Tank interior spraying and discharging structure
By designing the in-can spraying and exiting structure, adjusting the exiting angle, and using magnetic connections and titanium plating on the hard alloy surface, the problem of unstable exiting the can in the two-piece can spraying process was solved, achieving stable production and energy conservation and emission reduction.
Patent Information
- Application Number
- CN202422603145.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-28
AI Technical Summary
In the existing technology, the exit angle of the two-piece can spraying process is difficult to adjust, resulting in high vacuum requirements, unstable exit, and affecting equipment operation and product quality.
An in-can spraying and dispensing structure was designed, including a fixed base, a first guide assembly, and a second guide assembly. The dispensing angle is adjusted by rotational connection to reduce vacuum requirements. Magnetic connection and titanium plating on the surface of hard alloy are used to improve stability and wear resistance.
This achieves stability in the unloading process, reduces vacuum requirements, minimizes the generation of defective products, saves energy, improves production efficiency and product quality, and conforms to the principles of green industrial production.
Smart Images

Figure CN223556272U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of machining frock, specifically relates to a structure is spouted in tank. BACKGROUND
[0002] Two-piece can refers to the metal container that is composed of the can cover and the integral seamless can body with bottom. The can body of the metal container is formed in the set shape by the drawing method. The forming method of the cup-shaped container belongs to the stamping processing, so the two-piece can is also often called the stamping can. The adsorption vacuum demand is high in the two-piece can spraying process production process, the rotating star wheel can hit the can to cause the abnormal product to flow into the next process and affect the normal operation of the equipment after the unstable vacuum fluctuation of the can. Meanwhile, the customer complaint of the unqualified product is increased, the production efficiency and the product quality are seriously affected, and it is urgent to solve. UTILITY MODEL CONTENTS
[0003] The utility model discloses in order to overcome the defect that the can angle is difficult to adjust in the prior art, the normal operation process is high to the vacuum requirement, leads to the defect that the target zip-top can is blocked in the process of canning, and provides a structure is spouted in tank.
[0004] In order to realize the above-mentioned purpose, the utility model discloses the following technical scheme:
[0005] A structure is spouted in tank, comprising:
[0006] The base assembly for fixing the structure and subsequent device, the first guide assembly for receiving and conveying the target zip-top can is connected with the base assembly, the second guide assembly for constituting the rolling path of the target zip-top can with the first guide assembly is connected with the base assembly and the first guide assembly, and the first guide assembly and the second guide assembly are rotatably connected, and the guide bar assembly for positioning and adjusting the target zip-top can is arranged on the second guide assembly.
[0007] The utility model discloses a first guide assembly and a second guide assembly, the first guide assembly and the second guide assembly are rotatably connected, the canning angle and mode of the target zip-top can are adjusted, the target zip-top can is more close to the canning opening, the pressure required for canning is reduced, the adsorption vacuum demand in the two-piece can spraying process production process is reduced, the canning process is more stable, and the phenomenon that the rotating star wheel hits the can to cause the abnormal product is avoided. Certain energy-saving and emission-reducing effect can be achieved, and the green principle of industrial production is met.
[0008] As preferred, the first guide assembly comprises a first connecting structure, and the first connecting structure is provided with a first connecting hole; the base assembly comprises a second connecting structure, and the base assembly is provided with a second connecting hole; the first connecting structure and the second connecting structure are connected through bolts, and the connecting angle of the base assembly and the first guide assembly can be adjusted within 0°-45°.
[0009] The first guide assembly and the second guide assembly are rotatably connected, and the rotation angle is within 45°.
[0010] As preferred, the base assembly is provided with a fixing seat, and the fixing seat is provided with a plurality of third connecting holes for connecting the target structure and a subsequent device.
[0011] The base assembly of the utility model is provided with a plurality of third connecting holes for fixing the device on a subsequent device, which ensures the integrity of the whole structure and increases the connection stability of the utility model structure and the subsequent device.
