Cap for stand, stand, and installation method for stand
The mount cap, made of a hard-to-adhere material, addresses the challenge of stand removal from hardened coating layers by preventing adhesion, enabling easy extraction and reducing hole formation and repair complexity.
Patent Information
- Application Number
- PCT/JP2025/002742
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-24
- Filing Date
- 2025-01-29
- Publication Date
- 2025-10-30
AI Technical Summary
Existing stands used in floor coating work, such as those with foldable legs, are difficult to remove from hardened coating layers due to strong adhesion, requiring time-consuming manual removal and often result in protrusions that are hard to clean up.
A mount cap made of a hard-to-adhere material, such as silicone rubber, is attached to the stand's feet to prevent adhesion to the coating layer, allowing easy extraction and minimizing hole formation during removal.
The mount cap facilitates easy removal of stands from hardened coating layers, reduces the size and visibility of holes, and simplifies the repair process by preventing coating material from adhering to the stand's feet.
Smart Images

Figure JP2025002742_30102025_PF_FP_ABST
Abstract
Description
Mounting cap, mounting base, and mounting base installation method
[0001] The present invention relates to a mount cap, a mount, and a mount installation method. The present invention claims priority to Japanese Patent Application No. 2024-070392 filed on April 24, 2024, and the contents of that application are incorporated herein by reference in designated states where incorporation by reference of documents is permitted.
[0002] In waterproofing work on verandas, balconies, flat rooftops, etc., a viscous waterproofing material (coating material) such as liquid urethane resin is applied to the floor (the surface that supports objects placed on it or people standing on it) to create a waterproof layer (coating layer) such as a urethane coating. During this floor coating work, outdoor units of air conditioning equipment and other items placed on the floor surface being worked on are elevated using stands or the like so as not to interfere with the work or to prevent them from getting dirty.
[0003] As a stand for primarily supporting such an object, for example, a "foldable legged stand for placing an object on top, comprising a base body assembled into a flat rectangular shape using frame material, and a plurality of legs supporting the base body, the legs being foldable and having their upper ends hingedly connected to the base body so that the entire legs are in contact with the underside of the base body when folded, the base body being provided with a locking mechanism for positioning the legs on the base body when the legs are extended, and pin members being provided at the lower ends of the legs, the tips of which form the tips of the legs" has been proposed (see claim 1 of Patent Document 1).
[0004] Japanese Patent Application Laid-Open No. 2004-169525
[0005] If a stand is installed during floor coating work, objects that cannot be easily moved to another location, such as outdoor units, can be supported away from the floor. Meanwhile, the stand itself remains on the floor, with its feet in contact with the floor. The floor coating work is then carried out with the stand's feet buried in the coating layer, and the stand is removed after the coating layer has hardened. After the stand is removed, holes (footprint holes) left in the coating layer by the removal of the stand's feet are repaired after the work is completed. Typically, to repair a footprint hole, the raised protrusion around the edge of the hole is first gouged out, then the sloped surface and hole left by the gouging are filled with filler, and finally a finish material the same as the top finish material of the coating layer is applied.
[0006] When removing the above-mentioned mount, it is time-consuming to pull the mount's legs out of the hardened coating layer (paint film). After removing the mount, it is time-consuming to remove the coating material that has adhered to the removed legs. Furthermore, in repair work after removing the mount, the protrusions around the edges of the holes are generally removed using a cutter or the like, but this is difficult to cut cleanly and there is a risk of staining or damaging the surrounding waterproofing layer.
[0007] The legged stand has the advantage that the diameter of the footprint hole can be made small because the tip of the pin member is configured as the tip of the leg. However, it cannot be said that it solves the problems such as the sticking of the application material to the feet and the need to cut off the protrusions around the edge of the hole.
[0008] The present invention is intended to solve at least one of the above problems, and aims to provide a mount cap, a mount, and a mount installation method that make it easier to remove the mount and perform work after removal during floor coating work.
