JP5597232B2 - Ground improvement device and residual soil discharge suppression body of ground improvement device - Google Patents

Ground improvement device and residual soil discharge suppression body of ground improvement device Download PDF

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JP5597232B2
JP5597232B2 JP2012189507A JP2012189507A JP5597232B2 JP 5597232 B2 JP5597232 B2 JP 5597232B2 JP 2012189507 A JP2012189507 A JP 2012189507A JP 2012189507 A JP2012189507 A JP 2012189507A JP 5597232 B2 JP5597232 B2 JP 5597232B2
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JP2014047482A (en
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克彦 佐藤
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株式会社トラバース
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本発明は、現地掘削土とセメントミルク等の固化材とを撹拌混合して地盤中にソイルセメント柱体(以下「ソイルセメント杭」)を形成して地盤を強化する地盤改良装置および地盤改良装置の残土排出抑制体に関し、地耐力強化はもとよりソイルセメント杭の施工に伴って発生する掘削残土および固化材混入残土の排出量を大幅に削減することができる。 The present invention relates to a ground improvement device and a ground improvement device for strengthening the ground by forming a soil cement pillar (hereinafter referred to as “soil cement pile”) in the ground by stirring and mixing the ground excavated soil and a solidified material such as cement milk. With regard to the remaining soil discharge control body , it is possible to greatly reduce the discharge amount of excavated residual soil and solidified material mixed residual soil generated with the construction of soil cement piles as well as strengthening the soil strength.

地盤改良工法として現地盤を掘削し、混合処理機を用いて現地掘削土をセメント系の固化材と攪拌混合し、かつ所定の強度に固化させることにより地盤中にソイルセメント杭を形成して地盤を強化する地盤改良工法が知られている。   The ground is excavated as a ground improvement method, and the ground excavated soil is stirred and mixed with cement-based solidified material using a mixing processor, and solidified to a predetermined strength to form a soil cement pile in the ground. There is known a ground improvement method that strengthens the ground.

例えば、特許文献1には、回転ロッドの下端部に掘削刃を有する掘削翼を備え、かつその上側の回転ロッドの外周に複数の撹拌翼を備えた混合処理機を回転させながら目標深度まで掘進した後、回転ロッドの先端から固化材を吐出し、かつ混合処理機を回転させて掘削土を固化材と撹拌混合しながら徐々に引き抜くことにより地盤中に円柱状のソイルセメント杭を形成することにより地盤を強化する地盤改良工法が記載されている。   For example, Patent Document 1 discloses that a drilling blade having a drilling blade at the lower end of a rotating rod and a mixing processing machine having a plurality of stirring blades on the outer periphery of the rotating rod on the upper side is drilled to a target depth. After that, the solidified material is discharged from the tip of the rotating rod, and the mixing processing machine is rotated to gradually pull out the excavated soil while stirring and mixing with the solidified material to form a cylindrical soil cement pile in the ground. The ground improvement construction method which strengthens the ground by is described.

特公昭5829374号公報Japanese Patent Publication No. 5829374 特開2011−69093号公報JP 2011-69093 A 特開平04−185813号公報Japanese Patent Laid-Open No. 04-185813 特開2007−191990号公報JP 2007-191990 A

しかし、この種の地盤改良工法では、掘削残土やセメントミルク等の固化材を含んだ固化材混入残土が大量に発生し、特に固化材混入残土は産業廃棄物扱いとなり、処分するにはマニフェストをとって産業廃棄物業者に依頼する必要があるため処理費用が嵩む等の課題があった。また、地上に大量に溢れ出して敷地内を汚す等して敷地内環境を悪化させる等の課題もあった。   However, in this type of ground improvement method, a large amount of solidified material mixed soil containing solidified material such as excavated residual soil and cement milk is generated, and in particular, the solidified material mixed residual soil is treated as industrial waste, and a manifest is used for disposal. Since it was necessary to request an industrial waste contractor, there were problems such as increased processing costs. In addition, there was a problem that the site environment deteriorated by overflowing a large amount on the ground and soiling the site.

さらに、地盤中に形成されるソイルセメント杭は、ソイルセメントが特に圧密されることなく自然に固化して形成されるため、固化材の注入量などによっては必ずしも充分な強度が得られない場合があり、また、ソイルセメント杭周囲の地盤の締め固が充分になされないために、必ずしも期待する程の地耐力を確保できないでしまう場合があった。   Furthermore, the soil cement pile formed in the ground is formed by naturally solidifying the soil cement without being particularly consolidated, so that sufficient strength may not be obtained depending on the amount of solidified material injected. In addition, since the ground around the soil cement pile is not sufficiently compacted, there are cases where the expected ground strength cannot always be secured.

本発明は、以上の課題を解決するためになされたもので、地耐力強化はもとより掘削残土や固化材混入残土の排出量を大幅に削減できる地盤改良装置および地盤改良装置の残土排出抑制体を提供することを目的とするものである。 The present invention has been made to solve the above-described problems. A ground improvement device capable of significantly reducing the discharge amount of excavation residual soil and solidification material mixed residual soil as well as strengthening earth resistance, and a residual soil discharge suppression body of the ground improvement device are provided. It is intended to provide.

