Binding support structure facilitating floriculture manufacturing

By designing a binding support structure that facilitates floral arrangement, and utilizing a combination of binding rods and limiting structures, the problem of inconsistent shaping caused by relying on manual binding of bouquets is solved, achieving efficient and uniform bouquet shapes and improving the efficiency and quality of floral arrangement production.

CN224171244UActive Publication Date: 2026-04-28谢美娴
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
谢美娴
Filing Date
2025-05-12
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In current floral arrangements, the bundling of bouquets relies on manual operation, resulting in inconsistent shaping quality. Existing floral shaping frames are complex in structure and inconvenient to operate, making it difficult to meet the needs for efficient and uniform styling.

Method used

Design a binding support structure for easy floral arrangement, including binding rods and limiting structures, which are fixedly connected by a junction. The limiting structure and binding rods form a specific angle and shape to provide convenient flower branch positioning and adjustment. The structure can be made in the form of straight rods, curved rods or semi-circular trumpet covers to simplify the bouquet shaping process.

Benefits of technology

It improves the efficiency and uniformity of bouquet tying, reduces shaping deviations, shortens production time, and increases the delivery speed and quality consistency of bouquet products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of floriculture bundling, in particular to a bundling support structure convenient for floriculture manufacturing, which comprises a bundling rod convenient for bundling flowering branches and a limiting structure convenient for limiting the arrangement positions of the flowering branches, the bundling rod is fixedly connected with the limiting structure through an intersection part, and the bundling rod adopts a straight handle rod structure. And the bundling rods are vertically arranged from the intersection part to the bottom. According to the bundling support structure facilitating floriculture manufacturing, the bundling rod facilitating bundling of the flowering branches and the limiting structure facilitating limiting of the arrangement positions of the flowering branches are assembled to form the bundling support structure facilitating floriculture manufacturing, when a worker bundles the flowering branches, the flowering branches and the bundling rod can be held together, and after the bundling position is positioned through the bundling rod, the worker can conveniently carry out floriculture manufacturing. The arrangement of the flowering branches can lean against the limiting structure to help the structural shaping of the bouquet, the shaping deviation caused by personnel to the structure of the bouquet is effectively reduced, the manual time required for bundling and shaping can be shortened by means of the bundling support structure, the floriculture manufacturing efficiency is improved, and the delivery speed of bouquet commodities is increased.
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Description

Technical Field

[0001] This utility model relates to the field of floral binding technology, specifically a binding support structure that facilitates floral arrangement. Background Technology

[0002] In daily floral arrangements, bouquets are usually bundled and packaged for sale. Several flower branches can be assembled into a bouquet shape. Bundling various bouquet shapes is a basic craft of every floral shop. Especially during peak seasons such as holidays, a lot of manpower is needed every day to bundle flower branches and assemble them into bouquets of specified shapes.

[0003] Currently, the craft of tying bouquets relies primarily on manual labor. While floral foam or a workbench for packaging bouquets may be used, the tying of bouquets still largely depends on manual assembly and shaping. However, manual assembly of bouquets is inefficient in meeting the demands of large-scale floral production, and the shaping of bouquets cannot achieve a high degree of similarity or uniformity. Deviations in shaping result in inconsistent quality of tied bouquets, and the final bouquet design largely depends on the skill of the craftsman. This can lead to inconsistent quality of tied bouquets for customers.

[0004] In addition, existing floral styling frames for bundling bouquets (such as...) Figure 19 As shown, it is only suitable for customers without floral arrangement experience to arrange flowers themselves. It cannot quickly assemble bouquets. Its frame structure is complex and heavy, which can easily lead to a top-heavy situation. It is not convenient for people to adjust the size, shape and number of flower branches of the bouquet, and it is not convenient for florists to operate and use.

