CN215976105U - Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock - Google Patents

Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock Download PDF

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Publication number
CN215976105U
CN215976105U CN202121771341.0U CN202121771341U CN215976105U CN 215976105 U CN215976105 U CN 215976105U CN 202121771341 U CN202121771341 U CN 202121771341U CN 215976105 U CN215976105 U CN 215976105U
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China
Prior art keywords
aluminum alloy
anodic oxidation
disc spring
main rod
hanging tool
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CN202121771341.0U
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Chinese (zh)
Inventor
丁辰辉
伍助喜
肖薇
胡祥军
彭雄宇
刘丽颖
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Jiangxi Changhe Aviation Industries Co Ltd
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Jiangxi Changhe Aviation Industries Co Ltd
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Priority to CN202121771341.0U priority Critical patent/CN215976105U/en
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Abstract

The utility model belongs to the field of aluminum alloy surface treatment, and particularly relates to a mounting and hanging tool for an aluminum alloy anodic oxidation dyeing part. Comprises a hook, a plurality of disc spring clips, a main rod and a plurality of fixing bolts and nuts. The disc spring clip is installed on the main rod through a bolt and a nut, and the top end of the main rod is connected with the hook through a bolt and a nut. The anodic oxidation tool can thoroughly solve the problem of clamping of small-area parts, or porous parts which are not easy to be hung by a spring, or aluminum alloy parts which need to be dyed, has the advantages of simple structure, convenience in clamping, large quantity of hanging and repeated use, and greatly improves the surface quality and the production efficiency of the aluminum alloy parts after anodic oxidation dyeing.

Description

Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock
Technical Field
The utility model belongs to the field of aluminum alloy surface treatment, and particularly relates to a mounting and hanging tool for an aluminum alloy anodic oxidation dyeing part.
Background
The aluminum alloy has the advantages of small density, high specific strength, corrosion resistance, good thermal stability, easy forming and the like, is mature in technology, and is widely applied to aviation manufacturing. Aluminum and aluminum alloy can spontaneously form an oxide film with the thickness of 0.01-0.1um under natural conditions, the oxide film is amorphous, the film layer is uneven, loose in structure, thin and porous, low in hardness, poor in wear resistance and poor in corrosion resistance, and cannot be used as a reliable protective and decorative film, so that certain surface treatment is required to be carried out on the oxide film to obtain the oxide film with excellent performance, the corrosion resistance of the aluminum alloy is obviously improved, and the hardness, the wear resistance and the decorative performance of the aluminum alloy are improved. The aluminum alloy anodic oxidation technology refers to a process of forming a layer of oxide film on an aluminum product (anode) under the action of impressed current under corresponding electrolyte and specific process conditions of aluminum and aluminum alloy, and the aluminum alloy anodic oxidation technology is widely applied at present: sulfuric acid anodizing, chromic acid anodizing, hard anodizing, and the like.
The increasingly widespread use of aluminum alloys places increasing demands on their decorative and functional properties, placing various demands on their production. In order to facilitate the identification of the mark and the appearance decoration, the aluminum alloy can be colored after being anodized.
At present, the aluminum alloy anode oxidation generally adopts an aluminum spring clamping mode, parts are elastically fixed through springs, the thin-wall parts are easy to deform, the clamping parts of a clamp and the parts are more, after the oxidation is finished, the clamping parts on the parts have no film layer, and the parts have no color when being colored, so that the appearance quality is seriously influenced; or the aluminum wires are directly used for binding and hanging, so that the problems of low efficiency, large waste, no local coloring and the like exist.
SUMMERY OF THE UTILITY MODEL
Technical scheme
The novel purpose of the application is realized by the following scheme:
a tool for hanging aluminum alloy anode oxidation dyeing parts comprises a hook 1, a plurality of disc spring clips 2, a main rod 3 and a plurality of fixing bolts and nuts 4. The disc spring clip 2 is installed on the main rod 3 through a bolt and a nut 4, and the top end of the main rod 3 is connected with the hook 1 through the bolt and the nut 4.
The hook 1 is made of red copper. The conductivity is enhanced.
The material of the disc spring plate clip 2 is titanium alloy.
The disc spring clip 2 is welded at an angle of 30-50 degrees.
The number of the disc spring clip 2 is a plurality, and the distance between the disc spring clip and the disc spring clip can be adjusted according to the shape and the number of the parts.
The main rod 3 and the bolt and nut 4 are made of titanium alloy.
And chamfering the periphery of the elastic sheet of the disc elastic sheet clamp 2 to remove edge burrs.
The elastic sheet is of a sheet-shaped gradual change structure and gradually becomes larger from top to bottom.
Technical effects
The anodic oxidation tool can thoroughly solve the problem of clamping of small-area parts, or porous parts which are not easy to be hung by a spring, or aluminum alloy parts which need to be dyed, has the advantages of simple structure, convenience in clamping, large quantity of hanging and repeated use, and greatly improves the surface quality and the production efficiency of the aluminum alloy parts after anodic oxidation dyeing.
Drawings
FIG. 1 is a schematic structural view of the novel tooling;
wherein, 1-hook, 2-elastic sheet clamp, 3-main rod, 4-bolt and nut.
Detailed Description
The utility model will be further described with reference to the accompanying drawings:
the part hanging tool comprises a hook 1, a plurality of disc spring clip 2, a main rod 3 and a plurality of fixing bolt nuts 4. The disc spring clip 2 is installed on the main rod 3 through a bolt and a nut 4, and the top end of the main rod 3 is connected with the hook 1 through the bolt and the nut 4.
The hook 1 is made of red copper. The conductivity is enhanced.
The material of the disc spring clip 2 is selected to meet the requirements of corrosion resistance, electric conductivity and certain supporting strength.
The material of the disc spring plate clip 2 is titanium alloy.
The disc spring clip 2 is welded at an angle of 30-50 degrees.
The number of the disc spring clip 2 is a plurality, and the distance between the disc spring clip and the disc spring clip can be adjusted according to the shape and the number of the parts.
The main rod 3 and the bolt and nut 4 are made of titanium alloy.
And chamfering the periphery of the elastic sheet of the disc elastic sheet clamp 2 to remove edge burrs.
The shell fragment is the gradual change structure of slice, from last to down grow gradually, satisfies the dress of the part of not unidimensional and hangs.
The working process is as follows:
this aluminum alloy part anodic oxidation frock includes that a plurality of spring piece presss from both sides 3, 1 couple 1, 1 mobile jib 3, a plurality of bolt and nut 4. The method is characterized in that: the anodic oxidation tool comprises a hook, the rest of the anodic oxidation tool is made of titanium alloy materials, and the elastic sheet clamp is welded at a certain angle.
Firstly, 1 mobile jib is connected with 1 couple, polishes the burring with the clip, fixes on the mobile jib with bolt and nut after, screws up. A plurality of disc shrapnels can be combined and superposed for use.
And pressing the elastic sheet clamp to hang the part on the elastic sheet, and fixing the part through the elasticity of the elastic sheet. The contact area of the part and the tool is extremely small, and the part is generally clamped on the inner surface, so that the formation of an oxide film is not influenced, and further the surface dyeing is not influenced.
The above is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many variations and modifications can be made without departing from the novel inventive concept of the present invention, and these are all within the scope of the novel invention.