本発明は、回転ロッドを介して掘削翼と撹拌翼を回転させて、削孔および掘削土を固化材と撹拌混合して削孔内にソイルセメント杭を形成する際に、地盤強度(地耐力)を高めて品質向上を図ることはもとより、掘削残土と固化材混入残土の排出量を大幅に削減して、これら残土の処理に要する費用を大幅に削減すると共に、これら残土の大量排出によって汚れ等の敷地内環境の悪化を未然に防止できるようにしたものである。   The present invention rotates the excavating blade and the agitating blade via a rotating rod, and stirs and mixes the drilling hole and the excavated soil with the solidified material to form a soil cement pile in the drilling hole. ) To improve quality, drastically reduce the amount of excavated residual soil and solidified material mixed waste, significantly reduce the cost of disposal of the residual soil, It is possible to prevent the deterioration of the on-site environment.

本発明によれば、固化材が混入された掘削土が撹拌翼によって地上にかき揚げられるものの、孔壁と回転ロッドとの間に残土排出抑制体が設置されていることにより、掘削土や固化材混入土が削孔より地上に溢れ出して残土となることはないため、これらの残土処理に要する費用を大幅に削減することができ、また特に固化材混入残土の排出によって敷地内環境を悪化させることもない。   According to the present invention, although the excavated soil mixed with the solidified material is scraped up to the ground by the stirring blade, the excavated soil and the solidified material are provided by installing the residual soil discharge suppression body between the hole wall and the rotating rod. Since the contaminated soil does not overflow to the ground from the drilling holes and become residual soil, the cost required to treat these residual soil can be greatly reduced, and the environment in the site is particularly deteriorated by discharging the residual soil mixed with solidification material. There is nothing.

また、掘削残土や固化材購入残土が削孔より地上にほとんど溢れ出ることがないので、ソイルセメント杭ごとに計画通りの固化材を注入することができ、これによりほぼ設計通りの強度を有するソイルセメント杭を形成することができる。   In addition, since the excavated soil and solidified material purchase soil do not almost overflow from the drilling hole, the solidified material can be injected as planned for each soil cement pile, so that the soil has almost the strength as designed. Cement piles can be formed.

また、残土排出抑制体を削孔内の孔壁と回転ロッドとの間に停止させ、その下方で掘削翼と撹拌翼を回転させながら昇降させて掘削土を固化材と撹拌混合してソイルセメント杭を形成することにより、ソイルセメント杭とソイルセメント杭を介してその周囲の地盤が圧密され、これにより地耐力を高めることができて品質の向上を図ることができる。   In addition, the residual soil discharge suppression body is stopped between the hole wall in the drilling hole and the rotating rod, and the excavating soil is stirred and mixed with the solidified material by rotating the excavating blade and the stirring blade under the rotating blade. By forming the pile, the soil ground is consolidated through the soil cement pile and the soil cement pile, so that the earth strength can be increased and the quality can be improved.

また、残土排出抑制体は回転ロッドに当該回転ロッドの軸方向に摺動可能に取り付けられ、かつ下端部に回転ロッドに取り付けられた撹拌翼に脱着自在に嵌合可能な嵌合溝が設けられていることで、回転ロッドと共に残土排出抑制体を削孔により任意の深さまで移動し、所定の深度に達した地点で回転ロッドから残土排出抑制体を切り離し、かつその地点に停止させ、残土排出抑制体より以深においてソイルセメント杭を形成して地耐力を高めることもできる。   Further, the residual soil discharge suppressing body is attached to the rotating rod so as to be slidable in the axial direction of the rotating rod, and a fitting groove is provided at the lower end portion thereof so as to be detachably fitted to the stirring blade attached to the rotating rod. As a result, the residual soil discharge suppression body is moved to an arbitrary depth by drilling with the rotating rod, and the residual soil discharge suppression body is separated from the rotating rod at the point where the predetermined depth is reached, and stopped at that point to discharge the residual soil. A soil cement pile can be formed deeper than the restraining body to increase the earth strength.

さらに、残土排出抑制体は、例えば、削孔径とほぼ同径のどんぐり形状体または図3(b)に図示するような紡錘形状体に形成されていることにより、孔壁と回転ロッドとの隙間を確実に塞ぐことが可能であると共に、孔壁と回転ロッドとの間を回転ロッドと共に回転させながらスムーズに移動させることができる。   Further, the residual soil discharge suppression body is formed in, for example, an acorn-shaped body having a diameter substantially the same as the drilling diameter or a spindle-shaped body as illustrated in FIG. Can be reliably closed and can be smoothly moved between the hole wall and the rotating rod while rotating together with the rotating rod.

本発明によれば、孔壁と回転ロッドとの間に残土排出抑制体が設置されていることにより、掘削土や固化材混入土が削孔より地上に大量に溢れ出して残土となることはなく、このため、これらの残土処理に要する費用を大幅に削減することができ、また固化材混入残土の排出によって敷地内が汚れる等の敷地内環境を悪化させることもない。   According to the present invention, since the residual soil discharge suppression body is installed between the hole wall and the rotating rod, the excavated soil and the solidified material mixed soil overflow from the drilling hole to the ground and become residual soil. Therefore, the cost required for the residual soil treatment can be greatly reduced, and the site environment is not deteriorated such that the site is soiled due to discharge of the solidified material mixed residual soil.

さらに、残土排出抑制体を削孔内に停止させ、その下方で掘削翼と撹拌翼を回転させながら昇降させて掘削土と固化材とを撹拌混合してソイルセメント杭を形成することにより、ソイルセメント杭とソイルセメント杭を介してその周囲の地盤が圧密されることにより地盤強度(地耐力)を高めることができて品質の向上を図ることができる。   Furthermore, the soil discharge control body is stopped in the drilling hole, and the excavating blade and the stirring blade are rotated and moved up and down to stir and mix the excavated soil and the solidified material to form a soil cement pile. The ground strength (ground strength) can be increased by consolidating the surrounding ground through cement pile and soil cement pile, and quality can be improved.

