Paeonia suffruticosa potting carrier with high adaptability

By designing an adjustable fork arm structure and a threaded connection for transporting peony potted plants, the problem of existing tools being unable to adapt to large flower pots has been solved, achieving efficient and safe transport of potted plants and reducing labor costs.

CN224170948UActive Publication Date: 2026-04-28菏泽市牡丹区牡丹良种繁育中心
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
菏泽市牡丹区牡丹良种繁育中心
Filing Date
2025-04-15
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing tools for transporting potted peonies cannot be adapted to flowerpots of different diameters, especially large flowerpots, resulting in low transport efficiency and easy damage to the potted plants.

Method used

A highly adaptable peony potted plant transport vehicle was designed. Through an adjustable fork arm structure and threaded connection, it can adapt to flower pots of different sizes, including large potted plants. It adopts a two-way basket screw tensioner and adjuster for adjustment, and combined with an extended handle bar for easy carrying.

Benefits of technology

It improves the efficiency and safety of transporting potted peonies, reduces labor costs, and adapts to the transportation needs of potted plants of various sizes.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224170948U_ABST
    Figure CN224170948U_ABST
Patent Text Reader

Abstract

The utility model provides a peony potted plant carrier with strong adaptability, which comprises a frame and a walking device, the walking device comprises a connecting shaft, the frame is connected on the connecting shaft, the frame comprises two symmetrically arranged fork arms, each fork arm comprises a connecting cylinder, the connecting cylinder is sleeved on the connecting shaft, and the fork arms are connected with the connecting cylinder. The end, close to the walking rotating wheel, of the connecting cylinder is rigidly connected with a supporting rod, the supporting rod and the connecting cylinder are perpendicularly arranged, the position, corresponding to the supporting rod, of the connecting cylinder is rigidly connected with an adjusting rod, the inner side of the adjusting rod is rigidly connected with a threaded rod perpendicular to the adjusting rod, and a two-way turnbuckle tensioner is arranged between the two threaded rods. The top of the adjusting rod is connected with a lengthening cylinder, and the lengthening cylinder is connected with a lengthening grab rail. According to the potted peony carrying vehicle, the distance between the two fork arms can be adjusted according to the specifications of flowerpots, so that the potted peony carrying vehicle can be suitable for carrying potted peonies of various specifications, particularly suitable for carrying large-specification potted peonies, and the carrying efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of potted plant transportation technology, and in particular to a highly adaptable peony potted plant transportation vehicle. Background Technology

[0002] With the improvement of people's living standards and the increasing demand for home beautification, potted peonies are favored by consumers for their unique varieties, rich colors, and profound cultural connotations. The market demand for potted peonies is showing a steady upward trend.

[0003] Since peonies often have large plants, the pots used for potted peonies are also quite large, which makes it difficult to move potted peonies.

[0004] Especially in small and medium-sized peony planting bases, existing peony potted plant handling tools are mostly fixed-size trolleys suitable for small and medium-sized potted plants (10-22 cm in diameter). These trolleys cannot accommodate large peony potted plants (25-45 cm in diameter), forcing them to be handled manually. This is inefficient and easily damages the potted plants, making it difficult to meet the production and market demand for large peony potted plants. Therefore, there is an urgent need for a specialized handling device that can accommodate large-sized peony potted plants and saves labor. Utility Model Content

[0005] To solve the above-mentioned technical problems, this application provides a highly adaptable peony potted plant transport vehicle, which is achieved through the following technical solution:

[0006] A highly adaptable peony potted plant transport vehicle includes a frame and a traveling device. The traveling device includes a connecting shaft with a traveling wheel at each end. The frame is connected to the connecting shaft. The frame includes two symmetrically arranged forks. Each fork includes a connecting cylinder, which is sleeved on the connecting shaft. A support rod is rigidly connected to the connecting cylinder near the traveling wheel. The support rod is perpendicular to the connecting cylinder. An adjusting rod is rigidly connected to the connecting cylinder at the corresponding point of the support rod. A screw rod is rigidly connected to the inner side of the adjusting rod, perpendicular to it. A two-way turnbuckle tensioner is provided between the two screw rods. A nut is provided at each end of the two-way turnbuckle tensioner. The two nuts are threadedly connected to the corresponding screw rods. An annular adjuster is provided between the two nuts. The adjustmenter and the nut are connected as a single piece. The angle between the support rod and the adjusting rod is an obtuse angle.