[0005] To address the above shortcomings, we need to develop a binding support structure that is easy to use in floral arrangements to meet the needs of a wide range of users. Utility Model Content

[0006] In response to the aforementioned problems in existing floral arrangement techniques, such as inconsistent quality due to reliance on skilled hands in bundling and shaping bouquets, and the complex and inconvenient structure of existing floral shaping frames, the technical solution adopted by this utility model is as follows:

[0007] A binding support structure for easy floral arrangement includes a binding rod for binding flower branches and a limiting structure for restricting the placement of flower branches. The binding rod and the limiting structure are fixedly connected by a junction. The binding rod adopts a straight handle structure and is vertically arranged from the junction toward the bottom.

[0008] As described above, a binding support structure that facilitates floral arrangement is provided. The limiting structure also adopts a straight rod structure. At least two of the limiting structures are arranged radially and laterally from the intersection toward the binding rod. The length of the binding rod is greater than the length of the limiting structure.

[0009] The binding support structure for facilitating floral arrangements, as described above, further includes limiting rings for structural reinforcement that are not connected end-to-end. The limiting rings are respectively wrapped around one end of the multiple limiting structures away from the confluence.

[0010] As described above, a binding support structure that facilitates floral arrangement is provided, wherein the limiting structure and the binding rod form an inclined angle α, the angle α being between 75 degrees and 150 degrees, and adjacent limiting structures form an inclined angle b, the angle b being between 60 degrees and 120 degrees.

[0011] As described above, a binding support structure that facilitates floral arrangement is provided. The limiting structure adopts a crank rod structure. The limiting structure bends in a circular shape from the intersection toward the binding rod to form a closed ring structure. The closed area of ​​the closed ring structure is teardrop-shaped.

[0012] As described above, a binding support structure for facilitating floral arrangements is provided, wherein the confluence includes a first transition portion located on the binding rod and a second transition portion located on the limiting structure. The first transition portion and the second transition portion are connected by an extension rod, which is inclined to the binding rod, and the limiting structure is inclined to the binding rod.

[0013] As described above, a binding support structure that facilitates floral arrangement is provided. The limiting structure adopts a straight handle rod structure. Two limiting structures are symmetrically arranged on the left and right sides of the extension rod. The central axes of the two limiting structures and the central axis of the extension rod are both located on a plane perpendicular to the central axis of the binding rod.

[0014] As described above, a binding support structure that facilitates floral arrangement is provided. The limiting structure adopts a crank rod structure, and the two limiting structures are respectively set on the left and right sides of the extension rod. The two limiting structures respectively enclose and form a branch insertion ring for limiting the position of the flower branches.

[0015] As described above, a binding support structure that facilitates floral arrangement is provided. The limiting structure adopts a semi-circular trumpet-shaped structure that opens from the intersection towards the top. The limiting structure has limiting through holes for restricting the placement of flower branches.

[0016] As described above, a binding support structure that facilitates floral arrangement is provided, wherein the semi-circular trumpet-shaped cover structure is provided with a first opening layer, a second opening layer and a third opening layer in sequence from the intersection towards the top, the limiting through hole is located in the second opening layer, and the opening taper g of the third opening layer is greater than the opening taper e of the first opening layer but less than the opening taper f of the second opening layer.

[0017] The beneficial effects of this utility model are as follows:

[0018] This invention assembles a binding rod for easy binding of flower branches and a limiting structure for easy restriction of the flower branch placement into a binding support structure that facilitates floral arrangement. When binding flower branches, workers can hold the flower branches and binding rod together. After positioning the binding position using the binding rod, the flower branches can be placed against the limiting structure to help shape the bouquet. This effectively reduces the shaping deviation caused by workers. Furthermore, the binding support structure can reduce the manual time required for binding and shaping, improve the efficiency of floral arrangement, and increase the delivery speed of bouquets. Attached Figure Description

[0019] Figure 1-3 This is a schematic diagram of the binding support structure of Embodiment 1 of this utility model.

[0020] Figure 4-6 This is a schematic diagram of the binding bracket structure of Embodiment 2 of this utility model.

[0021] Figure 7-9 This is a schematic diagram of the binding support structure of Embodiment 3 of this utility model.

[0022] Figure 10-12 This is a schematic diagram of the binding bracket structure of Embodiment 4 of this utility model.

