Oxidation device for aluminum profiles for doors and windows

By designing multiple mounting components and connectors on multiple mounting rods in the aluminum profile oxidation device, the problem of deviation of aluminum profiles during the oxidation process is solved and the oxidation effect is improved.

CN223003053UActive Publication Date: 2025-06-20ZHEJIANG YUANWANG WINDOWS & DOORS CO LTD
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Patent Information

Application Number
CN202422258297.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-06-20
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing aluminum profile oxidation devices can easily lead to deviation of aluminum profiles during the oxidation process, affecting their normal oxidation effect.

Method used

An oxidation device including a cross beam, a conductive rod, a mounting rod and a plurality of mounting components is designed. The aluminum profile is fixed by multiple mounting components on multiple mounting rods, reducing the possibility of deflection during the oxidation process, and fixing the aluminum profile along the length of the beam through the connectors to ensure stable contact with the conductive rod.

Benefits of technology

It effectively reduces the possibility of aluminum profile deflection during the oxidation process, ensures that its contact with the conductive rod is stable, and improves the oxidation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum profile production, in particular to an oxidation device for aluminum profiles for doors and windows, which comprises a cross beam, a conducting rod perpendicular to the cross beam and a mounting assembly for fixing the aluminum profiles are arranged on the cross beam, a mounting rod is arranged on the cross beam and is arranged in a sliding manner along the length direction of the cross beam, and the conducting rod is arranged on the cross beam. The multiple installation rods are arranged in the length direction of the cross beam, the multiple installation assemblies are arranged on the multiple installation rods, and connecting pieces are arranged between the installation assemblies at the same horizontal height. The aluminum profile is mounted through the multiple mounting assemblies on the multiple mounting rods, and then the possibility of deviation between the adjacent mounting assemblies is reduced through the connecting pieces, so that the possibility that the normal oxidation treatment of the aluminum profile is affected due to deflection of the aluminum profile is reduced.
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Description

Technical Field

[0001] The present application relates to the field of aluminum profile production technology, and in particular to an oxidation device for aluminum profiles for doors and windows. Background Art

[0002] In modern society, decorative doors, windows or curtain walls mainly use aluminum alloy profiles. The main disadvantages of this profile are its single appearance and easy corrosion due to long-term exposure to the air. The existence of this disadvantage makes it increasingly difficult to meet the personalized needs of contemporary young users for decorative structural materials. In order to optimize the decorative effect of aluminum alloy profiles, enhance their corrosion resistance and extend their service life, aluminum alloys generally need to be surface treated.

[0003] The Chinese utility model with authorization announcement number CN209974935U discloses an aluminum profile oxidation device, including a crossbeam, a first seat welded to the front surface of the crossbeam, a second seat welded to the rear surface of the crossbeam, a conductive rod fixedly installed on the lower surface of the crossbeam, an aluminum profile is arranged on the front side of the conductive rod, hooks are embedded and installed inside the first seat and the second seat, and a partition component is sleeved on the outside of the hook near the bottom of the first seat.

[0004] During the oxidation process of the aluminum profile, the above-mentioned equipment installs a partition component in the middle part of the aluminum profile so that the two ends of the aluminum profile are respectively in contact with the conductive rods at the two ends of the beam. When the conductive rods are energized, anodization occurs on the surface of the aluminum profile. The installation of the aluminum profile is only fixed by a single partition component, which causes the aluminum profile to easily deviate during the oxidation process and affects its normal oxidation. Utility Model Content

[0005] In order to reduce the possibility that the normal oxidation of aluminum profiles may be affected by deflection, the present application provides an oxidation device for aluminum profiles for doors and windows.

[0006] The present application provides an oxidation device for aluminum profiles for doors and windows using the following technical solution:

[0007] An oxidation device for aluminum profiles for doors and windows, comprising a crossbeam, on which a conductive rod perpendicular to the crossbeam and a mounting assembly for fixing the aluminum profile are arranged, the crossbeam is provided with a mounting rod, a plurality of mounting rods are arranged along the length direction of the crossbeam, a plurality of mounting assemblies are arranged and each of the plurality of mounting rods is provided with a mounting assembly, and connecting pieces are arranged between the mounting assemblies at the same horizontal height.

