JP4807622B2 - Dissimilar settlement settlement method by iron plate footing method - Google Patents

Dissimilar settlement settlement method by iron plate footing method Download PDF

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JP4807622B2
JP4807622B2 JP2006183860A JP2006183860A JP4807622B2 JP 4807622 B2 JP4807622 B2 JP 4807622B2 JP 2006183860 A JP2006183860 A JP 2006183860A JP 2006183860 A JP2006183860 A JP 2006183860A JP 4807622 B2 JP4807622 B2 JP 4807622B2
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building
iron plate
pressure
foundation
jack
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龍夫 ▲高▼▲橋▼
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株式会社 ▲高▼▲橋▼監理
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この発明は、不同沈下した建物をジャッキアップするための鉄板フーチング方式による不同沈下修正工法に関するものである。  The present invention relates to a non-settlement subsidence correction method using an iron plate footing system for jacking up a non-sinking building.

従来、建物を建築するためには、まず最初に建てる土地の地盤調査をし、地耐力を計算した後、基礎や杭を設計します。つまり建物の重さより地耐力が必ず大きくなけれは建築確認がとれません。  Conventionally, to build a building, the ground of the land to be built is first investigated, the earth strength is calculated, and then the foundation and pile are designed. In other words, if the earth bearing capacity is always greater than the weight of the building, the building cannot be confirmed.

しかしながら、建物に対する必要地耐力に関しては、建物の重さプラス余裕が必要となります。このためプラス余裕をどの程度にするか、しばしば問題になります。  However, with regard to the required ground strength for the building, the weight of the building plus a margin is required. For this reason, it is often a question of how much plus margin you can afford.

もちろん堅固な地盤であれば問題はありませんが、建物の重さに対して地耐力に余裕がない場合は地盤改良や鋼管杭等の工事が必要になります。さらに、新造成地や土質不良地等の地盤においては、部分的に地耐力の低い場所が存在するため、不同沈下が発生しやすいと云う問題をかかえていた。  Of course, there is no problem as long as the ground is solid, but if there is not enough ground strength for the weight of the building, ground improvement and construction of steel pipe piles will be required. Furthermore, in the ground such as newly developed land and poorly soiled land, there is a part where the ground strength is partially low, so that there is a problem that uneven settlement is likely to occur.

このように、地耐力を十分に考慮して建物を建築した場合であっても、経年変化により不同沈下が発生して建物が傾くと云う問題が発生していた。  As described above, even when the building is constructed with sufficient consideration for the earth resistance, there is a problem that the building is inclined due to the secular change due to the secular change.

従来から、このように建物が傾いた場合は、不同沈下した建物の直近に、新しい基礎を構築しその基礎にジャッキを据付け、建物をジャッキアップさせる方法や、不同沈下した建物の直近に、鋼管杭を支持地盤まで打ち込むと共に、その鋼管杭の上部にジャッキを据付け、建物をジャッキアップさせる方法等のアンダーピニング工法が知られているが、いずれの方法も、多大な費用と長期間の補修工事が必要となる等の問題が発生していた。  Conventionally, when a building is tilted in this way, a new foundation is constructed in the immediate vicinity of the unsettled building, a jack is installed on the foundation, and the building is jacked up. Underpinning methods such as driving the pile to the support ground and installing a jack on the upper part of the steel pipe pile to jack up the building are known, but both methods are expensive and require long-term repair work. There was a problem such as needing.

そこで、この発明は建物が不同沈下した場合の補修工法として、従来から行われてきたアンダーピニング工法に頼ることなく、建築初期に建物の耐圧基礎の下部に、耐圧基礎の外周底面より大きく構成した鉄板を敷いておく事により、地盤に対する建物の載荷重を少なくすると共に、建物をジャッキアップする際のジャッキ有効底盤として利用することができる等、鉄板フーチング方式による不同沈下修正工法を提供することを課題としている。  Therefore, the present invention is configured as a repair method when the building sinks unevenly, without relying on the conventional underpinning method, and at the initial stage of construction, the lower part of the building's pressure foundation is configured to be larger than the outer peripheral bottom surface of the pressure foundation. Providing a non-settled subsidence correction method using an iron plate footing method, such as reducing the loading load of the building against the ground by laying an iron plate and being able to use it as a jack effective bottom plate when jacking up the building It is an issue.

