Plate planting box and combined plate planting device
By designing a board planting box and a combined board planting device with air holes, watering holes and ventilation holes, the problems of low survival rate and high watering frequency of aerial root climbing plants during the board planting process are solved, achieving efficient and beautiful planting effects and reducing the user's planting difficulty and energy consumption.
Patent Information
- Application Number
- CN202422319593.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-09-23
AI Technical Summary
Aerial root climbing plants have problems such as low survival rate, high watering frequency and poor environmental adaptability during the board planting process. Existing automatic watering devices still have a low survival rate during the board planting process.
A planting box is designed, including a planting plate and a containing structure. The planting plate is provided with planting holes. The containing structure is connected to the planting plate to form a rooting space, providing air holes, watering holes and ventilation holes. Combined with a combined planting device, automatic watering and ventilation are achieved, reducing the dripping rate of water.
It improves the survival rate and environmental adaptability of aerial root plants, reduces the frequency of watering and the speed of water dripping, provides a beautiful invisible planting effect, reduces the user's planting difficulty and energy consumption, and enhances the fun of planting.
Smart Images

Figure CN223428914U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of potted plants, in particular to a plate planting box and a combined plate planting device. Background Art
[0002] Plants with aerial roots (such as dendrobiums and phalaenopsis) require high ventilation and humidity for their roots, requiring a high-humidity, breathable environment. When growing aerial plants in pots, the newly watered potting material creates a nearly airtight environment around the plant's roots. Excessive humidity and airtightness can easily lead to root rot. When the potting material on the surface dries completely, the center may still be damp, leaving some parts of the plant's roots dehydrated while others are overly wet and airtight.
[0003] Therefore, in many cases, plants with aerial roots are planted on boards, imitating their native environment. That is, the plants are planted on carriers such as tree trunks and hanging bark blocks. However, this type of board planting will have the following problems:
[0004] 1. Commercial mass planting systems typically use pots. If bare roots are transplanted onto a board, the plant roots will experience stress in the changing environment, resulting in a low survival rate. If the potted planting material is transplanted onto the board, physical fixation (such as cotton thread or fishing line) is required to assist in planting before the plant roots have attached themselves to the board and the planting material, which is very unsightly.
[0005] 2. Due to the rapid evaporation of water vapor in the planting board, the frequency of watering is much greater than that of potted plants (several times a day). If automatic watering is not used, it is easy to cause the plants to lack water.
[0006] Chinese patent CN205266535U discloses an automatic watering planting pot, which forms a gap between the inner and outer pot bodies by combining the inner and outer pot bodies to achieve automatic watering. However, the survival rate is still low during the board planting process. Utility Model Content
[0007] In view of this, it is necessary to provide a plate planting box for planting aerial root plants to solve the above problems.
[0008] In a first aspect, an embodiment of the present invention provides a planting box for planting aerial root plants, comprising:
[0009] The board planting board is provided with board planting holes;
[0010] The containing structure is detachably connected to the planting plate, and a plurality of holes are evenly distributed on its surface. The planting plate and the containing structure form a rooting space for placing planting materials;
[0011] During planting, the roots of aerial root plants extend through the planting holes to the planting material in the root space, absorbing moisture and nutrients from the planting material; new roots grown on the stems exposed outside the planting board cling to the surface of the planting board, absorbing moisture and nutrients from the surface of the planting board.
[0012] In at least one embodiment of the present invention, the accommodating structure includes:
[0013] The frame has irrigation holes and ventilation holes evenly distributed on its circumference and is detachably connected to the board planting plate;
[0014] The cover plate has ventilation holes evenly distributed on its surface and is detachably connected to the frame.
[0015] In at least one embodiment of the present invention, the watering holes are arranged at the top and / or bottom of the frame, the ventilation holes are arranged on both sides of the frame, and the watering holes, ventilation holes, and ventilation holes are all connected to the rooting space.
[0016] In at least one embodiment of the present invention, the normal direction perpendicular to the exposed surface of the planting plate and the cover plate is the first direction, the axis of the watering hole and the axis of the air vent are both opened perpendicular to the first direction, and the axis of the ventilation hole is opened parallel to the first direction.
[0017] In at least one embodiment of the present invention, the plate planting box further comprises:
[0018] The support member is detachably connected to the surface of the plate planting plate away from the frame body, and the support member is provided with at least one support block to support the plate planting boxes adjacent to each other in the upper and lower spatial positions.
[0019] In at least one embodiment of the present invention, at least one watering rope fixing member is further provided on the support member to fix one end of the watering rope for watering the surface of the board planting plate.
[0020] In at least one embodiment of the present invention, the frame has a first mounting surface and a second mounting surface facing away from the first mounting surface, the frame is detachably connected to the board implantation plate at the first mounting surface, and the frame is detachably connected to the cover plate at the second mounting surface;
[0021] The frame and the plate implant plate may be connected by screws, adhesives or clamps;
[0022] The cover plate and the frame body can be connected by screws, adhesives or clamps.
[0023] In at least one embodiment of the present invention, the projection area of the board implant plate in the first direction completely blocks the projection areas of the frame and the cover plate.
[0024] In at least one embodiment of the present invention, one side of the frame body close to the lower edge of the board implantation plate extends downward to form a hook-shaped reinforcement portion, and the reinforcement portion has a board implantation plate fixing groove to hook and clamp the lower edge of the board implantation plate.
[0025] In at least one embodiment of the present invention, a drip hole is provided below the hook-shaped reinforcement portion.
[0026] In at least one embodiment of the present invention, the plate planting box further comprises:
[0027] The reinforcement piece is detachably connected to the board planting plate and runs through the entire width direction of the board planting plate. The cross section of the reinforcement piece can be hook-shaped.
[0028] In at least one embodiment of the present invention, the reinforcement is made of transparent material.
[0029] In a second aspect, an embodiment of the present invention provides a combined plate planting device for planting aerial root plants, comprising:
[0030] The water collection base provides water for the growth of aerial root plants and collects the remaining water after watering the aerial root plants;
[0031] A back plate, fixed upright in the water collecting base;
[0032] At least one row of water distribution box groups, each row of water distribution box groups includes at least one water distribution box uniformly distributed laterally on the back plate, which can be used to water aerial root plants. Each row of water distribution box groups can be evenly installed on the back plate up and down, and a plurality of hooks are provided on the front wall of the water distribution box facing outwards from the back plate. Water distribution pipes are connected between each row of water distribution box groups arranged up and down, and between the lowest row of water distribution box groups and the water collection base;
[0033] At least one row of plate planting box groups, each row of plate planting box groups includes a plurality of plate planting boxes, and the plate planting boxes can be evenly and seamlessly spliced and hung on the hooks of the water distribution box;
[0034] Among them, multiple rows of plate planting box groups are staggered and stacked in space and hung on the hooks on the front walls of the multiple water distribution boxes arranged up and down. Seen from the front, the projection of the plate planting board in the first direction completely blocks the frame, cover plate, water distribution box, and back plate. The lower edge of the plate planting board on the upper layer blocks the upper edge of the plate planting board on the lower layer, and the lower edge of the plate planting board on the bottom layer is blocked by the upper edge of the front wall of the water collection base.