本発明の地盤改良装置の一実施形態を示し、建設重機に据え付けられた地盤改良装置を示す側面図である。BRIEF DESCRIPTION OF THE DRAWINGS It is a side view which shows one Embodiment of the ground improvement apparatus of this invention, and shows the ground improvement apparatus installed in the construction heavy machine. 図1に図示する地盤改良装置を示し、図2(a)はその全体を示す側面図、図2(b)は図2(a)におけるイ−イ線断面図、図2(c)は残土排出抑制体と撹拌翼との結合部を示す要部拡大図である。1 shows the ground improvement device shown in FIG. 1, FIG. 2 (a) is a side view showing the whole, FIG. 2 (b) is a cross-sectional view taken along the line II in FIG. 2 (a), and FIG. It is a principal part enlarged view which shows the coupling | bond part of a discharge suppression body and a stirring blade. 残土排出抑制体の変形例を示し、図3(a)は螺旋状リブに代えて複数の縦リブを備えたどんぐり形状の残土排出抑制体の斜視図、図3(b)は紡錘体形状に形成された残土排出抑制体の側面図、図3(c)は図3(a)に図示する残土排出抑制体の平面図である。Fig. 3 (a) is a perspective view of an acorn-shaped residual soil discharge suppression body having a plurality of vertical ribs instead of a spiral rib, and Fig. 3 (b) is a spindle shape. FIG. 3 (c) is a side view of the formed residual soil discharge suppression body, and FIG. 3 (c) is a plan view of the residual soil discharge suppression body shown in FIG. 3 (a). (a)〜(d)本発明の地盤改良工法の施工手順を示す説明図である。(a)-(d) It is explanatory drawing which shows the construction procedure of the ground improvement construction method of this invention. (a),(b)は本発明の地盤改良工法の施工手順を示す説明図である。(a), (b) is explanatory drawing which shows the construction procedure of the ground improvement construction method of this invention. (a),(b)は本発明の地盤改良工法の施工手順を示す説明図である。(a), (b) is explanatory drawing which shows the construction procedure of the ground improvement construction method of this invention. 本発明の地盤改良工法の施工手順を示す説明図である。It is explanatory drawing which shows the construction procedure of the ground improvement construction method of this invention. (a),(b)は本発明の地盤改良工法の施工手順を示す説明図である。(a), (b) is explanatory drawing which shows the construction procedure of the ground improvement construction method of this invention.

図1〜図3は本発明の一実施形態を示し、オーガーモータ(図省略)を駆動源に回転する回転ロッド1に、回転ロッド1と共に回転して地盤を削孔する掘削翼2、当該掘削翼2の上側に取り付けられ、回転ロッド1および掘削翼2と共に回転して掘削土を地上から注入される固化材(セメント系固化材等)と撹拌混合する撹拌翼3、そして、撹拌翼3の上側に取り付けられ、回転ロッド1と孔壁との間にあって掘削土および固化材混入土(ソイルセメント)が削孔より地上に溢れ出ないように抑制する残土排出抑制体4をそれぞれ備えている。   1 to 3 show an embodiment of the present invention, a rotating rod 1 that rotates using an auger motor (not shown) as a drive source, a drilling blade 2 that rotates together with the rotating rod 1 and drills the ground, and the excavation concerned A stirring blade 3 which is attached to the upper side of the blade 2 and rotates together with the rotating rod 1 and the excavating blade 2 to stir and mix the excavated soil with a solidified material (cement-based solidified material or the like) injected from the ground; A residual soil discharge suppression body 4 is provided between the rotary rod 1 and the hole wall, and is provided on the upper side and suppresses the excavated soil and the solidified material mixed soil (soil cement) from overflowing from the hole.

回転ロッド1は鉛直方向に連続する中空をなし、中空部は地上から地盤中に注入される固化材の注入路1aをなし、また、回転ロッド1の先端部には注入路1aに連通する固化材の吐出口1bが形成されている。そして、回転ロッド1は建設重機5に鉛直に据え付けられたスライドリーダー6にオーガーモータと共に昇降自在に設置されている。   The rotating rod 1 has a hollow continuous in the vertical direction, the hollow portion has an injection path 1a for a solidified material injected from the ground into the ground, and the tip of the rotating rod 1 is solidified to communicate with the injection path 1a. A material discharge port 1b is formed. The rotating rod 1 is installed on a slide leader 6 installed vertically on a heavy construction machine 5 so as to be movable up and down together with an auger motor.

掘削翼2は、回転ロッド1の下端部に二方向ないし四方向に水平に複数取り付けられ、撹拌翼3は撹拌翼2より上側の回転ロッド1の外周に水平に複数取り付けられている。   A plurality of excavating blades 2 are horizontally attached to the lower end of the rotating rod 1 in two or four directions, and a plurality of stirring blades 3 are horizontally attached to the outer periphery of the rotating rod 1 above the stirring blade 2.

各掘削翼2の下端部には複数の掘削刃2aが突設され、また、撹拌翼3は回転ロッド1の両側に左右対称に取り付けられ、かつ回転ロッド1の鉛直方向に一定間隔おきに取り付けられている。   A plurality of excavating blades 2a project from the lower end of each excavating blade 2, and the agitating blades 3 are mounted symmetrically on both sides of the rotating rod 1 and are mounted at regular intervals in the vertical direction of the rotating rod 1. It has been.

