JP2016223264A - Slope protection appliance and slope protection method - Google Patents

Slope protection appliance and slope protection method Download PDF

Info

Publication number
JP2016223264A
JP2016223264A JP2015113651A JP2015113651A JP2016223264A JP 2016223264 A JP2016223264 A JP 2016223264A JP 2015113651 A JP2015113651 A JP 2015113651A JP 2015113651 A JP2015113651 A JP 2015113651A JP 2016223264 A JP2016223264 A JP 2016223264A
Authority
JP
Japan
Prior art keywords
bag
slope
mortar
slope protection
strength
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
JP2015113651A
Other languages
Japanese (ja)
Other versions
JP6495744B2 (en
Inventor
剛志 中村
Tsuyoshi Nakamura
剛志 中村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nisshoku Corp
Original Assignee
Nisshoku Corp
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 Nisshoku Corp filed Critical Nisshoku Corp
Priority to JP2015113651A priority Critical patent/JP6495744B2/en
Publication of JP2016223264A publication Critical patent/JP2016223264A/en
Application granted granted Critical
Publication of JP6495744B2 publication Critical patent/JP6495744B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Pit Excavations, Shoring, Fill Or Stabilisation Of Slopes (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a slope protection appliance and a slope protection method, which can successfully and definitely obtain berm effect due to hardening of a hardening material.SOLUTION: A slope protection appliance has a bag-like body 3a, which contains a hardening material that is hardened by water absorption or moisture absorption. Content filling amount of the bag-like body 3a that contains the hardening material is 80 to 160% when rough filling is considered 100%. The slope protection appliance has a net-like, mat-like or sheet-like member to which the bag-like body 3a is mounted. In a slope protection method to lay the slope protection appliance on a slope, the bag-like bodies 3a are penetrated by multiple fixing members that are installed on the slope.SELECTED DRAWING: Figure 1

Description

本発明は、例えば、法面等の斜面を保護するための斜面保護用具及び斜面保護方法に関する。   The present invention relates to a slope protection tool and a slope protection method for protecting slopes such as slopes, for example.

従来、基材を植生種子(緑化用植物の種子)とともに収容した袋状体51と、この袋状体51が複数装着されるネット状部材52とで構成される斜面保護用具(図10(A)参照)を法面(斜面)Nに設置する斜面保護工が実施されている。   Conventionally, a slope protection tool comprising a bag-like body 51 containing a base material together with vegetation seeds (greening plant seeds) and a net-like member 52 to which a plurality of the bag-like bodies 51 are attached (FIG. 10A). )) Is installed on the slope (slope) N.

この斜面保護工では、図10(B)に示すように、袋状体51によって堰止められて堆積した流亡土砂、周囲からの木の葉等により、袋状体51の山側に植生基盤53が小段状に形成され、この小段において植物が生長し易くなるいわゆる小段効果によって、緑化が早期にかつ良好に実現することとなる。すなわち、ここでいう小段効果とは、土砂が堆積することにより法面よりも勾配が緩い生育基盤層が小段状に形成され、この小段において植物が生長し易くなる効果をいう。   In this slope protection work, as shown in FIG. 10 (B), a vegetation base 53 is formed in a step-like shape on the mountain side of the bag-like body 51 due to the washed away sediment accumulated by the bag-like body 51 and leaves from the surroundings. The so-called stage effect that makes it easy for plants to grow in this stage is realized early and well. In other words, the stage effect referred to here is an effect that a growth base layer having a gentler slope than the slope is formed in a step shape due to the accumulation of earth and sand, and plants easily grow in this step.

しかし、この斜面保護工で用いる袋状体51内の基材は、有機質やバーミキュライトを主体として配合され、時間の経過とともに有機質が消耗されたりバーミキュライトが収縮したりし、施工環境によっては、基材の激しい目減りが生じる場合がある。そして、この場合、この目減りに伴って、法面Nとこの法面Nに設置した斜面保護用具の袋状体51との間に生じた隙間や袋状体51の上側から、小段を構成する植生基盤53が流亡・滑落し、袋状体51の山側に植生基盤53が形成されなくなり、その結果、小段効果が得られなくなるという問題がある。   However, the base material in the bag-like body 51 used in this slope protection work is mainly composed of organic matter and vermiculite, and the organic matter is consumed or vermiculite shrinks over time, and depending on the construction environment, the base material May cause loss of eyes. In this case, a small step is formed from the gap formed between the slope N and the bag-like body 51 of the slope protection tool installed on the slope N, or from the upper side of the bag-like body 51 in accordance with this reduction. There is a problem that the vegetation base 53 is washed away and slid down, and the vegetation base 53 is not formed on the mountain side of the bag-like body 51, and as a result, the step effect cannot be obtained.

そこで、袋状体に、吸水により硬化する硬化材料を充填することが考えられる(特許文献1)。降雨等により硬化材料が硬化すれば、袋状体51の形状が維持されるので、小段効果の損失の防止を図ることができる。   Therefore, it is conceivable to fill the bag-like body with a curing material that is cured by water absorption (Patent Document 1). If the curable material is cured by rain or the like, the shape of the bag-like body 51 is maintained, so that it is possible to prevent the loss of the step effect.

特開2007−56606号公報JP 2007-56606 A

ところで、袋状体51に対する硬化材料の充填量が多すぎると、強度面では良好となるものの、袋状体51の柔軟性が失われ法面Nへ追随しづらくなり、材料コストも余分に必要となる。反対に、充填量が少なすぎると、法面Nへの馴染みは良くなるが、袋状体51中に空隙が発生し、硬化材料の硬化時に袋状体51と一体化しない等の理由で密実な硬化体が得られず強度不足に陥るという問題がある。   By the way, when the filling amount of the curable material to the bag-like body 51 is too large, the strength is improved, but the flexibility of the bag-like body 51 is lost and it is difficult to follow the slope N, and an extra material cost is required. It becomes. On the other hand, if the filling amount is too small, the familiarity with the slope N is improved, but a gap is generated in the bag-like body 51, and it is not integrated with the bag-like body 51 when the cured material is cured. There is a problem that an actual cured body cannot be obtained and the strength is insufficient.

本発明は上述の事柄に留意してなされたもので、その目的は、硬化材料の硬化による小段効果を良好かつ確実に得ることができる斜面保護用具及び斜面保護方法を提供することにある。   The present invention has been made in consideration of the above-described matters, and an object of the present invention is to provide a slope protection tool and a slope protection method capable of obtaining a good and reliable step effect by hardening of a hardening material.

上記目的を達成するために、本発明に係る斜面保護用具は、吸水または吸湿により硬化する硬化材料を収容した袋状体を具備し、該袋状体に対する前記硬化材料を含む収容物の充填量が、粗充填時を100%としたときに80〜160%である(請求項1)。   In order to achieve the above object, a slope protection tool according to the present invention comprises a bag-like body that contains a curable material that is hardened by water absorption or moisture absorption, and a filling amount of the container containing the curable material in the bag-like body. Is 80 to 160% when the rough filling time is 100% (claim 1).

上記斜面保護用具が、前記袋状体が複数装着されるネット状又はマット状又はシート状の部材を備えていてもよい(請求項2)。   The slope protecting tool may include a net-like, mat-like, or sheet-like member on which a plurality of the bag-like bodies are mounted (Claim 2).

上記斜面保護用具が、前記部材として、少なくとも植物種子を分散保持するシート状部材を備えていてもよい(請求項3)。   The slope protection tool may include, as the member, a sheet-like member that disperses and holds at least plant seeds (Claim 3).

