Aluminum alloy stand column special for flower box

By designing an integrated extrusion molding structure for the aluminum alloy columns specifically for flower boxes, the problems of insufficient strength and poor adaptability of the flower box columns were solved, achieving a high-strength and stable connection between the columns and the wall panels, thus improving installation efficiency and structural stability.

CN224583871UActive Publication Date: 2026-08-04CHANGZHOU YIKEN IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU YIKEN IND CO LTD
Filing Date
2025-08-18
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The existing flower box columns are not strong enough, have poor compatibility with wall panels, and are inconvenient to install and maintain, making them prone to deformation, loosening and sliding in outdoor environments, which affects structural stability and installation efficiency.

Method used

A special aluminum alloy column for flower boxes is designed, which adopts an integrated extrusion molding structure of main support, side fitting and inner cavity partition. Combined with main fitting curved surface, arc transition curved surface and inner buckle positioning plane, it can achieve precise snap-fit ​​and multiple positioning, and enhance connection strength and stability.

Benefits of technology

It improves the overall strength and stability of the flower box columns, ensures high connection strength and overall stability between the flower box wall panels and columns, facilitates assembly and installation, and adapts to the manufacturing needs of flower boxes of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to an aluminum alloy column specifically designed for flower boxes, belonging to the field of flower box component technology. To overcome the problems of insufficient strength, poor compatibility with wall panels, and inconvenient installation and maintenance of existing flower box columns, this invention provides an aluminum alloy column for flower boxes, comprising a main support section, a side fitting section, and an inner cavity partition section, with the side fitting section connecting the two into a single unit. Each side fitting section and the inner cavity partition section is composed of two elongated support walls perpendicularly intersecting, with the intersection area of ​​the four walls forming a straight line parallel to the outer contour line of the main support section. The main support section has two main mating curved surfaces and an arc-shaped transition curved surface. The tail of the main mating curved surface has an inwardly snapping positioning plane, parallel to the corresponding support wall of the inner cavity partition section. The column exhibits high overall strength and stability. The side of the flower box can be installed within the space formed by the column at a specific location, ensuring high connection strength between the flower box side and the column, excellent overall stability, and convenient assembly and installation, making it suitable for mass production and application in various flower box manufacturing processes.
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Description

Technical Field

[0001] This invention relates to the field of flower box component technology, specifically to a special aluminum alloy column for flower boxes. Background Technology

[0002] The mainstream materials for existing flower box posts include ordinary steel, wood, ordinary aluminum alloy, and a small amount of composite materials. The structure is mostly solid or simple hollow columnar. Some steel or aluminum alloy posts have added basic reinforcing ribs, while wooden posts are mostly made of a single piece of solid wood or spliced ​​panels. The primary method of fixing is by drilling and then bolting. Some wooden posts use mortise and tenon joints, and a few aluminum alloy posts achieve initial clamping through pre-drilled slots. However, the slot design is simple, mostly straight grooves, without any anti-detachment structure. Bolting requires on-site drilling, which is cumbersome and can damage the anti-corrosion layer on the post surface; wooden posts are prone to corrosion and damage; and posts without anti-detachment structures are prone to bending and falling off after prolonged use or under significant impact. To address these issues, our company, based on the actual usage requirements of flower box posts, has independently developed and manufactured a special aluminum alloy post for flower boxes. Summary of the Invention

[0003] To overcome the problems of insufficient strength, poor compatibility with wall panels, and inconvenient installation and maintenance of existing flower box columns, this invention provides an aluminum alloy flower box column.

[0004] The technical solution adopted in this invention is as follows:

[0005] A type of aluminum alloy column for flower boxes, characterized in that the column has a main support part, a side fitting part, and an inner cavity partition part. The side fitting part is located between the inner cavity partition part and the main support part, connecting the main support part and the inner cavity partition part to form a whole. Both the side fitting part and the inner cavity partition part are composed of two elongated support walls that intersect perpendicularly. The intersection area of ​​the four elongated support walls forms a straight line, which is parallel to the outer contour line of the main support part. The main support part has a main fitting surface and an arc-shaped transition surface. There are two main fitting surfaces, and the main fitting surfaces are located on the arc-shaped transition surfaces. On both sides, the main fitting surface and the arc transition surface are connected to form a whole. The main fitting surface has two fitting arc grooves. The two main fitting surfaces are mirror-symmetrical along the longitudinal vertical plane of the arc transition surface. The tail of the main fitting surface has an inner buckling positioning plane. The inner buckling positioning plane is connected to the main fitting surface and the arc transition surface at an angle of 90°. The inner buckling positioning plane is parallel to the corresponding long strip support wall in the inner cavity partition. The center of the arc transition surface is located on the straight line where the two long strip support walls of the side fitting part intersect. The outer side of the arc transition surface is a smooth and flat surface.

[0006] The central angle of the arc-shaped transition surface in the main support section is 90°.

[0007] The side fitting part, the inner cavity partition part and the main support part are an integrated extrusion molding structure.