[0009] One aspect of the present invention for solving the above problem is a mount cap that is attached to the foot of a mount, and includes a hard-to-adhere body formed from a hard-to-adhere material having poor adhesion properties, and the hard-to-adhere body has a cylindrical outer tube portion and an outer closing portion that closes one end of the outer tube portion.
[0010] The outer closure may be pointed.
[0011] The frame may include an intervening body that is placed between the foot of the frame and the difficult-to-adhere body, the intervening body being formed from a material other than the difficult-to-adhere material, and the intervening body may have an inner cylindrical portion that is placed inside the outer cylindrical portion.
[0012] The intermediate body may have the inner cylindrical portion and an inner closed opening portion that closes one end of the inner cylindrical portion.
[0013] One aspect of the present invention for solving the above problem is a method for installing a stand that temporarily supports an object during floor coating work, comprising the steps of: preparing the stand; attaching stand caps having a hard-to-adhere body formed from a hard-to-adhere material to the feet of the stand; and installing the stand on the floor and placing the object on the stand.
[0014] One aspect of the present invention for solving the above problem is a stand for temporarily supporting an object during floor coating work, with the stand caps attached to the feet in advance.
[0015] According to the present invention, it is possible to provide a mount cap, a mount, and a mount installation method that make it easier to remove the mount and perform work after removal during floor coating work.
[0016] Problems, configurations, and effects other than those described above will become apparent from the following description of the embodiments.
[0017] FIG. 1 is a diagram for explaining an example of a gantry cap according to embodiment 1. FIG. 2 is a diagram for explaining an example of attaching the gantry cap according to embodiment 1 to a gantry. FIG. 3 is a diagram for explaining an example of a gantry cap according to modified example 1 of embodiment 1. FIG. 4 is a diagram for explaining an example of a gantry cap according to modified example 1 of embodiment 1. FIG. 5 is a diagram for explaining an example of a gantry cap according to modified example 2 of embodiment 1. FIG. 6 is a diagram for explaining an example of a gantry cap according to modified example 3 of embodiment 1. FIG. 7 is a diagram for explaining an example of a gantry cap according to embodiment 2. FIG. 8 is a diagram for explaining an example of attaching the gantry cap according to embodiment 2 to a gantry. FIG. 9 is a diagram for explaining an example of a gantry cap according to modified example 1 of embodiment 2.
[0018] Hereinafter, examples of embodiments of the present invention will be described with reference to the drawings. Note that components common to the following embodiments will be assigned the same reference numerals as those previously mentioned, and their description may be omitted. Furthermore, when referring to the shape, positional relationship, etc. of components, etc., it is understood that the reference numerals include those that are substantially similar or similar to the shape, etc., unless otherwise specified or when it is clearly considered otherwise in principle.
[0019] <Embodiment 1> Fig. 1 is a diagram for explaining an example of a gantry cap according to embodiment 1, and includes (a) a plan view, (b) a bottom view, (c) a front view, and (d) a cross-sectional view along line BB in (a). Fig. 2 is a front view for explaining an example of attaching the gantry cap according to embodiment 1 to a gantry. In Fig. 1, line BB indicates a center line that divides the front-to-back width equally into front and back, and line CC indicates a center line that divides the horizontal width equally into left and right (the same applies to all figures below). In this application, the direction toward the intersection of line BB and line CC is defined as the inward direction, and the direction away from it is defined as the outward direction.
[0020] The mount according to this embodiment is used to support an object and is also called a horse. The mount according to this embodiment is particularly intended to be installed during floor coating work such as waterproofing work on verandas, balconies, flat rooftops, etc., to temporarily support the object. Mounts are often made of steel because they require strength, but they may also be made of other materials such as wood. Most mounts have four rod-shaped legs, but the number and shape of the legs are not particularly limited.
