Epiphytic plant planting plate capable of temporarily storing water
By designing the injection-molded tower structure on the epiphytic plant planting plate, the problems of poor breathability and root perishability in the prior art are solved, and a better humidity environment and planting flexibility are achieved, which is suitable for the long-term growth of epiphytic plants.
Patent Information
- Application Number
- CN202421926180.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-09
AI Technical Summary
In the prior art, the epiphytic plant planting plate has poor breathability, which can easily lead to mold or rot in the root system, and is not conducive to the long-term growth and flexibility of planting.
An epiphytic plant planting plate that can temporarily store moisture was designed, using an injection molded plate body, with a plurality of regular hexagonal through holes that penetrate the plate body, and a hollow tower structure was injected into a top of the through hole. This tower structure has high strength and fatigue resistance, and can temporarily store moisture under the action of liquid surface tension and increase the humidity environment around the plants.
Through the design of the tower structure, the humidity environment around the plants is increased, the growth environment in nature is simulated, which is conducive to the growth of epiphytes, avoids mold or rot in the root system, and provides better breathability and planting flexibility.
Smart Images

Figure CN222869597U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of epiphyte planting tools, in particular to an epiphyte planting board capable of temporarily storing water. Background Art
[0002] There are many types of epiphytes, ranging from lower plants to higher plants. Common fern epiphytes include the Polypodiaceae family's Waveberry, Pyrrosia, Polypodiaceae, Star Fern, and Book Fern; the Aspleniaceae family's Bird's Nest Fern; the main dominant species of epiphytic bryophytes include East Asian Whip Moss, Small-Leaf Whip Moss, Tooth-Margined Broad-Calyx Moss, Tree Flat Moss, Spiny Fruit Moss, Green Hair Moss, Small Creeping Moss, and Sharp Beak Moss; the lichen family's Usnea; the orchid family's Phalaenopsis, Peony Golden Hairpin Orchid, Secret Orchid, Golden Hairpin Dendrobium, Golden Dendrobium, Tiger Orchid, Tasseled Betel Orchid, and Laurel Leaf Wanlan; the Ericaceae family's Vaccinium; the Araceae family's Fairy Leaf Vine; the Gesneriaceae family's Long Fruit Vine; the Moraceae family's Banyan, Sparrow Ficus, and White Ficus. Common ornamental plants that are very adaptable to epiphytic environments include Vanda, Phalaenopsis, Tillandsia, Staghorn Fern, and Dendrobium.
[0003] In nature, epiphytes generally do not come into contact with the soil, and their roots grow on the branches of other trees or on cracked rocks. Epiphytes survive on rain, water vapor in the air, and limited humus, such as rotten dead branches and leaves or animal excrement.
[0004] In artificial environments, people use palm fiber, cork, peat, sphagnum moss and other media to simulate natural media to grow ferns and orchids. While these media are taken from nature, they also cause a lot of pressure and even pollution to the local environment. For example, the growth cycle of cork is usually 25 years, and then it is harvested every 9 years. This means that it takes at least 25 years for a tree to be planted and first harvested, and peat and other resources are non-renewable resources.
[0005] In modern times, people use artificial fabrics such as non-woven fabrics to simulate natural media. However, such fiber materials are not resistant to sunlight and rain outdoors and age severely, which is not conducive to the long-term growth of plants and will cause more serious pollution to the environment after being broken.
[0006] The utility model with the authorization announcement CN205320682U discloses an environmentally friendly plant planting board. It relates to a building material decorative board, including a perforated plate, a bonding plate, a planting groove, a T-shaped groove, an L-shaped groove, and a through hole. The environmentally friendly plant planting board has a planting groove in the perforated plate, uses the gap in the perforated plate for drip irrigation, and attaches decorative materials on both sides of the perforated plate, which plays a decorative role while achieving the purpose of unattended planting.
[0007] The environmentally friendly plant planting plate is provided with through holes at the upper, middle or lower part of the orifice plate, and the through holes are used to insert the drip irrigation pipes. There are pores inside the orifice plate, and the dripping water enters each planting groove along the pores in the orifice plate to make the plants grow. The main function of the pores is to guide water to flow from the through holes into each planting groove.
