JP4312110B2 - Two-way concrete void slab - Google Patents
Two-way concrete void slab Download PDFInfo
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- JP4312110B2 JP4312110B2 JP2004186688A JP2004186688A JP4312110B2 JP 4312110 B2 JP4312110 B2 JP 4312110B2 JP 2004186688 A JP2004186688 A JP 2004186688A JP 2004186688 A JP2004186688 A JP 2004186688A JP 4312110 B2 JP4312110 B2 JP 4312110B2
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B5/00—Floors; Floor construction with regard to insulation; Connections specially adapted therefor
- E04B5/16—Load-carrying floor structures wholly or partly cast or similarly formed in situ
- E04B5/32—Floor structures wholly cast in situ with or without form units or reinforcements
- E04B5/326—Floor structures wholly cast in situ with or without form units or reinforcements with hollow filling elements
- E04B5/328—Floor structures wholly cast in situ with or without form units or reinforcements with hollow filling elements the filling elements being spherical
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Description
この発明は、上下端筋間に碁盤目状に軽量ボイド型枠を配置した二方向コンクリートボイドスラブ、その構築方法及びその構築に使用する前記軽量ボイド型枠に関するものである。 The present invention relates to a two-way concrete void slab in which lightweight void molds are arranged in a grid pattern between upper and lower ends, a method for constructing the same, and the lightweight void molds used for the construction.
この種の二方向コンクリートボイドスラブとして、例えば、図4に示すように、床型枠1に、上端筋2を格子状に配置するとともに、下端筋3を同じく格子状に配置し、その格子状内の各碁盤目状空間S内に発泡樹脂などからなる軽量ボイド型枠4を配置して、コンクリートを打設した構造のものがある(特許文献1参照)。図中、5は、上下端筋2、3に掛け渡されて、各ボイド型枠4の上下面を抑えてその浮き上がりを防止する補助筋である。
この二方向コンクリートボイドスラブの構築において、軽量ボイド型枠4は、一般的に、同図に示すように、その形状が方形体状をして前後左右の方向性を有している(特許文献1図13参照)。この各軽量ボイド型枠4の前後左右の方向が揃わないと、二方向コンクリートボイドスラブの強度設計に狂いが生じるため、各軽量ボイド型枠4の配置時には、その方向が揃うように注意をする必要がある。
この注意を軽減したものとして、軽量ボイド型枠4を球体(真円球体)としてその前後左右の方向性をなくした技術がある(特許文献1図4参照)。
In the construction of this two-way concrete void slab, the lightweight void form 4 is generally rectangular in shape as shown in FIG. (See FIG. 13). If the front and rear, left and right directions of each lightweight void form 4 are not aligned, the strength design of the two-way concrete void slab will be distorted, so care must be taken when arranging each lightweight void form 4 so that the directions are aligned. There is.
As a technique for reducing this attention, there is a technique in which the lightweight void mold 4 is made into a sphere (a perfect sphere) and the direction of the front, rear, left and right is eliminated (see FIG. 4 of Patent Document 1).
球体状軽量ボイド型枠4は、上下方向に方向性がなく、全周囲において方向性がないため、その配置に全くその方向性を考慮する必要はない。しかし、その全周囲において方向性がないことにより、各碁盤目状空間S内で動き易く、その固定手段が煩雑となる。例えば、従来技術では、軽量ボイド型枠4に上方から押さえ金具を嵌り込ませてその移動を阻止して位置決めするようにしている(特許文献1図4参照)。 Since the spherical lightweight void form 4 has no direction in the vertical direction and no direction in the entire periphery, it is not necessary to consider the direction at all in its arrangement. However, since there is no directionality in the entire periphery, it is easy to move in each grid-like space S, and the fixing means is complicated. For example, in the prior art, a pressing metal fitting is fitted into the lightweight void form frame 4 from above to prevent the movement (see Patent Document 1 FIG. 4).
この発明は、軽量ボイド型枠4を簡単な構造で位置決めし得るようにすることを課題とする。 An object of the present invention is to enable positioning of the lightweight void form 4 with a simple structure.
上記課題を達成するために、この発明は、軽量ボイド型枠を、球体の上下を平行面で切り取った形状としたのである。
球体の上下を平行面で切り取れば、軽量ボイド型枠は、その切り取った下面でもって、スラブ用型枠に安定して載置させることできる。
また、その載置後の軽量ボイド型枠の各碁盤目状空間S内からの抜け止めは、例えば、切り取った上面に、上端筋に固定の支持杆を当てて行うことができる等と容易であり、作業性もよい。なお、軽量ボイド型枠は、その平面視が円状のため、前後左右の方向性はない。
In order to achieve the above object, the present invention forms a lightweight void form by cutting the top and bottom of a sphere with parallel surfaces.
