Aluminum profile oxidation hanger

By designing an aluminum profile anodizing fixture, and utilizing a U-shaped bracket and drive mechanism, multiple tubular aluminum profiles can be clamped simultaneously, solving the problem of laborious hanging of a single tube in the existing technology, and improving hanging efficiency and ease of operation.

CN223705740UActive Publication Date: 2025-12-23HANGZHOU DINGFENG STATIONERY PACKING CO LTD
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Patent Information

Application Number
CN202520040976.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-23
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

In the existing oxidation process for tubular aluminum profiles, hanging a single tube is laborious and troublesome, especially for long tubes which require two people to operate together.

Method used

An aluminum profile anodizing fixture was designed, including a U-shaped bracket, a sliding bracket, a drive mechanism, and a support plate. The drive mechanism controls the movement of the bracket and the support plate to achieve synchronous clamping and fixing of multiple tubular aluminum profiles.

Benefits of technology

This technology enables the simultaneous and labor-saving hanging of multiple tubular aluminum profiles, improving hanging efficiency, reducing manpower consumption, and ensuring the smooth progress of the anodizing process.

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Abstract

The utility model provides an aluminum profile oxidation hanging tool which comprises a U-shaped hanging frame and a plurality of aluminum profiles, the hanging plates are connected to the bottom of the hanging frame in a sliding mode, the number of the hanging plates is two, and the two hanging plates are symmetrically arranged relative to the hanging frame. The first driving mechanism is used for controlling the two hanging plates to get close to each other or get away from each other; the multiple groups of expanding and supporting plates are mounted on the hanging plate, and each group of expanding and supporting plates comprises two arc-shaped sub-plates which are arranged up and down; each tubular aluminum profile is supported by two groups of expanding and supporting plates with the same height on the two hanging plates; the second driving mechanism is used for controlling the multiple sets of expanding and supporting plates to fix the multiple tubular aluminum profiles from the two ends of the multiple tubular aluminum profiles at the same time. The loading mechanism is installed on the side face of the hanging frame and used for synchronously conveying the multiple tubular aluminum profiles to the position between the two hanging plates. According to the tubular aluminum profile hanging device, the two ends of a plurality of tubular aluminum profiles can be conveniently clamped at the same time, more convenience and labor saving are achieved, and the hanging efficiency of the tubular aluminum profiles is improved.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the field of oxidation hangers, in particular to an aluminum profile oxidation hanger. BACKGROUND

[0002] In the oxidation process of aluminum profiles, a hanger is needed to suspend the aluminum profiles so that the aluminum profiles can maintain a stable position in the oxidation tank, thereby ensuring the smooth progress of the oxidation work.

[0003] Currently, in the oxidation process of tubular aluminum profiles, it is generally necessary to clamp and place the aluminum profiles one by one. If the pipe is too long, two people are needed to clamp and place it from both ends. It is troublesome and laborious to place the tubular aluminum profiles. CONTENT OF THE UTILITY MODEL

[0004] The present disclosure provides an aluminum profile oxidation hanger that can conveniently clamp both ends of multiple tubular aluminum profiles at the same time, is more convenient and labor-saving, and improves the placement efficiency of tubular aluminum profiles.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0006] An aluminum profile oxidation hanger comprises:

[0007] a hanger frame in the shape of a U;

[0008] a hanging plate slidingly connected to the bottom of the hanger frame, wherein the hanging plate has two plates symmetrically arranged about the hanger frame;

[0009] a first driving mechanism for controlling the two hanging plates to move closer to or further away from each other;

[0010] a plurality of sets of expansion plates installed on the hanging plate, wherein each set of expansion plates comprises two arc-shaped sub-plates arranged in an up-down manner, and each tubular aluminum profile is supported by two sets of expansion plates with the same height on the two hanging plates;

[0011] a second driving mechanism for controlling the plurality of sets of expansion plates to simultaneously fix the plurality of tubular aluminum profiles from both ends of the plurality of tubular aluminum profiles;

[0012] a loading mechanism installed on the side of the hanger frame, wherein the loading mechanism is used to synchronously transport the plurality of tubular aluminum profiles to the space between the two hanging plates.

