201215744 六、發明說明: 【發明所屬之技術領 [0001] 本發明涉及/種生態工程領域,尤其是指一種生態 網籠及應用該生態網籠的邊坡擋牆。 [先前技術] [〇〇〇2] 目前,公路、河堤等邊坡加固防護結構是採用石寵 擋牆完成,例如可參閱中國專利ZL02159704公開之文獻 :一般石籠施工步驟是先用金屬絲(如鐵絲、鋼絲等)按 一定規格編織成網絡狀的籠髏,在籠體内填滿碎石或礫 石即完成單個石籠’然後將各石籠按需要堆疊成撐牆, 該擋牆透水性差,並且需要設計各種式樣排水管道,施 工繁瑣,並且石籠中所填裝的碎石或療石等不能進行有 效的植被綠化,使周邊環境的影響下,碎石等會被雨(河 )水沿籠體的網孔掏盡,同時碎石的銳邊角也會造成籠體 受損,導致石籠破裂,整體垮塌現象發生;更重要的是 ,此類石籠因碎石等外露而造成石籠周緣凹凸不平每 堆疊一個石籠都需要作相應角度、方向等調整,並也難 以使相鄰石籠緊密相靠,從而既影響整體強度,也不利 於施工。 業界為克服上述困擾,有人提出一種土石籠改進方 案,請參閲中國專利ZL03206998其採用石籠網内填裝_ 個與石籠網體積相當的土石籠袋,或者可以進一步在該 土石籠七·内女置加筋網形成多個區隔;無論怎樣,諸如 此類土石籠设計會存在諸多缺失,其中,填充於這種龐 大土石籠袋中的填充物(尤其是泥土)顯然會存在鬆動, 易擠麼變形,整體強度差如此將土石籠堆憂時,相鄰土 099135042 0992061169-0 表單.编號A0101 第3頁/共17頁 201215744 石籠袋内的填充物會因鬆動變形而難以完全緊密相貼, 土石籠袋侧壁局部會存在凹陷而產生不平整等問題,從 而影響相鄰土石籠間的結合,造成擋牆品質差,不夠堅 固;並且在長久使用情形下石籠局部一旦出現裂口時, 整個土石籠代會被雨水沖失或垮塌,使用壽命不長,顯 然是不符合施工條件。 【發明内容】 [0003] 099135042 本發明針對上述現象有技術所存在之缺失,主要目 的在於提供一種具有高強度、高抗拉性且易於施工的生 態網籠及應用生態網籠堆疊形成的擋牆。 為實現上述之目的,本發明採取如下技術方案: 一種生態網籠,包括籠體以及安置於籠體中的填充 體,該籠體是由多個網格壁面®構而成,該網格壁面包 括底面、頂面以及側面;該填充體是由多個生態袋逐層 堆疊而成並具有多個外緣壁面,各外緣壁面分別對應緊 靠於網格壁面的底面、頂面及側面,所述生態袋包括可 透氣、透水的袋體以及填充於該袋體中的植物生長材料 ,且相鄰層的袋體之間由加固層固接,以使各生態袋形 成一整體。 所述加固層為水泥或粘著劑凝固而成;該加固層包 括有連接層、滲於袋體中且與植物生長材料凝固而成的 加強層。 相鄰層的袋體之間還設有連接扣,該連接扣包括連 接板以及該連接板上、下表面一體形成的凸釘,該連接 板上、下表面被加固層固接,該凸釘分別對應紮入相鄰 層的袋體中。 表單編號A0101 第4頁/共17頁 0992061169-0 進一步,所述填充體完全由生態袋沿籠體底面至頂 面堆疊形成,相鄰層的生態袋縱、橫交錯堆疊形成一整 體,每一層是由多個長條形生態袋鋪設方向的籠體的寬 度相同,使生態袋的外露面分別形成緊靠籠體底面、頂 面以及側面的外緣壁面。 進一步,所述填充體完全由生態袋沿籠體底面至頂 面堆疊形成,其中至少具有一層沿縱向或橫向鋪設方向 是由兩個或兩個以上塊狀生態袋鋪設而成。 進一步,所述填充體具有底層、頂層以及介於底層 與頂層之間的中間層,該底層和頂層分別由多個生態袋 並行且緊靠地鋪設在一起,以上下形成緊靠籠體底面、 頂面的外緣壁面;該中間層是由複數層生態袋沿籠體側 面依次堆疊而形成緊靠於籠體側面的外緣壁面,使填充 體的底層、頂層以及中間層圍構成一密閉空間,該空間 内填裝有植物生長材料或碎石。所述底層或頂層中每個 生態袋為長條形生態袋,其長度對應與其鋪設方向的籠 體的寬度相同;或者底層或頂層之中至少具有一層沿縱 向或橫向鋪設方向是由兩個或兩個以上塊狀生態袋鋪設 而成。所述中間層的生態袋為長條形生態袋,該生態袋 長度對應與其鋪設方向的籠體的寬度相同;或者所述中 間層中至少具有一層沿鋪設方向是由兩個或兩個以上塊 狀生態袋鋪設而成。 一種邊坡擋牆,由前述生態網籠錯開堆疊而成,且 相鄰的生態網籠之間具有另一固接層,使相鄰的籠體以 及填充體的外緣壁面通過該固接層固接形成一整體。 本發明的優點在於:生態網籠利用籠體中安置一可 表單編號A0101 第5頁/共17頁 201215744 提供綠色植被且透水性能好的填充體,使得生態網籠便 於搬移,施工方便;該填充體是採用多個生態袋逐層堆 疊並藉以加固層固接而成,其整體強度明顯增強,更具 良好的抗拉性能,該填充體所形成的各外緣壁面能與籠 體各網格壁面對應緊贴,可保證側緣平整,不存在凹陷 現象,有利於堆疊成牆,並可使相鄰的生態網籠之間固 接層更均勻,從而擋牆整體更具穩固性,尤其是,即使 籠體被破損的情形下,因為填充體仍然是一個整體,從 而不會造成垮塌現象,有效地延長擋牆使用壽命。 【實施方式】 [0004] 099135042 下面結合附圖與具體實施方式對本發将作進一步描 述。 請參閱第一至第四圖,一種生態網籠10 0,包括籠體 10以及安置於籠體10中的填充體20,其中: 該籠體10呈正方體,其可採用鋼絲或鐵絲等編織而 成,其由多個網格壁面圍構而成,該網格壁面包括底面 11、頂面1 2以及側面1 3。 該填充體20是由多個生態袋21逐層堆疊而成並具有 多個外緣壁面22,各外緣壁面22分別對應緊靠於網格壁 面的底面11、頂面12及側面13,所述生態袋21包括可透 氣、透水的袋體211以及填充於該袋體211中的植物生長 材料212,且相鄰層的袋體211之間由加固層23(例如由 水泥或粘著劑凝固而成)固接,以使各生態袋21形成一整 體,如此填充體整體強度提高,可保證填充體外緣壁面 22平整,使堆疊形成擋牆方便,有利於佈置在相鄰間籠 體10設置加固層,使相鄰籠體内的袋體211更容易固接, 表單編號A0101 第6頁/共17頁 0992061169-0 201215744 從而提高整個擋牆牢固性。當然,本發明更穩固結合, 所述加固層23包括有位於相鄰層之間的連接層231、滲於 袋體211中且與植物生長材料212凝固而成的加強層232 ,由於袋體211可透氣、透水,所以堆疊時水泥或枯著劑 在液態情形下覆於袋體211上時,其中部分液態水泥或粘 著劑會透過袋體211進入生態袋21中,從而使滲於袋體 211中的液態水泥或粘著劑會與植物生長材料凝固而成加 強層232(圖中也僅示出了一層具有該結構)。 為使填充體20強度、抗抗性更高,所述填充體20完 全由生態袋21沿籠體10底面11至頂面12堆疊形成,相鄰 層的生態袋21縱、橫交錯堆疊形成一整體,每一層是由 多個長條形生態袋21並行且緊靠地鋪設在一起,且每個 生態袋21長度對應與其鋪設方向的籠體10的寬度相同, 可有效保證整體堆疊強度,並使生態袋21的外露面分別 能夠形成緊靠籠體底面11、頂面12以及側面13的外緣壁 22 ° 結合第四圖,本實施例生態網籠製作如下:先準備 好網格狀的籠體10,然後再於籠體底面11上橫向並行且 緊靠地鋪設多個長條形生態袋21而形成第一層A1,鋪設 方向如X標識;該長條形生態袋21長度可根據籠體大小進 行定制,保證每個長條形生態袋21與其鋪設方向(X標識) 的籠體的寬度相同;然後鋪設第二層A2長條形生態袋, 這層生態袋相對底面上的生態袋呈縱向鋪設如Y標識,其 長度也同第一層要求;故第三層A3·..