WO2018129892A1 - 一种植物墙 - Google Patents

一种植物墙 Download PDF

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Publication number
WO2018129892A1
WO2018129892A1 PCT/CN2017/093084 CN2017093084W WO2018129892A1 WO 2018129892 A1 WO2018129892 A1 WO 2018129892A1 CN 2017093084 W CN2017093084 W CN 2017093084W WO 2018129892 A1 WO2018129892 A1 WO 2018129892A1
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WO
WIPO (PCT)
Prior art keywords
column
cup
frame
planting cup
bottom frame
Prior art date
Application number
PCT/CN2017/093084
Other languages
English (en)
French (fr)
Inventor
杨亚西
周洪波
Original Assignee
深圳市大众金设施农业有限责任公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市大众金设施农业有限责任公司 filed Critical 深圳市大众金设施农业有限责任公司
Publication of WO2018129892A1 publication Critical patent/WO2018129892A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
    • A01G9/02Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01CPLANTING; SOWING; FERTILISING
    • A01C23/00Distributing devices specially adapted for liquid manure or other fertilising liquid, including ammonia, e.g. transport tanks or sprinkling wagons
    • A01C23/04Distributing under pressure; Distributing mud; Adaptation of watering systems for fertilising-liquids
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots

Definitions

  • the invention relates to the field of soilless cultivation, in particular to a plant wall.
  • plant wall As a new kind of plant culture rack or green decoration, plant wall has attracted more and more people's attention because of its beautiful appearance, convenient maintenance, low cost and unrestricted use.
  • Traditional plant walls include main frame and Planting cups, because the main frame is mostly connected by two sections, the planting cup is placed in the middle, because the main frame connection is not stable, the main frame will be deformed after a period of use, affecting the beauty of the wall and the stability of the planting cup placement;
  • the combination is spliced, other components are needed to make the combination splicing complicated, the splicing is not tight, and the problem of water seepage often occurs.
  • the technical problem to be solved by the present invention is to provide a plant wall that is uniformly irrigated.
  • a plant wall comprising a planting cup and a main body frame, the planting cup being connected to the main body frame, characterized in that:
  • the planting cup comprises a cup body, the cup body is provided with a first connecting structure, and the cup body is circumferentially provided with a first opening uniformly distributed in the axial direction;
  • the main frame includes a face frame and a bottom frame, and the face frame is provided with a second connecting structure, and the bottom frame is provided with a column;
  • the planting cup is connected to the second connecting structure on the column frame through the first connecting structure, the column supports the planting cup, and the first opening and the column on the planting cup can form the interior of the plant wall from top to bottom The water flow channel of the space.
  • the overall shape of the planting cup is a polygon, and the bottom of the cup body is provided with an oblique angle, and the bottom of the cup abuts against the bottom frame.
  • the planting cup has a polygonal shape as a whole, and the bottom of the cup is provided with a second opening forming a water flow passage with the bottom frame.
  • the cup bottom is provided with a second opening forming a water flow passage with the bottom frame.
  • the column on the bottom frame includes a substrate, the substrate is provided with a side wing, and one end of the column away from the bottom frame is provided with a connecting card slot, and the connecting card slot is engaged with the face frame .
  • the column comprises a first column, a second column and a third column, the first column is located at an uppermost end of the bottom frame, and the second column is located at a middle portion of the bottom frame, the third The column is located at the bottom of the bottom frame.
  • the first column substrate is provided with a first groove and a second groove for erecting the pipe and the drip head.
  • the portion of the substrate of the second column that is in contact with the planting cup is provided with a slope.
  • the surface of the third column substrate facing away from the planting cup is a plane.
  • the left and right sides of the bottom frame are provided with a first lateral connection structure and a second lateral connection structure, and the first lateral connection structure cooperates with the second lateral connection structure;
  • the side is provided with a first longitudinal connection structure and a second longitudinal connection structure, the first longitudinal connection structure cooperating with the second longitudinal connection structure.
  • the bottom frame is provided with water flow passages penetrating each other, and the water flow passages are abutted against the planting cup.
