A multi-angle directional spraying production system
By setting fixtures and limiting parts in the spraying system and using chains to drive the fixtures to rotate, the problem of directional and multi-angle spraying in the prior art is solved, and efficient and cost-saving spraying effect is achieved.
Patent Information
- Application Number
- CN202110271855.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-03-12
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2041-03-12
AI Technical Summary
The existing spraying technology cannot achieve directional and multi-angle spraying, resulting in a single spraying, which cannot meet customer needs, and disorderly autobiographical spraying wastes paint.
By setting up a fixture part, a first limiting part and a second limiting part, the chain is used to drive the movement of the fixture part, causing it to rotate friction with the limiting part, realizing directional spraying, and realizing multi-angle spraying through angle conversion.
Multi-angle and directional spraying is achieved, which improves the targetedness of spraying, effectively saves paint and reduces costs.
Smart Images

Figure CN112827702B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of spraying manufacturing, and particularly relates to a multi-angle directional spraying production system. Background Art
[0002] Spraying is a coating method in which a coating is dispersed into uniform and fine droplets and applied to the surface of the object to be coated. It has a wide range of applications, mainly in the fields of hardware, plastics, furniture, military, ships, etc., and is the most commonly used coating method today.
[0003] The spraying mechanism mainly consists of a feeding device, a spray gun, and an atomization source. The atomization source varies depending on the type and spraying machine: the atomization source of an air spraying machine consists of an air compressor, an air pipeline, an air oil-water separator, and a gas storage tank; the atomization source of a non-air spraying machine consists of a power source and a high-pressure pump; the atomization source of an electrostatic spraying machine consists of a high-frequency high-voltage electrostatic generator.
[0004] In the prior art, traditional high-speed spraying lines can only use a disordered self-rotating spraying method for spraying, and cannot achieve product orientation and multi-angle spraying, resulting in single spraying, unable to meet customer needs, and a large waste of paint during the spraying process. Summary of the Invention
[0005] By providing a multi-angle directional spraying production system, the embodiments of the present application solve the problem that spraying production cannot be carried out in a directional and multi-angle manner by setting a fixture member, a first limiting member, and a second limiting member, achieving multi-angle and directional spraying, enabling orderly spraying, having strong spraying pertinence, effectively saving paint, and saving costs.
[0006] The technical solution provided by the embodiments of the present application is as follows:
[0007] A multi-angle directional spraying production system, comprising:
[0008] A first limiting member;
[0009] A second limiting member, the second limiting member is provided on one side of the first limiting member, and the second limiting member and the first limiting member are located in the same vertical plane;
[0010] A fixture member, the fixture member moves in friction with the first limiting member, or the fixture member moves in friction with the second limiting member;
[0011] A chain, the fixture members are evenly spaced on the chain;
[0012] The fixture part includes a fixture rod, a first fixture rod guide block, a second fixture rod guide block connected to the fixture rod, and a fixture sleeve connected to the lower end of the fixture rod. The first fixture rod guide block is arranged below the second fixture rod guide block, and the first fixture rod guide rod and the second fixture rod guide rod are respectively provided with a notch.
[0013] The fixture sleeve is fixedly connected to the upper end of the chain.
[0014] The vertical distance between the first fixture rod guide block and the second fixture rod guide block is equal to the height difference between the first limiting member and the second limiting member.
[0015] Wherein, the fixture sleeve is fixedly connected to the chain, so that the chain drives the fixture part to move. During the forward movement of the chain, the fixture rod guide blocks in the fixture part located in front of the first limiting member respectively perform frictional movement with the first limiting member, causing the fixture part to rotate. When the notch is embedded in the first limiting member, the fixture part stops rotating, thus achieving the effect of directional spraying.