[0021] Urethane resins used in waterproofing work are known to have strong adhesion to metals such as iron and wood. Furthermore, the coating layer used in waterproofing work is applied thickly to ensure sufficient waterproofing. Therefore, particularly in waterproofing work, when removing a platform, it is time-consuming to pull the platform legs out of the hardened coating layer. It is also time-consuming to remove the coating material that has adhered to the removed legs. The protrusions around the edges of footprint holes are thought to be caused by the coating material adhering to the platform legs and hardening when applied to the floor.
[0022] 2, the gantry cap 1 of this embodiment is attached to the lower end A2 of the leg A1 of the gantry A. For ease of explanation, the figure shows an example of attaching the gantry cap 1 to one leg A1, but the gantry cap 1 is attached to each leg A1 of the gantry A, and the gantry caps 1 are attached to one gantry A in the same number as the legs A1 (the same applies hereinafter in each figure showing an attachment example).
[0023] The mount cap 1 of this embodiment includes a difficult-to-adhere body 2 formed of a difficult-to-adhere material. Here, the difficult-to-adhere material refers to a material that has low adhesion to a coating material used for floor application. In floor application for waterproofing work, the difficult-to-adhere material is, more specifically, a material that has low adhesion to a waterproofing material, such as a liquid urethane resin, used as a coating material. The difficult-to-adhere material is not particularly limited, but an example is a material containing silicone, such as silicone rubber. Silicone is known to have poor adhesion (non-adhesion), and silicone rubber is considered difficult to bond or adhere. Urethane resin, as a waterproofing material, has high adhesion to metal and wood, but is thought to have low adhesion to silicone rubber.
[0024] In the gantry cap 1 of this embodiment, the hard-to-adhere body 2 is formed from such a hard-to-adhere material, so it is easily detachable from the coating layer, and if it is attached to the lower end A2 of the foot A1 of the gantry A, the foot A1 can be easily pulled out from the coating layer when removing the gantry A. Furthermore, because the lower end A2 of the foot A1 is covered with the hard-to-adhere body 2, there is no need to remove the coating material adhering to the foot A1 after removing the gantry A. Furthermore, because the coating material does not easily adhere to the hard-to-adhere body 2, the occurrence of protrusions can be suppressed.
[0025] In the installation of a conventional trestle A, if the foot A1 of the trestle A cannot be easily pulled out from the coating layer, it is necessary to cut out the area around the foot A1 with a cutter, which makes the hole larger, but with the use of the trestle cap 1 of this embodiment, the foot A1 can be easily pulled out, and since the hole is small, it can be easily filled and becomes inconspicuous. In this way, by using the trestle cap 1, removal of the trestle during floor coating work and work after removal can be made easier.
[0026] The gantry cap 1 can be provided as a standalone unit, and a user can attach the gantry cap 1 to the foot A1 of a gantry A that they own or purchase. The gantry cap 1 may be attached to the foot A1 of the gantry A in advance, and the gantry A provided with the gantry cap 1 can be used as is. In this case, a replacement gantry cap 1 may be provided separately.
[0027] Although the pedestal A may be manufactured by directly coating the lower end A2 of the leg A1 with a poorly adhesive material, this would require a lot of work. The pedestal cap 1 can be manufactured at a relatively low cost, and if its performance deteriorates or it breaks during repeated use, it can be easily discarded and replaced, making it easier to use.
[0028] In the gantry cap 1, the total length of the hard-to-adhere body 2 is greater than at least the thickness of the floor surface coating layer. From the viewpoint of more effectively suppressing adhesion of the coating material and the occurrence of protrusions, the total length of the hard-to-adhere body 2 is preferably at least two times, more preferably at least three times, the thickness of the floor surface coating layer. From the viewpoint of manufacturing cost and ease of attachment, the total length of the hard-to-adhere body 2 is preferably no more than 1 / 2, more preferably no more than 1 / 3 of the length of the leg A1 of the gantry A.
