Fence panel
The fence panel design simplifies assembly by using connecting materials sandwiched between furring strips and secured by screws, addressing installation complexities and ensuring stability and durability.
Patent Information
- Application Number
- JP2024104159
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2026-01-16
AI Technical Summary
Existing fence panels require multiple fasteners to be attached to specific locations on both the top and bottom of the mesh body, complicating the installation process, and misalignment or mismatched rod thicknesses can lead to additional assembly difficulties.
A fence panel design where the upper and lower ends of the mesh body are sandwiched between two connecting materials abutted from both sides in the out-of-plane direction, held by furring strips arranged above and below, with joining materials that restrict movement and are secured by screws.
Facilitates easy and quick assembly of the fence panel, providing stability and preventing noise and water accumulation while ensuring secure attachment.
Smart Images

Figure 2026005663000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a fence panel having a mesh body having wires. [Background technology]
[0002] Conventionally, there has been known a fence that includes a mesh body, a coping board, and a lower crosspiece, and fasteners are provided at the top and bottom of the mesh body, and the coping board and lower crosspiece, together with the ends of the mesh body, are fastened to the posts by engaging the fasteners (see, for example, Patent Document 1). This fence has multiple fasteners provided at the top and bottom of the mesh body, and each fastener has fitting portions at both ends that fit onto vertical rods (wires), with screw holes provided in the centers of the fitting portions. The fasteners are arranged so as to span adjacent vertical rods of the mesh body, and are attached to the mesh body by abutting the fitting portions against the vertical rods and pushing them in. The mesh body with the fasteners attached has its upper part, together with the fasteners, fitted into the coping board, and the upper part of the mesh body is fixed by screwing screws into the screw holes of the fasteners, and its lower part, together with the fasteners, is fitted into the lower crosspiece, and the lower part of the mesh body is fixed by screwing screws into the screw holes of the fasteners. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2023-58816 Summary of the Invention [Problem to be solved by the invention]
[0004] The above-mentioned fence requires fasteners to be attached to multiple locations on both the top and bottom of the mesh body, and each fastener attached to the mesh body must be screwed in, making the installation process complicated. Furthermore, since the fasteners cannot be screwed in unless they are attached to specific locations on the many vertical rods, if the fasteners are installed in the wrong location, they must be removed and reinstalled in the appropriate location. Furthermore, if the thickness of the vertical rods does not match the inner diameter of the fastener's fitting, the fastener must be changed, making the assembly process of attaching the coping and lower rail to the mesh body complicated. The present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a fence panel that is easy to assemble. [Means for solving the problem]
[0005] The main invention for achieving this objective is a fence panel having a mesh body having wire rods, wherein the upper and lower ends of the mesh body are sandwiched between two connecting materials that are respectively abutted from both sides in the out-of-plane direction of the mesh body, and the connecting materials are held by furring strips that are arranged at intervals above and below. Other features of the present invention will become apparent from the description of this specification and the accompanying drawings. [Effects of the Invention]
[0006] According to the present invention, it is possible to provide a fence panel that is easy to assemble. [Brief explanation of the drawings]
[0007] [Figure 1] 1 is an external view showing a mesh fence using a fence panel according to an embodiment of the present invention. [Figure 2] 1 is a vertical cross-sectional view showing a mesh fence using a fence panel according to an embodiment of the present invention. [Figure 3] FIG. 2 is a vertical cross-sectional view showing the upper part of a fence panel. [Figure 4] FIG. 2 is a vertical cross-sectional view showing the lower part of a fence panel. [Figure 5] FIG. 2 is an exploded perspective view showing the configuration of a mesh panel. [Figure 6] FIG. 10 is a perspective view showing a method of attaching the upper and lower furring strips to the mesh panel. [Figure 7] FIG. 10 is a vertical cross-sectional view showing a modified example of the upper bonding material. [Figure 8] FIG. 10 is a vertical cross-sectional view showing an example in which an elastic member is provided at an opposing portion in an upper bonding material of a modified example. DETAILED DESCRIPTION OF THE INVENTION
[0008] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS A fence panel according to an embodiment of the present invention will now be described with reference to the drawings. In this embodiment, as shown in Figure 1, a mesh fence 4 will be described as an example, in which a fence panel 3 that forms the boundary between the inside side, which is the building side, and the outside side, such as the road, is attached to a support 2 that is erected on, for example, a concrete block 1.