さらに、回転ロッド1の鉛直方向に隣接する撹拌翼3は、回転ロッド1の円周方向に90ずつ互いにずれた状態に取り付けられている。なお、撹拌翼3は掘削翼2と同様に二方向ないし四方向に取り付けられていてもよい。   Further, the stirring blades 3 adjacent to each other in the vertical direction of the rotating rod 1 are attached so as to be shifted from each other by 90 in the circumferential direction of the rotating rod 1. In addition, the stirring blade 3 may be attached in two directions or four directions similarly to the excavation blade 2.

残土排出抑制体4は、掘削翼2および撹拌翼3とほぼ同一径か若しくはやや大きい径の円柱状に形成され、かつ下端部が下方向に徐々に小径をなす円錐状に形成されている。これにより残土排出抑制体4は全体的に側面から見てほぼどんぐり形状に形成されている。   The residual soil discharge suppression body 4 is formed in a cylindrical shape having a diameter that is substantially the same as or slightly larger than that of the excavation blade 2 and the stirring blade 3, and a lower end portion is formed in a conical shape that gradually decreases in diameter downward. Thereby, the residual soil discharge suppression body 4 is formed in a substantially acorn shape as viewed from the side as a whole.

また、残土排出抑制体4の円柱部4aと円錐部4bの外周には、それぞれ螺旋状リブ7と螺旋状翼8が残土排出抑制体4の鉛直方向に連続して形成されている。   In addition, spiral ribs 7 and spiral blades 8 are continuously formed in the vertical direction of the residual soil discharge suppression body 4 on the outer periphery of the cylindrical portion 4a and the conical portion 4b of the residual soil discharge suppression body 4, respectively.

なお、螺旋状リブ7は残土排出抑制体4の円柱部4aの外周に丸鋼または異形鉄筋などの鉄棒をらせん状に溶接する等の方法により簡単に形成することができる。   The spiral rib 7 can be easily formed by a method of, for example, spirally welding a steel bar such as a round steel or a deformed reinforcing bar to the outer periphery of the cylindrical portion 4a of the residual soil discharge suppressing body 4.

また、図3(a),(c)に図示するように柱状部4aの外周にアングル材などからなる縦リブ9を取り付けることにより、残土排出抑制体4の孔壁に対する摩擦抵抗を低減することができ、これにより回転ロッド1の駆動源として回転トルクと押込み力の小さい小型のオーガーモータで対応することができる。   Further, as shown in FIGS. 3 (a) and 3 (c), by attaching a vertical rib 9 made of an angle material or the like to the outer periphery of the columnar portion 4a, the frictional resistance against the hole wall of the residual soil discharge suppressing body 4 is reduced. Accordingly, a small auger motor having a small rotational torque and a small pushing force can be used as a driving source for the rotating rod 1.

さらに、残土排出抑制体4の円柱部4aと円錐部4bの中心部には鉛直方向に貫通する貫通孔4cが形成され、当該貫通孔4cを回転ロッド1が摺動可能に貫通している。これにより、残土排出抑制体4は回転ロッド1に沿って自由に昇降し、かつ回転ロッド1の円周方向に自由に回転するようになっている。また、図2(c)に図示するように、円錐部4bの下端部、すなわち貫通孔4cの周縁部に嵌合溝4dが回転ロッド1の軸直角方向に水平に形成されている。   Furthermore, a through-hole 4c penetrating in the vertical direction is formed at the center of the cylindrical portion 4a and the conical portion 4b of the residual soil discharge suppressing body 4, and the rotating rod 1 penetrates the through-hole 4c so as to be slidable. As a result, the residual soil discharge suppression body 4 freely moves up and down along the rotating rod 1 and freely rotates in the circumferential direction of the rotating rod 1. Further, as shown in FIG. 2 (c), a fitting groove 4 d is formed horizontally in the direction perpendicular to the axis of the rotating rod 1 at the lower end portion of the conical portion 4 b, that is, the peripheral edge portion of the through hole 4 c.

そして、当該嵌合溝4dが回転ロッド1に取り付けられた最上段の左右撹拌翼3に嵌め込まれることにより、残土排出抑制体4は回転ロッド1に固定され、回転ロッド1を介して掘削翼2および撹拌翼3と共に回転し、かつ掘削翼2および撹拌翼3と共にスライドリーダー6に沿って昇降するようになっている。   Then, when the fitting groove 4d is fitted into the uppermost left and right stirring blades 3 attached to the rotating rod 1, the residual soil discharge suppressing body 4 is fixed to the rotating rod 1, and the excavating blade 2 is interposed via the rotating rod 1. It rotates together with the stirring blade 3 and moves up and down along the slide leader 6 together with the excavation blade 2 and the stirring blade 3.

符号10は、掘削土が掘削翼2および撹拌翼3と共に回転する「掘削土の共回り現象」を防止する共回り防止翼であり、共回り防止翼10は一番下の撹拌翼3の上下両側に回転自在に取り付けられている。   Reference numeral 10 denotes a co-rotation preventing blade that prevents the “spinning phenomenon of excavated soil” in which the excavated soil rotates together with the excavating blade 2 and the stirring blade 3, and the common rotation preventing blade 10 is located above and below the lowermost stirring blade 3. It is attached to both sides so that it can rotate freely.

また、上下共回り防止翼10の先端部は一体に連続し、これにより上下共回り防止翼9は側面から見て横長の枠状に構成されている。   Further, the tip end portion of the upper and lower co-rotation preventing wing 10 is integrally continuous, whereby the upper and lower co-rotation preventing wing 9 is formed in a horizontally long frame shape when viewed from the side.