[0012] As preferred, the guide strip assembly comprises a sliding rail and a first connecting block sleeved on the inner side of the sliding rail.
[0013] The first connecting block is sleeved on the inner side of the sliding rail, which can avoid the accumulation of volatile paint during use and cause poor canning.
[0014] As preferred, the first guide assembly comprises two parallel spacing control rods; the first guide assembly further comprises a first sliding block arranged at the end of the two spacing control rods; and the first guide assembly further comprises a first limiting rod connected to the two spacing control rods and used for limiting the first sliding block.
[0015] The two spacing control rods are provided with first guide rails, and the first guide assembly further comprises a second sliding block slidably connected to the two first guide rails.
[0016] The first sliding block and the second sliding block jointly support the can body of the target pop can to form a pop can slide.
[0017] As preferred, the first guide assembly further comprises a second limiting rod connected to the ends of the two spacing control rods away from the first limiting rod; and the first guide assembly further comprises a magnet arranged on the side of the spacing control rod away from the first limiting rod and used for connecting the first guide assembly and the second guide assembly.
[0018] The first guide assembly and the second guide assembly are connected by a magnet, the structure as a whole is made of steel, the magnet can be attracted to the surface of the second guide assembly to form a closed tank channel, when rapid inspection and cleaning are needed, the first guide assembly and the second guide assembly can be separated. The structure is convenient, does not consume energy, and can be repeatedly used, and the effect does not decrease with the increase of the number of uses, which meets the green principle in the industrial production process.
[0019] Preferably, the first slider and the second slider are both semicylinders, and the end portions of both are provided with fixing rods for connecting with the spacing control rod.
[0020] The first slider and the second slider are both used for supporting the can body of the target pop can, the first slider and the second slider are provided as semicylinders, so that the wear of the first slider and the second slider on the target pop can can be effectively reduced, the product quality is increased, and the unqualified rate of the product is reduced. Meanwhile, the end portions of the first slider and the second slider are provided with fixing rods, so that the stability of the sliders can be effectively increased, the phenomenon of falling off and instability of the sliders is avoided, the damage risk in the use process is reduced, and the service life of the structure is increased.
[0021] Preferably, the second guide assembly comprises a base plate, a plurality of second guide rails are arranged on the base plate, and the guide strip assembly is arranged on the second guide rails.
[0022] The second guide rails are arranged on the base plate of the second guide assembly, the guide strip assembly is convenient to connect and can slide on the guide rails, the relative position of the target pop can is adjusted by the guide strip assembly, and the guide strip assembly is closely attached to the can opening of the target pop can.
[0023] Preferably, the second guide assembly further comprises a third slider arranged on the base plate and connected with the second guide rails for jointly adjusting the position of the target pop can.
[0024] The third slider is also a semicylindrical structure, is closely attached to the bottom of the target pop can, can slide on the second guide rails, jointly adjusts the relative position of the target pop can on the structure with the guide strip assembly, and the semicylindrical structure can reduce the risk of damage to the target pop can and reduce the unqualified rate of the product.
[0025] Preferably, the second guide assembly is treated by plating titanium on a hard alloy surface.
[0026] The second guide assembly of the utility model is treated by plating titanium on a hard alloy surface, so that the surface has better smoothness, the friction coefficient is reduced, the surface wear resistance is improved, the service life of the structure is increased, and the mechanical strength of the structure is increased.
[0027] Therefore, the utility model has the following beneficial effects:
[0028] (1) The utility model adjusts the angle and mode of the can, so that the structure reduces the vacuum from 21inhg to 19inhg during normal operation, saving energy consumption. At the same time, the adsorption vacuum requirement in the production process of two-piece can spraying process is reduced, avoiding the phenomenon that the rotating star wheel will hit the can to cause abnormal product flow into the next process due to the unstable vacuum fluctuation of the can, reducing the scrap rate of the target pop can product.
[0029] (2) The guide bar assembly of the utility model is set to a replaceable and cleanable structure, which reduces the accumulation of paint during use, avoids the occurrence of poor canning, and is beneficial to increasing the canning efficiency.
