Holder for drainage piping

The drain pipe holder, with its integrated resin components, addresses the challenge of tilting and displacement by securely attaching to reinforcement bars, ensuring stable and precise installation of drain pipes in concrete foundations.

JP2026078818AActive Publication Date: 2026-05-15HAYAKAWA RUBBER CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
HAYAKAWA RUBBER CO LTD
Filing Date
2024-10-29
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing methods for installing drain pipes in concrete foundations face challenges such as tilting and displacement due to fluid pressure during concrete placement, making precise installation difficult.

Method used

A drain pipe holder formed from a resin material that integrates a vertical reinforcement bar fixing portion, a support portion, and a lateral connecting portion, which are designed to securely attach to both vertical and horizontal reinforcement bars, ensuring the drain pipe remains stable and accurately positioned.

Benefits of technology

The drain pipe holder provides stable and precise installation of drain pipes by increasing contact area with reinforcement bars, preventing displacement during concrete pouring, and allowing for simple and accurate placement.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 2026078818000001_ABST
    Figure 2026078818000001_ABST
Patent Text Reader

Abstract

To enable the precise installation of drainage pipes in their designated locations with simple operations. [Solution] The drain pipe holder 1 for holding a drain pipe installed in the rising section of the foundation concrete comprises a vertical reinforcement fixing part 10 fixed to the vertical reinforcement, a support part 20 that supports the drain pipe on the side of the vertical reinforcement, and a lateral connecting part 30 that extends from the vertical reinforcement fixing part 10 to the support part 20 and connects the vertical reinforcement fixing part 10 and the support part 20. The vertical reinforcement fixing part 10, the support part 20 and the lateral connecting part 30 are integrally molded from a resin material.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present disclosure relates to a drain pipe holder for holding a drain pipe, for example, on reinforcement bars or main reinforcement bars when placing foundation concrete.

Background Art

[0002] For example, Patent Document 1 discloses a drain pipe provided in foundation concrete. The drain pipe includes a pipe body provided so as to penetrate the standing wall surface of the foundation concrete in the thickness direction, and a lid member for closing the pipe body in normal times. The pipe body is in a state of being embedded in the standing wall surface of the foundation concrete. One opening in the axial direction of the pipe body opens to the inside of the foundation, while the other opening opens to the outside of the foundation, and the lid member is detachably attached to the opening opening to the outside of the foundation.

[0003] And, for example, when water accumulates inside the foundation concrete due to heavy rain or the like, by removing the lid member from the pipe body, it becomes possible to drain the water accumulated inside the foundation concrete from the pipe body to the outside of the foundation concrete.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] By the way, at the site where the installation work of the drain pipe as in Patent Document 1 is carried out, before placing the concrete, as shown in FIG. 20, a method of fixing the drain pipe 100 to the reinforcement 101 with the wire 102 can be considered.

[0006] However, when using wire 102 for fixing, the drainage pipe 100 is prone to tilting. Furthermore, the fluid pressure during concrete placement may cause the drainage pipe 100 to displace axially or radially. Therefore, it was difficult to accurately install the drainage pipe 100 in the designated position.

[0007] Furthermore, as shown in Figure 21, the drainage pipe 100 may be installed on the raft foundation. In this case, as shown in Figure 22, the drainage pipe 100 is installed between the formwork 400, and then concrete is poured. It is possible to rest the drainage pipe 100 on the raft foundation so that it does not move due to the flow pressure of the concrete.

[0008] However, in the case of a strip foundation, the drainage pipe 100 must be held in the air, which makes the drainage pipe 100 unstable. As a result, it was difficult to install the drainage pipe 100 accurately in the designated position.

[0009] This disclosure is made in view of the above points, and its purpose is to enable the precise installation of drainage piping in a predetermined location with simple work. [Means for solving the problem]

[0010] To achieve the above objective, one aspect of this disclosure may provide a drainage pipe holder for holding a drainage pipe installed in the rising portion of a foundation concrete. The drainage pipe holder is formed to extend along vertical reinforcement bars and comprises a vertical reinforcement bar fixing portion fixed to the vertical reinforcement bars, a support portion that supports the drainage pipe on the side of the vertical reinforcement bars, and a lateral connecting portion that extends from the vertical reinforcement bar fixing portion to the support portion and connects the vertical reinforcement bar fixing portion and the support portion. The vertical reinforcement bar fixing portion, the support portion and the lateral connecting portion are integrally molded from a resin material.

[0011] With this configuration, when the vertical reinforcement fixing part is fixed to the vertical reinforcement, the vertical reinforcement fixing part extends along the vertical reinforcement, increasing the contact area between the two. This allows the vertical reinforcement fixing part to be firmly and accurately fixed to the vertical reinforcement, while also suppressing subsequent displacement of the vertical reinforcement fixing part. As a result, the drainage pipe holder can be attached to the vertical reinforcement in a stable state. Furthermore, since the vertical reinforcement fixing part, support part, and lateral connecting part are integrally molded, there is no displacement of the support part and lateral connecting part relative to the vertical reinforcement fixing part. Therefore, by supporting the drainage pipe with the support part of the drainage pipe holder according to this disclosure, the drainage pipe can be accurately kept in a predetermined position.

[0012] The drainage pipe holder is formed to extend along horizontally extending lateral reinforcement bars and may further include a lateral reinforcement bar fixing portion fixed to the lateral reinforcement bars, and a lower connecting portion extending downward from the support portion to the lateral reinforcement bar fixing portion and connecting the lateral reinforcement bar fixing portion and the support portion. In this case, the lateral reinforcement bar fixing portion and the lower connecting portion can be integrally molded with the vertical reinforcement bar fixing portion, the support portion and the lateral connecting portion using a resin material.