[0008] In a broad sense, pores refer to the spaces in rocks that are not filled by solid matter. Some people also call them voids, including narrow pores, caves and cracks. Among them, narrow pores refer to the voids between particles, within particles and within fillings in rocks. Some are interconnected, some are isolated, and the shapes of pores are also random and disordered.
[0009] The environmentally friendly plant planting plate is not provided with a hollow triangular tower, and the outer holes of the pores are lower than the plane of the orifice plate, or are basically at the same level as the plane of the orifice plate, and the air permeability is poor. When the orifice plate is hung on the wall, the back of the orifice plate will fit the wall, or the distance between the two is very small, and the air permeability between the front and back of the orifice plate is even worse. When more pores are artificially opened in the artificial orifice plate, the strength of the orifice plate will be weakened and it is easy to break. Since the pores are randomly and disorderly generated, and some are blind holes and some are through holes, the aperture sizes are different, the blind holes are not conducive to air permeability, and when the roots spread and grow in the orifice plate along the blind holes, they cannot pass from the front of the orifice plate to the back, so in the process of root growth, the orifice plate will be cracked in the weak place of the orifice plate. The planting area of the environmentally friendly plant planting plate is relatively fixed, which has been determined during the production. It cannot be planted in any area of the orifice plate when used, and the surface of the orifice plate is relatively flat, which is not conducive to the planting and growth of epiphytes. Utility Model Content
[0010] In order to overcome at least one of the technical problems existing in the prior art, the utility model provides an epiphyte planting plate that can temporarily store water, which has a regular hexagonal through hole and a tower-shaped structure protruding from the top of the regular hexagonal through hole. The planting plate and the tower-shaped structure have high mechanical properties such as strength and fatigue resistance. Under the action of liquid surface tension, water can stay on the tower-shaped structure, increasing the humidity environment around the plant, which is conducive to the growth of epiphytes.
[0011] The invention discloses an epiphyte planting plate capable of temporarily storing water, comprising an injection-molded plate body, a plurality of regular hexagonal through holes penetrating the plate body being regularly opened on the plate body, a hollow tower-shaped structure being injection-molded on each regular hexagonal through hole on the front side of the plate body, the tower-shaped structure protruding upward on the top of the regular hexagonal through hole, the tower-shaped structure comprising a plurality of evenly distributed tower edges, a plurality of tower holes evenly formed between the plurality of tower edges, water can adhere to the tower holes and the tower edges under the action of surface tension, each tower hole is connected with the regular hexagonal through hole, the lower ends of the plurality of tower edges are fixed corresponding to a plurality of evenly distributed inner angles of the regular hexagonal through hole, the upper ends of the plurality of tower edges are extended upward and fixed on the center line of the regular hexagonal through hole, a planting area is formed between adjacent tower-shaped structures, and the planting area is multiple and evenly distributed on the plate body.
[0012] In some embodiments, there are three evenly distributed tower sides, and the multiple tower holes are three quadrilateral through holes. The lower ends of the three tower sides are fixed corresponding to three evenly distributed inner angles of the regular hexagonal through hole, and the upper ends of the three tower sides are extended upward and fixed on the center line of the regular hexagonal through hole.
[0013] In some embodiments, there are six evenly distributed tower sides, and the multiple tower holes are six equilateral triangle holes. The lower ends of the six tower sides are fixed corresponding to the six inner angles of the regular hexagonal through hole, and the upper ends of the six tower sides are extended upward and fixed on the center line of the regular hexagonal through hole.
[0014] In some embodiments, the plate body includes a hole plate having a plurality of regular hexagonal through holes regularly opened therein, and an outer frame integrally formed on the periphery of the hole plate, the thickness of the outer frame is greater than the thickness of the hole plate, and the front and back sides of the outer frame are correspondingly higher than the front and back sides of the hole plate.
[0015] In some embodiments, the lengths and shapes of the multiple tower sides are the same, the multiple tower sides are V-shaped, and the top and bottom surfaces of each tower side include two symmetrical inclined surfaces that extend from the midline of the tower side toward the inner angle of the regular hexagonal through hole.
[0016] In some embodiments, the height of the top of each tower structure is equal to or less than the front height of the outer frame.