一方、上記目的を達成するために、本発明に係る斜面保護方法は、請求項2又は3に記載の斜面保護用具を斜面に敷設する斜面保護方法であって、各前記袋状体が、斜面に打設される複数の固定部材によって貫かれた状態となるようにする(請求項4)。   On the other hand, in order to achieve the above object, a slope protection method according to the present invention is a slope protection method in which the slope protection tool according to claim 2 or 3 is laid on a slope, wherein each bag-like body is a slope. It is made to be in a state of being penetrated by a plurality of fixing members that are placed on the surface (claim 4).

本願発明では、硬化材料の硬化による小段効果を良好かつ確実に得ることができる斜面保護用具及び斜面保護方法が得られる。   In this invention, the slope protection tool and slope protection method which can acquire the step effect by hardening of a hardening material favorable and reliably are obtained.

すなわち、本願の各請求項に係る発明の斜面保護用具では、袋状体に対する収容物の充填量を適宜設定したことにより、強度面でも斜面への追随性でも非常に優れた袋状体が得られ、これにより、袋状体に収容された硬化材料の硬化による小段効果を良好かつ確実に得ることができる。   That is, in the slope protection device of the invention according to each claim of the present application, a bag-like body that is very excellent in strength and follow-up to the slope can be obtained by appropriately setting the filling amount of the contents in the bag-like body. Thereby, the step effect by hardening of the hardening material accommodated in the bag-like body can be obtained satisfactorily and reliably.

請求項2、3に係る発明の斜面保護用具では、袋状体の設置の簡略化を図ることが可能となる。   In the slope protecting tool of the invention according to claims 2 and 3, it is possible to simplify the installation of the bag-like body.

請求項4に係る発明の斜面保護方法では、固定部材を打設する際、各袋状体を複数の固定部材で貫くようにしておくことにより、硬化材料の硬化後には各袋状体が複数の固定部材と強固に連結されて一体構造になるので、袋状体の安定に伴って斜面の保護の一層の強化を図ることができる。   In the slope protecting method of the invention according to claim 4, when the fixing member is driven, each bag-like body is penetrated by a plurality of fixing members, so that a plurality of bag-like bodies are provided after the hardening material is cured. Therefore, the protection of the slope can be further enhanced with the stability of the bag-like body.

本発明の一実施の形態に係る斜面保護用具の構成を概略的に示す斜視図である。It is a perspective view which shows roughly the structure of the slope protection tool which concerns on one embodiment of this invention. 前記斜面保護用具のモルタル袋の袋状体の構成を概略的に示す説明図である。It is explanatory drawing which shows roughly the structure of the bag-like body of the mortar bag of the said slope protection tool. (A)及び(B)は、法面に敷設された前記斜面保護用具の状態の変化を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the change of the state of the said slope protection tool laid in the slope. (A)及び(B)は、前記袋状体の変形例の形成前及び形成後の構成を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the structure before and after formation of the modification of the said bag-shaped body. (A)及び(B)は、前記袋状体の他の変形例の形成前及び形成後の構成を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the structure before and after formation of the other modification of the said bag-shaped body. (A)及び(B)は、各々前記袋状体のさらに他の変形例の構成を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the structure of the further another modification of the said bag-shaped body, respectively. 前記斜面保護用具の別の変形例の構成を概略的に示す説明図である。It is explanatory drawing which shows roughly the structure of another modification of the said slope protection tool. (A)及び(B)は、法面に敷設された図7の斜面保護用具の状態の変化を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the change of the state of the slope protection tool of FIG. 7 laid in the slope. (A)及び(B)は、各々前記斜面保護用具の変形例の構成を概略的に示す説明図である。(A) And (B) is explanatory drawing which shows roughly the structure of the modification of the said slope protection tool, respectively. (A)及び(B)は、従来の斜面保護用具の構成を概略的に示す斜視図及び縦断面図である。(A) And (B) is the perspective view and longitudinal cross-sectional view which show schematically the structure of the conventional slope protection tool.

本発明の実施の形態について図面を参照しながら以下に説明する。   Embodiments of the present invention will be described below with reference to the drawings.

本実施の形態に係る斜面保護方法は、図1に示す斜面保護用具1を斜面の一例である法面N(図3(A)及び(B)参照)に敷設して、法面Nの保護及び緑化を図るためのものである。   In the slope protection method according to the present embodiment, the slope protection tool 1 shown in FIG. 1 is laid on a slope N (see FIGS. 3A and 3B) as an example of the slope to protect the slope N. And for greening.

斜面保護用具1は、図1に示すように、略矩形状を呈するネット状部材2と、このネット状部材2に保持(装着)されるモルタル袋3及び基材袋4を具備する。   As shown in FIG. 1, the slope protecting tool 1 includes a net-like member 2 having a substantially rectangular shape, and a mortar bag 3 and a base bag 4 held (attached) to the net-like member 2.

ネット状部材2は、長手方向に適宜間隔で収容部5を有する。ここで、本例のネット状部材2は、例えば横幅が1m、縦の長さが5〜10mの部材であり、収容部5は縦方向に30cm間隔で設けられている。すなわち、図1には、ネット状部材2(斜面保護用具1)の一部のみが表れている。そして、各収容部5には、モルタル袋3又は基材袋4が単独で収容される。図1に示す例では、二つに一つの収容部5にモルタル袋3が収容され、残りの収容部5に基材袋4が収容されている。なお、収容部5は、モルタル袋3又は基材袋4を収容することができる程度の大きさを有する袋状、筒状あるいはポケット状に形成され、各袋3,4は収容部5の一端側からその内部に挿入され、これにより、各袋3,4はネット状部材2によって保持されることになる。   The net-like member 2 has accommodating portions 5 at appropriate intervals in the longitudinal direction. Here, the net-like member 2 of this example is a member having a horizontal width of 1 m and a vertical length of 5 to 10 m, for example, and the accommodating portions 5 are provided at intervals of 30 cm in the vertical direction. That is, FIG. 1 shows only a part of the net-like member 2 (the slope protecting tool 1). And in each accommodating part 5, the mortar bag 3 or the base material bag 4 is accommodated independently. In the example shown in FIG. 1, the mortar bag 3 is accommodated in one of the two accommodating portions 5, and the base material bag 4 is accommodated in the remaining accommodating portion 5. The accommodating part 5 is formed in a bag shape, cylindrical shape or pocket shape having a size that can accommodate the mortar bag 3 or the base material bag 4, and each bag 3, 4 is one end of the accommodating part 5. The bag 3 is inserted into the inside from the side, whereby the bags 3 and 4 are held by the net-like member 2.

なお、ネット状部材2は、耐久性に富む繊維(例えばナイロンやポリエステル、アラミド、カーボン、ガラス、ポリアセタール等の繊維)あるいは腐食性繊維(例えば椰子等の繊維)を用いて、目合い5〜10mm程度に成形したものであり、これら両者(耐久性に富む繊維と腐食性繊維)を重ね合わせてもよい。さらに、強度向上のために、ネット状部材2に金網(例えば、亀甲金網やラス金網)を重ね合わせてもよい。   The net-like member 2 is made of a highly durable fiber (for example, a fiber such as nylon, polyester, aramid, carbon, glass, polyacetal) or a corrosive fiber (for example, a fiber such as insulator), and has a mesh size of 5 to 10 mm. These may be formed to the extent that both of these (durable fibers and corrosive fibers) may be superposed. Furthermore, a wire mesh (for example, a turtle shell wire mesh or a lath wire mesh) may be superimposed on the net-like member 2 in order to improve the strength.