[0013] With this configuration, the horizontal reinforcement fixing part extends along the horizontal reinforcement, increasing the contact area between the two. This allows for strong and precise fixing of the horizontal reinforcement fixing part to the horizontal reinforcement, while also suppressing subsequent displacement of the horizontal reinforcement fixing part. Furthermore, by fixing the horizontal reinforcement fixing part to the horizontal reinforcement, the drainage pipe holder is fixed to both the vertical and horizontal reinforcement, resulting in even greater stability. Depending on the site, it may also be possible to fix the horizontal reinforcement fixing part to the horizontal reinforcement and leave the vertical reinforcement fixing part unfixed to the vertical reinforcement.

[0014] The support portion may have a lower plate portion that extends in a direction perpendicular to the vertical reinforcement and also extends radially along the lower surface of the drain pipe. With this configuration, a wide area of ​​the lower surface of the drain pipe can be supported by the lower plate portion, so that the drain pipe can be stabilized on the lower plate portion.

[0015] The support portion may have a first side plate portion and a second side plate portion extending from one end and the other end of the lower plate portion, respectively, along the side surface of the drain pipe. With this configuration, the drain pipe can be supported from both sides, thereby further stabilizing the drain pipe.

[0016] The first and second side plates may extend to the upper surface of the drain pipe, in which case protrusions projecting upward can be formed on the upper parts of the first and second side plates, respectively. With this configuration, the drain pipe can be firmly fixed by, for example, wrapping and tying wire around the protrusions of the first and second side plates.

[0017] The resin material may be elastic. In this case, the longitudinal reinforcement fixing portion can be formed to have an arc-shaped cross-section that covers more than half of the circumferential area on the outer surface of the longitudinal reinforcement. With this configuration, when fixing the longitudinal reinforcement fixing portion to the longitudinal reinforcement, if the longitudinal reinforcement is to be inserted between the circumferential ends of the longitudinal reinforcement fixing portion, the longitudinal reinforcement fixing portion elastically deforms in a direction that expands the distance between the circumferential ends of the longitudinal reinforcement fixing portion. Once the longitudinal reinforcement is completely inside the longitudinal reinforcement fixing portion, the shape of the longitudinal reinforcement fixing portion attempts to be restored, and the longitudinal reinforcement fixing portion covers more than half of the circumferential area on the outer surface of the longitudinal reinforcement, thus preventing the longitudinal reinforcement fixing portion from falling off the longitudinal reinforcement.

[0018] The circumferential ends of the longitudinal reinforcement fixing portion may each have protruding ridges that extend radially outward and vertically. That is, by forming vertically extending ridges at both circumferential ends of the longitudinal reinforcement fixing portion, the ridges function like ribs, thereby suppressing deformation of the longitudinal reinforcement fixing portion.

[0019] The lateral connecting portion may be in the shape of a plate extending in the vertical direction. In this case, the connection strength between the vertical reinforcement fixing portion and the lateral connecting portion can be increased by ensuring that the vertical reinforcement fixing portion side of the lateral connecting portion is continuous from the top to the bottom of the vertical reinforcement fixing portion.

Advantages of the Invention

[0020] As described above, the drain pipe holder according to the present disclosure connects a longitudinal reinforcement fixing portion extending along the longitudinal reinforcement and a support portion for supporting the drain pipe by a lateral connecting portion, and integrally forms the longitudinal reinforcement fixing portion, the support portion, and the lateral connecting portion with a resin material. Therefore, the drain pipe can be accurately installed at a predetermined position with simple operations.

Brief Description of the Drawings

[0021] [Figure 1] FIG. 1 is a cross-sectional view of a concrete foundation in which a drain pipe is installed using the drain pipe holder according to Embodiment 1 of the present invention. [Figure 2] FIG. 2 is a front view showing a state in which a drain pipe is held by the reinforcement by the drain pipe holder according to Embodiment 1. [Figure 3] FIG. 3 is an exploded perspective view of the drain pipe. [Figure 4] FIG. 4 is a view of the drain pipe seen from the outdoor side. [Figure 5] FIG. 5 is a perspective view of the drain pipe holder according to Embodiment 1. [Figure 6] FIG. 6 is a front view of the drain pipe holder according to Embodiment 1. [Figure 7] FIG. 7 is a plan view of the drain pipe holder according to Embodiment 1. [Figure 8] FIG. 8 is a side view of the drain pipe holder according to Embodiment 1. [Figure 9] FIG. 9 is a front view showing the arrangement of longitudinal and transverse reinforcements. [Figure 10] FIG. 10 is a view corresponding to FIG. 9 showing a state in which the attachment of the drain pipe holder according to Embodiment 1 is completed. [Figure 11] FIG. 11 is a view for explaining an auxiliary fixing method of the drain pipe holder according to Embodiment 1. [Figure 12] FIG. 12 is a front view showing a state in which a drain pipe is held by the reinforcement by the drain pipe holder according to Embodiment 2 of the present invention. [Figure 13] Figure 13 is a perspective view of the drainage pipe holder according to Embodiment 2. [Figure 14] Figure 14 is a front view of the drainage pipe holder according to Embodiment 2. [Figure 15] Figure 15 is a plan view of the drainage pipe holder according to Embodiment 2. [Figure 16] Figure 16 is a side view of a drainage pipe holder according to Embodiment 2. [Figure 17] Figure 17 illustrates an auxiliary fixing method for a drainage pipe holder according to Embodiment 2. [Figure 18] Figure 18 shows the case where the drainage pipe holder according to Embodiment 2 is fixed to the lateral reinforcement bar. [Figure 19] Figure 19 illustrates another auxiliary fixing method for the drainage pipe holder according to Embodiment 2. [Figure 20] Figure 20 illustrates a conventional method for fixing drainage piping. [Figure 21] Figure 21 illustrates a conventional method of installing drainage piping on a slab foundation. [Figure 22] Figure 22 illustrates the intermediate stages in installing conventional drainage piping on a slab foundation. [Modes for carrying out the invention]

[0022] Embodiments of the present invention will be described in detail below with reference to the drawings. The following description of preferred embodiments is essentially illustrative and is not intended to limit the present invention, its applications, or its uses.

