Liftable and adjustable three-dimensional flower stand drainage device for garden landscape
Patent Information
- Application Number
- CN202522531838.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-28
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-28
AI Technical Summary
[0004]本实用新型涉及一种园林景观用可升降调节的立体花架排水装置,解决了现有花架上下相邻的两个放置板之间高度是固定的,工人就无法根据盆栽的高度来灵活的调节上下两个放置板之间的距离,以及多数立体花架未设置专门的分层排水结构的问题
1、放置板的上端面固定安装有围框,工人可以将盆栽摆放在放置板的表面,围框可以防止水从放置板表面逸散出来,围框的上端面焊接有固定柱,放置板的下端面焊接有四个伸缩杆,伸缩杆滑动卡装在固定柱内部的装置槽中,工人可以根据盆栽的高度来调节伸缩杆在装置槽中的位置,从而可以调节上下相邻两个放置板之间的距离,然后将固定销穿过通孔与伸缩杆表面限位孔,从而可以将伸缩杆固定在装置槽中。
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Figure CN224760817U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of flower rack drainage devices, and in particular to a height-adjustable three-dimensional flower rack drainage device for garden landscapes. Background Technology
[0002] In landscape design, three-dimensional flower stands have become a common feature in parks, residential areas, and courtyards because they can make full use of vertical space, increase green coverage, and enhance the sense of landscape layering. With the diversification of flower varieties and the differences in potted plant heights, height-adjustable three-dimensional flower stands are gradually replacing traditional fixed-height flower stands. By flexibly adjusting the spacing between layers, they can not only adapt to the height requirements of flowers at different growth stages, but also optimize lighting and ventilation conditions, and improve the convenience of planting and maintenance.
[0003] However, existing height-adjustable vertical flower racks still have some shortcomings in use: First, the height between two adjacent placement boards is fixed, but different types of potted plants have different heights. This makes it impossible for workers to flexibly adjust the distance between the two placement boards according to the height of the potted plants, which not only fails to make full use of the space, but is also unsightly. Secondly, most three-dimensional flower stands do not have a dedicated tiered drainage structure. After watering or rain, the water seeping from the upper potted plants drips directly onto the lower potted plants or the flower stand frame. This not only easily leads to root rot and moldy leaves in the lower plants, but also causes the metal parts of the flower stand to rust and corrode due to long-term dampness, shortening its service life. Utility Model Content
[0004] This utility model relates to a height-adjustable three-dimensional flower rack drainage device for garden landscapes, which solves the problems of existing flower racks where the height between two adjacent placement boards is fixed, making it impossible for workers to flexibly adjust the distance between the upper and lower placement boards according to the height of the potted plants, and most three-dimensional flower racks do not have a dedicated layered drainage structure.
[0005] This utility model provides a height-adjustable three-dimensional flower rack drainage device for garden landscapes, specifically including: a pad; Two connecting plates are installed at the left and right ends of the pad, and two connecting holes are opened on the surface of the connecting plates. Four columns are welded to the upper end of the pad. The placement board is located directly above the pad. A U-shaped frame is fixedly installed on the upper surface of the placement board. The lowest placement board is fixedly installed on the upper surface of four columns, and four telescopic rods are fixedly installed on the lower surface of the other placement boards. A baffle is fixedly installed on the lower end face of the placement plate, and a transverse sliding groove is provided on the inner end face of the baffle. A fixing column is welded to the upper end face of the frame, and a device groove is provided inside the fixing column; A water collection plate, the upper surface of which has a hollow groove, and a drain pipe is fixedly installed on the surface of the water collection plate. The main body of the drain pipe has an L-shaped structure. A fixing ring is fixedly installed on the right end surface of the placement plate, and the main drain pipe is snapped into the inside of the fixing ring.
[0006] Furthermore, the telescopic rod at the lower end of the placement plate is slidably engaged in the device groove inside the fixed column, and limit holes are evenly opened on the surface of the telescopic rod.
[0007] Furthermore, the surface of the fixing column has two through holes that are connected to the device groove. The fixing pin passes through the through holes and the limiting hole to fix the telescopic rod in the device groove.