モルタル袋3は、両端が閉塞された細長い筒状を呈する袋状体3aに、吸水により硬化するドライモルタル(硬化材料の一例)3bを収容したものであり、袋状体3a内に空隙を生じる材料(例えば肥料成分の溶出等によって経時的に目減りする基材のような材料)は収容していないので、高強度化を図ることができる。なお、本例のドライモルタル3bは、セメントに粒状の砂を骨材として混合したものであるが、ドライモルタル3bを構成する骨材には、砂に限らずバーミキュライトやパーライト(軽石)等を用いることができる。袋状体3aへの収容物は、吸水または吸湿により硬化する硬化材料のみか、または前記硬化材料を骨材のみと混合して収容することで、強度の高い硬化袋とすることができる。また、ドライモルタルに例えばスチールファイバー等の補強材を混合し、硬化後のモルタル袋3の強度向上効果が得られるようにしてもよい。   The mortar bag 3 contains a dry mortar (an example of a cured material) 3b that is cured by absorbing water in a bag-like body 3a that has an elongated cylindrical shape whose both ends are closed, and creates a void in the bag-like body 3a. Since no material (for example, a material such as a base material that decreases over time due to elution of fertilizer components, etc.) is not accommodated, high strength can be achieved. The dry mortar 3b of this example is obtained by mixing granular sand with cement as an aggregate. However, the aggregate constituting the dry mortar 3b is not limited to sand, and vermiculite, perlite (pumice), or the like is used. be able to. The items contained in the bag-like body 3a can be made of a hardened bag having high strength by containing only the hardened material that is hardened by water absorption or moisture absorption or by mixing the hardened material with only the aggregate. Further, for example, a reinforcing material such as steel fiber may be mixed with the dry mortar so as to obtain an effect of improving the strength of the mortar bag 3 after curing.

ここで、袋状体3aに対する収容物の充填量は、粗充填時を100%としたときに重量比で80〜160%となるようにする。粗充填とは、袋状体3a内に収容物を自然落下させて充填することであり、一般的に「ゆるみかさ密度」を測定するときに使用される方法である。そして、袋状体3aに対する収容物の充填量が160%を上回ると、強度面では良好となるものの、モルタル袋3の柔軟性が失われ法面Nへ追随しづらくなり、材料コストも余分に必要となる。反対に、充填量が80%を下回ると、モルタル袋3の法面Nへの馴染みは良くなるが、袋状体3a中に空隙が発生し、硬化材料の硬化時に袋状体3aと一体化しない等の理由で密実な硬化体が得られず強度不足に陥る(下記表1参照)。   Here, the filling amount of the contents into the bag-like body 3a is set to 80 to 160% by weight when the rough filling time is 100%. Coarse filling is a method of naturally dropping the contents in the bag-like body 3a and filling the bag-shaped body 3a, and is a method generally used when measuring the “loose bulk density”. And when the filling amount of the contents in the bag-like body 3a exceeds 160%, the strength is improved, but the flexibility of the mortar bag 3 is lost and it becomes difficult to follow the slope N, and the material cost is also extra. Necessary. On the other hand, when the filling amount is less than 80%, the familiarity of the mortar bag 3 with the slope N is improved, but voids are generated in the bag-shaped body 3a and are integrated with the bag-shaped body 3a when the curable material is cured. For example, a solid cured body cannot be obtained and the strength is insufficient (see Table 1 below).

Figure 2016223264
Figure 2016223264

例えば、ドライモルタル3bとして、セメント:砂が1:2(重量比)の材料を用いる場合には、上記充填量が128%程度になるようにすると、強度面でも法面Nへの追随性の面でも非常に優れたモルタル袋3が得られることになる。   For example, when a material having a cement: sand ratio of 1: 2 (weight ratio) is used as the dry mortar 3b, if the filling amount is about 128%, the strength N can follow the slope N. The mortar bag 3 which is very excellent also in terms of surface is obtained.

また、モルタル袋3を構成する袋状体3aは、図2に示すように、内袋体6及び外袋体7よりなる二重構造を有し、これら二つの袋体6,7間に、袋状体3aの長手方向の強度を増すためのシート状の高強度繊維8が配置されている。ここで、高強度繊維8は袋状体3aの少なくとも長手方向に使用されていて、この高強度繊維8によって袋状体3aの長手方向の強度が増すことになる。なお、高強度繊維8は、袋体6,7の何れか一方又は両方に接合(例えば熱融着や接着)や連結(例えば縫合)等されていてもよいし、両者6,7の間に挿入されているだけでもよい。一方、内袋体6は外袋体7内に挿入されているだけでもよいし、外袋体7に直接又は高強度繊維8を介して間接的に例えば接合や連結等されていてもよい。内袋体6が外袋体7内に挿入されているだけの場合には、例えば内袋体6内にドライモルタル3bを収容した後、この内袋体6の外側に外袋体7を被せるようにすればよい。   Further, as shown in FIG. 2, the bag-like body 3a constituting the mortar bag 3 has a double structure composed of the inner bag body 6 and the outer bag body 7, and between these two bag bodies 6, 7, Sheet-like high-strength fibers 8 for increasing the strength in the longitudinal direction of the bag-like body 3a are arranged. Here, the high-strength fibers 8 are used at least in the longitudinal direction of the bag-shaped body 3a, and the strength in the longitudinal direction of the bag-shaped body 3a is increased by the high-strength fibers 8. The high-strength fibers 8 may be joined (for example, heat fusion or adhesion) or connected (for example, stitched) to either one or both of the bags 6 and 7. It may just be inserted. On the other hand, the inner bag body 6 may be inserted only into the outer bag body 7, or may be joined or connected to the outer bag body 7 directly or indirectly via the high-strength fibers 8. When the inner bag body 6 is merely inserted into the outer bag body 7, for example, after the dry mortar 3 b is accommodated in the inner bag body 6, the outer bag body 7 is put on the outside of the inner bag body 6. What should I do?

ここで、袋体6,7は、ドライモルタル3bを通さず、かつ、透水性を有するシート状体を用いて形成することができ、その素材としては、例えば、不織布、フェルト、布(織布)、編織物、ジュート布、水分解性プラスチック、薄綿などが挙げられる。   Here, the bag bodies 6 and 7 can be formed using a sheet-like body that does not pass through the dry mortar 3b and has water permeability. Examples of the material include nonwoven fabric, felt, and cloth (woven fabric). ), Knitted fabrics, jute fabrics, water-decomposable plastics, and thin cotton.

また、高強度繊維8の素材には、産業資材用として高強力となるように製造されたポリエチレン、ポリエステル、ナイロン、ビニロンなどの合成繊維や高強力のガラス繊維、炭素繊維、アラミド繊維などが使用される。   The high-strength fiber 8 is made of synthetic fibers such as polyethylene, polyester, nylon, and vinylon, which are manufactured to be high strength for industrial materials, and high-strength glass fibers, carbon fibers, and aramid fibers. Is done.