[0017] In some embodiments, a drip irrigation box is also included that can be detachably installed with the plate body. The drip irrigation box includes an injection-molded box body and a water containing cavity opened in the box body. A drip irrigation hole is opened on the box wall at the lower end of the box body. The drip irrigation hole is connected to the water containing cavity. At least one hanging plate is arranged on the back side of the upper end of the box body. A card slot for inserting the plate body is formed between the hanging plate and the back side of the box body. At least one air avoidance groove is arranged on the back side of the box body, and the air avoidance groove is recessed toward the water containing cavity.
[0018] In some embodiments, there are two hanging plates and two air avoidance grooves, which are symmetrically arranged, and the two air avoidance grooves are located between the two hanging plates.
[0019] In some embodiments, the hanging plate is L-shaped, the slot is U-shaped, and the width of the slot is smaller than the thickness of the plate.
[0020] In some embodiments, the box body is injection molded, and an expansion box is integrally formed at the lower end of the box body. The width of the expansion box is smaller than the width of the box body. The inner cavity of the expansion box is connected to the water containing cavity of the box body. The inner bottom surface of the box body extends obliquely toward the expansion box, and the drip irrigation hole is opened at the lower end of the expansion box.
[0021] Beneficial effects of the utility model:
[0022] 1. The plate body is integrally injection molded, and is regularly provided with a plurality of regular hexagonal through holes that penetrate the plate body. This is because the triangle is the most stable structure, and if the regular hexagon is made into a diagonal line, it can be divided into six completely equilateral triangles. Since the equilateral triangle has the best stability, the hexagon as a combined figure is also the most stable. The regular hexagonal structure also has the characteristics of saving materials, large volume, light weight, large capacity, and easy access.
[0023] Second, a hollow tower structure is injection molded on each regular hexagonal through hole on the front of the board. The hollow tower structure can ensure the stability of the board while forming multiple independent spaces. After rain or artificial watering, due to the surface tension of the liquid, water can stay on the structure for a short time, such as staying on the tower edge and tower hole, which increases the humidity environment around the plant and restores the wrinkles and cracks of the natural bark and stone cracks. The hollow tower structure will not hold a large amount of water like a container. The water can generally be temporarily stored or stayed for 10 to 50 minutes before evaporation. Depending on the weather and temperature, the temporary storage or stay time will be shortened or extended, simulating the epiphytic growth environment in nature, which is beneficial to the production of plants, and can avoid or reduce the occurrence of root mold or rot, etc., which is particularly suitable for the growth of epiphytes. In addition, the tower holes opened in the hollow tower structure can also accommodate the thicker aerial roots of plants to grow through them, providing space for the attachment of plant roots, and can also accommodate some artificial planting materials, which is suitable for plant growth.
[0024] 3. The hollow tower structure also has the function of a rain chain. Rain chains, also known as rainwater chains, originated from Japanese architecture and are part of the rainwater drainage system. They are mainly used to drain rainwater to protect buildings from rainwater erosion, which is beneficial to protecting buildings. In this application, because multiple tower structures are evenly arranged, when the planting board is vertically hung on the outer wall, rainwater will flow down along the mesh steps, slowing down the flow rate of water, avoiding direct erosion of plants and roots by rainwater, and preventing plants from falling off and being damaged from the planting board.
[0025] Fourth, it is equipped with a freely detachable drip irrigation box, which is more convenient for users. Compared with spraying water, drip irrigation with a drip irrigation box can reduce water waste; when spraying, most of the water adheres to the leaves of the plants and it is difficult to reach the roots directly; while the water flowing out of the multiple drip irrigation holes of the drip irrigation box will flow from top to bottom along the planting board, which can directly provide water and nutrients to the roots growing on the planting board, with better effects, energy saving and environmental protection, and reduced waste.
[0026] Additional aspects and advantages of the present invention will continue to be given in the following description, and some will become apparent from the following description or be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0028] Figure 1 It is a left-side front perspective structural diagram of the present application;
[0029] Figure 2 yes Figure 1 The enlarged view of point A in the middle;
[0030] Figure 3 It is a right-side front perspective structural diagram of the present application;
[0031] Figure 4 yes Figure 3 The enlarged view of point B in the middle;
[0032] Figure 5 yes Figure 4 Enlarged view of point C in the middle;
[0033] Figure 6 It is a schematic diagram of the front structure of this application;
[0034] Figure 7 It is a side structural schematic diagram of the present application;
[0035] Figure 8 It is a left-side back perspective structural diagram of the present application;
[0036] Fig. 9 It is a right-side back three-dimensional structure schematic diagram of the present application;
[0037] Fig.10 yes Fig. 9 The enlarged view of point D in the middle;
[0038] Fig.11 It is a schematic diagram of the split structure of this application;
[0039] Fig.12 It is a schematic diagram of the back structure of this application;
[0040] Fig.13 It is a schematic diagram of the main structure of the drip irrigation box;
[0041] Fig.14 It is a rear view structural diagram of the drip irrigation box;
[0042] Fig.15 It is a schematic diagram of the side structure of the drip irrigation box;
[0043] Fig.16 This is a top view of the tower structure when the number of tower sides and tower holes is six.
