Wiring / piping material holder
The holder with a movable and rotatable mechanism simplifies the attachment of wiring and piping materials by allowing easy adjustment and secure fixation to rod-shaped bodies, addressing the complexity of load distribution and positioning issues in conventional systems.
Patent Information
- Application Number
- JP2024025986
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-22
- Publication Date
- 2025-09-03
AI Technical Summary
Conventional holders for supporting drain pipes in air conditioning units require complex adjustments to balance load distribution and positioning, leading to poor workability due to frequent repositioning needs.
A holder with a movable portion that allows temporary and permanent fixation to a rod-shaped body, enabling easy adjustment and secure attachment of wiring and piping materials without excessive load, featuring a rotating body for state transitions and a locking mechanism to prevent rattling.
Improves workability by allowing easy and secure attachment of wiring and piping materials to rod-shaped bodies without excessive load, reducing the need for reattachment and maintaining stable positioning.
Smart Images

Figure 2025128939000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a holder for wiring and piping material that holds wiring and piping material. [Background technology]
[0002] Conventionally, there has been support equipment for supporting the longitudinal middle portion of the drain pipe of, for example, an air conditioner to perform drain-up piping. For example, in the support equipment disclosed in Patent Document 1, the longitudinal middle portion of the drain pipe 12 of an air conditioning indoor unit 11 is supported by a holding member 14 on a hanging bolt 13 that hangs the air conditioning indoor unit 11 (see FIG. 19). Here, the holding member 14 includes a rod-shaped body 15, an attachment portion 16, and a hanging portion 17, and one side of the rod-shaped body 15 is attached to the hanging bolt 13 via the attachment portion 16, and the longitudinal middle portion of the drain pipe 12 is attached to the other side of the rod-shaped body 15 via the hanging portion 17. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2017-32164 Summary of the Invention [Problem to be solved by the invention]
[0004] With the conventional retaining member 14, when determining the position of the suspending portion 17 that holds the middle portion of the drain pipe 12 in the longitudinal direction, it was necessary to determine the piping posture of the drain pipe 12 so as not to place excessive load on the drain pipe 12 or its respective connection points, while balancing the fixing height of the rod-shaped body 15 to the hanging bolt 13, the distance of the suspending portion 17 from the hanging bolt 13, and the holding position in the longitudinal direction of the drain pipe 12. For this reason, for example, after determining the fixing height of the rod-shaped body 15 to the hanging bolt 13, when attempting to hold the drain pipe 12 with the suspending portion 17, it was found that it was too high or too low, and it became necessary to adjust the fixing height again, which resulted in poor workability.
[0005] The present invention has been made to solve the above-mentioned drawbacks of the conventional art, and its object is to provide a holder for wiring and piping material that is easy to use. [Means for solving the problem]
[0006] In order to achieve the above object, the holder for wiring and piping material according to the present invention has the following configuration: The wiring / piping material holder according to the first aspect of the present invention comprises a fixing portion fixed to a rod-shaped body and a holding portion connected to the fixing portion and holding an intermediate portion of the wiring / piping material. The fixing portion comprises a fixing portion main body and a movable portion. The fixing portion main body has an arrangement space in which the intermediate portion of the rod-shaped body is disposed and an opening through which the intermediate portion of the rod-shaped body passes to enter and exit the arrangement space. The movable portion is displaceable relative to the fixing portion main body between a standby state in which the fixing portion stands back from the opening to allow the rod-shaped body to pass through the opening, a temporary fixing state in which the movable portion closes the opening to prevent the rod-shaped body in the arrangement space from separating from the opening and allows the fixing portion to move along the longitudinal direction of the rod-shaped body, and a permanent fixing state in which the movable portion closes the opening to prevent the rod-shaped body in the arrangement space from separating from the opening and restricts the fixing portion from moving along the longitudinal direction of the rod-shaped body. In addition, the holding portion can surround the wiring and piping material so as to determine the maximum distance position of the wiring and piping material relative to the arrangement space, and can hold the wiring and piping material so as to allow relative movement of the wiring and piping material relative to the holding portion along the longitudinal direction of the wiring and piping material.
