Tomato planting pot
By designing a tomato planting pot with upper and lower cavities and a climbing frame, the problems of light, ventilation and soil moisture control in home tomato cultivation are solved, promoting the healthy growth of tomatoes.
Patent Information
- Application Number
- CN202520150827.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing tomato growing pots cannot meet the needs of home gardening, especially when there is insufficient light and ventilation, and it is difficult to control soil moisture and root growth environment.
A tomato growing pot was designed, which includes a pot body, a filter plate, and a climbing frame. The pot body is divided into upper and lower cavities. The filter plate allows water to pass through but prevents soil from passing through. The climbing frame is for plants to climb. A water injection device and a water level gauge are combined to control the water supply and observe the water level.
It achieves effective control of soil moisture, improves aeration, ensures that plants receive sufficient light and ventilation, and promotes healthy root growth.
Smart Images

Figure CN223943314U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of plant planting, especially a tomato planting pot. BACKGROUND
[0002] With the development of life, people pay attention to food safety, more and more people like to plant vegetables in the balcony or courtyard, for family consumption, and tomatoes are rich in nutrition, can be eaten raw or cooked, and can be processed into tomato sauce, which is one of the commonly used vegetables, however, at present, tomatoes are mostly planted in open field and greenhouse, for family planting, since tomatoes are light-loving crops, when they grow to a certain height, in order to obtain better light and ventilation conditions, they need to climb upwards constantly, and the soil moisture needs to be controlled while the plant grows to avoid good root development, and the ordinary planting pot cannot meet the planting needs of tomatoes. SUMMARY
[0003] The utility model discloses a tomato planting pot, which solves the technical problem of providing a tomato planting pot for convenient family planting.
[0004] To achieve the above purpose, the solution of the utility model is as follows: a tomato planting pot, comprising a pot body, a water filter plate and a climbing frame.
[0005] The pot body is open at the top, the water filter plate is detachably installed in the pot body, used for bearing soil and separating the pot body into two cavities, i.e., a first cavity and a second cavity, the first cavity is below the second cavity, the first cavity is used for storing water, and the second cavity is used for placing soil, a plurality of through slits are formed on the water filter plate, the slits can allow water to pass through and limit soil from passing through.
[0006] The climbing frame is detachably arranged above the pot body and used for climbing of plants.
[0007] Further, a water injection part is arranged on the pot body, a water injection port is formed at the top end of the water injection part, the water injection port is exposed to the top side of the pot body, a water outlet is formed at the bottom side of the water injection part, the water outlet is communicated with the first cavity, and the water injection part is used for directly injecting water into the first cavity.
[0008] Further, a cover is arranged on the water injection port of the water injection part, the cover is arranged at one side of the water injection port and rotates relative to the water injection port, used for plugging or opening the water injection port, a water injection pipe is connected to the water outlet of the water injection part, a first through hole is formed through the water filter plate, and the bottom end of the water injection pipe passes through the first through hole downward and extends to the first cavity.
[0009] Further, the water level gauge is arranged on the basin body, and is arranged adjacent to the water filling element; the filter plate is provided with a second through hole, and the bottom end of the water level gauge penetrates through the second through hole and extends to the bottom side of the first accommodating cavity, so as to observe the water level state in the first accommodating cavity.
[0010] Further, the water level gauge comprises a water permeable pipe, a water level scale pipe and a floating element; the water level scale pipe is detachably arranged on the top side of the water permeable pipe, is made of transparent material, and is provided with water level scale lines on the outer side; the bottom end of the water permeable pipe penetrates through the second through hole and extends to the bottom side of the first accommodating cavity; a plurality of water permeable holes are circumferentially arranged on the bottom side of the water permeable pipe; and the floating element is floatingly arranged in the water permeable pipe, and the top end of the floating element extends into the water level scale pipe, so that when the water stored in the first accommodating cavity enters the water permeable pipe through the water permeable holes, the floating element floats upward, and the top end of the floating element corresponds to the water level scale lines of the water level scale pipe.