[0035] In at least one embodiment of the present invention, the water distribution pipeline includes:
[0036] The ascending water pipe can deliver water from the water collecting base to each layer of water distribution box in turn;
[0037] Downcomer, which can collect, irrigate and pour the residual water from the water distribution box arranged on the top layer to the next layer water distribution box in sequence.
[0038] In at least one embodiment of the present application, the water distribution pipeline further comprises:
[0039] Front irrigation rope, which introduces water from the water distribution box of the previous row to irrigate and wet the surface of the board planting box of the next row, so that the air-rooted plants can absorb water through the newly grown root system on the surface of the board planting box.
[0040] Back irrigation rope, which introduces water from the water distribution box of the previous row to irrigate and wet the planting material in the root space of the board planting box of the next row, so that the air-rooted plants can absorb water through the root system in the root space.
[0041] In at least one embodiment of the present application, the combined board planting device further comprises:
[0042] At least one row of adapter box groups, each row of adapter box groups comprising at least one adapter box uniformly distributed horizontally on the back plate, which can connect and adapt the upcomer and downcomer of the water distribution pipeline, and the front wall of the adapter box facing away from the back plate is provided with a plurality of hooks for hanging at least one row of low board planting box groups.
[0043] In at least one embodiment of the present application, the combined board planting device further comprises:
[0044] Reversible support, which is detachably connected to the board planting plate or cover plate of the lowest row of board planting boxes, and the extended end of the reversible support supports the front wall of the water distribution box arranged on the bottom layer after being turned over.
[0045] In at least one embodiment of the present application, the highest row of water distribution box groups is connected with front irrigation ropes that can be turned over the upper end of the board planting plate of the highest row of board planting box groups and back irrigation ropes that can be inserted into the irrigation holes of the highest row of board planting box groups. In addition to irrigating the corresponding board planting box group at the same height, this row of water distribution box groups also irrigates the next row of board planting box groups at a lower height.
[0046] In at least one embodiment of the present application, the combined board planting device further comprises:
[0047] Decorative plate, which is uniformly and seamlessly spliced and hung on the hooks of the highest row of water distribution box groups, the lower edge of the decorative plate is supported by the support arranged on the upper edge of the topmost board planting plate, and the lower edge of the decorative plate blocks the upper edge of the topmost board planting plate.
[0048] In at least one embodiment of the utility model, each row of water distribution box group is an integral type water distribution box, the integral type water distribution box has a front water tank and a rear water tank, the uplink water pipes pass through the front water tank in sequence and can fill the front water tank in sequence, and the downlink water pipes pass through the rear water tank in sequence and can drain water and keep the rear water tank moist.
[0049] The plate planting box and the combined plate planting device have at least the following beneficial effects:
[0050] The plate planting box is used for planting aerogenic root plants, and when the aerogenic root plants are transplanted from flowerpots of artificial planting to the plate planting box for planting aerogenic root plants, first, the root system of the plants passes through the plate planting holes in the plate planting plate and is uniformly distributed in the root growth space surrounded by the frame body and the back of the plate planting plate, the planting material is filled in the root growth space, and then the cover plate is covered, water and nutrients are provided in the root growth space through the irrigation holes, the frame body is uniformly provided with the irrigation holes and the air holes, and the cover plate is uniformly provided with the air holes, so that the root system of the aerogenic root plants can grow well in the humid and ventilated environment under the action of the planting material in the root growth space and the irrigation holes, the air holes and the air holes, and the root system of the aerogenic root plants can quickly adapt to the new growth environment created by the plate planting box.
[0051] With the passage of time, after the plants adapt to the new environment, the newly grown root system will grow radially around from the plant stem along the growth direction of the plant stem, especially the newly grown root system of the part of the plant stem not passing through the plate planting hole, which has a high probability of touching the plate planting plate and the water and nutrients transported by the irrigation rope on the surface of the plate planting plate, and the newly grown root system will quickly climb on the surface of the plate planting plate, so that plate planting is realized.
[0052] Compared with traditional pot planting and plate planting, the plate planting box has a larger root system space under the same size, so as to provide a more comfortable environment for the plants: part of the root system of the same plant grows in the planting material in the root growth space, since the root growth space is flat and five of the six surfaces have a large number of air holes, the plate planting box has the characteristics of traditional pot planting in water and nutrient retention, and has better air permeability than traditional pot planting, has a faster dry-wet cycle speed, and will not cause root rot and dry root.
[0053] The planting box provided by the utility model has a planting plate that blocks the planting material filled in the root space behind the planting plate. From the front, one can only see the plant in a simulated original planting state, that is, one can only see the stems and leaves outside the planting holes, the new roots that have emerged from the root space and reattached to the surface of the planting plate, the new stems and roots that have grown from the main stem, the stem system that continues to grow along the main stem, and the flowers that have bloomed, thereby realizing invisible potted plants.
[0054] The utility model provides a combined planting board device for growing aerial root plants. When multiple planting boards are used in combination, they are stacked in staggered layers in space. When viewed from the front, the projection of the planting boards in a first direction completely obscures the frame, the cover plate, and the back of the water distribution box. The lower edge of the planting board in the upper layer obscures the upper edge of the planting board in the lower layer, and the lower edge of the planting board in the lowest layer is obscured by the upper edge of the front wall of the water collection base. When the user views the combined planting board device from the front, they can only see the aerial root plants growing on the surface of the planting boards and the surface of the planting boards.