基材袋4は、両端が閉塞された細長い筒状を呈する袋状体4aに基材4bを収容したものである。袋状体4aは、基材4bを通さず、透水性を有するシート状体を用いて形成することができ、その素材には、袋体6,7と同じ素材を用いることができる。基材4bは、例えば緑化用植物の種子(植生種子)、生育補助材(保水材、肥料等)または土壌改良材等から適宜に選択されたものを含む植生基材であってもよいし、その他の通常基材であってもよく、さらに、植生基材および通常基材を混合したものであってもよい。前記植生基材としては、例えば、バーミキュライトを主体として配合され植生種子を含んでいるものや、表土シードバンクを含み、具体的には、斜面保護対象地(緑化対象地)の近傍の地山や森林等の植生種子を含んでいる表土にピートモス、バーク堆肥や保水材など生育補助材を適宜混合してなるものが挙げられる。この場合、確実に筋状に植物を導入可能となる。また、前記通常基材としては、ウッドチップ、農水産廃棄物(貝殻、蟹殻、果実屑など)、製紙スラッジ等の植生に害を及ぼすことの無い材料から適宜に選択されたものを含む基材が挙げられる。   The base material bag 4 is obtained by housing the base material 4b in a bag-like body 4a having an elongated cylindrical shape whose both ends are closed. The bag-like body 4a can be formed using a sheet-like body having water permeability without passing through the base material 4b, and the same material as the bag bodies 6 and 7 can be used as the material thereof. The base material 4b may be a vegetation base material including, for example, a seed selected from a plant for greening (vegetation seeds), a growth auxiliary material (water retention material, fertilizer, etc.) or a soil improvement material, etc. Other normal base materials may be used, and further, a vegetation base material and a normal base material may be mixed. Examples of the vegetation base material include those containing vegetation seeds mainly composed of vermiculite, and a topsoil seed bank. Specifically, a natural ground in the vicinity of a slope protection target area (greening target area) Examples include those obtained by appropriately mixing growth aids such as peat moss, bark compost and water retention material with topsoil containing vegetation seeds such as forests. In this case, the plant can be surely introduced in a streak shape. In addition, the normal base material includes a base material appropriately selected from materials that do not harm vegetation such as wood chips, agricultural and fishery waste (shells, rice husks, fruit wastes, etc.), paper sludge, etc. Materials.

そして、この実施形態の斜面保護方法は、図3(A)に示すように、斜面保護用具1を法面Nに敷設するだけで完了する。なお、斜面保護用具1を敷設するには、例えばアンカーピン等の固定部材9の打設によって斜面保護用具1を法面Nに固定すればよい。また、法面Nに対して、各袋3,4が等高線に沿うように斜面保護用具1を敷設することが、各袋3,4の山側に堆積した土にも植物が根付き、緑化をより早期にかつ良好に図ることができる前記小段効果が得られる点で望ましく、さらに、景観向上の点でも望ましい。モルタル袋3は、等高線上の配置に加えて、等高線と直交するように配置し、交点に固定部材9を打設して格子状に連結してもよい(図示せず)。そうすることで、より法面Nの保護効果の高い工法とすることができる。   And the slope protection method of this embodiment is completed only by laying the slope protection tool 1 on the slope N as shown in FIG. In order to lay the slope protecting tool 1, the slope protecting tool 1 may be fixed to the slope N by placing a fixing member 9 such as an anchor pin. In addition, laying the slope protection tool 1 on the slope N so that the bags 3 and 4 are along the contour line, the plant is rooted in the soil accumulated on the mountain side of the bags 3 and 4, and the greening is further improved. It is desirable in terms of obtaining the above-described step effect that can be achieved quickly and favorably, and is also desirable in terms of landscape improvement. In addition to the arrangement on the contour line, the mortar bag 3 may be arranged so as to be orthogonal to the contour line, and the fixing member 9 may be placed at the intersection to be connected in a lattice shape (not shown). By doing so, it can be set as the construction method with the higher protection effect of the slope N.

上記のように法面Nに敷設された斜面保護用具1の各袋3,4は、自重により法面Nに隙間無く沿った状態で配置される。すなわち、各袋3,4は、法面Nに凹凸があってもそれに沿わせて張設することができる程度以上の柔軟性を有している。このことは、ネット状部材2についても同様である。   The bags 3 and 4 of the slope protecting tool 1 laid on the slope N as described above are arranged in a state along the slope N without a gap by their own weight. In other words, each of the bags 3 and 4 has more flexibility than can be stretched along the slope N even if the slope N is uneven. The same applies to the net-like member 2.

そして、図3(A)に示すように、降雨等によるモルタル袋3内への水分の供給に伴ってドライモルタル3bは硬化する。このようにドライモルタル3bが硬化した後は、モルタル袋3はその形状を維持し、これにより、モルタル袋3の法面Nへの密接状態は保持されるので、図3(B)に示すように、このモルタル袋3の山側に流亡土砂が堆積するなどして植生基盤10が確実に形成され、上述の小段効果が得られる。そして、本例では、上述のように、袋状体3aに対する収容物の充填量を考慮してあるので、斯かる小段効果を良好かつ確実に得ることができる。   And as shown to FIG. 3 (A), the dry mortar 3b hardens | cures with supply of the water | moisture content in the mortar bag 3 by rainfall etc. FIG. After the dry mortar 3b is cured in this way, the mortar bag 3 maintains its shape, thereby maintaining the close contact state of the mortar bag 3 with the slope N, as shown in FIG. 3 (B). In addition, the vegetation base 10 is reliably formed, for example, by sedimentation of runaway earth and sand on the mountain side of the mortar bag 3, and the above-mentioned step effect is obtained. And in this example, since the filling amount of the stored thing with respect to the bag-shaped body 3a is considered as mentioned above, such a step effect can be acquired favorably and reliably.

特に、固定部材9を打設する際、一本のモルタル袋3が複数の固定部材9で貫かれた状態となるようにしておくことにより、ドライモルタル3bの硬化後にはモルタル袋3が固定部材9の頭部と強固に連結され一体構造になるので、ネット状部材2の縦横の両方向の補強効果も得られる。この場合、鹿の踏み荒らしからの保護効果も高まる。ここで、本例のネット状部材2は、ラッセル編み(鎖編み)によって得られたものであり、横方向の強度は縦方向の強度よりも劣り、そのために横方向にずれ(伸び)やすくなっているが、この横方向の強度はドライモルタル3bが硬化した後のモルタル袋3によって大幅に補強されることになり、モルタル袋3で法面Nをしっかり押さえることで、ネット状部材2の伸縮性が制限され、法面N表層の保護機能が向上することにもなる。すなわち、斜面保護用具1を展開し、固定部材9で固定するのみで、法面Nの転石落下の初動を効果的に抑制することができ、それに起因する小崩落を防止できる。故に、斜面保護用具1は、小落石の崩壊が生じやすい法面Nや侵食を生じやすい法面Nに用いて好適であり、法面Nの凍上抑制にも資するものとなり、本実施形態の斜面保護方法は緑化(斜面保護)基礎工として適用可能なものとなる。   In particular, when the fixing member 9 is placed, the mortar bag 3 is fixed to the fixing member 9 after the dry mortar 3b is cured by keeping the single mortar bag 3 penetrated by the plurality of fixing members 9. Since it is firmly connected to the head 9 and has an integrated structure, the reinforcing effect in both the vertical and horizontal directions of the net-like member 2 can be obtained. In this case, the protection effect from deer trolling is also increased. Here, the net-like member 2 of this example is obtained by Russell knitting (chain knitting), and the strength in the horizontal direction is inferior to the strength in the vertical direction. However, the strength in the lateral direction is greatly reinforced by the mortar bag 3 after the dry mortar 3b is hardened. By firmly holding the slope N with the mortar bag 3, the expansion and contraction of the net-like member 2 is achieved. Therefore, the protective function of the slope N surface layer is also improved. That is, only by unfolding the slope protection tool 1 and fixing with the fixing member 9, the initial movement of the falling of the slope N on the slope N can be effectively suppressed, and the small collapse resulting therefrom can be prevented. Therefore, the slope protection tool 1 is suitable for use on the slope N where the fall of rock falls is likely to occur and the slope N where erosion is likely to occur, and also contributes to the suppression of frost heave on the slope N. The protection method can be applied as a greening (slope protection) foundation work.

