Anodic oxidation tank with lifting structure
By designing an anodizing tank with a lifting structure, the problems of difficulty in adjusting the hangers and insufficient depth of the anodizing tank in existing equipment have been solved, achieving stable suspension and uniform oxidation of the substrate, and improving production efficiency and equipment applicability.
Patent Information
- Application Number
- CN202520446457.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-14
AI Technical Summary
Existing anodizing lifting devices are inconvenient to adjust the lifting tools according to the length of the substrate when hoisting it for oxidation, and the depth of the oxidation tank is limited, making it difficult to ensure that the electrolyte completely immerses the substrate.
An anodizing tank with a lifting structure was designed, including components such as a wastewater tank, an electrolysis box, an electric guide rail, an electric telescopic rod, a support rod, and hooks. Through the combined use of these components, the substrate can be flexibly adjusted and stably suspended, ensuring that the substrate is completely immersed in the electrolyte.
It improves the efficiency of substrate immersion and removal, ensures the uniformity and consistency of anodizing, enhances the flexibility and applicability of the equipment, protects the working environment, avoids equipment corrosion, and improves the smoothness of the production process and ease of operation.
Smart Images

Figure CN223805160U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to anodic oxidation tank technical field especially relates to an anodic oxidation tank with lifting structure. BACKGROUND
[0002] Anodic oxidation film processing is to take the base material as an anode, place it in an electrolyte for electrolysis, and artificially form a protective oxide film on the surface of the base material. This layer of oxide film has protective, decorative and other functional properties. By changing the surface state and performance of the base material, such as surface coloring, improving corrosion resistance, enhancing wear resistance and hardness, and protecting the surface of the base material, etc. When the base material is anodized, a lifting structure will be used.
[0003] The existing anodic oxidation lifting device is inconvenient to adjust the lifting appliance according to the length of the base material when hoisting the base material for oxidation. At the same time, the depth of the oxidation tank is limited, and it is difficult to ensure that the electrolyte completely immerses the base material when directly hanging the base material in the electrolyte. UTILITY MODEL CONTENTS
[0004] The utility model provides an anodic oxidation tank with lifting structure, which aims to solve the problem of the existing anodic oxidation lifting device being inconvenient to adjust the lifting appliance according to the length of the base material when hoisting the base material for oxidation.
[0005] To solve the above problems, the utility model is realized in the following way: an anodic oxidation tank with lifting structure includes a sewage pool for collecting splashed electrolyte, an electrolysis tank installed in the sewage pool for storing electrolyte, an electric guide rail fixed on the outer wall of the electrolysis tank for assisting in adjusting the position of the base material, an electric telescopic rod arranged on the electric guide rail for assisting in adjusting the height of the base material, a support rod installed on the electric telescopic rod through a connecting plate, and a hook movably hung on the support rod for supporting the base material.
[0006] Preferably, the support rod is provided with a limiting opening for stabilizing the position of the hook, the hook is clamped in the limiting opening, the hook is C-shaped and can be hung outside the base material, and the hook can extend into the electrolysis tank.
[0007] Preferably, a support frame is slidably installed in the sewage pool, a support plate for supporting the base material after oxidation processing is installed on the top of the support frame, and the support plate is U-shaped.
[0008] Preferably, a sliding groove is arranged on the inner wall of the bottom of the sewage pool, a sliding block connected with the support frame is slidably installed in the sliding groove, and rolling balls in contact with the inner wall of the sliding groove are inlaid on the outer wall of the sliding block.
[0009] Preferably, the electric guide rail is composed of a rail frame mounted on the outer wall of the electrolytic tank, a motor box fixed on the rail frame, a threaded rod rotatably mounted in the rail frame and connectable with the output shaft of the motor box, and an adjusting block threaded on the threaded rod and connected with the electric telescopic rod, the adjusting block being in sliding contact with the inner wall of the rail frame.
[0010] Preferably, one side of the sewage tank is provided with a sewage pipe for discharging waste electrolyte and sewage generated during washing of the substrate, and a plug cap is threaded on the sewage pipe to close the sewage pipe.