[0009] The mesh fence 4 of this embodiment includes two posts 2 erected at a distance from each other, and a fence panel 3 attached to the posts 2. In the following explanation, the up and down directions when the mesh fence 4 is viewed from the outside (road side) in an installed state will be referred to as the up and down direction, the left and right directions will be referred to as the width direction of the mesh fence 4, and the direction perpendicular to the left and right directions will be referred to as the depth direction. Even for each part of the mesh fence 4, or even for each member that makes up the mesh fence 4 in a standalone state, the directions will be described in terms of the up and down directions, left and right directions, and depth directions in an installed state.
[0010] The post 2 is a square pipe-shaped member with a hollow section penetrating in the longitudinal direction. As shown in Figure 2, the fence panel 3 is placed on the side surface 2a of the post 2 facing outward (toward the road), and is supported by a support member 5 fixed to the bottom of the post 2, with its upper end attached to the post 2 by a connecting member 6.
[0011] As shown in Figure 2, the fence panel 3 has upper furring strips 7 and lower furring strips 8, and a mesh panel 10 that is provided between the upper furring strips 7 and lower furring strips 8 and has wires 10a that intersect with each other. The mesh panel 10 has a mesh body 11 (described later) and connectors 12 that connect the upper and lower ends of the mesh body 11 to the upper furring strips 7 and lower furring strips 8, respectively.
[0012] As shown in Figures 3 and 4, the upper furring strips 7 and lower furring strips 8 are both extruded materials formed with the longitudinal direction as the extrusion direction, have a generally rectangular cross-sectional shape, and have hollow portions 7a, 8a penetrating in the longitudinal direction. The upper furring strips 7 and lower furring strips 8 are arranged with a gap between them vertically, and have slits 7b, 8b formed along the longitudinal direction on the opposing surfaces. The hollow portions 7a, 8a of the upper furring strips 7 and lower furring strips 8 accommodate a mesh body 11 to which a joining body 12 is attached, i.e., a mesh panel 10, with its upper end portion (described later) of vertical wires 10a accommodated in the upper furring strips 7 and its lower end portion accommodated in the lower furring strips 8, so that the mesh body 11 is arranged to extend between the upper furring strips 7 and lower furring strips 8 through the slits 7b, 8b.
[0013] In the upper furring strip 7 and the lower furring strip 8, the configuration of the portions where the upper and lower ends of the vertical wires 10a of the mesh body 11 and the connecting body 12 are accommodated in the hollow portions 7a and 8a is the same but is upside down.
[0014] As shown in Figure 3, the upper furring strip 7 has a pair of furring strip walls 7c spaced apart in the depth direction, a pair of furring strip extensions 7d extending from the lower ends of the pair of furring strip walls 7c to opposite sides, and a partition wall 7e connecting the pair of furring strip walls 7c and located above the furring strip extensions 7d with a gap therebetween, facing the furring strip extensions 7d. A slit 7b is formed between the extended tips of the pair of furring strip extensions 7d facing each other in the depth direction and is located along the longitudinal direction. The partition wall 7e divides the hollow space 7a within the upper furring strip 7 into upper and lower sections, and the lower part of the hollow space 7a is connected to the outside through the slit 7b.
[0015] As shown in Figure 4, the lower furring strip 8 has a pair of furring strip walls 8c spaced apart in the depth direction, a pair of furring strip extensions 8d extending from the upper ends of the pair of furring strip walls 8c to opposite sides, and a partition wall 8e connecting the pair of furring strip walls 8c and located below the furring strip extensions 8d with a gap therebetween, facing the furring strip extensions 8d. A slit 8b is formed between the extended tips of the pair of furring strip extensions 8d facing each other in the depth direction and is located along the longitudinal direction. The partition wall 8e divides the hollow portion 8a within the lower furring strip 8 into upper and lower portions, and the upper portion of the hollow portion 8a is connected to the outside through the slit 8b.
[0016] 1 and 2, the mesh body 11 is formed in a lattice shape by a plurality of vertical wires 10a spaced apart in the left-right direction and a plurality of horizontal wires 10a welded to the vertical wires 10a at intervals in the up-down direction. The mesh body 11 is planar with boundaries defined by the vertical wires 10a and the horizontal wires 10a, and the out-of-plane direction of the planar mesh body 11 is the depth direction.
