Panel position adjusting jig and panel position adjusting method using the same
The panel position adjusting jig addresses the issue of panel scratching by using a hooking, fixing, and slide operation mechanism to adjust panel position without direct contact, ensuring smooth and scratch-free adjustments.
Patent Information
- Application Number
- JP2021119120
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-07-19
- Publication Date
- 2025-07-09
- Estimated Expiration
- 2041-07-19
AI Technical Summary
Existing panel position adjusting jigs risk scratching the panel during adjustment due to the pressing portion being applied to the panel's side surface.
A panel position adjusting jig that includes a hooking portion, a fixing operation portion, a pressing portion, and a slide operation portion, allowing the jig to be slidably locked to a cross member of a structural frame, with the pressing portion applied to the accessory of the panel to adjust its position without scratching.
The jig effectively suppresses panel scratches by sliding the panel via its accessory, ensuring easy and precise position adjustment.
Smart Images

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Abstract
Description
Technical Field
[0001] The present disclosure relates to a panel position adjusting jig for adjusting the position of a panel and a panel position adjusting method using the same.
Background Art
[0002] Patent Document 1 describes a joint width adjusting jig for adjusting the joint width between a panel that is slidably locked in the longitudinal direction to a horizontal member constituting a part of a structural frame, and a fixed panel fixed at a position adjacent to this panel.
[0003] The joint width adjusting jig includes a locking portion locked to the horizontal member, a fixing operation portion that fixes the locking portion to the horizontal member and can release the fixing, a pressing portion that is applied to the side surface of the panel facing the side opposite to the fixed panel, and a slide operation portion that can slide the pressing portion in the longitudinal direction of the horizontal member.
[0004] With this joint width adjusting jig, the panel can be slid in the longitudinal direction of the horizontal member by applying the pressing portion to the side surface of the panel facing the side opposite to the fixed panel.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0006] By the way, in the joint width adjusting jig described in Patent Document 1, since the pressing portion is applied to the side surface of the panel to slide the panel, there is a risk of scratching the panel.
[0007] In view of the above circumstances, an object is to propose a panel position adjusting jig capable of suppressing the occurrence of defects on the panel and a panel position adjusting method using the same.
Means for Solving the Problems
[0008] The panel position adjusting jig according to one aspect of the present disclosure adjusts the position of a panel that is slidably locked in the longitudinal direction to a cross member that constitutes a part of the structural housing and to which accessories are fixed. The panel position adjusting jig according to one aspect includes a jig body extending in one direction, a hooking portion provided at a part of the longitudinal direction of the jig body and hooked on the cross member, a fixing operation portion capable of fixing and releasing the hooking portion to and from the cross member, a pressing portion provided at another part of the longitudinal direction of the jig body and applied to the accessory of the panel, and a slide operation portion capable of sliding the pressing portion in the longitudinal direction of the jig body.
[0009] Further, the panel position adjusting method according to one aspect of the present disclosure adjusts the position of the panel using the panel position adjusting jig. In the panel position adjusting method according to one aspect, the hooking portion is hooked on the cross member, the fixing operation portion is operated to fix the hooking portion to the cross member, and the slide operation portion is operated to slide the pressing portion in the longitudinal direction of the jig body, so that the pressing portion presses the accessory of the panel to slide the panel and adjust the position of the panel.
Advantages of the Invention
[0010] In the panel position adjusting jig according to one aspect of the present disclosure and the panel position adjusting method using the same, it is possible to suppress the occurrence of defects on the panel.
Brief Description of the Drawings
[0011]
Figure 1
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Mode for Carrying Out the Invention
[0012] (First Embodiment) 1. Outline The panel position adjusting jig 1 of the first embodiment shown in FIG. 1 is slidably locked in the longitudinal direction to the cross member 2 that forms part of the structural frame, and adjusts the position of the panel 3 to which the accessory part 30 is fixed. The panel position adjusting jig 1 includes a jig body 4 extending in one direction, a hooking part 5 provided at a part of the longitudinal direction of the jig body 4 and hooked on the cross member 2, a fixing operation part 6 capable of fixing and releasing the hooking part 5 with respect to the cross member 2, a pressing part 7 provided at another part of the longitudinal direction of the jig body 4 and applied to the accessory part 30 of the panel 3, and a slide operation part 8 capable of sliding the pressing part 7 in the longitudinal direction of the jig body 4.
[0013] By having the above configuration, in the panel position adjusting jig 1 of the present embodiment, on the side of the accessory part 30 of the panel 3 slidably locked to the cross member 2, with the hooking part 5 hooked on the cross member 2, by operating the fixing operation part 6, the hooking part 5 can be fixed to the cross member 2. Thereafter, in the panel position adjusting jig 1 of the present embodiment, by operating the slide operation part 8, the pressing part 7 can be slid and moved, and the pressing part 7 can be applied to the accessory part 30 of the panel 3 to slide the panel 3. Thus, in the panel position adjusting jig 1 of the present embodiment, since the pressing part 7 can be applied to the accessory part 30 to slide the panel 3, it is possible to suppress the panel 3 from being scratched.
[0014] Also, the panel position adjustment method of the present embodiment adjusts the position of the panel 3 using the above-described panel position adjusting jig 1. In this panel position adjustment method, the hooking part 5 is hooked on the cross member 2, the fixing operation part 6 is operated to fix the hooking part 5 to the cross member 2, and the slide operation part 8 is operated to slide the pressing part 7 in the longitudinal direction of the jig body 4, thereby pressing the accessory part 30 of the panel 3 with the pressing part 7 to slide the panel 3 and adjust the position of the panel 3.