[0013] Compared with the prior art, the present application has the following beneficial effects: the present application simultaneously sends multiple tubular aluminum profiles to two hanging plates through the loading mechanism, then controls the two hanging plates to approach each other until each group of expansion plates is inserted into one end of a tubular aluminum profile through the first driving mechanism, then synchronously adjusts all the expansion plates through the second driving mechanism, so that the two arc-shaped sub-plates are away from each other until the two arc-shaped sub-plates abut against the inner wall of the tubular aluminum profile, and then the loading mechanism is away from the tubular aluminum profile, so that the synchronous hanging of multiple tubular aluminum profiles is completed. Overall, the present application can conveniently clamp the two ends of multiple pipe aluminum profiles at the same time, is more convenient and labor-saving, and improves the hanging efficiency of the tubular aluminum profile.

[0014] In an implementation manner, the first driving mechanism comprises:

[0015] A first motor is installed on the hanging frame;

[0016] A first bidirectional screw rod is rotationally connected to the hanging frame, and the first motor is in transmission connection with the first bidirectional screw rod; and two hanging plates are respectively threadedly connected to screw tooth portions of the first bidirectional screw rod in different rotation directions.

[0017] The hanging frame is provided with a dovetail sliding groove, and the top of the hanging plate is provided with a sliding block in sliding connection with the dovetail sliding groove.

[0018] In an implementation manner, an adjusting sliding groove is vertically formed on the hanging plate, and the arc-shaped sub-plate is in sliding connection with the hanging plate through the adjusting sliding groove.

[0019] The second driving mechanism comprises:

[0020] A second motor is installed on the hanging frame;

[0021] A driving shaft is rotationally connected to the hanging frame, and the second motor is in transmission connection with the driving shaft;

[0022] A sliding pin slot is formed on the circumferential surface of the driving shaft;

[0023] A mounting frame is fixedly connected to the side surface of the hanging plate;

[0024] A driving bevel gear is rotationally connected to the mounting frame through a bearing, and the driving bevel gear is coaxial with the driving shaft;

[0025] A connecting pin block is fixedly connected to the inner ring of the driving bevel gear, and the connecting pin block is in sliding connection with the sliding pin slot;

[0026] An adjusting shaft is rotationally connected to the side surface of the hanging plate;

[0027] A driven bevel gear is coaxially fixedly connected to the adjusting shaft, and the driven bevel gear is in meshing connection with the driving bevel gear;

[0028] A plurality of second bidirectional screw rods are coaxially fixed to the adjusting shafts, and the two arc-shaped sub-plates of each set of the expansion plates are threadedly connected to the screw thread parts of the second bidirectional screw rods in different directions.

[0029] In an embodiment, the loading mechanism comprises:

[0030] A mounting plate is fixed to the top of the hanger;

[0031] A polished rod is fixed to the mounting plate;

[0032] A connecting plate is fixed to the end of the polished rod away from the mounting plate;

[0033] An adjusting screw rod is rotatably connected between the connecting plate and the mounting plate;

[0034] An adjusting plate is slidably connected to the polished rod, and the adjusting plate is threadedly connected to the adjusting screw rod;

[0035] A vertical plate is fixed to the bottom of the adjusting plate;

[0036] A plurality of support plates are fixed to the side of the vertical plate;

[0037] A third motor is installed on the hanger, and the third motor is drivingly connected to the adjusting screw rod.

[0038] In an embodiment, the vertical plate has a plurality of vertical plates.

[0039] In an embodiment, the hanger has two hangers;

[0040] A connecting frame is fixed between the two hangers;

[0041] The third motor is a double-shaft motor.

[0042] It should be understood that the content described in this part is not intended to identify key or important features of the embodiments of the present disclosure, nor to limit the scope of the present disclosure. Other features of the present disclosure will become apparent through the following description. BRIEF DESCRIPTION OF DRAWINGS

[0043] The above and other objects, features and advantages of the exemplary embodiments of the present disclosure will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which:

[0044] In the drawings, the same or corresponding reference numerals indicate the same or corresponding parts.

[0045] Figure 1 The overall structure of the embodiment of the present disclosure is shown;

[0046] Figure 2An overall structure schematic diagram of the support plate after loading the tubular aluminum profile is shown in the embodiment of the present disclosure.

[0047] Figure 3 A structure schematic diagram of the hanger is shown in the embodiment of the present disclosure.

[0048] Figure 4 An installation schematic diagram of the hanger plate and the first driving mechanism and the second driving mechanism is shown in the embodiment of the present disclosure.

