Aluminum profile with connecting structure
Patent Information
- Application Number
- CN202522499428.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-25
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-25
AI Technical Summary
[0003]为了弥补以上不足,本申请提供了一种带有连接结构的铝型材,旨在改善现有的合金型材之间主要通过L形连接件或者π字形连接件进行连接,但是相连接的合金型材之间的剪切力主要作用在螺钉或者铆钉上,结构连接稳固性较差,对位精度低,且拆装过程较为费时,或是连接结构过于复杂裸露在型材的表面,影响型材的美观的问题
[0012]本申请的有益效果是:本申请通过上述设计得到的一种带有连接结构的铝型材,通过第一滑块和锁紧机构实现第一型材和第二型材之间的快速连接,结构连接稳定,对位精度高,且拆装省时;另外,第一滑块和锁紧机构被隐藏起来,不会影响型材的美观,给使用者带来更好的使用体验。
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Figure CN224786120U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of profile connection technology, and more specifically, to an aluminum profile with a connection structure. Background Technology
[0002] Currently, commonly used profiles include magnesium alloys and aluminum alloys. Due to their light weight, strong corrosion resistance, and ease of mass production, these profiles are used in industries such as aviation, aerospace, transportation, chemical engineering, and rocketry. Compared to aluminum alloys, magnesium alloys have a lower specific density, better structural strength and rigidity, and are widely used in the electronics and machinery industries and cleanrooms. Aluminum profiles require connections to function. Existing alloy profiles are mainly connected using L-shaped or π-shaped connectors. However, the shear force between the connected alloy profiles primarily acts on the screws or rivets, resulting in poor structural stability, low alignment accuracy, and time-consuming assembly and disassembly processes. Alternatively, the connection structure may be overly complex and exposed on the profile surface, affecting the aesthetics and providing a poor user experience. Utility Model Content
[0003] To overcome the above shortcomings, this application provides an aluminum profile with a connecting structure, which aims to improve the existing problems where the alloy profiles are mainly connected by L-shaped or π-shaped connectors. However, the shear force between the connected alloy profiles is mainly applied to the screws or rivets, resulting in poor structural stability, low alignment accuracy, and time-consuming disassembly and assembly processes. Alternatively, the connecting structure may be too complex and exposed on the surface of the profile, affecting its aesthetics.
[0004] This application is implemented as follows: This application provides an aluminum profile with a connecting structure, including a first profile, a second profile, a first slider, and a locking mechanism. The first slider is fixed to the end of the first profile and is slidably disposed on the second profile. The locking mechanism is installed on the first slider and the second profile, and the locking mechanism enables the first profile and the second profile to be quickly connected together.
[0005] In one embodiment of this application, the locking mechanism includes a T-shaped post, a second slider, a spring, and a lever. The second slider is fixed to the outer wall of the T-shaped post and is slidably disposed inside the first slider. One end of the spring is fixed inside the first slider. The T-shaped post is slidably mounted on the first slider, the other end of the spring is fixed to the outer wall of the T-shaped post, one end of the lever is fixed to the outer wall of the T-shaped post, the lever passes through the first slider, and one end of the T-shaped post is inserted into the second profile.
[0006] In one embodiment of this application, the first slider is provided with a groove, and the second slider is slidably disposed on the groove.
[0007] In one embodiment of this application, the first slider has a groove, one end of the spring is fixed in the groove, and the T-shaped column is slidably disposed in the groove.
[0008] In one embodiment of this application, the first slider has a through hole, and the toggle block passes through the through hole.
[0009] In one embodiment of this application, a positioning groove is provided on the second profile, and the T-shaped column is inserted into the positioning groove.
[0010] In one embodiment of this application, the first slider is provided with four grooves, and the four grooves correspond to four springs.
[0011] In one embodiment of this application, the dial block has a notch.
[0012] The beneficial effects of this application are: the aluminum profile with a connecting structure obtained by the above design can quickly connect the first profile and the second profile through the first slider and the locking mechanism. The structural connection is stable, the alignment accuracy is high, and the disassembly and assembly are time-saving. In addition, the first slider and the locking mechanism are hidden, which will not affect the aesthetics of the profile and bring a better user experience. Attached Figure Description
[0013] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.
[0014] Figure 1 This is a three-dimensional structural diagram of an aluminum profile with a connecting structure provided in an embodiment of this application; Figure 2 A diagram showing the relationship between the first profile and the first slider provided in the embodiments of this application; Figure 3 A left view of an aluminum profile with a connecting structure provided for an embodiment of this application; Figure 4 A diagram showing the relationship between the second profile and the positioning groove provided for embodiments of this application; Figure 5 A diagram showing the relationship between the first slider and the locking mechanism provided for embodiments of this application; Figure 6 A cross-sectional view of the first slider provided for an embodiment of this application; Figure 7 Provided for the implementation of this application Figure 6 A magnified view of region A in the middle.