[0015] In the panel position adjustment method of the present embodiment having the above configuration, since the pressing portion 7 of the panel position adjustment jig 1 can be applied to the accessory 30 of the panel 3 to slide the panel 3, it is possible to suppress the panel 3 from being scratched.
[0016] 2. Details Subsequently, the panel position adjustment jig 1 of the present embodiment shown in FIGS. 1 to 4 and the panel position adjustment method using the same will be described in more detail.
[0017] Hereinafter, the longitudinal direction of the horizontal member 2 shown in FIG. 1 is defined as the left - right direction, the side where the panel 3 is located with respect to the horizontal member 2 is defined as the front, the opposite side is defined as the rear, and the direction orthogonal to the left - right direction and the front - rear direction is defined as the up - down direction. Each component will be described in detail.
[0018] 2 - 1. Panel position adjustment jig As shown in FIGS. 1 to 4, the panel position adjustment jig 1 includes a jig body 4, a hook portion 5, a fixing operation portion 6, a pressing portion 7, and a slide operation portion 8.
[0019] 2 - 1 - 1. Jig body As shown in FIGS. 1 and 2, the jig body 4 is a member extending in one direction. In the present embodiment, the jig body 4 is a rod - shaped member 40 having a screw groove 400 on its outer peripheral surface. The screw groove 400 is provided in a spiral shape. A pressing portion 7 is attached to one end in the longitudinal direction of the rod - shaped member 40 (the left end in the present embodiment), and a hook portion 5 and a slide operation portion 8 are attached to the other part in the longitudinal direction of the rod - shaped member 40 (the right part in the present embodiment). The jig body 4 is made of metal in the present embodiment.
[0020] 2 - 1 - 2. Hook portion The hook portion 5 is configured to be hookable on the horizontal member 2. In the present embodiment, as shown in FIGS. 1 and 3, the hook portion 5 is in a substantially rectangular parallelepiped block shape. The hook portion 5 has an insertion groove 50 into which a vertical plate portion 20 of the horizontal member 2 described later is inserted and an insertion hole 51 through which the rod - shaped member 40 is inserted. The hook portion 5 is made of metal in the present embodiment.
[0021] More specifically, the engaging portion 5 includes a rectangular parallelepiped-shaped first vertical piece 52 with its longitudinal direction in the vertical direction, a horizontal piece 53 extending forward from the upper end portion of the first vertical piece 52, and a rectangular parallelepiped-shaped second vertical piece 54 extending downward from the front end portion of the horizontal piece 53.
[0022] The second vertical piece 54 is parallel to the first vertical piece 52 and is positioned at a distance approximately equal to the thickness of the vertical plate portion 20 of the cross-member 2 from the first vertical piece 52. The space surrounded by the first vertical piece 52, the horizontal piece 53, and the second vertical piece 54 is the insertion groove 50 into which the vertical plate portion 20 is inserted.
[0023] The first vertical piece 52 is provided with a screw hole 520 that penetrates a part of the first vertical piece 52 in the front-rear direction. The screw hole 520 communicates with the insertion groove 50. The first vertical piece 52 is provided with an insertion hole 51 in a portion above the screw hole 520. The insertion hole 51 is located above the screw hole 520.
[0024] The diameter of the insertion hole 51 is larger than the diameter of the rod-shaped member 40. Thereby, the engaging portion 5 can move to any position in the longitudinal direction of the rod-shaped member 40.
[0025] 2-1-3. Fixing operation portion The fixing operation portion 6 is configured to be able to fix and release the fixing of the engaging portion 5 to the cross-member 2. In the present embodiment, as shown in FIGS. 2 and 3, the fixing operation portion 6 includes a fixing bolt 60 attached to the engaging portion 5 so as to approach and separate from the cross-member 2, and an operation lever 61 connected to the fixing bolt 60.
[0026] In detail, the fixing bolt 60 has a shaft portion 62 inserted into the screw hole 520 of the first vertical piece 52 of the hook portion 5, and a head portion 63 provided at the rear end of the shaft portion 62. The operation lever 61 is connected to the head portion 63. The head portion 63 is hexagonal columnar. As shown in FIG. 2, the operation lever 61 has a strip-shaped handle portion 610 that can be held by an installer, a connecting hole 611, and a rotation restricting portion 612. The connecting hole 611 is a hexagonal hole. The operation lever 61 is connected to the fixing bolt 60 by fitting the head portion 63 of the fixing bolt 60 into the connecting hole 611, and operates integrally with the fixing bolt 60. At this time, the mounting angle of the operation lever 61 with respect to the head portion 63 can be appropriately selected, and the protruding length of the shaft portion 62 of the fixing bolt 60 into the insertion groove 50 of the hook portion 5 can be changed arbitrarily.
[0027] The rotation restricting portion 612 is composed of a rod-shaped member attached to one end in the longitudinal direction of the operating lever 61. In this embodiment, this rod-shaped member is a bolt 64. When the operating lever 61 is connected to the fixing bolt 60, the rotation restricting portion 612 protrudes forward from the operating lever 61 and extends parallel to the fixing bolt 60.