上記のように斜面保護用具1を法面Nに敷設する斜面保護方法を実施することにより、基材袋4内に収容された基材4b中の植生種子が発芽・生長し、より積極的な緑化を行うことができる。また、斜面保護用具1に植物種子が含まれていない場合であっても、モルタル袋3の山側に小段状に形成された植生基盤10において周辺植生からの飛来種子を効果的に捕捉することができ、植物が発芽・生長する。従って、法面Nの緑化被覆が略全面にわたって確実になされることとなる。   By implementing the slope protection method in which the slope protection tool 1 is laid on the slope N as described above, the vegetation seeds in the base material 4b accommodated in the base material bag 4 germinate and grow, and are more active. Greening can be performed. Even when the slope protection tool 1 does not contain plant seeds, it is possible to effectively capture the flying seeds from the surrounding vegetation in the vegetation base 10 formed in a step shape on the mountain side of the mortar bag 3. The plant will germinate and grow. Therefore, the greening coating of the slope N is surely performed over substantially the entire surface.

しかも、モルタル袋3のドライモルタル3bによって形成されるモルタルの圧縮強度は高いが曲げ強度は小さく、故に硬化後のモルタルは割れやすいという問題があるが、袋状体3aの強度を高める高強度繊維8によってモルタルが割れ難くなっている。また、モルタル袋3の袋状体3aが分厚くて袋状体3aの内部にまで水が十分に浸透しなかったり、モルタル袋3への水分の供給量が少なかったりしてドライモルタル3bが十分に硬化しなくても、袋状体3aは高強度繊維8によって保形可能である。   Moreover, although the mortar formed by the dry mortar 3b of the mortar bag 3 has a high compressive strength but a low bending strength, there is a problem that the mortar after curing is easily broken, but there is a problem that the high strength fiber that increases the strength of the bag 3a. 8 makes it difficult to break the mortar. Further, the bag-like body 3a of the mortar bag 3 is thick and water does not sufficiently penetrate into the bag-like body 3a, or the amount of water supplied to the mortar bag 3 is small, so that the dry mortar 3b is sufficient. Even if it is not cured, the bag-like body 3a can be retained by the high-strength fibers 8.

また、本例の斜面保護用具1では、モルタル袋3の袋状体3aにおいて、高強度繊維8を内袋体6と外袋体7とで挟み込むようにしているので、モルタル袋3にドライモルタル3bを収容するときに高強度繊維8が剥離することを防止することができる上、袋状体3aの三層構造内に空間が形成されることにより水分の保持性能が上昇し、モルタルの養生効果が高まること(高強度化)を期待することもできる。   Moreover, in the slope protection tool 1 of this example, since the high strength fibers 8 are sandwiched between the inner bag body 6 and the outer bag body 7 in the bag-like body 3a of the mortar bag 3, the mortar bag 3 is dry mortar. It is possible to prevent the high-strength fibers 8 from being peeled when the 3b is accommodated, and the moisture retention performance is improved by forming a space in the three-layer structure of the bag-like body 3a, thereby curing the mortar. It can also be expected that the effect will increase (higher strength).

なお、本発明は、上記の実施の形態に何ら限定されず、本発明の要旨を逸脱しない範囲において種々に変形して実施し得ることは勿論である。例えば、以下のような変形例を挙げることができる。   In addition, this invention is not limited to said embodiment at all, Of course, it can change and implement variously in the range which does not deviate from the summary of this invention. For example, the following modifications can be given.

前記斜面保護方法を実施する際、予め一体化された斜面保護用具1を法面Nに敷設してもよいが、例えば、各袋3,4を装着していない状態の斜面保護用具1を法面Nに配置した後、各袋3,4を収容部5内に挿入してもよく、この場合には、斜面保護用具1が軽量化し、法面Nまでの運搬を少人数で行うことができる。   When the slope protection method is performed, the slope protection tool 1 integrated in advance may be laid on the slope N. For example, the slope protection tool 1 in a state where the bags 3 and 4 are not mounted is legal. After the arrangement on the surface N, the bags 3 and 4 may be inserted into the housing part 5. In this case, the slope protection tool 1 can be reduced in weight and transported to the slope N with a small number of people. it can.

また、各袋3,4は、図1に示すような細長い袋状となっているものに限られず、例えば、縦横の比率がほぼ同じである袋状であってもよい。この場合、各袋3,4を保持するネット状部材2の収容部5の構成も、各袋3,4にあわせて適宜に変更すればよい。   Moreover, each bag 3 and 4 is not restricted to what has become the elongate bag shape as shown in FIG. 1, For example, the bag shape whose aspect ratio is substantially the same may be sufficient. In this case, the configuration of the accommodating portion 5 of the net-like member 2 that holds the bags 3 and 4 may be appropriately changed according to the bags 3 and 4.

ネット状部材2の下側に、例えばスフ薄綿、パルプ繊維、合成樹脂等の生分解性素材、可溶性素材または水解性素材を用いて形成され、水および植物の芽や根を通すように構成されたシート状部材(図示していない)を貼着等適宜の手段により設けてもよい。この場合、前記シート状部材の下面に、植生種子、肥料、土壌改良材、保水材等から適宜に選択されたものを含む植生基材を水溶性糊材によって付着し、これにより、シート状部材が前記植生基材を担持した状態となるように構成することが望ましい。前記シート状部材は、レーヨン製の薄綿を薄く延ばして形成することもできる。   The net-like member 2 is formed using, for example, biodegradable material such as soft cotton, pulp fiber, synthetic resin, soluble material or water-degradable material, and is configured to pass water and plant buds and roots. The formed sheet-like member (not shown) may be provided by appropriate means such as sticking. In this case, a vegetation base material, which is appropriately selected from vegetation seeds, fertilizers, soil improvement materials, water retention materials, and the like, is attached to the lower surface of the sheet-like member with a water-soluble paste material. It is desirable that the vegetation base material be supported. The sheet-like member may be formed by thinly extending a thin rayon cotton.

なお、前記シート状部材とネット状部材2とを貼着等によって直接固定してもよいが、例えば、シート状部材とネット状部材2とを法面N上に積層状態で配置した後、アンカーピン等の固定部材9の打設を行うことにより、両者を法面Nに敷設してもよい。   The sheet-like member and the net-like member 2 may be directly fixed by sticking or the like. For example, after the sheet-like member and the net-like member 2 are arranged on the slope N in a laminated state, the anchor Both of them may be laid on the slope N by placing a fixing member 9 such as a pin.

その他、各袋3,4が装着される部材はネット状部材2に限らず、マット状又はシート状の部材であってもよい。また、ネット状部材2等を用いることにより、各袋3,4の設置の簡略化を図ることができるが、これに限らず、各袋3,4のみを設置するようにしてもよい。   In addition, the member on which the bags 3 and 4 are mounted is not limited to the net-like member 2 but may be a mat-like or sheet-like member. In addition, by using the net-like member 2 or the like, the installation of the bags 3 and 4 can be simplified, but not limited to this, only the bags 3 and 4 may be installed.