[0008] Furthermore, the surface of the placement plate is evenly provided with drainage holes, and a limiting block is installed at each end of the water collection plate. The limiting block is slidably engaged in the transverse groove on the surface of the baffle.
[0009] Furthermore, the surface of the fixing ring is provided with a locking hole, the inside of the locking hole is provided with a thread, and a locking screw is connected to the internal thread of the locking hole.
[0010] Furthermore, a connecting pipe is installed on the side surface of the main drain pipe, and the connecting pipe is connected to the drain pipe at the lower end of the water collection plate through a flexible hose. Two adjacent main drain pipes are connected through a flexible hose.
[0011] This utility model provides a height-adjustable three-dimensional flower rack drainage device for garden landscapes, which has the following beneficial effects: 1. A frame is fixedly installed on the upper surface of the placement board. Workers can place potted plants on the surface of the placement board. The frame can prevent water from escaping from the surface of the placement board. A fixing post is welded to the upper surface of the frame, and four telescopic rods are welded to the lower surface of the placement board. The telescopic rods are slidably locked in the device groove inside the fixing post. Workers can adjust the position of the telescopic rod in the device groove according to the height of the potted plant, thereby adjusting the distance between two adjacent placement boards. Then, the fixing pin is passed through the through hole and the limiting hole on the surface of the telescopic rod, thereby fixing the telescopic rod in the device groove.
[0012] 2. Two baffles are installed at the lower end of the placement board. The inner end face of the baffles is provided with a horizontal sliding groove. A limiting block is installed at each end of the water collection board. Workers can engage the limiting blocks at both ends of the water collection board with the horizontal sliding grooves on the surface of the baffles. At this time, the water collection board forms a water collection area. Drainage holes are evenly opened on the surface of the placement board. Water seeping out from the potted plants can fall into the empty groove at the upper end of the water collection board.
[0013] 3. The water collected by the water collection plate is discharged through the L-shaped drain pipe fixed on its surface. The drain pipe is connected to the connecting pipe at the side of the main drain pipe through a flexible hose, realizing the diversion of water from one layer to the main drain pipe. A fixing ring is welded to the outer end face of the plate, and the main drain pipe is snapped into the fixing ring. The surface of the fixing ring has a locking hole. After the worker tightens the locking bolt inside the locking hole, the main drain pipe can be firmly locked inside the fixing ring. The main drain pipes of the two adjacent layers are connected through the flexible hose to form a drainage channel that runs through the upper and lower layers, so that the water collected in each layer can flow to the bottom main drain pipe and finally be discharged to the designated drainage area from the bottom main drain pipe. Attached Figure Description
[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.
[0015] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.
[0016] In the attached diagram: Figure 1 A schematic diagram of the overall device structure of this utility model is shown; Figure 2 An exploded view of the placement plate, telescopic rod, and fixing column of this utility model is shown. Figure 3 A schematic diagram showing the exploded structure of the placement plate and water collection plate of this utility model is provided. Figure 4 A schematic diagram of the placement plate and baffle structure of this utility model is shown; Figure 5 A schematic diagram of the telescopic rod and fixed column structure of this utility model is shown; Figure 6 The diagram shows the structure of the drain pipe, main drain pipe and fixing ring of this utility model.