[0030] (3) The first guide assembly and the second guide assembly of the utility model are connected by a magnet, which ensures the structure closed and reduces energy consumption. The structure can be repeatedly used, and will not cause the effect to decrease with the increase of the number of uses, which meets the green principle in the industrial production process.
[0031] (4) The utility model increases the side plate assembly, and the side plate assembly is detachable, which realizes the need of quick inspection and cleaning.
[0032] (5) The can opening and the can bottom guide bar of the utility model are treated by titanium plating on the surface of hard alloy, which has better surface smoothness and reduces the friction coefficient, and improves the surface wear resistance.
[0033] (6) The utility model is simple to operate, clear in structure, and is beneficial to application and promotion in actual production. DETAILED DESCRIPTION
[0034] Figure 1 It is a schematic view of the can spraying structure;
[0035] Figure 2 It is a schematic view of the guide bar assembly;
[0036] Figure 3 It is a schematic view of the base assembly;
[0037] Figure 4 It is a schematic view of the first guide assembly;
[0038] Figure 5 It is a schematic view of the second guide assembly.
[0039] The following are the labels in the diagram: Base assembly 10; Second connecting structure 11; Second connecting hole 12; Fixing seat 13; Third connecting hole 14; Bolt 15; First guide assembly 20; First connecting structure 21; First connecting hole 22; Spacing control rod 23; First slider 24; First limiting rod 25; First guide rail 26; Second slider 27; Fixing rod 271; Second limiting rod 28; Magnet 29; Guide bar assembly 30; First connecting block 31; Slide rail 32; Second guide assembly 40; Base plate 41; Second guide rail 42; Third slider 43. Detailed Implementation
[0040] The present invention will be further described below with reference to specific embodiments. Those skilled in the art will be able to implement the present invention based on these descriptions. Furthermore, the embodiments of the present invention described below are generally only some, not all, of the embodiments of the present invention. Therefore, all other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention.
[0041] Example 1
[0042] like Figures 1-5 As shown, this embodiment provides an in-can spraying structure, which can be divided into a base assembly 10, a first guide assembly 20, a guide strip assembly 30, and a second guide assembly 40.
[0043] To secure the device in this embodiment to the subsequent device, several third connecting holes 14 can be provided on the fixing seat 13 of the base assembly 10 to facilitate the stability of the entire device. To adjust the can dispensing angle and method of the target can, this invention includes a first guide assembly 20 and a second guide assembly 40, which are rotatably connected. This allows the target can to be brought closer to the can outlet, reducing the pressure required for dispensing and achieving a certain degree of energy saving and emission reduction.
[0044] In order to adjust the relative position of the target pull-tab can, the end of the two parallel spacing control rods 23 of the first guide assembly 20 is provided with a first sliding block 24; it also includes a first limiting rod 25 for limiting the first sliding block 24; the two spacing control rods 23 are each provided with a first guide rail 26, and the first guide assembly 20 further includes a second sliding block 27 in sliding connection with the two first guide rails 26. The first sliding block 24 and the second sliding block 27 jointly support the can body of the target pull-tab can, so as to avoid the target pull-tab can from falling off. The second sliding block 27 can slide on the first guide rail 26 to drive the whole target pull-tab can to roll, thereby providing rolling force for the target pull-tab can to come out of the can. Moreover, the second guide assembly 40 includes a base plate 41, and the base plate 41 is provided with a plurality of second guide rails 42, and the guide rod assembly 30 is connected to the second guide rails 42 and closely connected to the can of the target pull-tab can. The base plate 41 is also provided with a third sliding block 43 which is closely connected to the bottom of the target pull-tab can. The guide rod assembly 30 and the third sliding block 43 jointly adjust the relative position of the target pull-tab can, and the guide rod assembly 30 can adjust the movement direction of the target pull-tab can, thereby playing a role in positioning and adjusting the target pull-tab can.
[0045] On the basis of the above-mentioned embodiments, the connection mode of the first guide assembly 20 and the second guide 10 is further optimized.
