Shared landscape planting platform of health care center
By designing a shared landscape planting platform that includes a support platform, planting box, filter components, flow guiding components, drainage hopper, and piercing components, the problem of land occupation for rainwater storage devices is solved, achieving efficient collection and filtration of rainwater, avoiding water tank pollution and plant root rot, and reducing the land area occupied.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-19
- Publication Date
- 2026-03-31
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Rainwater storage devices around the shared landscape planting platform occupy additional ground space, leading to ground congestion.
Design a shared landscape planting platform that includes a support platform, planting boxes, a filter assembly, a flow guide assembly, a drainage hopper, and a piercing assembly. The platform utilizes the weight variation of the adapter tube to filter and collect rainwater, and the piercing assembly prevents water accumulation at the bottom of the planting boxes, thus reducing the footprint.
It achieves efficient rainwater collection and filtration, avoids water tank pollution and plant root rot, reduces the footprint of shared landscape planting platforms, and solves the problem of ground congestion.
Smart Images

Figure CN121753632A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of green plant planting platform technology, specifically to a shared landscape planting platform for health and wellness centers. Background Technology
[0002] A senior living center is a facility that provides comprehensive health and elderly care services, aiming to meet the all-round needs of the elderly or those with special health needs. Senior living centers typically combine multiple functions such as medical care, rehabilitation therapy, daily living assistance, and leisure and entertainment to improve residents' quality of life and health. The outdoor environment of a senior living center usually features a shared landscaped planting platform, where greenery can be grown, creating a comfortable environment that is beneficial to the physical and mental health of the elderly.
[0003] The plants on shared landscape planting platforms are usually watered manually, such as by watering cans. Considering the abundant rainfall in summer, in order to improve the utilization rate of rainwater, related technologies usually also set up rainwater storage devices, such as water tanks and troughs, around the shared landscape planting platforms. However, setting up rainwater storage devices will occupy additional ground space, leading to ground congestion. Summary of the Invention
[0004] This invention provides a shared landscape planting platform for health and wellness centers to address the problem that rainwater storage devices are usually installed around shared landscape planting platforms, which would occupy additional ground space and cause overcrowding.
[0005] This invention provides a shared landscape planting platform for a health and wellness center, comprising: A support platform includes an inner cavity, the top of which is an opening, and the bottom of which is a water tank. A planting box is installed on top of a support platform. The length of the planting box is less than the length of the top opening of the support platform. Two water inlets are formed between the two sides of the planting box and the two sides along the length direction of the top opening. The water inlets are connected to the inner cavity. The area of the inner cavity near the bottom of the planting box forms a storage space. The filter components are respectively disposed on the two water inlets; The flow guiding assembly comprises two sets of flow guiding components respectively disposed within the storage space. Each flow guiding assembly includes an adapter tube, which is tilted and rotatably disposed within the storage space. The first end of the adapter tube has a water inlet, and the opposite second end is a closed end. The weight of the second end of the adapter tube is greater than the weight of the first end. In the water receiving state, the adapter tube relies on the weight of the second end to keep the water inlet of the adapter tube in contact with the bottom of the filter assembly, for receiving liquid passing through the filter assembly. After the liquid contained in the adapter tube reaches a preset capacity, the weight of the first end of the adapter tube becomes greater than the weight of the second end, and the adapter tube enters the drainage state. The water inlet of the adapter tube deflects away from the filter assembly, and the liquid is discharged into the water tank. A drainage hopper is provided within the container space, and the opening area of the drainage hopper is greater than or equal to the area of the bottom of the planting box. The side wall of the drainage hopper is provided with a drainage groove that penetrates the side wall of the support platform. The puncture assembly has one end located at the second end of the adapter tube. The drainage hopper has a through hole, and the other end of the puncture assembly passes through the through hole of the drainage hopper. When the adapter tube is in the drainage state, the second end of the adapter tube drives the puncture assembly to move towards the planting box, and the puncture assembly is adapted to extend into the planting box from the bottom of the planting box.
