Roof structure
The roof structure anchors support pillars to a concrete floor using a buried base plate and anchoring materials, reducing excavation and stabilizing pillars, thus improving construction efficiency and stability.
Patent Information
- Application Number
- JP2022029920
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-28
- Publication Date
- 2025-11-12
- Estimated Expiration
- 2042-02-28
AI Technical Summary
Conventional roof structures require deep excavation and soil removal, increasing construction workload and duration due to the need for burying support materials to stabilize pillars on a concrete floor.
A roof structure design where support pillars are anchored to a concrete floor using a base plate and anchoring materials, with the base plate buried between the ground and the concrete floor, and the lower end of the pillars fixed to the concrete floor through a support fixing portion and anchoring materials.
This design reduces excavation effort, shortens construction time, and enhances the stability and workability of installing roof structures on concrete slabs by stabilizing support pillars without deep excavation.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a roof structure in which a roof is supported by supports installed on a concrete floor. [Background technology]
[0002] In roof structures such as carports, pillars are supported by supporting materials, and multiple pillars are installed on the concrete floor. The roof of the roof structure is also supported by multiple supporting materials and is placed above the concrete floor. In such roof structures, various forces are applied to the pillars, so the pillars need to be stably supported by supporting materials. Therefore, a roof structure and a construction method for a roof structure are known in the art in which supporting materials are buried in the ground below the concrete floor and the lower ends of the pillars are supported by the supporting materials (see Patent Document 1).
[0003] In the conventional roof structure and roof structure construction method described in Patent Document 1, the support material and supporting columns are supported by the weight of the soil, roadbed, and concrete slab that rest on the plate-shaped portion of the support material. However, in the conventional roof structure and roof structure construction method, the support material must be buried deep enough to support the columns, which may increase the workload of constructing the roof structure, including excavating the ground. Furthermore, the soil removed from the excavation must be disposed of. This increases the time from excavating the ground to pouring the concrete slab, which may lengthen the construction period of the roof structure. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent Publication No. 2021-38588 Summary of the Invention [Problem to be solved by the invention]
[0005] The present invention has been made in consideration of the above-mentioned problems of the prior art, and its object is to improve the workability of construction of a roof structure to be installed on a concrete floor. [Means for solving the problem]
[0006] The present invention provides a roof structure comprising: a support pillar installed on a concrete floor covering the ground; a roof supported by the support pillar; and a support material supporting the support pillar; The support material has a base plate portion that is placed on the ground and buried between the ground and the concrete floor, and a support fixing portion that protrudes from the base plate portion and to which the support is fixed. death, The lower end of the support is fixed to the support fixing part and embedded in the concrete floor, An anchoring material that protrudes from the lower end of the support and is embedded in the concrete floor and fixed thereto; a bolt attached to the support post fixing portion in a state where the bolt is inserted through the insertion hole of the fixing material and the insertion hole of the lower end of the support post, thereby fixing the lower end of the support post to the support post fixing portion and attaching the fixing material to the lower end of the support post; Equipped with It is a roof structure. [Effects of the Invention]
[0007] According to the present invention, the workability of constructing a roof structure to be installed on a concrete floor can be improved. [Brief explanation of the drawings]
[0008] [Figure 1] FIG. 2 is a side view showing the roof structure of the first embodiment. [Figure 2] FIG. 2 is a front view showing the roof structure of the first embodiment as seen in the direction of arrow X1 in FIG. [Figure 3] FIG. 2 is a plan view showing the roof structure of the first embodiment as seen from the direction of arrow X2 in FIG. [Figure 4] FIG. 2 is a diagram showing a support member according to the first embodiment. [Figure 5] FIG. 2 is a view showing a support material and a support column according to the first embodiment. [Figure 6] 5A to 5C are diagrams showing a construction procedure for the roof structure of the first embodiment. [Figure 7] FIG. 10 is a side view showing a roof structure according to a second embodiment. [Figure 8]FIG. 8 is a front view showing the roof structure of the second embodiment as seen in the direction of arrow X7 in FIG. 7. [Figure 9] 8 is a plan view showing the roof structure of the second embodiment as seen in the direction of arrow X8 in FIG. 7. FIG. [Figure 10] FIG. 10 is a side view showing a roof structure according to a third embodiment. [Figure 11] 11 is a front view showing the roof structure of the third embodiment as seen in the direction of arrow X9 in FIG. [Figure 12] 11 is a plan view showing a roof structure of a third embodiment as seen in the direction of arrow X10 in FIG. [Figure 13] FIG. 10 is a side view showing a roof structure according to a fourth embodiment. [Figure 14] FIG. 14 is a front view showing the roof structure of the fourth embodiment as seen in the direction of arrow X11 in FIG. [Figure 15] FIG. 14 is a plan view showing a roof structure of a fourth embodiment as seen in the direction of arrow X12 in FIG. [Figure 16] FIG. 10 is a side view showing a roof structure according to a fifth embodiment. [Figure 17] FIG. 17 is a front view showing the roof structure of the fifth embodiment as seen in the direction of arrow X13 in FIG. 16. [Figure 18] FIG. 10 is a side view showing a roof structure according to a sixth embodiment. [Figure 19] FIG. 19 is a front view showing the roof structure of the sixth embodiment as seen in the direction of arrow X14 in FIG. [Figure 20] FIG. 19 is a plan view showing the roof structure of the sixth embodiment as seen in the direction of arrow X15 in FIG. [Figure 21] 10A to 10C are diagrams showing the construction procedure of the roof structure of the sixth embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0009] An embodiment of a roof structure of the present invention will be described with reference to the drawings. The roof structure of this embodiment is an outdoor structure having a roof and is installed outside a building. The roof structure is installed on a concrete floor independently of the building. Several embodiments of the roof structure will be described below.