[0016] When the chain moves the fixture part from the first limiting member to the second limiting member, another fixture rod guide block in the fixture part located in front of the second limiting member performs frictional movement with the second limiting member, causing the fixture part to rotate. Relative to the fixture part located in front of the first limiting member, it rotates by a corresponding angle. When the notch is embedded in the second limiting member, the fixture part stops rotating. During the process of the fixture part moving from the first limiting member to the second limiting member, the fixture rod realizes spraying after changing the angle and then completes spraying in a directional manner for a certain distance.
[0017] Through the above settings, the spraying production system performs spraying orderly, realizes multi-angle and directional spraying, so that the spraying is highly targeted, effectively saves paint and cost.
[0018] Further, the first limiting member includes a first bracket, a first mounting plate arranged at the upper end of the first bracket, a first spring connected to the first mounting plate, a first guide shaft arranged in the first spring, a first guide block connected to one end of the first guide shaft, and a first bearing movably connected to the other end of the first guide shaft.
[0019] Further, the first guide block performs frictional movement with the first fixture rod guide block.
[0020] With the above settings, when the chain drives the jig rod to move to the position of the first limiting member, the first jig rod guide block and the first guide block move frictionally, causing the jig member to rotate. During the rotation of the jig member, the first guide block of the first limiting member is pressed towards the first mounting plate by the first jig rod guide block. This is because the first guide block of the first limiting member transmits the thrust received from the first jig rod guide block to the first guide shaft, causing the first guide shaft to move away from the first jig rod guide block through the first bearing, thereby suppressing the first guide block and preventing it from being properly aligned. When the first jig rod guide block rotates, when the notch is embedded at the lower end of the first guide block, the first jig rod guide block does not exert a thrust on the first guide block of the first limiting member. Thus, the first guide block rebounds by the spring force of the first spring, causing the first guide block to rebound. Moreover, the frictional force between the first jig rod guide block and the first guide block is less than the force exerted by the spring on the first guide block, thereby causing the first jig rod guide block to stop rotating and achieving directional movement.
[0021] Further, the second limiting member includes a second bracket, a second mounting plate provided at the upper end of the second bracket, a second spring connected to the second mounting plate, a second guide shaft provided within the second spring, a second guide block connected to one end of the second guide shaft, and a second bearing movably connected to the other end of the second guide shaft.
[0022] Further, the second guide block and the second jig rod guide block move frictionally.
[0023] With the above settings, when the chain drives the jig member to move to the position of the second limiting member, the second jig rod guide block and the second guide block move frictionally, causing the jig member to rotate. During the rotation of the jig member, the second guide block of the second limiting member is pressed towards the second mounting plate by the second jig rod guide block. This is because the second guide block of the second limiting member transmits the thrust received from the second jig rod guide block to the second guide shaft, causing the second guide shaft to move away from the second jig rod guide block through the second bearing, thereby suppressing the second guide block and preventing it from being properly aligned. When the second jig rod guide block rotates, when the notch is embedded at the lower end of the second guide block, the second jig rod guide block does not exert a thrust on the second guide block of the second limiting member. Thus, the second guide block rebounds by the spring force of the second spring, causing the second guide block to rebound. Moreover, the frictional force between the second jig rod guide block and the second guide block is less than the force exerted by the spring on the second guide block, thereby causing the second jig rod guide block to stop rotating and achieving directional movement.
[0024] During the process of the jig member moving from the first guide block to the second guide block, relative to the jig member in front of the first limiting member, it rotates by a certain angle, achieving multi-angle directional spraying and thus enabling orderly spraying.
[0025] Among them, the lengths of the first limiting member and the second limiting member are adjusted according to the directional spraying required for spraying.
[0026] Furthermore, the top surface width of the notch is smaller than the bottom surface width of the first guiding block, and the width of the first guiding block is equal to the width of the second guiding block. With this setting, it is ensured that the notch of the fixture part can be stably embedded in the guiding block of the limiting member, ensuring the stability of the directional movement, and thus ensuring the spraying quality.
[0027] Furthermore, the structure of the first fixture rod guiding block is the same as that of the second fixture rod guiding block.