[0046] In order to adjust the rotation angle of the first guide assembly 20 and the base assembly 10, the first guide assembly 20 includes a first connecting structure 21 which is provided with a first connecting hole 22; the base assembly 10 includes a second connecting structure 11 which is provided with a second connecting hole 12; the two can be connected by a bolt 15, and the connection angle of the base assembly 10 and the first guide assembly 20 is within 0°-45°, so that the vacuum is reduced from 21inhg to 19inhg in the normal operation process, thereby saving energy consumption.
[0047] On the basis of the above-mentioned embodiments, the first sliding block 24, the second sliding block 27 and the third sliding block 43 are further optimized.
[0048] In order to reduce the wear and tear of the target pull-tab can during production and improve the quality of the product, the first sliding block 24, the second sliding block 27 and the third sliding block 43 are all semicylinders, which can effectively reduce the unqualified rate of the target product. In order to increase the stability of the sliding block and avoid the phenomenon of unstable falling off, the end of the first sliding block 24, the second sliding block 27 and the third sliding block 43 is provided with a fixing rod 271. This can effectively increase the stability of the sliding block, avoid the phenomenon of unstable falling off, reduce the risk of damage during use, and increase the service life of the structure.
[0049] On the basis of the above-mentioned embodiments, the connection mode of the first guide assembly 20 and the second guide assembly is further optimized.
[0050] In order to facilitate the rapid inspection and cleaning of the device, the first guide assembly is convenient to disassemble, and the two distance control rods 23 of the first guide assembly 20 are connected with the second limiting rod 28 at the end away from the first limiting rod 25; the distance control rod 23 is provided with a magnet 29 on the side away from the first limiting rod 25. The second limiting rod 28 can be connected with the subsequent device, and the magnet 29 can be attracted to the surface of the second guide assembly 40 to form a closed tank channel. When rapid inspection and cleaning are needed, the first guide assembly 20 and the second guide assembly 40 can be separated. The structure is convenient and does not consume energy, and can be repeatedly used. The effect does not decrease with the increase of the number of uses, which meets the green principle in industrial production process.
[0051] On the basis of the above-mentioned embodiments, the guide strip assembly 30 is further optimized.
[0052] In order to avoid the accumulation of volatile paint during use, resulting in poor lower tank. The guide strip assembly 30 includes a sliding rail 32 and a first connecting block 31 sleeved on the inner side of the sliding rail 32, and the first connecting block 31 is detachable, which facilitates cleaning and replacement.
[0053] On the basis of the above-mentioned embodiments, the material of the second guide assembly 40 is further optimized.
[0054] In order to increase the mechanical strength of the second guide assembly 40 and make its surface have better smoothness and reduce the friction coefficient, the second guide assembly 40 can be treated with titanium plating on the surface of hard alloy. This treatment can effectively improve the wear resistance of the surface.
[0055] The specific use process of the embodiment is as follows:
[0056] The target pop can falls into the device described in the utility model, and the first guide assembly 20 and the second guide assembly 40 jointly constitute the tank channel of the pop can. The first sliding block 24 of the first guide assembly 20 remains unchanged due to the limiting action of the first limiting rod 25, and the second sliding block 27 slides along the first guide rail 26 on the two distance control rods 23, jointly receiving and pushing the movement of the pop can body. The base plate 41 of the second guide assembly 40 is provided with a plurality of second guide rails 42, and the guide strip assembly 30 is connected to the second guide rail 42, which directly contacts the tank opening side of the target pop can. The base plate 41 is also provided with a third sliding block 43 for contacting the tank bottom side of the target pop can. The above-mentioned device jointly promotes the displacement of the target pop can in the tank channel, and the first sliding block 24, the second sliding block 27 and the third sliding block 44 are all semicylindrical, and the lower part is provided with a long strip fixed rod 27, which reduces the wear of the target pop can.