[0010] (First embodiment) Fig. 1 is a side view showing a roof structure 1 of the first embodiment, and Fig. 2 is a front view showing the roof structure 1 of the first embodiment as seen from the direction of arrow X1 in Fig. 1. Figs. 1 and 2 schematically show a cross section of the underground area of an installation location 2 of the roof structure 1 and the structure of the underground portion of the roof structure 1. Fig. 3 is a plan view showing the roof structure 1 of the first embodiment as seen from the direction of arrow X2 in Fig. 1.
[0011] As shown in the figure, a roof structural body 1 is installed at an installation location 2, and the installation location 2 is covered by the roof structural body 1 from above. The roof structural body 1 is provided with a concrete floor 3 installed at the installation location 2. The concrete floor 3 is the floor body of the roof structural body 1 installed on the ground 4, and forms the floor surface 3A of the roof structural body 1. The concrete floor 3 is a flat concrete layer that is poured on the ground 4 and covers the ground 4 from above. The ground 4 is made of, for example, crushed stone that is laid and compacted on top of the earthen ground (not shown) at the installation location 2. Reinforcement material (not shown) for reinforcing is buried inside the concrete floor 3. The reinforcing material of the concrete floor 3 is steel bar, which is arranged inside the concrete floor 3.
[0012] The roof structure 1 is a roof unit installed on the concrete floor 3 at the installation location 2 and is self-supporting at the installation location 2. The roof structure 1 also includes a plurality of pillars 5 erected on the concrete floor 3, a roof 6 supported by the plurality of pillars 5, and a plurality of support members 7 supporting each of the plurality of pillars 5. In this example, the roof structure 1 is a carport, with each pillar 5 supported by two support members 7, and the square-shaped roof 6 supported by the two pillars 5. The roof 6 is a roof body that covers the concrete floor 3 at the installation location 2 of the roof structure 1 and is attached to the upper ends of the pillars 5. The roof 6 includes a lattice-shaped roof frame 6A supported by the pillars 5 and a plurality of plate-shaped roof members 6B that fill the gaps in the roof frame 6A.
[0013] The pillars 5 are installed upright on the concrete floor 3 and protrude upward from the concrete floor 3. The two pillars 5 are installed at a distance from each other and extend in the vertical direction. The two pillars 5 are also arranged spaced apart from each other in the extension direction of one edge 6C of the four edges 6C, 6D, 6E, and 6F of the roof 6. The edge 6C of the roof 6 is attached to each of the two pillars 5, and the two pillars 5 support the edge 6C of the roof 6.
[0014] The roof 6 is supported by the two supports 5 at its edge 6C, projecting from the two supports 5 in a projection direction H. The projection direction H of the roof 6 is the direction in which the roof 6 projects from the two supports 5 in the direction along the floor surface 3A of the concrete floor 3. The projection direction H of the roof 6 is the direction from one edge 6C attached to the support 5 to the other edge 6D not attached to the support 5, of the two opposing edges 6C, 6D of the roof 6. The other edge 6D is the edge on the tip side of the projection direction H of the roof 6.
[0015] The support members 7 are metal (here, steel) supports (support brackets) and are provided at the installation location 2 of the roof structural body 1 at the installation positions of the two pillars 5, respectively. The two pillars 5 are fixed to different support members 7. The support members 7 are arranged from a position above the lower ends 5A of the pillars 5, passing through the lower ends 5A of the pillars 5, to a position below the pillars 5, and are held at the installation location 2. The lower ends 5A of the pillars 5 are attached to and fixed to the support members 7, and the support members 7 support the lower ends 5A of the pillars 5. With the support of the support members 7, the pillars 5 are maintained in a state where they are installed on the concrete slab 3, and support the roof 6 that overhangs in the overhanging direction H.
[0016] Fig. 4 is a diagram showing a support member 7 of the first embodiment. Fig. 4A is a side view of the support member 7, showing one of the support members 7 shown in Fig. 1. Fig. 4B is a front view of the support member 7 as seen from the direction of arrow X3 in Fig. 4A, showing one of the support members 7 shown in Fig. 2. Fig. 4C is a plan view of the support member 7 as seen from the direction of arrow X4 in Fig. 4B, showing one of the support members 7 shown in Fig. 3.
[0017] As shown in the figure, the support material 7 has a rectangular base plate portion 10, a pillar fixing portion 11 fixed to the base plate portion 10, and a plurality of fixing portions 12 fixed to the base plate portion 10. The base plate portion 10 is a plate-shaped base portion that supports the support material 7 and is located at the lowest part of the support material 7. When the roof structure 1 is viewed from above (see Figure 3), the base plate portion 10 is formed larger than the pillars 5, and the pillars 5 are located within the base plate portion 10. The base plate portion 10 also extends outward from the entire outer periphery of the pillars 5. The pillar fixing portion 11 and the fixing portions 12 are each located above the base plate portion 10 and are fixed to the base plate portion 10 by welding.
[0018] The post fixing portion 11 is a cylindrical fixed post that protrudes upward from the base plate portion 10. The post fixing portion 11 also has a plurality of screw holes 13 formed at a distance from one another. In the longitudinal direction of the base plate portion 10 (see Figures 4B and 4C), the post fixing portion 11 is located between an edge portion (first edge portion 14) on one side of the base plate portion 10 in the longitudinal direction and an edge portion (second edge portion 15) on the other side. The first edge portion 14 and the second edge portion 15 are edges that face each other in the longitudinal direction of the base plate portion 10.
