Flowerpot for planting hippeastrum hippeastrum

By using gravity-sensing base and wet-dry indication area of ​​the matrix in the red-skin planting flower pot, combined with the sealed design of the outer cover, the problem that ordinary flower pots cannot provide winter low-temperature protection and matrix moisture status judgment is solved, and effective winter protection and water-break management of red-skin planting balls are achieved.

CN222982078UActive Publication Date: 2025-06-17XIAN FENGDONG AGRICULTURAL DEVELOPMENT GROUP CO LTD
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Patent Information

Application Number
CN202421846438.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-06-17
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

Existing ordinary flower pots cannot provide low temperature protection in winter and judge the dry and wet state of the substrate, resulting in the red-topped red balls being prone to frostbite and incomplete water breakage in winter.

Method used

A red-topped red planting flower pot is designed, using a gravity-sensing base and a wet-dry indication area of ​​the matrix. Through the cooperation of the gravity-sensing base and the outer cover, the moisture state of the matrix and winter protection are achieved.

Benefits of technology

Effectively guide the red potted plants to cut off water before sleeping in winter, ensure that the planting balls are not frostbite, and provide low temperature protection in winter, improving the success rate of planting and the convenience of planters.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hippeastrum hippeastrum planting flowerpot, which relates to the technical field of flower planting and comprises an inner pot body, a gravity sensing base, an outer pot body and an outer cover, and the inner pot body is sleeved inside the outer pot body. The gravity sensing base is buckled with the groove at the bottom of the outer pot body, the inner pot body is used for planting hippeastrum striatum bulbs, the bottom of the inner pot body is arranged on the gravity sensing base at the bottom of the outer pot body, and the outer cover is arranged at the top or the bottom of the outer pot body in a sleeving mode. The placing table of the gravity sensing base floats up and down when the dry-wet change of the matrix in the pot body is synchronous with the weight change, the placing table displays the dry-wet state of the matrix at the corresponding position of the matrix dry-wet indicating area, and water cut-off before hippeastrum hippeastrum is effectively guided. In the winter dormancy period of hippeastrum rutilum, the outer cover covers the upper portion of the outer pot body and is closed, seed balls can be effectively prevented from being frostbitten at the low temperature in winter, and logistics transportation is facilitated. In the growth period of hippeastrum rutilum, the outer cover is arranged at the bottom of the outer pot body and used for storing leaked flowing water, and dual purposes are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of flower planting, in particular to a planting flowerpot for Hippeastrum rutilum. Background Technique

[0002] Hippeastrum rutilum is not cold-resistant, and the temperature during the winter dormancy period shall not be lower than 5°C. If it is not properly maintained during the low-temperature period, the bulbs are extremely easy to be frostbitten. Most of the flowerpots on the market are ordinary flowerpots, and there is no special flowerpot for Hippeastrum rutilum. When the existing flowerpots are in use, there are the following defects: When planting Hippeastrum rutilum, 2 / 3 of the upper part of the bulb needs to be exposed above the cultivation substrate, resulting in the bulbs being easily frostbitten in winter at low temperatures. Ordinary flowerpots can only provide the planting function and cannot provide protection during the winter dormancy period. The grower needs to wrap the bulbs with materials such as plastic sheets by himself, and the airtight effect is poor and the heat preservation effect is not good. Before Hippeastrum rutilum enters winter, it needs to cut off water and go dormant. Ordinary flowerpots cannot judge the moisture condition of the substrate, and it is easy to cause the bulbs of Hippeastrum rutilum to be frostbitten and rot due to incomplete water cut-off. Content of the Utility Model