  • the invention has the beneficial effects that the present invention adopts a planting cup with a first opening uniformly disposed on the side, and a water guiding ring is further disposed on the planting cup, the planting cup is kept inclined with respect to the bottom frame, and then passed through the column with the side flaps.
  • the water flow passage which penetrates up and down is formed, so that no water is accumulated in the planting cup, and uniform irrigation is realized, and further the present invention fundamentally solves the problem of the root and the root of the plant.
  • Figure 1 is a perspective view of an embodiment of the present invention
  • Figure 2 is a side view of the embodiment
  • Figure 3 is a disassembled view of a portion of the embodiment
  • Figure 4 is a perspective view of 4 in Figure 3;
  • Figure 5 is a perspective view of another perspective of 4 of Figure 3.
  • FIG. 1 A perspective view of an embodiment of the present invention.
  • the plant wall is entirely a cube, and the plant wall is provided with 10 planting cups 1, and the planting cup 1 is completely transparent to the plant wall.
  • the planting cup 1 is evenly distributed on the wall of the plant, and the utilization of the plant wall space is very high.
  • the plant wall comprises a planting cup 1 and a cup lid 2 which is fastened to the planting cup 1 , a face frame 3 which supports and positions the planting cup, a bottom frame 4 which abuts against the bottom of the planting cup 1 , and a planting cup a post 5 for limiting and supporting;
  • the cup cover 2 is provided with an eccentric cylinder 21, and the eccentric cylinder 21 forms an inclination angle with the upper surface of the cup cover 2, and the eccentric cylinder 21 can The inclination angle of the plant in the planting cup 1 is adjusted to give the plant the best growth posture, and at the same time, since the overall shape is tapered, the plant is not easily pulled out once it is fixed.
  • the cup cover 2 is further provided with a rectangular groove, which can divide the cup cover 2 into two parts uniformly, that is, the cup cover 2 can be used as a whole or separately along the rectangular groove, such a cup
  • the cover 2 is of great benefit to the planting of larger plants in practical use.
  • the planting cup 1 is placed obliquely on the main body frame, and the planting cup 1 is provided with three water guiding rings 11 which are polygonal, and the polygons are also provided with a plurality of rounded corners, the planting cup 1
  • the first connecting structure 13 is a snap-fit structure, and the first connecting structure 13 is fastened to the second connecting structure on the face frame.
  • the second connecting structure is a "convex" shaped groove; in actual use, the planting cup 1 is used to irrigate the nutrient solution of the plant in the planting cup 1 through the pipeline and the drip irrigation head located at the upper portion thereof, when the nutrient liquid droplet After flowing or flowing to the planting cup 1, the nutrient solution is irrigated to the roots of the plant through the nutrient solution channel formed by the first opening 12 uniformly distributed on the planting cup 1; the nutrient solution not passing through the first opening 12 flows along the side wall of the planting cup 1
  • the guide water ring 11 is placed obliquely according to the planting cup 1.
  • the nutrient solution can be automatically collected down the water-conducting ring 11 at the rounded corner of the lower part of the planting cup, and the nutrient solution flows through the planting cup of the lower level by gravity.
  • Figure 1 it can be seen that the water guiding ring 11 on the planting cup 1 As a channel for nutrient solution, on the other hand, the nutrient solution is blocked, and the planting cup 1 is divided into three sections, thereby achieving uniform irrigation at a fixed point, and more planting cups 1 are also provided with a second opening (not shown) at the bottom. The second opening can remove the nutrient solution collected at the bottom of the planting cup 1 and flow to the planting cup of the next layer to prevent the nutrient solution from flowing to the bottom frame, resulting in loss of nutrient solution and ensuring drying of the bottom frame.
  • FIG. 2 is a side view of the embodiment. Referring to FIG. 2, it can be seen that a certain inclination angle is formed between the planting cup 1 and the bottom frame 4.
  • the water guiding ring 11 also forms a certain inclination angle with the vertical plane; It can provide a good posture for plant growth, beautiful appearance, maintain natural growth state, on the other hand, it helps the nutrient solution to flow automatically and evenly, and more planting cups have double slopes formed on the upper surface of the upper cup cover and the conical cylinder.
  • the water or nutrient solution is set to be shunted, so that a large amount of nutrient solution is not accumulated in the planting cup 1 to prevent mosquito breeding and even irrigation.
  • the first upright 51 is located on the bottom frame 4 at an end away from the bottom frame 4, and is provided with a connection card slot.
  • the connection card slot is engaged with the face frame 3, and the first column 51 is provided with a side wing.