[0017] List of reference numerals in the attached diagram: 1. Pad; 101. Connecting plate; 102. Column; 2. Placement plate; 201. Drain hole; 202. Enclosure frame; 203. Telescopic rod; 2031. Limiting hole; 3. Baffle; 301. Horizontal sliding groove; 4. Fixing column; 401. Device groove; 402. Through hole; 5. Water collection plate; 501. Drain pipe; 502. Limiting block; 6. Fixing ring; 601. Locking hole; 7. Main drain pipe; 701. Connecting pipe. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0019] Example 1: Please refer to Figures 1 to 6 : This utility model proposes a height-adjustable three-dimensional flower rack drainage device for garden landscapes, including: a pad 1; Two connecting plates 101 are installed at the left and right ends of the pad 1, and two connecting holes are opened on the surface of the connecting plate 101. Four columns 102 are welded to the upper end of the pad 1. Placement plate 2 is located directly above pad 1. A U-shaped frame 202 is fixedly installed on the upper surface of placement plate 2. The lowermost placement plate 2 is fixedly installed on the upper surface of four columns 102. Four telescopic rods 203 are fixedly installed on the lower surface of the other placement plates 2. Baffle 3 is fixedly installed on the lower end face of the placement plate 2, and a transverse sliding groove 301 is provided on the inner end face of baffle 3; The fixing column 4 is welded to the upper end face of the frame 202, and the fixing column 4 has a device groove 401 inside; Water collection plate 5, the upper end face of water collection plate 5 has a hollow groove, and a drain pipe 501 is fixedly installed on the surface of water collection plate 5. The main body of drain pipe 501 is L-shaped. The fixing ring 6 is fixedly installed on the right end surface of the placement plate 2, and the main drain pipe 7 is snapped into the inside of the fixing ring 6.
[0020] The telescopic rod 203 at the lower end of the placement plate 2 is slidably engaged in the device groove 401 inside the fixing column 4. Limiting holes 2031 are evenly opened on the surface of the telescopic rod 203. Two through holes 402 are opened on the surface of the fixing column 4. The through holes 402 are connected to the device groove 401. The fixing pin passes through the through holes 402 and the limiting holes 2031 to fix the telescopic rod 203 in the device groove 401. During use, the worker can adjust the position of the telescopic rod 203 in the device groove 401 according to the height of the potted plant, thereby adjusting the distance between two adjacent placement plates 2. Then, the fixing pin passes through the through holes 402 and the limiting holes 2031 on the surface of the telescopic rod 203 to fix the telescopic rod 203 in the device groove 401.
[0021] The surface of the placement plate 2 is evenly provided with drainage holes 201, and a limiting block 502 is installed at each end of the water collection plate 5. The limiting block 502 is slidably locked in the transverse groove 301 on the surface of the baffle 3, which facilitates the disassembly and assembly of the water collection plate 5 by the workers.
[0022] The fixing ring 6 has a locking hole 601 on its surface and a thread inside the locking hole 601. The locking hole 601 is connected to a locking screw. In use, the fixing ring 6 is welded to the outer end face of the placement plate 2, and the main drain pipe 7 is snapped into the fixing ring 6. The fixing ring 6 has a locking hole 601 on its surface. After the worker tightens the locking bolt inside the locking hole 601, the main drain pipe 7 can be firmly locked inside the fixing ring 6.
[0023] The main drain pipe 7 has a connecting pipe 701 installed on its side surface. The connecting pipe 701 is connected to the drain pipe 501 at the lower end of the water collection plate 5 through a flexible hose. The two adjacent main drain pipes 7 are connected by a flexible hose. In use, the two adjacent main drain pipes 7 are connected by a flexible hose to form a drainage channel that runs through the upper and lower parts of the floor. This allows the water collected in each layer to flow to the bottom main drain pipe 7 and finally be discharged to the designated drainage area through the bottom main drain pipe 7.