[0023] (Embodiment 1) Figures 1 and 2 are cross-sectional views of a concrete foundation 300 in which drainage pipes 200 are installed using a drainage pipe holder 1 according to Embodiment 1 of the present invention. This concrete foundation 300 is a so-called strip foundation and is used as the foundation for various buildings such as houses, offices, shops, factories, and warehouses. The concrete foundation 300 has a base plate portion 301 called a footing and a rising portion 302 that rises upward from the base plate portion 301.

[0024] As shown in Figure 2, the concrete foundation 300 has vertical reinforcement bars A1 extending in the vertical direction and horizontal reinforcement bars B1 and B2 embedded in it. Although Figure 2 shows only one vertical reinforcement bar A1, multiple vertical reinforcement bars A1 are provided horizontally at intervals from each other. Also, although Figure 2 shows two horizontal reinforcement bars B1 and B2, the number of horizontal reinforcement bars is not limited to two, and there may be three or more. Horizontal reinforcement bars are also called main reinforcement bars.

[0025] The vertical reinforcement A1 extends continuously from the base slab 301 to the upper part of the rising section 302. The horizontal reinforcement B1 and B2 are positioned at a height corresponding to the vertical midpoint of the vertical reinforcement A1, with horizontal reinforcement B1 positioned lower and horizontal reinforcement B2 upper. The intersections of vertical reinforcement A1 and horizontal reinforcement B1 and B2 are tightly connected by wire C or the like.

[0026] In Figure 1, the area to the right of the rising section 302 is considered the outdoor side, and the area to the left of the rising section 302 is considered the indoor side. The outdoor ground is indicated by a dashed line labeled G. Furthermore, slab concrete 303 is poured on the indoor side of the rising section 302. In this embodiment, the present invention is described in the case where it is applied to a strip foundation, but the present invention can also be applied to other types of foundations, such as so-called raft foundations. The shape and structure of the foundation are not particularly limited.

[0027] A drain pipe 200 is installed in the riser section 302. As shown in Figure 3, the drain pipe 200 comprises a pipe body 201, a cover member 202, and a packing 203. The longitudinal direction and axial direction of the drain pipe 200 coincide. The drain pipe 200 is installed so that its axial direction coincides with the thickness direction of the riser section 302. In the installed state, one axial opening of the pipe body 201 opens to the outdoor wall surface of the riser section 302, and the other axial opening of the pipe body 201 opens to the indoor wall surface of the riser section 302. In addition, the horizontal direction of the drain pipe 200 coincides with its width direction. The width direction of the drain pipe 200 can also be defined as the left-right direction.

[0028] The pipe body 201 is composed of a cylindrical resin member with open ends, and possesses sufficient strength and rigidity to prevent deformation under the pressure of concrete placement. The lower surface 201a of the pipe body 201 is formed to extend horizontally in the left-right and axial directions. As shown in Figure 4, one side surface 201b of the pipe body 201 is formed to extend upward from one edge in the width direction of the lower surface 201a. The other side surface 201c is formed to extend upward from the other edge in the width direction of the lower surface 201a. One side surface 201b and the other side surface 201c are approximately parallel.

[0029] The upper surface 201d of the pipe body 201 is a curved surface that curves upward and bulges outwards. The shape of this upper surface 201d is an arc centered on the radial center of the pipe body 201. The upper edge of one side surface 201b is continuous with one edge of the upper surface 201d in the width direction. The upper edge of the other side surface 201c is continuous with the other edge of the upper surface 201d in the width direction.

[0030] The lid member 202 is a resin member for opening and closing an opening formed at the outdoor end of the pipe body 201, and is detachably attached to the pipe body 201. Specifically, the lid member 202 has a substantially circular closing plate portion 202a and an annular portion 202b that protrudes into the pipe body 201 from the back surface of the closing plate portion 202a. A groove 202c is formed in the annular portion 202b. On the other hand, a locking portion 201e protrudes inward from the inner surface of the pipe body 201. When the annular portion 202b of the lid member 202 is inserted into the pipe body 201 and rotated, for example, to the right, the locking portion 201e engages with the groove 202c and locks, and the lid member 202 is attached to the pipe body 201. When the lid member 202, which is in the installed state, is rotated to the left, the locking portion 201e comes out of the groove 202c and becomes unlocked, making it possible to remove the lid member 202 from the pipe body 201. The packing 203 is disposed between the lid member 202 and the pipe body 201 and is a component that seals the space between the lid member 202 and the pipe body 201. The material of the packing 203 is not particularly limited, but examples include rubber and elastomer.

[0031] In this embodiment, termite-resistant butyl rubber 204 is provided on the outer surface of the pipe body 201. The termite-resistant butyl rubber 204 is made of butyl rubber containing a termite-resistant agent and is formed to surround the entire circumference of the pipe body 201.