第N層由此類推,形 成縱橫交錯堆疊態勢,直至最頂層緊靠於籠體頂面12即 可;該頂面12可設計成開蓋結構,製作前可揭開頂面, 099135042 表單編號A0101 第7頁/共17頁 0992061169-0 201215744 鋪完生態袋後即可蓋上頂面,在此不加以限制。 再看第二圖,相鄰層(如第一層A1與第二層Λ2)的生 態袋21之間還設有連接扣3〇(在第二圖中僅示出一層具有 連接扣,實際上相鄰層根據工程需要會進行添加)’該連 接扣30包括連接板31以及該連接板31上、下表面一體形 成的凸釘3 2,該連接板31上、下表面由加固層23固接, 該凸釘32分別對應紮入相鄰層的生態袋21申;如此可使 相鄰層更加穩固結合在一起。 如第三圖所示,邊坡擋牆2〇〇是由各生態網籠1〇〇堆 疊而成(當然為使更穩固.叠加..:,..1、、:.下可錯開堆疊),相 鄰的生態網籠10 0之間具有一固接層3 〇〇,使相鄰的籠體 10以及填充體2 0的外緣壁面22通過該固接層3〇〇固接形 成一整體,由於填充體20中生態袋21可姑靠於籠體1〇, 使相鄰的生態網籠1〇〇之間可緊密貼在一起,從而固接層 300可很好的將相鄰籠體10與生態袋21固接在一起;換言 之’由於生態網籠100中填充體d是由生態袋21逐層堆疊 而成,外緣壁面22自然平整,彳於歐接層3〇〇將相鄰生 態網籠100中填充體20的外緣壁面22固接,從而提高整個 擔牆牢固性’所以本發明邊坡擋踏2 0 0在生態網籠1 〇 〇的 籠體10被破損後,會因為填充體20仍然固接在一起而形 成一整體,不會造成垮塌現象,有效地延長擋牆使用壽 命。 請參閱第五圖所示’為本發明中的生態網籠中填充 體不同實施方式;本實施例填充體也是完全由生態袋沿 籠體底面至頂面堆疊形成,但不同的是,先用長條形袋 21鋪設第一層A1(與上述實施例相同),然後在第二層A2 099135042 表單編號A0101 0992061169-0 第8頁/共17頁 201215744 沿縱向x或橫向γ鋪設方向是由兩個或兩個以上塊狀生態 袋21’鋪設而成,其它層可根據實際需求選擇不同形狀生 態袋進行鋪設;當然,第一層Α1也可以採用塊狀生態袋 21’進行鋪設,也包括填充體中所有層的生態袋都由塊狀 生態袋鋪設並堆疊而成,在此不加以限制。本實施例的 擋牆堆疊與前述實施例相同。 再請參閱第六圖所示,為本發明中的生態網籠100再 一實施方式:其中填充體20具有底層201、頂層203以及 介於底層201與頂層203之間的中間層202,該底層201和 頂層203分別由多個長條形生態袋21並行且緊靠的鋪設在 一起,以上下形成緊靠籠體底面11、頂面12的外緣壁面 :該中間層2 0 2是沿籠體側面13依次堆疊生態袋21而形成 緊靠籠體侧面13的外緣壁面,所述每個生態袋21長度對 應與其鋪設方向的籠體10的寬度相同,以保證整體堆疊 強度;上述相鄰的生態袋21之間由加固層206固接。所述 填充體20的底層201、頂層203以及中間層202圍構成一 密閉空間204,該空間204内填裝有植物生長材料或碎石 205 ;如此可節省生態袋之成本,可根據需要選擇使用。 前述生態網籠可先鋪設底層201,然後舖設中間層202, 再於底層與中間層圍構的空間填裝植物生長材料或碎石 205,最後鋪設頂層203形成密閉即可。而擋牆也是採用 本實施例中的生態網籠100進行堆疊,然後也採用粘接劑 相連,經試驗,整體強度稍略於前述實施例,但仍比普 通擋牆更具穩固性。根據需要,所述中間層202的生態袋 也可以如實施例二中描述,其至少具有一層沿鋪設方向 是由兩個或兩個以上塊狀生態袋鋪設而成,所述底層或 099135042 表單編號Α0101 第9頁/共17頁 0992061169-0 201215744 頂層也可以採用塊狀生態袋進行鋪設,在此不加以限制 〇 本發明設計要點在於生態網籠利用籠體中安置一可 提供綠色植被且透水性能好的填充體,該填充體是採用 多個生態袋逐層堆疊並藉以加固層固接而成,該填充體 所形成的各外緣壁面能與籠體各網格壁面對應緊貼,可 保證侧緣平整,不存在凹陷現象,有利於堆疊成牆,並 可使相鄰的生態網籠之間加固層更均勻,從而擋牆更具 穩固性,並經多次反覆試驗,整體強度明顯比普通擋牆 增強一倍以上,壽命增長,有利於施工。 以上所述,僅是本發明結構較佳實施例而已,並非 對本發明的技術範圍作任何限制,故凡是依據本發明的 技術實質對以上實施例所作的任何細微修改、等同變化 與修飾,均仍屬於本發明技術方案的範圍内。 【圖式簡單說明】 [0005] 第一圖係本發明生態網籠整體結構示意圖。 第二圖係本發明生態網籠截面示意圖。 第三圖係本發明應用第一圖中生態網籠堆疊成邊坡擋牆 結構不意圖。 第四圖係本發明生態網籠中生態袋部分堆疊狀態示意圖 〇 第五圖係本發明生態網籠中生態袋堆疊另一實施結構示 意圖。 第六圖係本發明生態網籠再一實施的整體結構示意圖。 【主要元件符號說明】 099135042 表單編號A0101 第10頁/共17頁 0992061169-0 201215744201215744 VI. Description of the Invention: [Technology] [0001] The present invention relates to the field of ecological engineering, and in particular to an ecological cage and a slope retaining wall to which the ecological cage is applied. [Prior Art] [〇〇〇2] At present, the reinforcement structure of slopes such as roads and river embankments is completed by stone pet retaining walls. For example, refer to the literature disclosed in Chinese patent ZL02159704: the general stone cage construction step is to use the wire first. (such as wire, steel wire, etc.) woven into a network-like cage according to certain specifications, fill the cage with gravel or gravel to complete a single stone cage' and then stack the stone cages as needed to form a wall, the retaining wall is permeable The performance is poor, and various types of drainage pipes need to be designed. The construction is cumbersome, and the gravel or therapeutic stones filled in the stone cage cannot be effectively greened by vegetation. Under the influence of the surrounding environment, the gravel will be rained (river). The water is exhausted along