[0017] The vertical wire 10a is longer than the distance between the upper furring strip 7 and the lower furring strip 8, and its upper end is housed in the hollow portion 7a of the upper furring strip 7 and its lower end is housed in the hollow portion 8a of the lower furring strip 8.
[0018] The upper connector 12 that connects the upper end of the mesh body 11 to the upper furring strip 7 and the lower connector 12 that connects the lower end of the mesh body 11 to the lower furring strip 8 are the same member and are used upside down. The connector 12 is placed in the hollow portion 7a, 8a of the upper furring strip 7 or lower furring strip 8 together with the upper or lower end of the mesh body 11.
[0019] The joint 12 has an outer joint material 13 arranged on the outside of the mesh body 11 and an inner joint material 14 arranged on the inside of the mesh body 11. The outer joint material 13 and the inner joint material 14 are both extruded shapes formed with the longitudinal direction as the extrusion direction, and have approximately the same length as the upper furring strips 7 and the lower furring strips 8.
[0020] As shown in Figures 3 and 4, the outer joining material 13 has an outer extension portion facing portion 13a that faces the furring strip extension portions 7d, 8d in the vertical direction on the outside within the hollow portions 7a, 8a, an outer slit arrangement portion 13b that is connected to the outer extension portion facing portion 13a and is arranged in the slits 7b, 8b, an outer partition wall portion facing portion 13c that faces the outer portion of the partition wall portions 7e, 8e in the vertical direction within the hollow portions 7a, 8a, and a portion extending from the outer slit arrangement portion 13b to the outer partition wall portion facing portion The outer wall portion 13c of the second outer extension portion 13e is formed on the outer wall portion 13c of the second outer extension portion 13e. The outer wall portion 13c of the second outer extension portion 13e is formed on the outer wall portion 13c of the second outer extension portion 13e. The outer wall portion 13c of the second outer extension portion 13e is formed on the outer wall portion 13c of the second outer extension portion 13e. The outer wall portion 13c of the third outer extension portion 13f .... The outer wall portion 13c is formed on the inner end of the outer wall portion 13c. The outer wall portion 13c is formed on the inner end of the outer wall portion 13c. The outer wall portion 13c is formed on the outer wall portion 13c. The outer wall portion 13c is formed on the inner end of the outer wall portion 13c. The outer wall portion 13c is formed on the outer wall portion 13c. The outer wall portion 13c is formed on the inner end of the outer wall portion 13c. The outer wall portion 13c is formed on the outer wall portion 13c.
[0021] The inner end of the outer slit arrangement portion 13b is located on an extension of the inner end of the third outer extension portion 13f, and an outwardly recessed recess 13h is provided on the inside of the first outer extension portion 13d. An elastic member 15, such as synthetic resin rubber, is attached to the inner surface of the third outer extension portion 13f, and the third outer extension portion 13f is provided with multiple threaded holes 13i at appropriate intervals in the longitudinal direction into which screws 16 that advance in the forward direction are threaded. The inclined portion 13g is inclined from the third outer extension portion 13f side toward the outer partition wall portion facing portion 13c side so that the distance between it and the second outer extension portion 13e increases.
[0022] The distance W1 between the outer extension facing portion 13a of the outer joining material 13 and the outer partition wall facing portion 13c is formed slightly narrower than the distance W2 between the outer furring strip extension portions 7d, 8d and the partition wall portions 7e, 8e of the upper furring strip 7 and the lower furring strip 8. Therefore, when the outer joining material 13 is housed in the hollow portions 7a, 8a of the upper furring strip 7 and the lower furring strip 8, its movement in the vertical direction is restricted.
[0023] The inner joining material 14 has an inner extension-facing portion 14a that faces the furring strip extensions 7d, 8d in the vertical direction inside the hollow portions 7a, 8a, an inner slit-arranged portion 14b that is connected to the inner extension-facing portion 14a and is arranged in the slits 7b, 8b, an inner partition wall-facing portion 14c that faces the inner portion of the partition wall 7e, 8e in the vertical direction inside the hollow portions 7a, 8a, and a connecting wall portion 14d that connects the outer end of the inner slit-arranged portion 14b to the outer end of the inner partition wall-facing portion 14c. An elastic member 15 made of, for example, synthetic resin rubber is attached to the outer surface of the connecting wall portion 14d, and the connecting wall portion 14d has insertion holes 14e at multiple locations aligned with the positions of the screw holes 13i, through which screws 16 that are to be threaded into the screw holes 13i are inserted.