[0032] Figures 5 to 8 show the drain pipe holder 1 as a single unit. As shown in these figures, the outdoor side and indoor side of the drain pipe holder 1, and the left side and right side of the drain pipe holder 1 are defined, respectively. The outdoor side of the drain pipe holder 1 is the side located on the outdoor side when installed on the riser section 302, and the indoor side of the drain pipe holder 1 is the side located on the indoor side when installed on the riser section 302. The left side of the drain pipe holder 1 is the side located on the left when viewed from the indoor side when installed on the riser section 302, and the right side of the drain pipe holder 1 is the side located on the right when viewed from the indoor side when installed on the riser section 302. Note that this definition of directions is for the convenience of explaining the embodiment and does not limit the orientation of the drain pipe holder 1 during use, manufacturing, or installation. The drain pipe holder 1 can also be used, for example, with the left and right sides reversed.

[0033] The drainage pipe holder 1 is a device for holding the drainage pipe 200, which is installed in the rising section 302 of the concrete foundation 300, to the vertical reinforcement A1. The drainage pipe holder 1 holds the drainage pipe 200 until the concrete hardens; once the concrete hardens, the drainage pipe 200 is held in place by the concrete.

[0034] The drain pipe holder 1 comprises a vertical reinforcement fixing part 10 fixed to the vertical reinforcement A1, a support part 20 that supports the drain pipe 200, and a lateral connecting part 30 that connects the vertical reinforcement fixing part 10 and the support part 20. The vertical reinforcement fixing part 10, the support part 20, and the lateral connecting part 30 are integrally molded from a resin material. Therefore, the drain pipe holder 1 is composed of a resin part. The resin material constituting the drain pipe holder 1 is elastic, and the drain pipe holder 1 can be molded using a resin material such as polypropylene. However, the resin material constituting the drain pipe holder 1 is not limited to polypropylene, and other resin materials may be used for molding. Furthermore, the molding method for the drain pipe holder 1 can be, for example, injection molding, but is not limited to this.

[0035] The vertical reinforcement fixing portion 10 is formed to extend vertically along the vertical reinforcement A1. The vertical dimension of the vertical reinforcement fixing portion 10 is not particularly limited, but from the viewpoint of increasing the contact area with the vertical reinforcement A1, it can be set in a range of, for example, 30 mm to 150 mm. By ensuring a vertical dimension of 30 mm or more for the vertical reinforcement fixing portion 10, the tilt of the drainage pipe holder 1 relative to the vertical reinforcement A1 can be suppressed.

[0036] The horizontal cross-section of the vertical reinforcement fixing part 10 is arc-shaped. Specifically, when the vertical reinforcement fixing part 10 is fixed to the vertical reinforcement A1, the horizontal cross-section of the vertical reinforcement fixing part 10 has an arc-shaped cross-section that covers more than half of the circumferential area on the outer surface of the vertical reinforcement A1. As a result, the vertical reinforcement fixing part 10 has a slit-shaped opening 10a that opens to the side and extends continuously from the upper end to the lower end of the vertical reinforcement fixing part 10. Since the arc-shaped cross-section of the vertical reinforcement fixing part 10 covers more than half of the circumferential area on the outer surface of the vertical reinforcement A1, the width of the opening 10a is set to be narrower than the outer diameter of the vertical reinforcement A1.

[0037] When fixing the vertical reinforcement fixing part 10 to the vertical reinforcement A1, since the width of the opening 10a is narrower than the outer diameter of the vertical reinforcement A1, the vertical reinforcement A1 is pressed firmly against the opening 10a of the vertical reinforcement fixing part 10 to elastically deform the vertical reinforcement fixing part 10 so that the opening 10a opens. This is made possible by the elasticity of the resin material. As a result, the vertical reinforcement A1 can be inserted into the vertical reinforcement fixing part 10 from the opening 10a.

[0038] When the vertical reinforcement A1 enters the vertical reinforcement fixing part 10, the vertical reinforcement fixing part 10 attempts to restore itself to its original shape, causing the width of the opening 10a to become narrower than the outer diameter of the vertical reinforcement A1. As a result, the vertical reinforcement A1 cannot be removed from the opening 10a of the vertical reinforcement fixing part 10. Furthermore, the restoring force of the vertical reinforcement fixing part 10 causes the inner surface of the vertical reinforcement fixing part 10 to adhere closely to the outer surface of the vertical reinforcement A1. This restricts the vertical movement of the vertical reinforcement fixing part 10 and suppresses the tilt of the vertical reinforcement fixing part 10 relative to the vertical reinforcement A1.

[0039] Since an open section 10a is formed in the vertical reinforcement fixing section 10, the circumferential ends of the vertical reinforcement fixing section 10 are spaced apart from each other. The distance between the circumferential ends of the vertical reinforcement fixing section 10 is the same as the width of the open section 10a. First protrusions 10b projecting radially outward are formed at both circumferential ends of the vertical reinforcement fixing section 10. Each first protrusion 10b extends vertically along the circumferential end of the vertical reinforcement fixing section 10, with the upper end of the first protrusion 10b located at the upper end of the vertical reinforcement fixing section 10 and the lower end of the first protrusion 10b located at the lower end of the vertical reinforcement fixing section 10. Because the first protrusions 10b extending vertically are formed at both circumferential ends of the vertical reinforcement fixing section 10, the first protrusions 10b function like ribs, thereby increasing the rigidity of the vertical reinforcement fixing section 10 and suppressing deformation of the vertical reinforcement fixing section 10. Furthermore, both first protrusions 10b are formed such that the distance between them increases as they approach the tip in the protruding direction. This allows both first protrusions 10b to function as guides when inserting the vertical reinforcement A1 from the open section 10a into the interior of the vertical reinforcement fixing section 10. Additionally, it is possible to wrap binding wire C around the two first protrusions 10b.