[0044] Reference numerals:
[0045] Plate body 1, orifice plate 100, outer frame 101;
[0046] Regular hexagonal through hole 2, internal angle 200;
[0047] Tower structure 3, tower side 300, inclined surface 300a, tower hole 301, tower top 302 planting area 4;
[0048] The drip irrigation box 5 , the box body 500 , the water containing chamber 501 , the drip irrigation hole 502 , the hanging plate 503 , the card slot 504 , the air avoidance slot 505 , and the expansion box 506 . DETAILED DESCRIPTION
[0049] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0050] In the description of the present invention, it should be understood that descriptions involving orientation, such as the orientations or positional relationships indicated by terms such as "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside", etc., are based on the orientations or positional relationships shown in the accompanying drawings and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0051] In the description of the present utility model, "several" means one or more, "more" means more than two, "greater than", "less than", "exceed" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself. If there is a description of "first" or "second", it is only used for the purpose of distinguishing the technical features, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.
[0052] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0053] Reference Figure 1-Figure 16, an epiphyte planting board capable of temporarily storing water, the planting board can be made of polypropylene or other more environmentally friendly plastics by injection molding, and has high mechanical properties, such as strength, modulus, wear resistance, toughness, and fatigue resistance; it includes an injection-molded plate body 1, which can be rectangular, square, or other suitable shapes; injection molding is a method of using pressure to press hot-melt plastic into a metal mold and cool and solidify it, also known as injection molding or injection molding. Injection molding has a short production cycle, almost no post-processing, and can mold plastic products with complex shapes and precise dimensions at one time. It has excellent quality and hardness, and good hardness and impact resistance.A plurality of regular hexagonal through holes 2 penetrating the plate body 1 are regularly provided on the plate body 1, because the triangle is the most stable structure, and if the regular hexagon is made into a diagonal line, it can be just divided into six completely equilateral triangles. Since the equilateral triangle has the best stability, the hexagon as a combined figure is also the most stable. The regular hexagonal structure also has the characteristics of saving materials, large volume, light weight, large capacity, and easy access. A hollow tower structure 3 is injection molded on each regular hexagonal through hole 2 on the front side of the plate body 1. The tower structure 3 can also be called a triangular pyramid structure or an umbrella structure, because the appearance and structure are similar to each other. The tower structure 3 protrudes upward on the top of the regular hexagonal through hole 2, and the tower structure 3 includes a plurality of evenly distributed tower sides 300, and a plurality of tower holes 301 are evenly formed between the plurality of tower sides 300. The tower holes 301 can be triangular or quadrilateral holes, and the side length of the tower holes 301 is preferably between 4 mm and 6 mm. The plurality of tower holes 301 are all higher than the top plane of the plate body 1, and the plurality of tower holes 301 are interconnected with the regular hexagonal through hole 2. Air can form convection between the holes, thereby increasing the contact area between the root system and the air, and facilitating the root system to pass through the tower holes 301 or the regular hexagonal through hole 2 and in the tower holes 301. 1, and can also reduce or avoid root damage to the tower hole 301 and the plate body 1. The lower ends of the multiple tower sides 300 are fixed corresponding to the multiple evenly distributed inner angles 200 of the regular hexagonal through hole 2. The three inner angles 200 are evenly distributed. The upper ends of the multiple tower sides 300 are extended upward and fixed on the center line of the regular hexagonal through hole 2 to form a tower tip 302 together. The center line of the regular hexagonal through hole 2 is a virtual center line and is invisible in reality. Planting areas 4 can be formed between adjacent tower structures 3, and epiphytes can be planted in the concave planting areas 4. Plants are just planted in the planting areas 4, it can be fixed by ropes or strapping, and then the planting board can be hung on the wall. After the plants grow for a period of time and the roots are attached to them, the ropes or strapping can be removed. There are multiple planting areas 4 and they are evenly distributed on the board body 1. The planting areas 4 and the tower-shaped structures 3 can be distributed in a matrix or in other suitable forms. Each planting area 4 is not closed, and each planting area 4 has a plurality of tower holes 301. The plant roots can extend and grow in each planting area 4. There are a plurality of tower holes 301 in each planting area 4, so it has good air permeability and is also conducive to the passage and growth of the roots.