[0008] By adopting the above technical solution, when the surface of the aluminum profile needs to be oxidized, the aluminum profile needs to be fixed first. When installing the aluminum profile, the aluminum profile is fixed by a plurality of installation components on multiple installation rods, so that the aluminum profile is not easily deflected in its length direction. The connecting piece extends the aluminum profile along the length direction of the cross beam, reducing the possibility of the aluminum profile deflecting along the length direction of the cross beam. The two ends of the aluminum profile are in contact with the conductive rod, reducing the possibility that the aluminum profile affects its normal oxidation due to deflection.

[0009] Optionally, the installation component includes a sliding sleeve, a fixing piece and an installation block for installing the aluminum profile. The sliding sleeve is slidably arranged on the installation rod. The installation block is arranged on the side of the sliding sleeve facing the aluminum profile. The fixing piece is arranged between the sliding sleeve and the installation rod.

[0010] By adopting the above technical solution, when the height of the aluminum profile needs to be adjusted, the fixing piece releases the fixing effect on the sliding sleeve, and the sliding sleeve is slid along the length direction of the installation rod, so that the installation block drives the aluminum profile to slide, thereby adjusting the height of the aluminum profile and the distance between adjacent aluminum profiles.

[0011] Optionally, the fixing piece includes a fixing rod. A plurality of first fixing holes are arranged on the installation rod along the length direction of the installation rod. The first fixing holes extend along the radial direction of the installation rod. A second fixing hole coaxial with the first fixing hole is arranged on the sliding sleeve. The fixing rod passes through the second fixing hole and then is inserted into the first fixing hole to fix the sliding sleeve.

[0012] By adopting the above technical solution, when fixing the sliding sleeve, rotate the fixing rod so that the fixing rod is inserted into the first fixing hole and the second fixing hole, reducing the possibility of the sliding sleeve sliding on the installation rod. When sliding the sliding sleeve, screw the fixing rod out of the first fixing hole, facilitating the sliding and fixing of the sliding sleeve.

[0013] Optionally, a plugging groove is arranged on the surface of the side of the installation block facing the aluminum profile. The plugging groove extends along the length direction of the aluminum profile. A fixing component is arranged between the installation block and the aluminum profile.

[0014] By adopting the above technical solution, when installing the aluminum profile, the aluminum profile is embedded in the plugging groove, and then the aluminum profile is fixedly installed in the plugging groove through the fixing component, facilitating the installation of the aluminum profile and improving the stability of the installation of the aluminum profile at the same time.

[0015] Optionally, a rubber layer is arranged on the side wall of the plugging groove in contact with the aluminum profile.

[0016] By adopting the above technical solution, the aluminum profile is in contact with the rubber layer on the side wall of the plugging groove, reducing the possibility of conduction between the aluminum profile and the installation block, and thus reducing the possibility that the installation block affects the oxidation effect at the side wall of the plugging groove where the aluminum profile is located.

[0017] Optionally, the fixing component includes a fixing plate and a second fixing member. The fixing plate is disposed on a side of the mounting block facing away from the sliding sleeve, and the second fixing member drives the fixing plate to snap the aluminum profile into the insertion slot.

[0018] By adopting the above technical solution, the plate surface of the fixing plate contacts the side wall of the aluminum profile, and then the fixing plate is fixed to the mounting block by the second fixing member, reducing the possibility of the aluminum profile deflecting in the mounting block and the insertion slot.

[0019] Optionally, a sliding component is disposed between the cross beam and the mounting rod. The sliding component includes a hook and a locking member for fixing the mounting rod. The hook is disposed at the top end of the mounting rod and is slidably disposed between the cross beam, and the locking member is disposed between the hook and the cross beam.

[0020] By adopting the above technical solution, when the aluminum profile is long and the mounting rod needs to be slid, the locking member releases the clamping force on the hook and the cross beam, so as to slide the mounting rod and the hook, making the distance between adjacent hooks suitable for the installation of the aluminum profile, and reducing the possibility of the aluminum profile deflecting due to a small fixed spacing.