the mesh of the cage, and the sharp corner of the gravel will also cause damage to the cage, causing the stone cage to rupture and the overall collapse. More importantly, the stone cage is exposed by gravel and the like. The surrounding of the stone cage is uneven. Every stone cage is stacked, and the angle and direction need to be adjusted. It is also difficult to make the adjacent stone cages close together, which affects the overall strength and is not conducive to construction. In order to overcome the above problems, some people have proposed an earthen stone cage improvement scheme. Please refer to the Chinese patent ZL03206998, which uses the gabion net to fill the earthen stone cage bag with the same volume as the stone cage net, or it can be further in the earthen stone cage. In the case of the female reinforced mesh, there are many defects. In any case, there are many defects in the design of the earthen stone cage. Among them, the filler (especially the soil) filled in this huge earthen cage bag obviously has looseness. If the overall strength is so bad, the earthen stone cage will be worried, the adjacent soil 099135042 0992061169-0 form. No. A0101 Page 3 / 17 pages 201215744 The filler in the stone cage will be difficult to be completely tight due to loose deformation. Correspondingly, there are some problems such as unevenness in the side wall of the earthen stone cage, which may affect the combination of adjacent earthen stone cages, resulting in poor quality of the retaining wall and not strong enough; and in the case of long-term use, there is a crack in the local part of the stone cage. At the time, the entire earthen stone cage will be washed away or collapsed by the rain, and the service life is not long, obviously it does not meet the construction conditions. SUMMARY OF THE INVENTION [0003] 099135042 The present invention is directed to the absence of the above-mentioned phenomena, the main purpose of which is to provide an ecological cage with high strength, high tensile strength and easy construction, and a retaining wall formed by stacking ecological cages. . In order to achieve the above object, the present invention adopts the following technical solutions: An ecological net cage includes a cage body and a filling body disposed in the cage body, the cage body is composed of a plurality of mesh wall surfaces, the mesh wall surface The bottom surface, the top surface and the side surface are stacked by a plurality of ecological bags and have a plurality of outer edge wall surfaces, and the outer edge wall surfaces respectively correspond to the bottom surface, the top surface and the side surface of the mesh wall surface. The ecological bag comprises a gas permeable, water permeable bag body and a plant growth material filled in the bag body, and the bag bodies of the adjacent layers are fixed by the reinforcing layer to form the whole ecological bag into a whole. The reinforcing layer is solidified by cement or an adhesive; the reinforcing layer comprises a connecting layer, a reinforcing layer which is infiltrated into the bag body and solidified with the plant growth material. A connecting buckle is further disposed between the