Scaffold and panel mounting member
The scaffolding panel with through-holes and a rotatable panel mounting member improves assembly workability by allowing internal attachment to the scaffolding frame, addressing the challenge of external installation.
Patent Information
- Application Number
- JP2024114292
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2026-01-29
AI Technical Summary
The assembly of scaffolding panels on scaffolding frames is cumbersome as they need to be installed while being held outside the frame, affecting workability.
A scaffolding panel configuration with a rib portion featuring through-holes and a panel mounting member with a detachable mounting body and rotatable panel insertion portion that attaches to the scaffolding frame, allowing the panel to be positioned inside the frame during assembly.
This configuration improves the workability of scaffolding assembly by enabling the panel to be attached and positioned relative to the frame without external holding, enhancing ease of installation.
Smart Images

Figure 2026013736000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a scaffold having a scaffold panel attached thereto, and a panel mounting member for mounting the scaffold panel to the scaffold. [Background technology]
[0002] Scaffolding equipped with scaffolding panels used as side walls of the scaffolding is known. For example, Patent Document 1 discloses a panel structure including panels used as side walls for preventing falls of suspended scaffolding and a panel support mechanism for supporting the panels. The panel support mechanism has guide rails extending along the arrangement direction of the panels and clamps that releasably secure the guide rails to the single pipes of the suspended scaffolding, and each panel has a slider portion that releasably engages with the guide rails and is slidable along the guide rails.
[0003] Patent Document 1 discloses that the panel structure allows multiple panels to be slid and attached to the panel support mechanism, so that when installing multiple panels on a suspended scaffold to assemble the panel structure, workers can work in a stable position, which leads to improved safety. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2017-2703 Summary of the Invention [Problem to be solved by the invention]
[0005] Generally, scaffolding panels are attached to the outside of the scaffolding frame. Therefore, when installing the scaffolding panels on the scaffolding, it is necessary to install the scaffolding panels while holding them outside the scaffolding, which makes the workability of assembling the scaffolding not very good. Therefore, there is a need to improve the workability of assembling scaffolding with scaffolding panels.
[0006] An object of the present invention is to provide a configuration that can improve the workability of assembly work in a scaffold having scaffolding panels. [Means for solving the problem]
[0007] A scaffolding according to one embodiment of the present invention includes a scaffolding frame made up of a plurality of vertical struts extending vertically and a plurality of horizontal members extending horizontally, a scaffolding board supported by at least some of the horizontal members and extending horizontally, a scaffolding panel extending vertically, and a panel mounting member for fixing the scaffolding panel to the scaffolding frame. The scaffolding frame includes an outer frame that forms the outline of the scaffold. The scaffolding panel has a rib portion with a through-hole that penetrates in a direction along the surface of the scaffolding panel. The panel mounting member has a mounting main body portion that is detachably connected to the outer frame, and a panel insertion portion that extends from the mounting main body portion toward the inside of the scaffold beyond the outer frame and is inserted into the through-hole of the rib portion of the scaffolding panel (first configuration).
[0008] In this configuration, the panel insertion portion of the panel mounting member attached to the outer building frame can be inserted into the through-hole provided in the rib portion of the scaffolding panel, thereby positioning the scaffolding panel in a predetermined position relative to the panel mounting member. Therefore, for example, there is no need to prepare additional fixing parts for fixing the scaffolding panel to the outer building frame. This improves the workability of scaffolding assembly work.
[0009] Furthermore, in the above-described configuration, since the panel insertion portion is located inside the scaffolding relative to the outer building frame, the scaffolding panel can be positioned inside the scaffolding relative to the outer building frame. Therefore, when attaching the scaffolding panel to the scaffolding, it is not necessary to attach the scaffolding panel while holding it outside the outer building frame of the scaffolding. Therefore, the workability of scaffolding assembly work can be improved compared to scaffolding in which the scaffolding panel is attached outside the outer building frame. Therefore, it is possible to provide a scaffolding having scaffolding panels that can improve the workability of assembly work.
[0010] In the scaffolding of the first configuration, the mounting body of the panel mounting member has a pair of clamping portions that sandwich the vertical support or the horizontal member to which the mounting body is connected. The panel insertion portion of the panel mounting member is connected to the mounting body so as to be rotatable about a rotation axis that extends horizontally relative to the mounting body (second configuration).
[0011] This allows the orientation of the panel insertion portion relative to the scaffolding panel to be the same whether the mounting body of the panel mounting member is connected to a vertical support extending in the vertical direction that constitutes the outer building frame or to a horizontal member extending in the horizontal direction. Therefore, whether the mounting body of the panel mounting member is connected to the vertical support or the horizontal member, a configuration can be realized in which the panel insertion portion can be inserted into the through-hole provided in the rib portion of the scaffolding panel.
[0012] Therefore, the mounting body can be connected to a part of the outer building frame that is easy to connect, thereby improving the workability of assembling the scaffolding having the scaffolding panels.
[0013] In the scaffolding of the second configuration, the scaffolding panel has a plurality of the through holes provided at a plurality of positions in the vertical direction of the scaffolding panel (third configuration).
[0014] This allows the vertical position of the scaffolding panel relative to the panel mounting member to be changed, so even when the mounting body of the panel mounting member is connected to a part of the outer building frame that is easy to connect, it is possible to provide a configuration in which the scaffolding panel can be positioned at a desired vertical position of the scaffolding.
[0015] In the scaffolding of the first to third configurations, some of the horizontal members are support posts supported by the structure so as to extend horizontally below the structure. The scaffolding panels are fixed to the outer building frame by the panel mounting members so as to extend vertically at positions overlapping the scaffolding boards when viewed in the vertical direction (fourth configuration).
[0016] This allows for a configuration in which a suspended scaffold suspended below a structure has a scaffolding panel positioned inside the suspended scaffolding relative to the outer building frame and inside the outer edge of the scaffolding board. In the suspended scaffolding, the scaffolding panel can be attached to the suspended scaffolding while being supported by the scaffolding board. This improves the workability of scaffolding assembly work. Therefore, a scaffold having scaffolding panels can be provided that can improve the workability of assembly work.