  • a slope 511 is disposed on a lower portion of the substrate of the first pillar 51, and the slope 511 can be positioned to abut the planting cup 1 to position the planting cup 1;
  • the first pillar 51 is further provided with a first groove 513 and
  • the second groove 514, the first groove 513 and the second groove 514 can be used for fixing the tube and the canister in actual use, so that the drip irrigation head is accurately positioned, thereby making the drip irrigation accurately in place from the source.
  • the second column 52 is located at a middle portion of the bottom frame 4, and the substrate of the second column 52 is provided with a side wing 522.
  • the upper portion and the lower portion of the substrate of the second column 52 are provided with a slope 523 which can resist the planting cup 1 and Below 521, the connection of the planting cup 1 is made firm and reliable.
  • the side flaps 511 disposed on the first upright 51 and the side flaps 522 disposed on the second uprights 52 can be used as a flow passage to divert the nutrient solution into the lower planting cup 1, more in the bottom frame 4
  • the upper column can extend or shorten or set the flank on the column substrate to be equal length according to actual needs, so as to prevent nutrient solution or water flow along the flank or plant to the ground during irrigation, so that the nutrient solution is fully obtained. use.
  • a hook locking mechanism 6 is further disposed on the back of the bottom frame 4, and the hook locking mechanism 6 can stabilize the plant wall and firmly fix it on the bracket, and is windproof and shockproof to ensure the safety of use.
  • a third column 53 is disposed on the bottom frame 4, and the side of the substrate of the third column 53 that faces away from the planting cup is a plane, when the plant wall is in the splicing process. After smoothing and splicing with the lower plant wall, the damage of the column to the pipe fitting and the drip head during the splicing process can be prevented. It can be seen that a plurality of polygonal card positions are arranged on the face frame 3, and at least three columns are arranged on the upper edge of the bottom frame 4. The columns are all connected with the face frame 3 so that the plant wall is solid and firm as a whole.
  • the bottom frame 4 is further provided with a water flow passage which is interpenetrated, and the water flow passage is abutted against the planting cup 1.
  • the water flow channel can effectively discharge the nutrient solution collected at the bottom of the planting cup 1 in time to prevent the root of the root. , rotten roots.
  • FIG. 4 is a perspective view of 4 in FIG. 3, and FIG. 5 is a perspective view of another perspective view of 4 in FIG. 3.
  • the bottom frame 4 is provided with a first lateral connection structure 41 and a second lateral connection structure 42.
  • the first lateral connecting structure is provided with a first boss 411 located at the upper right corner of the back of the bottom frame 4, and the first lateral connecting structure 41 is further provided with a first sliding slot 413 at the back of the bottom frame 4.
  • the second lateral connecting structure 42 is provided with a second sliding slot 421 located at the upper right corner of the front surface of the bottom frame 4, the second lateral connecting structure
  • a third sliding slot 423 is further disposed on the sidewall of the third sliding slot.
  • the bottom frame 4 is further provided with a first longitudinal connecting structure 43 and a second longitudinal connecting structure 44, the first longitudinal connecting structure 43 cooperating with the second longitudinal connecting structure 44;
  • the first longitudinal connecting structure 43 is at the bottom a lower portion of the back of the frame 4,
  • the first longitudinal connecting structure is provided with a longitudinal connecting groove 431, the longitudinal connecting groove is open on three sides,
  • the second longitudinal connecting structure 44 is located at the upper front part of the bottom frame 4, the second longitudinal direction
  • the upper portion of the connecting structure 44 is provided with a longitudinal connecting protrusion 441, and the longitudinal connecting protrusion 441 is snap-fitted with the longitudinal connecting groove 431.
  • the arrangement of the first lateral connecting structure 41, the second lateral connecting structure 42, the first longitudinal connecting structure 43, and the second longitudinal connecting structure 44 enables the plant wall to be conveniently and securely spliced uniformly, that is, after the splicing is completed
  • the spacing between any two adjacent planting cups 1 is the same, which eliminates the gap between the splicing modules after the traditional plant wall splicing, resulting in the occurrence of faults in the plant set; moreover, the plant wall can be laterally or Longitudinal splicing, or horizontal and vertical splicing at the same time, it is convenient to meet the expansion of the plant wall area.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Soil Sciences (AREA)
  • Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)