bag bodies of the adjacent layers, the connecting buckle includes a connecting plate and a protruding nail integrally formed on the connecting plate and the lower surface, and the connecting plate and the lower surface are fixed by the reinforcing layer, the protruding pin Corresponding to the bag body of the adjacent layer. Form No. A0101 Page 4 / Total 17 Page 0992061169-0 Further, the filling body is completely formed by the ecological bag stacked along the bottom surface of the cage to the top surface, and the ecological bags of the adjacent layers are stacked vertically and horizontally to form a whole body, each layer The width of the cages in the direction in which the plurality of elongated eco-bags are laid is the same, so that the exposed faces of the ecological bags are respectively formed on the outer wall surfaces of the bottom surface, the top surface and the side surfaces of the cage. Further, the filling body is completely formed by stacking the ecological bag along the bottom surface of the cage to the top surface, wherein at least one layer is laid in the longitudinal or transverse direction by two or more block-shaped ecological bags. Further, the filling body has a bottom layer, a top layer and an intermediate layer between the bottom layer and the top layer, and the bottom layer and the top layer are respectively laid together in parallel and close by a plurality of ecological bags, and the upper and lower sides are formed close to the bottom surface of the cage body. The outer edge wall surface of the top surface; the intermediate layer is formed by sequentially stacking a plurality of ecological bags along the side of the cage body to form an outer edge wall surface abutting the side surface of the cage body, so that the bottom layer, the top layer and the middle layer of the filling body form a closed space The space is filled with plant growth material or gravel. Each of the eco-bags in the bottom layer or the top layer is an elongated eco-bag having a length corresponding to the width of the cage in which the laying direction is the same; or at least one of the bottom layer or the top layer is laid in the longitudinal or transverse direction by two or Two or more block ecological bags are laid. The ecological bag of the intermediate layer is an elongated eco-bag, the length of the ecological bag is the same as the width of the cage with the laying direction; or the intermediate layer has at least one layer of two or more blocks along the laying direction. The ecological bag is laid. A slope retaining wall is formed by staggering and stacking the aforementioned ecological net cages, and another solid layer is arranged between adjacent ecological net cages, so that adjacent cage bodies and outer wall surfaces of the filling body pass through the fixing layer The fixing forms a whole. The invention has the advantages that: the ecological net cage is arranged in the cage body, and the form number A0101 is used to provide green vegetation and the water permeability is good, so that the ecological net cage is easy to move and the construction is convenient; The body is formed by stacking a plurality of ecological bags layer by layer and