[0054] The epiphyte planting board is made of plastic injection molding, with high production efficiency, light weight, and good strength and corrosion resistance. The roots of epiphytes are not easy to squeeze or crush the board body 1 during the growth process; the regular hexagonal through holes 2 are arranged to facilitate good arrangement and distribution on the board body 1, saving materials, and at the same time having the characteristics of good stability, large volume, light weight, large capacity, and easy access; the hollow tower structure 3 can ensure the stability of the board body 1 while forming a plurality of independent spaces; after rain or artificial watering, due to the effect of liquid surface tension, water can stay on the structure for a short time, such as staying on the tower edge 300 and the tower hole 301, thereby increasing the humidity environment around the plant and restoring the wrinkled and cracked structure of the bark and stone crevices in nature. The hollow tower structure 3 will not hold a large amount of water like a container. The water can generally be temporarily stored or retained for 10 to 50 minutes before evaporation. Depending on the weather and temperature, the temporary storage or retention time may be shortened or extended, simulating the growth environment of epiphytes in nature, which is beneficial to plant production and can avoid or reduce the occurrence of root mold or rot, and is particularly suitable for the growth of epiphytes. In addition, the tower holes 301 opened in the hollow tower structure 3 can also accommodate the relatively sturdy aerial roots of the plant to grow therein, providing space for the plant's root attachment, and can also accommodate some artificial planting materials, which is suitable for plant growth.
[0055] In some embodiments, reference Figure 5 As shown, there are three evenly distributed tower sides 300, and the multiple tower holes 301 are three quadrilateral through holes, whose cross-sections are quadrilaterals. The lower ends of the three tower sides 300 are fixed to three evenly distributed inner angles 200 of the regular hexagonal through hole 2, and the upper ends of the three tower sides 300 are extended upward and fixed on the center line of the regular hexagonal through hole 2. The structure of the three tower sides 300 and the three quadrilateral through holes can save materials, but has good mechanical properties, strength and stability.
[0056] In some embodiments, reference Fig.16 As shown, there are six evenly distributed tower sides 300, and the multiple tower holes 301 are six equilateral triangle holes. The lower ends of the six tower sides 300 are fixed corresponding to the six inner angles 200 of the regular hexagonal through hole 2, and the upper ends of the six tower sides 300 are extended upward and fixed on the center line of the regular hexagonal through hole 2; the structure of the six tower sides 300 and the six equilateral triangle holes will increase the material, but through the above structure, the regular hexagon can be divided into six complete equilateral triangles, and the equilateral triangle has the best stability and the best mechanical properties.
[0057] In some embodiments, the plate body 1 includes a perforated plate 100 having a plurality of regular hexagonal through holes 2 regularly opened therein, and an outer frame 101 integrally formed on the periphery of the perforated plate 100, wherein the thickness of the outer frame 101 is greater than the thickness of the perforated plate 100, and the outer frame 101 can improve the aesthetics and enhance the mechanical properties of the planting plate, and the front and back sides of the outer frame 101 are correspondingly higher than the front and back sides of the perforated plate 100; when the front side of the outer frame 101 is higher than the front side of the perforated plate 100, it is convenient to install the drip irrigation box 5, and the two form a unified whole, which is beautiful and convenient; the back side of the outer frame 101 is higher than the back side of the perforated plate 100, and when the planting plate is hung on the wall, each regular hexagonal through hole 2 will not be blocked by the wall, and the convection and air permeability are good, which is conducive to the growth of the root system and avoids or reduces the mold or rot of the root system.