[0007] This wiring / piping holder includes a fixed portion and a holding portion. The fixed portion is fixed to a rod-shaped body, and the holding portion holds the intermediate portion of the wiring / piping material. The fixed portion includes a fixed portion main body and a movable portion. The fixed portion main body has an arrangement space in which the intermediate portion of the rod-shaped body is placed and an opening through which the intermediate portion of the rod-shaped body passes. By placing the movable portion in a standby state away from the opening, the intermediate portion of the rod-shaped body can be inserted into the arrangement space through the opening. After the intermediate portion of the rod-shaped body is inserted into the arrangement space, the movable portion is temporarily fixed, preventing the rod-shaped body from detaching from the opening. In this state, the fixed portion, and therefore the wiring / piping holder, can be moved along the longitudinal direction of the rod-shaped body to adjust its position. At this time, the holding portion holds the wiring / piping material in a manner that allows relative movement of the wiring / piping material with respect to the holding portion, thereby holding the wiring / piping material in an appropriate position in its longitudinal direction and preventing excessive load from being applied to the wiring / piping material or the holding portion. After that, by setting the movable part to the fixed state, the fixed part, and therefore the wiring / piping material holder, is restricted from moving along the longitudinal direction of the rod-shaped body and is fixed in that position. At this time, no excessive load is applied to the wiring / piping material or the holding part, so that the fixed part can be fixed to the rod-shaped body without applying excessive load, and the wiring / piping material can be attached to the rod-shaped body.
[0008] The wiring and piping material holder according to the invention of claim 2 is the wiring and piping material holder of claim 1, wherein the movable part is in pressure contact with the rod-shaped body in the permanently fixed state and clamps the rod-shaped body between the movable part and the fixed part main body, and in the temporary fixed state, is in pressure contact with the rod-shaped body with a weaker force than in the permanently fixed state. Because the movable part is in pressure contact with the rod-shaped body when in the temporary fixed state, the fixed part does not rattle relative to the rod-shaped body, and the fixed part can be moved while maintaining its posture without tilting.
[0009] A wiring and piping material holder according to the invention of claim 3 is the wiring and piping material holder of claim 1, wherein the fixed part main body and / or the movable part are provided with locking parts that lock into recesses formed in the circumferential surface of the rod-shaped body. In the fully fixed state, the movable part narrows the arrangement space more than in the provisionally fixed state, and in the fully fixed state, the locking parts that lock into the recesses are prevented from coming off the recesses.
[0010] The wiring and piping material holder according to claim 4 is the wiring and piping material holder according to claim 3, wherein the locking portion is provided on an inner surface of the fixed portion main body that forms the arrangement space, on the opposite side to the opening. The movable portion is pressed by the rod-shaped body in the temporarily fixed state and is elastically deformable in a direction away from the locking portion, and this elastic deformation releases the lock of the locking portion from the recess of the rod-shaped body.
[0011] Furthermore, the wiring and piping material holder according to the invention recited in claim 5 is the wiring and piping material holder recited in any one of claims 1 to 4, wherein the fixed part has a sensing part that senses that the movable part has been displaced from the standby state to the temporarily fixed state. By having the sensing part in the fixed part, it is possible to know that the movable part has been displaced to the temporarily fixed state.
[0012] The wiring and piping material holder according to claim 6 is the wiring and piping material holder according to any one of claims 1 to 4, wherein the movable part comprises a rotating body attached to the fixed part main body so as to be rotatable about an axis facing the opening direction of the opening, and the rotating body rotates to a rotation position in which the standby state is achieved, a rotation position in which the temporary fixed state is achieved, and a rotation position in which the final fixed state is achieved.Therefore, by rotating the movable part, the standby state, the temporary fixed state, and the final fixed state can be easily shifted.
[0013] Furthermore, the wiring / piping material holder of the invention described in claim 7 is the wiring / piping material holder described in claim 6, wherein the rotating body has a rotation position in which it is in the temporary fixed state during the rotational movement between a rotation position in which it is in the standby state and a rotation position in which it is in the final fixed state.