fixing by a reinforcing layer, and the overall strength is obviously enhanced, and the tensile strength is better, and the outer wall surface of the filling body can be combined with the cage mesh. The wall surface is closely attached to ensure that the side edges are flat and there is no dent phenomenon, which is beneficial for stacking into walls, and can make the fixing layer between adjacent ecological net cages more uniform, so that the overall wall is more stable, especially Even if the cage is damaged, the filler is still a whole, so that it does not cause collapse, effectively extending the life of the retaining wall. [Embodiment] [0004] 099135042 The present invention will be further described below in conjunction with the drawings and specific embodiments. Referring to the first to fourth figures, an ecological net cage 100 includes a cage 10 and a filler body 20 disposed in the cage 10. The cage 10 is a square body and can be woven by wire or wire. The wall is surrounded by a plurality of mesh walls including a bottom surface 11, a top surface 12, and a side surface 13. The filling body 20 is formed by stacking a plurality of ecological bags 21 layer by layer and has a plurality of outer edge wall faces 22, and each of the outer edge wall faces 22 respectively abuts against the bottom surface 11, the top surface 12 and the side surface 13 of the mesh wall surface. The ecological bag 21 includes a gas permeable, water permeable bag body 211 and a plant growth material 212 filled in the bag body 211, and the bag body 211 of the adjacent layer is solidified by a reinforcing layer 23 (for example, by cement or an adhesive). The solid bag 21 is integrally formed, so that the overall strength of the filling body is improved, and the outer wall surface 22 of the filling body is ensured to be flat, so that the stacking is convenient for forming the retaining wall, and the arrangement is arranged in the adjacent cage 10 The reinforcing layer makes the bag body 211 in the adjacent cage easier to fix, and the form number A0101 is 6th/17 pages 0992061169-0 201215744, thereby improving the firmness of the entire retaining wall. Of course, the present invention is more firmly combined. The reinforcing layer 23 includes a connecting layer 231 between adjacent layers, a reinforcing layer 232 that is infiltrated in the bag body 211 and solidified with the plant growth material 212, since the bag body 211 It is breathable and permeable, so when the cement or the dry agent is applied to the bag body 211 in a liquid state during stacking, part of the liquid cement or adhesive enters the ecological bag 21 through the bag body 211, thereby allowing the bag to be infiltrated into the bag body. The liquid cement or adhesive in 211 will solidify with the plant growth material to form a reinforcing layer 232 (only one layer is shown in the figure). In order to make the filling body 20 stronger and more resistant, the filling body 20 is completely formed by the ecological bag 21 along the bottom surface 11 to the top surface 12 of the cage 10. The ecological bags 21 of the adjacent layers are stacked vertically and horizontally to form a Integrally, each layer is laid by