かかる課題を達成するために、請求項1に記載の発明は、不同沈下した建物をジャッキアップして建物を持上げるための不同沈下修正工法において、建築初期に建物の耐圧基礎下部の中心部を除く全周に、耐圧基礎の外周底面より出来る限り大きく構成した、厚さ9〜16mm以上の鉄板を敷いて、地盤に対する建物の単位面積当たりの載荷重を少なくすると共に、建物が不同沈下した場合、建物の耐圧基礎の側面に取付ける為、4本のボルト挿入穴が開けられた四角形状の鉄板と、その四角形状の鉄板の下部にはジャッキの上部アタッチメントを当接させる為の四角形状の下部鉄板が、四角形状の鉄板に対してL形状に取付けられ、さらに、L形状の鉄板の両端の部分には補強用の三角形状の鉄板を取付け、このように構成された不同沈下修正金具を、耐圧基礎の側面部分に4本のボルトで固定すると共に、ジャッキを耐圧基礎下部に敷いた鉄板の上面に載せ、ジャッキ上部のアタッチメントを不同沈下修正金具のL形状に構成された下部鉄板に当接させ、複数のジャッキを用いて建物をジャッキアップさせる場合においても、複数のジャッキの本体を、建物の耐圧基礎下部の中心部を除く建物の全周に配置された一体の鉄板の上部に載せて安定した状態で建物をジャッキアップした事を特徴とする。In order to achieve the above object, the invention described in claim 1 is directed to a dissimilar settlement substituting method for lifting a building by jacking up a dissimilarly subsidized building. When a steel plate with a thickness of 9 to 16 mm or more, which is configured as large as possible from the outer peripheral bottom surface of the pressure-resistant foundation, is laid on the entire circumference except for the load per unit area of the building against the ground, and when the building sinks uneven A rectangular iron plate with four bolt insertion holes for attachment to the side of the building's pressure-resistant foundation, and a rectangular lower part for contacting the upper attachment of the jack to the lower part of the rectangular iron plate An iron plate is attached to a square iron plate in an L shape, and a reinforcing triangular iron plate is attached to both ends of the L shape iron plate. The right bracket is fixed to the side part of the pressure-resistant foundation with four bolts, and the jack is placed on the upper surface of the iron plate laid on the lower part of the pressure-resistant foundation. Even when a building is jacked up using a plurality of jacks in contact with an iron plate, the main body of the plurality of jacks is an integral iron plate arranged all around the building excluding the center of the building's pressure-resistant foundation. It is characterized by jacking up the building in a stable state on the top .

請求項1に記載の発明によれば、建物の耐圧基礎の下部に耐圧基礎の外周底面より大きく構成した鉄板を敷くと共に、建物に不同沈下修正金具を固定し、鉄板の上面にジャッキを据付け、建物と一体になるように固定した不同沈下修正金具をジャッキにて押上げる事により建物が持上がるようにしため、ジャッキ有効底盤の面積を最大限に広く利用することが可能となり、従来のように、不同沈下した基礎の直近に鋼管杭を支持層まで打ち込み、上部をコンクリートで固めた上にジャッキを据付け、建物のジャッキアップを行うと云うようなアンダーピニング工法が不要となると共に、工期の短縮につながり、大幅にコストの低減を図ることができる。  According to the invention described in claim 1, an iron plate configured to be larger than the outer peripheral bottom surface of the pressure-resistant foundation is laid on the lower portion of the pressure-resistant foundation of the building, the non-uniform subsidence correction metal fitting is fixed to the building, and a jack is installed on the upper surface of the iron plate, Since the building is lifted by pushing up the uneven settlement correction bracket fixed so as to be integrated with the building with the jack, it is possible to maximize the area of the jack effective bottom, as in the past In addition, underpinning methods such as driving steel pipe piles up to the support layer in the immediate vicinity of the unevenly settled foundation, solidifying the upper part with concrete, installing jacks, and jacking up the building are unnecessary, and the construction period is shortened This can lead to a significant cost reduction.

以下、この発明の実施の形態について説明する。  Embodiments of the present invention will be described below.

図1及至図3は、この発明の実施の形態を示す。  1 to 3 show an embodiment of the present invention.