[0028] The fixing operation part 6 can adjust the protruding amount of the shaft part 62 of the fixing bolt 60 forward from the first vertical piece 52 by grasping the operation lever 61 and rotating the fixing bolt 60 around its axis. In the present embodiment, the operation lever 61 rotates within a range from a position where the rotation restricting part 612 abuts against a part on the opposite side (right side) of the pressing part 7 from the hooking part 5 in the rod-shaped member 40 or the second operation part 81 of the slide operation part 8 located at this part and the operation lever 61 is substantially parallel to the rod-shaped member 40, to a position where the rotation restricting part 612 abuts against a part on the pressing part 7 side (left side) of the hooking part 5 in the rod-shaped member 40 or the first operation part 80 of the slide operation part 8 located at this part and the operation lever 61 is substantially parallel to the rod-shaped member 40. That is, the operation lever 61 can rotate within a range of approximately 0 to 180 degrees with respect to the rod-shaped member 40 and with respect to a reference line passing through the center of the head 63 of the fixing bolt 60. Since the rotation restricting part 612 prevents the operation lever 61 from rotating more than a predetermined amount, it is possible to prevent the fixing bolt 60 from coming off from the screw hole 520 of the hooking part 5 and the fixing bolt 60 from protruding into the insertion groove 50 more than necessary.
[0029] By rotating the operation lever 61 clockwise as viewed from the rear and pressing the tip (front end) of the shaft part 62 of the fixing bolt 60 against the vertical plate part 20, the hooking part 5 is fixed to the horizontal cross member 2. Also, by rotating the operation lever 61 counterclockwise and separating the tip (front end) of the shaft part 62 of the fixing bolt 60 from the vertical plate part 20, the fixing of the hooking part 5 to the horizontal cross member 2 is released. In the present embodiment, when the operation lever 61 is grasped from the rear and tilted to the right (rotated clockwise), the hooking part 5 can be fixed to the horizontal cross member 2, and when the operation lever 61 is grasped from the rear and tilted to the left (rotated counterclockwise), the state where the hooking part 5 is fixed to the horizontal cross member 2 can be released.
[0030] Further, the operation lever 61 may be configured to switch from the unlocked state to the locked state by being rotated counterclockwise when viewed from the rear. That is, the shaft portion 62 of the fixing bolt 60 may be a reverse screw whose threads close when rotated counterclockwise when viewed from the rear.
[0031] 2-1-4. Slide operation part The slide operation part 8 is configured to be able to slide the pressing part 7 in the longitudinal direction of the jig body 4. In the present embodiment, as shown in FIGS. 1 and 2, the slide operation part 8 includes a first operation part 80 and a second operation part 81 that are rotatably attached to the jig body 4.
[0032] The first operation part 80 is located between the hook part 5 and the pressing part 7. The first operation part 80 includes a nut-shaped operation part 800 that is rotated and an annular part 801 that is located on the hook part 5 side of the operation part 800. In the present embodiment, the operation part 800 and the annular part 801 are separate members. The annular part 801 is cylindrical, has a smooth inner surface, and is movable in the longitudinal direction of the jig body 4. The annular part 801 moves when pushed by the operation part 800. The outer diameter of the annular part 801 is larger than the diameter of the insertion hole 51 of the hook part 5.
[0033] In the present embodiment, the operation part 800 is a hexagonal nut. A thread that engages with the thread groove 400 of the jig body 4 is provided on the inner peripheral surface of the operation part 800. The operation part 800 is rotated by a tool such as a power tool or a wrench.
[0034] The second operation part 81 is located on the side opposite to the first operation part 80 with respect to the hook part 5. The second operation part 81 includes a nut-shaped operation part 810 that is rotated and an annular part 811 that is located on the hook part 5 side of the operation part 810. The annular part 811 is cylindrical, has a smooth inner surface, and is movable in the longitudinal direction of the jig body 4. The annular part 811 moves when pushed by the operation part 810. The outer diameter of the annular part 811 is larger than the diameter of the insertion hole 51 of the hook part 5.
[0035] In this embodiment, the operation portion 810 is a hexagonal nut. A thread that engages with the thread groove 400 of the jig body 4 is provided on the inner peripheral surface of the operation portion 810. The operation portion 810 is rotationally operated by a tool such as a power tool or a wrench.
[0036] With the engaging portion 5 fixed to the horizontal member 2, by rotationally operating the first operation portion 80 or the second operation portion 81, the pressing portion 7 can be slid in the longitudinal direction of the jig body 4.
[0037] Specifically, the operation portion 800 of the first operation portion 80 is rotationally operated in a direction approaching the engaging portion 5 to bring the operation portion 800, the cylindrical portion 801, and the engaging portion 5 into contact with each other. From this state, by further rotationally operating the operation portion 800 in the same direction, the rotation of the operation portion 800 can move the jig body 4 and the pressing portion 7 to the left. That is, by rotationally operating the first operation portion 80, the pressing portion 7 can be moved in the direction (left) away from the engaging portion 5 in the longitudinal direction of the jig body 4.
[0038] Also, the operation portion 810 of the second operation portion 81 is rotationally operated in a direction approaching the engaging portion 5 to bring the operation portion 810, the cylindrical portion 811, and the engaging portion 5 into contact with each other. From this state, by further rotationally operating the operation portion 810 in the same direction, the rotation of the operation portion 810 can move the jig body 4 and the pressing portion 7 to the right. That is, by rotationally operating the second operation portion 81, the pressing portion 7 can be moved in the direction (right) approaching the engaging portion 5 in the longitudinal direction of the jig body 4.
[0039] However, when rotationally operating the second operation portion 81, the operation portion 800 and the cylindrical portion 801 of the first operation portion 80 are arranged at positions away from the engaging portion 5 so as not to interfere with the movement of the jig body 4.
[0040] 2-1-5. Pressing Portion The pressing part 7 is configured to be applied to the accessory part 30 of the panel 3 so as to be able to press the accessory part 30. In the present embodiment, as shown in FIG. 4, the pressing part 7 is in the shape of a substantially rectangular parallelepiped block. The pressing part 7 has a structure similar to that of the hooking part 5. Note that the pressing part 7 does not have a hole corresponding to the screw hole 520 of the hooking part 5.