[0007] The top of the adjusting rod is connected to an extension tube, the outer diameter of which is smaller than the diameter of the adjusting rod. An extension handrail is connected to the extension tube, the extension handrail being cylindrical, and the lower part of the extension handrail fitting over the extension tube with a clearance fit.

[0008] As a preferred embodiment, the surface of the connecting shaft is provided with a friction pattern.

[0009] As a preferred embodiment, the distance between the support rod and the outer edge of the connecting cylinder is 2-5 cm.

[0010] As a preferred embodiment, the thread directions of the two screw surfaces are opposite, and the thread directions of the two nuts are also opposite.

[0011] As a preferred embodiment, the included angle between the support rod and the adjusting rod is 120°-150°.

[0012] As a preferred embodiment, the extended tube is provided with a spring positioning pin, and the extended handrail has a connecting hole corresponding to the spring positioning pin.

[0013] Compared with the prior art, the beneficial effects of this utility model are: this utility model can adjust the distance between the two forks to correspond to the specifications of the flower pot, so that the transport vehicle can be used to transport potted peonies of various specifications, especially large potted peonies, thereby improving the efficiency and safety of transport.

[0014] For ease of carrying, the extension handrail is detached when not in use, which shortens the length of the transport vehicle and makes it easier to load and carry. When in use, the extension handrail is fitted onto the extension tube and connected to the frame, and locked in place by a spring positioning pin. To connect, first press down the spring positioning pin, and when the connection hole moves to the position of the spring positioning pin, the spring positioning pin pops out from the connection hole, thus fixing the position of the extension handrail.

[0015] This design is ingenious and easy to operate, which can significantly improve the efficiency of transporting potted peonies and reduce labor costs. Attached Figure Description

[0016] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments:

[0017] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0018] Figure 2 This is a top view of the structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the partial explosion structure of this utility model. Detailed Implementation

[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments:

[0021] A highly adaptable peony potted plant transport vehicle includes a frame 1 and a traveling device 2. The traveling device 2 includes a connecting shaft 21, with a traveling wheel 22 at each end of the connecting shaft 21. The frame 1 is connected to the connecting shaft 21. The frame 1 includes two symmetrically arranged fork arms 3, each fork arm 3 including a connecting cylinder 31. The connecting cylinder 31 is sleeved on the connecting shaft 21. A support rod 32 is rigidly connected to the connecting cylinder 31 near the end of the traveling wheel 22. The support rod 32 is perpendicular to the connecting cylinder 31. An adjusting rod 33 is rigidly connected to the connecting cylinder 31 at the connection point with the support rod 32. A screw 34 perpendicular to the adjusting rod 33 is rigidly connected to the inner side of the adjusting rod 33. A two-way turnbuckle tensioner 4 is provided between the two screws 34. A nut 41 is provided at each end of the two-way turnbuckle tensioner 4. The two nuts 41 are threadedly connected to the corresponding screws 34. An annular adjuster 42 is provided between the two nuts 41. The connection between the adjuster 42 and the nuts 41 is an integral connection.

[0022] The angle between the support rod 32 and the adjusting rod 33 is an obtuse angle.

[0023] The top of the adjusting rod 33 is connected to the extension tube 341. The outer diameter of the extension tube 341 is smaller than the diameter of the adjusting rod 33. An extension handrail 35 is connected to the extension tube 341. The extension handrail 35 is cylindrical. The lower part of the extension handrail 35 is sleeved on the extension tube 341. The extension handrail 35 and the extension tube 341 are fitted with a clearance fit.

[0024] Furthermore, the surface of the connecting shaft 21 is provided with a friction pattern.

[0025] Furthermore, the distance between the support rod 32 and the outer edge of the connecting cylinder 31 is 2-5cm.

[0026] Furthermore, the thread directions on the surfaces of the two screws 34 are opposite, and the thread directions of the two nuts are also opposite.

[0027] Furthermore, the included angle between the support rod 32 and the adjusting rod 33 is 120°-150°.

[0028] Furthermore, a spring positioning pin 5 is provided on the extended tube 341, and a connecting hole 6 is provided on the extended handrail 35 corresponding to the spring positioning pin 5.