[0003] The purpose of the utility model is to provide a planting flowerpot for Hippeastrum rutilum to solve the problems mentioned in the above background technique that ordinary flowerpots have no protection against low temperature in winter and cannot judge the dryness and wetness of the substrate moisture.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A planting flowerpot for Hippeastrum rutilum, including an external flowerpot body, a gravity induction base, an internal flowerpot body, and an outer cover. The external flowerpot body is sleeved outside the internal flowerpot body. The external flowerpot body includes a flowerpot body, a substrate dry-wet indication area, a second drain hole, and a groove. The gravity induction base is buckled with the groove at the bottom of the external flowerpot body. The internal flowerpot body is used for planting Hippeastrum rutilum bulbs, and its bottom is placed on the gravity induction base at the bottom of the external flowerpot body. The outer cover is sleeved on the top or bottom of the external flowerpot body. Through the mutual cooperation of the gravity induction base and the substrate dry-wet indication area of the external flowerpot body, the utility model can display the dryness and wetness of the substrate moisture of the Hippeastrum rutilum potted plant, and effectively guide the water cut-off before the winter dormancy of the Hippeastrum rutilum potted plant. In winter, the outer cover is sleeved on the top of the external flowerpot body, and the external flowerpot body and the internal thread on the outer cover are meshed with each other to achieve effective protection in winter.

[0005] Preferably, the gravity induction base includes a placement table, a lifting rod, and a spring. The placement table is on the upper part of the lifting rod, and the outer periphery of the lifting rod is sleeved with a spring. The lifting rod is located between the placement table and the groove at the bottom of the external flowerpot body.

[0006] Preferably, when the weight of the internal flowerpot body on the placement table changes, the placement table contracts up and down, and the placement table shows the dryness and wetness of the substrate at the corresponding position of the substrate dry-wet scale line.

[0007] Preferably, the upper part of the outer wall of the external flowerpot body has an external thread, and the lower part of the inner wall of the outer cover has an internal thread. The external thread of the external flowerpot body and the internal thread on the outer cover can be meshed with each other.

[0008] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0009] Through the weight change caused by the dry and wet change of the cultivation substrate moisture in the internal basin, the gravity sensing base floats up and down. When the placement table rises to the position of the "dry" mark on the substrate dry-wet scale line, it indicates that the dry state of the substrate required for the bulb dormancy has been reached. When the placement table reaches the positions of the "wet" and "medium" marks on the substrate dry-wet scale line, it means that the substrate humidity is too high and the humidity needs to be reduced to meet the dormancy requirements. It is easy for inexperienced growers to master and the operation is simple.

[0010] In winter when it is cold, cover the outer cover on the external basin and engage the threads to seal it. The outer cover and the external basin are hermetically sealed to form a winter protection cover for the bulbs to prevent the bulbs from being frostbitten. Ordinary flowerpots only have the planting function. Simple pot containers and plastic cloth covers have poor airtight effects and are easily blown away by strong winds outdoors. The present utility model has a long service life and can be reused. Growers no longer need to find materials to cover and wrap the bulbs. After the outer cover of the Hippeastrum potted plant is covered on the external basin and sealed, it is also beneficial for logistics and express transportation. Description of the Drawings

[0011] Figure 1 It is a schematic structural diagram of the Hippeastrum planting period of the present utility model, Figure 2 It is a schematic structural diagram of the Hippeastrum dormancy period of the present utility model Detailed Embodiment

[0012] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0013] Please refer to Figure 1-2 , a Hippeastrum planting flowerpot, including an internal basin 1, a gravity sensing base 2, an external basin 3, and an outer cover 4. The gravity sensing base 2 is at the bottom of the external basin 3. The external basin 3 is sleeved outside the internal basin 2. The external basin 3 includes a housing 31. The internal basin 1 is sleeved inside the housing 31. There is a groove 32 at the bottom of the housing 31. The gravity sensing base 2 is stuck in the groove 32. The internal basin 1 is placed on the placement table 21 on the upper part of the gravity sensing base 2. There is a substrate dry-wet indication area 33 on the side of the housing 31. The outer cover 4 is sleeved on the top or bottom of the external basin 3.

[0014] The internal basin 1 is used for planting Hippeastrum bulbs and has a first drain hole 11 at the bottom for draining excess water in the basin.

[0015] The gravity induction base 2 includes a placement table 21, a lifting rod 22, and a spring 23. The placement table 21 is on the upper part of the lifting rod 22. A spring 23 is sleeved around the periphery of the lifting rod 22. The lifting rod 22 is located between the placement table 21 and the groove 32 at the bottom of the external basin body 3. The internal basin body 1 generates a downward gravity due to the change in weight, causing the lifting rod 22 and the spring 23 to float up and down, resulting in the placement table 21 showing at the "dry", "medium", and "wet" positions in the substrate dry-wet indicator area 33. It indicates that the moisture state of the substrate is "dry", "medium", and "wet" correspondingly.