[0015] In the diagram: 110 - First profile; 120 - Second profile; 130 - Positioning groove; 140 - First slider; 160 - Locking mechanism; 161 - Groove; 162 - Slide groove; 163 - T-shaped column; 164 - Second slider; 165 - Spring; 166 - Toggle block; 167 - Through hole; 168 - Notch. Detailed Implementation
[0016] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, not all of them. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0017] Example Please see Figures 1-7 This application provides a technical solution: an aluminum profile with a connecting structure, including a first profile 110, a second profile 120, a first slider 140 and a locking mechanism 160, wherein the first slider 140 is fixed to the end of the first profile 110 and the first slider 140 is slidably disposed on the second profile 120. The locking mechanism 160 is installed on the first slider 140 and the second profile 120. The locking mechanism 160 enables the first profile 110 and the second profile 120 to be quickly connected together. The locking mechanism 160 includes a T-shaped post 163, a second slider 164, a spring 165 and a lever 166. The second slider 164 is fixed on the outer wall of the T-shaped post 163 and is slidably disposed inside the first slider 140. One end of the spring 165 is fixed inside the first slider 140. The T-shaped post 163 is slidably disposed on the first slider 140 and the other end of the spring 165 is fixed on the outer wall of the T-shaped post 163. One end of the lever 166 is fixed on the outer wall of the T-shaped post 163 and the lever 166 passes through the first slider 140. One end of the T-shaped post 163 is inserted into the second profile 120. The first slider 140 has a groove 162, and the second slider 164 is slidably disposed in the groove 162. The first slider 140 has a groove 161, and one end of the spring 165 is fixed in the groove 161. The T-shaped post 163 is slidably disposed in the groove 161. The first slider 140 has a through hole 167, and the toggle block 166 passes through the through hole 167. The through hole 167 ensures that the toggle block 166 can move on the first slider 140. The second profile 120 has a positioning groove 130, and the T-shaped post 163 is inserted into the positioning groove 130. The first slider 140 has four grooves 161, which correspond to four springs 165. The toggle block 166 has a notch 168, which facilitates the movement of the toggle block 166.
[0018] Specifically, the working principle of this aluminum profile with a connecting structure is as follows: In use, press the two levers 166 to bring them closer together, causing the end of the T-shaped post 163 to enter the groove 161. Then, tie the two levers 166 together with a rope. Next, insert the first slider 140 on the first profile 110 into the second profile 120. Then, push the first profile 110 to move the first slider 140 to the designated position. After releasing the rope, the two levers 166 move away from each other under the reaction force of the spring 165, causing the end of the T-shaped post 163 to insert into the positioning groove 130, achieving a quick connection between the first profile 110 and the second profile 120. The first slider 140 and the locking mechanism 160... Concealed within the second profile 120, the aesthetics of the aluminum profile connection are enhanced. The end of the first profile 110 is fully fitted to the outer surface of the second profile 120, increasing the stability of the connection. Furthermore, the first slider 140 and the T-shaped post 163 effectively prevent the second profile 120 from shaking, ensuring a stable connection between the second profile 120 and the connection structure, and providing strong shock resistance. This aluminum profile with a connection structure achieves a quick connection between the first profile 110 and the second profile 120 through the first slider 140 and the locking mechanism 160. The structural connection is stable, with high alignment accuracy, and time-saving assembly and disassembly. In addition, the first slider 140 and the locking mechanism 160 are concealed, which does not affect the aesthetics of the profile and provides a better user experience.
[0019] The above are merely embodiments of this application and are not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
Claims
1. An aluminum profile with a connecting structure, characterized in that, It includes a first profile (110), a second profile (120), a first slider (140), and a locking mechanism (160). The first slider (140) is fixed to the end of the first profile (110), and the first slider (140) is slidably disposed on the second profile (120). The locking mechanism (160) is installed on the first slider (140) and the second profile (120). The locking mechanism (160) enables the first profile (110) and the second profile (120) to be quickly connected together.
2. The aluminum profile with a connecting structure according to claim 1, characterized in that, The locking mechanism (160) includes a T-shaped post (163), a second slider (164), a spring (165), and a lever (166). The second slider (164) is fixed on the outer wall of the T-shaped post (163), and the second slider (164) is slidably disposed inside the first slider (140). One end of the spring (165) is fixed inside the first slider (140). The T-shaped post (163) is slidably disposed on the first slider (140), the other end of the spring (165) is fixed on the outer wall of the T-shaped post (163), one end of the lever (166) is fixed on the outer wall of the T-shaped post (163), the lever (166) passes through the first slider (140), and one end of the T-shaped post (163) is inserted into the second profile (120).
3. An aluminum profile with a connecting structure according to claim 2, characterized in that, The first slider (140) has a groove (162) and the second slider (164) is slidably disposed on the groove (162).
4. An aluminum profile with a connecting structure according to claim 2, characterized in that, The first slider (140) has a groove (161) and one end of the spring (165) is fixed in the groove (161). The T-shaped column (163) is slidably disposed in the groove (161).
5. An aluminum profile with a connecting structure according to claim 2, characterized in that, The first slider (140) has a through hole (167), and the pusher (166) passes through the through hole (167).
6. An aluminum profile with a connecting structure according to claim 2, characterized in that, The second profile (120) has a positioning groove (130) and the T-shaped column (163) is inserted into the positioning groove (130).
7. An aluminum profile with a connecting structure according to claim 4, characterized in that, The first slider (140) is provided with four grooves (161), and the four grooves (161) correspond to four springs (165).
8. An aluminum profile with a connecting structure according to claim 2, characterized in that, The push block (166) has a notch (168).