[0028] Furthermore, the height of the first guiding block is smaller than the height of the first fixture rod guiding block. With this setting, it is ensured that the fixture part can perform smooth frictional movement with the first limiting member or the second limiting member, thus ensuring stable angle switching and effectively ensuring the spraying quality.
[0029] Furthermore, the horizontal linear distance between the first mounting plate and the first guiding block is 80 - 100 mm.
[0030] Furthermore, the distance between adjacent fixture parts is 700 - 1500 mm, and the distance can be adjusted according to the spraying requirements to meet the diversity of customers.
[0031] Advantages of the present invention:
[0032] By providing the fixture part, the first limiting member, and the second limiting member, the problem that spraying production cannot perform directional and multi-angle spraying is solved, realizing multi-angle and directional spraying, enabling orderly spraying, with strong spraying pertinence, effectively saving paint and cost. Description of the Drawings
[0033] Figure 1 It is a schematic structural diagram of the present invention;
[0034] Figure 2 It is a schematic structural diagram of the present invention;
[0035] Figure 3 It is a side view of the limiting member in the present invention;
[0036] Figure 4 It is a schematic structural diagram of the fixture part in the present invention.
[0037] Reference numerals in the drawings: first limiting member 1, first bracket 11, first mounting plate 12, first spring 13, first guiding shaft 14, first guiding block 15, first bearing 16; second limiting member 2, second bracket 21, second mounting plate 22, second spring 23, second guiding shaft 24, second guiding block 25, second bearing 26
[0038] ; Fixture part 3, fixture rod 31, first fixture rod guide block 32, notch 321, second fixture rod guide block 33, fixture sleeve 34; Chain 4. Detailed implementation mode
[0039] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative work belong to the scope of protection of the present invention. Embodiment
[0040] To facilitate the understanding of those skilled in the art of the present invention, the present invention will be further described in detail below in conjunction with specific embodiments and drawings.
[0041] As Figures 1-4 shown in, a multi-angle directional spraying production system provided by an embodiment of the present invention includes:
[0042] First limiting member 1;
[0043] Second limiting member 2, the second limiting member 2 is arranged on one side of the first limiting member 1, and the second limiting member 2 and the first limiting member 1 are arranged in the same vertical plane;
[0044] Fixture part 3, the fixture part 3 moves in friction with the first limiting member 1, or the fixture part 3 moves in friction with the second limiting member 2;
[0045] Chain 4, the fixture parts 3 are arranged at equal intervals on the chain 4;
[0046] The fixture part 3 includes a fixture rod 31, a first fixture rod guide block 32 connected to the fixture rod 31, a second fixture rod guide block 33, and a fixture sleeve 34 connected to the lower end of the fixture rod 31. The first fixture rod guide block 32 is arranged below the second fixture rod guide block 33, and the first fixture rod guide rod 32 and the second fixture rod guide rod 33 are respectively provided with a notch 321;
[0047] The fixture sleeve 34 is fixedly connected to the upper end of the chain 4;
[0048] The vertical distance between the first fixture rod guide block 32 and the second fixture rod guide block 33 is equal to the height difference between the first limiting member 1 and the second limiting member 2.
[0049] Among them, the fixture sleeve 34 is fixedly connected to the chain 4, so that the chain 4 drives the fixture member 3 to move. During the forward movement of the chain 4, the fixture rod guide blocks in the fixture members in front of the first limiting member 1 respectively frictionally move with the first limiting member 1, causing the fixture member 3 to rotate self - clockwise. When the notch 321 is embedded in the first limiting member 1, the fixture member 3 stops rotating self - clockwise, thus achieving the effect of directional spraying;
[0050] When the chain 4 moves the fixture member 3 from the first limiting member 1 to the second limiting member 2, another fixture rod guide block in the fixture member 3 in front of the second limiting member 2 frictionally moves with the second limiting member 2, causing the fixture member 3 to rotate self - clockwise. Relative to the fixture member 3 in front of the first limiting member 1, it rotates by a certain angle. When the notch 321 is embedded in the second limiting member 2, the fixture member 3 stops rotating self - clockwise. During the process of the fixture member 3 moving from the first limiting member 1 to the second limiting member 2, the fixture rod achieves spraying after changing the angle, and then sprays for a certain distance in a directional manner to complete the spraying.