[0029] Each part of the gantry cap 1 of this embodiment will be described in more detail below.
[0030] 1 , in the stent cap 1 of this embodiment, the hard-to-adhere body 2 preferably has a cylindrical outer tube portion 21 and an outer closing portion 22 that closes one end of the outer tube portion 21. The outer closing portion 22 has an outer periphery that is the same size and shape as the outer periphery of the outer tube portion 21. The outer tube portion 21 and the outer closing portion 22 are integrally formed from a hard-to-adhere material. Since the hard-to-adhere body 2 includes not only the outer tube portion 21 but also the outer closing portion 22, it can cover the lower end surface of the lower end portion A2 of the foot A1, preventing the application material from adhering to the lower end surface and preventing adhesion to the floor surface.
[0031] The outer tube portion 21 is formed to correspond to the shape of the lower end portion A2 of the foot A1. When the lower end portion A2 is cylindrical, the inner peripheral shape is formed as a cylinder having a circular shape in a plan view, as shown in the figure. The outer peripheral shape of the outer tube portion 21 may be any shape, such as a polygon, but from the viewpoint of ease of attachment and detachment to the coating layer, it is preferably formed as a cylinder having a circular shape, the same shape as the inner peripheral shape, as shown in the figure. Even when the lower end portion A2 is prismatic or the like, the inner peripheral shape of the outer tube portion 21 is formed as a polygon corresponding to the inner peripheral shape in a plan view, and the outer peripheral shape may be any shape, such as a polygon, but from the viewpoint of ease of attachment and detachment to the coating layer, it is preferably circular in a plan view and cylindrical as a whole in a front view.
[0032] For example, the inner diameter (diameter of the inner peripheral surface) of the outer tube portion 21 is slightly larger than the diameter of the lower end portion A2. When the lower end portion A2 of the leg A1 has another shape, such as a polygon, the inner circumference of the outer tube portion 21 is formed to be slightly larger than the outer circumference of the lower end portion A2. When the hard-to-adhere body 2 is an elastic body, the inner diameter (inner circumference) of the outer tube portion 21 may be equal to or smaller than the diameter (outer circumference) of the lower end portion A2, from the viewpoint of improving adhesion with the lower end portion A2.
[0033] The outer closing portion 22 is formed to correspond to the shape of the lower end surface of the lower end portion A2 of the foot A1. When the lower end surface of the foot A1 is a plane perpendicular to the longitudinal direction of the foot A1 as shown in Fig. 2, the outer closing portion 22 is formed in a plate shape perpendicular to the longitudinal direction of the outer tube portion 21 as shown in Fig. 1.
[0034] 3A to 3C are diagrams for explaining an example of a gantry cap according to a first modification of the first embodiment, and are (a) a plan view, (b) a bottom view, (c) a front view, and (d) a cross-sectional view taken along line BB in (a). Fig. 4A is a diagram for explaining an example of a gantry cap according to a first modification of the first embodiment, and is (a) a left side view, (b) a right side view, and (c) a perspective view for explaining an example of attachment to a gantry.
[0035] The base A may have a pointed lower end A2 of the foot A1 to reduce the contact area of the foot A1 and make it less likely to adhere to the ground. As an example, as shown by the dashed line in Fig. 4(c), the base A may have a cylindrical lower end A2 cut at an angle, so that the lower end surface is inclined relative to the longitudinal direction of the foot A1. Alternatively, a portion of the lower end A2 may be cut at an angle, so that the lower end surface is stepped.
[0036] The gantry cap 1 of this example is suitable for such a gantry A, and has a pointed outer closure portion 22 corresponding to the lower end A2 of the gantry A. In other words, the gantry cap 1 of this example has a pointed end. An example of the gantry cap 1 of this example will be described in detail below. Note that explanations of points similar to those in the above-described first embodiment will be omitted as appropriate (the same applies to each of the following embodiments and modified examples).