[0041] The pressing part 7 has a locking groove 70 into which a part of the longitudinal direction of the vertical plate part 20 of the horizontal cross-member 2 can be inserted, and an insertion hole 71 through which one end (left end) of the rod-shaped member 40 is inserted. The locking groove 70 is a groove extending in the longitudinal direction of the jig body 4. The locking groove 70 opens on each of the left and right surfaces and the lower surface of the pressing part 7. In the present embodiment, the pressing part 7 is made of metal.
[0042] The pressing part 7 has a rectangular parallelepiped-shaped first longitudinal piece 72 having the vertical direction as the longitudinal direction, a horizontal piece 73 extending forward from the upper end of the first longitudinal piece 72, and a rectangular parallelepiped-shaped second longitudinal piece 74 extending downward from the front end of the horizontal piece 73. The first longitudinal piece 72 is provided with an insertion hole 71 so as to penetrate in the left-right direction.
[0043] The second longitudinal piece 74 is parallel to the first longitudinal piece 72 and is positioned at a distance approximately equal to the thickness of the vertical plate part 20 of the horizontal cross-member 2 away from the first longitudinal piece 72. The space surrounded by the first longitudinal piece 72, the horizontal piece 73, and the second longitudinal piece 74 is the locking groove 70 into which the vertical plate part 20 is inserted.
[0044] The second longitudinal piece 74 has a first pressing surface 740 facing the hooking part 5 side and a second pressing surface 741 facing the side opposite to the hooking part 5. The first pressing surface 740 or the second pressing surface 741 is applied to the accessory part 30 of the panel 3.
[0045] The diameter of the insertion hole 71 is larger than the diameter of the jig body 4. Among the surfaces facing the side opposite to the hooking portion 5 of the first vertical piece 72, a fixing tool 75 such as a nut is fixed to the portion around the insertion hole 71. One end portion of the jig body 4 in the longitudinal direction is inserted into the insertion hole 71, and one end of the jig body 4 in the longitudinal direction is fixed to the fixing tool 75. Thereby, the pressing portion 7 is fixed to one end of the jig body 4 in the longitudinal direction. Note that the insertion hole 71 may be a threaded hole, and in this case, the fixing tool 75 can be omitted.
[0046] The pressing portion 7 is arranged at the same front - rear position as the hooking portion 5 with respect to the jig body 4. The front surface of the pressing portion 7 and the front surface of the hooking portion 5 are located on the same plane or substantially the same plane. Therefore, the length of the panel position adjusting jig 1 in the front - rear direction is suppressed.
[0047] The pressing portion 7 moves in the longitudinal direction of the jig body 4 when the jig body 4 moves by the operation of the slide operation portion 8, and presses the accessory part 30 of the panel 3 by the first pressing surface 740 or the second pressing surface 741.
[0048] 2 - 2. Panel The panel 3 is a panel that is slidably locked in its longitudinal direction with respect to the horizontal cross - member 2 and to which the accessory part 30 is fixed. An example of the panel 3 is shown in FIG. 5. In the present embodiment, the panel 3 is a sandwich panel that forms a building wall.
[0049] The panel 3 is in a rectangular plate shape. The panel 3 has a longitudinal direction parallel to the vertical direction, a short - hand direction parallel to the left - right direction, and a thickness direction parallel to the front - rear direction. For example, the length in the vertical direction of the panel 3 is 0.5 to 6.0 m, the length (width) in the left - right direction is 0.2 to 1.5 m, and the length (thickness) in the front - rear direction is 30 to 150 mm.
[0050] As shown in FIGS. 5, 6A, 6B, and 7, the panel 3 includes a core material 31, a first outer skin 32 that covers the core material 31 from the front side, and a second outer skin 33 that covers the core material 31 from the rear side.
[0051] The core material 31 has a rectangular plate-like overall shape. The overall shape being plate-like includes not only a single plate but also a structure formed by arranging a plurality of members to form a single plate. The core material 31 has concave groove portions 310 on its left and right side surfaces. The concave groove portions 310 are located over the entire length in the vertical direction at approximately the central portions in the front-rear direction of the left and right side surfaces of the core material 31. A fire joint material 11 (see FIG. 8), which is formed of a plate-like member such as a gypsum board or a calcium silicate board and a fibrous inorganic material such as an alkali earth silicate blanket (bio-soluble fiber), is inserted into the concave groove portions 310.
[0052] The core material 31 has heat insulation properties. The core material 31 is formed by arranging a plurality of block bodies, which are obtained by solidifying fibrous inorganic materials such as rock wool or glass wool into blocks with a binder or the like, in a single rectangular plate shape. Note that the core material 31 may be formed of a foamed organic material such as urethane foam or phenol foam, or may be a styrene board, a urethane board, or the like.
[0053] Each of the first outer skin 32 and the second outer skin 33 is obtained by forming a metal plate into a desired shape by roll processing, press processing, or the like. The metal plate has a thickness of, for example, 0.23 to 6.0 mm. The metal plate may be a painted steel plate, a galvanized steel plate, an aluminum-zinc alloy galvanized steel plate, a Galvalume (registered trademark) steel plate, an SGL (registered trademark) steel plate, or the like, but is not limited thereto.
[0054] The first outer skin 32 has a rectangular box shape that is open toward the rear side. The first outer skin 32 has a rectangular plate-like main body portion 320 that covers the front surface of the core material 31, an upper wall portion 321 that covers the upper surface of the core material 31, and a lower wall portion 322 that covers the lower surface of the core material 31. The first outer skin 32 further has a left side wall portion 323 that covers the portion of the left side surface of the core material 31 that is anterior to the concave groove portion 310, and a right side wall portion 324 that covers the portion of the right side surface of the core material 31 that is anterior to the concave groove portion 310.