[0024] The distance W3 between the inner extension facing portion 14a of the inner joining material 14 and the inner partition wall facing portion 14c is formed slightly narrower than the distance W4 between the inner furring strip extension portions 7d, 8da and the partition walls 7e, 8e of the upper furring strip 7 and the lower furring strip 8. Therefore, when the inner joining material 14 is housed in the hollow portions 7a, 8a of the upper furring strip 7 and the lower furring strip 8, its movement in the vertical direction is restricted.
[0025] The mesh body 11 is sandwiched between the third outer extension 13f and the connecting wall 14d, with the uppermost or lowermost horizontal wire positioned in the recess 13h of the upper or lower outer joining member 13, and as shown in Fig. 5, a screw 16 entering from the insertion hole 14e of the connecting wall 14d is threaded into the threaded hole 13i, so that the mesh body 11 is sandwiched between the outer joining member 13 and the inner joining member 14. At this time, as the screw 16 is tightened, the elastic member 15 attached to the third outer extension 13f and the connecting wall 14d is compressed between the wire 10a.
[0026] The third outer extending portion 13f and the connecting wall portion 14d correspond to the abutting portion of the two joining materials against which the mesh body abuts, and to the facing portions that face each other across the mesh body. In addition, in the outer joining material 13, the outer extending portion facing portion 13a and the outer slit arrangement portion 13b, which project outward from the third outer extending portion 13f, and the outer partition wall portion facing portion 13c and the inclined portion 13g, correspond to the extending portions that project outward from the facing portion (third outer extending portion 13f) in the out-of-plane direction, and in the inner joining material 14, the inner extending portion facing portion 14a and the inner slit arrangement portion 14b, which project inward from the connecting wall portion 14d, and the inner partition wall portion facing portion 14c, correspond to the extending portions that project inward from the facing portion (connecting wall portion 14d) in the out-of-plane direction. That is, the joined body 12 made up of the joined outer joining material 13 and inner joining material 14 has protruding portions that protrude from the facing portions to both sides in the out-of-plane direction.
[0027] With the mesh body 11 sandwiched between the outer joining material 13 and the inner joining material 14, the distance W5 from the outer edge of the outer extension portion facing portion 13a to the inner edge of the inner extension portion facing portion 14a and the distance W6 from the outer edge of the outer partition wall portion facing portion 13c to the inner edge of the inner partition wall portion facing portion 14c are formed slightly narrower than the distance W7 in the front direction between the pair of furring strip walls 7c, 8c. Therefore, when the outer joining material 13 and the inner joining material 14 are housed in the hollow portions 7a, 8a of the upper furring strip 7 and the lower furring strip 8 with the mesh body 11 sandwiched between them, movement in the front direction is restricted.
[0028] As shown in Fig. 6, the upper furring strips 7 and lower furring strips 8 are attached to the upper and lower ends of the mesh panel 10, which has the outer joining members 13 and inner joining members 14 attached to the mesh body 11, by sliding them from the sides along the in-plane direction of the mesh panel 10. At this time, the upper and lower joining members 12 attached to the mesh body 11 are housed in the hollow portions 7a and 8a of the upper furring strips 7 and lower furring strips 8. For example, the outer partition wall-facing portion 13c of the outer joining member 13 and the inner partition wall-facing portion 14c of the inner joining member 14 are provided at both longitudinal ends with protrusions (not shown) that protrude toward the partition walls 7e and 8e. By sliding the upper furring strips 7 and lower furring strips 8, the protrusions fit into the partition walls 7e and 8e, holding the upper furring strips 7 and lower furring strips 8 to the mesh panel 10, thereby forming the fence panel 3.
[0029] With the fence panel 3 of this embodiment, the fence panel 3 can be assembled simply by holding the outer joining members 13 and inner joining members 14, which abut and hold the upper and lower ends of the mesh body 11 from both sides in the out-of-plane direction of the mesh body 11, in the upper furring strips 7 and lower furring strips 8. This makes it possible to provide a fence panel 3 that is easy to assemble in a short amount of time and has excellent assembly properties.
