Antioxidant coating assembly
By designing an antioxidant coating component, the problem of convenient addition and replacement of antioxidants during the coating process on the fishbone line surface was solved. It realizes automatic replenishment and liquid level control of antioxidants, reduces the waste of antioxidants and the problem of incomplete coating, and improves the convenience and efficiency of operation.
Patent Information
- Application Number
- CN202423150032.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-19
AI Technical Summary
In the existing technology, the coating operation of the anti-oxidant on the surface of the fishbone line cannot be easily added or replaced, and the liquid level in the anti-oxidant tank is difficult to control, resulting in waste of anti-oxidant and incomplete coating.
An antioxidant coating assembly was designed, including a frame, coating tank, lifting plate, guide wheel assembly, glue valve assembly, ball valve assembly, and float sensor, etc., to realize automatic replenishment and liquid level control of antioxidant, and ensure the airtightness of the coating tank and coating integrity.
It enables timely replenishment and removal of antioxidants, reduces the volatilization and waste of antioxidants, ensures the integrity of the coating and stable control of the liquid level, and improves the convenience and efficiency of operation.
Smart Images

Figure CN223683867U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of antioxidant coating, especially antioxidant coating assembly. BACKGROUND
[0002] One of the steps of fishbone line in the production process is coating antioxidant on the surface of fishbone line, and the current antioxidant coating operation is to immerse the product line into the operation of connecting the antioxidant in advance and pull out, but this kind of mode cannot guarantee the liquid level height of the antioxidant tank well, and cannot conveniently add and replace the internal antioxidant. UTILITY MODEL CONTENTS
[0003] The utility model solves the technical problem to provide an antioxidant coating assembly convenient to add and replace antioxidant.
[0004] The utility model solves the technical problem adopting the technical scheme that antioxidant coating assembly, including frame, the material inlet end and the material outlet end of frame all are provided with material inlet guide component and material outlet guide component, be provided with coating component in the frame,
[0005] The coating component includes coating groove, the lifting plate and the lifting drive mechanism that drives the lifting plate to make lifting motion are provided above the coating groove, the coating guide component for making the product immerse in the coating groove is provided at the both ends of the lifting plate, the glue valve component for coating the product is provided in the middle part of the lifting plate, the ball valve component is provided at the bottom of the coating groove, the first material receiving frame is provided at the bottom of the ball valve component.
[0006] Further, the material inlet end and the material outlet end of the frame are respectively provided with a material inlet door and a material outlet door, the material inlet guide component includes a first guide wheel set and a second guide wheel set, the first guide wheel set is installed on the inner side of the material inlet door, and the second guide wheel set is installed on the outer side of the material inlet door.
[0007] The material outlet guide component includes a third guide wheel set and a fourth guide wheel set, the third guide wheel set is installed on the inner side of the material outlet door, and the fourth guide wheel set is installed on the outer side of the material outlet door.
[0008] The first guide wheel set, the second guide wheel set, the third guide wheel set and the fourth guide wheel set all include an upper guide wheel and a lower guide wheel below the upper guide wheel, and the upper guide wheel and the lower guide wheel are all provided with annular grooves, so that the product can pass through the annular grooves of the upper guide wheel and the lower guide wheel.
[0009] It also includes a material inlet aperture provided on the material inlet door and a material outlet aperture provided on the material outlet door, the material inlet aperture is located in the middle of the first guide wheel set, and the material outlet aperture is located in the middle of the third guide wheel set.
[0010] Further, the coating guide assembly comprises a first guide wheel and a second guide wheel close to a second guide wheel set, a third guide wheel and a fourth guide wheel close to a third guide wheel set, the second guide wheel is below the first guide wheel, the fourth guide wheel is below the third guide wheel, the height of the first guide wheel is at the second guide wheel set, and the height of the third guide wheel is at the third guide wheel set.
[0011] Further, the coating tank is provided with a baffle and a baffle driving mechanism for driving the baffle to move to the surface of the coating tank, a floating ball mounting cavity is arranged on the coating tank, a floating ball sensor is arranged in the floating ball mounting cavity, the floating ball mounting cavity is communicated with the coating tank cavity, and a position avoiding groove for avoiding the glue valve assembly is arranged on the baffle.