このような構成において、オーガーモータ(図省略)を駆動源に回転ロッド1が回転することにより、掘削翼2と撹拌翼3が回転ロッド1と共に回転し、同時に回転ロッド1がオーガーモータと共にスライドリーダー6に沿って下降することにより地盤を掘削することができる。   In such a configuration, when the rotating rod 1 rotates with an auger motor (not shown) as a drive source, the excavating blade 2 and the stirring blade 3 rotate together with the rotating rod 1, and at the same time the rotating rod 1 together with the auger motor slide reader The ground can be excavated by descending along 6.

また、残土排出抑制体4の嵌合溝4dが最上段の左右撹拌翼3に嵌め込まれて、残土排出抑制体4が回転ロッド1に固定されることにより、残土排出抑制体4は掘削翼2および撹拌翼3と共に回転し、同時に掘削翼2および撹拌翼3と共に下降することにより削孔内に回転しながら押込まれる。   Further, when the fitting groove 4d of the residual soil discharge suppression body 4 is fitted into the upper left and right stirring blades 3 and the residual soil discharge suppression body 4 is fixed to the rotating rod 1, the residual soil discharge suppression body 4 becomes the excavation blade 2 And it rotates together with the stirring blade 3 and is simultaneously pushed down into the drilling hole by descending together with the excavation blade 2 and the stirring blade 3.

さらに、残土排出抑制体4の嵌合溝4dを回転ロッド1の左右撹拌翼3から外して、残土排出抑制体4を削孔内の途中に残し(図5(a),(b)参照)、掘削翼2と撹拌翼3のみを回転させながら地中に押し込むことにより削孔を継続することができる。   Further, the fitting groove 4d of the residual soil discharge restraining body 4 is removed from the left and right stirring blades 3 of the rotating rod 1 to leave the residual soil discharge restraining body 4 in the middle of the drilling hole (see FIGS. 5 (a) and (b)). The drilling can be continued by pushing only the excavating blade 2 and the stirring blade 3 into the ground while rotating.

また同時に、回転ロッド1の軸心に形成された固化材の注入路1aを介して地上から掘削中の削孔内に固化材を注入すると、回転ロッド1の下端部に形成された固化材の吐出口1bから掘削土内に固化材が吐出され、かつ掘削土と撹拌混合することによりソイルセメントを形成することができる。   At the same time, when the solidified material is injected into the drilling hole being excavated from the ground via the solidified material injection path 1 a formed at the axis of the rotating rod 1, the solidified material formed at the lower end of the rotating rod 1 Soil cement can be formed by discharging the solidified material into the excavated soil from the discharge port 1b and stirring and mixing with the excavated soil.

なお、オーガーモータの回転トルクと押込み力が大きいとき、残土排出抑制体4の外径は掘削翼2および撹拌翼3の外径より大きくすることができ、逆に、オーガーモータの回転トルクと押込み力が小さいときは、残土排出抑制体4の外径は掘削翼2および撹拌翼3の外径より小さくするのがよい。   When the rotational torque and pushing force of the auger motor are large, the outer diameter of the residual soil discharge suppressing body 4 can be made larger than the outer diameters of the excavating blade 2 and the stirring blade 3, and conversely, the rotating torque and pushing force of the auger motor. When the force is small, the outer diameter of the residual soil discharge suppressing body 4 is preferably smaller than the outer diameters of the excavation blade 2 and the stirring blade 3.

このような構成において、次に本発明の地盤改良装置による地盤改良工法について説明する(図4〜図8参照)。なお、図で示す削孔A内において、点で表示した部分は掘削土と固化材とからなる固化材混入土(ソイルセメント)を示し、無表示部分は掘削土を示す。   Next, a ground improvement method using the ground improvement device of the present invention in such a configuration will be described (see FIGS. 4 to 8). In the drilling hole A shown in the figure, a portion indicated by a dot indicates solidified material mixed soil (soil cement) made of excavated soil and a solidified material, and a non-displayed portion indicates excavated soil.

(1) 最初に、形成されるソイルセメント杭の杭芯に回転ロッド1の軸心を鉛直に合わせ、掘削翼2、撹拌翼3および残土排出抑制体4を鉛直にセットする (図4(a)参照)。  (1) First, the axis of the rotating rod 1 is vertically aligned with the pile core of the soil cement pile to be formed, and the excavation blade 2, the stirring blade 3 and the residual soil discharge restraining body 4 are set vertically (FIG. 4 (a )reference).

(2) 次に、オーガーモータ(図省略)を作動させ、回転ロッド1を介して掘削翼2、撹拌翼3および残土排出抑制体4を回転させながら地中に押し込む。そうすると、掘削翼2の掘削刃2aにより地盤が掘削されて削孔が開始される。同時に、撹拌翼3が掘削翼2と共に回転することにより掘削翼2によって掘削された掘削土が撹拌され、地上に排出される(図4(b),(c)参照)。  (2) Next, an auger motor (not shown) is operated, and the excavating blade 2, the stirring blade 3 and the residual soil discharge suppressing body 4 are pushed into the ground via the rotating rod 1 while rotating. Then, the ground is excavated by the excavating blade 2a of the excavating blade 2, and drilling is started. At the same time, the agitating blade 3 rotates together with the excavating blade 2, whereby the excavated soil excavated by the excavating blade 2 is agitated and discharged to the ground (see FIGS. 4B and 4C).