[0055] The upper wall portion 321 protrudes rearward from the upper edge of the main body portion 320, the lower wall portion 322 protrudes rearward from the lower edge of the main body portion 320, the left side wall portion 323 protrudes rearward from the left edge of the main body portion 320, and the right side wall portion 324 protrudes rearward from the right edge of the main body portion 320. Each of the four wall portions 321, 322, 323, 324 forms a substantially right angle with respect to the main body portion 320. Each of the upper and lower wall portions 321, 322 is in the shape of a rectangular flat plate. The left and right side wall portions 323, 324 each have a rectangular flat plate portion 323a, 324a and a rectangular plate-shaped protruding portion 323b, 324b that protrudes substantially at a right angle outward in the left-right direction from the rear end of the flat plate portions 323a, 324a.
[0056] The second outer skin 33 has a rectangular plate-shaped main body portion 330 that covers the rear surface of the core material 31 of the core material 31, a left side wall portion 331 that covers the portion of the left side surface of the core material 31 that is posterior to the concave strip portion 310, and a right side wall portion 332 that covers the portion of the right side surface of the core material 31 that is posterior to the concave strip portion 310. The left side wall portion 331 protrudes forward from the left edge of the main body portion 330, and the right side wall portion 332 protrudes forward from the right edge of the main body portion 330. Note that the second outer skin 33 does not have a portion that covers the upper and lower surfaces of the core material 31.
[0057] Each of the left and right side wall portions 331, 332 has a curved portion 331a, 332a that is curved in a U shape in plan view and a rectangular flat plate portion 331b, 332b that protrudes forward from the front end portion of the curved portions 331a, 332a.
[0058] Each of the outer skins 32, 33 has the main body portions 320, 330 adhered to the front and rear surfaces of the core material 31 and integrated with the core material 31.
[0059] Panel 3 further includes packings 34 attached to each of the wall portions 321, 322, 323, and 324. In FIG. 5, the illustration of the packing 34 is omitted. The packing 34 includes a plurality of linear packings 340 and a plurality of L-shaped corner packings (not shown). As shown in FIGS. 6A, 6B, and 7, the linear packing 340 is attached to the central portion in the front-rear direction of the upper surface of the upper wall portion 321, the central portion in the front-rear direction of the lower surface of the lower wall portion 322, and the rear ends of the flat plate portions 323a and 324a of the left and right side wall portions 323 and 324, respectively. The packing 340 has a cross-section orthogonal to the longitudinal direction that is a hollow semi-circular shape. The corner packing is attached to the corner portion formed by two adjacent wall portions among the wall portions 321, 322, 323, and 324. The corner packing is an L-shaped solid block. The packing 34 is provided in a rectangular frame shape in a front view so as to surround the panel 3 over the entire circumference. The packing 34 is made of, for example, synthetic rubber.
[0060] As shown in FIGS. 5 and 7, the panel 3 further includes a lower attachment member 35 fixed to the lower end portion of the rear surface of the panel 3 and used for attachment to the horizontal member 2, and an upper attachment member 36 fixed to the upper end portion of the rear surface of the panel 3 and used for attachment to another horizontal member 2.
[0061] The lower attachment member 35 includes three panel fixing plates 35a having an L-shaped side view fixed to the lower end portion of the rear surface of the panel 3, and two attachment plates 35b having a substantially Z-shaped side view fixed to the two panel fixing plates 35a at the left and right ends of the three panel fixing plates 35a by bolts 37. In this embodiment, the bolt 37 is a bolt that can be fastened from one side.
[0062] The three panel fixing plates 35a are arranged at intervals in the left - right direction. Each of the three panel fixing plates 35a has a vertical piece 350 parallel to the rear surface of the panel 3, and a horizontal piece 351 extending forward from the lower end of the vertical piece 350 and parallel to the lower surface of the panel 3. The vertical piece 350 is fixed to the lower end of the main body portion 330 of the second outer skin 33 of the panel 3 with a fixture such as a screw, and the front end portion of the horizontal piece 351 is fixed to the lower wall portion 322 of the first outer skin 32 of the panel 3 with a fixture such as a screw.
[0063] To the upper part of the vertical pieces 350 of the two panel fixing plates 35a at the left end and the right end, the upper part of the mounting plate 35b is fixed with bolts 37. Between the lower part of the vertical piece 350 and the lower part of the mounting plate 35b, an insertion groove 38 into which the vertical plate portion 20 of the horizontal cross - member 2 can be inserted is formed. The width of the insertion groove 38 can be adjusted by the screwing condition of the bolt 37. By screwing the bolt 37 all the way, the mounting plate 35b can be pressed against the vertical plate portion 20.
[0064] In this embodiment, any one of the three panel fixing plates 35a constitutes an accessory part 30 against which the pressing portion 7 of the panel position adjusting jig 1 is applied.
[0065] The upper mounting member 36 is composed of two L - shaped panel fixing plates 36a in side view fixed to the upper end portion of the rear surface of the panel 3, and two rectangular plate - shaped mounting plates 36b fixed to each of the two panel fixing plates 36a with bolts 39. In this embodiment, the bolt 39 is a bolt that can be fastened from one side.