[0017] A panel mounting member according to one embodiment of the present invention is a panel mounting member for fixing a vertically extending scaffolding panel having a rib portion with a through-hole that penetrates in a direction along the surface of the scaffolding panel to a scaffolding building frame of a scaffolding having a scaffolding board supported by at least some of the horizontal members and a plurality of vertically extending vertical struts and horizontal members. The panel mounting member includes a mounting main body portion detachably connected to an outer building frame that defines the outline of the scaffolding, and a panel insertion portion extending from the mounting main body toward the inside of the scaffolding beyond the outer building frame and insertable into the through-hole in the rib portion of the scaffolding panel. The mounting main body portion has a pair of clamping portions that sandwich the vertical struts or horizontal members to which the mounting main body portion is connected. The panel insertion portion is connected to the mounting body portion so as to be rotatable about a rotation axis that extends horizontally relative to the mounting body portion (fifth configuration).
[0018] In the above-described configuration, the panel insertion portion of the panel mounting member attached to the outer building frame can be inserted into the through-hole provided in the rib portion of the scaffolding panel, thereby positioning the scaffolding panel in a predetermined position relative to the panel mounting member. Therefore, for example, there is no need to prepare additional fixing parts for fixing the scaffolding panel to the outer building frame. This improves the workability of scaffolding assembly work.
[0019] Furthermore, the panel mounting member having the above-described configuration allows the scaffolding panel to be positioned inside the outer frame of the scaffolding. Therefore, when attaching the scaffolding panel to the scaffolding, it is not necessary to hold the scaffolding panel outside the outer frame of the scaffolding while attaching it. Therefore, the workability of the scaffolding assembly work can be improved compared to when a panel mounting member is used to attach the scaffolding panel to the outside of the outer frame.
[0020] Furthermore, the panel insertion portion is rotatable relative to the mounting body portion. This allows the orientation of the panel insertion portion relative to the scaffolding panel to be the same whether the mounting body portion of the panel mounting member is connected to a vertical support extending in the vertical direction that constitutes the outer building frame or to a horizontal member extending in the horizontal direction. Therefore, regardless of whether the mounting body portion is connected to the vertical support or the horizontal member, a configuration can be realized in which the panel insertion portion can be inserted into the through-hole provided in the rib portion of the scaffolding panel. Therefore, the mounting body portion can be connected to a part of the outer building frame that is easy to connect. This provides a panel mounting member that can improve the workability of assembly work for scaffolding with scaffolding panels. [Effects of the Invention]
[0021] In a scaffolding according to one embodiment of the present invention, the scaffolding panel has a rib portion with a through-hole that penetrates in a direction along the surface of the scaffolding panel, and the scaffolding panel mounting member has a mounting main body that is detachably connected to an outer building frame and a panel insertion portion that extends from the mounting main body toward the inside of the scaffolding beyond the outer building frame and is inserted into the through-hole of the rib portion of the scaffolding panel. With this configuration, when attaching the scaffolding panel to the scaffolding, it is not necessary to hold the scaffolding panel outside the outer building frame of the scaffolding while attaching it. Therefore, a scaffolding having scaffolding panels can be provided that can improve the workability of assembly work. [Brief explanation of the drawings]
[0022] [Figure 1] FIG. 1 is a perspective view showing a schematic configuration of an exemplary scaffold according to an embodiment. [Figure 2] FIG. 2 is a perspective view showing a schematic configuration of the scaffolding frame according to the embodiment. [Figure 3] FIG. 3 is a cross-sectional view schematically showing the relationship between the vertical support, the scaffolding panel, and the panel mounting member. [Figure 4] FIG. 4 is a diagram illustrating how the panel insertion portion is inserted into the through-hole of the scaffolding panel. [Figure 5] FIG. 5 is a perspective view of the scaffolding panel according to the embodiment, viewed from one side in the thickness direction. [Figure 6] FIG. 6 is a perspective view of the scaffolding panel as viewed from the other side in the thickness direction. [Figure 7] FIG. 7 is a diagram showing a cross section of a scaffolding panel as viewed in the longitudinal direction. [Figure 8] FIG. 8 is a diagram showing a cross section of the scaffolding panel as viewed from the rear. [Figure 9] FIG. 9 is a perspective view of the panel mounting member according to the embodiment. [Figure 10] FIG. 10 is a diagram illustrating changes in the shape of the panel mounting member. [Figure 11] FIG. 11 is a view equivalent to FIG. 4 showing a case where the panel mounting member is attached to a horizontal member. [Figure 12] FIG. 12 is a diagram showing a state in which two scaffolding panels are positioned side by side in the horizontal direction relative to one panel mounting member. [Figure 13] FIG. 13 is a cross-sectional view showing a schematic relationship between a horizontal member, a scaffolding panel, and a panel mounting member. [Figure 14] FIG. 14 is a cross-sectional view that schematically shows a state in which the panel insertion portion of the panel mounting member is inserted into another through-hole of the scaffolding panel. [Figure 15] FIG. 15 is a cross-sectional view that schematically shows a state in which the panel insertion portion of one panel mounting member is inserted into the through-holes that are arranged vertically in two scaffolding panels that are arranged vertically. [Figure 16] FIG. 16 is a diagram showing another embodiment of fixing a scaffolding panel with a panel mounting member. [Figure 17] FIG. 17 is a diagram showing another embodiment of fixing a scaffolding panel by a panel mounting member. [Figure 18] FIG. 18 is a cross-sectional view that schematically shows the relationship between the outer building frame, the scaffolding panel, and the panel mounting member when the scaffolding panel is arranged on an outer building frame of another configuration. DETAILED DESCRIPTION OF THE INVENTION
[0023] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. The same or corresponding parts in the drawings are designated by the same reference numerals, and their description will not be repeated. Furthermore, the dimensions of the components in each drawing do not faithfully represent the actual dimensions of the components, the dimensional ratios of the components, etc.
[0024] In the following description, the direction in which the scaffolding board 3 extends is referred to as the horizontal direction, and the thickness direction of the scaffolding board 3 is referred to as the up-down direction. The horizontal direction includes not only a direction horizontal to the ground, but also a direction inclined to the ground to such an extent that the scaffolding 1 functions as the scaffolding 1. The up-down direction is the vertical direction or a direction perpendicular to the horizontal direction.
[0025] In the following description, the inside of the scaffolding 1 means the inside of the outer frame 2a of the scaffolding frame 2 that constitutes the outline of the scaffolding 1.
[0026] Furthermore, in the following description, the expressions "fix," "connect," and "attach" (hereinafter referred to as "fixing") include not only cases where members are directly fixed to each other, but also cases where members are fixed via other members. In other words, in the following description, the expression "fixing" includes both direct and indirect fixing of members to each other.