[0051] Through the above - mentioned settings, the spraying production system sprays in an orderly manner, achieving multi - angle and directional spraying, so that the spraying is highly targeted, effectively saving paint and cost.
[0052] Furthermore, the first limiting member 1 includes a first bracket 11, a first mounting plate 12 provided at the upper end of the first bracket, a first spring 13 connected to the first mounting plate, a first guide shaft 14 provided inside the first spring, a first guide block 15 connected to one end of the first guide shaft, and a first bearing 16 movably connected to the other end of the first guide shaft.
[0053] Furthermore, the first guide block 15 frictionally moves with the first fixture rod guide block 32.
[0054] With the above settings, when the chain 4 drives the jig rod 3 to move to the position of the first limiting member 1, the first jig rod guide block 32 and the first guide block 15 move by friction, so that the jig member 3 rotates. During the rotation of the jig member 3, the first guide block 15 of the first limiting member 1 is pressed towards the first mounting plate 12 by the first jig rod guide block 32. This is because the thrust of the first jig rod guide block 32 on the first guide block 15 of the first limiting member 1 is transmitted to the first guide shaft 14, causing the first guide shaft 14 to move away from the first jig rod guide block 32 through the first bearing 16, so that the first guide block 15 is pressed and not aligned. When the first jig rod guide block 32 rotates, when the notch 321 is embedded in the lower end of the first guide block 15, the first jig rod guide block 32 has no thrust on the first guide block 15 of the first limiting member 1. Thus, the first guide block 15 rebounds by the spring force of the first spring 13, making the first guide block 15 rebound, and the frictional force between the first jig rod guide block 32 and the first guide block 15 is less than the force exerted by the spring on the first guide block 15, thereby realizing the stop of the rotation of the first jig rod guide block 32 and achieving directional movement.
[0055] Further, the second limiting member 2 includes a second bracket 21, a second mounting plate 22 provided at the upper end of the second bracket, a second spring 23 connected to the second mounting plate, a second guide shaft 24 provided in the second spring, a second guide block 25 connected to one end of the second guide shaft, and a second bearing 26 movably connected to the other end of the second guide shaft.
[0056] Further, the second guide block 25 and the second jig rod guide block 33 move by friction.
[0057] With the above settings, when the chain 4 drives the jig member to move to the position of the second limiting member 2, the second jig rod guide block 33 and the second guide block 25 move by friction, so that the jig member 3 rotates. During the rotation of the jig member 3, the second guide block 25 of the second limiting member 2 is pressed towards the second mounting plate 22 by the second jig rod guide block 33. This is because the thrust of the second jig rod guide block 33 on the second guide block 25 of the second limiting member 2 is transmitted to the second guide shaft 24, causing the second guide shaft 24 to move away from the second jig rod guide block 33 through the second bearing 26, so that the second guide block 25 is pressed and not aligned. When the second jig rod guide block 33 rotates, when the notch 321 is embedded in the lower end of the second guide block 25, the second jig rod guide block 33 has no thrust on the second guide block 25 of the second limiting member 2. Thus, the second guide block 25 rebounds by the spring force of the second spring 23, making the second guide block 25 rebound, and the frictional force between the second jig rod guide block 33 and the second guide block 25 is less than the force exerted by the spring on the second guide block 25, thereby realizing the stop of the rotation of the second jig rod guide block 33 and achieving directional movement.
[0058] During the movement of the jig part 3 from the first guiding block 15 to the second guiding block 25, the jig part 3 relative to that in front of the first limiting part 1 rotates by a corresponding angle, achieving multi-angle directional spraying, so as to perform orderly spraying.