[0019] In the longitudinal direction of the base plate 10, the pillar fixing portion 11 is provided at a position shifted from the center of the base plate 10 (center in the longitudinal direction) toward the first edge 14 of the base plate 10. When the distances (shortest distances) between the first edge 14 and the pillar fixing portion 11 and the second edge 15 are compared, the distance between the first edge 14 and the pillar fixing portion 11 is shorter than the distance between the second edge 15 and the pillar fixing portion 11. The pillar fixing portion 11 is fixed to the base plate 10 shifted from the center of the base plate 10 in the longitudinal direction toward the first edge 14.
[0020] The multiple fixing portions 12 surround the pole fixing portion 11 and are arranged around the pole fixing portion 11. The fixing portions 12 are fixing protrusions that protrude upward from the base plate portion 10 and are arranged at four locations on the base plate portion 10, spaced apart from the pole fixing portion 11. The four fixing portions 12 are provided at positions adjacent to the four corners of the base plate portion 10 and spaced apart from one another. Each fixing portion 12 has a screw portion 16 fixed to the base plate portion 10, two nuts 17 movably attached to the screw portion 16, and a fixing plate 18 held between the two nuts 17. The screw portion 16 is a bolt welded to the base plate portion 10 and protrudes upward from the base plate portion 10.
[0021] The nut 17 is threaded onto a male thread (not shown) on the outer periphery of the screw portion 16 and moves up and down along the screw portion 16. The fixing plate 18 has an insertion hole (not shown) through which the screw portion 16 passes, is sandwiched between two nuts 17, and is tightened by the two nuts 17. The fixing plate 18 is formed in a rectangular shape and is held to the screw portion 16 of the fixing portion 12 by the two nuts 17. Furthermore, the vertical position of the fixing plate 18 can be changed by moving the two nuts 17 up and down along the screw portion 16. In this way, the fixing plate 18 is provided to the fixing portion 12 so that its position in the vertical direction (the direction in which the fixing portion 12 protrudes from the base plate portion 10) can be changed.
[0022] FIG. 5 is a diagram showing the support member 7 and the support column 5 of the first embodiment, showing the support column 5 fixed to the support member 7. FIG. 5A is a side view of the support member 7 and the support column 5, showing the support member 7 shown in FIG. 4A. FIG. 5B is a front view of the support member 7 and the support column 5 as seen from the direction of arrow X5 in FIG. 5A, showing the support member 7 shown in FIG. 4B. FIG. 5C is a plan view of the support member 7 and the support column 5 as seen from the direction of arrow X6 in FIG. 5B, showing the support member 7 shown in FIG. 4C. In FIGS. 5A and 5B, the support column fixing portion 11 of the support member 7 housed inside the support column 5 is shown by a chain line.
[0023] As shown in the figure, the pillar fixing portion 11 of the support material 7 is inserted into the inside of the cylindrical pillar 5 from below and placed inside the pillar 5. In this state, the pillar 5 is fixed to the pillar fixing portion 11 by a plurality of bolts 8. The bolts 8 are inserted through insertion holes (not shown) in the pillar 5 from the outside and screwed into screw holes 13 in the pillar fixing portion 11, thereby attaching the pillar 5 to the pillar fixing portion 11. The pillar 5 surrounds the entire pillar fixing portion 11 and accommodates the entire pillar fixing portion 11 inside. The pillar fixing portion 11 is a holding portion connected to the pillar 5 by the bolts 8, and holds the pillar 5 via the bolts 8.
[0024] The roof structural body 1 includes an anchoring member 9 attached to the lower end 5A of a support column 5 by a bolt 8. The bolt 8 is inserted from the outside of the support column 5 through an insertion hole (not shown) in the anchoring member 9 and then through an insertion hole (not shown) in the lower end 5A of the support column 5, and is threaded into a screw hole 13 in the support column fixing portion 11, thereby being attached to the support column fixing portion 11. The bolt 8 fixes the lower end 5A of the support column 5 to the support column fixing portion 11 of the support member 7, and the anchoring member 9 is attached and fixed to the lower end 5A of the support column 5. The anchoring member 9 has a first protrusion 9A and a second protrusion 9B formed integrally with the support column 5. The first protrusion 9A protrudes outward from the lower end 5A of the support column 5, and the second protrusion 9B protrudes upward from the tip of the first protrusion 9A in the protruding direction. The anchoring member 9 is formed into a curved shape by the first protrusion 9A and the second protrusion 9B.
[0025] The fixing members 9 are protruding members that protrude outward from the lower end 5A of the support 5, and are attached to two locations on the lower end 5A of the support 5. The two fixing members 9 protrude outward from the support 5 in opposite directions from two locations on the lower end 5A of the support 5 that face opposite each other. Furthermore, of the two fixing members 9, one fixing member 9 protrudes from the lower end 5A of the support 5 in the overhanging direction H of the roof 6 (see Figure 2), and the other fixing member 9 protrudes from the lower end 5A of the support 5 in the direction opposite to the overhanging direction H of the roof 6.