[0006] Optionally, the support platform includes a base, a support body fixed to the base, and an mounting body fixed to the support body. Both the support body and the mounting body are configured as closed frame structures. The mounting body has a top opening. The base has a water tank inside. The upper end of the mounting body has a container space extending into the support body. The container space is connected to the inlet of the water tank. The planting box is fixed to the upper end of the mounting body. The filter assembly includes a guide bucket elastically mounted on the mounting body and a filter screen fixed on the guide bucket and covering the inlet. The drain end of the guide bucket extends into the interior of the container space. In its natural state, the inlet of the adapter tube abuts against the drain end of the guide bucket, and liquid is adapted to enter the inlet of the adapter tube through the drain end. When the adapter tube rotates from the drain state to the inlet state, it is adapted to impact the guide bucket.
[0007] Optionally, a first mounting bracket is fixed to the lower end of the flow guide bucket, and a second mounting bracket is fixed to the mounting body below the first mounting bracket. A spring is provided between the first mounting bracket and the second mounting bracket, and the other end of the flow guide bucket also has a first baffle located outside the spring.
[0008] Optionally, the filter screen includes two symmetrically arranged vertical meshes and an inclined mesh fixed between the two vertical meshes, the inclined mesh corresponding to the water inlet.
[0009] Optionally, the bottom of the drainage hopper has an inclined surface, and a drainage outlet is provided on one side of the mounting body at the lowest point of the inclined surface. A drainage groove is provided at the position corresponding to the drainage outlet in the drainage hopper, and the drainage groove extends out through the drainage outlet.
[0010] Optionally, a hinge seat is fixed at the lower end of the adapter tube away from the water inlet, and a support rod is rotatably connected through the hinge seat. One end of the adapter tube is fixed with an impact block for colliding with the guide bucket, and the other end is fixed with a counterweight.
[0011] Optionally, the puncture assembly includes a first positioning frame fixed to the lower end of the drainage hopper, on which a puncture rod is mounted that can be raised and lowered. The puncture rod passes through the through hole of the drainage hopper, and one end of the puncture rod is connected to the second end of the adapter tube. When the adapter tube is in the water receiving state, the second end of the adapter tube drives the puncture rod to descend to the lowest position. When the adapter tube is in the drainage state, the second end of the adapter tube drives the puncture rod to rise and extend into the planting box.
[0012] Optionally, the first positioning frame has an integral second baffle, the piercing rod passes through the second baffle, and a baffle plate located above the second baffle is fixed on the piercing rod; The lower end of the puncture rod is also fixed with a third mounting bracket, on which a strike block is fixed. As the counterweight rises from the lowest position to the highest position, the strike block generates vertical compression, causing the puncture rod to move upward. An elastic rope is also connected between the third mounting bracket and the counterweight. During the process of the counterweight descending from its highest position to its lowest position, the elastic rope pulls the piercing rod downward.
[0013] Optionally, it also includes a cleaning component, the cleaning component comprising a second positioning frame fixed on a third mounting bracket, the second positioning frame being U-shaped and having bristles on its outer side wall that contact the inner wall of the container space.
[0014] Optionally, two symmetrically arranged guide plates located below the adapter tube and in an inclined state are fixed to the inner wall of the container space. A support rod is fixed to the guide plate, and there is a drainage gap between the two guide plates, which corresponds to the water inlet of the water tank. Activated carbon is also laid on the upper part of the guide plate. The support rod is fixed to the guide plate, and the highest point of the guide plate corresponds to the water inlet of the adapter tube. The lower inclined end of the adapter tube does not contact the guide plate.
[0015] Beneficial effects: The shared landscape planting platform for health and wellness centers provided by this invention includes: a support platform, a planting box, a filter assembly, a flow guiding assembly, a drainage hopper, and a puncture assembly.
[0016] The support platform includes an inner cavity with an opening at the top and a water tank at the bottom. The planting box is installed on top of the support platform, and the length of the planting box is less than the length of the opening at the top of the support platform. Two water inlets are formed between the two sides of the planting box and the two sides along the length of the opening at the top. The water inlets are connected to the inner cavity, and the area of the inner cavity near the bottom of the planting box forms a storage space.