[0055] The combined planting board device provided by the present invention provides users with an integrated multi-planting box planting platform for large-scale and beautified planting of aerial root plants in their personal home environment. The planting board box, water distribution box, water collection base, upstream water pipe, downstream water pipe, front seepage rope, and rear seepage rope of the combined planting board device constitute a complete water distribution system for real-time watering of aerial root plants. Excess water from watering is also collected by the water collection base. Since dripping water from the upper layer of composite planting board boxes will drip onto the planting board of the lower layer of composite planting board boxes, the dripping speed of the irrigation dripping water is greatly reduced. By reducing the flow rate of irrigation water per unit time, the splashing of irrigation dripping water is greatly reduced to an almost negligible level. Compared to traditional sprinkler irrigation, users don't have to worry about watering aerial plants making the floor of their home too wet. They don't have to do interior waterproofing like with sprinkler irrigation, nor do they have to worry about nutrients being lost to the ground and affecting the home environment when applying nutrients to aerial plants. Furthermore, the complete green planting wall presented by multiple composite plantings and stacked arrangements offers users an unprecedented experience of beautifying and planting aerial plants on a whole wall. This reduces the many restrictions on watering, fertilizing, and maintaining a warm growing environment, making it more difficult for users to grow tropical aerial plants, and has greatly inspired more users to enjoy creating their own green plant walls.
[0056] The water supply process of the next row of the board planting box group is poured through the water distribution box, which can fully utilize gravity, reduces the noise of the water pump drive during the operation of the whole set of the combined board planting device, reduces the working energy consumption of the whole device, and the sound of the water flowing in the pipeline can create a natural feeling of "small bridge and flowing water", so that the whole combined board planting device has a "soft and silent" feeling during the watering process of the air-rooted plant, and the user's pleasure during the planting and breeding of the air-rooted plant is improved.
[0057] When the user needs to replace a certain board planting box alone, the corresponding board planting box needs to be taken out of the combined board planting device. The user can arbitrarily combine various plant planting combinations in each layer of the board planting box group according to his own preferences. The top decorative plate of the combined board planting device can also shield the water distribution box higher than the top board planting box, so that the integrity of the whole combined board planting device looks more beautiful and coordinated.
[0058] In summary, the composite board planting box is easy to operate, greatly reduces the planting difficulty of the air-rooted climbing plant, and makes the plant after the board in an excellent growth state. The combined board planting device reduces the user's watering, fertilizing, and maintaining the moist growth environment, reduces the user's difficulty in planting tropical air-rooted plants, greatly stimulates more users to create a green plant wall by themselves, and the combined board planting device can not worry about indoor water accumulation like watering and spraying, and can be placed at home without causing the problem of too wet ground environment. The combined board planting device has extremely low working noise and energy consumption, and can create a feeling of "small bridge and flowing water" and "soft and silent". The complete green planting wall presented by the multiple composite planting and sequential stacking arrangement of the combined board planting device brings the user an unprecedented experience of air-rooted plant beautification planting of a whole wall, and the happy growing plants and "invisible" make the whole combined board planting device look more color value unlimited. BRIEF DESCRIPTION OF DRAWINGS
[0059] Figure 1 It is a perspective view of the board planting box embodiment one;
[0060] Figure 2 It is Figure 1 A-A section view;
[0061] Figure 3 It is a front view of the board planting box embodiment two;
[0062] Figure 4 It is Figure 3 B-B section view;
[0063] Figure 5 It is an explosion view of the board planting box embodiment two;
[0064] Figure 6 Another perspective view of the plate planting box embodiment two;
[0065] Figure 7 A perspective view of the plate planting box embodiment two;
[0066] Figure 8 A schematic view of the aerenchyma plants continuing to grow in the root growing space of the plate planting box and on the surface of the plate planting plate;
[0067] Figure 9 A perspective view of the plate planting box embodiment three;
[0068] Figure 10 A perspective view of the plate planting box with some decorative plates removed, the plate planting device with aerenchyma plants planted, and the back plate hidden;
[0069] Figure 11 Another perspective view of the plate planting device with aerenchyma plants planted, and the back plate hidden;
[0070] Figure 12 A side view of the plate planting device with aerenchyma plants planted;
[0071] Figure 13 A Figure 11 A close-up view of the middle C;
[0072] 100, plate planting box;
[0073] 10, containing structure; P, root growing space;
[0074] 110, frame; 110b, watering hole; 110a, air hole; 110c, second mounting surface; 110d, first mounting surface; 120, cover plate; 120a, air hole;
[0075] 130, plate planting plate; 130b, plate planting hole;
[0076] 140, support; 141, watering rope fixing member; 142, support block
[0077] 150, aerenchyma plant; 151 plant leaf; 152 plant stem; 153 plant root;
[0078] 170, reinforcing member;
[0079] 200, water distribution box; 200a, rear water groove; 200b, front water groove; 200c, hook; 201, front water seepage rope; 202, rear water seepage rope;
[0080] 200', adapter box;
[0081] 210, uplink water pipe; 220, downlink water pipe;
[0082] 300, water collection base;
[0083] 400, decorative panels;
[0084] 500, back panel;
[0085] 600. Reversible support member. DETAILED DESCRIPTION
[0086] The following will describe the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0087] It should be noted that when a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and similar expressions used herein are for illustrative purposes only.
[0088] The following embodiments of the present invention are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features in the embodiments may be combined with each other.
[0089] First, as Figures 1 to 9 As shown, the present invention provides a planting box 100 for planting aerial root plants 150 . Example
[0090] like Figures 1 to 9As shown, the plate planting box 100 includes a detachably connected containing structure 10 and a plate planting plate 130, wherein the plate planting plate 130 is provided with a planting hole 130b, and a plurality of holes (not marked in the drawings) are evenly distributed on the surface of the containing structure 10; the containing structure 10 is in a semi-box shape with an opening on one side, and the cross section of the containing structure 10 is C-shaped, and the open side of the containing structure 10 is in contact with the back surface of the plate planting plate 130, and the plurality of holes (not marked in the drawings) are evenly distributed on the top surface and the peripheral surface of the semi-box-shaped containing structure 10, and the plate planting plate 130 is in contact with the plate planting plate 130. A rooting space P connected to the plate planting hole 130b is formed between the containing structures 10, and the rooting space P is used to place planting materials (not marked in the drawings); when planting, the roots 153 of the aerial root plants 150 extend through the plate planting holes 130b to the planting materials in the rooting space P, and absorb water and nutrients from the planting materials in the rooting space P. As time goes by, new roots grown on the stems 152 of the aerial root plants 150 that have not passed through the plate planting holes 130b cling to the surface of the plate planting plate 130, and absorb water and nutrients from the surface of the plate planting plate to grow.