[0066] The two panel fixing plates 36a are arranged at intervals in the left - right direction. The positions of the two panel fixing plates 36a in the left - right direction are the same as those of the two panel fixing plates 35a located at both the left and right ends among the three panel fixing plates 35a. Each of the two panel fixing plates 36a has a vertical piece 360 parallel to the rear surface of the panel 3, and a horizontal piece 361 extending forward from the upper end of the vertical piece 360 and parallel to the upper surface of the panel 3. The vertical piece 360 is fixed to the upper end of the main body portion 330 of the second outer skin 33 of the panel 3 by a fixing tool such as a screw, and the front end of the horizontal piece 361 is fixed to the upper wall portion 321 of the first outer skin 32 of the panel 3 by a fixing tool such as a screw. The lower part of the mounting plate 36b is fixed to the vertical piece 360 of each of the two panel fixing plates 36a by bolts 39.
[0067] The panel 3 is slidably supported in the left - right direction by the cross - member 2 by inserting the vertical plate portion 20 of the cross - member 2 into the insertion groove 38 between the two mounting plates 35b and the two panel fixing plates 35a facing them, and hooking the two mounting plates 35b on the vertical plate portion 20. At this time, the bolt 37 is in a temporarily tightened state so that the mounting plate 35b does not come off from the panel fixing plate 35a.
[0068] 2 - 3. Cross - member As shown in FIG. 9, the cross - member 2 forms a part of the structural frame. In this embodiment, it is an L - shaped angle member in side view. The cross - member 2 is made of steel. The cross - member 2 has a vertical plate portion 20 and a horizontal plate portion 21 extending rearward from the lower end of the vertical plate portion 20. The thickness (length in the front - rear direction) of the vertical plate portion 20 is, for example, less than 10 mm, and preferably about 6 - 9 mm.
[0069] The structural frame includes a plurality of cross - members 2 arranged vertically. Each of the plurality of cross - members 2 is attached to the base 10 that constitutes the floor or ceiling of the building . Each of the plurality of cross - members 2 may be fixed to a beam or may be fixed by spanning and fixing to a plurality of columns.
[0070] A plurality of horizontally extending members 2 arranged vertically are positioned at a distance in the vertical direction, approximately the same as the distance between the upper and lower mounting members 35 and 36 attached to the panel 3. Among the two horizontally extending members 2 arranged vertically, the upper mounting member 36 of the panel 3 is attached to the horizontally extending member 2 located on the upper side, and the lower mounting member 35 of the panel 3 is attached to the horizontally extending member 2 located on the lower side.
[0071] On the front surface of the portion of the vertical plate portion 20 of each horizontally extending member 2 corresponding to the panel fixing plate 35a located at the center in the left - right direction of the lower mounting member 35 of the panel 3, a receiving member 22 in an L - shape in side view that supports the panel fixing plate 35a from below is fixed by welding or the like.
[0072] 3. Panel Position Adjustment Method Subsequently, an example of a panel position adjustment method for adjusting the position of the panel 3 using the above - described panel position adjustment jig 1 will be described. Hereinafter, as shown in FIG. 8, a method for adjusting the position of the panel 3 on the side (right side) of a fixed panel 9 whose position is fixed with respect to a structural frame (the horizontally extending member 2 in this embodiment) will be described. The fixed panel 9 is a sandwich panel having the same structure as the panel 3 in this embodiment.
[0073] First, the panel 3 is arranged on the side (right side) of the fixed panel 9 fixed to the horizontally extending member 2. At this time, the two mounting plates 35b at the lower end of the panel 3 are hooked on the vertical plate portion 20 of the horizontally extending member 2. The mounting plates 35b are temporarily fixed to the panel fixing plate 35a with bolts 37 so that the panel 3 can slide in the longitudinal direction of the horizontally extending member 2. The panel 3 is arranged so that the packing 34 on the left side surface of the panel 3 abuts against the packing 34 on the right side surface of the fixed panel 9. A fireproof joint material 11 is sandwiched between the fixed panel 9 and the panel 3. Note that the position adjustment of the panel 3 is performed in a state where it is lifted by a lifting means such as a crane.
[0074] Next, on the side (right side) of the panel fixing plate 35a at the right end of the panel 3, insert the vertical plate portion 20 of the cross member 2 into the insertion groove 50 of the hook portion 5 of the panel position adjusting jig 1, and lock the hook portion 5 to the vertical plate portion 20. At this time, also insert the vertical plate portion 20 of the cross member 2 into the locking groove 70 of the pressing portion 7 of the panel position adjusting jig 1, and lock the pressing portion 7 to the vertical plate portion 20. At this time, also arrange the second pressing surface 741 of the pressing portion 7 to face or abut against the right side surface of the panel fixing plate 35a at the right end of the panel 3.
[0075] Next, rotate the operation lever 61 of the fixing operation portion 6 clockwise as viewed from the rear around the fixing bolt 60, press the tip of the fixing bolt 60 of the fixing operation portion 6 against the vertical plate portion 20, and fix the hook portion 5 to the vertical plate portion 20.
[0076] Next, rotate the operation portion 800 of the first operation portion 80 of the slide operation portion 8 in the direction approaching the hook portion 5, and slide the pressing portion 7 in one direction (leftward) in the longitudinal direction of the jig body 4. Thereby, the panel fixing plate 35a at the right end of the panel 3 can be pressed by the pressing portion 7 to slide the panel 3 leftward.
[0077] Next, when the joint width between the panel 3 and the fixed panel 9 reaches a predetermined length, stop the rotation operation of the slide operation portion 8. In the present embodiment, by adjusting the position of the panel 3 with the panel position adjusting jig 1 as described above, the joint width between the panel 3 and the fixed panel 9 can be adjusted to a predetermined length.
[0078] When the panel 3 has moved to a desired position, fix the panel 3 to the cross member 2. Specifically, fix the two mounting plates 36b of the upper mounting member 36 of the panel 3 to the vertical plate portion 20 of the upper cross member 2 by appropriate means such as welding.