[0017] Two filter components are respectively located on two water inlets. Two sets of flow guiding components are respectively located within the storage space. Each flow guiding component includes an adapter tube, which is tilted and rotatably located within the storage space. The first end of the adapter tube has a water inlet, and the opposite second end is a closed end. The weight of the second end of the adapter tube is greater than the weight of the first end. In the water receiving state, the adapter tube relies on the weight of the second end to keep the water inlet of the adapter tube in contact with the bottom of the filter component, for receiving liquid passing through the filter component. After the liquid contained in the adapter tube reaches the preset capacity, the weight of the first end of the adapter tube becomes greater than the weight of the second end, and the adapter tube enters the drainage state. The water inlet of the adapter tube deflects away from the filter component and discharges the liquid into the water tank.
[0018] A drainage hopper is located within the storage space, and the opening area of the drainage hopper is greater than or equal to the area of the bottom of the planting box. The side wall of the drainage hopper has a drainage groove that penetrates the side wall of the support platform. A piercing assembly is located at one end of the second end of the adapter tube. The drainage hopper has a through hole, and the other end of the piercing assembly passes through the through hole of the drainage hopper. When the adapter tube is in the drainage state, the second end of the adapter tube drives the piercing assembly to move towards the planting box, and the piercing assembly is adapted to extend into the planting box from the bottom.
[0019] During rainy weather, rainwater can fall directly into the planting box and water the plants, and it can also fall onto the filter assembly. Because the weight of the second end of the adapter tube is greater than the weight of the first end, the adapter tube remains in a water-receiving state. Rainwater filtered by the filter assembly enters the adapter tube through the inlet. When the amount of rainwater in the adapter tube reaches the preset capacity, the weight of the first end of the adapter tube changes to be greater than the weight of the second end, causing the adapter tube to deflect and enter the drainage state. The rainwater in the adapter tube is discharged into the water tank, thus completing the collection of rainwater.
[0020] Considering that the moisture content inside the planting box gradually increases after rainwater enters, especially at the bottom where excessive moisture may occur, potentially leading to muddy water seepage, a drainage hopper is installed at the bottom of the planting box to prevent muddy water from contaminating the water tank. Muddy water entering the drainage hopper can then be drained to the outside through a drainage channel, thus isolating the water tank and the planting box. Simultaneously, to prevent root rot, when the adapter cylinder rotates, its second end drives the piercing component to pierce the soil at the bottom and inside of the planting box, creating a drainage hole that runs through the bottom of the planting box, increasing drainage volume and preventing excessive moisture content at the bottom of the planting box.
[0021] In summary, the above structure not only integrates the water tank and planting box into one unit, reducing the footprint of the shared landscape planting platform in the health and wellness center and avoiding overcrowding on the ground, but also enables the collection of filtered rainwater, preventing the rainwater in the water tank from being polluted and preventing root rot in the plants. Attached Figure Description
[0022] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0023] Figure 1 This is a schematic diagram of the structure of the shared landscape planting platform in the health and wellness center according to an embodiment of the present invention; Figure 2 This is a schematic diagram of the structure of the filter assembly and drainage bucket according to an embodiment of the present invention; Figure 3 This is a schematic diagram of the structure of the adapter tube and the filter assembly in an embodiment of the present invention; Figure 4 This is a schematic diagram of the structure of the storage space according to an embodiment of the present invention; Figure 5 This is a schematic diagram of the structure of the filtering component according to an embodiment of the present invention; Figure 6 This is a schematic diagram of the adapter tube according to an embodiment of the present invention; Figure 7 This is a schematic diagram of the puncture assembly according to an embodiment of the present invention; Figure 8 This is a side view of the puncture assembly according to an embodiment of the present invention; Figure 9 This is a schematic diagram of the structure of the guide plate according to an embodiment of the present invention.
[0024] Explanation of reference numerals in the attached figures: 1. Support platform; 11. Base; 12. Support body; 13. Mounting body; 2. Planting box; 3. Filter assembly; 31. Flow guide hopper; 32. First mounting leg; 33. Second mounting leg; 34. Spring; 35. First baffle; 36. Filter screen; 4. Flow guide assembly; 41. Adapter cylinder; 42. Support rod; 43. Water inlet; 44. Impact block; 45. Counterweight; 5. Drain hopper; 6. Drain outlet; 7. Puncture assembly; 71. First positioning frame; 72. Second baffle; 73. Puncture rod; 74. Baffle plate; 75. Third mounting leg; 76. Impact block; 77. Elastic rope; 8. Cleaning assembly; 81. Second positioning frame; 82. Brush bristles; 9. Flow guide plate; 10. Activated carbon. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, 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, 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.