[0014] The wiring / piping material holder according to claim 8 is the wiring / piping material holder according to any one of claims 1 to 4, wherein the holding portion is capable of changing its relative position with respect to the fixing portion, and by changing the position, the longitudinal direction of the wiring / piping material can be selectively oriented in either the longitudinal direction of the rod-shaped body or a direction intersecting the longitudinal direction of the rod-shaped body. The holding portion has an enclosing portion that annularly surrounds the wiring / piping material, and by changing the enclosing range of the enclosing portion, the holding portion can be switched between a temporary holding state that allows relative movement of the wiring / piping material with respect to the holding portion along the longitudinal direction of the wiring / piping material and a regular holding state that restricts this relative movement. [Effects of the Invention]
[0015] According to the wiring / piping material holder of this invention, excessive load is not placed on the wiring / piping material, the holding part, or the fixing part, so there is no need to reattach it to remove the excessive load, and the workability of attaching the wiring / piping material to the rod-shaped body can be improved. [Brief explanation of the drawings]
[0016] [Figure 1] FIG. 2 is a perspective view of a fixing part in a standby state according to an embodiment of the present invention, as viewed obliquely from the front. [Figure 2] FIG. [Figure 3] FIG. [Figure 4] FIG. [Figure 5] 3 is a cross-sectional view taken along line AA in FIG. 2. [Figure 6] 4 is a cross-sectional view taken along line BB in FIG. 3. [Figure 7]FIG. 10 is a perspective view of the wiring / piping material holder and the rod-shaped body in a standby state, as viewed obliquely from the front. [Figure 8] FIG. [Figure 9] FIG. [Figure 10] FIG. [Figure 11] FIG. 10 is a perspective view of the wiring / piping material holder, the rod-shaped body, and the wiring / piping material in a temporarily fixed state, as viewed obliquely from the front. [Figure 12] FIG. [Figure 13] FIG. [Figure 14] FIG. [Figure 15] 14 is a cross-sectional view taken along line CC in FIG. 13. [Figure 16] FIG. 10 is a perspective view of the wiring / piping material holder, the rod-shaped body, and the wiring / piping material in a fully fixed state, as viewed obliquely from the front. [Figure 17] FIG. [Figure 18] FIG. [Figure 19] FIG. 1 is a front view showing a conventional support facility. DETAILED DESCRIPTION OF THE INVENTION
[0017] Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
[0018] 1 to 18 show one embodiment of the present invention. In the drawings, reference numeral 1 denotes a rod-shaped body. Reference numeral 2 denotes a wiring / piping material (wiring material or piping material). Reference numeral 3 denotes a wiring / piping material holder, and an intermediate portion of the wiring / piping material 2 is attached to the rod-shaped body 1 via this wiring / piping material holder 3.
[0019] The wiring / piping material holder 3 comprises a fixed part 4 fixed to the rod-shaped body 1, and a holding part 5 connected to the fixed part 4 and holding the middle part of the wiring / piping material 2. Here, the fixed part 4 comprises a fixed part main body 6 and a movable part 7. The fixed part main body 6 has an arrangement space 6a in which the middle part of the rod-shaped body 1 is arranged, and an opening 6b through which the middle part of the rod-shaped body 1 passes to enter and exit the arrangement space 6a. The movable part 7 is displaceable relative to the fixed part main body 6 between a standby state (see FIGS. 7 to 10) in which it stands back from the opening 6b to allow the rod-shaped body 1 to pass through the opening 6b, a temporary fixed state (see FIGS. 11 to 15) in which it closes the opening 6b to prevent the rod-shaped body 1 in the arrangement space 6a from coming off the opening 6b and allows the fixed part 4 to move along the longitudinal direction 1a of the rod-shaped body 1, and a permanent fixed state (see FIGS. 16 to 18) in which it closes the opening 6b to prevent the rod-shaped body 1 in the arrangement space 6a from coming off the opening 6b and restricts the fixed part 4 from moving along the longitudinal direction 1a of the rod-shaped body 1. Meanwhile, the holding part 5 surrounds the wiring / piping material 2 so as to determine the maximum separation position of the wiring / piping material 2 with respect to the arrangement space 6a, and is capable of holding the wiring / piping material 2 so as to allow relative movement of the wiring / piping material 2 with respect to the holding part 5 along the longitudinal direction 2a of the wiring / piping material 2.