[0011] Further, the climbing frame is composed of horizontal rods and vertical rods; the horizontal rods are multiple in number and extend horizontally; the vertical rods are multiple in number and extend vertically; the vertical rods comprise first vertical rods and second vertical rods;
[0012] The climbing frame is vertically spaced to form multiple layers, each layer is formed by a plurality of horizontal rods, the layers are connected by a plurality of first vertical rods, the climbing frame is fixed on the basin body by the second vertical rods, the second vertical rods are respectively and spaced arranged at different positions on the bottom side of the climbing frame, and the bottom ends of the second vertical rods are fixed on the basin body or are inserted into the soil.
[0013] Further, the inner side wall of the second accommodating cavity of the basin body is provided with longitudinally penetrating guide holes, the number of the guide holes is consistent with the number of the second vertical rods, the guide holes and the second vertical rods are in interference fit, and the bottom ends of the second vertical rods penetrate through the guide holes.
[0014] Further, the climbing frame further comprises a connecting element, at least two first connecting portions are horizontally formed on the connecting element, the two first connecting portions are respectively used for connecting two horizontal rods, and two second connecting portions are longitudinally formed on the connecting element, the two second connecting portions are respectively used for connecting the first vertical rods or the second vertical rods.
[0015] Further, a first reinforcing rib is arranged between the two first connecting portions, and a second reinforcing rib is arranged between the first connecting portion and the second connecting portion.
[0016] Further, the basin body has a square structure, the two first connecting portions of the connecting element are perpendicular to each other, the two horizontal rods connected with the two first connecting portions are perpendicular to each other, and the climbing frame has a square structure.
[0017] The beneficial effects of this utility model after adopting the above solution are as follows: the water filter plate divides the pot into two chambers, namely the first chamber and the second chamber. The first chamber is located below the second chamber. The first chamber is used to store water, and the second chamber is used to hold soil. Several through slits are formed on the water filter plate, which can allow water to pass through while restricting soil passage. The water stored in the first chamber allows the grower to control the soil moisture. At the same time, it can improve the soil permeability and prevent the soil from being soaked in water for a long time, which is conducive to the healthy growth of the root system. In addition, the climbing frame is detachably set on the top of the pot, which makes it convenient for the plant to climb when it grows to a certain stage, so as to obtain air and sunlight, which is beneficial to the plant growth. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0019] Figure 2 This is an exploded structural diagram of the present invention.
[0020] Figure 3 This is an exploded structural diagram of the present invention from another angle.
[0021] Figure 4 This is a top view of the present invention.
[0022] Figure 5 yes Figure 4 A schematic diagram of the AA cross-sectional structure.
[0023] Figure 6 This is a three-dimensional structural diagram of the present invention from another angle.
[0024] Figure 7 yes Figure 6 A magnified view of a portion of the image.
[0025] Figure 8 This is a structural schematic diagram of the connector of this utility model.
[0026] Figure 9 This is a structural schematic diagram of the water injection component of this utility model.
[0027] Figure 10 This is an exploded view of the water level gauge of this utility model.
[0028] Label Explanation:
[0029] 1-pot, 2-filter plate, 3-climbing frame, 4-first cavity, 5-second cavity, 6-water injection, 7-water injection pipe, 8-water level gauge, 9-guide hole, 21-slit, 22-first through hole, 23-second through hole, 31-cross bar, 32-first vertical rod, 33-second vertical rod, 34-connector, 61-water injection port, 62-water outlet, 63-cover, 81-water pipe, 82-water level scale tube, 83-floating element, 84-water hole, 341-first connecting part, 342-second connecting part, 343-first reinforcing rib, 344-second reinforcing rib, 345-mounting hole, 346-limiting part. DETAILED DESCRIPTION
[0030] The utility model will be explained in detail below in combination with the drawings and specific embodiments.
[0031] In the claims, the description and the above drawings of the utility model, unless there is another explicit limitation, for the orientation words, such as using the terms“center”,“transverse”,“longitudinal”,“horizontal”,“vertical”,“top”,“bottom”,“inner”,“outer”,“upper”,“lower”,“front”,“rear”,“left”,“right”,“clockwise”,“counterclockwise” and so on indicate the orientation or position relationship, only for the convenience of narrating the utility model and simplifying the description, and not indicate or imply that the device or element indicated must have a particular orientation or be constructed and operated in a particular orientation, so it also can not be understood as limiting the specific protection scope of the utility model.