[0024] The working principle of this embodiment: In this invention, two connecting plates 101 are respectively installed at the left and right ends of the pad 1. The surface of the connecting plates 101 is provided with connecting holes, allowing workers to pass screws through the connecting holes and wed them into the ground to fix the pad 1. A frame 202 is fixedly installed on the upper end of the placement plate 2, allowing workers to place potted plants on the surface of the placement plate 2. The frame 202 prevents water from escaping from the surface of the placement plate 2. A fixing post 4 is welded to the upper end of the frame 202, and four telescopic rods 203 are welded to the lower end of the placement plate 2. The telescopic rods 203 are slidably engaged in the device grooves 401 inside the fixing posts 4, allowing workers to adjust the position of the telescopic rods 203 in the device grooves 401 according to the height of the potted plants. This allows adjustment of the distance between two adjacent placement plates 2. A fixing pin is then passed through the through hole 402 and the limiting hole 2031 on the surface of the telescopic rod 203, thus fixing the telescopic rod 203 in the device groove 401. Two baffles 3 are installed at the lower end of the placement plate 2. A transverse sliding groove 301 is provided on the inner end face of each baffle 3. A limiting block 502 is installed at each end of the water collection plate 5. Workers can engage the limiting blocks 502 at both ends of the water collection plate 5 with the transverse sliding grooves 301 on the surface of the baffles 3. At this time, the water collection plate 5 forms a water collection area. Drainage holes 201 are evenly distributed on the surface of the placement plate 2, allowing water seeping from the potted plant to fall into the empty groove at the upper end of the water collection plate 5. Water collected by the water collection plate 5 is discharged through an L-shaped drain pipe 501 fixed on its surface. The drain pipe 501 is connected to the connecting pipe 701 on the side of the main drain pipe 7 via a flexible hose, realizing the guidance of water from a single layer to the main drain pipe 7. A fixing ring 6 is welded to the outer end face of the placement plate 2. The main drain pipe 7 is snapped into the inside of the fixing ring 6. A locking hole 601 is opened on the surface of the fixing ring 6. After the worker tightens the locking bolt inside the locking hole 601, the main drain pipe 7 can be firmly locked inside the fixing ring 6. The main drain pipes 7 of the upper and lower adjacent layers are connected by a flexible hose to form a drainage channel that runs through the upper and lower layers, so that the water collected in each layer can flow to the bottom main drain pipe 7 and finally be discharged to the designated drainage area from the bottom main drain pipe 7.
Claims
1. A three-dimensional flower stand drainage device with adjustable lifting for landscape, characterized in that, Includes: a pad (1), with two connecting plates (101) installed at the left and right ends of the pad (1), two connecting holes on the surface of the connecting plates (101), and four columns (102) welded to the upper surface of the pad (1); a placement plate (2), located directly above the pad (1), with a U-shaped frame (202) fixedly installed on the upper surface of the placement plate (2), the lowest placement plate (2) fixedly installed on the upper surface of the four columns (102), and four telescopic rods (203) fixedly installed on the lower surface of the other placement plates (2); and a baffle (3). The baffle (3) is fixedly installed on the lower end face of the placement plate (2), and the inner end face of the baffle (3) is provided with a transverse sliding groove (301); the fixed column (4) is welded to the upper end face of the frame (202), and the fixed column (4) is provided with a device groove (401); the water collection plate (5) is provided with a hollow groove on the upper end face of the water collection plate (5), and the surface of the water collection plate (5) is fixedly installed with a drain pipe (501), and the main body of the drain pipe (501) is an L-shaped structure; the fixed ring (6) is fixedly installed on the right end face of the placement plate (2), and the main drain pipe (7) is snapped into the inside of the fixed ring (6).
2. The vertically tiered planter drainage device of claim 1, wherein, The telescopic rod (203) at the lower end of the placement plate (2) is slidably engaged in the device groove (401) inside the fixed column (4), and the surface of the telescopic rod (203) is uniformly provided with limit holes (2031).
3. The vertically tiered planter drainage device of claim 1, wherein, The surface of the fixed column (4) has two through holes (402), which are connected to the device groove (401). The fixing pin passes through the through hole (402) and the limiting hole (2031) to fix the telescopic rod (203) in the device groove (401).
4. The vertically tiered planter drainage device of claim 1, wherein, The surface of the placement plate (2) is uniformly provided with drainage holes (201), and a limiting block (502) is installed at each end of the water collection plate (5). The limiting block (502) is slidably locked in the transverse groove (301) on the surface of the baffle (3).
5. The vertically tiered planter drainage device of claim 1, wherein, The surface of the fixing ring (6) is provided with a locking hole (601), and the inside of the locking hole (601) is provided with a thread, and a locking screw is connected to the inside thread of the locking hole (601).
6. The vertically tiered planter drainage device of claim 1, wherein, A connecting pipe (701) is installed on the side surface of the main drain pipe (7). The connecting pipe (701) is connected to the drain pipe (501) at the lower end of the water collection plate (5) through a flexible hose. The two adjacent main drain pipes (7) are connected through a flexible hose.