[0020] Specifically, in the fixed part 4, the fixed part main body 6 or the movable part 7 (in the illustrated embodiment, the fixed part main body 6) is provided with a locking part 4a that locks into a recess formed on the circumferential surface of the rod-shaped body 1 (for example, if the rod-shaped body 1 is a bolt (more specifically, a suspension bolt), the locking part 4a may be a root of the thread of the bolt, although this is not shown). In the permanently fixed state, the movable part 7 narrows the arrangement space 6a more than in the provisionally fixed state, and in this permanently fixed state, the locking part 4a locked in the recess is prevented from coming off the recess, thereby restricting movement of the fixed part 4 (and thus the wiring / piping material holder 3) along the longitudinal direction 1a of the rod-shaped body 1. The locking part 4a is provided on the inner surface of the fixed part main body 6 that forms the arrangement space 6a, on the opposite side to the opening 6b. In addition, when the movable part 7 is in a temporarily fixed state, it can be pushed by the rod-shaped body 1 and elastically deformed in a direction away from the engaging part 4a, and this elastic deformation releases the engagement of the engaging part 4a with the recess of the rod-shaped body 1, thereby allowing the fixed part 4 (and thus the wiring / piping material holder 3) to move along the longitudinal direction 1a of the rod-shaped body 1.
[0021] Furthermore, the movable unit 7 comprises a rotating body 701 rotatably mounted to the fixed unit main body 6 around an axis 4b facing the opening direction of the opening 6b, and the rotating body 701 rotates to a rotation position in the standby state, a rotation position in the temporary fixed state, and a rotation position in the final fixed state. More specifically, in the rotational movement, the rotating body 701 has a rotation position in the temporary fixed state between the rotation position in the standby state and the rotation position in the final fixed state. In the illustrated embodiment, the rotating body 701 is rotated counterclockwise to transition (more specifically, rotate) from the standby state to the temporary fixed state and then to the final fixed state.
[0022] Furthermore, the holding portion 5 is capable of changing its posture relative to the fixing portion 4, and this change makes it possible to selectively orient the longitudinal direction 2a of the wiring / piping material 2 either in the direction that faces the longitudinal direction 1a of the rod-shaped body 1 or in a direction that intersects with the longitudinal direction 1a of the rod-shaped body 1. The holding portion 5 has an enclosing portion 5a that annularly surrounds the wiring / piping material 2, and by changing the enclosing range of the enclosing portion 5a, the holding portion 5 can be changed between a temporary holding state (see FIGS. 11, 12, 15, and 16) in which relative movement of the wiring / piping material 2 along the longitudinal direction 2a of the wiring / piping material 2 is permitted with respect to the holding portion 5, and a full holding state (not shown) in which this relative movement is restricted.
[0023] Specifically, in the fixed part 4, the fixed part main body 6 includes a bottom wall 6c and a pair of side walls 6d, 6d that rise forward from the bottom wall 6c and face each other. The arrangement space 6a is defined by the bottom wall 6c and the pair of side walls 6d, 6d. The opening 6b is located on the side of the arrangement space 6a opposite the bottom wall 6c where the arrangement space 6a opens. The locking part 4a is provided on the surface of the bottom wall 6c facing the arrangement space 6a. The direction in which the arrangement space 6a extends is the longitudinal direction 1a of the rod-shaped body 1. In the illustrated embodiment, the side walls 6d are provided on the left and right, and the arrangement space 6a extends vertically. The fixed part main body 6 also includes a first shaft 6e that protrudes rearward from the bottom wall 6c and forms the aforementioned axis 4b, and a second shaft 6f that protrudes from the first shaft 6e. The second shaft portion 6f has a smaller diameter than the first shaft portion 6e, is provided concentrically with the first shaft portion 6e, and has a flange portion 6g at its tip.