[0059] The lengths of the first limiting part 1 and the second limiting part 2 are adjusted according to the required directional spraying for spraying.
[0060] Furthermore, the top surface width of the notch 321 is smaller than the bottom surface width of the first guiding block 15, and the width of the first guiding block 15 is equal to the width of the second guiding block 25. Through this setting, it is ensured that the notch 321 of the jig part can be stably embedded in the guiding block of the limiting part, ensuring the stability of the directional movement, and thus ensuring the spraying quality.
[0061] Furthermore, the structure of the first jig rod guiding block 32 is the same as that of the second jig rod guiding block 33.
[0062] Furthermore, the height of the first guiding block 15 is smaller than the height of the first jig rod guiding block 32. Through this setting, it is ensured that the jig part 3 performs smooth frictional movement with the first limiting part 1 or the second limiting part 2, thus ensuring stable angle switching and effectively ensuring the spraying quality.
[0063] Furthermore, the horizontal straight-line distance between the first mounting plate 12 and the first guiding block 15 is 80 - 100 mm.
[0064] Furthermore, the distance between adjacent jig parts 3 is 700 - 1500 mm, and the distance can be adjusted according to the spraying requirements to meet the diversity of customers.
[0065] Advantages of the present invention:
[0066] By providing a jig part, a first limiting part, and a second limiting part, the problem that spraying production cannot perform directional and multi-angle spraying is solved, realizing multi-angle and directional spraying, enabling orderly spraying, with strong spraying pertinence, effectively saving paint and cost.
[0067] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0068] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment contains only an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art. It should be noted that the technical features not detailedly described in the present invention can all be implemented by any existing technology.
Claims
1. A multi-angle directional spraying production system, characterized in that, It includes: A first limiting member; A second limiting member, which is arranged on one side of the first limiting member, and the second limiting member and the first limiting member are arranged on the same vertical plane; A jig member, which moves frictionally with the first limiting member or the jig member moves frictionally with the second limiting member; A chain, on which the jig members are evenly arranged at intervals; The jig member includes a jig rod, a first jig rod guide block connected to the jig rod, a second jig rod guide block, and a jig sleeve connected to the lower end of the jig rod. The first jig rod guide block is arranged below the second jig rod guide block, and a notch is respectively provided on the first jig rod guide rod and the second jig rod guide rod; The jig sleeve is fixedly connected to the upper end of the chain; The vertical distance between the first jig rod guide block and the second jig rod guide block is equal to the height difference between the first limiting member and the second limiting member; The first limiting member includes a first bracket, a first mounting plate arranged at the upper end of the first bracket, a first spring connected to the first mounting plate, a first guide shaft arranged in the first spring, a first guide block connected to one end of the first guide shaft, and a first bearing movably connected to the other end of the first guide shaft; the second limiting member includes a second bracket, a second mounting plate arranged at the upper end of the second bracket, a second spring connected to the second mounting plate, a second guide shaft arranged in the second spring, a second guide block connected to one end of the second guide shaft, and a second bearing movably connected to the other end of the second guide shaft; the top surface width of the notch is smaller than the bottom surface width of the first guide block, and the width of the first guide block is equal to the width of the second guide block; The height of the first guide block is smaller than the height of the first jig rod guide block; The horizontal linear distance between the first mounting plate and the first guide block is 80 - 100 mm.
2. The multi-angle directional spraying production system according to claim 1, characterized in that, The first guide block moves frictionally with the first jig rod guide block.
3. The multi-angle directional spraying production system according to claim 1, characterized in that, The second guide block moves frictionally with the second jig rod guide block.
4. The multi-angle directional spraying production system according to claim 1, characterized in that, The structure of the first jig rod guide block is the same as the structure of the second jig rod guide block.
5. The multi-angle directional spraying production system according to claim 1, characterized in that, The distance between adjacent jig members is 700 - 1500 mm.
Citation Information
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