first cylinder (6101) fixedly connected to the inner side of the lower end of the first support plate (2). The output end of the first cylinder (6101) is provided with a first air rod (6102). The front end of the first air rod (6102) is provided with a first connecting plate (6103). The lower end of the first connecting plate (6103) is fixedly connected with a second connecting plate (6104). The right front end of the first support plate (2) is fixedly connected with a third support plate (6105). The inner wall of the lower end of the third support plate (6105) is provided with a first guide groove (6106). The inner side of the first guide groove (6106) is provided with a first guide rod (6107). The first guide rod (6107) and the second connecting plate (6104) are connected in a fixed manner. The second cylinder (6111) is fixedly connected to the upper inner wall of the third support plate (6105). The left end of the second cylinder (6111) is vertically slidably connected to the third connecting plate (6112). The upper inner wall of the first support plate (2) is provided with a second guide groove (6108). The inner side of the second guide groove (6108) is provided with a second guide rod (6109). The lower end of the third connecting plate (6112) is fixedly connected to a fourth connecting plate (6110). The second guide rod (6109) and the fourth connecting plate (6110) are connected in a fixed manner. The inner sides of the second connecting plate (6104) and the fourth connecting plate (6110) are provided with first sliding grooves (8). The buckle assembly (62) includes a first slider (6201) provided inside the first sliding groove (8). The inner side of the first slider (6201) is provided with a threaded rod (6202). The threaded rod (6202) is connected to the second connecting plate (6104) by rotation. The lower end of the first slider (6201) is fixedly connected with a first connecting rod (6203). The inner side of the first connecting rod (6203) is provided with a first groove (6204). The inner wall of the first groove (6204) is provided with a first hole (6205). The inner side of the first groove (6204) is provided with a first push rod (6206). The inner side of the first push rod (6206) is provided with a second groove (6207). The sliding mechanism (7) includes a first magnet (701) fixedly connected to the inner side of the base (1), a second magnet (702) is provided above the middle of the base (1), a second slide groove (703) is provided inside the second magnet (702), a second slider (704) is provided inside the second slide groove (703), a first rubber pad (705) is slidably connected to the rear end of the second slider (704), a stop bar (706) is fixedly connected to the upper end of the second slider (704), a limit groove (707) is provided inside the upper end of the stop bar (706), the limit groove (707) and the first push rod (6206) are in a clearance fit, and a second rubber pad (709) is slidably connected to the left side of the second slider (704).
2. The continuous cross-coating production apparatus according to claim 1, characterized in that: The first connecting plate (6103) and the first air rod (6102) are connected by a vertical sliding connection, and the central axis of the first connecting plate (6103) is perpendicular to the central axis of the second connecting plate (6104).
3. The continuous cross-coating production apparatus according to claim 1, characterized in that: The front and rear ends of the first guide groove (6106) are inclined, and the middle end of the first guide groove (6106) is horizontal and straight. The first guide groove (6106) and the first guide rod (6107) are fitted with a clearance fit.
4. The continuous cross-coating production apparatus according to claim 1, characterized in that: The left and right ends of the second guide groove (6108) are inclined, and the middle end of the second guide groove (6108) is horizontal and straight. The second guide groove (6108) and the second guide rod (6109) are fitted with a clearance fit.
5. The continuous cross-coating production apparatus according to claim 1, characterized in that: A limiting rod (6208) is slidably connected to the inner side of the second groove (6207). The limiting rod (6208) is nested inside the first hole (6205). A spring (6209) is fixedly connected to the upper end of the first push rod (6206). A third guide groove (6213) is fixedly connected to the upper end of the second support plate (4). A third guide rod (6210) is provided inside the third guide groove (6213). The third guide groove (6213) is equidistantly distributed on the second support plate (4). The third guide rod (6210) and the third guide groove (6213) are fitted with a clearance fit. A clamp (6211) is fixedly connected to the upper end of the third guide rod (6210). A third magnet (708) is fixedly connected to the lower ends of both sides of the clamp (6211). A second hole (6212) is provided inside the clamp (6211).
6. A continuous cross-coating production apparatus according to claim 5, characterized in that: The threaded rod (6202) and the first slider (6201) are connected by a threaded connection, and the two ends of the threaded rod (6202) have opposite threads, and the outer side of the first slider (6201) is in contact with the inner side of the first groove (8).
7. A continuous cross-coating production apparatus according to claim 5, characterized in that: The inner side of the first groove (6204) fits against the outer side of the first push rod (6206), and the first push rod (6206) has a cuboid shape.
8. A continuous cross-coating production apparatus according to claim 5, characterized in that: The left side of the limiting rod (6208) is an inclined surface, and the right end face of the limiting rod (6208) is also an inclined surface. The right end face of the limiting rod (6208) is in contact with the left side of the second groove (6207).
9. A continuous cross-coating production apparatus according to claim 1, characterized in that: The width of the lower end of the second slide groove (703) is greater than the width of the upper end of the second slide groove (703), and the width of both the upper and lower ends of the second slide groove (703) is greater than the width of the second slider (704).
Citation Information
Patent Citations
Waterproof coating production device
CN105499060A
Gluing device capable of preventing air bubbles
CN112620033A
Coating machine and method for producing medical protective products
CN115591739A