[0091] The planting box of the utility model can be quickly assembled using planting boards and a containing structure. Multiple planting boxes can be hung on a backboard. Compared with the existing aerial root plant transplanting technology that relies on "repotting" to survive, the planting box of the utility model is convenient to assemble and takes up very little space for planting aerial root plants in a home environment. After the transplants survive, the planting boxes that support multiple surviving aerial root plants can be assembled into an "aerial root plant wall" according to one's preferences. It is also very convenient to add nutrients and water to the planting materials in the planting box of the utility model, and it is also very convenient to replace the internal planting materials.
[0092] Based on the above-mentioned embodiment of the plate planting box, the containing structure includes a frame 110 and a cover plate 120; the frame 110 is evenly distributed with watering holes 110b and ventilation holes 110a on its circumference, and the frame 110 is detachably connected to the plate planting plate 130; the cover plate 120 is evenly distributed with ventilation holes 120a on its surface and is detachably connected to the frame 110.
[0093] In at least one embodiment of the present invention, the watering hole 110b is arranged at the top and / or bottom of the frame 110, and the air holes 110a are arranged on both sides of the frame 110. The watering hole 110b, the air holes 110a, and the ventilation holes 120a are all connected to the root space P.
[0094] In this embodiment, when an aerial plant 150 is transplanted from a large-scale artificial flower pot to a planting box 100 for aerial plants, the plant's roots 153 are first passed through the planting holes 130b on the planting plate 130, and then the roots are planted in the planting material in the rooting space P. The roots of the aerial plant are placed in a semi-enclosed, breathable, and moisture-retaining planting environment. As the aerial plant 150 grows in the pot, new roots grow along the growth direction of the plant stem and radiate outward to cling to the surface of the planting plate 130, thereby achieving planting.
[0095] The planting box 100 allows the roots of aerial plants to cling to the surface of the planting board 130 for better growth, thereby increasing their survival rate. During transplanting, the roots of aerial plants are directly planted in the planting material, eliminating the need for bare-root treatment. This reduces plant stress and increases survival rate. Planting aerial plants using the planting box 100 avoids the slow potting and low survival rate problems associated with bare-root planting.
[0096] Secondly, the air holes 110a, watering holes 110b and ventilation holes 120a provide good air and water absorption and exchange conditions, so that the roots of aerial root plants can obtain good air circulation, avoiding the problem of poor ventilation in traditional closed planting pots and promoting the healthy growth of plants.
[0097] It should be noted that the frame 110 is a quadrilateral frame structure. In other embodiments, it may be a triangular structure, a "C"-shaped structure, a polygonal structure (such as a hexagonal or pentagonal), etc. In this embodiment, a rectangular frame structure is adopted, and the shape of the frame 110 includes but is not limited to the above-mentioned structural types. The cover plate 120 is roughly shaped like a rectangular plate. In other embodiments, it may be a triangular structure, a "C"-shaped structure, a polygonal structure (such as a hexagonal or pentagonal), etc. The shape of the cover plate 120 includes but is not limited to the above-mentioned structural types. The board planting plate 130 is roughly shaped like a rectangular plate. In other embodiments, it may be a triangular structure, a "C"-shaped structure, a polygonal structure (such as a hexagonal or pentagonal), etc. The shape of the board planting plate 130 includes but is not limited to the above-mentioned structural types.
[0098] The plate planting hole 130b is a through circular hole. In other embodiments, it can be a hole of other shapes, such as a rectangular hole, an elliptical hole, etc. The shape of the plate planting hole 130b includes but is not limited to the above-mentioned structural types. It should also be noted that there can be more than one plate planting hole 130b set on the plate planting plate 130. The user can choose a plate planting plate 130 of different specifications and sizes according to his or her preferences. Multiple plate planting holes 130b can be set on the plate planting plate 130. The user can extend the old root system of each aerial root plant through each of the plate planting holes 130b into the root space P, so that each aerial root plant can fully adapt to and grow in the new environment after being transplanted to the plate planting box 100.
[0099] like Figures 10 to 13 As shown, multiple aerial plant planting boxes 100 are assembled and mounted on a backboard 500 in a specific arrangement. A water distribution system (including a water distribution box 200, an upstream pipe 210, a downstream pipe 220, a front irrigation rope 201, and a rear irrigation rope 202) connects the individual aerial plant planting boxes 100. A water collection base 300 is placed at the bottom of the backboard 500 to create a complete combined planting system. Each aerial plant planting box 100 is the smallest unit necessary for the survival and cultivation of an aerial plant 150.
[0100] The planting box of the utility model can be quickly assembled using the planting board, frame, and cover. Multiple planting boxes can be hung on a back panel. Compared with the existing aerial root plant transplanting technology that relies on "repotting" to survive, the planting box of the utility model is convenient to assemble and takes up very little space for planting aerial root plants in a home environment. After the transplants survive, the planting boxes that support multiple surviving aerial root plants can be assembled into an "aerial root plant wall" according to one's preferences. It is also very convenient to add nutrients and water to the planting materials in the planting box of the utility model, and it is also very convenient to replace the internal planting materials.
[0101] In at least one embodiment of the present invention, Figures 3 to 9As shown, the cover plate 120 is provided with a plurality of ventilation holes 120a, and the frame 110 is evenly distributed with watering holes 110b and ventilation holes 110a on the circumference toward the center of the frame. The watering holes 110b, ventilation holes 110a and ventilation holes 120a are all connected to the rooting space P enclosed by the frame and the cover plate. The board planting plate 130 is arranged parallel to the cover plate 120, and the direction from the cover plate 120 to the board planting plate 130 is the first direction, that is, the normal direction perpendicular to the exposed surface of the board planting plate 130 and the cover plate 120 is the first direction, and the watering holes 110b are opened along the first direction. A rooting space P connected to the board planting hole is formed between the board planting plate 130, the cover plate 120 and the frame 110, and the rooting space is used to place planting materials. As Figure 6 、 Figure 9 、 Figure 10 As shown, the upper and lower frames (not shown) of the frame are provided with irrigation holes 110 b penetrating the rooting space P, that is, the irrigation holes 110 b are provided at the top and / or bottom of the frame. The ventilation holes 110 a are provided on both sides of the frame 110 .
[0102] In this embodiment, water enters the plate planting box 100 through the watering hole 110b and replenishes water to the planting material in the plate planting box 100 to perform drip irrigation or watering to ensure moisture at the roots of the aerial root plants 150.
[0103] Since the watering hole 110b is opened along the first direction, excess water can drip downward through the watering hole 110b to the next board planting box 100 arranged directly below the current board planting box 100 or drip into the water collection base to achieve water recycling.