[0021] Optionally, both ends of the hook are distributed on two sides of the cross beam. A sliding plate is disposed between the hook and the cross beam. The sliding plate contacts the two side surfaces of the cross beam, and the sliding plate is clamped against the cross beam under the action of the locking member.

[0022] By adopting the above technical solution, when the locking member fixes the mounting rod, the sliding plate increases the contact area between the hook and the cross beam, reducing the possibility of deflection between the hook and the cross beam.

[0023] Optionally, insertion holes are formed on surfaces of two sliding sleeves at the same horizontal height on adjacent mounting rods facing each other, and the connecting member is disposed in the insertion holes.

[0024] By adopting the above technical solution, the connecting member is inserted into the sliding sleeve through the insertion hole, and the connecting member drives adjacent sliding sleeves to be on the same horizontal line, reducing the possibility of the aluminum profile deflecting due to the non - alignment of the straight line where adjacent sliding sleeves are located and the length direction of the cross beam.

[0025] In summary, the present application includes at least one of the following beneficial technical effects:

[0026] 1. When fixing the aluminum profile, a plurality of mounting components are distributed along the length direction of the aluminum profile and are all used for mounting the aluminum profile, reducing the possibility of the aluminum profile deflecting and affecting its normal oxidation effect;

[0027] 2. A rubber layer is installed on the side wall of the mounting block in contact with the aluminum profile, reducing the possibility of the mounting block conducting electricity and affecting the oxidation effect of the aluminum profile;

[0028] 3. The fixing component reduces the possibility of the aluminum profile disengaging from the insertion slot on the mounting block. Description of the Drawings

[0029] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0030] Figure 2 It is a schematic diagram of the installation of the mounting component and the mounting rod in an embodiment of the present application.

[0031] Description of the reference numerals: 1, cross beam; 11, threaded hole; 2, conductive rod; 3, mounting rod; 31, sliding plate; 32, first fixing hole; 4, mounting component; 41, sliding sleeve; 411, second fixing hole; 412, convex platform; 413, insertion hole; 42, fixing member; 43, mounting block; 431, insertion slot; 432, rubber layer; 5, sliding component; 51, hook; 52, locking member; 6, connecting member; 61, connecting rod; 62, locking block; 7, fixing component; 71, fixing plate; 72, second fixing member. Detailed Description of the Embodiment

[0032] The following will further describe the present application in detail with reference to the Figure 1-2 drawings.

[0033] An embodiment of the present application discloses an oxidation device for aluminum profiles used in doors and windows. Referring to Figure 1 , it includes a cross beam 1. Conductive rods 2 perpendicular to the cross beam 1 are installed at both ends of the cross beam 1. A mounting rod 3 parallel to the conductive rod 2 is installed on the cross beam 1. Multiple mounting rods 3 are distributed along the length direction of the cross beam 1. The mounting rod 3 and the cross beam 1 are driven to slide and fixed by a sliding component 5.

[0034] Referring to Figure 1 , the sliding component 5 includes a hook 51 and a locking member 52. The hook 51 is fixedly installed at the top of the mounting rod 3. Both ends of the hook 51 are abutted against the two side walls of the cross beam 1 through a sliding plate 31. Multiple threaded holes 11 distributed along the length direction of the cross beam 1 are formed on the cross beam 1. The sliding plate 31 is fixedly installed on the mounting rod 3. The locking member 52 includes a locking bolt. The locking bolt passes through the sliding plate 31 and is in threaded cooperation with the threaded hole 11. When it is necessary to adjust the position of the mounting rod 3, the locking bolt is screwed out of the threaded hole 11, and the mounting rod 3 and the hook 51 are slid on the cross beam 1, so as to drive the mounting rod 3 to slide in the length direction of the cross beam 1, facilitating the adjustment of the distance between adjacent mounting rods 3.