図1aは建物1と基礎部3の断面図である。耐圧基礎4の底面に耐圧基礎4の外周底面より大きく構成した鉄板5を敷き、その下部は転圧された砕石6で構成される。  FIG. 1 a is a cross-sectional view of the building 1 and the foundation 3. An iron plate 5 configured to be larger than the outer peripheral bottom surface of the pressure-resistant foundation 4 is laid on the bottom surface of the pressure-resistant foundation 4, and the lower portion is composed of the crushed stone 6 that has been pressed.

図1bは基礎部3の拡大図である。地表面2を鉄板5の位置まで掘削すると共に、耐圧基礎4に不同沈下修正金具7をボルト8で固定し、その固定した不同沈下修正金具7と鉄板5の間にジャッキ9を挿入し不同沈下した建物をジャッキアップさせる事により建物を持上げる。図1cは不同沈下修正金具7の斜視図である。  FIG. 1 b is an enlarged view of the base portion 3. The ground surface 2 is excavated to the position of the iron plate 5, and the non-settlement correction fitting 7 is fixed to the pressure-resistant foundation 4 with the bolts 8, and the jack 9 is inserted between the fixed non-settlement correction fitting 7 and the iron plate 5, so Lift the building by jacking it up. FIG. 1 c is a perspective view of the uneven settlement fitting 7.

図2は耐圧基礎4と鉄板7の平面図である。耐圧基礎4の四隅の底部に鉄板7が敷かれる。  FIG. 2 is a plan view of the pressure resistant base 4 and the iron plate 7. Iron plates 7 are laid on the bottoms of the four corners of the pressure-resistant foundation 4.

図3は耐圧基礎4と鉄板7の平面図である。耐圧基礎4の中心部を除く底部の全周に鉄板8が敷かれる。  FIG. 3 is a plan view of the pressure resistant base 4 and the iron plate 7. An iron plate 8 is laid on the entire periphery of the bottom except for the center of the pressure-resistant foundation 4.

以上、実施の形態に基づいて、本発明に係る鉄板フーチング方式による不同沈下修正工法について詳細に説明してきたが、本発明は、以上の実施の形態に限定されるものではなく、発明の趣旨を逸脱しない範囲において各種の改変をなしても、本発明の技術的範囲に属するのはもちろんである。  As mentioned above, based on the embodiment, the dissimilar settlement correction method by the iron plate footing method according to the present invention has been described in detail, but the present invention is not limited to the above embodiment, and the gist of the invention is as follows. Even if various modifications are made without departing from the scope, it goes without saying that they belong to the technical scope of the present invention.

図1及至3において、鉄板5、鉄板11、鉄板12が耐圧基礎4の底面に構成される状態を図示したが、鉄板5、鉄板11、鉄板12の厚さは9〜16mm以上の鉄板を使用することが望ましく、さらに鉄板5、鉄板11、鉄板12はジャッキアップする際の地耐力を考慮して、耐圧基礎の外周底面より出来る限り大きく構成することが望ましい。  1 to 3, the iron plate 5, the iron plate 11, and the iron plate 12 are illustrated on the bottom surface of the pressure-resistant foundation 4. However, the iron plate 5, the iron plate 11, and the iron plate 12 are 9 to 16 mm or more thick. Further, it is desirable that the iron plate 5, the iron plate 11, and the iron plate 12 are configured to be as large as possible from the outer peripheral bottom surface of the pressure-resistant foundation in consideration of the ground strength when jacking up.

図1及至3において、鉄板5、鉄板11、鉄板12は鉄板を使用したが、鉄筋入りコンクリート盤を使用することも可能である。  1 to 3, the iron plate 5, the iron plate 11, and the iron plate 12 are iron plates, but it is also possible to use a reinforcing steel containing concrete board.

この発明の実施の形態に係る建物と基礎部の断面図である。It is sectional drawing of the building which concerns on embodiment of this invention, and a base part. 同実施の形態に係る耐圧基礎と鉄板の構成を示した平面図である。It is the top view which showed the structure of the pressure | voltage resistant foundation and iron plate which concern on the embodiment. 同実施の形態に係る耐圧基礎と鉄板の構成を示した平面図である。It is the top view which showed the structure of the pressure | voltage resistant foundation and iron plate which concern on the embodiment.

