CN201563431U - Loose-leaf type self-suction flowerpot without watering - Google Patents

Loose-leaf type self-suction flowerpot without watering Download PDF

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Publication number
CN201563431U
CN201563431U CN2009203188290U CN200920318829U CN201563431U CN 201563431 U CN201563431 U CN 201563431U CN 2009203188290 U CN2009203188290 U CN 2009203188290U CN 200920318829 U CN200920318829 U CN 200920318829U CN 201563431 U CN201563431 U CN 201563431U
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CN
China
Prior art keywords
water
dividing plate
baffle
exempts
flowerpot
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Expired - Fee Related
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CN2009203188290U
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Chinese (zh)
Inventor
罗晓俊
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Individual
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Individual
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Priority to CN2009203188290U priority Critical patent/CN201563431U/en
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Publication of CN201563431U publication Critical patent/CN201563431U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a loose-leaf type self-suction flowerpot without watering, which includes a basin body, and the basin body is separated into top and bottom cavities by baffle, and the lower cavity is a water storage cavity, and the upper cavity is a culture medium granule cavity, and the middle of the baffle is equipped with through-holes, and a water absorption piece is placed on the baffle, and the water absorption piece crosses the through-hole and extends into the lower cavity, and the baffle and the pot body are flexibly connected, and the baffle is in a truncated cone shape, and the upper surface of the baffle is equipped with radial guide grooves, and the zone outside the baffle guide groove are arranged with micropores. The baffle and the pot body use a flexible connection, and production, assembling, transportation and usage are simple and convenient, and the baffle structure can adequately distribute the water absorbed to the surroundings with increased breathing property. Simultaneously, the utility model uses a lower cavity water injection hole to compensate water and supply nutritive matter, thereby avoiding water pollution caused by culture medium granules.