[0079] Next, fully tighten the two bolts 37 of the lower mounting member 35 of the panel 3 to press the two mounting plates 35b against the vertical plate portion 20 of the cross member 2. At this time, the panel fixing plate 35a located at the center in the left - right direction at the lower end of the panel 3 is placed on the receiving member 22 fixed to the vertical plate portion 20 of the cross member 2, and the self - weight of the panel 3 is supported by the receiving member 22. Note that the panel fixing plate 35a is not fixed to the receiving member 22 by welding or the like.
[0080] When another panel 3 is already installed below the panel 3, the vertical plate portion 20 of the cross member 2 and the mounting plate 36b of the other panel 3 are sandwiched between the two mounting plates 35b of the panel 3 and the panel fixing plate 35a facing them.
[0081] By doing the above, the panel 3 is fixed to the upper and lower two cross members 2.
[0082] After the panel 3 is fixed to the upper and lower two cross members 2, rotate the operation lever 61 of the fixing operation portion 6 of the panel position adjusting jig 1 to release the fixing of the hook portion 5 to the vertical plate portion 20, remove the hook portion 5 and the pressing portion 7 from the vertical plate portion 20, and remove the panel position adjusting jig 1 from the cross member 2.
[0083] By constructing as above, the panel 3 is fixed to the cross member 2 in a state where a predetermined joint width is formed with the fixed panel 9. By fixing a plurality of panels 3 to the cross member 2 by the above construction method, for example, the wall structure shown in FIG. 9 can be formed.
[0084] 4. Operational effects As described above, for the panel position adjusting jig 1 of the present embodiment, by operating the fixing operation portion 6 with the hooking portion 5 locked to the horizontal member 2 on the side of the panel fixing plate 35a (accessory 30) of the panel 3 slidably locked to the horizontal member 2, the hooking portion 5 can be fixed to the horizontal member 2. Thereafter, by operating the slide operation portion 8, the pressing portion 7 is slid and moved, and the accessory 30 of the panel 3 is pressed by the pressing portion 7 to slide and move the panel 3, and the position of the panel 3 can be adjusted.
[0085] As described above, in the panel position adjusting jig 1 of the present embodiment, since the pressing portion 7 can be applied to the accessory 30 to slide and move the panel 3, it is possible to suppress the occurrence of scratches on the panel 3 (especially the outer skins 32, 33).
[0086] Further, in the panel position adjusting jig 1 of the present embodiment, since the slide operation portion 8 has the first operation portion 80 and the second operation portion 81, the position of the pressing portion 7 can be appropriately changed, and the position adjustment of the panel 3 is easy to perform.
[0087] Further, in the panel position adjusting jig 1 of the present embodiment, since the pressing portion 7 can be moved with the vertical plate portion 20 inserted into the locking groove 70 of the pressing portion 7, the front and rear positions of the pressing portion 7 during movement are likely to be stable, and it is easy to apply the pressing portion 7 to the side surface of the accessory 30 of the panel 3.
[0088] Further, in the panel position adjusting jig 1 of the present embodiment, since the operation portions 80, 81 of the slide operation portion 8 have nut-shaped operation portions 800, 810, the position adjustment of the pressing portion 7 can be performed steplessly, and the position adjustment of the panel 3 is easy to perform.
[0089] Further, in the panel position adjusting jig 1 of the present embodiment, since the nut-shaped operation portions 800, 810 are located at least away from the hooking portion 5 by the lengths of the cylindrical portions 801, 811, the rotation operation of the operation portions 800, 810 is easy to perform.
[0090] In addition, in the panel position adjusting jig 1 of the present embodiment, since the jig body 4, the hooking portion 5, the slide operation portion 8, and the pressing portion 7 are accommodated within a predetermined width in the front-rear direction, they are provided compactly in the front-rear direction.
[0091] 5. Modification A modification of the panel position adjusting jig 1 and the panel position adjusting method of the present embodiment described above will be described.
[0092] The panel position adjusting method may be such that, as in the modification shown in FIG. 10, the jig body 4 is arranged at a position facing the joint between the panel 3 and the fixed panel 9 to adjust the position of the panel 3. In this modification, the panel position adjusting jig 1 with the hooking portion 5 and the pressing portion 7 arranged in reverse left and right is used to adjust the position of the panel 3. The pressing portion 7 is fixed to the right end portion of the jig body 4, and the hooking portion 5 is attached to the left side portion of the jig body 4.
[0093] In this modification, the panel position adjusting jig 1 arranges the first pressing surface 740 of the pressing portion 7 to face the right side surface of the panel fixing plate 35a at the left end of the panel 3, and rotates the operation portion 810 of the second operation portion 81 of the slide operation portion 8 in a direction approaching the hooking portion 5 to slide the pressing portion 7 in one direction (leftward) in the longitudinal direction of the jig body 4. Thereby, the panel fixing plate 35a at the left end of the panel 3 can be pressed by the pressing portion 7 to slide the panel 3 leftward.
[0094] In the panel position adjusting method of the modification, since the panel position adjusting jig 1 can be operated at a position facing the joint between the panel 3 and the fixed panel 9, it is easy to perform the adjustment with the joint width set to a predetermined length.
[0095] In addition, the panel position adjusting jig 1 is not limited to the methods shown in FIGS. 8 and 10, and may be used in other methods. The pressing portion 7 of the panel position adjusting jig 1 may press the central panel fixing plate 35a among the three panel fixing plates 35a. Also, the panel position adjusting jig 1 can appropriately distinguish between the first pressing surface 740 and the second pressing surface 741 according to the direction in which the panel 3 is to be moved.