[0024] The rotating body 701 (movable part 7) includes a bottom plate 7a, legs 7b extending forward from the bottom plate 7a, and an extension piece 7c extending from the legs 7b in a direction along the bottom plate 7a (more specifically, in the rotation direction of the rotating body 701). The bottom plate 7a is formed in a disk shape, and a shaft hole 7d is formed in its center, which, together with the first shaft 6e of the fixed part main body 6, forms the axis 4b. The bottom plate 7a is positioned so that its rear side overlaps the bottom wall 6c of the fixed part main body 6, and the first shaft 6e of the fixed part main body 6 fits into the shaft hole 7d, allowing the rotating body 701 to rotate about the axis 4b. The second shaft 6f of the fixed part main body 6 protrudes rearward from the bottom plate 7a. The leg portion 7b and the extension piece 7c are provided as a pair, and are positioned symmetrically with respect to the axis 4b, and the pair of extension pieces 7c, 7c close the opening 6b at its upper and lower parts.
[0025] This extension piece 7c consists of a first extension portion 7e on the tip side and a second extension portion 7f on the base side. When the rotating body 701 is in a rotation position in which it is in a standby state (see FIGS. 7 to 10), the extension piece 7c is out of the opening 6b to allow the rod-shaped body 1 to pass through the opening 6b. When the rotating body 701 is in a rotation position in which it is in a temporarily fixed state (see FIGS. 11 to 15), the first extension portion 7e closes the opening 6b to prevent the rod-shaped body 1 in the arrangement space 6a from coming off the opening 6b, and also allows the fixing part 4 to move along the longitudinal direction 1a of the rod-shaped body 1. When the rotating body 701 is in a rotation position in which the rod-shaped body 1 is in the final fixed state (see FIGS. 16 to 18), the second extending portion 7f closes the opening 6b in the arrangement space 6a to prevent the rod-shaped body 1 from coming off the opening 6b, and restricts movement of the fixed part 4 along the longitudinal direction 1a of the rod-shaped body 1. In this final fixed state, the first extending portion 7e enters an escape space 6h provided in the fixed part main body 6.
[0026] In detail, the inner surface of the second extending portion 7f when the rotating body 701 is in the rotated position in the permanently fixed state protrudes toward the arrangement space 6a more than the inner surface of the first extending portion 7e when the rotating body 701 is in the rotated position in the temporary fixed state, so that, as described above, the rotating body 701, which becomes the movable portion 7, narrows the arrangement space 6a in the permanently fixed state more than in the temporary fixed state, and in the permanently fixed state, the locking portion 4a, which is locked in the recess of the rod-shaped body 1, is prevented from coming off the recess. Further, the extending piece 7c of the rotating body 701 (movable portion 7) is arranged so that, in the temporary fixed state, it can be pushed by the rod-shaped body 1 and elastically deformed in a direction away from the locking portion 4a, and as described above, the locking of the locking portion 4a in the recess of the rod-shaped body 1 is released by this elastic deformation.
[0027] The fixed unit 4 also has a sensor 4c that senses that the movable unit 7 (the rotating body 701 in the illustrated embodiment) has been displaced from the standby state to the temporary fixed state, that is, that the rotating body 701 has rotated from a rotation position in the standby state to a rotation position in the temporary fixed state. The sensor 4c is provided on the rotating body 701 (movable unit 7), and more specifically, it comprises an inclined surface 7g that is provided on the inner surface of the first extending portion 7e and slopes upward toward the second extending portion 7f, and when the rotating body 701 is in the rotation position in the temporary fixed state, this inclined surface 7g comes into contact with the rod-shaped body 1, and the operator senses that the rotating body 701 has rotated to the rotation position in the temporary fixed state.