[0040] The support portion 20 is the part that supports the drainage pipe 200 on the side of the vertical reinforcement A1. The support portion 20 has a lower plate portion 21, a first side plate portion 22, and a second side plate portion 23. The lower plate portion 21 extends in a direction perpendicular to the longitudinal direction (axial direction) of the vertical reinforcement A1, and also extends radially (left-right direction) along the lower surface of the drainage pipe 200. The left-right direction of the lower plate portion 21 is the longitudinal direction of the lower plate portion 21. The longitudinal dimension of the lower plate portion 21 is approximately the same as the left-right dimension of the lower surface 201a of the pipe body 201 of the drainage pipe 200. Note that the longitudinal dimension of the lower plate portion 21 may be the same as, or longer than, the left-right dimension of the lower surface 201a of the pipe body 201 of the drainage pipe 200.

[0041] Furthermore, the lower plate portion 21 has a predetermined or greater dimension in the axial direction of the drainage pipe 200. This allows the drainage pipe 200 to be stabilized when placed on the lower plate portion 21. The dimension of the lower plate portion 21 in the direction corresponding to the axial direction of the drainage pipe 200 is not particularly limited, but can be, for example, 10 mm or more, or 20 mm or more.

[0042] The first side plate portion 22 extends from the right end (one end) of the lower plate portion 21 along the side surface 201c of the drain pipe 200 until it reaches the middle of the upper surface 201d of the drain pipe 200 in the left-right direction. Since the side surface 201c of the drain pipe 200 extends in the vertical direction, the lower part of the first side plate portion 22 extends in the vertical direction. Since the upper surface 201d of the drain pipe 200 is curved in an arc shape, the upper part of the first side plate portion 22 extends in an arc shape.

[0043] The second side plate portion 23 extends from the left end (other end) of the lower plate portion 21 along the side surface 201b of the drain pipe 200 until it reaches the middle of the upper surface 201d of the drain pipe 200 in the left-right direction. Since the side surface 201b of the drain pipe 200 extends in the vertical direction, the lower part of the second side plate portion 23 extends in the vertical direction and is approximately parallel to the lower part of the first side plate portion 22. Since the upper surface 201d of the drain pipe 200 is curved in an arc shape, the upper part of the second side plate portion 23 extends in an arc shape.

[0044] The upper parts of the first side plate portion 22 and the second side plate portion 23 are formed with a first projection 22a and a second projection 23a that project upward, respectively. As shown in Figure 2, the first projection 22a and the second projection 23a are designed to be wrapped with binding wire C. By wrapping and tying the binding wire C around the first projection 22a and the second projection 23a, the first projection 22a and the second projection 23a are held together so as not to separate from each other.

[0045] The lateral connecting portion 30 extends from the vertical reinforcement fixing portion 10 to the support portion 20. Specifically, the lateral connecting portion 30 is plate-shaped and extends in the vertical direction, and the side of the lateral connecting portion 30 that faces the vertical reinforcement fixing portion 10 is continuous from the top to the bottom of the vertical reinforcement fixing portion 10. This allows the connection portion between the lateral connecting portion 30 and the vertical reinforcement fixing portion 10 to be made longer in the vertical direction, thereby increasing the connection strength between the vertical reinforcement fixing portion 10 and the lateral connecting portion 30.

[0046] The lateral connecting portion 30 is provided with a first rib 31 projecting inwards (towards one side in the thickness direction of the lateral connecting portion 30) and extending in the left-right direction, and a second rib 32 projecting outwards (towards the other side in the thickness direction of the lateral connecting portion 30) and extending in the left-right direction. The presence of the first rib 31 and the second rib 32 in the lateral connecting portion 30 suppresses bending deformation of the lateral connecting portion 30. Furthermore, the formation positions of the first rib 31 and the second rib 32 are the same in the vertical direction, and for example, when viewed from the outdoor side, the first rib 31 and the second rib 32 overlap each other.

[0047] The right ends of the first rib 31 and the second rib 32 are continuous with the left end of the lower plate portion 21 of the support portion 20. As a result, the lower plate portion 21 and the first rib 31, and the lower plate portion 21 and the second rib 32, each form a single continuous plate in the left-right direction.

[0048] The left ends of the first rib 31 and the second rib 32 are continuous with the outer surface of the vertical reinforcement fixing section 10. This makes it possible to reinforce the vertical reinforcement fixing section 10 with the first rib 31 and the second rib 32. The first rib 31 and the second rib 32 also function as connecting sections that connect the vertical reinforcement fixing section 10 to the lower plate section 21 of the support section 20. Note that the first rib 31 and the second rib 32 may be provided as needed, and both or one of them may be omitted.

[0049] The upper portion of the lateral connecting portion 30 can be set to be above the first rib 31 and the second rib 32, and the lower portion of the lateral connecting portion 30 can be set to be below the first rib 31 and the second rib 32. When defined in this way, the upper portion of the lateral connecting portion 30 is formed to connect the upper portion of the vertical reinforcement fixing portion 10 and the lower portion of the second side plate portion 23 of the support portion 20. The lower portion of the lateral connecting portion 30 is formed to connect the lower portion of the vertical reinforcement fixing portion 10 and the lower surface of the lower plate portion 21 of the support portion 20. The lower portion of the lateral connecting portion 30 can support the lower plate portion 21 from below. The vertical dimension of the lower portion of the lateral connecting portion 30 is set to be longer as it moves toward the vertical reinforcement fixing portion 10, and conversely, shorter as it moves away from the vertical reinforcement fixing portion 10. Note that either the upper portion or the lower portion of the lateral connecting portion 30 may be omitted.