a plurality of elongated eco-bags 21 in parallel and close together, and the length of each eco-bag 21 corresponds to the width of the cage 10 in the direction in which it is laid, which can effectively ensure the overall stacking strength, and The exposed surfaces of the ecological bag 21 can respectively form an outer edge wall 22 which is close to the bottom surface 11 of the cage body, the top surface 12 and the side surface 12. In combination with the fourth figure, the ecological cage of the present embodiment is prepared as follows: The cage 10 is then placed on the bottom surface 11 of the cage to lay a plurality of elongated eco-bags 21 in parallel and close to each other to form a first layer A1, and the laying direction is as indicated by X; the length of the elongated eco-bag 21 can be The size of the cage is customized to ensure that each elongate eco bag 21 has the same width as the cage of the laying direction (X mark); then a second A2 strip eco-bag is laid, which is opposite to the bottom of the eco bag. The bag is longitudinally laid as the Y mark, which The length is also the same as that of the first layer; therefore, the third layer A3·.. the Nth layer is pushed in this way to form a crisscross stacking situation until the topmost layer abuts the top surface 12 of the cage; the top surface 12 can be designed Open the cover structure, the top surface can be uncovered before making it, 099135042 Form No. A0101 Page 7 / Total 17 Page 0992061169-0 201215744 After the ecological bag is laid, the top surface can be covered, and there is no restriction here. Referring to the second figure, a connection buckle 3 is also provided between the ecological bags 21 of adjacent layers (such as the first layer A1 and the second layer Λ2) (only one layer is shown in the second figure with a connection buckle, actually The adjacent layer is added according to engineering requirements. The connecting buckle 30 includes a connecting plate 31 and a protruding pin 32 integrally formed on the upper surface and the lower surface of the connecting plate 31. The upper and lower surfaces of the connecting plate 31 are fixed by the reinforcing layer 23. The male nails 32 respectively correspond to the ecological bags 21 that are inserted into the adjacent layers; thus, the adjacent layers can be more firmly combined. As shown in the third figure, the slope retaining wall 2〇〇 is made up of 1生态 of various ecological net cages (of course, to make it more stable. Overlay..,,..,::. can be staggered and stacked) Between the adjacent ecological net cages 10, there is a fixing layer 3 〇〇, so that the adjacent cage body 10 and the outer wall surface 22 of the filling body 20 are fixed by the fixing layer 3 to form a whole. Since the ecological bag 21 in the filling body 20 can be relied on the cage 1 , the adjacent ecological net cages can be closely attached together, so that the fixing layer 300 can well adjacent the cages. 