[0008] Compared with existing technologies, the beneficial effects of the present invention are as follows:

[0009] This invention, through the comprehensive research and development of the main support section, side fitting section, and inner cavity partition section of the column, the main fitting curved surface and arc transition curved surface in the main support section, the fitting arc groove in the main fitting curved surface and the inner snap positioning plane at the end of the main fitting curved surface, the linear slot on the outer side of the arc transition curved surface, and the long strip support wall of the side fitting section and inner cavity partition section, has created a special aluminum alloy column for flower boxes. This solves the problems existing in the actual use of ordinary columns: 1. Poor overall strength and insufficient stability, easily deformed and tilted in outdoor environments and when bearing the load of flower boxes, resulting in a loose overall structure of the flower box; 2. Unreasonable connection design between the column and the flower box wall panel, lacking a precise fitting snap-fit ​​structure, relying only on simple splicing, resulting in poor strength of the connection parts, and easy loosening and detachment after long-term use; 3. Lack of reasonable fitting and anti-slip structure on the outer side of the column, resulting in a high risk of relative sliding between the column and wall panels and other components during flower box assembly, handling, and daily use, affecting installation efficiency and structural stability. Meanwhile, the invention boasts high overall strength and stability. By cooperating with the inner snap-fit ​​positioning plane, the side fitting adapter, and the long strip support wall of the inner cavity partition, the flower box wall panel is installed within the space formed by the inner snap-fit ​​positioning plane at the tail of the main fitting curved surface, the long strip support wall of the side fitting adapter, and the long strip support wall of the inner cavity partition. This achieves precise snap-fit ​​and multiple positioning, ensuring high connection strength between the flower box wall panel and the column, good overall stability, convenient assembly and installation, adaptability to the manufacturing needs of flower boxes of different specifications, and suitability for mass production and promotion. Attached Figure Description

[0010] Figure 1 This is a rear perspective view of the column of the present invention;

[0011] Figure 2 This is a structural dimension diagram of the column cross-section of the present invention. Detailed Implementation

[0012] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0013] The present invention will be further described in detail below with reference to embodiments and specific implementation methods.

[0014] Referring to the attached drawings, a special aluminum alloy column for flower boxes is characterized by having a main support portion 1, a side fitting portion 2, and an inner cavity partition portion 3. The side fitting portion 2 is located between the inner cavity partition portion 3 and the main support portion 1, connecting the main support portion 1 and the inner cavity partition portion 3 to form a whole. Both the side fitting portion 2 and the inner cavity partition portion 3 are composed of two elongated support walls that intersect perpendicularly. The intersection area of ​​the four elongated support walls forms a straight line, and this straight line is parallel to the outer contour line of the main support portion 1. The main support part 1 has a main fitting surface 101 and an arc-shaped transition surface 102. There are two main fitting surfaces 101, symmetrically distributed on both sides of the arc-shaped transition surface 102, and integrally formed with the arc-shaped transition surface 102. The two main fitting surfaces 101 are mirror-symmetrical along the longitudinal vertical plane of the arc-shaped transition surface 102. The tail of the main fitting surface 101 has an inwardly snapping positioning plane 1011, which is integrated with the main fitting surface 101 and the arc-shaped transition surface 102, and is parallel to the corresponding elongated support wall in the inner cavity partition part 3. The central angle of the arc-shaped transition surface 102 is 90°, and its center is located on the intersection line of the two elongated support walls of the side fitting part 2. The outer side of the arc-shaped transition surface 102 is a smooth and flat curved surface.

[0015] This invention features high overall strength and stability. Through the matching of the inner positioning plane 1011 with the groove of the flower box wall panel, and the limiting of the inner positioning plane, the side of the flower box is installed inside the space between the inner positioning plane 1011 at the tail of the main fitting curved surface 101 of the column main support part 1, a long strip support wall of the side fitting part 2, and a long strip support wall of the inner cavity partition part 3. This ensures high connection strength between the side of the flower box and the column, good overall stability, and convenient assembly and installation. It is suitable for mass production and promotion of different types of flower boxes during the manufacturing process.

[0016] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several modifications and improvements without departing from the inventive concept of the present invention, and these all fall within the protection scope of the present invention.

Claims

1. An aluminum alloy column specifically for flower boxes, characterized in that: The system includes a main support section, side adapter sections, and an inner cavity partition section. The side adapter section is located between the inner cavity partition section and the main support section, connecting the main support section and the inner cavity partition section to form a whole. Both the side adapter section and the inner cavity partition section are composed of two elongated support walls that intersect perpendicularly. The intersection area of ​​the four elongated support walls forms a straight line, which is parallel to the outer contour line of the main support section. The main support section has a main fitting surface and an arc-shaped transition surface. There are two main fitting surfaces, located on either side of the arc-shaped transition surface. The main fitting surfaces and... The curved transition surfaces are connected to form a whole; the main mating surface has an adapting arc groove, and the two main mating surfaces are mirror-symmetrical along the longitudinal vertical plane of the curved transition surface; the tail of the main mating surface has an inner buckling positioning plane, which is connected to the main mating surface and the curved transition surface as a whole, and the inner buckling positioning plane is parallel to the corresponding long strip support wall in the inner cavity partition; the central angle of the curved transition surface is 90°, and its center is located on the straight line where the two long strip support walls of the side fitting part intersect, and the outer side of the curved transition surface is a smooth and flat surface.

2. The aluminum alloy column for flower boxes according to claim 1, characterized in that... The central angle of the arc-shaped transition surface in the main support section is 90°.

3. The aluminum alloy column for flower boxes according to claim 1, characterized in that... The side fitting part, the inner cavity partition part and the main support part are an integrated extrusion molding structure.