[0012] Further, the coating tank is provided with a baffle and a baffle driving mechanism for driving the baffle to move to the surface of the coating tank, a floating ball mounting cavity is arranged on the coating tank, a floating ball sensor is arranged in the floating ball mounting cavity, the floating ball mounting cavity is communicated with the coating tank cavity, and a position avoiding groove for avoiding the glue valve assembly is arranged on the baffle.
[0013] The beneficial effects of the present application are as follows:
[0014] 1. In the structure, the glue valve assembly, the ball valve assembly and the first material receiving frame are arranged to realize timely supplement of the antioxidant, and when the antioxidant coating operation is not performed for a long time, the ball valve is opened to realize timely discharge of the antioxidant.
[0015] 2. In the structure, the inlet guide assembly and the outlet guide assembly are arranged to realize accurate positioning of the product, and the inlet aperture is arranged on the inlet door and the outlet aperture is arranged on the outlet door, so that the exposure of the coating tank in the air is reduced, the volatilization is reduced, and the waste of the antioxidant is reduced.
[0016] 3. In the structure, the coating guide assembly is arranged to realize the guidance of the product, so that the product is immersed in the coating tank as a whole, and the completeness of the coating is ensured.
[0017] 4. In the structure, the baffle is arranged to realize the blocking of the surface of the coating tank, so that the volatilization of the antioxidant is reduced, and the liquid level is controlled through the cooperation of the floating ball sensor, so that when the liquid level is insufficient, the glue valve assembly is controlled to perform liquid supplementing operation. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The internal structure of the antioxidant coating assembly of the embodiment of the present application.
[0019] Figure 2 The structure of the antioxidant coating assembly of the embodiment of the present application.
[0020] The figure is marked: rack 1, coating tank 2, lifting plate 3, lifting drive mechanism 4, glue valve assembly 5, ball valve assembly 6, first receiving frame 7, first guide wheel set 8, second guide wheel set 9, third guide wheel set 10, inlet 12, outlet 13, first guide wheel 14, second guide wheel 15, third guide wheel 16, fourth guide wheel 17, baffle 18, baffle drive mechanism 19, float ball sensor 20, avoiding slot 21, second receiving frame 22. DETAILED DESCRIPTION
[0021] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the specific embodiments of the utility model will be described in detail below with reference to the drawings.
[0022] As shown in Figure 1 The embodiment of the application discloses an antioxidant coating assembly, which comprises a rack 1, inlet guide assemblies and outlet guide assemblies are arranged at the inlet end and the outlet end of the rack 1, and a coating assembly is arranged in the rack 1.
[0023] The coating assembly comprises a coating tank 2, a lifting plate 3 and a lifting drive mechanism 4 for driving the lifting plate 3 to move up and down are arranged above the coating tank 2, coating guide assemblies for immersing products into the coating tank 2 are arranged at both ends of the lifting plate 3, a glue valve assembly 5 for coating products is arranged in the middle of the lifting plate 3, a ball valve assembly 6 is arranged at the bottom of the coating tank 2, and a first receiving frame 7 is arranged at the bottom of the ball valve assembly 6.
[0024] In specific work, under the guidance of the inlet guide assemblies, the products are sent into the rack 1, and then the products are immersed into the coating tank 2 to perform the antioxidant coating operation after being guided by the coating guide assemblies, meanwhile, the height of the coating guide assemblies can be driven by the lifting drive mechanism 4, so that the products bypassing the coating guide assemblies can be completely immersed into the coating tank 2, when the antioxidant in the coating tank 2 needs to be supplemented, the glue valve assembly 5 is opened to supplement the antioxidant into the coating tank 2, because the antioxidant has high volatility, when the coating operation is not performed for a long time, the ball valve assembly 6 can be manually opened, so that the antioxidant falls into the first receiving frame 7 at the bottom for next use.
[0025] In the structure, the antioxidant can be supplemented in time by the glue valve assembly 5, the ball valve assembly 6 and the first receiving frame 7, and when the antioxidant coating operation is not performed for a long time, the antioxidant can be discharged in time by opening the ball valve.