[0016] There is an external thread 35 on the upper part of the outer wall of the external basin body 3, and an internal thread 41 on the lower part of the inner wall of the outer cover 4. The external thread 35 of the external basin body 3 can be meshed with the internal thread 41 on the outer cover 4. Through the mutual cooperation of the external basin body 3 and the outer cover 4, winter protection can be achieved after being sealed. The external basin body 3 has a second drain hole 34 at its bottom to drain excess moisture.

[0017] When the present utility model is in use, during the growth period of Hippeastrum, the outer cover 4 is placed at the bottom of the external basin body 3 to store the accumulated water seeping out from the second drain hole 34 at the bottom of the basin. In the early stage of dormancy of Hippeastrum in winter, cut off the above-ground leaves. When the moisture of the cultivation substrate in the internal basin body 1 reaches completely dry, the weight of the internal basin body 1 becomes lighter, and the placement table 21 rises. The placement table 21 rises from "wet" or "medium" to the "dry" position in the substrate dry-wet indicator area 33, indicating that the cultivation substrate has met the dry requirement. The outer cover 4 can be covered above the external basin body 3, and the threads on the external basin body 3 and the outer cover 4 are meshed and sealed to form winter low-temperature protection. When the Hippeastrum potted plant needs to be transported by express or logistics, fill materials such as plastic foam around the bulb, cover the outer cover and close it, and then directly transport it by logistics and express after packaging.

[0018] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A flowerpot for planting amaryllis, characterized in that include: An inner basin body (1) having a first drainage hole (11) at the bottom; A gravity sensing base (2), the gravity sensing base (2) comprising a placement platform (21), a lifting rod (22), and a spring (23), wherein the gravity sensing base (2) is located at the bottom of the external basin (3); An external basin body (3), wherein the external basin body (3) is sleeved on the outside of the internal basin body (1), the external basin body (3) comprises an outer shell (31), the internal basin body (1) is sleeved inside the outer shell (31), the bottom of the outer shell (31) has a groove (32), the gravity sensing base (2) is stuck in the groove (32), the internal basin body (1) is placed on the upper placement table (21) of the gravity sensing base (2), the upper inner side surface of the outer shell (31) contains a substrate dryness and wetness indication area (33), the bottom of the outer shell (31) has a second drainage hole (34), and the upper outer edge of the outer shell (31) has an external thread (35); An outer cover (4) is sleeved on the top of the outer basin body (3) or placed on the bottom of the outer basin body (3), and an inner thread (41) is provided on the inner edge of the lower part of the outer cover (4).

2. The amaryllis planting flowerpot according to claim 1, characterized in that The gravity sensing base (2) comprises a placing platform (21), a lifting rod (22), and a spring (23). The lifting rod (22) is sheathed with the spring (23) on its periphery. The lifting rod (22) is located under the placing platform (21) and is stuck in a groove (32). When the weight of the internal basin body (1) on the placing platform (21) changes, the lifting rod (22) can be retracted up and down.

3. The amaryllis planting flowerpot according to claim 2, characterized in that When the wetness and dryness of the substrate in the basin body (1) inside the placement platform (21) change synchronously with the weight change, the placement platform (21) contracts up and down, and the placement platform (21) displays the wetness and dryness of the substrate at the corresponding "dry", "medium" and "wet" positions of the substrate wetness and dryness indication area (33).

4. The amaryllis planting flowerpot according to claim 3, characterized in that The external pot body (3) is sleeved on the outside of the internal pot body (1), the upper part of the outer wall of the external pot body (3) is provided with an external thread (35), and the lower part of the inner wall of the external cover (4) is provided with an internal thread (41). When the amaryllis is in a dormant period in winter at low temperatures, the external cover (4) is covered on the external pot body (3), and the external thread (35) of the external pot body (3) and the internal thread (41) on the external cover (4) can mesh with each other, and after being sealed, a heat preservation and protection effect is achieved.