[0104] It should be noted that the positions of the air holes 110a and the watering holes 110b can be interchanged, that is, users can water the planting materials in the rooting space P through the air holes 110a as needed, and the watering holes 110b can also ventilate the space outside the rooting space P when no water and nutrients are being poured. In other words, holes are evenly distributed around the frame 110, and any hole that has a watering rope or water pipe for watering is a watering hole 110b, and the remaining holes that do not have a watering rope or water pipe for watering are all air holes 110a.
[0105] In at least one embodiment of the present invention, the axes of the air holes 110a and the watering holes 110b are perpendicular to the axis of the ventilation holes 120c.
[0106] Please refer to Figures 3 to 9In the present embodiment, water enters the plate planting box 100 through the irrigation holes 110b, and because the axis of the irrigation holes 110b is perpendicular to the aeration holes 120c, the water can directly irrigate the planting material growing around the root system of the aerial root plant 150 in the root space P through the vertical downward irrigation rope 202, ensuring sufficient moisture of the root system. The vertical arrangement of the irrigation holes 110b helps to evenly distribute water, making irrigation more uniform.
[0107] The axis of the aeration hole 120c is perpendicular to the axis of the irrigation hole 110b, ensuring that air can flow smoothly through the aeration hole 120c into the root space P, providing sufficient oxygen to the root space P and promoting healthy growth of the root system of the aerial root plant 150. Good ventilation helps to prevent root rot of the aerial root plant 150, maintain appropriate humidity levels, and promote rapid growth of the aerial root plant.
[0108] Through the vertical arrangement of the air holes 110a, irrigation holes 110b and aeration holes 120c, the user can plant and maintain the aerial root plant more efficiently. The user can easily manage irrigation and ventilation, reducing the complexity of daily maintenance and improving planting efficiency.
[0109] It should be noted that the air holes 110a, the irrigation holes 110b and the aeration holes 120c can be in communication with each other, and when they are in communication with each other, the air permeability and moisture retention of the roots and stems planted in the frame 110 through the cover plate 120 will be better. Of course, the air holes 110a, the irrigation holes 110b and the aeration holes 120c can not be in communication with each other, but the water reaching the surface of the cover plate 120 through the air holes 110a can be indirectly permeated into the root space P surrounded by the frame 110 through the aeration holes 120c penetrating the surface of the cover plate 120. As shown in the drawings, in addition to being able to distribute water to the surface of the cover plate 120 through the aeration holes 120c at the upper end of the cover plate 120, water can also be transported to the top surface of the next frame 110 through the irrigation holes 110b penetrating from top to bottom. The user can reasonably select and match the entire plate planting box 100 according to the plants grown by the aerial root plant, and for each frame 110, the user can match the frame 110 with the cover plate 120 according to his or her preferences. Figures 6 to 11
[0110] In at least one embodiment of the present application, as Figure 5 , Figure 6 As shown, the frame body 110 has a first mounting surface 110d and a second mounting surface 110c away from the first mounting surface 110d, and the frame body 110 and the plate planting plate 130 can be connected by screws, adhesion or clamping; the frame body 110 is detachably connected to the first mounting surface 110d and the plate planting plate 130, and the frame body 110 is detachably connected to the second mounting surface 110c and the cover plate 120; the cover plate 120 and the frame body can be connected by screws, adhesion or clamping. Preferably, the second mounting surface 110c can be provided with a fixing groove (not labeled in the figure); the first mounting surface 110d is provided with a mounting position (not labeled in the figure), the mounting position of the frame body 110 is detachably connected to the plate planting plate, and the cover plate 120 is detachably mounted in the fixing groove.
[0111] Please refer to Figures 3 to 9 In this embodiment, since the cover plate 120 can be easily detached, the user can adjust according to different plant needs or planting conditions, providing greater planting flexibility. It is suitable for the transplanting process, reduces the damage to the root system of the aerial root climbing plant, and improves the success rate of transplanting.
[0112] In at least one embodiment of the present application, the projection area of the plate planting plate 130 in the first direction completely blocks the projection area of the frame body 110 and the cover plate 120. In this way, the user can only see the aerial root plant 150 climbing on the surface of the plate planting plate and the front surface of the plate planting plate 130 from the front of the plate planting box 100, and the stems, leaves and flowers of the aerial root plant 150 that grow out of the plate planting hole 130 to the front surface of the plate planting plate 130 cover the plate planting hole 130, so that the user cannot see any of the frame body 110, the cover plate 120, the planting material in the root space P, the root system and the water distribution system for watering multiple plate planting boxes 100 that can destroy the aesthetic appearance. If maintenance is required, the user can simply turn over the plate planting box 100 for maintenance.
[0113] Based on the second plate planting box embodiment described above, as shown in Figures 3 to 9 The plate planting box 100 further comprises a support member 140, which is detachably connected to the front surface of the plate planting plate 130 near the top of the plate planting plate 130, and at least one support block 142 is provided on the support member 140 to support the back surface of the plate planting plate 130 near the bottom area of the plate planting plate 130 in the plate planting box 100 at a higher position; preferably, at least one irrigation rope fixing member 141 is further provided on the support member 140 to fix one end of the irrigation rope 201 for irrigation on the front surface of the plate planting plate 130. Specifically, as shown in Figures 6 to 10As shown, the support member 140 is provided with two support blocks 142, and the support blocks 142 can be in any shape that can play a supporting role, such as block, column, rod, etc., and a watering rope fixing component 141 is respectively provided next to the two support blocks 142. The watering rope fixing component 141 is provided with a through hole that passes through the top and bottom (not marked in the drawings), and the axis of the through hole is parallel to the surface of the planting board. The front watering rope 201 passes through the through hole from top to bottom, and the end of the front watering rope 201 after passing through the through hole contacts the upper part of the front surface of the planting board 130, so that water can be poured through the front watering rope 201 to the front upper surface of the planting board 130, so that the newly grown roots of the aerial root plants 150 clinging to the upper surface of the planting board 130 can fully absorb the water and nutrients poured on the upper surface of the planting board 130.