[0027] (Scaffolding configuration) 1 to 12, an exemplary configuration of a scaffolding 1 in which a panel mounting clamp 5 according to this embodiment is used will be described. In this embodiment, a case will be described in which the scaffolding 1 is a suspended scaffolding as an example. A suspended scaffolding is a scaffolding that is suspended below a structure using suspension members 7 such as wires and chains. A suspended scaffolding is used in work environments where it is difficult to set up scaffolding on the ground, such as when constructing a structure such as a bridge. Note that the configuration of the scaffolding shown in each figure is an example, and a scaffolding in which a panel mounting clamp 5 is used may have a different configuration from the scaffolding shown in each figure. Furthermore, a scaffolding in which a panel mounting clamp 5 is used may be a scaffolding that is set up on the ground.
[0028] Fig. 1 is a perspective view showing the schematic configuration of a portion of scaffolding 1. Fig. 2 is a perspective view showing the schematic configuration of a scaffolding building frame 2. Fig. 3 is a cross-sectional view showing a schematic relationship between a vertical support 22, a scaffolding panel 4, and a panel mounting clamp 5. Fig. 4 is a view illustrating the insertion of a panel insertion portion 522 into a through-hole 425 of the scaffolding panel 4.
[0029] As shown in FIG. 1, scaffolding 1 includes a scaffolding frame 2, a scaffolding board 3, a scaffolding panel 4, a panel mounting clamp 5, and a hanging member 7.
[0030] The scaffolding frame 2 constitutes the framework of the scaffolding 1. The scaffolding frame 2 is formed three-dimensionally by combining a plurality of horizontal members 21 extending horizontally and a plurality of vertical struts 22 extending vertically. The plurality of horizontal members 21 and the plurality of vertical struts 22 are connected to each other by connecting members.
[0031] In this specification, horizontal members 21 collectively refer to horizontally extending members that make up the scaffolding building frame 2. For example, horizontal members 21 include: a pair of support posts 211 suspended from a structure via hanging members 7; support posts 212 (see FIG. 2 ) connected to the support posts 211 so as to extend horizontally between the pair of support posts 211 and support the scaffolding boards 3; beams 213 extending horizontally or at an angle between adjacent vertical posts 22 above the scaffolding boards 3; and handrails.
[0032] In this embodiment, as shown in Fig. 2, the horizontal members 21 of the scaffolding 1 include a head support 211, a support support 212, and a beam 213. The scaffolding 1 is suspended from a structure by a suspension member 7 connected to the head support 211. The support support 212 has a longitudinal end connected to the head support 211. The beam 213 has a longitudinal end connected to a vertical support 22. The vertical support 22 has a lower end connected to the head support 211 by a connecting member 23 so as to extend upward from the head support 211.
[0033] Generally, the spacing between the vertical supports may be determined based on inch sizes or metric sizes. In this embodiment, the spacing between the vertical supports 22 may be determined based on inch sizes or metric sizes. When based on inch sizes, the spacing between the vertical supports 22 is, for example, 1829 mm, 1524 mm, 1219 mm, 914 mm, or 610 mm. When based on metric sizes, the spacing between the vertical supports 22 is, for example, 1800 mm, 1500 mm, 1200 mm, 900 mm, or 600 mm.
[0034] The configuration of the scaffolding frame 2 is not particularly limited as long as it can be used to form a scaffolding frame. The scaffolding frame may be configured, for example, such that horizontal members and vertical struts intersect, with the intersecting portions connected by connecting members. The configuration may also be such that the longitudinal ends of the horizontal members are connected to the vertical struts by connecting members. The configuration may also be a combination of these.
[0035] As shown in Fig. 2, the scaffolding frame 2 includes an outer frame 2a that forms the outline of the scaffolding 1. Hereinafter, the horizontal members 21 that form the outer frame 2a will be referred to as outer horizontal members 21a, and the vertical supports 22 that form the outer frame 2a will be referred to as outer vertical supports 22a.
[0036] As shown in FIG. 1, the scaffolding board 3 is a plate-like member extending horizontally. As shown in FIGS. 1 and 2, the scaffolding board 3 is supported by support posts 212. The scaffolding board 3 is fixed to the support posts 212 by fixing members (not shown). The scaffolding board 3 forms the floor surface of the work area of the scaffolding 1. The scaffolding board 3 serves as a work platform on which workers perform work and as a passageway along which the workers move. In addition, parts, components, tools, etc. used in work can also be placed on the scaffolding board 3.
[0037] As shown in Figure 1, the scaffolding panel 4 is a plate-like member extending in the vertical direction. The scaffolding panel 4 extends in the vertical direction inside the outer building frame 2a. The scaffolding panel 4 forms the side wall W of the scaffolding 1. The scaffolding panel 4 is installed on the scaffolding 1 for the purposes of preventing parts, components, etc. used in the scaffolding 1 from falling, preventing the emission of dust, etc., and soundproofing.
[0038] In this embodiment, as shown in Figures 1 and 3, the scaffolding panel 4 extends in the vertical direction at a position that overlaps with the scaffolding board 3 when viewed in the vertical direction. As shown in Figures 3 and 4, the scaffolding panel 4 has a rib portion in which through-holes 424, 425 that penetrate in a direction along the surface of the scaffolding panel 4 are provided. The scaffolding panel 4 is fixed to the outer building frame 2a by inserting the panel insertion portions 522 of the panel mounting clamps 5 into the through-holes 424, 425.
[0039] As shown in Figures 1 and 3, the panel mounting clamp 5 secures the scaffolding panel 4 to the outer building frame 2a. The panel mounting clamp 5 is configured so that it can be attached to either the outer horizontal member 21a or the outer vertical support 22a that constitutes the outer building frame 2a. In this embodiment, as shown in Figures 3 and 4, the panel mounting clamp 5 is attached to the outer vertical support 22a. The panel mounting clamp 5 corresponds to the panel mounting member of the present invention.
[0040] The panel mounting clamp 5 has a panel insertion portion 522 that extends toward the inside of the scaffolding 1 when attached to the outer horizontal member 21a or the outer vertical support 22a. The panel insertion portion 522 is inserted into the through holes 424, 425 of the scaffolding panel 4. In this way, the panel mounting clamp 5 fixes the scaffolding panel 4 to the outer building frame 2a.