[0057] The first guiding component 20 and the base component 10, the first connecting hole 22 on the first connecting structure 21 of the first guiding component 20, and the second connecting hole 12 on the base component 10 are connected by the bolt 15. According to the actual need, the angle of the base component 10 and the first guiding component 20 can be adjusted to achieve the purpose of adjusting the angle of the can, and the angle range is 1°-45°.
[0058] When the paint accumulates, the first connecting block 31 of the guide bar component 30 arranged on the second guiding component 40 can be taken out for cleaning, and after cleaning, the first connecting block 31 is put back in the first sliding rail 32. When it is desired to quickly clean the device, the magnet 27 arranged on the first guiding component 20 is separated from the connected second guiding component 40, and the first guiding component 20 is disassembled.
[0059] The second guiding component 40 is treated with titanium plating on the surface of hard alloy, which increases the mechanical strength of the second guiding component 40 and reduces wear.
Claims
1. An in-can spray out-of-can structure, characterized by: The application relates to a device for positioning and adjusting the position of a target pull-ring can, which comprises a base assembly (10) for fixing the device and a subsequent device; a first guide assembly (20) connected with the base assembly (10) and used for receiving and conveying the target pull-ring can; a second guide assembly (40) connected with the base assembly (10) and the first guide assembly (20) and used for forming a rolling path of the target pull-ring can together with the first guide assembly (20), wherein the first guide assembly (20) and the second guide assembly (40) are rotatably connected; and a guide bar assembly (30) arranged on the second guide assembly (40) and used for positioning and adjusting the target pull-ring can.
2. A spray-in-can dispensing structure according to claim 1, wherein: The first guide assembly (20) comprises a first connecting structure (21) provided with a first connecting hole (22); the base assembly (10) comprises a second connecting structure (11) provided with a second connecting hole (12); and the first connecting structure (21) and the second connecting structure (11) are connected by a bolt (15), so that the connecting angle between the base assembly (10) and the first guide assembly (20) can be adjusted within 0-45 degrees.
3. A spray-in-can structure according to claim 1 or 2, wherein: The base assembly (10) is provided with a fixing base (13) provided with a plurality of third connecting holes (14) used for connecting the target device and a subsequent device.
4. A spray-in-can structure according to claim 1 or 2, wherein: The guide bar assembly (30) comprises a sliding rail (32) and a first connecting block (31) sleeved on the inner side of the sliding rail (32).
5. The in-can spray out of tank structure of claim 1, wherein: The first guide assembly (20) comprises two parallel spacing control rods (23); a first sliding block (24) arranged at the end of the two spacing control rods (23); and a first limiting rod (25) connected with the two spacing control rods (23) and used for limiting the first sliding block (24). The two spacing control rods (23) are provided with first guide rails (26), and the first guide assembly (20) further comprises a second sliding block (27) slidably connected with the two first guide rails (26).
6. A spray-in-can structure according to claim 5, wherein: The first guide assembly (20) further comprises a second limiting rod (28) connected with the ends of the two spacing control rods (23) away from the first limiting rod (25); and the first guide assembly (20) further comprises a magnet (29) arranged on the side of the spacing control rod (23) away from the first limiting rod (25) and used for connecting the first guide assembly (20) and the second guide assembly (40).
7. A spray-in-can structure according to claim 5 or 6, wherein: The first sliding block (24) and the second sliding block (27) are both semicylinders, and the ends of the two are provided with fixing rods (271) used for connecting with the spacing control rod (23).
8. The in-can spray out of tank structure of claim 1, wherein: The second guide assembly (40) comprises a base plate (41) provided with a plurality of second guide rails (42); and the guide bar assembly (30) is arranged on the second guide rails (42).
9. A spray-in-can structure according to claim 8, wherein: The second guide assembly (40) further comprises a third sliding block (43) arranged on the base plate (41) and connected with the second guide rails (42) and used for jointly adjusting the position of the target pull-ring can.
10. The in-can spray out of tank structure of claim 1, wherein: The second guide assembly (40) is treated by plating titanium on the surface of hard alloy.