[0114] Please refer to Figures 3 to 9 、 Figure 13 In this embodiment, the support member 140 can provide a good spacing support between the two stacked plate planting boxes 100, so that the rooting space P of the two stacked plate planting boxes 100 has enough spacing space (not marked in the drawings) for full exchange of water and nutrients with the outside of the rooting space, which is also more conducive to the circulation of ambient air and gaseous moisture between the two stacked plate planting boxes 100, and is more beneficial to the growth of aerial root plants 150. This spacing space is also more conducive to the water and nutrients of the planting materials irrigated into the rooting space P to be more efficiently exchanged and absorbed by the old roots of the aerial root plants 150, and is also convenient for watering. When watering is needed, the rear watering rope 202 evenly distributes water or nutrient solution to the planting materials in the rooting space P through the air holes 110a, the watering holes 110b, the ventilation holes 120a and the plate planting holes 130b, and the water can quickly penetrate into the planting materials and the roots of the plants, ensuring that the roots obtain sufficient water and nutrients. The distribution of water can be precisely controlled to ensure that the roots of plants in each watering hole 110b can obtain sufficient water, thereby preventing overwatering and reducing the risk of root rot of aerial root plants. It should be noted that there is a gap between the planting plate 130 and the frame 110, and the planting material can also be watered through the gap.
[0115] Furthermore, the support member 140 is detachably connected to the upper edge of the top of the planting plate 130 in a C-shaped clamp. Specifically, the support member 140 is provided with at least one support block 142 on the long side of the C-shape on the front of the planting plate 130 to support the back of the planting plate 130 of the higher planting box 100 in the spatially adjacent planting boxes 100; preferably, the support member 140 is further provided with at least one watering rope fixing member 141 to fix one end of the front watering rope 201 for watering the front surface of the planting plate 130. In this embodiment, other structural details of the support member 140 are consistent with those of the aforementioned embodiment and will not be repeated here.
[0116] In at least one embodiment of the present invention, a hook-shaped reinforcement portion (not shown in the drawings) extends downward from one side of the frame 110 near the lower edge of the plate-planting plate 130. This reinforcement portion has a plate-planting plate fixing groove (not shown in the drawings) for hooking and engaging the lower edge of the plate-planting plate 130. This simplifies the connection between the frame 110 and the plate-planting plate 130. Furthermore, the reinforcement portion further strengthens the lower edge of the plate-planting plate 130, preventing the plate-planting plate from wrinkling and deforming due to long-term watering, which would hinder the stacking of multiple plate-planting boxes 100.
[0117] In at least one embodiment of the present invention, Figures 3 to 8 As shown, the sheet planting box 100 further includes a reinforcement member 170, which is detachably connected to the lower edge of the sheet planting plate 130 and extends across the entire width of the sheet planting plate. Preferably, the reinforcement member 170 has a hook-shaped cross-section. This reinforcement member 170 further strengthens the lower edge of the sheet planting plate 130, preventing the sheet planting plate from wrinkling and deformation due to long-term watering, which would hinder the stacking of multiple sheet planting boxes 100.
[0118] In at least one embodiment of the present invention, the reinforcement member 170 is made of a transparent material. This material not only enhances the strength of the lower edge of the planting plate 130 but also allows the user to see the integrity of the planting plate 130 from the front. Users can also clip a plant tag (not shown) between the transparent reinforcement member 170 and the planting plate 130. The plant tag can record information such as the type of aerial plant, the type, specification, and dosage of fertilizer, and the amount of water used for each irrigation.
[0119] Second, as Figures 10 to 13 As shown, the present invention also provides a combined plate planting device for planting aerial root plants 150. Example
[0120] like Figures 10 to 13As shown, the combined board planting device includes a water collecting base 300, a backboard 500, at least one row of water distribution box groups, and at least one row of board planting box groups. The water collecting base 300 provides a water source for the growth of aerial root plants and collects the remaining water after watering the aerial root plants; the backboard 500 is fixed upright in the water collecting base 300; each row of water distribution box groups includes at least one water distribution box 200 uniformly distributed laterally on the backboard 500, which can be used to water the aerial root plants 150, and each row of water distribution box groups can be evenly installed on the backboard 500 up and down. A plurality of hooks 200c are provided on the front wall of the water distribution box 200 facing outwards from the backboard, and hooks 200c are provided between each row of water distribution box groups arranged up and down and the lowest row of water distribution box groups. A water distribution pipeline is connected to the water collection base; each row of plate planting box groups includes multiple plate planting boxes 100 as described in the first aspect, and the plate planting boxes 100 can be evenly and seamlessly spliced left and right and hung on the hooks 200c of the water distribution box; wherein, multiple rows of plate planting box groups are staggered and stacked in space and hung on the hooks 200c of the front walls of the multiple upper and lower water distribution boxes. Seen from the front, the projection of the plate planting plate 130 in the first direction completely blocks the frame 110, the cover plate 120, the water distribution box 200, and the back plate 500. The lower edge of the plate planting plate 130 of the upper layer blocks the upper edge of the plate planting plate 130 of the lower layer, and the lower edge of the plate planting plate 130 of the bottom layer is blocked by the upper edge of the front wall of the water collection base 300.
[0121] It should be noted that the present invention does not limit the specific shape and form of the hook 200c, and the corresponding hanging hole (not shown in the accompanying drawings) on the board planting box 100 corresponding to the hook 200c is also not specifically limited by the present invention. The hanging hole can be set on the back of the board planting plate 130, the back of the accommodating structure 10, the back of the cover plate 120, or the back of the reinforcement 170. The present invention does not limit the specific shape and form of the hanging hole. As long as the board planting box 100 and the hook 200c can realize the technical solution of sequential staggered stacking and hanging as defined in the present invention, it is within the scope of protection of the present invention.
[0122] The combined planting panel device provided by this utility model provides users with an integrated, multi-panel planting platform for large-scale, beautifying aerial plant cultivation in their personal homes. Because dripping water from the upper composite panel planting box drips onto the panel planting panels of the lower composite panel planting box, the dripping rate of irrigation water is significantly reduced. Furthermore, by reducing the irrigation water flow rate per unit time, splashing of irrigation water is greatly reduced to a negligible level. Compared to traditional sprinkler irrigation, users no longer have to worry about watering aerial plants causing excessive moisture in their home floor. They also don't need to install waterproofing, as required with sprinkler irrigation, or worry about nutrients leaching to the ground when applying nutrients to aerial plants, affecting the home environment. Furthermore, the stacked arrangement of multiple composite planting panels creates a complete green planting wall, offering users an unprecedented, wall-like experience of beautifying aerial plant cultivation. This reduces the many limitations associated with watering, fertilizing, and maintaining a moist growing environment, making it easier for users to cultivate tropical aerial plants and greatly encourages more users to enjoy creating their own green plant walls. Example
[0123] like Figures 10 to 13 As shown, based on the above-mentioned fourth embodiment, the water distribution pipeline includes an upward water pipe 210, a downward water pipe 220, a front watering rope 201, and a rear watering rope 202; the upward water pipe 210 can send water from the water collecting base 300 to each layer of water distribution box 200 in sequence; the downward water pipe 220 can start from the top layer of water distribution box 200 and collect the remaining water after watering each plate planting box 100 to the next layer of water distribution box 200; the front watering rope 201 is connected to the upper row of water distribution box 200. The water distribution box 200 introduces water for irrigation and moistening the surface of the planting plate 130 of the planting box hung on the next row of the water distribution boxes 200 so that the newly grown roots of the aerial root plants 150 clinging to the surface of the planting plate 130 can absorb water; the post-watering rope 202 introduces water from the water distribution boxes 200 in the previous row for irrigation and moistening the planting materials in the root space P of the planting box hung on the next row of the water distribution boxes 200 so that the roots of the aerial root plants 150 in the root space P can absorb water.