図1に示すネット状部材2には収容部5を設けているが、収容部5を設けず、例えば各袋3,4をロープや針金等でネット状部材2に縛り付けるようにしてもよい。   Although the accommodating part 5 is provided in the net-like member 2 shown in FIG. 1, the accommodating part 5 is not provided. For example, the bags 3 and 4 may be tied to the net-like member 2 with a rope or a wire.

斜面保護用具1を敷設することによって行う前記斜面保護方法は、斜面での実施に適したものであり、法面Nは斜面の一例であるが、例えば平地等において前記斜面保護方法を実施してもよいことは言うまでもない。ただし、前記小段効果が得られる等の点で、前記斜面保護方法は法面Nでの実施により適している。   The slope protection method performed by laying the slope protection tool 1 is suitable for implementation on a slope, and the slope N is an example of a slope. For example, the slope protection method is performed on a flat ground or the like. Needless to say. However, the slope protecting method is more suitable for implementation on the slope N in that the step effect is obtained.

図1に示す例では、二つに一つの収容部5にモルタル袋3が収容され、残りの収容部5に基材袋4が収容されているが、これに限らず、三つに一つの収容部5にモルタル袋3を収容し、残りの収容部5に基材袋4を収容したり、基材袋4を用いず全ての収容部5にモルタル袋3を収容したりするなど、モルタル袋3及び基材袋4を収容する比率は適宜変更可能である。   In the example shown in FIG. 1, the mortar bag 3 is accommodated in one of the two accommodating portions 5, and the base material bag 4 is accommodated in the remaining accommodating portion 5. The mortar bag 3 is accommodated in the accommodating part 5, the base material bag 4 is accommodated in the remaining accommodating part 5, or the mortar bag 3 is accommodated in all the accommodating parts 5 without using the base material bag 4. The ratio in which the bag 3 and the base material bag 4 are accommodated can be changed as appropriate.

上記実施形態では、袋状体3aにドライモルタル3bを収容したモルタル袋3を用いているが、これに限らず、例えば骨材を含まないドライセメント等のセメント系資材や石膏等、他の硬化材料を袋状体3aに収容してなる袋(硬化袋)をモルタル袋3に替えて用いてもよい。   In the said embodiment, although the mortar bag 3 which accommodated the dry mortar 3b in the bag-shaped body 3a is used, it is not restricted to this, For example, cement-type materials, such as dry cement which does not contain an aggregate, gypsum etc. A bag (cured bag) formed by containing the material in the bag-like body 3 a may be used in place of the mortar bag 3.

図2に示す袋状体3aは三層構造になっているが、これに限らず、例えば、内袋体6を無くして袋状体3aの内側に高強度繊維8が露出した状態となるようにしてもよいし、逆に、外袋体7を無くして袋状体3aの外側に高強度繊維8が露出した状態となるようにしてもよい。   Although the bag-like body 3a shown in FIG. 2 has a three-layer structure, the present invention is not limited to this. For example, the inner bag body 6 is eliminated and the high-strength fibers 8 are exposed inside the bag-like body 3a. Alternatively, conversely, the outer bag 7 may be eliminated and the high strength fibers 8 may be exposed on the outside of the bag 3a.

モルタル袋3の中には、鉄線や高強度繊維ロープなどの芯材を、ちょうちんスペーサーのようなスペーサーで中心を保ちつつ長手方向に配置してもよい(図示せず)。そうすることで、より強度の高いモルタル袋3とすることができ、法面Nに対する斜面保護用具1の敷設後、モルタル袋3のドライモルタル3bが硬化するまでの間や硬化後において、袋状体3aが法面Nに沿う状態を良好に維持することができるようにしてもよい。   In the mortar bag 3, a core material such as an iron wire or a high-strength fiber rope may be arranged in the longitudinal direction while keeping the center with a spacer such as a paper lantern spacer (not shown). By doing so, it can be set as the mortar bag 3 with higher strength, and after the slope protection tool 1 is laid on the slope N, the bag shape is used until or after the dry mortar 3b of the mortar bag 3 is cured. You may make it the body 3a maintain the state along the slope N favorably.

図2に示すモルタル袋3の袋状体3aには、高強度繊維8が内袋体6の外面及び外袋体7の内面全体を覆う筒状又は袋状に設けられているが、これに限らず、高強度繊維8は、袋状体3aの長手方向の強度を増すように構成されていればよい。従って、例えば図4(A)に示すように、シート状の外袋体7に対して高強度繊維8を縞状に固着し、同図(B)に示すように、高強度繊維8が内側になるように外袋体7を丸めて筒状とし、その縁を閉じて袋状体3aを形成するようにしてもよい。この形成過程で内袋体6を設けるようにしてもよいし、外袋体7ではなく内袋体6に高強度繊維8を設けるようにし、高強度繊維8が外側になるように内袋体6を丸めて筒状とするようにしてもよい。いずれにしても、形成後の袋状体3aにおいては、高強度繊維8は、袋状体3aの長手方向に延びる部分を有するので、袋状体3aの長手方向の強度が増すことになる。   In the bag-like body 3a of the mortar bag 3 shown in FIG. 2, the high-strength fibers 8 are provided in a cylindrical shape or bag shape covering the outer surface of the inner bag body 6 and the entire inner surface of the outer bag body 7. Not limited to this, the high-strength fibers 8 may be configured to increase the strength in the longitudinal direction of the bag-like body 3a. Therefore, for example, as shown in FIG. 4 (A), the high-strength fibers 8 are fixed to the sheet-like outer bag body 7 in a striped manner, and as shown in FIG. The outer bag body 7 may be rounded into a cylindrical shape so that the bag body 3a is formed by closing the edge. In this formation process, the inner bag body 6 may be provided, or the high strength fibers 8 are provided not in the outer bag body 7 but in the inner bag body 6 so that the high strength fibers 8 are on the outside. 6 may be rounded to form a cylinder. In any case, since the high strength fiber 8 has a portion extending in the longitudinal direction of the bag-shaped body 3a in the formed bag-shaped body 3a, the strength in the longitudinal direction of the bag-shaped body 3a is increased.

また、図4(A)及び(B)に示す変形例では、高強度繊維8は袋状体3aの長手方向に延びる部分のみを有しているが、袋状体3aの周方向に延びる部分を併せて有していてもよいのであり、その一例として、例えば図5(A)及び(B)に示すように、高強度繊維8を格子状とすることもできる。   4A and 4B, the high-strength fiber 8 has only a portion extending in the longitudinal direction of the bag-like body 3a, but a portion extending in the circumferential direction of the bag-like body 3a. As an example, for example, as shown in FIGS. 5A and 5B, the high-strength fibers 8 can be formed in a lattice shape.

また、高強度繊維8は、袋状体3aの長手方向の強度を増すことができる範囲で多様に設けることができ、例えば、図6(A)に示すように、矩形状の内袋体6又は外袋体7の対角線上を通るように設けたり、内袋体6又は外袋体7を筒状に丸めたときに高強度繊維8が螺旋状に延びるように設けたり(図6(B)参照)してもよい。   The high-strength fibers 8 can be variously provided within a range in which the strength in the longitudinal direction of the bag-like body 3a can be increased. For example, as shown in FIG. Or provided so that it may pass on the diagonal of the outer bag body 7, or when the inner bag body 6 or the outer bag body 7 is rolled up cylindrically, it provides so that the high strength fiber 8 may extend spirally (FIG. 6 (B ))).