Description

Trap formula self-priming exempts to water flowerpot
Technical field
The utility model relates to the flowerpot that is used for plant cultivation, relates in particular to a kind of trap formula self-priming and exempts to water flowerpot.
Background technology
At present, people cultivate flower plant in order to solve common flowerpot, the problem that need often water is used a kind of flower-pot without watering, and this flowerpot comprises basin body, described basin body is divided into two chambeies up and down by dividing plate, cavity of resorption is a water storage cavity, and epicoele is provided with through hole for cultivating the basal granule chamber in the middle of the dividing plate, absorbent member is passed through hole, and the water in the cavity of resorption is sucked in the epicoele soil.But this flowerpot dividing plate is fixedly connected on the basin body, and several flowerpots can't be stacked during shipment, and it is big to take up room, and transportation is inconvenient; And dividing plate is dull and stereotyped, and the water distribution that drinks up is even inadequately; Have only a through hole on the dividing plate simultaneously, be unfavorable for that the steam and the fresh air of cavity of resorption evaporation enters epicoele; Absorbent member is placed on the dividing plate and directly contacts with soil in addition, is clung by soil easily, thereby its water imbibition is reduced greatly.Above-mentioned defective makes the both inconvenient production and transport of this flowerpot, and the effect of Absorb Water is poor again.
The utility model content
At existing above problem of exempting to water the flowerpot existence, technical problem to be solved in the utility model has provided a kind of flowerpot that makes things convenient for the production and assembly transportation.
The technical scheme that its technical problem that solves the utility model adopts is: trap formula self-priming exempts to water flowerpot, comprise basin body, described basin body is divided into two chambeies up and down by dividing plate, cavity of resorption is a water storage cavity, epicoele is provided with through hole for cultivating the basal granule chamber in the middle of the dividing plate, places absorbent member on the dividing plate, absorbent member is passed through hole and is goed deep in the cavity of resorption, and described dividing plate and basin body flexibly connect.
Preferably, described dividing plate periphery is provided with fixture block, and described basin body inwall is provided with concave station, and described fixture block shape and concave station shape are adaptive, and described fixture block snaps in the above-mentioned concave station during assembling.
Preferably, be covered with micropore on the described dividing plate.
Preferably, described dividing plate is a circular cone shape, and described dividing plate upper surface is provided with the radial guide groove, is positioned in the described guide channel behind the through hole of described absorbent member by dividing plate.
Preferably, described water storage cavity sidewall is provided with water injection hole, and described water injection hole below is provided with water gauge.Described water injection hole and water level are counted 23, are uniformly distributed along the circumference.
Further, described fixture block and concave station are 6, are uniformly distributed along the circumference.
Further, described guide channel is a semi-circular groove, groove width 20-30mm; Described guide channel is 6, is distributed on the circumference, and dividing plate is divided into 6 zones, is divided into 6 strands behind the through hole of described absorbent member by dividing plate, is positioned in the described guide channel.
Further again, 6 zones that are guided on the described dividing plate after groove is separated are covered with micropore, described micropore size 2-3mm, pitch-row 20-30mm.
As another kind of improvement the of the present utility model, place pervious bed on the described dividing plate, above-mentioned pervious bed adopts the porous material to make.
Further, described pervious bed is the hard foam granulosa.
The beneficial effects of the utility model are: dividing plate and basin body adopt and flexibly connect, and dividing plate can be taken out during transportation, and a plurality of basin bodies are stacked, and make production and transport very convenient.Offer a plurality of micropores on the dividing plate, make steam that evaporates in the water storage cavity and the fresh air that penetrates from water injection hole can enter epicoele, thereby keep soil moisture, supply plant root fresh air; Dividing plate is a circular cone shape, reaches the dividing plate upper surface radial guide groove is set, and the water that helps drinking up evenly distributes towards periphery.The water storage cavity sidewall is provided with water injection hole, adopts cavity of resorption water injection hole moisturizing and extra-nutrition material, has avoided cultivating the pollution of basal granule to water body.The water injection hole below is provided with water gauge, makes things convenient for water level to show, makes people's water filling in water-injecting cavity easily in time; Water injection hole and water gauge are established 2-3, are convenient for people to observe from different directions water filling.Place pervious bed on the dividing plate, absorbent member is not directly contacted with soil, prevent that absorbent material from being sticked by soil, avoid its water imbibition to reduce; Pervious bed is the hard foam granulosa, its good water permeability, and the moisture that helps absorbent member penetrates in the soil; Simultaneously hard foam granulosa itself can also keep moisture, can avoid that the moisture in the basin body distributes fast under dry hot environment.