Abstract

一种植物墙,包括种植杯(1)和主体框架,所述种植杯与所述主体框架扣合连接。其中种植杯包括杯体,所述杯体上设置有第一连接结构(13),所述杯体轴向设置有均匀分布的第一开口(12),径向设置有导水环(11);主体框架包括面框(3)和底框(4),底框上设置有立柱(5),所述立柱包括基板,所述基板上设置有侧翼(522);所述立柱上的侧翼对种植杯起限位和支撑作用。本装置形成上下贯通的水流通道,使得种植杯内不会产生积水,实现了均匀灌溉,进一步解决了植株泡根、烂根的问题。

Description

一种植物墙
技术领域
本发明涉及无土栽培领域,特别涉及一种植物墙。
背景技术
植物墙作为一种新型的植株培养物架或绿化装饰物,因其美观,维护方便,成本低,使用场地不受限等优势,越来越受到人们的重视,传统的植物墙包括主体框架和种植杯,因其主体框架大多采用两段连接,中间安置种植杯,因其主体框架连接不稳固,使用一段时间后主体框架便发生变形,影响墙的美观和种植杯安置的稳定性;又因其组合拼接时还需借助其他零部件使得组合拼接复杂,拼接不紧密,常常出现渗水的问题,最重要的是种植杯里的植株因其灌溉的不均匀,有些地方长期营养液过剩,根系长时间浸泡导致烂根及滋生蚊虫,另一些地方营养液匮乏使得植株不能正常生长,极大的影响了植物墙植株生长的稳定性。因此需要一款新型结构的植物墙来解决上述问题。
发明内容
本发明要解决的技术问题是:提供一种均匀灌溉的植物墙。
本发明为解决其技术问题提供的一种技术方案是:
一种植物墙,包括种植杯和主体框架,所述种植杯与所述主体框架连接,其特征在于:
种植杯包括杯体,所述杯体上设置有第一连接结构,所述杯体周向设置有沿轴向均匀分布的第一开口;
主体框架包括面框和底框,所述面框上设置有第二连接结构,所述底框上设置有立柱;
种植杯通过第一连接结构与柱体框架上的第二连接结构连接,所述立柱承托着种植杯,所述种植杯上的第一开口与立柱可形成从上至下的贯穿植物墙内部空间的水流通道。
作为上述方案的改进,所述种植杯整体形状为多边形,所述杯体底部设置有斜角,所述杯底与所述底框抵持。
作为上述方案的改进,所述种植杯整体形状为多边形,所述杯底上设置有与底框之间形成水流通道的第二开口。
作为上述方案的进一步改进,所述杯底上设置有与底框之间形成水流通道的第二开口。
作为上述方案的改进,所述底框上的立柱包含基板,所述基板上设置有侧翼,所述立柱远离底框的一端设置有连接卡槽,所述连接卡槽与所述面框卡接。
作为上述方案的进一步改进,所述立柱包含第一立柱、第二立柱和第三立柱,所述第一立柱位于底框的最上端,所述第二立柱位于底框的中部,所述第三立柱位于底框的底部。
作为上述方案的改进,所述第一立柱基板上部设置有用于架设管道和滴灌头的第一凹槽和第二凹槽。
作为上述方案的改进,所述第二立柱的基板与种植杯接触的部位设置有斜面。
作为上述方案的改进,所述第三立柱基板上与种植杯背离的面为平面。
作为上述方案的改进,所述底框左右两侧设置有第一横向连接结构和第二横向连接结构,所述第一横向连接结构与所述第二横向连接结构配合;所述底框上下两侧设置有第一纵向连接结构和第二纵向连接结构,所述第一纵向连接结构与所述第二纵向连接结构配合。
作为上述方案的进一步改进,所述底框上设置有相互贯穿的水流通道,所述水流通道与所述种植杯抵持。
本发明的有益效果是:本发明通过使用侧面设置有均匀分布的第一开口的种植杯,种植杯上还设置导水环,种植杯相对于底框保持倾斜放置,再通过具有侧翼的立柱,形成上下贯通的水流通道,使得种植杯内不会产生积水,实现了均匀灌溉,更进一步的本发明从根本上上解决了植株泡根,烂根的问题。
附图说明
为了更清楚的说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图做简单说明。
图1 为本发明的一种实施例的立体图;
图2为该实施例的侧视图;
图3 为该实施例的一部分的拆解图;
图4位图3中4的立体图;
图5为图3中4的另一个视角的立体图。
具体实施方式
以下结合实施例和附图对本发明的构思、具体结构及产生的技术效果进行清楚、完整地描述,以充分理解本发明的目的、方案和效果。需要说明的是,在不冲突的情况下本申请中的实施例及实施例中的特征可以相互组合。此外本发明中所使用的上、下、左、右等描述仅仅是相对图中本发明各组成部分相互位置关系来说的。
图1 为本发明一种实施例的立体图,参照图1,植物墙整体为一立方体,所述植物墙上设置有10个种植杯1,所述种植杯1与所述植物墙整体通透,所述种植杯1在所述植物墙上均匀密集分布,对植物墙空间的利用率非常高。
植物墙包括种植杯1以及与种植杯1扣合连接的杯盖2,对种植杯起支撑和定位作用的面框3,与种植杯1底部抵持的底框4,还有对种植杯起限位及承托作用的立柱5;所述杯盖2上设置有偏心圆筒21,所述偏心圆筒21与所述杯盖2上表面之间形成一倾角,所述偏心圆筒21可以调节种植杯1中植株的倾斜角度,给予植株最好的生长姿态,同时因其整体形状为锥形,植物一旦被固定之后不易被拔出。所述杯盖2上还设置有矩形槽,所述矩形槽可将杯盖2均匀的分为两部分,即杯盖2可以单独整体使用或沿所述矩形槽掰开分开使用,此种杯盖2在人们实际使用中对于较大植株的植物种植有极大的好处。