[0026] The following is combined Figures 1 to 9 The following describes embodiments of the present invention.
[0027] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown in the embodiment of the present invention, a shared landscape planting platform for a health and wellness center is provided, comprising: a support platform 1, a planting box 2, a filter assembly 3, a flow guiding assembly 4, a drainage hopper 5, and a puncture assembly 7.
[0028] The support platform 1 includes an inner cavity with an opening at the top and a water tank at the bottom. The planting box 2 is installed on top of the support platform 1. The length of the planting box 2 is less than the length of the opening at the top of the support platform 1. Two water inlets are formed between the two sides of the planting box 2 and the two sides along the length of the opening. The water inlets are connected to the inner cavity. The area of the inner cavity near the bottom of the planting box 2 forms a storage space.
[0029] Two filter components 3 are respectively installed on two water inlets. Two sets of flow guiding components 4 are respectively installed in the storage space. The flow guiding component 4 includes a connecting tube 41, which is inclined and rotatably installed in the storage space. The first end of the connecting tube 41 is provided with a water inlet 43, and the opposite second end is a closed end. The weight of the second end of the connecting tube 41 is greater than the weight of the first end of the connecting tube 41. In the water receiving state, the connecting tube 41 relies on the weight of the second end to keep the water inlet 43 of the connecting tube 41 in contact with the bottom of the filter component 3 for receiving the liquid passing through the filter component 3. After the liquid contained in the connecting tube 41 reaches the preset capacity, the weight of the first end of the connecting tube 41 is greater than the weight of the second end, and the connecting tube 41 enters the drainage state. The water inlet 43 of the connecting tube 41 deflects away from the filter component 3 and discharges the liquid into the water tank.
[0030] A drainage hopper 5 is located within the storage space, and the opening area of the drainage hopper 5 is greater than or equal to the area of the bottom of the planting box 2. The side wall of the drainage hopper 5 is provided with a drainage groove that penetrates the side wall of the support platform 1. A piercing component 7 is located at one end of the second end of the adapter cylinder 41. The drainage hopper 5 has a through hole, and the other end of the piercing component 7 passes through the through hole of the drainage hopper 5. When the adapter cylinder 41 is in the drainage state, the second end of the adapter cylinder 41 drives the piercing component 7 to move towards the planting box 2, and the piercing component 7 is adapted to extend into the planting box 2 from the bottom of the planting box 2.
[0031] During rainy weather, rainwater can fall directly onto the planting box 2 and irrigate the plants, and it can also fall onto the filter assembly 3. Since the weight of the second end of the adapter tube 41 is greater than the weight of the first end, the adapter tube 41 remains in a water-receiving state. Rainwater filtered by the filter assembly 3 enters the adapter tube 41 through the inlet. When the amount of rainwater in the adapter tube 41 reaches the preset capacity, the weight of the first end of the adapter tube 41 changes to be greater than the weight of the second end, causing the adapter tube 41 to deflect and enter a drainage state. The rainwater in the adapter tube 41 is discharged into the water tank, thus completing the collection of rainwater.
[0032] Considering that the water content inside planting box 2 gradually increases after rainwater enters, especially at the bottom, where excessive water content may occur, potentially leading to muddy water seepage, a drainage hopper 5 is installed at the bottom of planting box 2 to prevent muddy water from contaminating the water stored in the water tank. Muddy water entering the drainage hopper 5 can then be drained to the outside through a drainage channel, thus isolating the water tank and planting box 2. Simultaneously, to prevent root rot, when the adapter cylinder 41 rotates, its second end drives the piercing component 7 to pierce. The piercing component 7 rises from the drainage hopper 5 and pierces the soil at the bottom and inside of planting box 2, creating a drainage hole that runs through the bottom of planting box 2, increasing drainage volume and preventing excessive water content at the bottom of planting box 2.