Description of drawings
Fig. 1 is a cutaway view of the present utility model.
Fig. 2 is the vertical view of dividing plate
Among the figure: 1 is basin body, and 2 is concave station, and 3 is dividing plate, and 4 is absorbent member, and 5 is pervious bed, and 6 is water injection hole, and 7 is guide channel, and 8 is through hole, and 9 is micropore, and 10 is fixture block, and 11 is water gauge.
Embodiment
Shown in Fig. 1,2, trap formula self-priming exempts to water flowerpot, comprise basin body 1, described basin body 1 is divided into two chambeies up and down by dividing plate 3, and cavity of resorption is a water storage cavity, and epicoele is for cultivating the basal granule chamber, be provided with through hole 8 in the middle of the dividing plate 3, place absorbent member 4 on the dividing plate 3, absorbent member 4 is passed through hole 8 and is goed deep in the cavity of resorption, and described dividing plate 3 flexibly connects with basin body 1.Dividing plate 3 adopts with basin body 1 and flexibly connects, and dividing plate 3 can be taken out during transportation, and a plurality of basin bodies 1 are stacked, and make production and transport very convenient.
Described dividing plate 3 installation sites are good between the place, 1/4 place to 1/3 of basin body sidewall height.Dividing plate 3 installation sites are too high to be unfavorable for that then the water in the water storage cavity enters cultivation basal granule chamber; Dividing plate 3 installation sites are low excessively, and then moisture storage capacity is too little in the water storage cavity, and the artificial recharge frequency is increased, and can not embody the advantage of flower-pot without watering.So in this scope, water storage cavity is classified the best as with the volume ratio of cultivating the basal granule chamber, can reach best exempting from and water the foster effect of planting.According to the difference of basin body 1 size, the utility model exempt from the time of watering can reach 7 to 30 surplus day.
Described dividing plate 3 peripheries are provided with 6 fixture blocks 10, along the equal portion of circumference; Described basin body 1 inwall is provided with 6 concave stations 2, along the equal portion of circumference.Described fixture block 10 shapes and concave station 2 shapes are adaptive, and described fixture block 10 snaps in the above-mentioned concave station 2 during assembling.This kind syndeton, simple in structure, easy to loading and unloading.
Described absorbent member 4 adopts capillary imbibition bar, and described capillary imbibition strip adoption is soft can be crooked, not perishable, and the atomic software inorganic material in capillary aperture is made, and its water imbibition is strong, and Absorb Water is effective.
Described dividing plate 3 is a circular cone shape, and described dividing plate 3 upper surfaces are provided with radial guide groove 7, and the water that helps drinking up evenly distributes towards periphery.
Described guide channel 7 is a semi-circular groove, groove width 20-30mm; Described guide channel 7 is 6, and all portion is divided into 6 zones with dividing plate 3 on circumference, is divided into 6 strands behind the through hole 8 of described absorbent member 4 by dividing plate 3, is positioned in the described guide channel 7.This kind structure makes the water distribution that drinks up more even.
6 zones that are guided on the described dividing plate 3 after groove 7 is separated are covered with micropore 9, described micropore 9 aperture 2-3mm, pitch-row 20-30mm.This structure makes steam that evaporates in the water storage cavity and the fresh air that penetrates from water injection hole can enter epicoele, thereby keeps soil moisture, supply plant root fresh air.
Described water storage cavity sidewall is provided with 3 water injection holes 6, is uniformly distributed along the circumference, and adopts cavity of resorption water injection hole moisturizing and extra-nutrition material, has avoided cultivating the pollution of basal granule to water body; Water injection hole 6 is a through hole, and water injection hole 6 belows are equipped with water gauge 11, at ordinary times can be stifled with ventilative plug, stopper etc. on, cross when low when people see water level that water gauge shows, corkage is by water injection hole 6 water filling in water storage cavity.If chamber wall is a transparent material, then water level display structure can be exempted from.
Place pervious bed 5 on the described dividing plate 3, above-mentioned pervious bed 5 adopts the porous material to make.Adopt this structure, absorbent member 4 is not directly contacted with soil, prevent that absorbent member 4 from being sticked by soil, avoided its water imbibition to reduce.
Described pervious bed 5 can be bed of cloth, woollen layer or hard foam granulosa etc., preferred hard foam granulosa, and its good water permeability, the moisture that helps absorbent member 4 penetrates in the soil; Simultaneously hard foam granulosa itself can also keep moisture, can avoid that the moisture in the basin body distributes fast under dry hot environment.