[0032] As Figures 1 to 10 Indicated, the utility model provides a kind of tomato planting pot, including pot 1, filter plate 2 and climbing frame 3;Pot 1 top is open, filter plate 2 detachably installed in pot 1, for carrying soil, and pot 1 is divided into two cavities, and first cavity 4 and second cavity 5 are respectively, first cavity 4 is located below second cavity 5, first cavity 4 is used to store water, and second cavity 5 is used to place soil, and a plurality of through slits 21 are formed on filter plate 2, slit 21 can be passed by water, and limit soil to pass, facilitate planter to control soil humidity, avoid soil to soak in water for a long time, simultaneously, it can improve the air permeability of soil;Climbing frame 3 is detachably arranged above pot 1, for the plant climbing.
[0033] Focuses on combining Figure 1 And Figure 5As shown, the basin body 1 is also provided with a water injection part 6, which can be detachably mounted on the basin body 1 by clamping. The water injection part 6 has a water injection port 61 at the top end, which is exposed to the top side of the basin body 1. The bottom side of the water injection part 6 is provided with a water outlet 62, which is connected to the first cavity 4 for directly injecting water into the first cavity 4, avoiding direct watering of the soil, and slowly infiltrating the soil during the rising of the water level in the first cavity 4. Of course, a water absorbing part can also be provided to absorb the water in the first cavity 4 to supplement the water to the soil. Specifically, the water injection part 6 is detachably mounted on the basin body 1 by clamping. Figure 3 and 9 As shown, the movable cover of the water injection port 61 of the water injection part 6 is provided with a cover 63, which is arranged on one side of the water injection port 61 and rotates relative to the water injection port 61 to block or open the water injection port 61. The water outlet 62 of the water injection part 6 is connected to a water injection pipe 7. The water filter plate 2 has a first through hole 22 formed therethrough. The bottom end of the water injection pipe 7 passes through the first through hole 22 downward and extends to the first cavity 4. Specifically, the bottom side of the water injection pipe 7 is a slope structure, which facilitates the downward passing through the first through hole 22.
[0034] Preferably, the basin body 1 is provided with a water level gauge 8 adjacent to the water injection part 6. The water level gauge 8 can be detachably mounted on the basin body 1 by clamping. The water filter plate 2 is provided with a second through hole 23. The bottom end of the water level gauge 8 passes through the second through hole 23 downward and extends to the bottom side of the first cavity 4, so as to observe the water level in the first cavity 4, facilitating the grower to control the water level in the first cavity 4, convenient to use and easy to observe. Specifically, the water level gauge 8 is detachably mounted on the basin body 1 by clamping. Figure 10 As shown, the water level gauge 8 comprises a water permeable pipe 81, a water level scale pipe 82 and a floating part 83. The water level scale pipe 82 is detachably arranged on the top side of the water permeable pipe 81 and is made of transparent material. The outer side is provided with water level scale lines. The bottom end of the water permeable pipe 81 passes through the second through hole 23 downward and extends to the bottom side of the first cavity 4. The bottom side of the water permeable pipe 81 is circumferentially provided with a plurality of water permeable holes 84. Water can pass through the water permeable holes 84 freely. The water level in the water permeable pipe 81 is consistent with the water level in the first cavity 4. The floating part 83 is floatingly arranged in the water permeable pipe 81. The top end extends into the water level scale pipe 82. Specifically, the bottom of the water permeable pipe 81 is a detachable base. The water permeable holes 84 are formed on the base. The water permeable holes 84 extend to the bottom side of the base. When the water permeable pipe 81 is mounted on the basin body 1, the base of the water permeable pipe 84 is close to the bottom surface of the first cavity 4. At the same time, by detaching the base, it is also convenient to put the floating part 83 into the water permeable pipe 81, so that the water stored in the first cavity 4 enters the water permeable pipe 81 through the water permeable holes 84. The floating part 83 floats upward, so that the top end corresponds to the water level scale lines of the water level scale pipe 82, facilitating the grower to obtain the water storage condition in the first cavity 4.