[0049] Explanation of figure labels:

[0050] 100, hanger; 110, dovetail sliding groove;

[0051] 200, hanger plate; 210, sliding block; 220, adjusting sliding groove;

[0052] 300, first driving mechanism; 310, first motor; 320, first bidirectional screw rod;

[0053] 400, expansion support plate; 401, arc-shaped sub-plate;

[0054] 500, second driving mechanism; 510, second motor; 520, driving shaft; 530, sliding pin slot; 540, mounting frame; 550, driving bevel gear; 560, adjusting shaft; 570, driven bevel gear; 580, second bidirectional screw rod; 590, connecting pin block;

[0055] 600, loading mechanism; 610, mounting plate; 620, light rod; 630, connecting plate; 640, adjusting screw rod; 650, adjusting plate; 660, vertical plate; 670, support plate; 680, third motor;

[0056] 700, connecting frame;

[0057] 800, tubular aluminum profile. DETAILED DESCRIPTION

[0058] In order to make the objectives, features and advantages of the present disclosure more obvious and easy to understand, the technical solutions in the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present disclosure.

[0059] Reference Figures 1-4The aluminum profile oxidation hanger provided by the present disclosure comprises a U-shaped hanger 100, two hanger plates 200 are slidingly connected at the bottom of the hanger 100, specifically, dovetail sliding grooves 110 are formed on the hanger 100, sliding blocks 210 are arranged at the top of the hanger plates 200 and slidingly matched with the dovetail sliding grooves 110, and the two hanger plates 200 are symmetrically arranged about the hanger 100; a first driving mechanism 300 is further arranged on the hanger 100, which is mainly used for controlling the two hanger plates 200 to approach or move away from each other; a plurality of sets of expansion plates 400 are installed on each hanger plate 200, each set of expansion plates 400 comprises two arc-shaped sub-plates 401 arranged in an up-down manner; the expansion plates 400 installed on the two hanger plates 200 are one-to-one corresponding, and each tubular aluminum profile 800 is supported by two sets of expansion plates 400 with the same height on the two hanger plates 200; a second driving mechanism 500 is further arranged on the hanger 100, which is used for controlling the plurality of sets of expansion plates 400 to simultaneously fix the plurality of tubular aluminum profiles 800 from both ends of the plurality of tubular aluminum profiles 800; a loading mechanism 600 is further installed on the side of the hanger 100, which is mainly used for simultaneously sending the plurality of tubular aluminum profiles 800 to the space between the two hanger plates 200.

[0060] Specifically, referring to Figure 1 and Figure 4 , the first driving mechanism 300 comprises a first motor 310 installed on the hanger 100, a first bidirectional screw rod 320 is rotatably connected between the two ends of the hanger 100 through a bearing, and the first motor 310 is used for driving the first bidirectional screw rod 320 to rotate, and the two hanger plates 200 are respectively threadedly connected to the screw thread portions with different rotation directions of the first bidirectional screw rod 320.

[0061] Specifically, referring to Figures 1-4The vertical adjusting sliding groove 220 is formed on the hanging plate 200, and the arc-shaped sub-plate 401 is slidably connected with the hanging plate 200 through the adjusting sliding groove 220; the second driving mechanism 500 comprises a second motor 510 mounted on the hanger 100, and a driving shaft 520 is rotatably connected at both ends of the hanger 100; the second motor 510 is used for controlling the rotation of the driving shaft 520, and a sliding pin groove 530 is formed on the shaft side surface of the driving shaft 520; the mounting frame 540 is fixedly connected on the side surface of the hanging plate 200 through bolts, the driving bevel gear 550 is rotatably connected on the mounting frame 540 through a bearing, and the driving bevel gear 550 is coaxial with the driving shaft 520; the connecting pin block 590 is fixedly connected on the inner ring of the driving bevel gear 550, and the connecting pin block 590 is slidably matched with the sliding pin groove 530; the adjusting shaft 560 is rotatably connected on the same side surface of the hanging plate 200 as the mounting frame 540, and the driven bevel gear 570 engagedly connected with the driving bevel gear 550 is fixedly connected on the adjusting shaft 560 in a coaxial manner; a plurality of second bidirectional screw rods 580 are fixedly connected on the driving shaft 520 in a coaxial manner, and the screw thread portions with different rotation directions of each second bidirectional screw rod 580 are threadedly connected with two arc-shaped sub-plates 401 of one set of expansion plates 400.