[0023] Figure 13-15 This is a schematic diagram of the binding bracket structure of Embodiment 5 of this utility model.

[0024] Figure 16-18 This is a schematic diagram of the binding bracket structure of Embodiment 6 of this utility model.

[0025] Figure 19 The background is a three-dimensional view of an existing floral arrangement frame.

[0026] Figure 20 This is a schematic diagram of flower arrangement in Embodiment 1 of this utility model. Figure 1 .

[0027] Figure 21 This is a schematic diagram of the flower arrangement usage in Embodiment 2 of this utility model. Figure 2 .

[0028] Figure 22 This is a schematic diagram of the flower arrangement use in Embodiment 3 of this utility model. Figure 3 .

[0029] Figure 23 This is a schematic diagram of the flower arrangement use in Embodiment 4 of this utility model. Figure 4 .

[0030] Figure 24 This is a schematic diagram of the flower arrangement use in Embodiment 5 of this utility model. Figure 5 .

[0031] Figure 25 This is a schematic diagram of the flower arrangement use in Embodiment 6 of this utility model. Figure 6 . Detailed Implementation

[0032] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0033] Example 1:

[0034] like Figures 1 to 3 as well as Figure 20 The diagram shows a binding support structure for easy floral arrangement, including a binding rod 1 for easy binding of flower branches and a limiting structure 2 for easy restriction of the flower branch placement position. The binding rod 1 and the limiting structure 2 are fixedly connected by a junction 3. The binding rod 1 adopts a straight handle structure and is vertically set from the junction 3 toward the bottom.

[0035] Furthermore, the limiting structure 2 also adopts a straight handle rod structure, and at least two limiting structures 2 are arranged radially and laterally from the intersection 3 toward the binding rod 1, and the rod length of the binding rod 1 is greater than the rod length of the limiting structure 2.

[0036] Furthermore, an inclined angle α is formed between the limiting structure 2 and the binding rod 1, with the angle α ranging from 75 degrees to 150 degrees. In this embodiment, the angle α is preferably 90 degrees to form a vertical structure. An inclined angle b is formed between adjacent limiting structures 2, with the angle b ranging from 60 degrees to 120 degrees. In this embodiment, the angle b is preferably 90 degrees to form a vertical structure.

[0037] Specifically, in this embodiment, the binding rod 1 is a vertical support rod of the binding support structure used for binding and shaping the bottom of the bouquet, the limiting structure 2 is a horizontal support rod of the binding support structure used for arranging and shaping the top of the bouquet, and the intersection 3 is a connecting structure of the binding support structure used for fixing and connecting the binding rod 1 and the limiting structure 2. The connection part can be formed by welding, gluing or hot melting. Since the basic structure of a flower is composed of flower branches and flowers, the binding rod 1 adopts a vertically set straight handle structure to help the flower branches gather and bind. When the bottom of the bouquet is shaped, the top of the bouquet can be arranged and adjusted by the limiting structure 2. Different bouquet shapes can be adapted to different limiting structures 2, which facilitates the floral production process.

[0038] Specifically, in this embodiment, both the binding rod 1 and the limiting structure 2 adopt a straight rod structure. The limiting structure 2 includes two limiting branch rods. The binding rod 1 is vertically set at the bottom of the binding support structure, and the limiting branch rod is set radially and laterally towards the binding rod 1 at the top of the binding support structure. Both limiting branch rods are perpendicular to the binding rod 1, and the two limiting branch rods are also perpendicular to each other. Since the flower branches are relatively long, the rod length of the binding rod 1 is greater than the rod length of the limiting structure 2, which makes it easier to bind the bouquet.

[0039] like Figure 20 As shown, when in use, several flower branches are placed against the binding rod 1, and the flowers at the top of the branches are placed against the branch length of the limiting structure 2. By adopting a layered flower arrangement method, a relatively complete heart-shaped bouquet shape can be obtained. The uniformity of multiple repeated bindings is high, which effectively reduces the shaping deviation caused by personnel. Furthermore, the binding support structure can reduce the manual time required for binding and shaping, improve the efficiency of floral production, and increase the delivery speed of bouquet products.