10 is fixed with the ecological bag 21; in other words, because the filling body d in the ecological net cage 100 is stacked by the ecological bag 21 layer by layer, the outer wall 22 is naturally flat, and the outer layer 3 is adjacent to the outer layer. In the ecological net cage 100, the outer wall surface 22 of the filling body 20 is fixed, thereby improving the firmness of the entire supporting wall. Therefore, after the slope 10 of the ecological net cage is broken, the slope 10 of the present invention is broken. Because the filling body 20 is still fixed together to form a whole, it will not cause collapse and effectively extend the service life of the retaining wall. Please refer to the fifth figure for the different embodiments of the filling body in the ecological net cage of the present invention; the filling body of the present embodiment is also completely formed by the ecological bag stacked along the bottom surface of the cage to the top surface, but the difference is that the first use The long strip 21 is laid with the first layer A1 (same as the above embodiment), and then at the second layer A2 099135042 Form No. A0101 0992061169-0 Page 8 / Total 17 pages 201215744 The direction along the longitudinal direction x or the transverse γ is two One or more blocks of ecological bags 21' are laid, and other layers can be laid according to actual needs. Different types of ecological bags can be laid; of course, the first layer of rafts 1 can also be laid with a block ecological bag 21', including filling The ecological bags of all layers in the body are laid and stacked by block ecological bags, which are not limited herein. The retaining wall stack of this embodiment is the same as the foregoing embodiment. Referring to FIG. 6 again, in another embodiment of the ecological cage 100 of the present invention, the filler body 20 has a bottom layer 201, a top layer 203, and an intermediate layer 202 between the bottom layer 201 and the top layer 203. 201 and the top layer 203 are respectively laid together in parallel and close by a plurality of elongated eco-bags 21, and the outer edge wall faces of the bottom surface 11 and the top surface 12 of the cage body are formed above: the intermediate layer 2 0 2 is along the cage The body side 13 sequentially stacks the ecological bag 21 to form an outer edge wall surface abutting the side surface 13 of the cage, and the length of each of the ecological bags 21 is the same as the width of the cage 10 in the laying direction thereof to ensure the overall stacking strength; The ecological bags 21 are fixed by a reinforcing layer 206. The bottom layer 201, the top layer 203 and the intermediate layer 202 of the filling body 20 define a confined space 204 filled with plant growth material or crushed stone 205; this can save the cost of the ecological bag and can be selected according to needs. . The above-mentioned ecological net cage may first lay the bottom layer 201, then lay the intermediate layer 202, and then fill the space of the bottom layer and the intermediate layer to fill the plant growth material or the gravel 205, and finally lay the top layer 203 to form a seal. The retaining wall is also stacked by the ecological net cage 100 in this embodiment, and then connected by an adhesive. The overall strength is slightly slightly better than the previous embodiment, but it is still more stable than the ordinary retaining wall. The eco-bag of