[0026] The feeding end and the discharging end of the rack 1 are respectively provided with a feeding door and a discharging door, the feeding guide assembly comprises a first guide wheel set 8 and a second guide wheel set 9, the first guide wheel set 8 is installed on the inner side of the feeding door, and the second guide wheel set 9 is installed on the outer side of the feeding door.
[0027] The discharging guide assembly comprises a third guide wheel set 10 and a fourth guide wheel set, the third guide wheel set 10 is installed on the inner side of the discharging door, and the fourth guide wheel set is installed on the outer side of the discharging door.
[0028] The first guide wheel set 8, the second guide wheel set 9, the third guide wheel set 10 and the fourth guide wheel set all comprise an upper guide wheel and a lower guide wheel located below the upper guide wheel, and annular grooves are arranged on the upper guide wheel and the lower guide wheel, so that the product can pass through the annular grooves of the upper guide wheel and the lower guide wheel.
[0029] The feeding door is further provided with a feeding aperture 12, and the discharging door is further provided with a discharging aperture 13, the feeding aperture 12 is located in the middle of the first guide wheel set 8, and the discharging aperture 13 is located in the middle of the third guide wheel set 10.
[0030] It should be explained that the rack 1 of the structure is a closed environment, the product can enter from the feeding aperture 12 and flow out from the discharging aperture 13.
[0031] Specifically, when working, the product enters the rack 1 from the feeding aperture 12 after being guided by the first guide wheel set 8, then enters the coating assembly for coating operation after being guided by the second guide wheel set 9, then the product after coating is guided by the third guide wheel set 10 and passes out from the discharging aperture 13 on the discharging door, and then moves to the position direction downwardly by the fourth guide wheel set.
[0032] In the structure, the feeding guide assembly and the discharging guide assembly are arranged, the accurate guiding and positioning of the product can be realized, the feeding aperture 12 is arranged on the feeding door and the discharging aperture 13 is arranged on the discharging door, so that the exposure of the coating groove 2 in the air can be reduced, the volatilization is reduced, and the waste of the antioxidant is reduced.
[0033] In the embodiment, the coating guide assembly comprises a first guide wheel 14 and a second guide wheel 15 close to the second guide wheel set 9, and a third guide wheel 16 and a fourth guide wheel 17 close to the third guide wheel set 10, the second guide wheel 15 is located below the first guide wheel 14, the fourth guide wheel 17 is located below the third guide wheel 16, the height of the first guide wheel 14 is located at the second guide wheel set 9, and the height of the third guide wheel 16 is located at the third guide wheel set 10.
[0034] Specifically, when the product needs to be coated, the product passes the first guide wheel 14 and the second guide wheel 15 in sequence, is immersed in the coating tank 2, then passes the fourth guide wheel 17 and the third guide wheel 16, and is taken out through the third guide wheel set 10.
[0035] In the structure, the coating guide assembly is arranged to guide the product, so that the product is immersed in the coating tank 2 as a whole, and the completeness of coating is ensured.
[0036] In the embodiment, the coating tank 2 is provided with a baffle 18 and a baffle driving mechanism 19 for driving the baffle 18 to move to the surface of the coating tank 2. A floating ball mounting cavity is arranged on the coating tank 2, a floating ball sensor 20 is arranged in the floating ball mounting cavity, the floating ball mounting cavity is in communication with the cavity of the coating tank 2, and a position-avoiding groove 21 for avoiding the glue valve assembly 5 is arranged on the baffle 18.
[0037] Specifically, when the coating operation is performed, the baffle driving mechanism 19 drives the baffle 18 to move towards the coating tank 2, so that the baffle 18 covers the coating tank 2. When the liquid level reaches the set height, the anti-oxidant liquid makes the floating ball sensor 20 float at the specified height. When the liquid level decreases, the floating ball sensor 20 also decreases, which means that the height is not satisfied at this time. The floating ball sensor 20 sends a signal, the glue valve assembly 5 is opened, and the anti-oxidant is supplemented into the coating tank 2, thereby realizing uninterrupted coating operation.