[0041] (Scaffolding panel configuration) Next, the configuration of an exemplary scaffolding panel 4 according to this embodiment will be described in detail with reference to Fig. 1 and Fig. 5 to Fig. 8. Fig. 5 is a perspective view of the scaffolding panel 4 as seen from one side in the thickness direction. Fig. 6 is a perspective view of the scaffolding panel 4 as seen from the other side in the thickness direction. Figs. 7 and 8 are diagrams schematically showing a cross section of the scaffolding panel 4. In Figs. 7 and 8, some of the members constituting the scaffolding panel 4 are omitted, and the dimensional ratios of the members are shown at different dimensional ratios from those in Figs. 5 and 6.
[0042] 5 and 6, the scaffolding panel 4 has a rectangular plate shape overall. That is, the scaffolding panel 4 has short sides and long sides. Hereinafter, the direction in which the long sides of the scaffolding panel 4 extend will be referred to as the longitudinal direction of the scaffolding panel 4, and the direction in which the short sides extend will be referred to as the width direction of the scaffolding panel 4.
[0043] The scaffolding panel 4 has a panel main body portion 41 and a frame portion 42 that supports the panel main body portion 41.
[0044] The panel main body 41 is in the shape of a rectangular plate. When the scaffolding panel 4 is fixed to the outer building frame 2a, the panel main body 41 has a back surface 41a that is visible from outside the scaffolding 1 and a front surface 41b that is not visible from outside the scaffolding 1. In the following description, the direction in which the back surface 41a is located relative to the front surface 41b of the panel main body 41 will be referred to as the rear of the scaffolding panel 4, and the opposite direction will be referred to as the front of the scaffolding panel 4.
[0045] The material constituting the panel main body 41 is not particularly limited. The panel main body 41 is preferably made of, for example, a resin material. This allows the scaffolding panel 4 to be lightweight. The panel main body 41 is also preferably made of, for example, a material into which staples or pins can be driven. This allows, for example, the edge of a protective sheet placed on the scaffolding board 3 to be fixed to the panel main body 41 by staples or the like.
[0046] The frame portion 42 has a rectangular frame shape overall. The frame portion 42 constitutes the outer shape of the scaffolding panel 4 when viewed in the thickness direction. In other words, the length and width dimensions of the frame portion 42 are the length and width dimensions of the scaffolding panel 4. The frame portion 42 supports the panel main body portion 41. There are no particular limitations on the material that constitutes the frame portion 42, as long as it is a material that has the strength to support the panel main body portion 41. For example, the frame portion 42 is made of a metal material such as an aluminum alloy.
[0047] The frame portion 42 has a rectangular frame portion 421, a rib-like edge portion 422, and a plurality of middle rib portions 423. The rib-like edge portion 422 and the plurality of middle rib portions 423 correspond to the rib portion of the present invention. Hereinafter, for the sake of explanation, the rib-like edge portion 422 and the plurality of middle rib portions 423 will also be referred to as the rib portion.
[0048] The rectangular frame portion 421 is connected to the back surface 41a side of the panel main body portion 41. The rectangular frame portion 421 has a frame-like shape in which the central portion of a rectangular plate material parallel to the panel main body portion 41 is hollowed out in the thickness direction. As shown in FIG. 5, the length and width dimensions of the panel main body portion 41 are smaller than the length and width dimensions of the rectangular frame portion 421. When viewing the panel main body portion 41 in the thickness direction, the four outer edges of the panel main body portion 41 are located inside the four outer edges of the rectangular frame portion 421. Therefore, as shown in FIG. 7, the scaffolding panel 4 has a step on the outer periphery of the front side caused by the rectangular frame portion 421 and the panel main body portion 41.
[0049] 6, the rib-like edge portion 422 extends rearward from the four outer edges of the rectangular frame portion 421. That is, the rib-like edge portion 422 includes a pair of short-side ribs 422a, 422a extending in the thickness direction of the rectangular frame portion 421 from both ends in the longitudinal direction of the rectangular frame portion 421, and a pair of long-side ribs 422b, 422b extending in the thickness direction of the rectangular frame portion 421 from both ends in the width direction.
[0050] 6 and 8, the rib-shaped edge portion 422 is provided with through-holes 424 that penetrate the rib-shaped edge portion 422 in the thickness direction. In this embodiment, the rib-shaped edge portion 422 is provided with eight through-holes 424.
[0051] The eight through holes 424 are provided at both longitudinal ends of the short side ribs 422a, 422a and the long side ribs 422b, 422b, respectively. The panel insertion portion 522 of the panel mounting clamp 5 can pass through the through holes 424.
[0052] The plurality of middle rib portions 423 are connected to the inner surface of the rib-like edge portion 422. In this embodiment, the frame portion 42 has eight middle rib portions 423.
[0053] Four of the eight central ribs 423 are plate-shaped short-side parallel central ribs 423a that are parallel to the short-side ribs 422a, 422a. Two of the four short-side parallel central ribs 423a are connected to the inner surface of one of the pair of long-side ribs 422b. The other two of the four short-side parallel central ribs 423a are connected to the inner surface of the other of the pair of long-side ribs 422b.
[0054] Four of the eight central ribs 423 are plate-shaped long-side parallel central ribs 423b that are parallel to the long-side ribs 422b, 422b. Two of the four long-side parallel central ribs 423b are connected to the inner surface of one of the pair of short-side ribs 422a. The other two of the four long-side parallel central ribs 423b are connected to the inner surface of the other of the pair of short-side ribs 422a.
[0055] 8, the short-side parallel intermediate rib portion 423a is connected at a distance L1 from the nearest short-side rib portion 422a parallel to the short-side parallel intermediate rib portion 423a, and the long-side parallel intermediate rib portion 423b is connected at a distance L2 from the nearest long-side rib portion 422b parallel to the long-side parallel intermediate rib portion 423b.
[0056] Each of the middle rib portions 423 is provided with a through-hole 425 that penetrates the middle rib portion 423 in the thickness direction. A panel insertion portion 522 of the panel mounting clamp 5, which will be described later, can be inserted into the through-hole 425.
[0057] 6, in this embodiment, the through holes 424, 425 are elongated holes. In this embodiment, all of the through holes 424, 425 have the same length.
[0058] 8, in this embodiment, the through hole 424 provided in the short side rib portion 422a and the through hole 425 provided in the short side parallel central rib portion 423a are located at the same position in the width direction of the scaffolding panel 4. The through hole 424 provided in the long side rib portion 422b and the through hole 425 provided in the long side parallel central rib portion 423b are located at the same position in the longitudinal direction of the scaffolding panel 4.