符号の説明Explanation of symbols

1 建物
2 地表面
3 基礎部
4 耐圧基礎
5 鉄板
6 砕石
7 不同沈下修正金具
8 ボルト
9 ジャッキ
10 ボルト穴
11 鉄板
12 鉄板
DESCRIPTION OF SYMBOLS 1 Building 2 Ground surface 3 Foundation part 4 Pressure-resistant foundation 5 Iron plate 6 Crushed stone 7 Dissimilar subsidence correction metal fitting 8 Bolt 9 Jack 10 Bolt hole 11 Iron plate 12 Iron plate

Claims (1)

不同沈下した建物をジャッキアップして建物を持上げるための不同沈下修正工法において、建築初期に建物の耐圧基礎下部の中心部を除く全周に、耐圧基礎の外周底面より出来る限り大きく構成した、厚さ9mm以上の鉄板を敷いて、地盤に対する建物の単位面積当たりの載荷重を少なくすると共に、建物が不同沈下した場合、建物の耐圧基礎の側面に取付ける為、4本のボルト挿入穴が開けられた四角形状の鉄板と、その四角形状の鉄板の下部にはジャッキの上部アタッチメントを当接させる為の四角形状の下部鉄板が、四角形状の鉄板に対してL形状に取付けられ、さらに、L形状の鉄板の両端の部分には補強用の三角形状の鉄板を取付け、このように構成された不同沈下修正金具を、耐圧基礎の側面部分に4本のボルトで固定すると共に、ジャッキを耐圧基礎下部に敷いた鉄板の上面に載せ、ジャッキ上部のアタッチメントを不同沈下修正金具のL形状に構成された下部鉄板に当接させ、複数のジャッキを用いて建物をジャッキアップさせる場合においても、複数のジャ ッキの本体を、建物の耐圧基礎下部の中心部を除く建物の全周に配置された一体の鉄板の上部に載せて安定した状態で建物をジャッキアップした事を特徴とする鉄板フーチング方式による不同沈下修正工法。 In the sunk subsidence correction method to lift up the building by jacking up the sunk subsidence, the whole circumference excluding the center part of the bottom of the building's pressure-resistant foundation was constructed as large as possible from the bottom surface of the foundation of the pressure-resistant foundation. A steel plate with a thickness of 9 mm or more is laid to reduce the load per unit area of the building against the ground, and when the building sinks unevenly, four bolt insertion holes are drilled for mounting on the side of the building's pressure-resistant foundation. A rectangular lower iron plate for contacting the upper attachment of the jack to the lower part of the rectangular iron plate is attached in an L shape to the square iron plate, A triangular iron plate for reinforcement is attached to both ends of the shaped iron plate, and the non-uniform subsidence correction bracket constructed in this way is fixed to the side part of the pressure-resistant foundation with four bolts. When a jack is placed on the upper surface of an iron plate laid on the lower part of the pressure-resistant foundation, the attachment on the upper part of the jack is brought into contact with the lower iron plate formed in the L shape of the non-settled correction fitting, and the building is jacked up using a plurality of jacks wherein also the body of the plurality of jack key, a building in a state put on top of the integral iron plate disposed on the entire circumference of the building stable except the central portion of the lower breakdown voltage building foundation it has jacked up in Non-settlement correction method using the steel plate footing method.
JP2006183860A 2006-06-07 2006-06-07 Dissimilar settlement settlement method by iron plate footing method Expired - Fee Related JP4807622B2 (en)

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JP5698405B1 (en) * 2014-08-11 2015-04-08 コングロエンジニアリング株式会社 Ground improvement solid foundation method
JP5739051B1 (en) * 2014-12-02 2015-06-24 コングロエンジニアリング株式会社 Liquefaction countermeasure structure for ground improvement solid foundation and correction method for occurrence of uneven settlement due to liquefaction
CN117926866B (en) * 2024-03-21 2024-05-28 凯屹建设(山西)有限公司 Method for manufacturing cast-in-place pile deviation correction under building foundation by adopting horizontal reaming

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JP3071402B2 (en) * 1996-10-21 2000-07-31 謙三 村上 Lifting method of structure, jack engaging structure and bracket used in the method
JP3767710B2 (en) * 1996-12-20 2006-04-19 アキュテック株式会社 Foundation structure of the building
JP4097853B2 (en) * 1999-08-31 2008-06-11 大和ハウス工業株式会社 Building horizontal restoration method and bracket used therefor
JP4111445B2 (en) * 2003-10-30 2008-07-02 積水ハウス株式会社 Basic settlement settlement method using sandbag

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