A device capable of automatically replenishing water and a potted plant container
A potted container and water supply technology, which is applied to automatic watering devices, container cultivation, gardening, etc., can solve the problems of inability to automatically replenish water for a long time, and achieve long-term effective water replenishment, water saving, and convenient water injection.
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Embodiment 1
[0032] figure 1 , figure 2 It is a potting container with an automatic water supply device of the present invention, which includes a pot body 1, and a water-permeable partition 2 horizontally arranged in the pot body 1, and the water-permeable partition divides the pot body 1 into the upper part. The planting area 4 and the water storage area 5 at the lower part also include at least one water replenishing member 3 pierced through the permeable partition 2, and a plurality of the water replenishing members 3 can be set according to the degree of water preference of the plants to be planted. In this embodiment In the example, five water replenishing parts 3 are set, four of which are arranged around planting plants, and one is arranged in the middle of the pot body 1; the two ends of the water replenishing parts 3 are respectively arranged in the planting area 4 and the water storage area 5 The bottom of the water replenishment part 3 is in contact with the bottom wall of th...
Embodiment 2
[0053] The structure of the potted container in this embodiment is basically the same as that in Embodiment 1, and its difference is:
[0054] Such as image 3 As shown, the pot body 1 of this embodiment is an ordinary ceramic potting container, which is provided with vent holes 6 on the side wall. The water replenishing member 3 is a stepped shaft with thin ends and a thick middle, and the permeable partition 2 is placed on the shoulder of the water replenishing member 3 .
[0055] The aggregate of the water supply component 3 is a mixture of slag and ceramsite in a weight ratio of 3:1, the particle size of the slag is 1-5 mm, and the particle size of the ceramsite is 0.1-0.85 mm.
[0056] The water replenishment part 3 is made by the following method:
[0057] a. Mix the above-mentioned aggregate particles with the hydroxyl-containing acrylic resin in a weight ratio of 12:1, then pour into a mixer and stir evenly;
[0058] b. Pour the aggregate particles bonded with the...
Embodiment 3
[0066] The structure of the potting container in this embodiment is basically the same as that in Embodiment 1, and the difference is that: the water replenishing member 3 is a rod with a thin top and a thick bottom, and the permeable partition 2 is clamped on the water replenishing member 3 . Such as Figure 4 shown. In this embodiment, the silica sand particles of the pot body 1 are coated with a hydrophobic substance, the hydrophobic substance is a hydrophobic resin film coated on the silica sand particles, and the hydrophobic resin film is hydrophobic Reactive phenolic resin, the particle size of the silica sand is 0.075-0.3 mm. The hydrophobic phenolic resin is 1wt% of the aggregate particles. The hydrophobic phenolic resin is prepared by copolymerizing maleic anhydride and sodium vinyl sulfonate.
[0067] The method that described phenolic resin is coated on described silica sand particle is:
[0068] 1) Heat the phenolic resin to a molten state;
[0069] 2) When he...
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