[0059] The scaffolding panel 4 having the above-described configuration can be installed on the scaffolding 1 in a position where the longitudinal direction is the up-down direction or the width direction is the up-down direction. In this embodiment, as shown in Fig. 1, the scaffolding panel 4 is installed on the scaffolding 1 in a position where the width direction is the up-down direction.
[0060] In the scaffolding panel 4 whose width direction is the up-down direction, the through-hole 424 provided in the long-side rib portion 422b and the through-hole 425 provided in the long-side parallel middle rib portion 423b are aligned in the up-down direction. In the scaffolding panel 4 whose width direction is the up-down direction, the two through-holes 424 provided, one at each end of the short-side rib portion 422a in the longitudinal direction, are aligned in the up-down direction.
[0061] In the scaffolding panel 4 whose longitudinal direction is the up-down direction, the through-hole 424 provided in the short-side rib portion 422a and the through-hole 425 provided in the short-side parallel central rib portion 423a are aligned in the up-down direction. In the scaffolding panel 4 whose longitudinal direction is the up-down direction, the two through-holes 424 provided, one at each end of the long-side rib portion 422b in the longitudinal direction, are aligned in the up-down direction.
[0062] In this way, the scaffolding panel 4 has a plurality of through holes 424, 425 provided at a plurality of positions in the vertical direction. Therefore, by changing the attitude of the scaffolding panel 4 relative to the scaffolding 1 or by changing the through holes 424, 425 into which the panel insertion portion 522 is inserted, the vertical position of the scaffolding panel 4 relative to the panel insertion portion 522 can be changed.
[0063] Furthermore, as described above, in the scaffolding panel 4, the length and width dimensions of the panel main body 41 are smaller than the length and width dimensions of the rectangular frame portion 421. Therefore, the length and width dimensions of the panel main body 41 are smaller than the length and width dimensions of the rear end of the rib-like edge portion 422. As a result, when multiple scaffolding panels 4 are stacked in the thickness direction with their front and rear orientations aligned, the panel main body 41 can be fitted inside the rib-like edge portion 422. Therefore, multiple scaffolding panels 4 can be stacked in the thickness direction without misalignment. Furthermore, a configuration can be achieved in which multiple stacked scaffolding panels 4 do not misalign with adjacent scaffolding panels 4 in the thickness direction. Therefore, the workability of assembling a scaffolding 1 having multiple scaffolding panels 4 can be improved.
[0064] (Configuration of panel mounting clamp) Next, an exemplary panel mounting clamp 5 according to this embodiment will be described in detail with reference to Figures 2 to 4 and Figures 9 to 12. Figure 9 is a perspective view of the panel mounting clamp 5. Figure 10 is a diagram illustrating changes in the shape of the panel mounting clamp 5. Figure 11 is a diagram illustrating how the panel insertion portion 522 of the panel mounting clamp 5 attached to the outer horizontal member 21a is inserted into the through-hole 425 of the scaffolding panel 4. Figure 12 is a diagram illustrating the state in which two scaffolding panels 4 aligned horizontally are positioned relative to the panel mounting clamp 5.
[0065] As shown in FIG. 9, the panel mounting clamp 5 has a mounting body portion 51, a panel support portion 52, and a lock portion 53.
[0066] 4 and 11, the mounting body 51 is detachably connected to the outer horizontal member 21a or the outer vertical support 22a that constitutes the outer building frame 2a. As shown in Fig. 3, the mounting body 51 is connected to the outer building frame 2a so that the panel insertion portion 522 extends toward the inside of the scaffolding 1. The mounting body 51 may have any configuration as long as it is configured to be detachably connected to the outer periphery of a cylindrical member extending along the axis P.
[0067] As shown in Fig. 9, in this embodiment, the mounting body 51 has a configuration similar to that of a clamp body of a general scaffolding clamp. Specifically, the mounting body 51 has a pair of clamping sections 511 that sandwich the outer horizontal member 21a or the outer vertical support 22a, and a fastening member 512 that fastens the pair of clamping sections 511. For the sake of explanation, the axial direction of the mounting body 51 is defined as a direction parallel to the direction in which the axis P of the outer horizontal member 21a or the outer vertical support 22a sandwiched between the pair of clamping sections 511 extends. The following description will also discuss the configuration of the panel mounting clamp 5 when the axial direction of the mounting body 51 is defined as the up-down direction.
[0068] The panel support portion 52 is connected to the mounting body portion 51. The panel support portion 52 has a rotating portion 521 and a panel insertion portion 522.
[0069] The rotating part 521 is plate-shaped with a horizontal thickness direction. The rotating part 521 is connected to the outer peripheral surface of the mounting main body 51 so as to be rotatable about a rotation axis Q extending horizontally, with one surface in the thickness direction positioned on the mounting main body 51 side. In other words, the rotating part 521 is connected to the surface of the mounting main body 51 facing the inside of the scaffolding 1.
[0070] The panel insertion part 522 is connected to the other surface in the thickness direction of the rotating part 521. That is, the panel insertion part 522 is connected to the surface of the rotating part 521 facing the inside of the scaffolding 1 so as to extend toward the inside. The panel insertion part 522 is generally L-shaped and has a horizontal part 522a extending horizontally and a vertical part 522b extending upward from the horizontal part 522a.
[0071] The vertical portion 522b can be inserted into the through holes 424, 425 of the scaffolding panel 4. The horizontal portion 522a can come into contact with the underside of the rib portion in which the through holes 424, 425 are provided in the scaffolding panel 4, with the vertical portion 522b inserted into the through holes 424, 425. This positions the scaffolding panel 4 with respect to the panel mounting clamp 5.
[0072] Therefore, by attaching the panel mounting clamps 5 to the outer building frame 2a, the scaffolding panel 4 can be positioned inside the scaffolding 1 relative to the outer building frame 2a.
[0073] 2, panel mounting clamps 5 are attached to portions of the outer building frame 2a that correspond to the positions of the plurality of through holes 424, 425 among the through holes 424, 425 of one scaffolding panel 4. Then, by inserting the vertical portions 522b of each panel mounting clamp 5 into the corresponding through holes 424, 425, the scaffolding panel 4 can be fixed to the outer building frame 2a.
[0074] As described above, the rotating part 521 is rotatable about the rotation axis Q relative to the mounting main body part 51. Therefore, as shown in Fig. 10, the direction in which the vertical part 522b extends relative to the axial direction of the mounting main body part 51 can be changed. Therefore, with the axial direction of the mounting main body part 51 set to the up-down direction, the direction in which the vertical part 522b extends can be switched between upward, horizontal, and downward.