[0037] In the cradle cap 1 of this example, the outer closure portion 22 has a pointed shape in front view as shown in Fig. 3(c) and a V-shape in cross section as shown in Fig. 3(d). More specifically, as shown in Fig. 3(d), the outer closure portion 22 has a disk-shaped bottom wall portion 221 that slopes downward at an obtuse angle with the outer tube portion 21, and a connecting wall portion 222 that is continuous with the outer tube portion 21 and forms an acute angle with the bottom wall portion 221. In other words, as shown in Fig. 4(a), the bottom wall portion 221 is disk-shaped and slopes downward from one side of the outer periphery to the opposite side. As shown in Fig. 4(b), the connecting wall portion 222 extends downward from the outer tube portion 21 while narrowing in width and is continuous with the bottom wall portion 221.
[0038] By configuring the outer closure portion 22 in this manner, it can encase and receive the pointed lower end of the lower end portion A2 of the foot A1, and in addition to the effects of the above embodiment 1, it can further protect the floor surface from damage.
[0039] In addition, when the stand A is inclined in a direction in which the legs A1 are separated from each other as shown in Figure 4 (c), it is more time-consuming to pull it out from the coating layer and it is more difficult to repair the footprint holes, but the stand cap 1 of the above embodiment 1 and this example is particularly suitable for such a stand A.
[0040] <Variation 2 of Embodiment 1> Figure 5 is a diagram for explaining an example of a mount cap according to Variation 2 of Embodiment 1, in which (a) is a front view, (b) is a cross-sectional view along line BB, and (c) is a front view for explaining an example of attachment to a mount.
[0041] 5(c), the gantry A may have a lower end A2 of the foot A1 that is pointed in a conical shape. The gantry cap 1 of this example is suitable for such a gantry A, and has an outer closure portion 22 that is pointed corresponding to the lower end A2 of the gantry A. That is, the gantry cap 1 of this example has a pointed end.
[0042] In the gantry cap 1 of this example, the outer closing portion 22 has a pointed shape in front view as shown in Fig. 5(a) and a V-shape in cross section as shown in Fig. 5(b). In other words, the outer closing portion 22 has a hollow conical wall portion 223 whose upper end is continuous with the outer cylinder portion 21.
[0043] By configuring the outer closure portion 22 in this manner, it can encase and receive the pointed lower end of the lower end portion A2 of the foot A1, and in addition to the effects of the above embodiment 1, it can further protect the floor surface from damage.
[0044] 6A and 6B are diagrams illustrating an example of a gantry cap according to Modification 3 of Embodiment 1, in which (a) is a front view, (b) is a cross-sectional view along line BB, and (c) is a front view illustrating an example of attachment to a gantry. The gantry cap 1 of this example has a pointed outer closure portion 22. That is, one end is pointed.
[0045] In the gantry cap 1 of this example, the outer closing portion 22 has a pointed shape in front view as shown in Fig. 6(a) and a triangular shape in cross section as shown in Fig. 6(b). In other words, the outer closing portion 22 has a solid conical end portion 224 that is connected to the outer cylinder portion 21 near the outer periphery of its upper end.
[0046] By configuring the outer closure portion 22 in this manner, even when the lower end A2 of the foot A1 is not pointed as shown in Figure 6 (c), in addition to the effects of the above-mentioned embodiment 1, the ground contact area can be reduced as much as possible.
[0047] 7A and 7B are diagrams for explaining an example of a gantry cap according to embodiment 2, and are (a) a plan view of the entire gantry cap, (b) a bottom view of the entire gantry cap, (c) a cross-sectional view along line BB, and (d) a front view of an inner cylinder portion. Fig. 8 is a perspective view for explaining an example of mounting the gantry cap according to embodiment 2 to a gantry.