[0026] FIG. 6 is a diagram showing the construction procedure for the roof structural body 1 of the first embodiment, and similar to FIG. 2, shows the roof structural body 1 and a cross section of the underground of the installation location 2 of the roof structural body 1. As shown in the figure, when constructing the roof structural body 1, the base plate portion 10 of the support member 7 is placed on the ground 4 at each location where the two support members 7 are to be installed (see FIG. 6A). A recess 4A is formed in advance in the ground 4 at the location where the base plate portion 10 will be placed. The recess 4A is a depression with a depth corresponding to the thickness of the base plate portion 10. The base plate portion 10 is placed on the recess 4A in the ground 4 from above, and part or all of the thickness direction (vertical direction) of the base plate portion 10 is positioned within the recess 4A.
[0027] Next, for each of the two support members 7, the support posts 5 are fixed to the support post fixing portions 11 of the support members 7 that protrude from the base plate portions 10 (see FIG. 6B). At this time, the lower ends 5A of the support members 5 are fixed to the support post fixing portions 11, and the anchoring materials 9 are attached to the lower ends 5A of the support members 5. Next, the concrete floor 3 is poured on top of the ground 4 and the base plate portions 10 of the support members 7, and the base plate portion 10 is buried between the ground 4 and the concrete floor 3 (see FIG. 6C). As a result, the base plate portion 10 is sandwiched between the ground 4 and the concrete floor 3 and buried in the installation location 2 of the roof structure 1.
[0028] The base plate portion 10 is placed on the upper surface of the ground 4, and is sandwiched between the upper surface of the ground 4 and the lower surface of the concrete floor 3, and is buried between the upper surface of the ground 4 and the lower surface of the concrete floor 3. The lower end portion 5A of the support 5 and the lower portion 11A of the support fixing portion 11 are located below the floor surface 3A of the concrete floor 3, and the portion above the lower end portion 5A of the support 5 and the upper portion 11B of the support fixing portion 11 are located above the floor surface 3A of the concrete floor 3.
[0029] With the lower end 5A of the support 5 fixed to the support fixing portion 11, the concrete floor 3 is poured on the ground 4 and the base plate portion 10 of the support material 7. Accordingly, the lower end 5A of the support 5 is embedded in the concrete floor 3 together with the base plate portion 10 above the base plate portion 10, and is embedded in the concrete floor 3. At the same time, the multiple anchoring portions 12 of the support material 7 protruding from the base plate portion 10 and the multiple anchoring materials 9 protruding from the lower end 5A of the support 5 are fixed to the concrete floor 3. The anchoring portions 12 and the anchoring materials 9 are each embedded in the concrete floor 3 above the base plate portion 10, and are embedded in the concrete floor 3 and fixed to the concrete floor 3. As a result, the anchoring portions 12 and the anchoring materials 9 are held in place by the concrete floor 3.
[0030] The entire anchoring portion 12 and the entire anchoring material 9 are each placed between the base plate portion 10 and the floor surface 3A of the concrete floor 3, and are embedded inside the concrete floor 3. The position of the anchoring plate 18 of the anchoring portion 12 can be changed in the vertical direction (thickness direction of the concrete floor 3) according to the thickness of the concrete floor 3. By changing the position of the anchoring plate 18 in the vertical direction, the anchoring plate 18 can be placed at any position in the thickness direction of the concrete floor 3. In this way, the anchoring plate 18 is embedded at a predetermined position in the thickness direction of the concrete floor 3. Thereafter, the roof 6 is attached to the two supports 5, and the roof 6 is supported by the two supports 5.
[0031] In the first embodiment described above, when constructing the roof structural member 1, there is no need to excavate the ground at the installation location 2 of the roof structural member 1, which reduces the effort and workload involved in constructing the roof structural member 1 and improves the efficiency of constructing the roof structural member 1. In addition, the construction period for the roof structural member 1 can be shortened, and the amount of soil removal required for excavating the ground can be reduced. Therefore, the workability of constructing the roof structural member 1 to be installed on the concrete slab 3 can be improved.
[0032] The base plate portion 10 of the support material 7 is buried between the ground 4 and the concrete slab 3, and the support material 7 can be held in place by the ground 4 and the concrete slab 3. In addition, various forces acting on the support material 7 from the support pillars 5 can be borne by the ground 4 and the concrete slab 3 via the base plate portion 10. Therefore, the support material 7 can be supported by the ground 4 and the concrete slab 3, and the support pillars 5 can be stably supported by the support material 7.
[0033] The anchoring portion 12 of the support material 7 increases the anchoring strength of the support material 7 to the concrete floor 3. This allows the support material 7 to be firmly fixed to the concrete floor 3, and the concrete floor 3 can stably support the support material 7. By embedding the lower end 5A of the support pillar 5 in the concrete floor 3, the lower end 5A of the support pillar 5 can be anchored to the concrete floor 3 while being fixed to the pillar fixing portion 11 of the support material 7. Therefore, the lower end 5A of the support pillar 5 can be supported by the concrete floor 3. By anchoring the anchoring material 9 protruding from the lower end 5A of the support pillar 5 to the concrete floor 3, the anchoring strength of the lower end 5A of the support pillar 5 to the concrete floor 3 can be increased. Therefore, the concrete floor 3 can stably support the lower end 5A of the support pillar 5.
[0034] When the support columns 5 are installed near the periphery of the installation location 2 of the roof structural body 1, it is conceivable that the base plate portions 10 of the support materials 7 may extend beyond the periphery of the installation location 2. In this case, the support column fixing portions 11 of the support materials 7 are provided in positions shifted from the center of the base plate portion 10 toward the first edge portion 14, and the first edge portion 14 of the base plate portion 10 is positioned toward the periphery of the installation location 2. This allows the base plate portion 10 to be positioned inside the installation location 2, while the support column fixing portions 11 and the support columns 5 fixed to the support column fixing portions 11 are positioned near the periphery of the installation location 2. Furthermore, even when the installation location 2 is close to the boundary with a neighboring property, the roof structural body 1 can be easily installed at the installation location 2.