[0030] Furthermore, since the outer joining material 13, the inner joining material 14, the upper furring strips 7 and the lower furring strips 8 are long members that run along the in-plane direction of the mesh body 11, the outer joining material 13 and the inner joining material 14 can clamp a wide area at the upper or lower end of the mesh body 11, and since the outer joining material 13 and the inner joining material 14, which are long members that clamp the mesh body 11, are held by the long members, the upper furring strips 7 and the lower furring strips 8, it is possible to hold the mesh body 11 in a stable state.
[0031] Furthermore, the movement of the upper furring strips 7 and lower furring strips 8 in the projection direction (outside the plane of the mesh body 11) and vertical direction is restricted by the outer extension portion facing portion 13a, outer slit arrangement portion 13b, outer partition wall portion facing portion 13c, inclined portion 13g, inner extension portion facing portion 14a, inner slit arrangement portion 14b, and inner partition wall portion facing portion 14c of the outer joining material 13 and inner joining material 14 arranged within the hollow portions 7a and 8a. Therefore, with the outer joining material 13 and inner joining material 14 restricting the movement of the upper furring strips 7 and lower furring strips 8 in the projection direction and vertical direction, the upper furring strips 7 and lower furring strips 8 can be slid along the longitudinal direction of the joining body 12, allowing the joining body 12 to be easily positioned within the hollow portions 7a and 8a. This allows the upper furring strips 7 and lower furring strips 8 to be easily installed by sliding them.
[0032] Additionally, elastic members 15 are provided on the third outer extensions 13f of the outer joining members 13 and the connecting walls 14d of the inner joining members 14, which sandwich the mesh body 11. The outer joining members 13 and the inner joining members 14 are joined by screws 16 inserted in the out-of-plane direction. Tightening the screws 16 narrows the gap between the third outer extensions 13f and the connecting walls 14d, which sandwich the mesh body 11, and compresses the elastic members 15 between the mesh body 11 and the third outer extensions 13f and the connecting walls 14d. This allows the mesh body 11 to be more firmly sandwiched between the outer joining members 13 and the inner joining members 14. The elastic members 15 are not necessarily provided. Alternatively, they may be provided on only one of the third outer extensions 13f and the connecting walls 14d.
[0033] Furthermore, because there is a gap between the outer joining material 13 and the inner joining material 14 attached to the mesh body 11, the partition wall portion 8e of the lower furring strip 8 is exposed between the outer joining material 13 and the inner joining material 14 within the lower furring strip 8. Therefore, water that has entered between the outer joining material 13 and the inner joining material 14 that hold the mesh body 11 in place is less likely to accumulate between the outer joining material 13 and the inner joining material 14, and can be easily discharged to the outside along the partition wall portion 8e.
[0034] In the above embodiment, an example was described in which the outer partition wall facing portion 13c of the outer joining material 13 and the inner partition wall facing portion 14c of the inner joining material 14 extend to the opposite side from the side where they face each other, but this is not limited to this. For example, it is also possible for either the outer joining material or the inner joining material to extend to the other side and have a facing portion that faces closely to the partition wall portion 7e. Here, the upper furring strip 7 side will be described as an example, but the same applies to the lower furring strip 8 side.
[0035] 7, the outer joining material 18 has an outer extension facing portion 18a that faces the furring strip extension portion 7d in the vertical direction on the outside within the hollow portion 7a, an outer slit arrangement portion 18b that is connected to the outer extension facing portion 18a and arranged in the slit 7b, an outer extension portion 18c that extends from the outer slit arrangement portion 18b toward the partition wall portion 7e, and an opposing portion 18d that extends inward from the end of the outer extension portion 18c on the partition wall portion 7e side and faces the partition wall portion 7e in close proximity. The outer extension portion 18c has insertion holes 18e that are appropriately spaced apart in the longitudinal direction and through which screws 16 that enter in the forward direction are inserted.