[0058] In some embodiments, multiple tower sides 300 have the same length and shape, and can form a stable tower or triangular structure with a stable structure. The top and bottom surfaces of each tower side 300 include two symmetrical inclined surfaces 300a, and the inclined surfaces 300a extend from the center line of the tower side 300 toward the inner angle 200 of the regular hexagonal through hole 2; multiple tower sides 300 are V-shaped, and compared with the flat tower sides 300, the V-shaped tower sides 300 can increase the surface area of the tower sides 300, which is conducive to better and more adhesion of water under the action of surface tension, and is also conducive to root climbing; and the V-shape has better mechanical properties, strength and stability.
[0059] In some embodiments, the height of the top 302 of each tower structure 3 is equal to or less than the front height of the outer frame 101, so as to avoid the tower structure 3 from interfering with and affecting the installation of the drip irrigation box 5, so that the drip irrigation box 5 and the planting board can form a unified whole, which is beautiful and compact.
[0060] In some embodiments, reference Figures 13 to 15As shown, it also includes a drip irrigation box 5 that can be detachably installed with the plate body 1. The entire drip irrigation box 5 is integrally injection molded. Water can be added to the drip irrigation box 5 through a tap, and rainwater can also be automatically collected. The drip irrigation box 5 includes an injection-molded box body 500 and a water containing cavity 501 opened in the box body 500. The box body 500 is flat, and the back is a plane, which is convenient for keeping it flat with the wall. It is thin and does not take up too much space. A plurality of drip irrigation holes 502 are opened on the box wall at the lower end of the box body 500. The hole diameter is small, so that the liquid can slowly flow down to the planting board for a long time to provide water or nutrient solution to the root system of the plant; compared with spraying water, drip irrigation using the drip irrigation box 5 can reduce water waste. When spraying, most of the water adheres to the leaves of the plant and is difficult to reach the root system; and the water from the plurality of drip irrigation holes 502 of the drip irrigation box 5 The water flowing out of 502 will flow from top to bottom along the planting board in sequence, which can directly provide water and nutrients for the roots growing on the planting board, and the effect is better; the drip irrigation hole 502 is connected with the water holding chamber 501, and at least one hanging plate 503 is arranged on the back of the upper end of the box body 500, and a card slot 504 for the plate body 1 to be inserted is formed between the hanging plate 503 and the back of the box body 500, and at least one arc-shaped, U-shaped or V-shaped air avoidance groove 505 is arranged on the back of the box body 500, and the air avoidance groove 505 is recessed toward the water holding chamber 501; when in use, the upper end of the planting board is inserted into the card slot 504 and fixed, and the planting board can be passed through the tower hole 301 by a rope, a hook or other fixing part, and then hung on the wall, and the air avoidance groove 505 is to avoid blocking one end of the rope, the hook or other fixing part from passing through, which is more convenient to use.
[0061] In some embodiments, there are two hanging plates 503 and two avoiding grooves 505, which are symmetrically arranged. The two avoiding grooves 505 are located between the two hanging plates 503. This structural arrangement makes the connection more stable and prevents tilting.
[0062] In some embodiments, the hanging plate 503 is L-shaped, the slot 504 is a U-shaped slot, and the width of the slot 504 is smaller than the thickness of the plate body 1. This makes it easier to insert the planting plate and better prevents the plate body 1 from loosening from the slot 504. When the plate body 1 is larger and heavier, a concave-convex structure can be added between the hanging plate 503 and the plate body 1, or screws can be screwed in to further prevent the two from loosening, thereby improving stability.
[0063] In some embodiments, the box body 500 is injection molded, and a flat expansion box 506 is integrally formed at the lower end of the box body 500 for increasing the water storage capacity. The box body 500 and the expansion box 506 are roughly T-shaped, thereby preventing the expansion box 506 from occupying more planting area 4. The width of the expansion box 506 is smaller than the width of the box body 500. The inner cavity of the expansion box 506 is connected to the water storage cavity 501 of the box body 500. The inner bottom surface of the box body 500 extends obliquely toward the expansion box 506. The drip irrigation hole 502 is opened at the lower end of the expansion box 506 to avoid water accumulation and facilitate the water in the box body 500 to flow smoothly into the expansion box 506.
[0064] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification. Although the embodiments of the utility model have been shown and described, ordinary technicians in this field can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and purpose of the utility model. The scope of the utility model is defined by the claims and their equivalents.