こうして削孔と撹拌を続けることにより、残土排出抑制体4が削孔Aの孔口に到達するまでは、掘削土が削孔Aから地上に溢れ出すが(図4(b),(c) 参照)、残土排出抑制体4が削孔A内に押し込まれ、削孔Aの孔口が残土排出抑制体4によって塞がれると、それ以降、掘削土が削孔Aより地上に溢れ出すことはほとんどなくなる(図4(d)参照)。   By continuing the drilling and agitation in this way, the excavated soil overflows from the drilling hole A until the residual soil discharge suppressing body 4 reaches the hole of the drilling hole A (FIGS. 4 (b) and (c) When the residual soil discharge suppression body 4 is pushed into the drilling hole A and the hole of the drilling hole A is blocked by the residual soil discharge suppression body 4, the excavated soil overflows from the drilling hole A to the ground thereafter. Almost disappears (see FIG. 4 (d)).

また、残土排出抑制体4が回転しながら削孔A内に押し込まれることにより、削孔Aの孔壁が周囲に押しやられるように圧密される。また、掘削土の一部が孔壁に圧密される。こうして、所定の深さまで削孔と撹拌を継続する(概ね地盤面より2m程度の深さ)。   Moreover, when the remaining soil discharge suppression body 4 is pushed into the drilling hole A while rotating, the hole wall of the drilling hole A is consolidated so as to be pushed around. A part of the excavated soil is consolidated into the hole wall. Thus, drilling and stirring are continued to a predetermined depth (approximately 2 m deep from the ground surface).

なお、残土排出抑制体4の円柱部4aと円錐部4bにそれぞれ螺旋状リブ7と螺旋状翼8が形成されていることにより、残土排出抑制体4を削孔A内に回転させながら比較的容易に押し込むことができる。   In addition, the spiral rib 7 and the spiral blade 8 are respectively formed in the cylindrical portion 4a and the conical portion 4b of the residual soil discharge suppression body 4, so that the residual soil discharge suppression body 4 is relatively rotated while rotating into the drilling hole A. Can be pushed in easily.

(3) 次に、回転ロッド1に取り付けられた最上段の撹拌翼3から残土排出抑制体4の嵌合溝4cを外して、残土排出抑制体4を回転ロッド1から切り離す。  (3) Next, the fitting groove 4 c of the residual soil discharge suppression body 4 is removed from the uppermost stirring blade 3 attached to the rotary rod 1, and the residual soil discharge suppression body 4 is separated from the rotary rod 1.

なお、回転ロッド1を一時停止させ、削孔Aの内方に強めに押し込むことにより、残土排出抑制体4の嵌合溝4cを撹拌翼3から容易に外すことができる(図2(c)参照)。   Note that the fitting groove 4c of the residual soil discharge suppression body 4 can be easily removed from the stirring blade 3 by temporarily stopping the rotating rod 1 and pushing it strongly into the bore A (FIG. 2 (c)). reference).

そして、残土排出抑制体4を削孔A内の孔口付近に残したまま、回転ロッド1を介して掘削翼2と撹拌翼3を回転させて削孔を再開する(図5(a)参照)。同時に、回転ロッド1の注入路1aを介して地上から削孔A内に固化材を注入する。こうして、削孔A内に固化材を吐出しながら削孔と撹拌を最終の設計深度まで継続して行う(図5(a)参照)。   The drilling is resumed by rotating the excavating blade 2 and the stirring blade 3 through the rotating rod 1 while leaving the remaining soil discharge suppressing body 4 in the vicinity of the hole in the drilling hole A (see FIG. 5 (a)). ). At the same time, the solidified material is injected into the drilling hole A from the ground via the injection path 1a of the rotating rod 1. Thus, drilling and agitation are continuously performed to the final design depth while the solidified material is discharged into the drilling hole A (see FIG. 5 (a)).

また、削孔Aが最終深度に到達したら固化材の注入を停止し、回転ロッド1を介して掘削翼2、撹拌翼3を回転させて再攪拌しながら回転ロッド1、掘削翼2および撹拌翼3を徐々に上昇させる(図5(b)参照)。   Further, when the drilling hole A reaches the final depth, the injection of the solidified material is stopped, and the rotating rod 1, the excavating blade 2 and the agitating blade are rotated while rotating the excavating blade 2 and the agitating blade 3 through the rotating rod 1 and re-stirring. 3 is gradually raised (see FIG. 5 (b)).

そうすると、回転ロッド1、掘削翼2および撹拌翼3の下降の際は、掘削翼2による削孔と並行して、地上より注入された固化材が回転ロッド先端の固化材吐出口1bから削孔A内に吐出され、撹拌翼3によって掘削土と撹拌混合される。また、回転ロッド1、掘削翼2および撹拌翼3が上昇する段階で再撹拌されることにより、地盤面よりほぼ2m以降の深さにソイルセメント杭Bの下杭B1が形成される(図5(b)参照)。   Then, when the rotating rod 1, the excavating blade 2 and the stirring blade 3 descend, the solidified material injected from the ground is drilled from the solidifying material discharge port 1b at the tip of the rotating rod in parallel with the drilling by the excavating blade 2. It is discharged into A and mixed with the excavated soil by the stirring blade 3. In addition, the lower pile B1 of the soil cement pile B is formed at a depth of about 2 m or more from the ground surface by re-stirring when the rotating rod 1, the excavating blade 2 and the stirring blade 3 are raised (FIG. 5). (See (b)).