[0033] In summary, the above structure not only integrates the water tank and planting box 2 into one unit, reducing the footprint of the shared landscape planting platform in the health and wellness center and avoiding overcrowding on the ground, but also enables the collection of filtered rainwater, preventing the rainwater in the water tank from being polluted and preventing root rot in the plants.
[0034] like Figure 1 and Figure 4 As shown, in one embodiment, the support platform 1 includes a base 11, a support body 12 fixed on the base 11, and a mounting body 13 fixed on the support body 12. Both the support body 12 and the mounting body 13 are designed as closed frame structures, and the top of the mounting body 13 is provided with a top opening. The base 11 has a water tank inside, and the upper end of the mounting body 13 has a storage space extending into the interior of the support body 12. The storage space is connected to the inlet of the water tank, and the planting box 2 is fixed to the upper end of the mounting body 13. The filter assembly 3 includes a guide bucket 31 elastically mounted on the mounting body 13 and a filter screen 36 fixed to the guide bucket 31 and covering the inlet. The drain end of the guide bucket 31 extends into the interior of the container space. In its natural state, the inlet 43 of the adapter cylinder 41 abuts against the drain end of the guide bucket 31, allowing liquid to enter the inlet 43 of the adapter cylinder 41 through the drain end. When the adapter cylinder 41 rotates from the drain state to the inlet state, it is adapted to impact the guide bucket 31. Specifically, the filter screen 36 includes two symmetrically arranged vertical meshes and an inclined mesh fixed between the two vertical meshes, with the inclined mesh corresponding to the inlet.
[0035] In the filter assembly 3, the filter screen 36 includes an inclined mesh body, which corresponds to the water inlet and is the main structure for interception. Rainwater passing through the filter screen 36 enters the guide bucket 31, where it is directed to transport the rainwater. Considering that impurities may remain on the outside of the filter screen 36, the filter assembly 3 is elastically mounted on the mounting body 13. When the adapter cylinder 41 impacts the guide bucket 31, the guide bucket 31 transmits the impact force to the filter screen 36, causing it to vibrate and dislodge impurities, thus preventing them from clogging the mesh.
[0036] like Figure 4 and Figure 5As shown, in one embodiment, a first mounting bracket 32 is fixed to the lower end of the flow guide hopper 31, and a second mounting bracket 33 is fixed to the mounting body 13 below the first mounting bracket 32. A spring 34 is arranged between the first mounting bracket 32 and the second mounting bracket 33, and the other end of the flow guide hopper 31 also has a first baffle 35 located outside the spring 34. The flow guide hopper 31 is mainly supported and positioned by the first mounting bracket 32, the spring 34, and the second mounting bracket 33. The elasticity of the spring 34 itself causes the filter screen 36 to vibrate, and the vibration causes the impurities intercepted on it to fall off, thereby cleaning the filter screen 36 and preventing it from becoming clogged.
[0037] like Figure 3 As shown, in one embodiment, the bottom of the drainage hopper 5 has an inclined surface, and a drainage outlet 6 is provided on one side of the mounting body 13 at the lowest point of the inclined surface. A drainage trough is provided at the position corresponding to the drainage outlet 6 in the drainage hopper 5, and the drainage trough extends out through the drainage outlet 6. The drainage hopper 5 is designed for the planting box 2, that is, the water discharged from the planting box 2 flows into the drainage hopper 5, and then flows down until it is discharged from the drainage trough, preventing the muddy water from entering the water tank and ensuring that the water inside the water tank is not contaminated.
[0038] like Figure 4 , Figure 5 and Figure 6 As shown, in one embodiment, a hinge seat is fixed at the lower end of the adapter cylinder 41 away from the water inlet 43, and a support rod 42 is rotatably connected through the hinge seat. One end of the adapter cylinder 41 is fixed with an impact block 44 for colliding with the flow guide bucket 31, and the other end is fixed with a counterweight block 45. The adapter cylinder 41 in the flow guiding assembly 4 is inclined and can rotate vertically. When it is in the water receiving state, the end with the water inlet 43 is at the upper angle, which corresponds to the drainage end of the flow guiding bucket 31. Therefore, rainwater can enter the interior of the adapter cylinder 41 from the flow guiding bucket 31. After the interior of the adapter cylinder 41 is filled with rainwater, it can overcome the gravity of the counterweight block 45 and rotate until the water inlet 43 is facing downwards to drain the water. After the rainwater inside is emptied, it will rotate in the opposite direction to the water receiving state. During this process, the impact block 44 on the adapter cylinder 41 will collide with the flow guiding bucket 31. Through the collision and the elastic force of the spring 34, the filter screen 36 can vibrate, thereby cleaning the filter screen 36.