[0029] To facilitate carrying, the extended handlebar 35 of this highly adaptable peony potted plant transport vehicle is detached, which shortens the length of the transport vehicle and makes it easier to load and carry. In use, the extended handlebar 35 is fitted onto the extension tube 341 and connected to the frame 1, and locked by the spring positioning pin 5. When connecting, the spring positioning pin 5 is pressed down first. When the connection hole 6 moves to the position of the spring positioning pin 5, the spring positioning pin 5 pops out from the connection hole 5, thus fixing the position of the extended handlebar.

[0030] Since most flowerpots are shaped like a bottom smaller than a top, before use, rotate the double-sided turnbuckle tensioner 4 to adjust the distance between the two fork arms 3. When it is necessary to reduce the distance between the two fork arms 3, rotate the double-sided turnbuckle tensioner 4 counterclockwise, so that the two nuts 41 rotate along the corresponding screws 34. As the distance between the two screws 34 gradually decreases, the connecting cylinders 31 of the two fork arms 3 move inward along the connecting shaft 21, and the distance between the two fork arms 3 decreases. When it is necessary to increase the distance between the two fork arms 3, rotate the double-sided turnbuckle tensioner 4 clockwise, so that the two nuts 41 rotate along the corresponding screws 34. As the distance between the two screws 34 gradually increases, the connecting cylinders 31 of the two fork arms 3 move outward along the connecting shaft 21, and the distance between the two fork arms 3 increases.

[0031] When using it, the distance between the two forked arms 3 is generally adjusted to match the diameter of the upper part of the flowerpot.

[0032] When in operation, place the support rods 32 on both sides of the bottom of the flowerpot, then press down the extension handle 35. The support rods 32 rotate upwards until they reach the upper middle part of the flowerpot, at which point the flowerpot is stuck between the two support rods 32. The two support rods 32 lift the flowerpot, and pushing the extension handle 35 will allow the flowerpot to be moved smoothly.

[0033] The specific implementation of this utility model has been described in detail above, but it is only an example. This utility model is not limited to the specific implementation cases described above, and equivalent modifications to this utility model are also within the protection scope of this utility model.

Claims

1. A highly adaptable peony potted plant transport vehicle, characterized in that, The vehicle includes a frame (1) and a traveling device (2). The traveling device (2) includes a connecting shaft (21), with a traveling wheel (22) at each end of the connecting shaft (21). The frame (1) is connected to the connecting shaft (21). The frame (1) includes two symmetrically arranged forks (3). Each fork (3) includes a connecting cylinder (31). The connecting cylinder (31) is fitted onto the connecting shaft (21). A support rod (32) is rigidly connected to the connecting cylinder (31) near the end of the traveling wheel (22). The support rod (32) is perpendicular to the connecting cylinder (31). An adjusting rod (33) is rigidly connected to the cylinder (31) at the connection point with the support rod (32). A screw (34) perpendicular to the adjusting rod (33) is rigidly connected to the inner side of the adjusting rod (33). A two-way turnbuckle tensioner (4) is provided between the two screws (34). A nut (41) is provided at each end of the two-way turnbuckle tensioner (4). The two nuts (41) are threadedly connected to the screws (34) on the corresponding sides. An annular adjuster (42) is provided between the two nuts (41). The connection between the adjuster (42) and the nut (41) is an integral connection. The angle between the support rod (32) and the adjusting rod (33) is an obtuse angle; The top of the adjusting rod (33) is connected to the extension tube (341), the outer diameter of the extension tube (341) is smaller than the diameter of the adjusting rod (33), and an extension handrail (35) is connected to the extension tube (341). The extension handrail (35) is cylindrical, and the lower part of the extension handrail (35) is sleeved on the extension tube (341). The extension handrail (35) and the extension tube (341) are in clearance fit.

2. The adaptable peony potted plant transport vehicle according to claim 1, characterized in that, The surface of the connecting shaft (21) is provided with a friction pattern.

3. The adaptable peony potted plant transport vehicle according to claim 1, characterized in that, The distance between the outer edge of the support rod (32) and the connecting tube (31) is 2-5cm.

4. The adaptable peony potted plant transport vehicle according to claim 1, characterized in that, The threads on the surfaces of the two screws (34) are in opposite directions, and the threads on the two nuts are also in opposite directions.

5. The adaptable peony potted plant transport vehicle according to claim 1, characterized in that, The included angle between the support rod (32) and the adjusting rod (33) is 120°-150°.

6. The adaptable peony potted plant transport vehicle according to claim 1, characterized in that, The extended tube (341) is provided with a spring positioning pin (5), and the extended handrail (35) is provided with a connecting hole (6) corresponding to the spring positioning pin (5).