[0075] Furthermore, with the vertical portion 522b extending upward, the axial direction of the mounting body 51 can be switched between horizontal and vertical. Therefore, as shown in Fig. 4, with the vertical portion 522b extending upward, the mounting body 51 can be connected to the outer vertical support 22a. Also, as shown in Fig. 11, with the vertical portion 522b extending upward, the mounting body 51 can be connected to the outer horizontal member 21a.
[0076] 9, in this embodiment, the panel support portion 52 has a pair of panel insertion portions 522. The pair of panel insertion portions 522 are connected to the rotating portion 521 at positions and in postures that are line-symmetrical with respect to a line of left-right symmetry that passes through the rotation axis Q and extends in the up-down direction.
[0077] In this embodiment, the horizontal portion 522a has a displacement portion 522c that extends horizontally and away from the line of symmetry. That is, in this embodiment, the distance L3 between the two vertical portions 522b is wider than in a configuration without a displacement portion. The distance L3 is, for example, 108 mm.
[0078] The two vertical portions 522b can be inserted into the through holes 424, 425 of different scaffolding panels 4. Therefore, as shown in Fig. 12, two horizontally aligned scaffolding panels 4 can be positioned with respect to one panel mounting clamp 5. This allows the panel mounting clamp 5 to fix multiple horizontally aligned scaffolding panels 4 to the outer building frame 2a.
[0079] In this embodiment, the through holes 424, 425 are elongated holes. Also, the distance L3 between the vertical portions 522b of the pair of panel insertion portions 522 is configured to be wide. Therefore, the two scaffolding panels 4 can be positioned relative to the panel mounting clamp 5 so that the distance between the opposing side surfaces of two horizontally adjacent scaffolding panels 4 is wide or narrow.
[0080] This allows multiple scaffolding panels 4 arranged horizontally to be fixed to the outer frame 2a using the panel mounting clamp 5 having the above-mentioned configuration, whether the scaffolding frame 2 is configured based on inch sizes or metric sizes.
[0081] 9, the locking portion 53 locks the rotation of the rotating portion 521 relative to the mounting main body 51. In this embodiment, the locking portion 53 locks the rotating portion 521 to the mounting main body 51 at positions where the rotation angle relative to the mounting main body 51 is 0 degrees, 90 degrees, 180 degrees, or 270 degrees. The rotation angles of 0 degrees and 180 degrees are, for example, angles at which the axial direction of the mounting main body 51 and the direction in which the vertical portion 522b extends are aligned. The rotation angles of 90 degrees and 270 degrees are, for example, angles at which the axial direction of the mounting main body 51 and the direction in which the vertical portion 522b extends are perpendicular to each other.
[0082] In this embodiment, the locking portion 53 is composed of an engaging protrusion 531 provided on the rotating portion 521 that protrudes toward the mounting main body 51, and four engaging recesses provided on the mounting main body 51 into which the engaging protrusion 531 fits. The engaging recesses are not shown in the figure. When viewed in the thickness direction of the rotating portion 521, the engaging recesses are provided every 90 degrees around the rotation axis Q. This allows the locking portion 53 to lock the rotating portion 521 at positions where the rotation angles are 0 degrees, 90 degrees, 180 degrees, and 270 degrees relative to the mounting main body 51. Note that the locking portion 53 may have any other configuration as long as it is configured to lock the rotation of the rotating portion 521 relative to the mounting main body 51.
[0083] 3, the mounting body 51 of the panel mounting clamp 5 is connected to the outer vertical support 22a. The rotating portion 521 of the panel support portion 52 is locked to the mounting body 51 at a rotation angle at which the vertical portion 522b of the panel insertion portion 522 extends upward.
[0084] In this embodiment, the position at which the panel mounting clamp 5 is attached to the outer vertical support 22a is higher than the upper surface of the scaffolding board 3. In other words, the panel mounting clamp 5 is attached to a portion of the outer vertical support 22a that does not interfere with the connecting member 23 that connects the outer vertical support 22a to the horizontal member 21, or the scaffolding board 3. Therefore, when attached to the outer vertical support 22a, the panel insertion portion 522 is separated from the upper surface of the scaffolding board 3.
[0085] In this embodiment, the panel insertion portion 522 of the panel mounting clamp 5 is inserted into the through-hole 425 provided in the middle rib portion 423 of the scaffolding panel 4. Therefore, the scaffolding panel 4 can be positioned lower than when the panel insertion portion 522 is inserted into the through-hole 424 provided in the rib portion located at the lower end of the scaffolding panel 4. Therefore, even when the panel mounting clamp 5 is attached to a portion of the outer vertical support 22a that does not interfere with the connecting member 23 and the scaffolding plank 3, it is possible to construct a scaffolding 1 with no gap between the scaffolding plank 3 and the lower end of the scaffolding panel 4.
[0086] As described above, the scaffolding according to this embodiment includes a scaffolding frame 2 composed of multiple vertical supports 22 extending vertically and multiple horizontal members 21 extending horizontally, a scaffolding board 3 extending horizontally and supported by at least some of the horizontal members 21, a scaffolding panel 4 extending vertically, and a panel mounting clamp 5 for securing the scaffolding panel 4 to the scaffolding frame 2. The scaffolding frame 2 includes an outer frame 2a that forms the outline of the scaffolding 1. The scaffolding panel 4 has a rib portion with through holes 424, 425 that penetrate in a direction along the surface of the scaffolding panel 4. The panel mounting clamp 5 includes a mounting main body 51 that is detachably connected to the outer frame 2a, and a panel insertion portion 522 that extends from the mounting main body 51 toward the inside of the scaffolding 1 relative to the outer frame 2a and is inserted into the through holes 424, 425 in the rib portion of the scaffolding panel 4.
[0087] In this configuration, by inserting the panel insertion portions 522 of the panel mounting clamps 5 attached to the outer building frame 2a into the through holes 424, 425 provided in the rib portions of the scaffolding panel 4, the scaffolding panel 4 can be positioned at a predetermined position relative to the panel mounting clamps 5. Therefore, for example, there is no need to separately prepare fixing parts or the like for fixing the scaffolding panel 4 to the outer building frame 2a. This improves the workability of assembling the scaffolding 1.