Claims (8)

1. A tool for hanging aluminum alloy anodic oxidation dyeing parts is characterized by comprising a hook (1), a plurality of disc spring clips (2), a main rod (3) and a plurality of fixing bolts and nuts (4); the disc spring clip (2) is installed on the main rod (3) through a bolt and a nut (4), and the top end of the main rod (3) is connected with the hook (1) through the bolt and the nut (4).
2. The aluminum alloy anodizing part hanging tool according to claim 1, wherein the hook (1) is made of red copper.
3. The aluminum alloy anodizing dyeing part hanging tool according to claim 1, wherein said disc elastic sheet clamp (2) is made of titanium alloy.
4. The aluminum alloy anodic oxidation dyeing part hanging tool as claimed in claim 1, wherein the disc spring clip (2) is welded at an angle of 30-50 degrees.
5. The aluminum alloy anodizing dyeing part hanging tool according to claim 1, wherein the number of the disc spring clips (2) is several, and the distance between the disc spring clips is adjusted according to the shape and the number of the parts.
6. The aluminum alloy anodizing part hanging tool according to claim 1, wherein the main rod (3) and the bolt nut (4) are made of titanium alloy.
7. The aluminum alloy anodic oxidation dyeing part hanging tool as claimed in claim 1, wherein the peripheries of the spring pieces of the disc spring piece clips (2) are chamfered to remove edge burrs.
8. The aluminum alloy anodic oxidation dyeing part hanging tool as claimed in claim 7, wherein the spring plate is of a sheet-shaped gradual change structure and gradually becomes larger from top to bottom.
CN202121771341.0U 2021-07-30 2021-07-30 Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock Active CN215976105U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121771341.0U CN215976105U (en) 2021-07-30 2021-07-30 Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121771341.0U CN215976105U (en) 2021-07-30 2021-07-30 Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock

Publications (1)

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CN215976105U true CN215976105U (en) 2022-03-08

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CN202121771341.0U Active CN215976105U (en) 2021-07-30 2021-07-30 Be used for aluminium alloy anodic oxidation dyeing part dress to hang frock

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112921313A (en) * 2020-11-10 2021-06-08 重庆长安工业(集团)有限责任公司 Chemical oxidation frock of 35 bullet warhead fuse bodies
CN113549975A (en) * 2021-07-30 2021-10-26 江西昌河航空工业有限公司 Method for improving hardness of hard anodized film
CN115522189A (en) * 2022-10-12 2022-12-27 贵州航天精工制造有限公司 Construction process for nut phosphorization and phosphorization tool
CN115522189B (en) * 2022-10-12 2024-05-10 贵州航天精工制造有限公司 Construction process for phosphating nuts and phosphating tool

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112921313A (en) * 2020-11-10 2021-06-08 重庆长安工业(集团)有限责任公司 Chemical oxidation frock of 35 bullet warhead fuse bodies
CN113549975A (en) * 2021-07-30 2021-10-26 江西昌河航空工业有限公司 Method for improving hardness of hard anodized film
CN115522189A (en) * 2022-10-12 2022-12-27 贵州航天精工制造有限公司 Construction process for nut phosphorization and phosphorization tool
CN115522189B (en) * 2022-10-12 2024-05-10 贵州航天精工制造有限公司 Construction process for phosphating nuts and phosphating tool

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