[0035] The roof 6 may be supported by one or more columns 5. One or more fixing portions 12 may be provided on the support material 7, and one or more fixing members 9 may be provided on the lower end 5A of the column 5. The fixing plate 18 of the fixing portion 12 may be provided on the fixing portion 12 without using the screw portion 16 and nut 17, and may be provided on the fixing portion 12 so that its position in the vertical direction cannot be changed. The fixing member 9 is not limited to a curved shape and can be formed in various shapes (for example, an L-shape or a plate shape). The fixing member 9 may be provided at only one of two locations facing opposite each other on the lower end 5A of the column 5, or the fixing member 9 may not be provided on the lower end 5A of the column 5.
[0036] The base plate portion 10 of the support material 7 can be formed into various shapes (for example, square, rectangular, polygonal, circular, or elongated). The support post fixing portion 11 of the support material 7 may be provided in the center of the base plate portion 10. The base plate portion 10 of the support material 7 may be placed on flat ground 4 without forming a recess 4A in the ground 4. The present invention is not limited to carports, but can be applied to roof structures other than carports (for example, cycle ports, terraces, and sunrooms), and can also be applied to roof structures attached to the wall of a building or to structures other than roofs.
[0037] Next, roof structural bodies 1 of other embodiments will be described. In the following embodiments, explanations of the same matters as in the first embodiment will be omitted, and differences from the first embodiment will be mainly described. Furthermore, in the following embodiments, components equivalent to those in the first embodiment will be given the same names as those in the first embodiment.
[0038] (Second embodiment) Fig. 7 is a side view showing the roof structure 1 of the second embodiment, and Fig. 8 is a front view showing the roof structure 1 of the second embodiment as seen from the direction of arrow X7 in Fig. 7. Figs. 7 and 8 schematically show a cross section of the underground area of the installation location 2 of the roof structure 1 and the structure of the underground portion of the roof structure 1. Fig. 9 is a plan view showing the roof structure 1 of the second embodiment as seen from the direction of arrow X8 in Fig. 7.
[0039] As shown in the figure, the roof structure 1 of the second embodiment supports a column 5 with each of the four supports 7, and the roof 6 is supported by the four columns 5. The roof 6 is also supported by the four columns 5 at two opposing edge portions 6C, 6D. The edge portions 6C, 6D are each attached to two columns 5 and supported by two columns 5. At each of the edge portions 6C, 6D, the two columns 5 are positioned spaced apart from each other in the extension direction of the edge portions 6C, 6D. In this way, multiple edges of the roof 6 may be supported by the columns 5.
[0040] (Third embodiment) Fig. 10 is a side view showing a roof structural body 1 of the third embodiment, and Fig. 11 is a front view showing the roof structural body 1 of the third embodiment as seen from the direction of arrow X9 in Fig. 10. Figs. 10 and 11 schematically show a cross section of the underground area of the installation location 2 of the roof structural body 1 and the structure of the underground portion of the roof structural body 1. Fig. 12 is a plan view showing the roof structural body 1 of the third embodiment as seen from the direction of arrow X10 in Fig. 10.
[0041] As shown in the figures, the roof structure 1 of the third embodiment, like the roof structure 1 of the first embodiment, has two supports 5 supported by each of two supports 7, and the two supports 5 support the roof 6. The two supports 5 are arranged spaced apart from each other in the extension direction of one edge 6C of the roof 6. The edge 6C of the roof 6 is attached to each of the two supports 5, and the two supports 5 support the edge 6C of the roof 6. The roof 6 is supported by the two supports 5 at the edge 6C, projecting from the two supports 5 in the projection direction H.
[0042] The support material 7 has a long base plate portion 10 that extends along the upper surface of the ground 4 and the underside of the concrete slab 3. The base plate portion 10 extends and protrudes from the lower end portion 5A of the support column 5 in the protruding direction H of the roof 6. The base plate portions 10 of the two support materials 7 are arranged parallel to and spaced apart from each other in a direction intersecting (here, perpendicular to) the protruding direction H of the roof 6. The base plate portion 10 is arranged below the roof 6 between two opposing edge portions 6C, 6D of the roof 6 and extends along the protruding direction H of the roof 6.
[0043] The fixing portions 12 are provided at multiple locations in the longitudinal direction of the base plate 10, between one end and the other end of the base plate 10 in the longitudinal direction. Here, five fixing portions 12 are arranged at intervals from each other in the longitudinal direction of the base plate 10. Furthermore, fixing portions 12 are arranged on both sides of the support fixing portion 11 in the longitudinal direction of the base plate 10. Four fixing portions 12 are provided in the portion of the base plate 10 below the roof 6, and one fixing portion 12 is provided in the portion of the base plate 10 outside the roof 6.