If the top and bottom of the sphere are cut off by parallel planes, the lightweight void mold can be stably placed on the slab mold with the cut bottom surface.
Moreover, the lightweight void formwork after the placement can be easily prevented from coming off from each grid-like space S by, for example, applying a fixed supporting rod to the upper end stripe on the cut upper surface. Yes, workability is also good. In addition, since the lightweight void formwork has a circular plan view, there is no front / rear / right / left directionality.
この発明は、軽量ボイド型枠を、球体の上下を平行面で切り取った形状としたので、各碁盤目状空間S内での方向性がなく、その配置作業が容易となる。 In the present invention, since the lightweight void form has a shape obtained by cutting the top and bottom of the sphere with parallel planes, there is no directionality in each grid-like space S, and the placement work becomes easy.
この発明の一実施形態としては、格子状の上端筋と同じく格子状下端筋が上下に間隔をもって並行に設けられ、その格子状の上下端筋に囲まれた各空間内に軽量ボイド型枠が配置されて、コンクリートが打設された二方向コンクリートボイドスラブに使用される前記軽量ボイド型枠において、球体の上下を平行面で切り取った形状をなすとともに、前記空間の上部からその空間内に装填可能な大きさであり、その装填後には、前記上端筋に固定の支持杆が前記切り取った上面に当たってその抜け出しを防止する構成を採用し得る。
このとき、上記「空間の上部からその空間内に装填可能な大きさ」とは、その空間に、その真上からスムースに入り得る大きさのみならず、例えば、斜めにして入れる等、人が何らかの工夫をしてその空間に入り得る大きさを言う。
As one embodiment of the present invention, a grid-like lower end line is provided in parallel with a gap in the vertical direction like the grid-like upper end line, and a lightweight void form frame is formed in each space surrounded by the grid-like upper and lower line stripes. is arranged loaded, in the light void formwork concrete is used in two directions concrete void Slab which are pouring together when a shape obtained by cutting the upper and lower sphere parallel plane, in the space from the top of the space It is possible to adopt a configuration in which a support rod fixed to the upper end muscle hits the cut upper surface to prevent it from coming out after loading.
At this time, the “size that can be loaded into the space from the top of the space” is not only the size that can smoothly enter the space from the top, The size that can be entered into the space with some kind of contrivance.
通常、軽量ボイド型枠の上下面とスラブ上下面の間には一定のスラブ厚が必要であることから、軽量ボイド型枠の高さは一定以下に制限されるのに対し、軽量ボイド型枠の横方向は、スラブ強度の関係から、任意の長さを要求され、一般的には、高さに対して長くなる。このため、上記球体が真円球体の場合は、その要求に応えにくく、その球体を縦断面楕円状とすれば、軽量ボイド型枠の高さに対する横方向の長さが大きくなるため(扁平状となるため)、その要求に応え易い。 Normally, a certain slab thickness is required between the upper and lower surfaces of the lightweight void mold and the upper and lower surfaces of the slab, so the height of the lightweight void mold is limited to a certain level, whereas the lightweight void mold In the horizontal direction, an arbitrary length is required from the relationship of the slab strength, and in general, it becomes longer with respect to the height. For this reason, when the sphere is a perfect sphere, it is difficult to meet the demand, and if the sphere has an elliptical cross section, the length in the lateral direction with respect to the height of the lightweight void frame is increased (flat shape). Therefore, it is easy to meet that demand.
また、コンクリートスラブにおいて、上階からの振動は、コンクリート部の薄い均一な厚さ部分において共振し易いとされている。このため、軽量ボイド型枠を、その切り取った上面中程に凹部を形成したものとすれば、軽量ボイド型枠上面の薄いコンクリート部が厚さの異なる複数の部分からなるものとなって(全域が均一の厚さでなくなって)、上階からの振動が共振し難くなり、また、凹部の壁面での振動音の拡散により、その音の伝わりが減少し、静かなコンクリートスラブを得ることができる。 Further, in a concrete slab, vibration from the upper floor is likely to resonate in a thin and uniform thickness portion of the concrete portion. For this reason, if the lightweight void mold is formed with a recess in the middle of the cut upper surface, the thin concrete portion on the upper surface of the lightweight void mold is composed of a plurality of parts having different thicknesses (the entire area). The vibration from the upper floor is less likely to resonate, and the sound transmission is reduced by the diffusion of vibration sound on the wall surface of the recess, resulting in a quiet concrete slab. it can.