[0039] like Figure 7 and Figure 8As shown, in one embodiment, the puncture assembly 7 includes a first positioning frame 71 fixed to the lower end of the drainage hopper 5. A puncture rod 73 is mounted on the first positioning frame 71 and can be raised and lowered. The puncture rod 73 passes through the through hole of the drainage hopper 5. One end of the puncture rod 73 is connected to the second end of the adapter cylinder 41. When the adapter cylinder 41 is in the water receiving state, the second end of the adapter cylinder 41 drives the puncture rod 73 to descend to the lowest position. When the adapter cylinder 41 is in the drainage state, the second end of the adapter cylinder 41 drives the puncture rod 73 to rise and extend into the planting box 2. The puncture rod 73 is used to perform the puncture action, thereby forming a drainage hole in the planting box 2.
[0040] like Figure 7 and Figure 8 As shown, in one embodiment, the first positioning frame 71 has an integral second baffle 72, the piercing rod 73 passes through the second baffle 72, and a baffle plate 74 located above the second baffle 72 is also fixed on the piercing rod 73; a third mounting bracket 75 is also fixed at the lower end of the piercing rod 73, and a strike block 76 is fixed on the third mounting bracket 75. During the process of the counterweight 45 rising from the lowest position to the highest position, the strike block 76 generates vertical compression, causing the piercing rod 73 to move upward; an elastic rope 77 is also connected between the third mounting bracket 75 and the counterweight 45. During the process of the counterweight 45 falling from the highest position to the lowest position, the elastic rope 77 pulls the piercing rod 73 downward.
[0041] In the puncture assembly 7, the first positioning frame 71 is installed on the drainage hopper 5 to ensure the stability of the entire structure. A movable puncture rod 73 is mounted on it, serving as the main structure for opening the hole. For the adjustment of the puncture rod 73's height, a strike block 76 is installed on the third mounting bracket 75 at its bottom. During the transition from the initial state to the drainage state of the adapter cylinder 41, the counterweight 45 impacts and compresses the strike block 76, causing the puncture rod 73 to insert into the soil. When the adapter cylinder 41 transitions from the drainage state to the initial state, the elastic rope 77 pulls the third mounting bracket 75 and the puncture rod 73 downwards, causing the puncture rod 73 to detach from the soil. The resulting hole improves drainage flow. The second baffle 72 and baffle plate 74 provide positioning for the puncture rod 73.
[0042] like Figure 7 , Figure 8 and Figure 9As shown, in one embodiment, the shared landscape planting platform of the health and wellness center also includes a cleaning component 8. The cleaning component 8 includes a second positioning frame 81 fixed on a third mounting bracket 75. The second positioning frame 81 is U-shaped, and its outer side wall has bristles 82 that contact the inner wall of the storage space. In the cleaning component 8, the second positioning frame 81 is fixed on the third mounting bracket 75, so it can rise and fall with the third mounting bracket 75. The bristles 82 on the outside of the third mounting bracket 75 can contact the inner wall of the storage space, so they can scrape off dirt adhering to the inner wall during the up and down movement, thus cleaning the space. The second positioning frame 81 is preferably a plastic bracket, which is lighter and will not affect the transmission effect between the adapter cylinder 41 and the third mounting bracket 75.
[0043] like Figure 7 , Figure 8 and Figure 9 As shown, in one embodiment, two symmetrically arranged guide plates 9 are fixed to the inner wall of the container space, located below the adapter cylinder 41 and in an inclined state. A support rod 42 is fixed to the guide plate 9. There is a drainage gap between the two guide plates 9, which corresponds to the water inlet of the water tank. Activated carbon 10 is also laid on the upper end of the guide plate 9. The support rod 42 is fixed to the guide plate 9. The highest point of the guide plate 9 corresponds to the water inlet 43 of the adapter cylinder 41. The lower inclined end of the adapter cylinder 41 does not contact the guide plate 9.