[0035] Specifically, the water injection part 6 is detachably mounted on the basin body 1 by clamping. Figure 2 and Figure 3As shown, the climbing frame 3 is composed of a plurality of horizontal rods 31 extending horizontally and a plurality of longitudinal rods, including first longitudinal rods 32 and second longitudinal rods 33. Specifically, the climbing frame 3 is longitudinally spaced apart to form multiple layers, each layer is formed by a plurality of horizontal rods 31, and the layers are connected by a plurality of first longitudinal rods 32. The climbing frame 3 is fixed to the basin body 1 by the second longitudinal rods 33, which are spaced apart at the bottom side of the climbing frame 3. The bottom end of the second longitudinal rods 33 is fixed to the basin body 1 or inserted into the soil. Specifically, the climbing frame 3 has a square structure, and the number of second longitudinal rods 33 is four, which are located at the four corners of the climbing frame 3. The four second longitudinal rods 33 are inserted into the soil at the same time, which makes the climbing frame 3 more stable. Of course, in other embodiments, the climbing frame 3 can also have a pentagonal or hexagonal structure, and the number of second longitudinal rods 33 can be five or six, which is not limited in particular and can be designed according to specific conditions by those skilled in the art.
[0036] In order to make the connection between the second longitudinal rods 33 and the basin body 1 more stable, a plurality of guide holes 9 are formed on the inner wall of the second cavity 5 of the basin body 1. The number of guide holes 9 is consistent with the number of second longitudinal rods 33. The guide holes 9 and the second longitudinal rods 33 are in interference fit. The bottom end of the second longitudinal rods 33 passes through the guide holes 9 downward. During use, the second longitudinal rods 33 can pass through the guide holes 9 downward and be inserted into the soil by rotating the second longitudinal rods 33. This makes the connection between the climbing frame 3 and the basin body 1 more stable and the structure more reliable.
[0037] In order to facilitate the connection between the horizontal rods 31 and the longitudinal rods, the climbing frame 3 further comprises a connecting piece 34 for connecting the horizontal rods 31, the first longitudinal rods 32 and the second longitudinal rods 33. Figure 7 and Figure 8 As shown, at least two first connecting parts 341 are formed on the connecting piece 34 and extend horizontally. The two first connecting parts 341 correspond to two horizontal rods 31 respectively. Two second connecting parts 342 are also formed on the connecting piece 34 and extend longitudinally. The two second connecting parts 342 are used to connect the first longitudinal rods 32 or the second longitudinal rods 33 respectively. Specifically, the first connecting parts 341 and the second connecting parts 342 are provided with mounting holes 345 for inserting the horizontal rods 31 or the longitudinal rods. Limiting parts 346 are arranged in the mounting holes 345 to facilitate positioning and installation after the horizontal rods 31 or the longitudinal rods are inserted into the mounting holes 345.
[0038] In order to improve the strength of the connecting piece 34, a first reinforcing rib 343 is arranged between the two first connecting parts 341, and a second reinforcing rib 344 is arranged between the first connecting part 341 and the second connecting part 342.
[0039] The pot body 1 is in a square structure, two first connecting portions 341 of the connecting piece 34 are perpendicular to each other, two horizontal rods 31 connected with the two first connecting portions 341 are perpendicular to each other, and the climbing frame 3 is in a square structure, which can be a square or a rectangle. Of course, in other embodiments, the two first connecting portions 341 of the connecting piece 34 can also be an obtuse angle, so that the horizontal rods 31 of each layer are enclosed to form a polygonal structure, such as a pentagonal, hexagonal or other polygonal structure, and the specific limitation is not limited. Correspondingly, the pot body 1 can adopt a polygonal structure consistent with the shape of the climbing frame 3.
[0040] The above is only the preferred embodiment of the present application, and is not a limitation on the design of the present application. Any equivalent changes made according to the key design of the present application fall within the scope of protection of the present application.