さらに、その中程凹部の中程に凸部を形成したものとすれば、その凸部の壁面での上階からの振動音の拡散が加わり、その振動音の拡散効果は向上して、より静かなコンクリートスラブを得ることができるとともに、その凸部上面に、上端筋に固定の支持杆を当てることができるため、軽量ボイド型枠のより確実な支持を行うことができる。 Furthermore, if the convex part is formed in the middle of the concave part, the diffusion of the vibration sound from the upper floor on the wall surface of the convex part is added, and the diffusion effect of the vibration sound is improved. A quiet concrete slab can be obtained, and a fixed support rod can be applied to the upper end of the upper surface of the convex portion, so that the lightweight void form can be supported more reliably.
これらの軽量ボイド型枠は、従来と同様にして、格子状の上端筋と同じく格子状下端筋が上下に間隔をもって並行に設けられ、その格子状の上下端筋に囲まれた各空間内に配置されて、上端筋に固定の支持杆が上記切り取った上面に当たってその軽量ボイド型枠の抜け出しを防止する等の二方向コンクリートボイドスラブを構成し得る。 In the same manner as in the past, these lightweight void molds have grid-like lower end bars parallel to each other in the vertical direction as well as the grid-like upper end stripes. The two-way concrete void slab can be configured such that the support rod fixed to the upper end muscle hits the cut upper surface to prevent the lightweight void formwork from coming off.
この構成では、軽量ボイド型枠の下面レベルの位置決めをしていないため、軽量ボイド型枠をスラブ用型枠に載置した時、その型枠に直接に置かれる場合が生じ、その場合には、コンクリートの打設による浮力によって上昇し、上端筋に固定の支持杆に上面が当たって位置決めされるようにする。このとき、上昇をスムースかつ確実の位置とするように、軽量ボイド型枠の上昇用ガイドを設けるとよい。
軽量ボイド型枠の下面レベルの位置決めは、例えば、上記下端筋にも支持杆を設けて、この支持杆と上端筋に固定の支持杆を軽量ボイド型枠の切り取った上下面に当てがい軽量ボイド型枠を挟んで支持することにより行うことができる。
In this configuration, because the lightweight void formwork is not positioned at the lower surface level, when the lightweight void formwork is placed on the slab formwork, it may be placed directly on the formwork, in which case It is lifted by the buoyancy caused by the placement of concrete, and the upper surface of the upper end of the concrete is positioned against the fixed support rod. At this time, it is preferable to provide a guide for raising the lightweight void form so that the ascending is smooth and sure.
Positioning of the lightweight void formwork at the lower surface level is possible, for example, by providing a support rod also on the lower end bar and applying a support bar fixed to the support bar and upper end bar to the upper and lower surfaces cut out of the lightweight void formwork. It can be carried out by supporting the mold frame.
これらの二方向コンクリートボイドスラブを構築するには、例えば、スラブ用型枠に、格子状の上端筋と同じく格子状下端筋を上下に間隔をもって並行に設けて、その下端筋に支持杆を固定し、格子状の上下端筋に囲まれた各空間内に上記各軽量ボイド型枠をその下面を介し前記支持杆に載せて配置した後、上端筋に支持杆を軽量ボイド型枠の上面に当てがいさらに固定して、その両支持杆により、前記軽量ボイド型枠を挟んで前記空間内からの抜け出しを防止した後、コンクリートを打設する等の方法を採用する。 In order to construct these two-way concrete void slabs, for example, slab molds are provided with grid-like bottom bars parallel to each other in the same vertical direction as the grid-like top bars, and support rods are fixed to the bottom bars. After placing each of the lightweight void molds on the support rod through the lower surface in each space surrounded by the upper and lower stripes of the lattice shape, the support collar is applied to the upper surface of the lightweight void mold frame. further fixed outside, by the two support rods, after preventing the escape from the space across the lightweight void mold, employing a method such that concrete is.