Claims
1. An epiphyte planting board capable of temporarily storing water, comprising an injection-molded board body, characterized in that: A plurality of regular hexagonal through holes penetrating the plate body are regularly opened on the plate body, and a hollow tower-shaped structure is injection-molded on each regular hexagonal through hole on the front side of the plate body, and the tower-shaped structure protrudes upward on the top of the regular hexagonal through hole, and the tower-shaped structure includes a plurality of evenly distributed tower edges, and a plurality of tower holes are evenly formed between the plurality of tower edges, and water can adhere to the tower holes and the tower edges under the action of surface tension, and each tower hole is connected with the regular hexagonal through hole, and the lower ends of the plurality of tower edges are fixed corresponding to the plurality of evenly distributed inner angles of the regular hexagonal through hole, and the upper ends of the plurality of tower edges are extended upward and fixed on the center line of the regular hexagonal through hole, and a planting area is formed between adjacent tower-shaped structures, and the planting area is multiple and evenly distributed on the plate body.
2. The epiphyte planting board capable of temporarily storing water as claimed in claim 1, characterized in that: There are three evenly distributed tower sides, and three quadrilateral through holes. The lower ends of the three tower sides are fixed to three evenly distributed inner angles of the regular hexagonal through hole, and the upper ends of the three tower sides are extended upward and fixed on the center line of the regular hexagonal through hole.
3. The epiphyte planting board capable of temporarily storing water as claimed in claim 1, characterized in that: There are six evenly distributed tower sides, and six equilateral triangle holes. The lower ends of the six tower sides are fixed to the six inner angles of the regular hexagonal through hole, and the upper ends of the six tower sides are extended upward and fixed on the center line of the regular hexagonal through hole.
4. The epiphyte planting board capable of temporarily storing water according to any one of claims 1 to 3, characterized in that: The plate body includes a hole plate with a plurality of regular hexagonal through holes and an outer frame integrally formed on the periphery of the hole plate. The thickness of the outer frame is greater than that of the hole plate, and the front and back sides of the outer frame are higher than the front and back sides of the hole plate respectively.
5. The epiphyte planting board capable of temporarily storing water as claimed in claim 4, characterized in that: The lengths and shapes of the multiple tower sides are the same, the multiple tower sides are V-shaped, and the top and bottom surfaces of each tower side include two symmetrical inclined surfaces extending from the center line of the tower side toward the inner angle direction of the regular hexagonal through hole.
6. The epiphyte planting board capable of temporarily storing water as claimed in claim 5, characterized in that: The height of the top of each tower structure is equal to or less than the front height of the outer frame.
7. The epiphyte planting board capable of temporarily storing water according to any one of claims 1 to 3, characterized in that: It also includes a drip irrigation box that can be detachably installed with the plate body, the drip irrigation box includes an injection-molded box body, a water containing cavity opened in the box body, a drip irrigation hole is opened on the box wall at the lower end of the box body, the drip irrigation hole is connected with the water containing cavity, at least one hanging plate is arranged on the back side of the upper end of the box body, a card slot for inserting the plate body is formed between the hanging plate and the back side of the box body, at least one air avoidance groove is arranged on the back side of the box body, and the air avoidance groove is recessed toward the water containing cavity.
8. The epiphyte planting board capable of temporarily storing water as claimed in claim 7, characterized in that: There are two hanging plates and two air avoidance grooves, which are symmetrically arranged, and the two air avoidance grooves are located between the two hanging plates.
9. The epiphyte planting board capable of temporarily storing water as claimed in claim 8, characterized in that: The hanging plate is L-shaped, the card slot is U-shaped, and the width of the card slot is smaller than the thickness of the plate body.
10. The epiphyte planting board capable of temporarily storing water as claimed in claim 9, characterized in that: The box body is injection molded, and an expansion box is integrally formed at the lower end of the box body. The width of the expansion box is smaller than the width of the box body. The inner cavity of the expansion box is connected to the water containing cavity of the box body. The inner bottom surface of the box body extends obliquely toward the expansion box, and the drip irrigation hole is opened at the lower end of the expansion box.
Citation Information
Patent Citations
Environment protecting plant plants board
CN205320682U
Cited By
Epiphytic plant planting plate capable of temporarily storing water
CN118765774A
Epiphyte planting board capable of temporarily storing water
CN118765774B