种植杯1倾斜放置在主体框架上,所述种植杯1上设置有3圈导水环11,所述导水环11为多边形,所述多边形上还设置有若干圆角,所述种植杯1上还设置有均匀分布的第一开口12和第一连接结构13,所述第一连接结构13为一扣合结构,所述第一连接结构13与面框上的第二连接结构扣合连接,所述第二连接结构为“凸”字形凹槽;在实际使用中,种植杯1通过位于其上部的管路和滴灌头对种植杯1内的植株进行营养液的灌溉,当营养液滴向或流向种植杯1后,营养液通过种植杯1上均匀分布的第一开口12形成的营养液通道灌溉到植株根茎上;未通过第一开口12的营养液沿着种植杯1侧壁流向导水环11,因种植杯1为倾斜放置,营养液可顺着导水环11自动向下汇集在种植杯下部的圆角处,依靠重力使得营养液向下一层级的种植杯流淌,通过图1可见,种植杯1上的导水环11一方面作为营养液的通道,另一方面阻隔营养液,将种植杯1分为了三个区间,进而实现定点均匀灌溉,更多的种植杯1底部还设置有第二开口(图中未示),所述第二开口可将汇集在种植杯1底部的营养液排除,流向下一层的种植杯,防止营养液流到底框,导致营养液流失和保证底框的干燥。
图2为该实施例的侧视图,参照图2,可见种植杯1与底框4之间形成一定的倾角,导水环11与竖直平面也形成一定的倾角;这样放置的好处是一方面可以给植株生长提供良好的姿态,美观,保持自然生长状态,另一方面有助于营养液自动均匀的流淌,更多的种植杯1上部杯盖上表面与锥形圆筒形成的双坡面设置将水流或营养液分流,使得种植杯1内不会产生大量的营养液堆积,防止蚊虫滋生,使得灌溉均匀。
由图2中可见,第一立柱51位于底框4上远离底框4的一端设置有连接卡槽,所述连接卡槽与所述面框3卡接,在第一立柱51上设置有侧翼512,在第一立柱51的基板下部设置有斜面511,所述斜面511可与种植杯1抵持对种植杯1起定位作用;所述第一立柱51上还设置有第一凹槽513和第二凹槽514,所述第一凹槽513和第二凹槽514在实际使用中可用于管件和滴罐头固定,使滴灌头滴灌位置准确,进而使得滴灌从源头上准确到位。
第二立柱52位于底框4的中部,所述第二立柱52的基板上设置有侧翼522,所述第二立柱52的基板上部和下部均设有可与种植杯1抵持的斜面523和下面521,使得种植杯1的连接稳固可靠。
在实际使用中,第一立柱51上设置的侧翼511及第二立柱52上设置的侧翼522均可以充当流道使用,将营养液分流到下级的种植杯1中,更多的位于底框4上的立柱可根据实际使用需要将立柱基板上的侧翼延长或缩短或设置为等长,以防止在灌溉过程中营养液或水流顺着侧翼或植株流到地面上,进而使营养液得到充分的利用。
在底框4的背面还设置有挂接锁止机构6,所述挂接锁止机构6可将植物墙稳定,牢靠的固定在支架上,防风抗震,确保使用的安全。
图3 为该实施例的一部分的拆解图,参照图3,在底框4上设置有第三立柱53,所述第三立柱53基板上与种植杯背离的一面为平面,当植物墙在拼接过程中平滑的与下层植物墙拼接后,可防止拼接过程中立柱对管件以及滴灌头的破坏,可见面框3上设置有多个多边形卡位,底框4上边沿位置至少设置有3根立柱,所述立柱均与面框3卡接使得植物墙整体稳固牢靠。在底框4上还设置有相互贯穿的水流通道,所述水流通道与所述种植杯1抵持,所述水流通道可有效的将聚集在种植杯1底部的营养液及时导出,防止泡根,烂根。
图4为图3中4的立体图,图5为图3中4的另一个视角的立体图,参照图4、图5,底框4上设置有第一横向连接结构41和第二横向连接结构42,所述第一横向连接结构上设置有位于所述底框4背部右上角的第一凸台411,所述第一横向连接结构41上还设置有位于底框4背面的第一滑槽413和位于所述第一滑槽侧壁上的第二凸台412;所述第二横向连接结构42上设置有位于底框4正面右上角的第二滑槽421,所述第二横向连接结构上还设置有第三滑槽423,所述第三滑槽的侧壁上设置有横向凸台422。
底框4上还设置有第一纵向连接结构43和第二纵向连接结构44,所述第一纵向连接结构43与所述第二纵向连接结构44配合;所述第一纵向连接结构43位于底框4背面下部,所述第一纵向连接结构上设置有纵向连接凹槽431,所述纵向连接凹槽三面开口,所述第二纵向连接结构44位于底框4正面上部,所述第二纵向连接结构44上部设置有纵向连接凸起441,所述纵向连接凸起441与所述纵向连接凹槽431扣合连接。
所述第一横向连接结构41、第二横向连接结构42、第一纵向连接结构43、第二纵向连接结构44的设置使得植物墙可以方便牢靠的进行自身之间的均匀拼接,即拼接完成后任意两个相邻的种植杯1之间的间距一致,消除了传统植物墙拼接后,拼接模块之间出现间隙,导致植物布景出现断层的现象;更多的,所述植物墙可以进行横向或纵向拼接,或者横向纵向同时拼接,很方便的满足人们对植物墙体面积扩充需求。