[0124] The water distribution pipeline of the combined board planting device of the present invention can reduce the difficulty of connecting the pipelines between each layer of water distribution boxes 200 and the corresponding row of board planting box groups and the next row of board planting box groups of the layer of water distribution boxes 200, so that users can irrigate multiple rows of board planting boxes through simple connection of water distribution pipelines, and the remaining water after irrigation can also be collected and reused by using the multi-layer water distribution boxes 200 and the water collection base 300. Example
[0125] like Figures 10 to 13As shown, on the basis of the aforementioned embodiment five, the combined board planting device also includes a decorative panel 400; the decorative panel 400 can be evenly and seamlessly spliced and hung on the hooks of the highest row of the water distribution box group, and the lower edge of the decorative panel 400 is supported by the support 140 installed on the upper edge of the board planting plate 130 of the top board planting box 100, and the lower edge of the decorative panel 400 blocks the upper edge of the board planting plate 130 of the top board planting box 100.
[0126] When it is necessary not to plant any aerial plants in the highest row of the combined board planting device, a decorative plate 400 can be installed in the highest row of the combined board planting device. In this way, on the one hand, the decorative plate 400 can block the components such as the water distribution box 200, the upward water pipe 210, the downward water pipe 220, the front watering rope 201, and the rear watering rope 202 that the user does not want to see at a glance from the front. On the other hand, the water distribution box corresponding to the decorative plate 400 can only irrigate and supply water to the next row of board planting boxes. The irrigation and water supply process can make full use of gravity to further reduce the working noise of the driving pump used to make the water flow when the entire combined board planting device is working, which can reduce the working energy consumption of the entire device. More importantly, the watering process of the entire combined board planting device for the aerial plants can be made to feel "silent", which increases the user's enjoyment in the process of planting and raising aerial plants.
[0127] In at least one embodiment of the present invention, the highest row of water distribution box groups is provided with a front watering rope 201 that can cross over the upper end of the board planting plate 130 of the highest row of board planting box groups and a rear watering rope 202 that can be inserted into the watering hole 110b of the highest row of board planting box groups. In addition to watering the corresponding board planting box groups at the same height, this row of water distribution box groups also waters the next row of board planting box groups at a lower height.
[0128] In this way, each planting box 100 of the entire combined planting device can be watered. However, the top row of planting boxes cannot be watered directly by gravity using the water distribution box 200, which has a height difference with the planting boxes 100. Instead, the "capillary principle" can be used to soak the planting material in the rooting space P of the top row of planting boxes and the surface of the planting board 130 through the front watering rope 201 and the rear watering rope 202 connected to the top layer of the water distribution box group. This method improves the space utilization rate of the entire combined planting device and allows more aerial root plants to be planted in the available space.
[0129] In at least one embodiment of the present invention, Figures 10 to 13As shown, each row of the water distribution box group is an integrated water distribution box 200, which has a front water tank 200b and a rear water tank 200a. The upward water pipe passes through the front water tank 200b in sequence to fill the front water tank 200b in sequence, and the downward water pipe passes through the rear water tank 200a in sequence to release water in sequence to keep the rear water tank 200a moist. In this way, the water flow distribution inside the water distribution box 200 can flow more effectively to the areas and pipes where we want the water to flow, which is beneficial for users to deploy corresponding water distribution pipes according to their preferences, so that different areas of the same combined board planting device can be used to plant different types of aerial root plants with different living habits. Example
[0130] like Figures 10 to 13 As shown, based on the aforementioned sixth embodiment, the combined board planting device further includes at least one row of adapter box groups, each row of which includes at least one adapter box 200' uniformly distributed laterally on the backboard 500, which can connect the upward water pipe 210 and the downward water pipe 220 of the water distribution pipeline. The adapter box 200' is provided with a plurality of hooks (not shown in the drawings) on the front wall facing outwards from the backboard to hang at least one row of lower board planting box groups. In this way, users can more flexibly deploy the water distribution pipeline according to their needs. As long as an adapter box 200' is arranged on the corresponding backboard 500 in the required area, the water distribution pipeline can be conveniently reconnected, so that users can build a combined board planting device environment that is suitable for the aerial root plants they need to plant. Example
[0131] like Figures 10 to 13 As shown, based on the aforementioned seventh embodiment, the combined board planting device further includes a reversible support member 600, which is detachably connected to the board planting plate 130 or the cover plate 120 of the lowest row of board planting boxes 100. After the reversible support member 600 is flipped, its protruding end (not shown in the accompanying drawings) is supported on the front wall of the lowest water distribution box 200 or the adapter box 200'. In this way, the lowest row of board planting boxes 100 can have a fulcrum for transmitting supporting force to the back plate 500 through the lowest water distribution box 200 or the adapter box 200', making the entire combined board planting device planted with aerial root plants more stable, making full use of the effective space of the combined board planting device to plant as many aerial root plants as possible, improving space utilization, and improving the adaptability of the combined board planting device to the home planting environment.
[0132] The above is only an embodiment of the present invention. It should be pointed out that those skilled in the art can make improvements without departing from the inventive concept of the present invention, but these improvements are all within the scope of protection of the present invention.
Claims
1. A planting box for planting aerial root plants, characterized in that: include: The board planting board is provided with board planting holes; The containing structure is detachably connected to the planting plate, and a plurality of holes are evenly distributed on its surface. The planting plate and the containing structure form a rooting space for placing planting materials; During planting, the roots of aerial root plants extend through the planting holes to the planting material in the root space, absorbing moisture and nutrients from the planting material; new roots grown on the stems exposed outside the planting board cling to the surface of the planting board, absorbing moisture and nutrients from the surface of the planting board.