その間、撹拌翼3によって掘削土や固化材混入土が削孔A内を地上にかき揚げられるものの、削孔Aの孔口付近における孔壁と回転ロッド1との間が残土排出抑制体4によって塞がれていることにより、掘削土や固化材混入土が地上に大量に溢れ出して残土となることはない。これにより、固化材混入残土の処理が容易になり、また、固化材混入残土が地上に溢れ出して敷地内環境を悪化させることもない。   Meanwhile, although the excavated soil and the solidified material mixed soil are lifted up to the ground in the drilling hole A by the stirring blade 3, the gap between the hole wall and the rotating rod 1 in the vicinity of the hole of the drilling hole A is blocked by the residual soil discharge suppressing body 4. Due to the erosion, excavated soil and solidified material mixed soil will not overflow to the ground and will not become residual soil. This facilitates the treatment of the solidified material-mixed residual soil, and does not cause the solidified material-mixed residual soil to overflow to the ground and deteriorate the site environment.

また、残土排出抑制体4の円柱部4aに螺旋状リブ7が形成されていることにより残土排出抑制体4の孔壁との摩擦抵抗が充分に確保され、これにより残土排出抑制体4が掘削土や固化材混入土によって削孔Aの外に押し上げられることもない。   Further, since the spiral rib 7 is formed on the cylindrical portion 4a of the residual soil discharge suppression body 4, a sufficient frictional resistance with the hole wall of the residual soil discharge suppression body 4 is secured, whereby the residual soil discharge suppression body 4 is excavated. It is not pushed out of the drilling hole A by soil or solidified material mixed soil.

また、ソイルセメント杭Bの下杭B1は削孔A内で圧密され、さらに下杭B1を介して周囲の地盤が圧密されることにより地耐力の大きい地盤に改良することができる(図5(b)参照)。   Moreover, the lower pile B1 of the soil cement pile B is consolidated in the drilling hole A, and the surrounding ground is further consolidated through the lower pile B1, so that the ground can be improved to have a high ground strength (Fig. 5 ( b)).

(5) こうして、ソイルセメント杭Bの下杭B1が形成されたら、掘削翼2、撹拌翼3および共回り防止翼10を削孔Aより地上に一度引き上げる(図6(a)参照)。そうすると、削孔Aの孔口付近の孔壁が残土排出抑制体4によって周囲に圧密されたことにより、削孔A内の下杭B1より上方の掘削土が減少して沈下する(図6(a)参照)。そこで、削孔当初に削孔Aより地上に溢れ出した掘削土は削孔A内に戻して処理すればよい(図6(b)参照)。  (5) When the lower pile B1 of the soil cement pile B is thus formed, the excavating blade 2, the stirring blade 3, and the co-rotation preventing blade 10 are once lifted from the drilling hole A to the ground (see FIG. 6 (a)). Then, since the hole wall in the vicinity of the hole of the drilling hole A is consolidated by the residual soil discharge suppression body 4, the excavated soil above the lower pile B1 in the drilling hole A decreases and sinks (FIG. 6 ( see a)). Therefore, the excavated soil overflowing from the hole A at the beginning of the hole drilling may be returned to the hole A and processed (see FIG. 6 (b)).

(6) 次に、オーガーモータを再作動させ、残土排出抑制体4を地上に残し、そして回転ロッド1を介して掘削翼2と撹拌翼3のみを回転させながら削孔A内に再び押し込む(図7参照)。  (6) Next, the auger motor is re-actuated to leave the residual soil discharge suppression body 4 on the ground, and is pushed again into the hole A while rotating only the excavating blade 2 and the stirring blade 3 through the rotating rod 1 ( (See FIG. 7).

同時に、回転ロッド1の注入路1aを介して地上から削孔A内に固化材を注入する。こうして、固化材を吐出しながら削孔と撹拌をソイルセメン杭Bの下杭B1に到達するまで継続して行うことによりソルセメント杭B1の上に上杭B2を形成する(図7参照)。   At the same time, the solidified material is injected into the drilling hole A from the ground via the injection path 1a of the rotating rod 1. Thus, the upper pile B2 is formed on the sol-cement pile B1 by continuously performing drilling and stirring until the lower pile B1 of the soil cement pile B is reached while discharging the solidified material (see FIG. 7).

なお、下杭B1の上端部より一定深の範囲(L=0.5m程度)に固化材を重複注入し、かつこの範囲を含む上下数メートルの範囲について削孔と撹拌を繰返し行うことにより下杭B1と上杭B2を一体的に形成することができる(図8(a)参照)。   In addition, by repeatedly injecting solidified material into a certain depth range (L = 0.5m) from the upper end of the lower pile B1, and repeatedly drilling and stirring for several meters above and below this range, the lower pile B1 and upper pile B2 can be formed integrally (see FIG. 8 (a)).

以上の施工手順により、下杭B1と上杭B2が一体的に連続するソイルセメント杭Bを構築することができる(図8(b)参照)。   By the above construction procedure, a soil cement pile B in which the lower pile B1 and the upper pile B2 are integrally continuous can be constructed (see FIG. 8 (b)).

また、ソイルセメント杭Bは削孔A内で圧密され、さらにソイルセメント杭Bを介して周囲の地盤が圧密されることにより地耐力の大きい地盤に地盤改良することができる。   In addition, the soil cement pile B is consolidated in the drilling hole A, and the surrounding ground is further consolidated through the soil cement pile B, whereby the ground can be improved to a ground having a high ground strength.