[0088] Furthermore, in the above-described configuration, since the panel insertion portion 522 is located inside the scaffolding 1 relative to the outer building frame 2a, the scaffolding panel 4 can be positioned inside the scaffolding 1 relative to the outer building frame 2a. Therefore, when attaching the scaffolding panel 4 to the scaffolding 1, it is not necessary to attach the scaffolding panel 4 while holding it outside the outer building frame 2a of the scaffolding 1. Therefore, the workability of the assembly work of the scaffolding 1 can be improved compared to a scaffolding 1 in which the scaffolding panel 4 is attached outside the outer building frame 2a. Therefore, it is possible to provide a scaffolding 1 having scaffolding panels 4 that can improve the workability of the assembly work.
[0089] In the present embodiment, the middle rib portion 423 of the scaffolding panel 4 is located at a distance L1, L2 from one of the rib-like edge portions 422 that is parallel to the middle rib portion 423 and closer to the middle rib portion 423. Therefore, when the distances L1, L2 are equal to or greater than the distance from the scaffolding board 3 to the horizontal portion 522a, the underside of the scaffolding panel 4 can be brought into contact with the upper surface of the scaffolding board 3. This makes it possible to construct a scaffolding 1 with no gap between the scaffolding panel 4 and the scaffolding board 3. Therefore, it is possible to provide a scaffolding 1 configuration that can more reliably prevent components used in the scaffolding 1 from falling and dust from being emitted.
[0090] In this embodiment, the mounting body 51 of the panel mounting clamp 5 has a pair of clamping portions 511 that clamp the outer vertical support 22a or the outer horizontal member 21a to which the mounting body 51 is connected. The panel insertion portion 522 of the panel mounting clamp 5 is connected to the mounting body 51 via the rotating portion 521 so as to be rotatable about a rotation axis Q that extends horizontally relative to the mounting body 51.
[0091] This allows the posture of the panel insertion portion 522 relative to the scaffolding panel 4 to be the same whether the mounting body portion 51 of the panel mounting clamp 5 is connected to the outer vertical support 22a or the outer horizontal member 21a. Therefore, whether the mounting body portion 51 of the panel mounting clamp 5 is connected to the outer vertical support 22a or the outer horizontal member 21a, a configuration can be realized in which the panel insertion portion 522 can be inserted into the through holes 424, 425 provided in the rib portion of the scaffolding panel 4. Therefore, the mounting body portion 51 can be connected to a part of the outer building frame 2a that is easy to connect. This improves the workability of assembling the scaffolding 1 having the scaffolding panel 4.
[0092] In this embodiment, the scaffolding panel 4 has a plurality of through holes 424, 425 provided at a plurality of positions in the vertical direction of the scaffolding panel 4.
[0093] This makes it possible to change the vertical position of the scaffolding panel 4 relative to the panel mounting clamp 5. Therefore, even when the mounting body 51 of the panel mounting clamp 5 is connected to a part of the outer building frame 2a that is easy to connect, it is possible to provide a configuration that allows the scaffolding panel 4 to be positioned at a desired vertical position on the scaffolding 1.
[0094] In this embodiment, part of the horizontal member 21 is a support post 211 that is supported by the structure so as to extend horizontally below the structure. The scaffolding panel 4 is fixed to the outer building frame 2a by the panel mounting clamps 5 so as to extend in the vertical direction at a position that overlaps with the scaffolding board 3 when viewed in the vertical direction.
[0095] This makes it possible to realize a configuration in which the scaffolding panels 4 are arranged inside the scaffolding 1 relative to the outer building frame 2a and inside the outer edges of the scaffolding boards 3 in a suspended scaffolding suspended below a structure. In the scaffolding 1, the scaffolding panels 4 can be attached to the scaffolding 1 while being supported by the scaffolding boards 3. This improves the workability of assembling the scaffolding 1. This makes it possible to provide a scaffolding 1 having scaffolding panels 4 that can improve the workability of assembling the scaffolding 1.
[0096] (Other embodiments) Although the embodiments of the present invention have been described above, the above-described embodiments are merely examples for carrying out the present invention. Therefore, the present invention is not limited to the above-described embodiments, and it is possible to appropriately modify the above-described embodiments within the scope of the spirit of the present invention.
[0097] In the above embodiment, the panel mounting clamps 5 are attached to the outer vertical support posts 22a. However, the panel mounting clamps 5 may also be attached to the outer horizontal members 21a as shown in FIG.
[0098] In the above embodiment, the panel insertion portion 522 of the panel mounting clamp 5 is inserted into a through hole 425 provided in the central rib portion 423 of the scaffolding panel 4. However, the panel insertion portion 522 of the panel mounting clamp 5 may also be inserted into a through hole 424 provided in the rib-like edge portion 422 of the scaffolding panel 4, as shown in FIG.
[0099] In the above embodiment, the panel insertion portion 522 of the panel mounting clamp 5 is inserted into one through-hole of one scaffolding panel 4. However, as shown in Fig. 15, the panel insertion portion 522 of the panel mounting clamp 5 may be inserted into vertically aligned through-holes 424a, 424b of two vertically aligned scaffolding panels 4a, 4b, respectively.
[0100] In the above embodiment, the vertical portion 522b of the panel insertion portion 522 in the panel mounting clamp 5 extends upward and is inserted from below into one of the through-holes 425 of the scaffolding panel 4. However, as shown in Fig. 16 , the vertical portion 522b may be inserted horizontally into the through-hole 424 of the scaffolding panel 4.
[0101] In the above embodiment, the vertical portion 522b of the panel insertion portion 522 in the panel mounting clamp 5 extends upward and is inserted from below into one of the through-holes 425 in the scaffolding panel 4. However, as shown in Fig. 17 , the vertical portion 522b may be inserted from above into the through-hole 424 in the scaffolding panel 4.
[0102] In the above embodiment, the outer horizontal members 21a constituting the outer building frame 2a of the scaffolding 1 extend horizontally between adjacent outer vertical supports 22a. That is, in the scaffolding 1, the outer horizontal members 21a and the outer vertical supports 22a do not intersect. However, as shown in FIG. 18 , the outer horizontal members 121a and the outer vertical supports 122a constituting the outer building frame 102a of the scaffolding 101 may intersect. In this case, the panel mounting clamps 5 may be attached to either the outer horizontal member 121a or the outer vertical support 122a, whichever is located closer to the inside of the scaffolding 101.