[0028] The holding portion 5 includes a holding portion main body 5b that holds the wiring / piping material 2 and a connecting portion 5c that connects the holding portion main body 5b to the fixing portion 4. The holding portion main body 5b is made of a cable tie and includes a belt-shaped band portion 5d and a fastening portion 5e provided on one end of the band portion 5d. The other end of the band portion 5d is inserted into the fastening portion 5e, and the band portion 5d is fastened to the fastening portion 5e at any position in its longitudinal direction. The band portion 5d forms the aforementioned enclosing portion 5a, and by changing the insertion length of the band portion 5d into the fastening portion 5e and changing the enclosing range of the band portion 5d (enclosing portion 5a), the holding state can be changed between the aforementioned temporary holding state (see FIGS. 11, 12, 15, and 16) and a final holding state (not shown) in which the band portion 5d is fastened.
[0029] The connecting portion 5c is provided at a longitudinally intermediate position of the band portion 5d. The connecting portion 5c is formed in a cylindrical shape, and the second shaft portion 6f of the fixing portion main body 6 is inserted into the hole 5f inside the connecting portion 5c. The opening of the hole 5f is provided with a protruding portion 5g that protrudes inward. The protruding portion 5g abuts against a flange portion 6g of the second shaft portion 6f, preventing the second shaft portion 6f from slipping out of the hole 5f in the axial direction of the second shaft portion 6f (see FIG. 15). The connecting portion 5c is also provided with a notched groove 5h with a T-shaped cross section that extends from the side surface of the connecting portion 5c to the inner circumferential surface of the hole 5f (see FIGS. 9 and 12). The second shaft portion 6f is inserted into the hole 5f through the notched groove 5h. The inner peripheral surface of the hole 5f has an uncut portion on the side where the notched groove 5h is located, and this uncut portion serves as an engagement surface 5i, with which the flange portion 6g of the second shaft portion 6f engages, preventing the second shaft portion 6f from passing through the notched groove 5h and slipping out of the hole 5f (see FIG. 9). The holding portion 5 is rotatable about the axis of the second shaft portion 6f (an axis orthogonal to the longitudinal direction 2a of the wiring / piping material 2), and this rotation makes it possible to change the relative position with respect to the fixing portion 4. As described above, this change in relative position makes it possible to orient the longitudinal direction 2a of the wiring / piping material 2 selectively between the direction facing the longitudinal direction 1a of the rod-shaped body 1 and the direction intersecting the longitudinal direction 1a of the rod-shaped body 1. In addition, the symbol 8 in the figure indicates a retaining ring, which prevents the second shaft portion 6f from moving relatively toward the back of the hole 5f, thereby preventing the flange portion 6g of the second shaft portion 6f from coming off the engagement surface 5i.
[0030] Next, the effects of the wiring / piping material holder 3 configured as described above will be described. This wiring / piping material holder 3 comprises a fixed portion 4 and a holding portion 5. The fixed portion 4 is fixed to the rod-shaped body 1, and the holding portion 5 holds the middle portion of the wiring / piping material 2. Here, the fixed portion 4 comprises a fixed portion main body 6 and a movable portion 7 (a rotating body 701 in the illustrated embodiment), and the fixed portion main body 6 has an arrangement space 6a in which the middle portion of the rod-shaped body 1 is arranged, and an opening 6b through which the middle portion of the rod-shaped body 1 passes.
[0031] Therefore, by placing the movable part 7 in a standby state away from the opening 6b, the middle portion of the rod-shaped body 1 can be inserted into the arrangement space 6a through the opening 6b. After the middle portion of the rod-shaped body 1 is inserted into the arrangement space 6a, the movable part 7 is placed in a temporarily fixed state, preventing the rod-shaped body 1 from coming off the opening 6b. In this state, the fixing part 4, and thus the wiring / piping material holder 3, can be moved along the longitudinal direction 1a of the rod-shaped body 1 to adjust its position. At this time, by holding the wiring / piping material 2 so as to allow relative movement of the wiring / piping material 2 with respect to the holding part 5 (i.e., by placing the holding part 5 in a temporarily held state), the wiring / piping material 2 can be held at an appropriate position in the longitudinal direction 2a, preventing excessive load from being applied to the wiring / piping material 2 and the holding part 5.