[0038] In the structure, the baffle 18 is arranged to block the surface of the coating tank 2, thereby reducing the volatilization of the anti-oxidant. The floating ball sensor 20 is used in cooperation to control the liquid level, so that when the liquid level is insufficient, the glue valve assembly 5 is controlled to supplement the liquid.
[0039] In the embodiment, the coating tank 2 is provided with a second material receiving frame 22 for receiving the overflow material.
[0040] Specifically, when the floating ball sensor 20 fails, the glue valve assembly 5 is always supplementing the anti-oxidant into the coating tank 2. At this time, the anti-oxidant will overflow from the coating tank 2, and the overflowed anti-oxidant will fall into the second material receiving frame 22 for subsequent use.
[0041] In the structure, the second material receiving frame 22 is arranged to receive the overflowed anti-oxidant, thereby preventing the anti-oxidant from overflowing on the table surface and affecting the subsequent cleaning.
[0042] The above-described specific embodiments further specifically describe the purposes, technical solutions and beneficial effects of the present application, and it should be understood that the above-described specific embodiments are merely examples of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An antioxidant-coated component characterized by: The machine frame (1) is provided with an inlet guide assembly and an outlet guide assembly at the inlet end and the outlet end of the machine frame (1), and the machine frame (1) is provided with a coating assembly inside; The coating assembly comprises a coating tank (2), a lifting plate (3) arranged above the coating tank (2), a lifting driving mechanism (4) for driving the lifting plate (3) to perform lifting movement, a coating guide assembly arranged at both ends of the lifting plate (3) for immersing products into the coating tank (2), a glue valve assembly (5) arranged at the middle of the lifting plate (3) for coating the products, a ball valve assembly (6) arranged at the bottom of the coating tank (2), and a first material receiving frame (7) arranged at the bottom of the ball valve assembly (6).
2. The antioxidant-coated component of claim 1, wherein: The machine frame (1) is provided with an inlet door and an outlet door at the inlet end and the outlet end of the machine frame (1), respectively, the inlet guide assembly comprises a first guide wheel set (8) and a second guide wheel set (9), the first guide wheel set (8) is installed on the inner side of the inlet door, and the second guide wheel set (9) is installed on the outer side of the inlet door. The outlet guide assembly comprises a third guide wheel set (10) and a fourth guide wheel set, the third guide wheel set (10) is installed on the inner side of the outlet door, and the fourth guide wheel set is installed on the outer side of the outlet door. The first guide wheel set (8), the second guide wheel set (9), the third guide wheel set (10) and the fourth guide wheel set each comprise an upper guide wheel and a lower guide wheel arranged below the upper guide wheel, and the upper guide wheel and the lower guide wheel are each provided with an annular groove, so that the products can pass through the annular grooves of the upper guide wheel and the lower guide wheel. The machine frame (1) is provided with an inlet guide assembly and an outlet guide assembly at the inlet end and the outlet end of the machine frame (1), and the machine frame (1) is provided with a coating assembly inside; 3. The antioxidant-coated component of claim 2, wherein: The coating guide assembly comprises a first guide wheel (14) and a second guide wheel (15) close to the second guide wheel set (9), a third guide wheel (16) and a fourth guide wheel (17) close to the third guide wheel set (10), the second guide wheel (15) is arranged below the first guide wheel (14), the fourth guide wheel (17) is arranged below the third guide wheel (16), the height of the first guide wheel (14) is located at the second guide wheel set (9), and the height of the third guide wheel (16) is located at the third guide wheel set (10).
4. The antioxidant-coated component of claim 1, wherein: One side of the coating tank (2) is provided with a baffle (18) and a baffle driving mechanism (19) for driving the baffle (18) to move to the surface of the coating tank (2), a floating ball mounting cavity is arranged on the coating tank (2), a floating ball sensor (20) is arranged in the floating ball mounting cavity, the floating ball mounting cavity is in communication with the cavity of the coating tank (2), and a position-avoiding groove (21) for avoiding the glue valve assembly (5) is arranged on the baffle (18).
5. The antioxidant-coated component of claim 1, wherein: A second material receiving frame (22) for receiving overflow material is arranged on the side edge of the coating tank (2).