[0040] Optionally, in some embodiments, the binding rod 1 and the limiting structure 2 may be made of wood, and the junction 3 may be glued or tape to bond and fix the connecting end of the binding rod 1 and the connecting end of the limiting structure 2 to form a stable connection junction structure.

[0041] Optionally, in some embodiments, the binding rod 1 and the limiting structure 2 can be made of steel, and the junction 3 is formed by welding the connecting end of the binding rod 1 and the connecting end of the limiting structure 2 to form a stable connection junction structure.

[0042] Optionally, in some embodiments, the binding rod 1 and the limiting structure 2 may be made of plastic, and the junction 3 is formed by melting and fixing the connecting end of the binding rod 1 and the connecting end of the limiting structure 2 together using a hot-melt process to form a stable connection junction structure.

[0043] Example 2:

[0044] Based on Example 1, the difference from Example 1 is as follows: Figures 4 to 6 as well as Figure 21 The binding support structure shown is convenient for floral art making and also includes a limiting ring 21 for structural reinforcement that is not connected end to end. The limiting ring 21 is respectively wrapped around the end of the multiple limiting structures 2 away from the intersection 3.

[0045] Specifically, in this embodiment, the three limiting branch rods of the limiting structure 2 are tilted upwards to form three support endpoints, and the limiting ring 21 is stably set horizontally around the three support endpoints. In this embodiment, the included angle α between the limiting structure 2 and the binding rod 1 is preferably 135 degrees or 140 degrees, and the included angle b between adjacent limiting branch rods is preferably 90 degrees. The limiting ring 21 is not connected end to end and has a semi-circular ring structure, which can be used to restrict the arrangement of flower branches in a ring.

[0046] like Figure 21 As shown, when in use, several flower branches are placed against the binding rod 1, and the flowers at the top of the flower branches are placed against the inner side of the arc-shaped ring structure of the limiting ring 21. By using the layered arrangement of flowers inside and outside, a bouquet shape that is more oval or round can be obtained.

[0047] Example 3:

[0048] Based on Example 1, the difference from Example 1 is as follows: Figures 7 to 9 as well as Figure 22 The diagram shows a binding support structure that facilitates floral arrangements. The limiting structure 2 adopts a crank rod structure. The limiting structure 2 bends in a circular shape from the intersection 3 toward the binding rod 1 to form a closed ring structure 26. The closed area of ​​the closed ring structure 26 is teardrop-shaped.

[0049] Specifically, in this embodiment, the limiting branch rod of the limiting structure 2 adopts an arc-shaped curved crank rod structure, and the closed ring structure 26 is a frame for the flower branches to extend into. The closed ring structure 26 encloses and forms a teardrop-shaped closed area, with the tip of the teardrop shape close to the confluence 3 and the round head of the teardrop shape away from the confluence 3, forming a symmetrical structure on both sides.

[0050] like Figure 22 As shown, when in use, several flower branches are placed against the binding rod 1. Some of the flower branches need to be inserted into the teardrop-shaped closed area, while the flowers at the top of the flower branches are placed against the outside of the closed ring structure 26. By using the flower arrangement method of layering inside and outside, a heart-shaped bouquet shape with a relatively flat and long width can be obtained.

[0051] Example 4:

[0052] Based on Example 1, the difference from Example 1 is as follows: Figures 10 to 12 as well as Figure 24The diagram shows a binding support structure that facilitates floral arrangement. The junction 3 includes a first transition part 31 located on the binding rod 1 and a second transition part 32 located on the limiting structure 2. The first transition part 31 and the second transition part 32 are connected by an extension rod 4. The extension rod 4 is inclined to the binding rod 1, and the limiting structure 2 is inclined to the binding rod 1.

[0053] Furthermore, the limiting structure 2 adopts a straight handle rod structure, and the two limiting structures 2 are symmetrically arranged on the left and right sides of the extension rod 4. The central axis of the two limiting structures 2 and the central axis of the extension rod 4 are both located on the plane perpendicular to the central axis of the binding rod 1.