[0032] Thereafter, by setting the movable portion 7 to the final fixed state, the fixed portion 4, and therefore the wiring / piping material holder 3, are restricted from moving along the longitudinal direction 1a of the rod-shaped body 1 and are fixed in that position. At this time, no excessive load is applied to the wiring / piping material 2 or the holding portion 5, so that the fixed portion 4 can be fixed to the rod-shaped body 1 without applying an excessive load, and the wiring / piping material 2 can be attached to the rod-shaped body 1. In other words, with this wiring / piping material holder 3, no excessive load is applied to the wiring / piping material 2, the holding portion 5, or the fixed portion 4, so there is no need to reattach them to remove the excessive load, and the wiring / piping material 2 can be attached to the rod-shaped body 1 with ease.
[0033] Furthermore, since the fixed part 4 (more specifically, the movable part 7 (the rotating body 701 in the illustrated embodiment)) has a sensing part 4c, it is possible to know that the movable part 7 has been displaced to a temporarily fixed state, and in that state, the fixed part 4, and therefore the wiring / piping material holder 3, can be moved along the longitudinal direction 1a of the rod-shaped body 1 to adjust its position.
[0034] Furthermore, since the movable part 7 is made up of a rotating body 701, the rotating body 701 can be rotated to a rotation position in which the movable part 7 is in a standby state, a rotation position in which the movable part 7 is in a temporary fixed state, and a rotation position in which the movable part 7 is in a permanent fixed state, thereby easily displacing the movable part 701 between the standby state, the temporary fixed state, and the permanent fixed state.
[0035] The present invention is not limited to the above-described embodiment, and various other modifications are possible. For example, the fixed body 6 is provided with a locking portion 4a that locks into a recess formed in the circumferential surface of the rod-shaped body 1, but this locking portion 4a may be provided on the rotating body 701 (movable part 7), or may be provided on both the fixed body 6 and the rotating body 701 (movable part 7).
[0036] Furthermore, the locking portion 4a may be omitted, and the rod-shaped body 1 may not have a recess. Regardless of the presence or absence of the locking portion 4a, the rotating body 701 (movable portion 7) may be in pressure contact (pressing contact) with the rod-shaped body 1 in the permanently fixed state, sandwiching (supporting by sandwiching) the rod-shaped body 1 between itself and the fixed portion main body 6, and in the temporary fixed state, pressing against the rod-shaped body 1 with a force weaker than that of the pressing against the rod-shaped body 1 in the permanently fixed state. That is, in the permanently fixed state, the rotating body 701 (movable portion 7) presses against the rod-shaped body 1 and sandwiches the rod-shaped body 1 between itself and the fixed portion main body 6, thereby restricting movement of the fixed portion 4 along the longitudinal direction 1a of the rod-shaped body 1. In the temporary fixed state, the rotating body 701 (movable portion 7) presses against the rod-shaped body 1 with a force weaker than that of the pressing against the rod-shaped body 1 in the permanently fixed state, thereby allowing movement of the fixed portion 4 along the longitudinal direction 1a of the rod-shaped body 1. Furthermore, when the rotating body 701 (movable part 7) is in a temporarily fixed state, the rotating body 701 is pressed against the rod-shaped body 1, so that the fixed part 4 does not rattle relative to the rod-shaped body 1, and the fixed part 4 can be moved while maintaining its posture without tilting.
[0037] Furthermore, when the rotating body 701 rotates, there is a rotation position where it is in a temporary fixed state between the rotation position where it is in a standby state and the rotation position where it is in a permanently fixed state, but there may also be a rotation position where it is in a standby state between the rotation position where it is in a temporary fixed state and the rotation position where it is in a permanently fixed state.