[0044] The guide plate 9 enables the installation of the entire guide assembly 4. At the same time, it is tilted so that the rainwater discharged from the adapter tube 41 can flow into the water tank along the guide plate 9. In this process, the activated carbon 10 on the guide plate 9 can also adsorb the tiny impurities in the rainwater, which has a secondary purification effect on the rainwater. If the rainwater in the water tank is stored for a long time, the activated carbon 10 can also adsorb the emitted odor. When the adapter cylinder 41 is in the initial state, its lower inclined end does not contact the guide plate 9. Therefore, the adapter cylinder 41 is mainly positioned by the guide bucket 31. This allows the adapter cylinder 41 to have a greater impact force on the guide bucket 31 during the process of changing from the drainage state to the initial state, resulting in a better cleaning effect on the filter screen 36.
[0045] Although embodiments of the invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A health care center shared landscape planting platform, characterized in that, The application relates to a support table (1) comprising an inner cavity, the top of the inner cavity being open, and the bottom of the inner cavity being provided with a water tank; a planting box (2) installed on the top of the support table (1), the length of the planting box (2) being smaller than the length of the top opening of the support table (1), two water inlets being formed between the two sides of the planting box (2) and the two sides of the top opening in the length direction, the water inlets being communicated with the inner cavity, and the area of the inner cavity close to the bottom of the planting box (2) forming a storage space; two filter assemblies (3) being respectively arranged on the two water inlets; two groups of flow guide assemblies (4) being respectively arranged in the storage space, the flow guide assembly (4) comprising an adapter cylinder (41), the adapter cylinder (41) being obliquely and rotatably arranged in the storage space, the first end of the adapter cylinder (41) being provided with a water receiving port (43), the opposite second end being a closed end, the weight of the second end of the adapter cylinder (41) being greater than the weight of the first end of the adapter cylinder (41), in the water receiving state, the water receiving port (43) of the adapter cylinder (41) is kept in contact with the bottom of the filter assembly (3) by the weight of the second end of the adapter cylinder (41), and the water receiving port (43) is used for receiving the liquid passing through the filter assembly (3), after the liquid contained in the adapter cylinder (41) reaches a preset capacity, the weight of the first end of the adapter cylinder (41) is greater than the weight of the second end, the adapter cylinder (41) enters the water discharging state, the water receiving port (43) of the adapter cylinder (41) is deflected away from the filter assembly (3), and the liquid is discharged into the water tank; a water discharging hopper (5) is arranged in the storage space, and the opening area of the water discharging hopper (5) is greater than or equal to the area of the bottom of the planting box (2), the side wall of the water discharging hopper (5) is provided with a water discharging groove penetrating through the side wall of the support table (1); a puncture assembly (7) is arranged at one end of the second end of the adapter cylinder (41), the water discharging hopper (5) is provided with a through hole, the other end of the puncture assembly (7) penetrates through the through hole of the water discharging hopper (5), in the water discharging state of the adapter cylinder (41), the second end of the adapter cylinder (41) drives the puncture assembly (7) to move towards the planting box (2), and the puncture assembly (7) is adapted to extend into the planting box (2) from the bottom of the planting box (2). The support table (1) comprises a base (11), a support body (12) fixed on the base (11) and a mounting body (13) fixed on the support body (12), the support body (12) and the mounting body (13) are both provided with closed frame structures, and the top of the mounting body (13) is provided with the top opening; the base (11) is internally provided with the water tank, the upper end of the mounting body (13) is provided with the storage space extending into the inside of the support body (12), the storage space is communicated with the inlet of the water tank, and the planting box (2) is fixed on the upper end of the mounting body (13). 2. The health-care center shared landscape planting platform according to claim 1, characterized in that, The filter assembly (3) comprises a flow guide hopper (31) elastically mounted on the mounting body (13) and a filter screen (36) fixed on the flow guide hopper (31) and covering the water inlet, the water outlet end of the flow guide hopper (31) extends to the inside of the container space, in the natural state, the water inlet (43) of the adapter cylinder (41) abuts against the water outlet end of the flow guide hopper (31), liquid is adapted to enter the water inlet (43) of the adapter cylinder (41) through the water outlet end, the adapter cylinder (41) is adapted to impact the flow guide hopper (31) when it rotates from the water outlet state to the water inlet state.