本発明は、現地掘削土とセメントミルク等の固化材とを撹拌混合して地盤中にソイルセメント杭を形成して地盤を強化する際に、地盤を強化することはもとより掘削残土や固化材混入残土の排出を大幅に削減することができる。   In the present invention, when the ground excavated soil and solidified material such as cement milk are agitated and mixed to form a soil cement pile in the ground to strengthen the ground, not only the ground is strengthened but also excavated residual soil and solidified material are mixed. The discharge of residual soil can be greatly reduced.

1 回転ロッド
1a 固化材の注入路
1b 固化材の吐出口
2 掘削翼
2a 削孔刃
3 撹拌翼
4 残土排出抑制体
4a 円柱部
4b 円錐部
4c貫通孔
4d 嵌合溝
5 建設重機
6 スライドリーダー
7 螺旋状リブ
8 螺旋状翼
9 縦リブ
10 共回り防止翼
1 Rotating rod
1a Solidification material injection path
1b Solidification material discharge port 2 Drilling blade
2a Drilling blade 3 Stirring blade 4 Residual soil discharge inhibitor
4a Cylindrical part
4b cone
4c through hole
4d Mating groove 5 Heavy construction equipment 6 Slide leader 7 Spiral rib 8 Spiral wing 9 Vertical rib
10 Co-rotating blade

Claims (3)

回転ロッドと、当該回転ロッドと共に回転して削孔する掘削翼と、当該掘削翼の上側に取り付けられ、当該掘削翼および前記回転ロッドと共に回転して前記掘削翼によって掘削された掘削土を固化材と撹拌混合する撹拌翼と、当該撹拌翼および前記掘削翼の上側に取り付けられ、孔口より掘削土および固化材が溢れ出すのを抑制し、かつ前記回転ロッド、掘削翼および撹拌翼と共に削孔内を昇降して孔壁および孔壁周囲の地盤を圧密する残土排出抑制体を備えた地盤改良装置において、前記残土排出抑制体は最大径がほぼ削孔径に相当するか、削孔径よりやや大きいどんぐり形状体または紡錘形状体であって、前記撹拌翼に脱着自在に嵌合可能な嵌合溝を備え、当該嵌合溝が前記撹拌翼に嵌合することにより前記回転ロッド、撹拌翼および撹拌翼と共に回転しながら削孔内を昇降し、かつ前記嵌合溝が前記撹拌翼より離脱して削孔内の任意の位置に停止可能なように構成されていることを特徴とする地盤改良装置。   A rotating rod, a drilling blade that rotates together with the rotating rod, and a drilling blade that is attached to the upper side of the drilling blade and rotates together with the drilling blade and the rotating rod and solidifies the excavated soil excavated by the drilling blade. Agitating blades that are agitated and mixed with the agitating blade, and are attached to the upper side of the agitating blade and the excavating blade, and prevent the excavated soil and the solidified material from overflowing from the hole, and drilling holes together with the rotating rod, the excavating blade and the agitating blade In the ground improvement device provided with a residual soil discharge suppression body that moves up and down to consolidate the hole wall and the ground around the hole wall, the residual soil discharge suppression body has a maximum diameter approximately equivalent to the drilling hole diameter or slightly larger than the drilling hole diameter An acorn-shaped body or a spindle-shaped body, which has a fitting groove that can be detachably fitted to the stirring blade, and the fitting groove is fitted to the stirring blade, whereby the rotating rod, the stirring blade, and the stirring blade. A ground improvement device configured to move up and down in the drilling hole while rotating together with the blade, and so that the fitting groove is detached from the stirring blade and can be stopped at an arbitrary position in the drilling hole. . 請求項1記載の地盤改良装置において、回転ロッドは残土排出抑制体を貫通し、残土排出抑制体は前記回転ロッドの軸方向に摺動可能に取り付けられていることを特徴とする地盤改良装置。   2. The ground improvement device according to claim 1, wherein the rotating rod penetrates the residual soil discharge suppressing body, and the residual soil discharge suppressing body is attached to be slidable in the axial direction of the rotating rod. 削孔用の掘削翼および当該掘削翼の上側に位置する撹拌翼の上側に取り付けられ、孔口より掘削土および固化材が溢れ出すのを抑制し、かつ前記掘削翼および撹拌翼と共に削孔内を回転しながら昇降して孔壁および孔壁周囲の地盤を圧密する残土排出抑制体において、前記残土排出抑制体は最大径がほぼ削孔径に相当するか、削孔径よりやや大きいどんぐり形状体または紡錘形状体であって、前記撹拌翼に脱着自在に嵌合可能な嵌合溝を備え、当該嵌合溝が前記撹拌翼に嵌合することにより前記撹拌翼および撹拌翼と共に削孔内を回転しながら昇降し、かつ前記嵌合溝が前記撹拌翼より離脱して削孔内の任意の位置に停止可能なように構成されていることを特徴とする残土排出抑制体。   It is attached to the upper side of the excavating blade for drilling and the agitating blade located above the excavating blade, and prevents the excavated soil and the solidified material from overflowing from the hole, and together with the excavating blade and the agitating blade, In the residual soil discharge suppression body that moves up and down while rotating and compacts the hole wall and the ground around the hole wall, the residual soil discharge suppression body has an acorn-shaped body whose maximum diameter is approximately equal to the drilling diameter or slightly larger than the drilling diameter or A spindle-shaped body having a fitting groove that can be detachably fitted to the stirring blade, and the fitting groove rotates with the stirring blade and the stirring blade together with the stirring blade. The residual soil discharge restraining body is configured to move up and down while being able to come off from the stirring blade and stop at an arbitrary position in the drilling hole.
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