[0044] When constructing the roof structural body 1, the base plate portion 10 is placed on the ground 4 with its longitudinal direction facing the overhang direction H of the roof 6. Next, the pillars 5 are fixed to the pillar fixing portions 11 of the support members 7. Next, all or part of the roof 6 is attached to the two pillars 5, and the two pillars 5 are connected by all or part of the roof 6. The part of the roof 6 attached to the pillars 5 is all or part of the roof frame 6A of the roof 6. The roof structural body 1 is temporarily placed on the ground 4 using the long base plate portion 10, and the concrete slab 3 is poured. Thereafter, if the entire roof frame 6A has been attached to the pillars 5, the roof material 6B is attached to the roof frame 6A. If only part of the roof frame 6A has been attached to the pillars 5, the roof frame 6A is assembled and the roof material 6B is attached to the roof frame 6A. In this way, the roof 6 is attached to the two supports 5 and is supported by the supports 5 while projecting from the two supports 5 in the projection direction H. In the third embodiment, the base plate portion 10 of the support material 7 can stably support the supports 5 and can improve the workability of constructing the roof structure 1.
[0045] (Fourth embodiment) Fig. 13 is a side view showing a roof structural body 1 of the fourth embodiment, and Fig. 14 is a front view showing the roof structural body 1 of the fourth embodiment as seen from the direction of arrow X11 in Fig. 13. Figs. 13 and 14 schematically show a cross section of the underground area of the installation location 2 of the roof structural body 1 and the structure of the underground portion of the roof structural body 1. Fig. 15 is a plan view showing the roof structural body 1 of the fourth embodiment as seen from the direction of arrow X12 in Fig. 13.
[0046] As shown in the figures, the roof structural body 1 of the fourth embodiment supports a roof 6 by four columns 5, similar to the roof structural body 1 of the second embodiment. The roof 6 is supported by the four columns 5 at two opposing edge portions 6C, 6D. Each of the edge portions 6C, 6D is attached to two columns 5 and supported by two columns 5. At each of the edge portions 6C, 6D, the two columns 5 are arranged spaced apart from each other in the extension direction of the edge portions 6C, 6D.
[0047] Here, two columns 5 are installed at a distance from each other on each of opposing edges 6C, 6D of the roof 6, and one support member 7 supports the two columns 5. The support member 7 has a long base plate portion 10 that extends along the upper surface of the ground 4 and the lower surface of the concrete floor 3. The base plate portion 10 is disposed across the two columns 5 and extends between the lower ends 5A of the two columns 5. The support member 7 has column fixing portions 11 provided at two locations in the longitudinal direction of the base plate portion 10, and the columns 5 are fixed to each of the two column fixing portions 11 spaced apart in the longitudinal direction of the base plate portion 10. The two columns 5 are connected to each other by the base plate portion 10 of the support member 7 via the two column fixing portions 11.
[0048] The fixing portions 12 are provided at a plurality of locations in the longitudinal direction of the base plate 10, between one end and the other end of the base plate 10 in the longitudinal direction. Here, six fixing portions 12 are arranged at intervals from one another in the longitudinal direction of the base plate 10. Furthermore, fixing portions 12 are arranged on both sides of each of the two support pillar fixing portions 11 in the longitudinal direction of the base plate 10. Four fixing portions 12 are provided in the portion of the base plate 10 between the two support pillars 5, and one fixing portion 12 is provided between the end of the base plate 10 and the support pillar 5.
[0049] During construction of the roof structural body 1, the base plate portion 10, which is disposed across the two columns 5, is placed on the ground 4 at each location where the two support members 7 are to be installed. The columns 5 are then fixed to the column fixing portions 11 provided at two locations on the base plate portion 10. Next, all or part of the roof 6 is attached to the four columns 5, and the four columns 5 are connected by all or part of the roof 6. The part of the roof 6 attached to the columns 5 is all or part of the roof frame 6A of the roof 6. The roof structural body 1 is temporarily placed on the ground 4 using the long base plate portion 10, and the concrete slab 3 is poured. After that, if the entire roof frame 6A has been attached to the columns 5, the roof material 6B is attached to the roof frame 6A. If only part of the roof frame 6A has been attached to the columns 5, the roof frame 6A is assembled, and the roof material 6B is attached to the roof frame 6A. In this way, the roof 6 is attached to the four pillars 5 and supported by the four pillars 5.
[0050] In the fourth embodiment, the base plate portion 10 of the support member 7 can stably support the pillars 5 and can improve the workability of constructing the roof structural body 1. Here, the base plate portion 10 extends across two pillars 5, from one of the two pillars 5 to the other pillar 5. Alternatively, one support member 7 may support three or more pillars 5. In this case, the pillars 5 are installed at intervals from one another, and the base plate portion 10 is disposed across the pillars 5. Furthermore, pillar fixing portions 11 are provided at multiple locations in the longitudinal direction of the base plate portion 10, and the pillars 5 are fixed to each of them.
[0051] (Fifth embodiment) Fig. 16 is a side view showing the roof structural body 1 of the fifth embodiment, and Fig. 17 is a front view showing the roof structural body 1 of the fifth embodiment as seen from the direction of arrow X13 in Fig. 16. Figs. 16 and 17 schematically show a cross section of the underground portion of the installation location 2 of the roof structural body 1 and the structure of the underground portion of the roof structural body 1.
[0052] As shown in the figure, the roof structure 1 of the fifth embodiment supports a column 5 with each of two supports 7, and the two columns 5 support the roof 6. The two columns 5 are positioned apart from each other at an intermediate portion 6G between two opposing edge portions 6C, 6D of the roof 6, and support the roof 6. The intermediate portion 6G of the roof 6 is attached to each of the two columns 5, and the two columns 5 support the intermediate portion 6G of the roof 6.