[0038] Furthermore, the movable part 7 does not have to be the rotating body 701 that rotates and moves, but may be one that slides. [Explanation of symbols]
[0039] 1 rod-shaped body 1a Longitudinal direction 2 Wiring and pipe materials 2a Longitudinal direction 3 Wiring and pipe material holders 4 Fixing part 4a Locking part 4b Axis center 4c Sensing part 5 Holding part 5a Enclosing part 6 Fixing part body 6a Arrangement space 6b Opening 7 Movable part 701 Rotating body
Claims
1. A wiring / piping material holder comprising a fixing portion fixed to a rod-shaped body and a holding portion connected to the fixing portion and holding an intermediate portion of the wiring / piping material, The fixed portion includes a fixed portion main body and a movable portion, the fixing portion main body has an arrangement space in which an intermediate portion of the rod-shaped body is arranged, and an opening through which the intermediate portion of the rod-shaped body passes so as to enter and exit the arrangement space, the movable part is displaceable relative to the fixing part main body into a standby state in which it stands back from the opening to allow the rod-shaped body to pass through the opening, a temporary fixing state in which it closes the opening to prevent the rod-shaped body in the arrangement space from coming off the opening and allows the fixing part to move along the longitudinal direction of the rod-shaped body, and a permanent fixing state in which it closes the opening to prevent the rod-shaped body in the arrangement space from coming off the opening and restricts the fixing part from moving along the longitudinal direction of the rod-shaped body, The holding portion surrounds the wiring / piping material so as to determine the maximum distance position of the wiring / piping material relative to the arrangement space, and is capable of holding the wiring / piping material so as to allow relative movement of the wiring / piping material with respect to the holding portion along the longitudinal direction of the wiring / piping material.
2. 2. The wiring / piping material holder of claim 1, wherein the movable part presses against the rod-shaped body in the permanently fixed state and clamps the rod-shaped body between the movable part and the fixed part main body, and in the temporary fixed state, presses against the rod-shaped body with a force weaker than that in the permanently fixed state.
3. The fixed portion main body and / or the movable portion are provided with a locking portion that is locked into a recess formed on the circumferential surface of the rod-shaped body, 2. The wiring / piping material holder according to claim 1, wherein the movable part narrows the arrangement space in the final fixed state more than in the temporary fixed state, and in the final fixed state, the engaging part engaged with the recess is prevented from coming off the recess.
4. the locking portion is provided on an inner surface of the fixing portion main body that forms the arrangement space, on the opposite side to the opening, 4. The wiring / piping material holder according to claim 3, wherein the movable part is elastically deformable in the temporarily fixed state when pressed by the rod-shaped body in a direction away from the locking part, and the elastic deformation releases the locking of the locking part in the recess of the rod-shaped body.
5. 5. The wiring / piping material holder according to claim 1, wherein the fixing portion has a sensing portion that senses that the movable portion has been shifted from the standby state to the temporarily fixed state.
6. 5. A wiring / piping material holder as described in any one of claims 1 to 4, wherein the movable part comprises a rotating body rotatably assembled to the fixed part main body around an axis facing the opening direction of the opening, and the rotating body rotates and moves to a rotating position in which the waiting state is achieved, a rotating position in which the temporary fixed state is achieved, and a rotating position in which the actual fixed state is achieved.
7. The wiring / piping material holder according to claim 6, wherein the rotating body has a rotation position in which the temporary fixed state is achieved between a rotation position in which the standby state is achieved and a rotation position in which the final fixed state is achieved during the rotational movement.
8. The holding portion is capable of changing the relative posture with respect to the fixing portion, and by this change, the longitudinal direction of the wiring / piping material can be selectively oriented in a direction facing the longitudinal direction of the rod-shaped body or a direction intersecting the longitudinal direction of the rod-shaped body, 5. The wiring / piping material holder according to claim 1, wherein the holding portion has an enclosing portion that surrounds the wiring / piping material in a ring shape, and by changing the enclosing range of the enclosing portion, the holding portion can be changed between a temporary holding state in which the wiring / piping material is allowed to move relative to the holding portion along the longitudinal direction of the wiring / piping material, and a full holding state in which the relative movement is restricted.
Citation Information
Patent Citations
Support facility and method for long object, and holding member used in the same
JP2017032164A