[0050] (Construction instructions) Next, the procedure for installing the drainage pipe 200 using the drainage pipe holder 1 will be explained. As shown in Figure 9, the vertical reinforcement A1 and the horizontal reinforcement B1 and B2 embedded in the rising section 302 are combined and fastened together with binding wire C. This step is performed in advance.

[0051] Next, as shown in Figure 10, the drain pipe holder 1 is attached to the vertical reinforcement A1. At this time, the vertical reinforcement A1 is firmly pressed against the opening 10a of the vertical reinforcement fixing part 10, causing the vertical reinforcement fixing part 10 to elastically deform so that the opening 10a opens, and the vertical reinforcement A1 is inserted into the vertical reinforcement fixing part 10 from the opening 10a. As the shape of the vertical reinforcement fixing part 10 returns to its original state, the drain pipe holder 1 is temporarily fixed to the vertical reinforcement A1. Therefore, the worker does not need to constantly hold the drain pipe holder 1 by hand and can move on to the next step.

[0052] After temporarily fixing the drainage pipe holder 1, confirm that the lower plate portion 21 of the support portion 20 is approximately horizontal. Then, wrap the binding wire C around the two first protrusions 10b of the vertical reinforcement fixing portion 10 and tie it, thereby firmly bringing the inner surface of the vertical reinforcement fixing portion 10 into contact with the outer surface of the vertical reinforcement A1, and securely fixing the drainage pipe holder 1 to the vertical reinforcement A1. This prevents the drainage pipe holder 1 from being displaced downward during concrete pouring.

[0053] Subsequently, as shown in Figure 2, the drain pipe 200 is inserted between the first side plate portion 22 and the second side plate portion 23 of the support portion 20, and the drain pipe 200 is placed on the upper surface of the lower plate portion 21. When inserting the drain pipe 200, the first side plate portion 22 and the second side plate portion 23 are elastically deformed so that the distance between their upper ends widens, allowing the drain pipe 200 to be easily inserted. The installation height of the drain pipe 200 can be arbitrarily changed by the mounting height of the drain pipe holder 1. If it is desired to tilt the drain pipe 200 at a predetermined angle, the drain pipe holder 1 should be tilted so that the drain pipe 200 is at the predetermined angle. This tilt angle can be set arbitrarily.

[0054] After inserting the drain pipe 200 between the first side plate portion 22 and the second side plate portion 23, the wire C is wrapped around and tied to the first protrusion 22a and the second protrusion 23a. This allows the first side plate portion 22 and the second side plate portion 23 to hold down the sides 201b, 201c and the top surface 201d of the drain pipe 200, and also presses the bottom surface 201a of the drain pipe 200 against the top surface of the bottom plate portion 21, preventing the drain pipe 200 from moving in any direction, including axial, left-right, and up-down. In this way, the drain pipe 200 can be installed accurately in the predetermined position with simple work.

[0055] After the drainage pipe 200 is held in the drainage pipe holder 1, a formwork (not shown) is installed. Then, concrete is poured to form the rising section 302. When the concrete is poured, the flow pressure of the concrete acts on the drainage pipe 200, but since the drainage pipe 200 is supported by the support section 20, tilting and displacement of the drainage pipe 200 due to the flow pressure during concrete pouring are suppressed. In addition, one side 201b, the other side 201c, and the top surface 201d of the drainage pipe 200 are also held by the support section 20, so axial displacement and radial displacement (including vertical and horizontal displacement) of the drainage pipe 200 due to the flow pressure during concrete pouring are suppressed.

[0056] When the drain pipe holder 1 is fixed to the vertical reinforcement A1, or when the drain pipe 200 is held by the drain pipe holder 1 fixed to the vertical reinforcement A1, the drain pipe holder 1 may tilt. In this case, as shown in Figure 11, the wire C wrapped around the first protrusion 22a and the second protrusion 23a can be attached to the horizontal reinforcement B2 located above the drain pipe holder 1, thereby supporting the drain pipe holder 1 with the horizontal reinforcement B2. This suppresses the tilting of the drain pipe holder 1.

[0057] (Embodiment 2) Figures 12 to 16 show a drain pipe holder 1 according to Embodiment 2 of the present invention. The drain pipe holder 1 according to Embodiment 2 differs from that of Embodiment 1 in that it includes a lateral reinforcement fixing part 40 and a lower connecting part 50. Hereinafter, the same reference numerals are used for parts that are the same as in Embodiment 1 and their descriptions are omitted, while the different parts will be described in detail.

[0058] The horizontal reinforcement fixing section 40 and the lower connecting section 50 are integrally molded with the vertical reinforcement fixing section 10, the support section 20, and the lateral connecting section 30 using resin material. The horizontal reinforcement fixing section 40 is formed to extend in the left-right direction along the horizontal reinforcement B1 and is the part that is fixed to the horizontal reinforcement B1. The left-right dimension of the horizontal reinforcement fixing section 40 is not particularly limited, but from the viewpoint of increasing the contact area with the horizontal reinforcement B1, it can be set in a range of, for example, 30 mm to 150 mm. By ensuring a left-right dimension of 30 mm or more for the horizontal reinforcement fixing section 40, the lower part of the drainage pipe holder 1 can be firmly fixed to the horizontal reinforcement B1.

[0059] The vertical cross-section of the transverse reinforcement fixing part 40 is arc-shaped. Specifically, when the transverse reinforcement fixing part 40 is fixed to the transverse reinforcement B1, the vertical cross-section of the transverse reinforcement fixing part 40 has an arc-shaped cross-section that covers more than half of the circumferential area on the outer surface of the transverse reinforcement B1. As a result, the transverse reinforcement fixing part 40 has a slit-shaped opening 40a that opens downwards and extends continuously from the left end to the right end of the transverse reinforcement fixing part 40. Since the arc-shaped cross-section of the transverse reinforcement fixing part 40 covers more than half of the circumferential area on the outer surface of the transverse reinforcement B1, the width of the opening 40a is set to be narrower than the outer diameter of the transverse reinforcement B1.