[0053] The roof structure 1 includes a privacy panel body 20. The panel body 20 includes a plurality of support posts 21 erected on the concrete floor 3, a panel 22 supported by the plurality of support posts 21, and a plurality of support members 23 supporting each of the plurality of support posts 21. Here, the panel body 20 supports each of the support posts 21 with three support members 23, and the three support posts 21 support a square-shaped panel 22. The support posts 21 are configured similarly to the support posts 5 described in the first embodiment, and, like the support posts 5, are installed in an upright position on the concrete floor 3. The support members 23 are configured similarly to the support members 7 described in the first embodiment, and, like the support members 7, support the support posts 21. The panels 22 are privacy panel materials, and are attached to each of the three support posts 21 and span the three support posts 21.
[0054] (Sixth embodiment) Fig. 18 is a side view showing a roof structural member 1 of the sixth embodiment, and Fig. 19 is a front view showing the roof structural member 1 of the sixth embodiment as viewed from the direction of arrow X14 in Fig. 18. Figs. 18 and 19 schematically show a cross section of the underground area of the installation location 2 of the roof structural member 1 and the structure of the underground portion of the roof structural member 1. Fig. 20 is a plan view showing the roof structural member 1 of the sixth embodiment as viewed from the direction of arrow X15 in Fig. 18. Fig. 21 is a diagram showing the construction procedure for the roof structural member 1 of the sixth embodiment, and similar to Fig. 19, shows the cross section of the underground area of the installation location 2 of the roof structural member 1 and the roof structural member 1.
[0055] As shown in the figure, in the roof structural body 1 of the sixth embodiment, the pillar fixing portion 11 of the support member 7 has a lower portion 11A and an upper portion 11B that are continuous in the vertical direction (see FIG. 21 ). The lower portion 11A of the pillar fixing portion 11 is an embedded portion that is embedded in the concrete floor 3, and the upper portion 11B of the pillar fixing portion 11 is a protruding portion that protrudes from the concrete floor 3. The lower portion 11A is the portion of the pillar fixing portion 11 on the base plate portion 10 side (lower side), includes the lower end of the pillar fixing portion 11, and is connected to the base plate portion 10. The upper portion 11B is a portion above the lower portion 11A of the pillar fixing portion 11, includes the upper end of the pillar fixing portion 11, and protrudes upward from the floor surface 3A of the concrete floor 3.
[0056] The fixing material 9 is attached to the lower portion 11A of the pillar fixing part 11, and the first protrusion 9A of the fixing material 9 protrudes from the lower portion 11A of the pillar fixing part 11 outward from the pillar fixing part 11. In this way, the fixing material 9 is a protruding member that protrudes outward from the lower portion 11A of the pillar fixing part 11, and is attached to the lower portion 11A of the pillar fixing part 11 at two points by welding, and is fixed to the lower portion 11A of the pillar fixing part 11.
[0057] The two fixing members 9 protrude outward from the pole fixing portion 11 in opposite directions from two locations facing opposite sides of the lower portion 11A of the pole fixing portion 11. Of the two fixing members 9, one fixing member 9 protrudes from the lower portion 11A of the pole fixing portion 11 in the overhanging direction H of the roof 6 (see Figure 19), and the other fixing member 9 protrudes from the lower portion 11A of the pole fixing portion 11 in the opposite direction to the overhanging direction H of the roof 6.
[0058] When constructing the roof structural body 1, the base plate portion 10 of the support member 7 is placed on the ground 4 (see FIG. 21A). Next, without fastening the support columns 5 to the support column fixing portions 11, the concrete floor 3 is poured on top of the ground 4 and the base plate portion 10 of the support member 7, and the base plate portion 10 is embedded between the ground 4 and the concrete floor 3 (see FIG. 21B). At the same time, the lower portion 11A of the support column fixing portion 11 is embedded in the concrete floor 3 together with the base plate portion 10 above the base plate portion 10. In addition, the multiple anchoring materials 9 protruding from the lower portion 11A of the support column fixing portion 11 are fixed to the concrete floor 3. The anchoring materials 9 are embedded in the concrete floor 3 being poured above the base plate portion 10, and are embedded in and fixed to the concrete floor 3. As a result, the lower portion 11A of the support post fixing portion 11 and the anchoring material 9 are held in the concrete floor 3.
[0059] The upper portion 11B of the pillar fixing portion 11 is not embedded in the concrete floor 3, but protrudes upward from the concrete floor 3. The pillar 5 is fixed to the upper portion 11B of the pillar fixing portion 11 protruding from the concrete floor 3 (see Figure 21C). The upper portion 11B of the pillar fixing portion 11 is inserted into the interior of the pillar 5 from below and placed inside the pillar 5. In this state, the pillar 5 is fixed to the upper portion 11B of the pillar fixing portion 11 with a plurality of bolts 8. The lower portion 11A of the pillar fixing portion 11 is located below the floor surface 3A of the concrete floor 3, and the pillar 5 and the upper portion 11B of the pillar fixing portion 11 are located above the floor surface 3A of the concrete floor 3. Thereafter, the roof 6 is attached to the two pillars 5, and the roof 6 is supported by the two pillars 5.
[0060] In the sixth embodiment, the lower portion 11A of the support fixing portion 11 can be fixed to the concrete floor 3 by embedding the lower portion 11A of the support fixing portion 11 in the concrete floor 3. This increases the fixing strength of the support material 7 to the concrete floor 3. Furthermore, by fixing the fixing material 9 to the concrete floor 3, the fixing strength of the lower portion 11A of the support fixing portion 11 and the support material 7 to the concrete floor 3 can be increased.