[0054] Specifically, in this embodiment, the first adapter 31 extends a vertical extension rod 4 radially toward the binding rod 1. The extended end of the extension rod 4 is fixedly connected to two limiting branch rods of the limiting structure 2 through the second adapter 32. The included angle b between adjacent limiting branch rods is preferably 100 degrees or 120 degrees. The central axis of the limiting branch rods of the two limiting structures 2 and the central axis of the extension rod 4 are both located in the same plane, which is perpendicular to the central axis of the binding rod 1. The two limiting branch rods are respectively inclined around the second adapter 32 toward the direction closer to the first adapter 31 to form an acute included angle.

[0055] like Figure 24 As shown, when in use, several flower branches rest against the binding rod 1, and the flowers at the top of the flower branches rest against the outer periphery of the limiting structure 2. By adopting a layered arrangement of flowers, a relatively complete heart-shaped bouquet shape can be obtained.

[0056] Example 5:

[0057] Based on Example 4, the difference from Example 4 is as follows: Figures 13 to 15 as well as Figure 23 The diagram shows a binding support structure that facilitates floral arrangement. The limiting structure 2 adopts a crank rod structure. The two limiting structures 2 are respectively set on the left and right sides of the extension rod 4. The two limiting structures 2 respectively enclose to form a branch insertion ring 22 for limiting the position of the flower branches.

[0058] Specifically, in this embodiment, the limiting branch rods of the two limiting structures 2 bend from the second adapter 32 toward the first adapter 31 and enclose to form two symmetrical closed areas, forming a branch insertion ring 22. The closed area is teardrop-shaped, with the tip of the teardrop shape close to the second adapter 32 and the round head of the teardrop shape close to the first adapter 31, passing between the first adapter 31 and the second adapter 32.

[0059] like Figure 23As shown, when in use, several flower branches are placed against the binding rod 1. Some of the flower branches need to be inserted into the teardrop-shaped closed area, that is, the flower branches are inserted into the insert ring 22. The flowers at the top of the flower branches are placed against the outside of the insert ring 22. By using the flower arrangement method of inner and outer layering, a heart-shaped bouquet shape with a relatively flat and long width can be obtained.

[0060] Example 6:

[0061] Based on Example 1, the difference from Example 1 is as follows: Figures 16 to 18 as well as Figure 25 The diagram shows a binding support structure that facilitates floral arrangement. The limiting structure 2 adopts a semi-circular trumpet-shaped cover structure 24 that opens from the confluence part 3 toward the top. The limiting structure 2 has a limiting through hole 23 for limiting the position of the flower branches.

[0062] Specifically, in this embodiment, the limiting structure 2 can be a semi-circular horn cover structure 24 made of hard plastic, wood or metal. The surface of the semi-circular horn cover structure 24 is provided with limiting through holes 23 for limiting the position of the flower branches. The limiting through holes 23 adopt a fan-shaped hole structure. The limiting through holes 23 can be one, two, three or more. Preferably, two limiting through holes 23 are symmetrically arranged on the left and right sides.

[0063] like Figure 25 As shown, when in use, several flower branches are placed against the binding rod 1, and some of the flower branches need to be inserted into the limiting through hole 23. The flowers at the top of the flower branches are placed against the inner and outer sides of the limiting through hole 23. By using the flower arrangement method of inner and outer partitioning, the bouquet shape shown in the figure can be obtained.

[0064] Based on Example 6, further, as Figure 17 As shown, the semi-circular horn cover structure 24 has a first opening layer 241, a second opening layer 242 and a third opening layer 243 arranged sequentially from the intersection 3 toward the top. The limiting through hole 23 is located in the second opening layer 242. The opening taper g of the third opening layer 243 is greater than the opening taper e of the first opening layer 241 but less than the opening taper f of the second opening layer 242.