[0036] The inner joining material 19 has an inner extending portion facing portion 19a that faces the furring strip extending portion 7d in the vertical direction on the outside within the hollow portion 7a, an inner slit arranging portion 19b that is connected to the inner extending portion facing portion 19a and arranged in the slit 7b, and an inner extending portion 19c that extends from the outer end of the inner slit arranging portion 19b toward the partition wall portion 7e. The inner extending portion 19c has threaded holes 19d at multiple locations aligned with the positions of the insertion holes 18e, into which screws 16 that enter in the forward direction and join the outer joining material 18 and the inner joining material 19 are threadedly engaged.
[0037] The outer joining material 18 and the inner joining material 19 have elastic members 15 attached to their outer extending portions 18c and inner extending portions 19c, respectively, and are configured so that the mesh body 11 is sandwiched between the outer extending portions 18c and the inner extending portions 19c, and the elastic members 15 are compressed between the wires 10a by tightening the screws 16. Here, the outer extending portions 18c and the inner extending portions 19c correspond to facing portions that face each other with the mesh body sandwiched between them.
[0038] As shown in Fig. 8, if an elastic member 15 is also attached to the surface of the facing portion 18d, which is adjacent to the end of the inner extension 19c on the partition wall 7e side, facing the mesh body 11, even if the mesh body 11 is moved vertically by wind or the like, the end of the mesh body 11 will not come into direct contact with the facing portion 18d, thereby suppressing noise generation. Here, the facing portion 18d corresponds to the facing portion of one of the two joining materials that faces the upper and lower ends of the mesh panel in the vertical direction. In this embodiment, the facing portion 18d is provided on the outer joining material 18, but the facing portion may also be provided on the inner joining material 19.
[0039] In the present embodiment, an example has been described in which the elastic member 15 is provided on each of the outer extending portion 18c and the inner extending portion 19c, but it may be provided on only one of the outer extending portion 18c and the inner extending portion 19c. It may also be provided on only the facing portion 18d. It is also not necessary to provide the elastic member 15.
[0040] Furthermore, the above-described embodiments are provided to facilitate understanding of the present invention and are not intended to limit the present invention. The present invention may be modified or improved without departing from the spirit thereof, and it goes without saying that the present invention includes equivalents thereof. The present embodiment includes at least the following aspects of the invention.
[0041] Aspect 1: A fence panel having a mesh body with wire rods, wherein the upper and lower ends of the mesh body are sandwiched between two connecting materials that are respectively abutted from both sides in the out-of-plane direction of the mesh body, and the connecting materials are held by furring strips that are arranged at intervals above and below.
[0042] According to the fence panel of aspect 1, the fence panel can be assembled simply by holding the two joining materials, which abut and hold the upper and lower ends of the mesh body from both sides in the out-of-plane direction of the mesh body, in the upper and lower furring strips. This makes it possible to provide a fence panel with excellent assembly properties that can be assembled easily in a short amount of time.
[0043] Aspect 2: The fence panel according to Aspect 1, wherein the joining material and the furring strips are elongated members that extend along the in-plane direction of the mesh body.
[0044] According to the fence panel of aspect 2, the connecting material and furring strips are long members that run along the in-plane direction of the mesh body, so that the connecting material can clamp a wide area at the upper or lower end of the mesh body, and since the connecting material, which is a long member clamped between the mesh body and the connecting material, is held by the furring strips of the long member, it is possible to hold the mesh body in a stable state.
[0045] Aspect 3: A fence panel as described in Aspect 1 or Aspect 2, characterized in that at least one of the two joining materials has an elastic member at the contact portion where the mesh body contacts, and the two joining materials are joined by a screw inserted in the out-of-plane direction.
[0046] According to the fence panel of aspect 3, an elastic member is provided on at least one of the two joining materials that sandwich the mesh body, and the two joining materials are joined by a screw inserted in the out-of-plane direction. Therefore, when the screw is tightened, the gap between the two joining materials that sandwich the mesh body narrows, and the elastic member is compressed between the mesh body and the joining materials. This makes it possible to more firmly sandwich the mesh body between the two joining materials.
[0047] Aspect 4: A fence panel according to any one of Aspects 1 to 3, characterized in that one of the two joining materials has an opposing portion that faces the upper or lower end of the mesh body in the vertical direction, and an elastic member is provided in the opposing portion.