[0062] Specifically, referring to Figure 1 and Figure 2 , the loading mechanism 600 comprises the mounting plate 610 fixedly connected to the top of the hanger 100, the light rod 620 fixedly connected on the mounting plate 610, preferably a plurality of light rods 620, the connecting plate 630 fixedly connected on the end of the light rod 620 away from the mounting plate 610, and the adjusting screw rod 640 rotatably connected between the connecting plate 630 and the mounting plate 610; the adjusting plate 650 is slidably connected on the light rod 620 between the connecting plate 630 and the mounting plate 610, and the adjusting plate 650 is threadedly connected with the adjusting screw rod 640; the vertical plate 660 is fixedly connected on the bottom of the adjusting plate 650, a plurality of support plates 670 distributed upward and downward are fixedly connected on the side surface of the vertical plate 660, the support plates 670 are used for placing the tubular aluminum profiles 800, and the third motor 680 is mounted on the hanger 100 for driving the rotation of the adjusting screw rod 640.

[0063] Further details will be introduced in combination with specific use scenarios. First, the multiple tubular aluminum profiles 800 to be oxidized are placed on different support plates 670 in sequence; then the third motor 680 drives the adjusting screw 640 to rotate, thereby driving the adjusting plate 650 to move towards the hanger 100, until the expansion plate 400 on the hanger plate 200 corresponds to the tubular aluminum profile 800. Here, a sensor can be provided on the hanger plate 200 to detect whether the tubular aluminum profile 800 reaches the appropriate position. The installation of the sensor and the selection of the sensor are well known to those skilled in the art, and will not be described in detail here. When the tubular aluminum profile 800 corresponds to the position of the expansion plate 400, the first motor 310 drives the first bidirectional screw 320 to rotate, thereby causing the two hanger plates 200 to move closer to each other, until the expansion plate 400 is inserted into the tubular aluminum profile 800. Here, when the hanger plate 200 moves, the connecting pin block 590 on the inner wall of the drive bevel gear 550 will move along the sliding pin slot 530 on the drive shaft 520. Then, after the expansion plate 400 is inserted into both ends of the tubular aluminum profile 800, the second motor 510 is started, thereby driving the drive shaft 520 to rotate, and under the constraint of the connecting pin block 590 and the sliding pin slot 530, the drive bevel gear 550 is driven to rotate. Further, under the meshing cooperation of the drive bevel gear 550 and the driven bevel gear 570, the adjusting shaft 560 is driven to rotate, thereby utilizing the screw cooperation between the second bidirectional screw 580 on the adjusting shaft 560 and the arc-shaped sub-plate 401, and under the constraint of the arc-shaped sub-plate 401 adjusting sliding groove 220, the two arc-shaped sub-plates 401 in the same group are moved away from each other, until the two arc-shaped sub-plates 401 abut against the inner wall of the tubular aluminum profile 800. In this way, the purpose of clamping the tubular aluminum profile 800 from both ends of the multiple tubular aluminum profiles 800 is achieved, which is not only convenient and labor-saving, but also improves the hanging efficiency of the multiple tubular aluminum profiles 800 as a whole. Finally, in order not to affect the oxidation quality of the surface of the tubular aluminum profile 800, after the tubular aluminum profile 800 is hung, the third motor 680 is adjusted to control the adjusting plate 650 and the support plate 670 to move away from the tubular aluminum profile 800.

[0064] Referring to Figure 1 and Figure 2 , as a specific embodiment of the present application, the vertical plate 660 fixed at the bottom of the adjusting plate 650 has multiple.

[0065] In combination with specific use scenarios, by providing multiple vertical plates 660, the support plate 670 can be fixed on each vertical plate 660. By supporting the tubular aluminum profile 800 with multiple support plates 670 of equal height on multiple vertical plates 660, the stability of supporting the tubular aluminum profile 800 can be improved.

[0066] Referring to Figure 1 and Figure 2As a specific embodiment of the present application, the hanger 100 is two, and the two hangers 100 are fixed by the connecting frame 700, so that the number of the tubular aluminum profiles 800 on the hanger 100 can be increased, and the whole hanger can be symmetrical, so that the whole hanger is more stable. In addition, the third motor 680 is a double-shaft motor, so that the adjusting lead screws 640 on the two hangers 100 can be driven by the double-shaft motor at the same time, the number of the driving devices can be reduced, and the cost investment can be saved. In addition, the tubular aluminum profiles 800 on the two hangers 100 can be selected in two lengths, so that the versatility of the hanger can be improved.