[0065] Specifically, in this embodiment, the first opening layer 241 is used to fix the semi-circular trumpet-shaped cover structure 24 to the junction 3, the second opening layer 242 is used to insert the flower branches of the bouquet, and the third opening layer 243 is used to enhance the gathering effect of the bouquet, making the gathering effect better. The semi-circular trumpet-shaped cover structure 24 with different opening tapers can effectively gather the flower branches of the bouquet, making the arrangement between the flowers more compact and not appearing scattered in appearance, thus improving the aesthetic effect of the finished floral arrangement.

[0066] like Figure 25As shown, when in use, several flower branches are placed against the binding rod 1, and some of the flower branches need to be inserted into the limiting through hole 23. The flowers at the top of the flower branches are placed against the inner and outer sides of the limiting through hole 23. By using the flower arrangement method of inner and outer partitioning, the bouquet shape shown in the figure can be obtained.

[0067] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. A binding support structure for easy floral arrangement, characterized in that: It includes a binding rod (1) for easy binding of flower branches and a limiting structure (2) for easy restriction of the placement of flower branches. The binding rod (1) and the limiting structure (2) are fixedly connected by a junction (3). The binding rod (1) adopts a straight handle structure and is vertically set from the junction (3) toward the bottom.

2. The binding support structure for facilitating floral arrangement as described in claim 1, characterized in that: The limiting structure (2) also adopts a straight rod structure. At least two of the limiting structures (2) are arranged radially and laterally from the intersection (3) toward the binding rod (1). The rod length of the binding rod (1) is greater than the rod length of the limiting structure (2).

3. The binding support structure for facilitating floral arrangement as described in claim 2, characterized in that: It also includes a limiting ring (21) for structural reinforcement that is not connected end to end, the limiting ring (21) passing around one end of the multiple limiting structures (2) away from the intersection (3).

4. The binding support structure for facilitating floral arrangement as described in claim 2, characterized in that: The limiting structure (2) and the binding rod (1) form an inclined angle a, the angle a being between 75 degrees and 150 degrees. Adjacent limiting structures (2) form an inclined angle b, the angle b being between 60 degrees and 120 degrees.

5. The binding support structure for facilitating floral arrangement as described in claim 1, characterized in that: The limiting structure (2) adopts a crank rod structure. The limiting structure (2) is bent in a ring shape from the intersection (3) toward the binding rod (1) to form a closed ring structure (26). The closed area of ​​the closed ring structure (26) is teardrop-shaped.

6. The binding support structure for facilitating floral arrangement as described in claim 1, characterized in that: The junction (3) includes a first adapter (31) located on the binding rod (1) and a second adapter (32) located on the limiting structure (2). The first adapter (31) and the second adapter (32) are connected by an extension rod (4). The extension rod (4) is inclined to the binding rod (1), and the limiting structure (2) is inclined to the binding rod (1).

7. The binding support structure for facilitating floral arrangement as described in claim 6, characterized in that: The limiting structure (2) adopts a straight handle rod structure. The two limiting structures (2) are symmetrically arranged on the left and right sides of the extension rod (4). The central axis of the two limiting structures (2) and the central axis of the extension rod (4) are both located on a plane perpendicular to the central axis of the binding rod (1).

8. The binding support structure for facilitating floral arrangement as described in claim 6, characterized in that: The limiting structure (2) adopts a crank rod structure. The two limiting structures (2) are respectively set on the left and right sides of the extension rod (4). The two limiting structures (2) respectively enclose to form a branch insertion ring (22) for limiting the position of the flower branches.

9. The binding support structure for facilitating floral arrangement as described in claim 1, characterized in that: The limiting structure (2) adopts a semi-circular horn cover structure (24) that opens from the intersection (3) toward the top, and the limiting structure (2) is provided with a limiting through hole (23) for limiting the position of the flower branches.

10. A binding support structure for facilitating floral arrangement as described in claim 9, characterized in that: The semi-circular horn cover structure (24) has a first opening layer (241), a second opening layer (242) and a third opening layer (243) arranged sequentially from the intersection (3) toward the top. The limiting through hole (23) is located in the second opening layer (242). The opening taper g of the third opening layer (243) is greater than the opening taper e of the first opening layer (241) but less than the opening taper f of the second opening layer (242).