Claims
1. A tomato growing pot, characterized by: It comprises a basin (1), a filter plate (2) and a climbing frame (3); The basin (1) is open at the top, the filter plate (2) is detachably installed in the basin (1) and used for bearing soil and separating the basin (1) into two cavities, i.e. a first cavity (4) and a second cavity (5), the first cavity (4) is below the second cavity (5), the first cavity (4) is used for storing water, and the second cavity (5) is used for placing soil, a plurality of through slits (21) are formed on the filter plate (2), the slits (21) can allow water to pass through and limit soil from passing through; The climbing frame (3) is detachably arranged above the basin (1) and used for allowing plants to climb; The basin (1) is further provided with a water injection part (6), a water injection opening (61) is formed at the top of the water injection part (6), the water injection opening (61) is exposed to the top side of the basin (1), a water outlet (62) is formed at the bottom side of the water injection part (6), the water outlet (62) is communicated to the first cavity (4) and used for directly injecting water into the first cavity (4); A water level gauge (8) is arranged on the basin (1) and adjacent to the water injection part (6), a second through hole (23) is arranged on the filter plate (2), the bottom end of the water level gauge (8) passes through the second through hole (23) downwardly and extends to the bottom side of the first cavity (4) for observing the water level state in the first cavity (4).
2. The tomato planting pot according to claim 1, characterized by: A cover (63) is arranged on the water injection opening (61) of the water injection part (6), the cover (63) is arranged on one side of the water injection opening (61) and rotates relative to the water injection opening (61) for closing or opening the water injection opening (61), the water outlet (62) of the water injection part (6) is connected with a water injection pipe (7), a first through hole (22) is formed through the filter plate (2), the bottom end of the water injection pipe (7) passes through the first through hole (22) downwardly and extends to the first cavity (4).
3. The tomato growing pot according to claim 1, characterized in that: The water level gauge (8) comprises a water permeable pipe (81), a water level scale pipe (82) and a floating part (83), the water level scale pipe (82) is detachably arranged at the top side of the water permeable pipe (81) and made of transparent material, a water level scale line is arranged on the outer side of the water level scale pipe (82), the bottom end of the water permeable pipe (81) passes through the second through hole (23) downwardly and extends to the bottom side of the first cavity (4), a plurality of water permeable holes (84) are circumferentially arranged at the bottom side of the water permeable pipe (81), the floating part (83) is floatingly arranged in the water permeable pipe (81) and extends to the water level scale pipe (82) at the top end, so that the water stored in the first cavity (4) enters the water permeable pipe (81) through the water permeable holes (84) and makes the floating part (83) float upwardly, the top end of the floating part (83) corresponds to the water level scale line of the water level scale pipe (82).
4. The tomato growing pot according to claim 1, characterized in that: The climbing frame (3) is composed of a horizontal rod (31) and a vertical rod, the horizontal rod (31) has a plurality of horizontal rods and extends horizontally, the vertical rod has a plurality of vertical rods and extends vertically, the vertical rod comprises a first vertical rod (32) and a second vertical rod (33). The climbing frame (3) is longitudinally spaced apart with multiple layers, each layer is formed by multiple horizontal rods (31), multiple first longitudinal rods (32) are connected between each layer, the climbing frame (3) is fixed on the basin body (1) through second longitudinal rods (33), multiple second longitudinal rods (33) are respectively and spaced apart arranged at each place of the bottom side of the climbing frame (3), the bottom end of the second longitudinal rod (33) is fixed on the basin body (1), or is inserted into the soil downward.
5. The tomato growing pot according to claim 4, characterized in that: The inner side wall of the second cavity (5) of the basin body (1) is provided with a longitudinal through guide hole (9), the number of the guide hole (9) is consistent with the number of the second longitudinal rod (33), the guide hole (9) and the second longitudinal rod (33) are in interference fit, and the bottom end of the second longitudinal rod (33) passes downward through the guide hole (9).
6. The tomato growing pot according to claim 4, characterized in that: The climbing frame (3) further comprises a connecting piece (34), at least two first connecting parts (341) are horizontally extended on the connecting piece (34), the two first connecting parts (341) are respectively used for connecting two horizontal rods (31), and two second connecting parts (342) are longitudinally extended on the connecting piece (34), the two second connecting parts (342) are respectively used for connecting the first longitudinal rod (32) or the second longitudinal rod (33).
7. The tomato growing pot according to claim 6, characterized in that: The two first connecting parts (341) are provided with a first reinforcing rib (343), and the first connecting part (341) and the second connecting part (342) are provided with a second reinforcing rib (344).
8. The tomato growing pot according to claim 6, characterized in that: The basin body (1) is of a square structure, the two first connecting parts (341) of the connecting piece are perpendicular to each other, so that the two horizontal rods (31) connected with the two first connecting parts (341) are perpendicular to each other, and the climbing frame (3) is of a square structure.