[0048] 7, the gantry cap 1 of this embodiment includes a hard-to-adhere body 2 made of a hard-to-adhere material, and an interposer 3 disposed between the foot A1 of the gantry A and the hard-to-adhere body 2. The hard-to-adhere body 2 of this embodiment is the same as that of the first embodiment and its modifications, except that it has an inner diameter (size of the inner circumference) that can accommodate the interposer 3, and therefore a description thereof will be omitted here.
[0049] The poorly adhesive body 2 made of the above-mentioned poorly adhesive material, for example, silicone rubber, does not attach well to the foot A1, and may take time to attach. The interposing body 3 of this embodiment is interposed between the foot A1 and the poorly adhesive body 2 to improve the attachability of the pedestal cap 1.
[0050] The intermediate body 3 is formed of a material other than the poorly adhesive material. More specifically, the material other than the poorly adhesive material is a material other than the above-mentioned poorly adhesive material that has good wearability with the foot A1. The material other than the poorly adhesive material is not particularly limited, but is, for example, polypropylene (PP).
[0051] As shown in the figure, the interposing body 3 has an inner cylindrical portion 31 that is disposed inside the outer cylindrical portion 21 of the hard-to-adhere body 2. The inner cylindrical portion 31 is formed in the same shape as the outer cylindrical portion 21. The inner cylindrical portion 31 has an outer diameter (size of the outer periphery) that is slightly smaller than that of the outer cylindrical portion 21, and an inner diameter (size of the inner periphery) that is slightly larger than the lower end portion A2 of the leg A1. As an example, the inner cylindrical portion 31 has the same overall length as the outer cylindrical portion 21. From the viewpoint of facilitating insertion and removal of the inner cylindrical portion 31 from the hard-to-adhere body 2, the inner cylindrical portion 31 is preferably configured to be longer than the outer cylindrical portion 21 as shown in the figure.
[0052] 8, the interposing body 3 is interposed between the hard-to-adhere body 2 and the lower end A2 of the foot A1 in the use state. By configuring the gantry cap 1 of this embodiment by overlapping the hard-to-adhere body 2 and the interposing body 3 inside and outside in this way, in addition to the effects of the first embodiment and its modified examples, it is possible to further facilitate attachment and detachment to and from the foot A1, improving the fit to the foot A1.
[0053] <Modification 1 of Embodiment 2> FIGS. 9A and 9B are diagrams for explaining an example of a gantry cap according to Modification 1 of Embodiment 2, in which (a) is a cross-sectional view of the entire cap taken along line BB, and (d) is a front view of the inner cylindrical portion.
[0054] The gantry cap 1 of this example differs from the second embodiment in that the interposer 3 has an inner cylindrical portion 31 and an inner closed opening portion 32 that closes one end of the inner cylindrical portion 31. The interposer 3 is formed such that the inner cylindrical portion 31 and the inner closed opening portion 32 are integrally made of the same material. The outer periphery of the inner closed opening portion 32 has the same size and shape as the outer periphery of the inner cylindrical portion 31.
[0055] The inner closing portion 32 is formed in the same shape as the outer closing portion 22. In other words, the inner closing portion 32 is formed to correspond to the shape of the lower end surface of the lower end portion A2 of the foot A1, similar to the outer closing portion 22. As shown in the figure, when the outer closing portion 22 is a disk shape perpendicular to the longitudinal direction of the outer cylindrical portion 21, the inner closing portion 32 is formed in a disk shape perpendicular to the longitudinal direction of the inner cylindrical portion 31, and when the outer closing portion 22 is formed in a pointed shape as in Modifications 1 and 2 of Embodiment 1, the inner closing portion 32 is also formed in a corresponding pointed shape.
[0056] In this example, the stand cap 1 has an inner closing portion 32 in which the interposing body 3 overlaps the inside of the outer closing portion 22, and in addition to the effects of the above embodiment 2, the strength of the ends that come into contact with the floor surface and foot A1 is increased, making it less likely to break.