降雨等によるモルタル袋3への水分の供給に伴って、モルタル袋3からモルタルが流出すると、このモルタルはアルカリ性であり、植生によっては悪影響を及ぼす場合がある。そこで、モルタル袋3から主にモルタル袋3の谷側にモルタルが流出することを考慮して、図7、図8(A)及び(B)に示すように、モルタル袋3の谷側に中和袋11を配置すれば、モルタル流出による植生への悪影響を抑制することができる。このような効果を確実に得るために、斜面保護用具1を法面Nに敷設する際、中和袋11がモルタル袋3の谷側に位置するように斜面保護用具1を配置するのが好ましい。   When the mortar flows out of the mortar bag 3 due to the supply of moisture to the mortar bag 3 due to rainfall or the like, the mortar is alkaline and may have an adverse effect depending on the vegetation. Therefore, considering that the mortar flows mainly from the mortar bag 3 to the valley side of the mortar bag 3, as shown in FIG. 7, FIG. 8 (A) and FIG. If the Japanese bag 11 is arrange | positioned, the bad influence to the vegetation by mortar outflow can be suppressed. In order to reliably obtain such an effect, it is preferable to arrange the slope protection tool 1 so that the neutralization bag 11 is located on the valley side of the mortar bag 3 when the slope protection tool 1 is laid on the slope N. .

中和袋11は、両端が閉塞された細長い筒状を呈する袋状体11aにアルカリ中和剤11bを収容したものである。袋状体11aは、アルカリ中和剤11bを通さず、透水性を有するシート状体を用いて形成することができ、その素材には、袋体6,7と同じ素材を用いることができる。アルカリ中和剤11bには、例えばピートモス(酸性)や酸で処理した炭素材料(例えば塩化カルシウムを含む溶液を接触させた後に炭化させた植物体の炭化物に、塩酸を接触させて得られた材料)を用いることができる。   The neutralization bag 11 is a bag-shaped body 11a having an elongated cylindrical shape whose both ends are closed, and an alkali neutralizing agent 11b accommodated therein. The bag-like body 11a can be formed using a sheet-like body having water permeability without passing through the alkali neutralizer 11b, and the same material as the bag bodies 6 and 7 can be used as the material thereof. The alkali neutralizer 11b includes, for example, a material obtained by contacting hydrochloric acid with a carbon material treated with peat moss (acidic) or acid (for example, a carbonized plant body carbonized after contacting with a solution containing calcium chloride). ) Can be used.

図7、図8(A)及び(B)に示す例では、収容部5にモルタル袋3及び中和袋11をペアで収容し、かつ、モルタル流出対策のための中和袋11をモルタル袋3の谷側のみに配置する例を示しているが、これに限らず、中和袋11をモルタル袋3の山側にも配置するようにしてもよく、また、中和袋11以外の形態で、アルカリ中和剤11bをモルタル袋3の周囲に配置するようにしてもよい。   In the example shown in FIGS. 7, 8 </ b> A and 8 </ b> B, the mortar bag 3 and the neutralization bag 11 are accommodated in a pair in the accommodating portion 5, and the neutralization bag 11 for preventing mortar outflow is used as the mortar bag. Although the example arrange | positioned only in the valley side of 3 is shown, you may make it arrange | position not only this but the neutralization bag 11 also in the mountain side of the mortar bag 3, and in forms other than the neutralization bag 11 The alkali neutralizer 11b may be disposed around the mortar bag 3.

モルタル袋3の山側に形成された植生基盤10(図3(B)参照)における植物の発芽・生長の促進のために、図9(A)に示すように、モルタル袋3の山側に肥料袋12を配置してもよい。図示例では、一つの収容部5内にモルタル袋3と肥料袋12をペアで収容している。また、この場合、肥料袋12のかわりに基材袋4を用いることもできる。なお、肥料袋12としては、例えば基材袋4の収容物を肥料に特化したものとすることができる。   In order to promote the germination and growth of plants on the vegetation base 10 formed on the mountain side of the mortar bag 3 (see FIG. 3B), as shown in FIG. 12 may be arranged. In the example of illustration, the mortar bag 3 and the fertilizer bag 12 are accommodated in one accommodation part 5 in a pair. In this case, the base material bag 4 can be used instead of the fertilizer bag 12. In addition, as the fertilizer bag 12, for example, the contents of the base material bag 4 can be specialized in fertilizer.

また、一つの収容部5内に、モルタル袋3,中和袋11,基材袋4(あるいは肥料袋12)を収容するようにしてもよい。この場合、モルタル袋3の谷側に中和袋11を、山側に基材袋4(あるいは肥料袋12)を配置するのが好ましい。   Moreover, you may make it accommodate the mortar bag 3, the neutralization bag 11, and the base material bag 4 (or fertilizer bag 12) in the one accommodating part 5. FIG. In this case, it is preferable to arrange the neutralization bag 11 on the valley side of the mortar bag 3 and the base material bag 4 (or the fertilizer bag 12) on the mountain side.

また、図7、図8(A)及び(B)に示す例では、一つの収容部5にモルタル袋3及び中和袋11を収容しているが、これに限らず、例えば図9(B)に示すように、ネット状部材2に連続して並ぶ複数の収容部5を設け、各収容部5に個別にモルタル袋3及び中和袋11を収容するようにしてもよい。このことは、中和袋11に替えて、あるいは加えて肥料袋12を用いる場合も同様である。   Moreover, in the example shown to FIG. 7, FIG. 8 (A) and (B), although the mortar bag 3 and the neutralization bag 11 are accommodated in the one accommodating part 5, it does not restrict to this, For example, FIG. ), A plurality of storage portions 5 arranged in succession on the net-like member 2 may be provided, and the mortar bag 3 and the neutralization bag 11 may be stored in each storage portion 5 individually. This is the same when the fertilizer bag 12 is used instead of or in addition to the neutralization bag 11.

図8(A)及び(B)に示す例では、斜面保護用具1を法面Nに敷設する際に、一つの収容部5にペアで収容されたモルタル袋3及び中和袋11のうち、固定部材9は谷側の中和袋11のみを貫き、固定部材9の折れ曲がった頭部で山側のモルタル袋3を押さえつけるようにしているが、モルタル袋3及び中和袋11を個別に固定部材9で貫くようにして固定するようにしてもよい。なお、図3(A)及び(B)に示すように、収容部5に単独で収容されたモルタル袋3は、固定部材9で個別に貫いて法面Nに固定してあり、基材袋4も同様に固定してある。   In the example shown in FIGS. 8A and 8B, when the slope protection tool 1 is laid on the slope N, among the mortar bag 3 and the neutralization bag 11 accommodated in a pair in the one accommodating portion 5, The fixing member 9 penetrates only the neutralization bag 11 on the valley side and presses the mortar bag 3 on the mountain side with the bent head of the fixing member 9, but the mortar bag 3 and the neutralization bag 11 are individually fixed to the fixing member 9. You may make it fix so that it may penetrate in 9. FIG. 3 (A) and 3 (B), the mortar bag 3 housed alone in the housing portion 5 is individually fixed by the fixing member 9 and fixed to the slope N, and the base material bag. 4 is similarly fixed.

なお、上記変形例どうしを適宜組み合わせてもよいことはいうまでもない。   Needless to say, the above modifications may be combined as appropriate.