[0035] Referring to Figure 2The mounting rod 3 is provided with a mounting assembly 4 for fixing the aluminum profile, the mounting assembly 4 comprising a sliding sleeve 41, a fixing member 42 and a mounting block 43 for sleeve-mounting the aluminum profile, the sliding sleeve 41 is slidably sleeved on the mounting rod 3, the mounting rod 3 is provided with a plurality of first fixing holes 32 distributed along the length direction of the mounting rod 3, the first fixing holes 32 extend along the radial direction of the mounting rod 3, the sliding sleeve 41 is provided with a second fixing hole 411 coaxial with the first fixing hole 32, the fixing member 42 includes The fixing rod is a threaded rod, which is inserted into the first fixing hole 32 and the second fixing hole 411. The mounting block 43 is fixedly mounted on the surface of the sliding sleeve 41 on the side facing the beam 1. The mounting block 43 is provided with a plug-in groove 431 extending along the length direction of the beam 1 on the side facing away from the sliding sleeve 41. A rubber layer 432 is installed on the side wall of the plug-in groove 431. The aluminum profile is plugged into the plug-in groove 431, and the aluminum profile is fixed in the plug-in groove 431 through a fixing component 7.

[0036] Reference Figure 2 The fixing assembly 7 includes a fixing plate 71 and a second fixing member 72. The fixing plate 71 is installed on the side of the mounting block 43 away from the sliding sleeve 41. The second fixing member 72 includes a second fixing bolt. The second fixing bolt passes through the fixing plate 71 and is threadedly connected to the mounting block 43. When installing the aluminum profile, the aluminum profile is clamped in the plug-in groove 431, and then the fixing plate 71 and the second fixing bolt are installed on the mounting block 43, so that the aluminum profile is fixed on the mounting block 43 on all sides, reducing the possibility of the aluminum profile detaching from the mounting block 43 during the oxidation process.

[0037] Reference Figure 1 and Figure 2 A connecting piece 6 is installed between two sliding sleeves 41 at the same horizontal height on adjacent mounting rods 3. A boss 412 is protrudingly installed on the surface of the two sliding sleeves 41 facing each other. A plug-in hole 413 extending in the horizontal direction is opened on the boss 412 and the sliding sleeve 41. The connecting piece 6 includes a connecting rod 61 and a locking block 62. The locking block 62 is rotatably arranged on the connecting rod 61 and is located at the end of the connecting rod 61. The end of the connecting rod 61 is inserted into the plug-in hole 413. The locking block 62 is threadedly connected to the boss 412. The connecting rod 61 and the locking block 62 connect the adjacent sliding sleeves 41 between the same horizontal straight lines, thereby reducing the possibility of deflection of the aluminum profile on the mounting block 43.

[0038] The implementation principle of the oxidation device for aluminum profiles for doors and windows in the embodiment of the present application is:

[0039] When installing the aluminum profile, place the aluminum profile in the insertion groove 431 on the mounting block 43, and then fix the fixing plate 71 through the second fixing member 72, and the fixing plate 71 presses the aluminum profile tightly in the insertion groove 431, thereby reducing the possibility of the aluminum profile sliding out of the insertion groove 431.

[0040] A plurality of mounting rods 3 for mounting aluminum profiles are installed on the cross beam 1, so that the length direction of the aluminum profiles is installed by a plurality of mounting components 4, reducing the possibility that the deflection of the aluminum profiles during the oxidation process affects the normal oxidation effect.

[0041] Adjacent sliding sleeves 41 in the same horizontal height direction are fixedly connected by a connecting rod 61 and a locking block 62, reducing the possibility that the aluminum profiles are deflected due to different projection distances of the two sliding sleeves 41 and the conductive rod 2 in the length direction of the cross beam 1.

[0042] When it is necessary to adjust the distance between the sliding sleeve 41 and the mounting block 43 along the length direction of the mounting rod 3, the fixing rod is screwed out from the first fixing hole 32, the sliding sleeve 41 is slid to an appropriate position, and then the fixing rod is screwed into the second fixing hole 411.