[0060] When fixing the lateral reinforcement fixing part 40 to the lateral reinforcement B1, since the width of the opening 40a is narrower than the outer diameter of the lateral reinforcement B1, the lateral reinforcement B1 is pressed firmly against the opening 40a of the lateral reinforcement fixing part 40 to elastically deform the lateral reinforcement fixing part 40 so that the opening 40a opens. This is made possible by the elasticity of the resin material. As a result, the lateral reinforcement B1 can be inserted into the lateral reinforcement fixing part 40 from the opening 40a.

[0061] When the lateral reinforcement B1 enters the lateral reinforcement fixing part 40, the lateral reinforcement fixing part 40 attempts to restore itself to its original shape, causing the width of the opening 40a to become narrower than the outer diameter of the lateral reinforcement B1. As a result, the lateral reinforcement B1 cannot be removed from the opening 40a of the lateral reinforcement fixing part 40. Furthermore, the restoring force of the lateral reinforcement fixing part 40 causes the inner surface of the lateral reinforcement fixing part 40 to adhere closely to the outer surface of the lateral reinforcement B1. This restricts the vertical movement of the lateral reinforcement fixing part 40 and suppresses the tilt of the lateral reinforcement fixing part 40 relative to the lateral reinforcement B1.

[0062] Since an open section 40a is formed in the transverse reinforcement fixing section 40, the circumferential ends of the transverse reinforcement fixing section 40 are spaced apart from each other. The distance between the circumferential ends of the transverse reinforcement fixing section 40 is the same as the width of the open section 40a. Second protrusions 40b projecting radially outward are formed at both circumferential ends of the transverse reinforcement fixing section 40. Each second protrusion 40b extends left to right along the circumferential end of the transverse reinforcement fixing section 40, with the left end of the second protrusion 40b located at the left end of the transverse reinforcement fixing section 40 and the right end of the second protrusion 40b located at the right end of the transverse reinforcement fixing section 40. Because the second protrusions 40b extending left to right are formed at both circumferential ends of the transverse reinforcement fixing section 40, the second protrusions 40b function like ribs, thereby increasing the rigidity of the transverse reinforcement fixing section 40 and suppressing deformation of the transverse reinforcement fixing section 40. Furthermore, both second protrusions 40b are formed such that the distance between them increases as they approach the tip in the protruding direction. This allows both second protrusions 40b to function as guides when inserting the transverse reinforcement B1 from the open section 40a into the interior of the transverse reinforcement fixing section 40. Additionally, it is possible to wrap binding wire C around the two second protrusions 40b.

[0063] The lower connecting portion 50 extends from the lateral reinforcement fixing portion 40 to the lower plate portion 21 of the support portion 20. Specifically, the lower connecting portion 50 is plate-shaped and extends in the vertical and horizontal directions, and the side of the lower connecting portion 50 that faces the lateral reinforcement fixing portion 40 (lower side) is continuous from the left to the right side of the lateral reinforcement fixing portion 40. This makes it possible to form a longer connection portion between the lower connecting portion 50 and the lateral reinforcement fixing portion 40 in the horizontal direction, thereby increasing the connection strength between the lateral reinforcement fixing portion 40 and the lower connecting portion 50.

[0064] The lower connecting portion 50 is provided with a first rib 51 projecting inwards (towards one side in the thickness direction of the lower connecting portion 50) and extending vertically, and a second rib 52 projecting outwards (towards the other side in the thickness direction of the lower connecting portion 50) and extending vertically, in the middle portion in the left-right direction. The presence of the first rib 51 and the second rib 52 in the lower connecting portion 50 suppresses bending deformation of the lower connecting portion 50. Furthermore, the formation positions of the first rib 51 and the second rib 52 are the same in the left-right direction, so that, for example, when viewed from the outside, the first rib 51 and the second rib 52 overlap each other.

[0065] The upper ends of the first rib 51 and the second rib 52 are continuous with the lower surface of the lower plate portion 21 of the support portion 20. As a result, the lower plate portion 21 and the first rib 51, and the lower plate portion 21 and the second rib 52 are connected, respectively.

[0066] The lower ends of the first rib 51 and the second rib 52 are continuous with the outer surface of the transverse reinforcement fixing section 40. This makes it possible to reinforce the transverse reinforcement fixing section 40 with the first rib 51 and the second rib 52. The first rib 51 and the second rib 52 also function as connecting sections that connect the transverse reinforcement fixing section 40 to the lower plate section 21 of the support section 20. Note that the first rib 41 and the second rib 42 may be provided as needed, and both or one of them may be omitted.

[0067] The left portion of the lower connecting portion 50 can be defined as the portion to the left of the first rib 51 and the second rib 52, and the right portion of the lower connecting portion 50 can be defined as the portion to the right of the first rib 51 and the second rib 52. When defined in this way, the left portion of the lower connecting portion 50 is connected to the left portion of the lower plate portion 21 of the support portion 20. The right portion of the lower connecting portion 50 is connected to the right portion of the lower plate portion 21 of the support portion 20. In this embodiment 2, the lower portion of the lateral connecting portion 30 is omitted, but the lower portion of the lateral connecting portion 30 may be provided.

[0068] As shown in Figure 17 during construction, in Embodiment 2, the binding wire C wrapped around the first protrusion 22a and the second protrusion 23a may also be hung on the horizontal reinforcement B2 located above the drainage pipe holder 1. This makes it possible to suppress the tilting of the drainage pipe holder 1 according to Embodiment 2.