また、上記各例では、高強度繊維8によって袋状体3aの長手方向の強度を増すようにしてあるが、このような高強度繊維8を用いなくてもよい。   Moreover, in each said example, although the strength of the longitudinal direction of the bag-shaped body 3a is increased with the high strength fiber 8, such a high strength fiber 8 does not need to be used.

1 斜面保護用具
2 ネット状部材
3 モルタル袋
3a 袋状体
3b ドライモルタル
4 基材袋
4a 袋状体
4b 基材
5 収容部
6 内袋体
7 外袋体
8 高強度繊維
9 固定部材
10 植生基盤
11 中和袋
11a 袋状体
11b アルカリ中和剤
12 肥料袋
51 袋状体
52 ネット状部材
53 植生基盤
N 法面
DESCRIPTION OF SYMBOLS 1 Slope protection tool 2 Net-like member 3 Mortar bag 3a Bag-like body 3b Dry mortar 4 Base material bag 4a Bag-like body 4b Base material 5 Housing part 6 Inner bag body 7 Outer bag body 8 High strength fiber 9 Fixing member 10 Vegetation base 11 Neutralization bag 11a Bag-like body 11b Alkaline neutralizer 12 Fertilizer bag 51 Bag-like body 52 Net-like member 53 Vegetation base N Slope

Claims (4)

吸水または吸湿により硬化する硬化材料を収容した袋状体を具備し、該袋状体に対する前記硬化材料を含む収容物の充填量が、粗充填時を100%としたときに80〜160%である斜面保護用具。   A bag-like body containing a curable material that is cured by water absorption or moisture absorption is provided, and the filling amount of the containing material containing the curable material to the bag-like body is 80 to 160% when the rough filling time is 100%. A slope protection tool. 前記袋状体が複数装着されるネット状又はマット状又はシート状の部材を備えている請求項1に記載の斜面保護用具。   The slope protecting tool according to claim 1, further comprising a net-like, mat-like, or sheet-like member on which a plurality of the bag-like bodies are mounted. 前記部材として、少なくとも植物種子を分散保持するシート状部材を備える請求項2に記載の斜面保護用具。   The slope protecting tool according to claim 2, comprising a sheet-like member for dispersing and holding at least plant seeds as the member. 請求項2又は3に記載の斜面保護用具を斜面に敷設する斜面保護方法であって、各前記袋状体が、斜面に打設される複数の固定部材によって貫かれた状態となるようにすることを特徴とする斜面保護方法。   A slope protection method for laying a slope protection tool according to claim 2 or 3 on a slope, wherein each bag-like body is penetrated by a plurality of fixing members placed on the slope. A slope protecting method characterized by that.
JP2015113651A 2015-06-04 2015-06-04 Slope protection tool and slope protection method Active JP6495744B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2015113651A JP6495744B2 (en) 2015-06-04 2015-06-04 Slope protection tool and slope protection method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2015113651A JP6495744B2 (en) 2015-06-04 2015-06-04 Slope protection tool and slope protection method

Publications (2)

Publication Number Publication Date
JP2016223264A true JP2016223264A (en) 2016-12-28
JP6495744B2 JP6495744B2 (en) 2019-04-03

Family

ID=57745712

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2015113651A Active JP6495744B2 (en) 2015-06-04 2015-06-04 Slope protection tool and slope protection method

Country Status (1)

Country Link
JP (1) JP6495744B2 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018150789A (en) * 2017-03-10 2018-09-27 アサヒハケ株式会社 Protective mat
JP2019023416A (en) * 2017-07-21 2019-02-14 林建設株式会社 Method for fixing sheet

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07173837A (en) * 1993-12-20 1995-07-11 Nisshoku Corp Greening method
JP2000226852A (en) * 1999-02-05 2000-08-15 Nisshoku Corp Tree planting vegetation net, vegetation base body constituting net, vegetation base body, and vegetation bag
JP2003171934A (en) * 2001-12-03 2003-06-20 Ohbayashi Corp Slope protection frame for banking reinforcing earth construction method
JP2007056606A (en) * 2005-08-26 2007-03-08 Nisshoku Corp Tree planting implement and tree planting method
JP2007291748A (en) * 2006-04-26 2007-11-08 Nisshoku Corp Vegetation form, greening structure with it, and greening method
EP2031133A1 (en) * 2006-06-01 2009-03-04 Yushun Chang A planting slope structure
JP2012237179A (en) * 2011-05-13 2012-12-06 Nisshoku Corp Vegetation bag, manufacturing method thereof, and vegetation mat

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07173837A (en) * 1993-12-20 1995-07-11 Nisshoku Corp Greening method
JP2000226852A (en) * 1999-02-05 2000-08-15 Nisshoku Corp Tree planting vegetation net, vegetation base body constituting net, vegetation base body, and vegetation bag
JP2003171934A (en) * 2001-12-03 2003-06-20 Ohbayashi Corp Slope protection frame for banking reinforcing earth construction method
JP2007056606A (en) * 2005-08-26 2007-03-08 Nisshoku Corp Tree planting implement and tree planting method
JP2007291748A (en) * 2006-04-26 2007-11-08 Nisshoku Corp Vegetation form, greening structure with it, and greening method
EP2031133A1 (en) * 2006-06-01 2009-03-04 Yushun Chang A planting slope structure
JP2012237179A (en) * 2011-05-13 2012-12-06 Nisshoku Corp Vegetation bag, manufacturing method thereof, and vegetation mat

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018150789A (en) * 2017-03-10 2018-09-27 アサヒハケ株式会社 Protective mat
JP2019023416A (en) * 2017-07-21 2019-02-14 林建設株式会社 Method for fixing sheet

Also Published As

Publication number Publication date
JP6495744B2 (en) 2019-04-03

Similar Documents

Publication Publication Date Title
JP2016156124A (en) Slope protection tool and slope protection method
JP2007056606A (en) Tree planting implement and tree planting method
JP6495745B2 (en) Slope protection tool and slope protection method
JP4695540B2 (en) Tree planting method and planting structure
KR100945078B1 (en) Vegetation mat for revetment
KR101219289B1 (en) A vegetation bag containing seeds of green manure grass crop
KR100839669B1 (en) Planting mat for afforested slope and executing structure thereof
JP6499017B2 (en) Slope protection method
KR100741715B1 (en) A gardening mat for erosion prevention
KR101226872B1 (en) Method for green planting a slope by vegetation-mat
JP2018059336A (en) Surface layer collapse prevention mat, surface layer collapse prevention combined greening structure and surface layer collapse prevention combined greening method
JP6495744B2 (en) Slope protection tool and slope protection method
JP2017198050A (en) Slope protection tool and slope protection method
JP2001011838A (en) Greening method
JP6886205B2 (en) Slope protection equipment and slope protection method
CN206189418U (en) Short silk adds muscle ecological grass and irritates blanket bank protection
JP7566333B2 (en) Slope protection equipment and slope protection method
KR101007022B1 (en) Vegetation net of a river&#39;s inclined plane for afforestation
JP6975999B2 (en) Slope protection equipment and slope protection method
JPH11181779A (en) Slope frame execution method
JP2020094492A5 (en)
JP2024152955A (en) Slope protection equipment
JP2021130991A (en) Vegetation base material for slope surface
JP2008131914A (en) Greening method, surface soil collecting device to be used for the same, and greening structure body
JP2022146171A (en) Method for protecting slope

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20180417

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20181207

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20190115

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190228

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190305

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190307

R150 Certificate of patent or registration of utility model

Ref document number: 6495744

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250