[0011] Preferably, the electric telescopic rod is provided with a telescopic protective sleeve for protecting the electric telescopic rod, the telescopic protective sleeve being composed of an outer cylinder and an inner cylinder, the outer cylinder being fixedly sleeved on the electric telescopic rod, the inner cylinder being mounted on the output rod of the electric telescopic rod and being retractable into the outer cylinder, and the outer wall of the inner cylinder being in sliding connection with the inner wall of the outer cylinder.
[0012] Preferably, the motor box is composed of a housing, a servo motor and a gear reducer, the housing being mounted on the rail frame, the servo motor and the gear reducer being arranged in the housing, the output shaft of the servo motor being connected with the input shaft of the gear reducer, and the output shaft of the gear reducer being connected with the threaded rod.
[0013] Compared with the related art, the anodizing tank with a lifting structure has the following advantages
[0014] Advantages:
[0015] Compared with the prior art, the anodizing tank with a lifting structure effectively prevents splashing and overflow of the electrolyte, not only protects the working environment from pollution, but also avoids damage to the equipment caused by electrolyte corrosion, thereby ensuring long-term stable operation of the production line. The support frame and the support plate in the sewage tank are designed to facilitate the removal and subsequent processing of the substrate after oxidation processing, further improving the smoothness and efficiency of the production process. The introduction of the electric guide rail and the electric telescopic rod allows the position and height of the substrate to be flexibly adjusted, which not only facilitates the transfer, washing and unloading process of the substrate, but also allows the substrate to be precisely immersed or removed from the electrolyte, thereby ensuring the uniformity and consistency of anodizing. The design of the hook and the limiting port allows the substrate to be stably hung in the electrolytic tank and the position to be adjusted as needed to adapt to substrates of different sizes, which not only improves the flexibility and applicability of the equipment, but also makes the operation more convenient and efficient. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1It is the main view structural schematic drawing of the anode oxidation tank with the lifting structure provided by the utility model;
[0017] Figure 2 It is the three-dimensional structure schematic drawing of the electric guide rail in the utility model;
[0018] Figure 3 It is Figure 1 It is the enlarged structure schematic drawing of the A part shown in the figure;
[0019] Figure 4 It is the overhead structure schematic drawing of the electrolytic tank and sewage pool 1 in the utility model.
[0020] The drawing mark: 1, sewage pool, 2, electrolytic tank, 3, electric guide rail, 4, electric telescopic rod, 5, connecting plate, 6, support rod, 7, hook, 8, limit mouth, 9, sliding groove, 10, sliding block, 11, support frame, 12, support plate, 13, blow-off pipe, 14, plug cap, 15, rail frame, 16, motor box, 17, threaded rod, 18, adjusting block. DETAILED DESCRIPTION
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application; the description and the drawings are to be regarded as illustrative in nature and are not intended to limit the application; the terminology used in the description and the claims of the present application and the above description of drawings includes the terms specifically mentioned above as well as their derivatives.
[0022] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase "in an embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily all directed to the same embodiment, or to a single alternative embodiment. It is explicitly contemplated that embodiments described herein can be combined with each other.
[0023] The utility model embodiment provides a kind of anode oxidation tank with lifting structure, such as Figures 1-4As shown, the anodizing tank with lifting structure comprises a sewage pool 1 for collecting splashed electrolyte, an electrolysis box 2 mounted in the sewage pool 1 for storing electrolyte, an electric guide rail 3 fixed on the outer wall of the electrolysis box 2 for assisting in adjusting the position of the base material, an electric telescopic rod 4 arranged on the electric guide rail 3 for assisting in adjusting the height of the base material, a support rod 6 mounted on the electric telescopic rod 4 through a connecting plate 5, and a hook 7 movably hung on the support rod 6 for supporting the base material.