[0057] <Method for Installing a Mount> The steps of the method for installing a mount using the mount cap of the above embodiment and its modified example will be described below. This installation method is particularly suitable for installing a mount that temporarily supports an object in floor coating work.
[0058] First, prepare a stand A. A commercially available stand A can be used. Examples of commercially available stands include those shown in the drawings.
[0059] Next, a gantry cap 1 having a hard-to-adhere body 2 formed from the hard-to-adhere material is attached to the foot A1 of the gantry A. A suitable gantry cap 1 can be used depending on the shape of the lower end A2 of the foot A1 of the gantry A.
[0060] In the case of the mount cap 1 of the second embodiment and its modified examples, for example, the intermediate body 3 is first attached to the foot A1, and then the hard-to-adhere body 2 is attached to the outside of the intermediate body 3. From the viewpoint of saving time and labor, the intermediate body 3 is preferably inserted into the hard-to-adhere body 2 as a set, and is attached to and removed from the foot A1 as a set in a single operation.
[0061] Next, the stand A with the stand cap 1 attached is placed on the floor, and an object such as an outdoor unit is placed on the stand A to complete the installation.
[0062] Thereafter, the floor surface coating work is carried out, and after the work is completed, the base A is pulled out from the coating layer and removed. In the floor surface coating work carried out by this installation method, the base A can be easily pulled out when it is removed.
[0063] The footprint holes are then repaired. This installation method prevents the occurrence of protrusions around the edges of the holes, making filling the holes easy. Furthermore, because the lower end A2 of the foot A1 is covered with the non-adhesive material 2, the material does not adhere to the foot A1, eliminating the need to remove it.
[0064] If the stand A has the stand caps 1 attached to the legs A1 in advance, the installation is completed by placing it on the floor and placing an object such as an outdoor unit on it.
[0065] It goes without saying that the stand cap 1 and the stand A with the stand cap 1 pre-attached to the legs A1 may be used in construction work other than floor coating work.
[0066] The above describes the embodiments and modifications of the mount cap, mount, and mount installation method according to the present invention, but these are merely examples of the present invention and the present invention is not limited to these. The present invention also includes combinations of the above embodiments and their modifications, as well as various other modifications. Various additions, modifications, and partial deletions are possible within the scope of the conceptual idea and spirit of the present invention, which can be derived from the content defined in the claims and their equivalents.
[0067] 1...stand cap, 2...hardly adhesive body, 21...outer cylindrical portion, 22...outer closing portion, 3...intervening body, 31...inner cylindrical portion, 32...inner closing portion, A...stand.
Claims
1. A gantry cap to be attached to the leg of a gantry, comprising a hard-to-adhere body made of a hard-to-adhere material, the hard-to-adhere body having a cylindrical outer tube portion and an outer closing portion that closes one end of the outer tube portion.
2. The mount cap according to claim 1, wherein the outer closing portion is pointed.
3. A mount cap as claimed in claim 1 or 2, characterized in that it comprises an intervening body arranged between the legs of the mount and the hard-to-adhere body, the intervening body being formed from a material other than the hard-to-adhere material, and the intervening body having an inner tubular portion arranged inside the outer tubular portion.
4. The mount cap according to claim 3, characterized in that the intermediate body has the inner cylindrical portion and an inner closing portion that closes one end of the inner cylindrical portion.
5. A method for installing a stand that temporarily supports an object during floor coating work, comprising the steps of: preparing the stand; attaching stand caps having a hard-to-adhere body formed from a hard-to-adhere material to the feet of the stand; and installing the stand on the floor and placing the object on the stand.
6. A stand for temporarily supporting an object during floor coating work, with the stand cap according to claim 1 attached to the legs in advance.
Citation Information
Patent Citations
JP1977150897U
JP1988073442U
Stepladder scaffolding
JP1997279830A
Loading stand with legs
JP2004169525A
Furniture leg cover
JP2007268244A