[0067] It should be understood that various forms of the flow shown above can be used to reorder, add, or delete steps. For example, each step described in the present disclosure can be executed in parallel, sequentially, or in a different order, as long as the desired results of the technical solutions disclosed in the present disclosure can be achieved, and the present disclosure is not limited herein.

[0068] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present disclosure, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0069] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed in the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. An aluminum profile anodizing fixture, characterized in that, include: The hanging bracket (100) is U-shaped; There are two hanging plates (200) slidably connected to the bottom of the bracket (100). The two hanging plates (200) are symmetrically arranged about the bracket (100). The first drive mechanism (300) is used to control the two mounting plates (200) to move closer or further apart from each other; Multiple sets of expansion plates (400) are installed on the hanging plate (200). Each set of expansion plates (400) includes two arc-shaped sub-plates (401) arranged vertically. Each tubular aluminum profile (800) is supported by two sets of expansion plates (400) of the same height on the two hanging plates (200). The second drive mechanism (500) is used to control multiple sets of expansion plates (400) to simultaneously fix multiple tubular aluminum profiles (800) from both ends; A loading mechanism (600) is installed on the side of the hanger (100). The loading mechanism (600) is used to simultaneously transport multiple tubular aluminum profiles (800) between two hangers (200).

2. The aluminum profile anodizing fixture according to claim 1, characterized in that, The first drive mechanism (300) includes: The first motor (310) is mounted on the bracket (100); The first bidirectional lead screw (320) is rotatably connected to the bracket (100), and the first motor (310) is drivenly connected to the first bidirectional lead screw (320); the two hanging plates (200) are respectively threaded to the first bidirectional lead screw (320) with different thread directions; The hanger (100) has a dovetail groove (110), and the top of the hanging plate (200) has a slider (210) that slides in cooperation with the dovetail groove (110).

3. The aluminum profile anodizing fixture according to claim 1, characterized in that, An adjusting slide (220) is vertically opened on the hanging plate (200), and the arc-shaped sub-plate (401) is slidably connected to the hanging plate (200) through the adjusting slide (220); The second drive mechanism (500) includes: The second motor (510) is mounted on the bracket (100); The drive shaft (520) is rotatably connected to the bracket (100), and the second motor (510) is connected to the drive shaft (520) in a transmission manner; The sliding pin groove (530) begins on the circumferential side of the drive shaft (520); Mounting frame (540) is fixed to the side of the hanging plate (200); A drive bevel gear (550) is rotatably connected to a mounting frame (540) via a bearing, and the drive bevel gear (550) is coaxial with the drive shaft (520); A connecting pin block (590) is fixed to the inner ring of the drive bevel gear (550), and the connecting pin block (590) is in sliding engagement with the sliding pin groove (530); Adjusting shaft (560) is rotatably connected to the side of hanging plate (200); Driven bevel gear (570) is coaxially fixed to adjusting shaft (560), and driven bevel gear (570) meshes with driving bevel gear (550); Several second bidirectional lead screws (580) are coaxially fixed to the adjusting shaft (560), and the two arc-shaped sub-plates (401) of each set of expansion plates (400) are threaded to the threaded portions of the second bidirectional lead screws (580) with different directions of rotation.

4. The aluminum profile anodizing fixture according to claim 1, characterized in that, The loading mechanism (600) includes: Mounting plate (610) is fixed to the top of bracket (100); The bare rod (620) is fixed to the mounting plate (610); The connecting plate (630) is fixed to the end of the smooth rod (620) away from the mounting plate (610); The adjusting screw (640) is rotatably connected between the connecting plate (630) and the mounting plate (610); An adjusting plate (650) is slidably connected to a guide rod (620), and the adjusting plate (650) is threadedly connected to an adjusting screw (640); The vertical plate (660) is fixed to the bottom of the adjusting plate (650); Several support plates (670) are fixed to the side of the vertical plate (660); The third motor (680) is mounted on the bracket (100) and is connected to the adjusting screw (640) for transmission.

5. The aluminum profile anodizing fixture according to claim 4, characterized in that, There are multiple vertical plates (660).

6. The aluminum profile anodizing fixture according to claim 5, characterized in that, There are two hanging brackets (100); A connecting frame (700) is fixed between two hanging frames (100), and the two hanging frames (100) are symmetrical about the connecting frame (700); The third motor (680) is a dual-shaft motor.