[0024] In the embodiment, the sewage pool 1 is used for collecting splashed electrolyte, preventing environmental pollution or equipment corrosion caused by electrolyte overflow, keeping the working environment clean and safe, the electrolysis box 2 is used for storing electrolyte, providing necessary electrolytic environment for the anodizing process of the base material, and is the core working area, the electric guide rail 3 is used for assisting in adjusting the position of the base material, so as to facilitate the transfer of the base material to the area far away from the electrolysis box 2 for rinsing and discharging, the electric telescopic rod 4 is used for assisting in adjusting the height of the base material, facilitating the immersion or extraction of the base material into or out of the electrolyte, the connecting plate 5 serves as a connecting component between the electric telescopic rod 4 and the support rod 6, ensuring the stability and reliability of the structure, and facilitating installation and maintenance, the support rod 6 provides support for the hook 7, ensuring that the hook 7 and the hung base material can be stably hung in the electrolysis box 2, and when the base material is long, it can be placed horizontally on the hook 7 to immerse it in the electrolyte, the hook 7 is the connecting point between the base material and the lifting device, and the design of the hook 7 facilitates quick hanging and taking down of the base material, and the movable hanging manner enables the hook 7 to adjust the position as needed to adapt to base materials of different sizes.
[0025] In the further preferred embodiment of the utility model, the support rod 6 is provided with a limiting opening 8 for stabilizing the position of the hook 7, the hook 7 is clamped in the limiting opening 8, the hook 7 is C-shaped and can be hung outside the base material, and the hook 7 can extend into the electrolysis box 2.
[0026] In the embodiment, the limiting opening 8 is used for stabilizing the position of the hook 7, when the hook 7 is clamped in the limiting opening 8, accidental movement of the hook 7 during electrolysis due to electrolyte flow or base material weight can be prevented, thereby ensuring stable hanging of the base material and smooth anodizing, the C-shaped hook 7 can also extend into the electrolysis box 2, ensuring that the base material can be completely immersed in the electrolyte, improving the uniformity and efficiency of anodizing, and the design of the C-shaped hook 7 enables the device to be applicable to base materials of different shapes and sizes, improving the flexibility and applicability of the equipment.
[0027] In the further preferred embodiment of the utility model, a support frame 11 is slidably installed in the sewage pool 1, a support plate 12 for supporting the base material after oxidation processing is installed on the top of the support frame 11, and the support plate 12 is U-shaped.
[0028] In the embodiment, the sliding installation design of the support frame 11 in the sewage tank 1 makes the support plate 12 (and the substrate thereon) can be conveniently moved as needed, facilitating the taking out and subsequent processing of the substrate, and the U-shaped design not only provides sufficient support area, but also facilitates the placement and taking out of the substrate.
[0029] In the further preferred embodiment of the utility model, the sewage tank 1 is provided with a chute 9 on the inner wall of the bottom, the chute 9 is slidably installed with a sliding block 10 connected with the support frame 11, and the outer wall of the sliding block 10 is embedded with a ball in contact with the inner wall of the chute 9.
[0030] In the embodiment, the chute 9 provides a guiding and supporting structure for the sliding block 10, so that the support frame 11 and the support plate 12 thereon can slide smoothly in the sewage tank 1, and the design of the chute 9 ensures the stability and accuracy of the sliding block 10 (and the support frame 11) during movement, the sliding block 10 is a key component connecting the support frame 11 and the chute 9, which allows the support frame 11 to slide freely in the chute 9, thereby achieving the convenient movement of the support plate 12 and the substrate thereon, the design of the sliding block 10 takes into account the wear resistance and strength to ensure the reliability of long-term use, and the design of the ball significantly reduces the friction of the sliding block 10 when moving in the chute 9, so that the support frame 11 and the support plate 12 thereon can slide more easily, which not only improves the convenience of operation, but also reduces the wear of the components and prolongs the service life of the equipment.
[0031] In the further preferred embodiment of the utility model, the electric guide rail 3 is composed of a rail frame 15 installed on the outer wall of the electrolytic tank 2, a motor box 16 fixed on the rail frame 15, a threaded rod 17 rotatably installed in the rail frame 15 and connectable with the output shaft of the motor box 16, and an adjusting block 18 threadedly sleeved on the threaded rod 17, the adjusting block 18 is connected with the electric telescopic rod 4, and the adjusting block 18 is in sliding contact with the inner wall of the rail frame 15.