[0061] One or more fixing materials 9 may be provided on the lower portion 11A of the pole fixing portion 11. Furthermore, fixing materials 9 may be provided on only one of two locations facing opposite directions on the lower portion 11A of the pole fixing portion 11, and fixing materials 9 do not have to be provided on the lower portion 11A of the pole fixing portion 11. The configurations of the pole fixing portions 11, poles 5, and fixing materials 9 of the support members 7 of the first to fifth embodiments may be changed to the configurations of the pole fixing portions 11, poles 5, and fixing materials 9 of the support member 7 of the sixth embodiment.
[0062] As described above, the roof structure is A roof structure comprising: a support pillar installed on the concrete floor covering the ground; a roof supported by the support pillar; and a support material supporting the support pillar; The support material is a roof structure having a base plate portion that is placed on the ground and buried between the ground and the concrete floor, and a pillar fixing portion that protrudes from the base plate portion and to which the pillar is fixed. Therefore, the workability of constructing the roof structure to be installed on the concrete floor can be improved.
[0063] The support material has an anchoring portion that protrudes from the base plate portion and is embedded in the concrete floor and fixed thereto. Therefore, the anchoring portion of the support material increases the anchoring strength of the support material to the concrete floor, allowing the concrete floor to stably support the support material.
[0064] The lower end of the support is fixed to the support fixing portion and buried in the concrete floor. Therefore, the lower end of the support can be fixed to the support fixing portion of the support material and anchored to the concrete floor.
[0065] The roof structure is provided with anchors that protrude from the lower ends of the pillars and are embedded in the concrete floor to be fixed thereto. Therefore, the strength of the anchorage of the lower end of the support pillar to the concrete floor can be increased, and the lower end of the support pillar can be stably supported by the concrete floor.
[0066] The support post fixing portion has a lower portion embedded in the concrete floor and an upper portion protruding from the concrete floor, The support pole is fixed to the upper portion of the support pole fixing part. Therefore, the lower part of the support pillar fixing portion can be fixed to the concrete floor, thereby increasing the strength of the support material's fixation to the concrete floor.
[0067] The roof structure is provided with an anchoring material that protrudes from the lower portion of the support pillar fixing portion and is embedded in the concrete floor and fixed thereto. Therefore, the strength of the anchorage of the lower part of the support pillar fixing portion and the support material to the concrete floor can be increased.
[0068] The support pole fixing portion is provided at a position shifted from the center of the base plate portion toward the edge of the base plate portion. Therefore, the base plate portion can be positioned inside the installation location, while the support post fixing portion and the support post fixed to the support post fixing portion can be positioned near the periphery of the installation location.
[0069] The roof is supported by the support pillars in a state where the roof projects from the support pillars in a projection direction, The base plate portion extends and protrudes from the support column in the protruding direction. Therefore, the base plate portion of the support material can stably support the support pillar, and the workability of constructing the roof structure can be improved.
[0070] The roof structure includes a plurality of the support columns spaced apart from one another; The base plate portion is disposed across the plurality of support columns, The support pole fixing portions are provided at a plurality of locations on the base plate portion, and the support poles are fixed to the respective support pole fixing portions. Therefore, the base plate portion of the support material can stably support the support pillar, and the workability of constructing the roof structure can be improved. [Explanation of symbols]
[0071] 1 Roof structure, 2 Installation location, 3 Concrete floor, 3A Floor, 4 Ground, 4A Recess, 5 Support, 5A Lower end, 6 Roof, 6A Roof frame, 6B Roof material, 6C Edge, 6D Edge, 6E Edge, 6F Edge, 6G Middle, 7 Support, 8 Bolt, 9 Anchoring material, 9A First Protrusion, 9B... Second protrusion, 10... Base plate portion, 11... Pillar fixing portion, 11A... Lower portion, 11B... Upper portion, 12... Anchoring portion, 13... Screw hole, 14... First edge portion, 15... Second edge portion, 16... Screw portion, 17... Nut, 18... Anchoring plate, 20... Panel body, 21... Pillar, 22... Panel, 23... Support material, H... Extension direction.
Claims
1. A roof structure comprising: a support pillar installed on the concrete floor covering the ground; a roof supported by the support pillar; and a support material supporting the support pillar; The support material has a base plate portion that is placed on the ground and buried between the ground and the concrete floor, and a support fixing portion that protrudes from the base plate portion and to which the support is fixed, The lower end of the support is fixed to the support fixing part and embedded in the concrete floor, An anchoring material that protrudes from the lower end of the support and is embedded in the concrete floor and fixed thereto; a bolt attached to the support post fixing portion in a state where the bolt is inserted through the insertion hole of the fixing material and the insertion hole of the lower end of the support post, thereby fixing the lower end of the support post to the support post fixing portion and attaching the fixing material to the lower end of the support post; A roof structure comprising:
2. The roof structure according to claim 1, The support material is a roof structure having an anchoring portion that protrudes from the base plate portion and is embedded in the concrete floor and fixed thereto.
3. The roof structure according to claim 1 or 2, The pillar fixing portion is a roof structure provided at a position shifted from the center of the base plate portion toward the edge of the base plate portion.
4. The roof structure according to any one of claims 1 to 3, The roof is supported by the support pillars in a state where the roof projects from the support pillars in a projection direction, The base plate portion is a roof structure that protrudes and extends in the projection direction relative to the support pillar.
5. The roof structure according to any one of claims 1 to 3, a plurality of said support columns spaced apart from one another; The base plate portion is disposed across the plurality of support columns, The pillar fixing portions are provided at a plurality of locations on the base plate portion, and the pillars are fixed to the respective pillar fixing portions of the roof structure.
Citation Information
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