Claims (10)

1. trap formula self-priming exempts to water flowerpot, comprise basin body (1), described basin body (1) is divided into two chambeies up and down by dividing plate (3), cavity of resorption is a water storage cavity, epicoele is provided with through hole (8) for cultivating the basal granule chamber in the middle of the dividing plate (3), dividing plate (3) is gone up and placed absorbent member (4), absorbent member (4) is passed through hole (8) and stretched in the cavity of resorption, it is characterized in that: described dividing plate (3) flexibly connects with basin body (1).
2. trap formula self-priming according to claim 1 exempts to water flowerpot, it is characterized in that: be covered with micropore (9) on the described dividing plate (3).
3. trap formula self-priming according to claim 1 exempts to water flowerpot, it is characterized in that: described water storage cavity sidewall is provided with water injection hole (6), and water injection hole (6) below is provided with water gauge (11), and described water injection hole (6) is 23 with water gauge (11), is uniformly distributed along the circumference.
4. trap formula self-priming according to claim 1 exempts to water flowerpot, it is characterized in that: described dividing plate (3) periphery is provided with fixture block (10), and described basin body (1) inwall is provided with concave station (2), and described fixture block (10) shape and concave station (2) shape are adaptive.
5. trap formula self-priming according to claim 4 exempts to water flowerpot, it is characterized in that: described fixture block (10) is 6 with concave station (2), is uniformly distributed along the circumference.
6. trap formula self-priming according to claim 1 exempts to water flowerpot, it is characterized in that: described dividing plate (3) is a circular cone shape, described dividing plate (3) upper surface is provided with radial guide groove (7), is positioned in the described guide channel (7) behind the through hole (8) of described absorbent member (4) by dividing plate (3).
7. trap formula self-priming according to claim 6 exempts to water flowerpot, it is characterized in that: described guide channel (7) is a semi-circular groove, groove width 20-30mm; Described guide channel (7) is 6, is distributed on the circumference, and dividing plate (3) is divided into 6 zones, is divided into 6 strands behind the through hole (8) of described absorbent member (4) by dividing plate (3), is positioned in the described guide channel (7).
8. trap formula self-priming according to claim 7 exempts to water flowerpot, it is characterized in that: 6 zones that are guided on the described dividing plate (3) after groove (7) is separated are covered with micropore (9), described micropore (9) aperture 2-3mm, pitch-row 20-30mm.
9. exempt to water flowerpot according to any described trap formula of claim self-priming in the claim 1 to 8, it is characterized in that: described dividing plate (3) is gone up and is placed pervious bed (5), and above-mentioned pervious bed (5) adopts the porous material to make.
10. trap formula self-priming according to claim 9 exempts to water flowerpot, it is characterized in that: described pervious bed (5) is the hard foam granulosa.
CN2009203188290U 2009-12-29 2009-12-29 Loose-leaf type self-suction flowerpot without watering Expired - Fee Related CN201563431U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009203188290U CN201563431U (en) 2009-12-29 2009-12-29 Loose-leaf type self-suction flowerpot without watering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009203188290U CN201563431U (en) 2009-12-29 2009-12-29 Loose-leaf type self-suction flowerpot without watering

Publications (1)

Publication Number Publication Date
CN201563431U true CN201563431U (en) 2010-09-01

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103250592A (en) * 2013-05-31 2013-08-21 吴成芳 Double-connected-pot-body automatic water supply flowerpot
CN105433674A (en) * 2015-12-08 2016-03-30 廖丹丹 Indoor anti-haze oxygen-enriched vegetation layer device
CN107580944A (en) * 2017-09-26 2018-01-16 上海应用技术大学 A kind of large-scale landscape plant soil water separates container culturing method
CN108064597A (en) * 2016-11-15 2018-05-25 美商精耕系统控股有限责任公司 The implant system of plant growth optimization
CN108651172A (en) * 2018-08-17 2018-10-16 苏州仁益生物科技有限公司 A kind of edible mushroom cultivating device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103250592A (en) * 2013-05-31 2013-08-21 吴成芳 Double-connected-pot-body automatic water supply flowerpot
CN103250592B (en) * 2013-05-31 2014-11-05 慈溪市飞杰电器厂 Double-connected-pot-body automatic water supply flowerpot
CN105433674A (en) * 2015-12-08 2016-03-30 廖丹丹 Indoor anti-haze oxygen-enriched vegetation layer device
CN108064597A (en) * 2016-11-15 2018-05-25 美商精耕系统控股有限责任公司 The implant system of plant growth optimization
CN107580944A (en) * 2017-09-26 2018-01-16 上海应用技术大学 A kind of large-scale landscape plant soil water separates container culturing method
CN108651172A (en) * 2018-08-17 2018-10-16 苏州仁益生物科技有限公司 A kind of edible mushroom cultivating device

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C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100901

Termination date: 20121229