[0032] In the embodiment, the rail frame 15 provides a stable support structure for the electric guide rail 3, which is fixedly installed on the outer wall of the electrolytic tank 2, ensuring the stability and accuracy of the electric guide rail 3, the motor box 16 is the power source of the electric guide rail 3, providing power for the rotation of the threaded rod 17, the threaded rod 17 is one of the core components of the electric guide rail 3, which is rotatably installed in the rail frame 15 and connected with the output shaft of the motor box 16, when the motor box 16 works, the output shaft drives the threaded rod 17 to rotate, thereby driving the adjusting block 18 to move on the threaded rod 17, the adjusting block 18 is connected with the electric telescopic rod 4, so when the adjusting block 18 moves, it will drive the electric telescopic rod 4 and the support rod 6 and the hook 7 thereon to move together.
[0033] The further preferred embodiment of the utility model discloses, one side of sewage pool 1 is equipped with the sewage pipe 13 for discharging the sewage of abandoned electrolyte and the washing substrate, the plug cap 14 for closing the sewage pipe 13 is threadedly installed on the sewage pipe 13.
[0034] In the embodiment, the sewage pipe 13 is the channel for discharging the sewage of abandoned electrolyte and the washing substrate, it is connected sewage pool 1, so that the abandoned electrolyte and the sewage in sewage pool 1 can conveniently be discharged, the design of sewage pipe 13 considers the convenience and efficiency of discharge, to ensure that sewage pool 1 can continuously and effectively collect and handle sewage, the plug cap 14 is a detachable component, by threadedly connecting on the sewage pipe 13, when needing to discharge sewage, can unscrew the plug cap 14, make sewage discharge through the sewage pipe 13, after discharging, again screw the plug cap 14 tightly, to close the sewage pipe 13, prevent the subsequent sewage overflow.
[0035] The further preferred embodiment of the utility model discloses, the telescopic protection sleeve for protecting the electric telescopic rod 4 is provided with, the telescopic protection sleeve is composed of outer cylinder and inner cylinder, the outer cylinder fixed sleeve is set in the electric telescopic rod 4 outside, the inner cylinder is installed on the output rod of the electric telescopic rod 4 and can be recycled to the outer cylinder, the outer wall of the inner cylinder and the inner wall of the outer cylinder are slidingly connected.
[0036] In the embodiment, the telescopic protection sleeve is designed for protecting the electric telescopic rod 4, the outer cylinder is fixedly sleeved on the outside of the electric telescopic rod 4, provides a stable support and protection layer, the inner cylinder is installed on the output rod of the electric telescopic rod 4 and is designed to be recycled to the outer cylinder, when the output rod of the electric telescopic rod 4 telescopes, the inner cylinder moves along, but its outer wall always keeps slidingly connected with the inner wall of the outer cylinder, to ensure the stability and smoothness of the inner cylinder during movement.
[0037] The further preferred embodiment of the utility model discloses, the motor box 16 is composed of shell, servo motor and gear reducer, the shell is installed on the rail frame 15, the servo motor and the gear reducer are all arranged in the shell, the output shaft of the servo motor is connected with the input shaft of the gear reducer, the output shaft of the gear reducer is connected with the threaded rod 17.
[0038] In the embodiment, the shell provides a stable support and protection environment for the servo motor and the gear reducer, and the shell is designed to consider heat dissipation, dust prevention and waterproof performance to ensure long-term stable operation of the internal motor, the servo motor is a high-precision and high-reliability motor with fast response and precise positioning, in the utility model, the servo motor is used as a power source, drives the gear reducer to rotate through the output shaft, the gear reducer is used for reducing the output rotating speed of the servo motor, and the output torque is increased, through the speed reduction effect of the gear, the high-speed low-torque output of the servo motor can be converted into low-speed high-torque output, so that the rotation requirement of the threaded rod 17 is met, and the design of the gear reducer considers transmission efficiency and noise control to ensure smooth operation of the electric guide rail 3.