[0043] When it is necessary to adjust the distance between adjacent mounting rods 3, the locking member 52 releases the fixation of the mounting plate, the sliding plate 31 is slid, and then the sliding plate 31 is fixed by the locking member 52. The sliding plate 31 increases the contact area between the mounting rod 3 and the cross beam 1, reducing the possibility that the mounting rod 3 drives the mounting block 43 to deflect.

[0044] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An oxidation device for aluminum profiles for doors and windows, comprising a crossbeam (1), on which a conductive rod (2) perpendicular to the crossbeam (1) and a mounting assembly (4) for fixing the aluminum profile are arranged, characterized in that: The crossbeam (1) is provided with a mounting rod (3), a plurality of the mounting rods (3) are provided along the length direction of the crossbeam (1), a plurality of the mounting components (4) are provided and each of the plurality of mounting rods (3) is provided with a mounting component (4), and connecting pieces (6) are provided between adjacent mounting components (4) at the same horizontal height.

2. The oxidation device for aluminum profiles for doors and windows according to claim 1, characterized in that: The mounting assembly (4) comprises a sliding sleeve (41), a fixing member (42) and a mounting block (43) for mounting an aluminum profile; the sliding sleeve (41) is slidably mounted on the mounting rod (3); the mounting block (43) is disposed on a side of the sliding sleeve (41) facing the aluminum profile; and the fixing member (42) is disposed between the sliding sleeve (41) and the mounting rod (3).

3. The oxidation device for aluminum profiles for doors and windows according to claim 2, characterized in that: The fixing member (42) comprises a fixing rod, the mounting rod (3) is provided with a plurality of first fixing holes (32) distributed along the length direction of the mounting rod (3), the first fixing holes (32) extending radially along the mounting rod (3), the sliding sleeve (41) is provided with a second fixing hole (411) coaxial with the first fixing hole (32), the fixing rod passes through the second fixing hole (411) and then is inserted into the first fixing hole (32), thereby fixing the sliding sleeve (41).

4. The oxidation device for aluminum profiles for doors and windows according to claim 2, characterized in that: A plugging groove (431) is provided on the surface of the mounting block (43) on the side facing the aluminum profile, and the plugging groove (431) extends along the length direction of the aluminum profile. A fixing component (7) is provided between the mounting block (43) and the aluminum profile.

5. The oxidation device for aluminum profiles for doors and windows according to claim 4, characterized in that: A rubber layer (432) is provided on the side wall of the insertion slot (431) that contacts the aluminum profile.

6. The oxidation device for aluminum profiles for doors and windows according to claim 4, characterized in that: The fixing assembly (7) comprises a fixing plate (71) and a second fixing member (72); the fixing plate (71) is arranged on a side of the mounting block (43) facing away from the sliding sleeve (41); the second fixing member (72) drives the fixing plate (71) to abut the aluminum profile against the side wall of the plug slot (431).

7. The oxidation device for aluminum profiles for doors and windows according to claim 1, characterized in that: A sliding assembly (5) is provided between the crossbeam (1) and the mounting rod (3), the sliding assembly (5) comprising a hook (51) and a locking member (52) for fixing the mounting rod (3), the hook (51) being provided at the top end of the mounting rod (3) and being slidably arranged between the crossbeam (1), and the locking member (52) being provided between the hook (51) and the crossbeam (1).

8. The oxidation device for aluminum profiles for doors and windows according to claim 7, characterized in that: The two ends of the hook (51) are distributed on both sides of the crossbeam (1), and a sliding plate (31) is provided between the hook (51) and the crossbeam (1). The sliding plate (31) is in contact with the two side surfaces of the crossbeam (1), and the sliding plate (31) is pressed against the crossbeam (1) under the action of a locking member (52).

9. The oxidation device for aluminum profiles for doors and windows according to claim 2, characterized in that: Two sliding sleeves (41) at the same level on adjacent mounting rods (3) are provided with plug holes (413) on one side facing each other, and the connecting member (6) is arranged in the plug hole (413).

Citation Information

Patent Citations

  • Aluminum profile oxidation device

    CN209974935U