3. The health-care center shared landscape planting platform according to claim 2, characterized in that, The lower end of the flow guide hopper (31) is fixed with a first mounting foot (32), a second mounting foot (33) fixed on the mounting body (13) is arranged below the first mounting foot (32), a spring (34) is arranged between the first mounting foot (32) and the second mounting foot (33), and the other end of the flow guide hopper (31) further has a first baffle (35) located outside the spring (34).
4. The health-care center shared landscape planting platform according to claim 2, characterized in that, The filter screen (36) comprises two symmetrical vertical screen bodies and an inclined screen body fixed between the two vertical screen bodies, and the inclined screen body corresponds to the water inlet.
5. The health-care center shared landscape planting platform according to claim 2, characterized in that, The inner bottom of the water outlet hopper (5) has a slope, a water outlet (6) corresponding to the lowest point of the slope is formed on one side of the mounting body (13), a water outlet groove is arranged at a position corresponding to the water outlet (6) of the water outlet hopper (5), and the water outlet groove extends out through the water outlet (6).
6. The health-care center shared landscape planting platform according to claim 2, characterized in that, The lower end of the adapter cylinder (41) is fixed with a hinge seat away from the water inlet (43), and a support rod (42) is rotationally connected through the hinge seat, one end of the adapter cylinder (41) is fixed with an impact block (44) for impacting the flow guide hopper (31), and the other end is fixed with a counterweight block (45).
7. The health-care center shared landscape planting platform according to claim 6, characterized in that, The puncture assembly (7) comprises a first positioning frame (71) fixed on the lower end of the water outlet hopper (5), a puncture rod (73) which is mounted on the first positioning frame (71) in a lifting manner, the puncture rod (73) penetrates through the through hole of the water outlet hopper (5), one end of the puncture rod (73) is connected with the second end of the adapter cylinder (41), when the adapter cylinder (41) is in the water inlet state, the second end of the adapter cylinder (41) drives the puncture rod (73) to descend to the lowest position, when the adapter cylinder (41) is in the water outlet state, the second end of the adapter cylinder (41) drives the puncture rod (73) to ascend and extend into the planting box (2).
8. The health-care center shared landscape planting platform according to claim 7, characterized in that, The first positioning frame (71) has an integral second baffle (72), the puncture rod (73) penetrates through the second baffle (72), and a baffle disc (74) located above the second baffle (72) is further fixed on the puncture rod (73); The lower end of the puncture rod (73) is further fixed with a third mounting foot (75), the third mounting foot (75) is fixed with a receiving block (76), during the process that the counterweight block (45) rises from the lowest position to the highest position, the receiving block (76) is extruded in the vertical direction, so that the puncture rod (73) moves upward; A spring rope (77) is further connected between the third mounting foot (75) and the counterweight (45), and the puncture rod (73) is pulled down by the spring rope (77) during the process that the counterweight (45) drops from the highest position to the lowest position.
9. The health-care center shared landscape planting platform according to claim 8, characterized in that, A cleaning assembly (8) is further included, which comprises a second positioning frame (81) fixed on the third mounting foot (75), the second positioning frame (81) is in a U shape, and a brush (82) is arranged on the outer wall of the second positioning frame (81) to contact the inner wall of the container space.
10. The health-care center shared landscape planting platform according to claim 9, characterized in that, Two guide plates (9) are further fixed on the inner wall of the container space, the two guide plates (9) are symmetrically arranged, located below the adapter cylinder (41) and in an inclined state, a support rod (42) is fixed on the guide plate (9), and a space for water drainage is arranged between the two guide plates (9) and corresponds to the water inlet of the water tank, and activated carbon (10) is arranged on the upper end of the guide plate (9); the support rod (42) is fixed on the guide plate (9), the highest position of the guide plate (9) corresponds to the water inlet (43) of the adapter cylinder (41), and the inclined lower end of the adapter cylinder (41) is not in contact with the guide plate (9).