[0048] According to the fence panel of aspect 4, an elastic member is provided on the opposing portion of one of the two joining materials that faces the upper or lower end of the mesh body in the vertical direction, so that even if the mesh body is blown up or down by wind or the like, the opposing portion will not come into direct contact with the upper or lower end of the mesh body, thereby making it possible to prevent noise from being generated by contact between the opposing portion and the upper or lower end of the mesh body.
[0049] Aspect 5: A fence panel according to any one of Aspects 1 to 4, characterized in that the lower ends of the two joining materials held by the lower furring strip are spaced apart in the outward direction of the mesh body.
[0050] According to the fence panel of aspect 5, the lower ends of the two bonding materials held by the lower furring strip are spaced apart in the out-of-plane direction of the mesh body, making it possible to prevent water that has entered between the two bonding materials that hold the mesh body in place from accumulating between the two bonding materials.
[0051] Aspect 6: A fence panel according to any one of Aspects 1 to 5, wherein the furring strip has a hollow portion along the longitudinal direction and a slit connecting the hollow portion to the outside, the upper and lower ends of the mesh body are accommodated in the hollow portion and positioned through the slit, the two joining materials have facing portions facing each other across the mesh body and protruding portions protruding on both sides in the out-of-plane direction from the facing portions, and movement of the furring strip in the out-of-plane direction and in the vertical direction is restricted by the protruding portions.
[0052] According to the fence panel of the sixth aspect, the out-of-plane and up-down movement of the furring strips is restricted by the protruding portions of the joining material, so that the joining material can be easily positioned within the hollow portion by sliding the furring strips along the length of the joining material. This makes it easy to install the furring strips by sliding them. [Explanation of symbols]
[0053] 3 Fence panel, 7 Upper furring strip, 7a Hollow section, 7b Slit, 8 Lower furring strip, 8a Hollow section, 8b Slit, 10a Wire rod, 11 mesh body, 13 outer joining material, 13a outer extension portion facing portion (extension portion), 13b outer slit arrangement portion (extending portion), 13c outer partition wall portion opposing portion (extending portion), 13f 3rd outer extension part (contact part, facing part), 14 Inner joint material, 14a: inner extension portion facing portion (extending portion); 14b: inner slit arrangement portion (extending portion); 14c inner partition wall opposing portion (projecting portion), 14d connecting wall portion (abutment portion, opposing portion), 15 elastic member, 16 screw, 18 outer joining material, 18a outer extension portion opposing portion (extending portion), 18b Outer slit arrangement part (overhanging part), 18c Outer extension part, 18d Opposing part, 19 inner joint material (abutment portion, facing portion), 19a inner extension portion facing portion (extending portion), 19b inner slit arrangement portion (extending portion), 19c inner extension portion (abutment portion, facing portion),
Claims
1. A fence panel having a mesh body having wires, The upper end and the lower end of the mesh body are sandwiched between two bonding materials that are respectively abutted from both sides in the out-of-plane direction of the mesh body, A fence panel characterized in that the joining material is held by furring strips arranged at intervals above and below.
2. The fence panel according to claim 1, A fence panel characterized in that the joining material and the furring strips are long members that extend along the in-plane direction of the mesh body.
3. The fence panel according to claim 1 or 2, At least one of the two bonding materials has an elastic member at a contact portion where the mesh body contacts, A fence panel characterized in that the two joining materials are joined by screws inserted in the out-of-plane direction.
4. The fence panel according to claim 1 or 2, One of the two bonding materials has an opposing portion that faces the upper end or the lower end of the mesh body in the up-down direction, A fence panel characterized in that an elastic member is provided at the opposing portion.
5. The fence panel according to claim 1 or 2, A fence panel characterized in that the lower ends of the two joining materials held by the lower furring strip are spaced apart in the outward direction of the mesh body.
6. The fence panel according to claim 1 or 2, The furring strip has a hollow portion along the longitudinal direction and a slit that connects the hollow portion to the outside, The mesh body has upper and lower ends accommodated in the hollow portion and disposed through the slit, The two bonding materials have facing portions that face each other with the mesh body sandwiched therebetween, and protruding portions that protrude from the facing portions to both sides in the out-of-plane direction, A fence panel characterized in that the movement of the furring strip in the out-of-plane direction and the up-and-down direction is restricted by the protruding portion.
Citation Information
Patent Citations
Fence
JP2023058816A