the intermediate layer 202 can also be as described in the second embodiment, and has at least one layer of two or more block-shaped ecological bags laid along the laying direction, the bottom layer or 099135042 form number. Α0101 Page 9 of 17 0992061169-0 201215744 The top layer can also be laid with a block eco-bag, which is not limited here. The main point of the design of the invention is that the ecological cage can be placed in the cage to provide green vegetation and water permeability. A good filling body is formed by stacking a plurality of ecological bags layer by layer and fixing by a reinforcing layer, and the outer wall surfaces formed by the filling body can be closely attached to the mesh walls of the cage body, which can ensure The side edges are flat and there is no dent phenomenon, which is beneficial for stacking into walls, and can make the reinforcing layer between adjacent ecological net cages more uniform, so that the retaining wall is more stable, and after repeated tests, the overall strength is obviously higher than The ordinary retaining wall is more than doubled, and the life is increased, which is conducive to construction. The above is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention. Therefore, any minor modifications, equivalent changes, and modifications made to the above embodiments in accordance with the technical spirit of the present invention are still It is within the scope of the technical solution of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS [0005] The first figure is a schematic diagram of the overall structure of the ecological net cage of the present invention. The second figure is a schematic cross-sectional view of the ecological net cage of the present invention. The third figure is not intended to be used in the first embodiment of the present invention to stack the ecological net cages into a slope retaining wall structure. The fourth figure is a schematic diagram of the stacked state of the ecological bag in the ecological net cage of the present invention. 第五 The fifth figure is another embodiment of the ecological bag stacking in the ecological net cage of the present invention. The sixth figure is a schematic diagram of the overall structure of the ecological net cage of the present invention. [Main component symbol description] 099135042 Form number A0101 Page 10 of 17 0992061169-0 201215744
[0006] 10 籠體 100生態網籠 11底面 12頂面 13侧面 20填充體 200邊坡擋牆 2 01底層 202中間層 203頂層 204密閉空間 205碎石 206加固層 21生態袋 21’塊狀生態袋 211袋體 212植物生長材料 22外緣壁面 23加固層 231連接層 232加強層 30連接扣 300固接層 31連接板 32凸釘 A3第三層 A1第一層 A2第二層 099135042 表單編號A0101 第11頁/共17頁 0992061169-0[0006] 10 cage 100 ecological net cage 11 bottom surface 12 top surface 13 side 20 filler body 200 slope retaining wall 2 01 bottom layer 202 intermediate layer 203 top layer 204 confined space 205 gravel 206 reinforcement layer 21 ecological bag 21 'blocky ecology Bag 211 bag body 212 plant growth material 22 outer edge wall surface 23 reinforcement layer 231 connection layer 232 reinforcement layer 30 connection buckle 300 fixing layer 31 connection plate 32 nail A3 third layer A1 first layer A2 second layer 099135042 Form No. A0101 Page 11 of 17 page 0992061169-0