[0039] In summary, compared with the related art, the device effectively prevents the spatter and overflow of the electrolyte through the structural arrangement of the sewage tank 1 and the electrolysis box 2, not only protects the working environment from pollution, but also avoids damage to the equipment caused by electrolyte corrosion, thereby ensuring long-term stable operation of the production line, the design of the support frame 11 and the support plate 12 in the sewage tank 1 enables the substrate after oxidation processing to be conveniently taken out and subsequently processed, further improving the smoothness and efficiency of the production process, the introduction of the electric guide rail 3 and the electric telescopic rod 4 enables the position and height of the substrate to be flexibly adjusted, which not only facilitates the transfer, flushing and discharging process of the substrate, but also enables the substrate to be accurately immersed or taken out of the electrolyte, thereby ensuring the uniformity and consistency of anodic oxidation, the design of the hook 7 and the limiting opening 8 enables the substrate to be stably hung in the electrolysis box 2, and the position can be adjusted as required to adapt to substrates of different sizes, which not only improves the flexibility and applicability of the equipment, but also makes the operation more convenient and efficient.
[0040] In several embodiments provided in the present application, it should be understood that the disclosed device can be implemented in other ways.
[0041] The above embodiments are only used to illustrate the technical solutions of the present application, and not to limit the protection scope of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments. Based on these embodiments, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application. Although the present application has been described in detail with reference to the above embodiments, those skilled in the art can still combine, add or delete the features in the embodiments of the present application according to the circumstances without creative labor, so as to obtain different other technical solutions which do not deviate from the concept of the present application, and these technical solutions also belong to the scope of the present application.
Claims
1. An anodizing tank with a lifting structure, characterized by, The utility model relates to a kind of electrolytic tank and electrolytic tank system, including: Sewage pool for collecting spilled electrolyte; Electrolytic tank mounted in the sewage pool for storing electrolyte; Electric guide rail fixed on the outer wall of the electrolytic tank for assisting in adjusting the position of the substrate; Electric telescopic rod arranged on the electric guide rail for assisting in adjusting the height of the substrate; Supporting rod mounted on the electric telescopic rod through connecting plate; Hook movably hung on the supporting rod for supporting the substrate.
2. The lift structure-equipped anodizing tank according to claim 1, wherein The supporting rod is provided with a limiting opening for stabilizing the position of the hook, and the hook is clamped in the limiting opening. The hook is C-shaped and can be hung outside the substrate. The hook can extend into the electrolytic tank.
3. The lift structure-equipped anodizing tank according to claim 1, wherein A supporting frame is slidably mounted in the sewage pool. A supporting plate for supporting the substrate after oxidation processing is mounted on the top of the supporting frame. The supporting plate is U-shaped.
4. The lift structure-equipped anodizing tank according to claim 3, wherein A sliding groove is provided on the inner wall of the bottom of the sewage pool. A sliding block connected to the supporting frame is slidably mounted in the sliding groove. Rolling balls are embedded on the outer wall of the sliding block and in contact with the inner wall of the sliding groove.
5. The lift structure-equipped anodizing tank according to claim 1, wherein The electric guide rail is composed of a rail frame mounted on the outer wall of the electrolytic tank, a motor box fixed on the rail frame, a threaded rod rotatably mounted in the rail frame and connectable with the output shaft of the motor box, and an adjusting block threaded on the outer surface of the threaded rod. The adjusting block is connected to the electric telescopic rod, and the adjusting block is in sliding contact with the inner wall of the rail frame.
6. The lift structure-equipped anodizing tank according to claim 1, wherein A sewage discharge pipe is provided on one side of the sewage pool for discharging waste electrolyte and sewage generated by washing the substrate. A plug is threaded on the sewage discharge pipe to close the sewage discharge pipe.
7. The lift structure-equipped anodizing tank according to claim 1, wherein A telescopic protective sleeve is provided on the outer surface of the electric telescopic rod for protecting the electric telescopic rod. The telescopic protective sleeve is composed of an outer cylinder and an inner cylinder. The outer cylinder is fixedly sleeved on the outer surface of the electric telescopic rod. The inner cylinder is mounted on the output rod of the electric telescopic rod and can be withdrawn into the outer cylinder. The outer wall of the inner cylinder is in sliding connection with the inner wall of the outer cylinder.
8. The lift structure-equipped anodizing tank according to claim 5, wherein The motor box is composed of a housing, a servo motor and a gear reducer. The housing is mounted on the rail frame. The servo motor and the gear reducer are arranged in the housing. The output shaft of the servo motor is connected to the input shaft of the gear reducer. The output shaft of the gear reducer is connected to the threaded rod.