Claims (10)

  1. 一种植物墙,包括种植杯和主体框架,所述种植杯与所述主体框架连接,其特征在于:
    种植杯包括杯体,所述杯体上设置有第一连接结构,所述杯体周向设置有沿轴向均匀分布的第一开口;
    主体框架包括面框和底框,所述面框上设置有第二连接结构,所述底框上设置有立柱;
    种植杯通过第一连接结构与柱体框架上的第二连接结构连接,所述立柱承托着种植杯,所述种植杯上的第一开口与立柱形成从上至下的贯穿植物墙内部空间的水流通道。
  2. 根据权利要求1所述的植物墙,其特征在于:所述种植杯整体形状为多边形,所述杯体底部设置有斜角,所述杯底与所述底框抵持。
  3. 根据权利要求2所述的植物墙,其特征在于:所述杯底上设置有与底框之间形成水流通道的第二开口。
  4. 根据权利要求1所述的植物墙,其特征在于:所述底框上的立柱包含基板,所述基板上设置有侧翼,所述立柱远离底框的一端设置有连接卡槽,所述连接卡槽与所述面框卡接。
  5. 根据权利要求4所述的植物墙,其特征在于:所述立柱包含第一立柱、第二立柱和第三立柱,所述第一立柱位于底框的最上端,所述第二立柱位于底框的中部,所述第三立柱位于底框的底部。
  6. 根据权利要求5所述的植物墙,其特征在于:所述第一立柱基板上部设置有用于架设管道和滴灌头的第一凹槽和第二凹槽。
  7. 根据权利要求5所述的植物墙,其特征在于:所述第二立柱的基板与种植杯接触的部位设置有斜面。
  8. 根据权利要求5所述的植物墙,其特征在于:所述第三立柱基板上与种植杯背离的面为平面。
  9. 根据权利权利要求1所述的植物墙,其特征在于:所述底框左右两侧设置有第一横向连接结构和第二横向连接结构,所述第一横向连接结构与所述第二横向连接结构配合;所述底框上下两侧设置有第一纵向连接结构和第二纵向连接结构,所述第一纵向连接结构与所述第二纵向连接结构配合。
  10. 根据权利要求1所述的植物墙,其特征在于:所述底框上设置有相互贯穿的水流通道,所述水流通道与所述种植杯抵持。
PCT/CN2017/093084 2017-01-12 2017-07-17 一种植物墙 WO2018129892A1 (zh)

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