図1乃至図3に一実施例を示し、この実施例のボイド型枠40は、中実の発泡樹脂からなり、図3(a)に示すように、縦断面楕円状の球体の上下を平行面で切り取った形状をしている。その上面41及び下面42の大きさは、後述の支持杆を当てがってボイド型枠40を動くことなく支持し得るように適宜に設定する。例えば、上面41・下面42の径:231.5mmとする。また、球体の径(ボイド型枠40の大きさ)も、例えば、径:350mm等として、後述の空間S内に、斜めにして嵌め込み得るように適宜に設定する。さらに、ボイド型枠40の高さHはスラブ厚に応じて適宜に決定し、例えば、スラブ厚から100mm引いた値とする。
FIG. 1 to FIG. 3 show an embodiment, and the
このボイド型枠40は、図1、図2に示すように、床型枠1の上に各上下端筋2、3を配設し、その各下端筋3の左右方向の中程に前後方向の鉄筋製支持杆12を溶接して固定した後、その各上下端筋2、3間の上下に一致した碁盤目状の正方形空間S内にボイド型枠40を嵌め込んで、その下面42を介し前記支持杆12上に載置する。その後、各上端筋2の前後方向の中程に左右方向の鉄筋製支持杆11をボイド型枠40の上面41に当てがい溶接して固定し、両支持杆11、12により、ボイド型枠40の上下を押さえて支持固定した後、必要に応じて補助筋などを配置し、コンクリートCを打設して、二方向コンクリートボイドスラブを構築する。支持杆11、12の上下端筋2、3への固定は、溶接に代えて番線による等の種々の手段を採用できる。
As shown in FIGS. 1 and 2, the
ボイド型枠40の形状としては、図3(b)に示すように、その切り取った上面41中程に同心の円状凹部43を形成したものとすれば、上階からの振動が共振し難くなり、その凹部43の壁面での振動音の拡散により、静かなコンクリートスラブを得ることができる。さらに、同図(c)に示すように、その凹部43の中程に同じく同心の円状凸部44を形成したものとすることもできる。この凸部44を形成したものとすれば、その凸部44の壁面での上階からの振動音の拡散が加わってその拡散効果が向上して、より静かなコンクリートスラブを得ることができるとともに、その凸部44上面に、上端筋2に固定の支持杆11を当てることができるため、軽量ボイド型枠40のより確実な支持を行うことができる。
As shown in FIG. 3B, if the concentric
1 床型枠
2 上端筋
3 下端筋
11、12 支持杆
40 ボイド型枠
41 ボイド型枠の切り取り上面
42 ボイド型枠の切り取り下面
43 凹部
44 凸部
S 碁盤目状空間
DESCRIPTION OF SYMBOLS 1
Claims (7)
球体の上下を平行面で切り取った形状をなすとともに、上記空間(S)の上部からその空間(S)内に装填可能な大きさであり、その装填後には、上記上端筋(2)に固定の支持杆(11)が前記切り取った上面(41)に当たってその抜け出しを防止する二方向コンクリートボイドスラブ用軽量ボイド型枠。 Similar to the lattice-shaped upper end line (2), the lattice-shaped lower end line (3) is provided in parallel in the vertical direction with a space therebetween, and in each space (S) surrounded by the lattice-shaped upper and lower end lines (2, 3). The lightweight void formwork (40) used in a two-way concrete void slab in which a lightweight void formwork (40) is arranged and concrete (C) is placed,
Both the a shape obtained by cutting the upper and lower sphere parallel surfaces, a the space (S) can be loaded size in the upper part of the space (S), and after its loading, to the upper end muscle (2) A lightweight void formwork for a two-way concrete void slab in which a fixed support rod (11) hits the cut upper surface (41) to prevent it from coming off.
スラブ用型枠(1)に、格子状の上端筋(2)と同じく格子状下端筋(3)を上下に間隔をもって並行に設けて、その下端筋(3)に上記支持杆(12)を固定し、格子状の上下端筋(2、3)に囲まれた各空間(S)内に軽量ボイド型枠(40)をその下面(42)を介し前記支持杆(12)に載せて配置した後、上記支持杆(11)を前記軽量ボイド型枠(40)の上面(41)に当てがい前記上端筋(2)に固定して、その両支持杆(11、12)により、前記軽量ボイド型枠(40)を挟んで前記空間(S)内からの抜け出しを防止した後、コンクリート(C)を打設することを特徴とする二方向コンクリートボイドスラブの構築方法。 A method of constructing a bi-directional concrete void slab according to claim 6,
The slab formwork (1) is provided with the lattice-shaped lower end bars (3) in parallel with the upper and lower lines in the same manner as the lattice-shaped upper end lines (2), and the support rods (12) are provided on the lower end lines (3). A lightweight void mold (40) is placed on the support rod (12) via its lower surface (42) in each space (S) surrounded by upper and lower streak (2, 3) in a lattice shape. After that, the support rod (11) is fixed to the upper end line (2) by being applied to the upper surface (41) of the lightweight void form frame (40) , and the light weight is obtained by the both support rods (11, 12). A method for constructing a two-way concrete void slab, wherein concrete (C) is placed after preventing the void form (40) from slipping out of the space (S).
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