[0069] In the example shown in Figure 12, the fixing position of the drainage pipe holder 1 to the vertical reinforcement A1 is high, and the horizontal reinforcement fixing part 40 is located above the horizontal reinforcement B1, so the horizontal reinforcement fixing part 40 is not used. Thus, it is also possible to adopt a usage configuration in which the horizontal reinforcement fixing part 40 is not used.

[0070] In contrast, the example shown in Figure 18 shows a case where the drainage pipe holder 1 is fixed to the horizontal reinforcement B1 without being fixed to the vertical reinforcement A1. In this case, the horizontal reinforcement B1 is pressed firmly against the open portion 40a of the horizontal reinforcement fixing portion 40, causing the horizontal reinforcement fixing portion 40 to elastically deform so that the open portion 40a opens, and the horizontal reinforcement B1 is inserted into the horizontal reinforcement fixing portion 40 from the open portion 40a. As the shape of the horizontal reinforcement fixing portion 40 is restored, the drainage pipe holder 1 is temporarily fixed to the horizontal reinforcement B1.

[0071] After temporarily fixing the drain pipe holder 1, confirm that the lower plate portion 21 of the support portion 20 is approximately horizontal. Then, wrap the binding wire C around the two second protrusions 40b of the horizontal reinforcement fixing portion 40 and tie it, thereby firmly bringing the inner surface of the horizontal reinforcement fixing portion 40 into contact with the outer surface of the horizontal reinforcement B1, and securely fixing the drain pipe holder 1 to the horizontal reinforcement B1. Although not shown in the figures, the horizontal reinforcement fixing portion 40 may be fixed to the horizontal reinforcement B1, and the vertical reinforcement fixing portion 10 may be fixed to the vertical reinforcement A1. This will further stabilize the drain pipe holder 1.

[0072] Furthermore, as shown in Figure 19, when the drainage pipe holder 1 is fixed to the horizontal reinforcement B1, the binding wire C wrapped around the first protrusion 22a and the second protrusion 23a may be hung on the horizontal reinforcement B2 located above the drainage pipe holder 1. This prevents the drainage pipe holder 1 from tipping over to the outside or inside, and further stabilizes the drainage pipe 200.

[0073] The embodiments described above are merely illustrative in all respects and should not be interpreted restrictively. Furthermore, any modifications or changes that fall within the equivalent scope of the claims are all within the scope of the present invention. For example, the termite-resistant butyl rubber 204 may be omitted. Also, the drainage pipe 200 may be cylindrical. [Industrial applicability]

[0074] As explained above, the drainage pipe holder according to this disclosure can be used, for example, when installing drainage pipes on the rising section of a strip foundation. [Explanation of Symbols]

[0075] 1. Holder for drainage piping 10. Vertical reinforcement fixing section 10b Projection part 20 Support part 21 Lower plate part 22 First side plate part 22a 1st protrusion 23 Second side plate part 23a Second protrusion 30 Lateral connection 40 Transverse muscle fixation part 50 Lower connection 200 drain pipe

Claims

1. A drainage pipe holder for holding drainage pipes installed in the rising section of the foundation concrete, A vertical reinforcement fixing portion is formed to extend along the vertical reinforcement that extends in the vertical direction and is fixed to the vertical reinforcement, A support portion that supports the drainage pipe on the side of the longitudinal reinforcement, It comprises a lateral connecting portion that extends from the longitudinal reinforcement fixing portion to the support portion and connects the longitudinal reinforcement fixing portion and the support portion, A holder for drainage piping, wherein the vertical reinforcement fixing portion, the support portion, and the lateral connecting portion are integrally molded from resin material.

2. In the drainage pipe holder according to claim 1, A lateral reinforcement fixing portion is formed to extend along the lateral reinforcement extending in the horizontal direction and is fixed to the lateral reinforcement, The support portion extends downward to the lateral reinforcement fixing portion, and further comprises a lower connecting portion that connects the lateral reinforcement fixing portion and the support portion. A drainage pipe holder in which the horizontal reinforcement fixing portion and the lower connecting portion are integrally molded with the vertical reinforcement fixing portion, the support portion and the lateral connecting portion using resin material.

3. In the drainage pipe holder according to claim 1, The holder for a drain pipe has a support portion that extends in a direction perpendicular to the vertical reinforcement and a lower plate portion that extends radially along the drain pipe along the lower surface of the drain pipe.

4. In the drainage pipe holder according to claim 3, The support portion is a drain pipe holder having a first side plate portion and a second side plate portion extending from one end and the other end of the lower plate portion, respectively, along the side surface of the drain pipe.

5. In the drainage pipe holder according to claim 4, The first side plate portion and the second side plate portion extend to the upper surface of the drain pipe, A drain pipe holder, wherein the upper parts of the first side plate and the second side plate each have protruding portions that project upward.

6. In the drainage pipe holder according to claim 1, The aforementioned resin material has elasticity, The holder for drainage piping is formed such that the vertical reinforcement fixing portion has an arc-shaped cross-section that covers more than half of the circumferential area on the outer surface of the vertical reinforcement.

7. In the drainage pipe holder according to claim 6, A drainage pipe holder, wherein protruding portions are formed at both circumferential ends of the longitudinal reinforcement fixing portion, each protruding radially outward and extending vertically.

8. In the drainage pipe holder according to claim 1, The aforementioned lateral connecting portion is plate-shaped and extends in the vertical direction. The side of the lateral connection portion that is fixed to the vertical reinforcement is a holder for drainage piping that extends continuously from the top to the bottom of the vertical reinforcement fixing portion.