2. The plate planting box according to claim 1, characterized in that: The accommodating structure comprises: The frame has irrigation holes and ventilation holes evenly distributed on its circumference and is detachably connected to the board planting plate; The cover plate has ventilation holes evenly distributed on its surface and is detachably connected to the frame.
3. The plate planting box according to claim 2, characterized in that: The watering holes are arranged on the top and / or bottom of the frame, and the ventilation holes are arranged on both sides of the frame. The watering holes, ventilation holes and ventilation holes are all connected to the root growth space.
4. The plate planting box according to claim 2, characterized in that: The normal direction perpendicular to the exposed surface of the planting plate and the cover plate is the first direction. The axis of the watering hole and the axis of the air vent are both opened perpendicular to the first direction, and the axis of the ventilation hole is opened parallel to the first direction.
5. The plate planting box according to claim 2, characterized in that: The plate planting box also includes: The support member is detachably connected to the surface of the plate planting plate away from the frame body, and the support member is provided with at least one support block to support the plate planting boxes adjacent to each other in the upper and lower spatial positions.
6. The plate planting box according to claim 5, characterized in that: The support member is also provided with at least one watering rope fixing component to fix one end of the watering rope for watering the surface of the board planting plate.
7. The plate planting box according to claim 4, characterized in that: The frame has a first mounting surface and a second mounting surface facing away from the first mounting surface, the frame is detachably connected to the board implantation plate at the first mounting surface, and the frame is detachably connected to the cover plate at the second mounting surface; The frame and the plate implant plate may be connected by screws, adhesives or clamps; The cover plate and the frame body can be connected by screws, adhesives or clamps.
8. The plate planting box according to claim 7, characterized in that: The projection area of the plate-planting plate in the first direction completely blocks the projection areas of the frame and the cover plate.
9. The plate planting box according to claim 6, characterized in that: One side of the frame body close to the lower edge of the board planting plate extends downward to form a hook-shaped reinforcement portion, and the reinforcement portion has a board planting plate fixing groove to hook and clamp the lower edge of the board planting plate.
10. The plate planting box according to claim 9, characterized in that: A drip hole is provided below the hook-shaped reinforcement portion.
11. The plate planting box according to claim 2, characterized in that: Also includes: The reinforcement piece is detachably connected to the board planting plate and runs through the entire width direction of the board planting plate. The cross section of the reinforcement piece can be hook-shaped.
12. The plate planting box according to claim 11, characterized in that: The reinforcement member is made of transparent material.
13. A combined plate planting device for planting aerial root plants, characterized in that: include: The water collection base provides water for the growth of aerial root plants and collects the remaining water after watering the aerial root plants; A back plate, fixed upright in the water collecting base; At least one row of water distribution box groups, each row of water distribution box groups includes at least one water distribution box uniformly distributed laterally on the back plate, which can be used to water aerial root plants. Each row of water distribution box groups can be evenly installed on the back plate up and down, and a plurality of hooks are provided on the front wall of the water distribution box facing outwards from the back plate. Water distribution pipes are connected between each row of water distribution box groups arranged up and down, and between the lowest row of water distribution box groups and the water collection base; At least one row of plate planting box groups, each row of plate planting box groups including a plurality of plate planting boxes according to any one of claims 1 to 12, the plate planting boxes being able to be evenly and seamlessly spliced left and right and hung on the hooks of the water distribution box; Among them, multiple rows of plate planting box groups are staggered and stacked in space and hung on the hooks on the front walls of the multiple water distribution boxes arranged up and down. Seen from the front, the projection of the plate planting board in the first direction completely blocks the frame, cover plate, water distribution box, and back plate. The lower edge of the plate planting board on the upper layer blocks the upper edge of the plate planting board on the lower layer, and the lower edge of the plate planting board on the bottom layer is blocked by the upper edge of the front wall of the water collection base.
14. The combined plate planting device according to claim 13, wherein: The water distribution pipeline includes: The ascending water pipe can deliver water from the water collecting base to each layer of water distribution box in turn; The downward water pipe can collect the remaining water after irrigating each plate planting box in sequence from the water distribution box arranged on the top layer to the water distribution box on the next layer.
15. The combined plate planting device according to claim 14, characterized in that: The water distribution pipeline also includes: The front watering rope introduces water from the water distribution box in the upper row to irrigate and moisten the surface of the planting board of the board planting box hung on the water distribution box in the next row so that the new roots of the aerial root plants clinging to the surface of the board planting board can absorb water; The rear watering rope introduces water from the water distribution boxes in the upper row to irrigate and moisten the planting materials in the root growth space of the plate planting boxes hung on the water distribution boxes in the lower row so that the roots of the aerial root plants in the root growth space can absorb water.
16. The combined plate planting device according to claim 15, characterized in that: The combined plate planting device also includes: At least one row of adapter box groups, each row of adapter box groups includes at least one adapter box evenly distributed horizontally on the back panel, which can connect the upstream water pipes and the downstream water pipes of the water distribution pipeline. The front wall of the adapter box facing outwards away from the back panel is provided with multiple hooks for hanging at least one row of lower plate planting box groups.
17. The combined plate planting device according to claim 16, characterized in that: The combined plate planting device also includes: The flip support is detachably connected to the board planting plate or cover plate of the lowest row of board planting boxes. After the flip support is flipped, the extended end is supported and arranged on the front wall of the water distribution box at the bottom layer.
18. The combined plate planting device according to claim 15, characterized in that: The highest row of water distribution box groups is provided with a front watering rope that can cross over the upper end of the planting plate of the highest row of planting box groups and a rear watering rope that can be inserted into the watering holes of the highest row of planting box groups. In addition to watering the corresponding planting box groups at the same height, this row of water distribution box groups also waters the next row of planting box groups at a lower height.
19. The combined plate planting device according to any one of claims 14 to 18, characterized in that: The combined plate planting device also includes: The decorative panel can be evenly and seamlessly spliced and hung on the hooks of the highest row of water distribution box groups. The lower edge of the decorative panel is supported by the support installed on the upper edge of the topmost panel planting board, and the lower edge of the decorative panel covers the upper edge of the topmost panel planting board.
20. The combined plate planting device according to claim 19, wherein: Each row of the water distribution box group is an integrated water distribution box, which has a front water trough and a rear water trough. The upward water pipe passes through the front water trough in sequence to fill the front water trough in sequence, and the downward water pipe passes through the rear water trough in sequence to discharge water in sequence to keep the rear water trough moist.
Citation Information
Patent Citations
Automatic basin is planted in watering
CN205266535U
Cited By
Composite planting box and invisible composite planting device
CN118923388A
A composite planting box and a hidden composite planting device
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