[0103] In the above embodiment, the scaffolding panel 4 extends in the vertical direction at a position where it overlaps with the scaffolding plank 3 when viewed in the vertical direction. However, the scaffolding panel may extend in the vertical direction at a position where it does not overlap with the scaffolding plank when viewed in the vertical direction.
[0104] In the above embodiment, the scaffolding panel 4 has a panel main body 41 and a frame portion 42 having a rib portion. However, the panel main body may have the rib portion.
[0105] In the embodiment, the rib-like edge 422 of the scaffold panel 4 is provided with eight through-holes 424. However, the rib-like edge may be provided with seven or fewer through-holes. The rib-like edge may be provided with nine or more through-holes.
[0106] In the above embodiment, through holes are provided in both the short-side rib portion 422a and the long-side rib portion 422b of the rib-shaped edge portion 422. However, the rib-shaped edge portion may have through holes provided in only one of the short-side rib portion or the long-side rib portion.
[0107] In the above embodiment, the scaffold panel 4 has eight central ribs 423. However, the scaffold panel may have no central ribs. The scaffold panel may have seven or fewer central ribs. The scaffold panel may have nine or more central ribs.
[0108] In the above embodiment, the scaffolding panel 4 has a short-side parallel central rib portion 423a parallel to the short-side rib portion 422a and a long-side parallel central rib portion 423b parallel to the long-side rib portion 422b. However, the scaffolding panel may have only one of the short-side parallel central rib portion or the long-side parallel central rib portion.
[0109] In the above embodiment, the scaffolding panel 4 has a center rib portion 423 connected to the inner surfaces of the short-side ribs 422a, 422a and the inner surfaces of the long-side ribs 422b, 422b. However, the scaffolding panel may have a center rib portion extending in the longitudinal direction between the inner surfaces of the opposing short-side ribs. The scaffolding panel may also have a center rib portion extending in the width direction between the inner surfaces of the opposing long-side ribs.
[0110] In the above embodiment, the through holes 424, 425 of the scaffolding panel 4 are elongated holes. However, the through holes do not have to be elongated holes. For example, the through holes may be circular or rectangular, or may be holes having a curved portion.
[0111] In the above embodiment, the lengths of all the through holes 424, 425 are equal. However, the lengths of all the through holes do not have to be equal.
[0112] In the above embodiment, the panel mounting clamp 5 has the locking portion 53. However, the panel mounting clamp does not have to have the locking portion.
[0113] In the above embodiment, the panel mounting clamp 5 has a pair of panel insertion portions 522. However, the panel mounting clamp may have one panel insertion portion. [Industrial Applicability]
[0114] The present invention can be used for scaffolding on which scaffolding panels are installed. [Explanation of symbols]
[0115] 1, 101 Scaffolding 2 Scaffolding frame 2a, 102a Outside building frame 3 Scaffolding planks 4, 4a, 4b Scaffolding panels 5 Panel mounting clamp (panel mounting component) 21 Horizontal material 21a, 121a Outside horizontal material (horizontal material) 22 Vertical support 22a, 122a Outside vertical support (vertical support) 23 Connecting member 41 Panel body 41a Back 41b surface 42 Frame section 211 Parent Support 212 Support column 213 Beam material 421 Rectangular frame 422 Ribbed edge 422a Short side rib 422b Long side rib 423 Middle rib 423a Short side parallel center rib 423b Long side parallel center rib 424, 424a, 424b, 425 through hole 51 Mounting body 511 Clamping part 512 Fastening members 52 Panel support 521 Rotating part 522 Panel insertion part 522a Horizontal section 522b Vertical section 522c Displacement section 53 Rock Club 531 Engagement protrusion 7 Hanging member L1, L2 Distance between the center rib and the ribbed edge L3 Distance between two vertical parts of a panel mounting clamp Q Rotation axis
Claims
1. a scaffolding frame composed of a plurality of vertical struts extending in the vertical direction and a plurality of horizontal members extending in the horizontal direction; A scaffolding board that is supported by at least a portion of the plurality of horizontal members and extends horizontally; a scaffolding panel extending in the vertical direction; A panel mounting member that fixes the scaffolding panel to the scaffolding frame; A scaffold having: The scaffolding frame includes an outer frame that defines the outline of the scaffolding, The scaffolding panel has a rib portion provided with a through hole penetrating in a direction along the surface of the scaffolding panel, The panel mounting member is An attachment main body portion detachably connected to the outer building frame; A panel insertion portion that extends from the mounting main body portion toward the inside of the scaffolding more than the outer building frame and is inserted into the through hole of the rib portion of the scaffolding panel; having scaffold.
2. 2. The scaffolding of claim 1, The mounting body portion of the panel mounting member is a pair of clamping portions that clamp the vertical support or the horizontal member to which the mounting body is connected, The panel insertion portion of the panel mounting member is The mounting body is connected to the mounting body so as to be rotatable about a rotation axis extending horizontally relative to the mounting body. scaffold.
3. 3. The scaffolding of claim 2, The scaffolding panel is The scaffolding panel has a plurality of through holes provided at a plurality of positions in the vertical direction thereof. scaffold.
4. 4. A scaffolding according to any one of claims 1 to 3, A portion of the horizontal member is a support pole supported by the structure so as to extend horizontally below the structure, The scaffolding panel is fixed to the outer building frame by the panel mounting member so as to extend in the vertical direction at a position overlapping the scaffolding board when viewed in the vertical direction. scaffold.
5. A panel mounting member for fixing a scaffolding panel extending in the vertical direction and having a rib portion with a through hole that penetrates in a direction along the surface of the scaffolding panel to the scaffolding building frame of a scaffolding having a scaffolding building frame composed of a plurality of vertical struts extending in the vertical direction and a plurality of horizontal members extending in the horizontal direction, and a scaffolding board that is supported by at least a portion of the plurality of horizontal members and extends in the horizontal direction, An attachment body portion that is detachably connected to an outer frame of the scaffolding frame that forms the outline of the scaffolding; A panel insertion portion that extends from the mounting main body portion toward the inside of the scaffolding more than the outer building frame and can be inserted into the through hole of the rib portion of the scaffolding panel; and The mounting body portion is a pair of clamping portions that clamp the vertical support or the horizontal member to which the mounting body is connected, The panel insertion portion is The mounting body is connected to the mounting body so as to be rotatable about a rotation axis extending horizontally relative to the mounting body. Panel mounting material.
Citation Information
Patent Citations
Panel structure body made up of fall prevention panels for hanging scaffold and assembling method for the same
JP2017002703A