[0096] Further, the panel position adjusting jig 1 is not limited to adjusting the joint width between the panel 3 and the fixed panel 9, and may adjust the position of the panel 3 for other uses.
[0097] The accessory part 30 of the panel 3 is not limited to any of the three panel fixing plates 35a at the lower end of the panel 3, and may be any of the two panel fixing plates 36a at the upper end of the panel 3, or may be other parts fixed to the panel 3.
[0098] The jig body 4 is not limited to the rod-shaped member 40 having the screw groove 400 on the outer peripheral surface. For example, the jig body 4 may be a rod-shaped member without the screw groove 400, and may be a member that can slide relative to the hook part 5 fixed to the horizontal member 2 as long as it can slide.
[0099] The slide operation part 8 only needs to be configured to be able to slide the pressing part 7 in the longitudinal direction of the horizontal member 2, and is not limited to the structure shown in FIG. 1 etc. For example, the slide operation part 8 is not limited to sliding while rotating, and may slide without rotating.
[0100] Further, the slide operation part 8 may have only one of the first operation part 80 and the second operation part 81.
[0101] Further, each of the operation parts 80, 81 may have only the operation parts 800, 810 among the operation parts 800, 810 and the cylindrical parts 801, 811.
[0102] Further, each of the operation parts 80, 81 may be provided such that the operation parts 800, 810 and the cylindrical parts 801, 811 are integrally provided instead of separately.
[0103] Further, the pressing part 7 does not necessarily have the locking groove 70, and only needs to be configured to be able to press against the accessory part 30 of the panel 3.
[0104] Further, the panel 3 is not limited to the sandwich panel having the structure shown in FIGS. 5 to 7. The panel 3 is not limited to the sandwich panel having a metal outer skin, and may be a ceramic panel, a metal siding material, or a wooden panel, and is not particularly limited.
[0105] The fixed panel 9 may be a panel having a shape and size different from those of the panel 3. Further, the fixed panel 9 may be fixed to a structural body different from the cross member 2 on which the panel 3 is hooked.
[0106] The cross member 2 is not limited to an L-shaped angle member in side view, and may be composed of only the vertical plate portion 20.
[0107] Further, the fixing operation portion 6 only needs to be configured to be able to fix the hooking portion 5 to the cross member 2, and is not limited to the structure shown in FIG. 1 or the like. For example, the fixing operation portion 6 does not need to have the operation lever 61, and may be composed of only the fixing bolt 60. In this case, the head portion 63 of the fixing bolt 60 is rotated by a tool such as a power tool or a wrench, whereby the hooking portion 5 can be fixed to and released from the cross member 2.
[0108] (Second Embodiment) 1. Details Next, the panel position adjusting jig 1 of the second embodiment will be described with reference to FIG. 11. Since the basic configuration and construction method of the panel position adjusting jig 1 of the present embodiment are common to those of the first embodiment, descriptions overlapping with those of the first embodiment are denoted by the same reference numerals in the drawings and will be omitted.
[0109] The panel position adjusting jig 1 of the present embodiment is configured such that the slide operation portion 8 is composed of one operation portion (specifically, the second operation portion 81). The slide operation portion 8 is rotatably attached to a portion of the jig body 4 on the side opposite to the pressing portion 7 with respect to the hooking portion 5. The slide operation portion 8 of the present embodiment does not include the first operation portion 80 (see FIG. 1).
[0110] In the panel position adjusting jig 1 of the present embodiment, the operation portion 810 of the slide operation portion 8 is rotated in the direction approaching the hooking portion 5 (left side), so that the operation portion 810, the cylindrical portion 811, and the hooking portion 5 are in contact with each other. From this state, by further rotating the operation portion 810 in the same direction, the jig body 4 and the pressing portion 7 can be moved to the right by the rotation of the operation portion 810. That is, by rotating the slide operation portion 8, the pressing portion 7 can be moved in the direction approaching the hooking portion 5 (right side) in the longitudinal direction of the jig body 4, and the panel 3 can be moved to the right.
[0111] Compared with the panel position adjusting jig 1 of the first embodiment, the panel position adjusting jig 1 of the present embodiment described above has fewer parts and is easier to manufacture. Further, in the position adjusting jig 1 of the present embodiment, since the slide operation portion 8 is attached to the portion of the jig body 4 on the side opposite to the pressing portion 7 with respect to the hooking portion 5 (one end portion in the longitudinal direction of the jig body 4), it is easy to rotate the slide operation portion 8 with a tool such as a ratchet wrench.
[0112] 2. Modification The panel position adjusting jig 1 of the second embodiment described above can also be appropriately combined with the modification of the panel position adjusting jig 1 of the first embodiment described above. Further, the following modifications can be appropriately combined.
[0113] The thread groove 400 on the outer peripheral surface of the jig body 4 may be threaded in the direction opposite to that of the present embodiment. In this case, when the operation portion 810 of the slide operation portion 8 is rotated in the direction approaching the hooking portion 5 (left side), the jig body 4 and the pressing portion 7 can be moved to the left. That is, by rotating the second operation portion 81, the pressing portion 7 can be moved in the direction away from the hooking portion 5 (left side) in the longitudinal direction of the jig body 4, and the panel 3 can be moved to the left.
[0114] Also, as in the modification shown in FIG. 12, the arrangement of the pressing portion 7 and the hooking portion 5 in the jig body 4 may be reversed left and right. In this modification, the pressing portion 7 is fixed to the right end portion of the jig body 4, and the hooking portion 5 and the slide operation portion 8 are attached to the left portion of the jig body 4.
[0115] In the panel position adjusting jig 1 of this modification, by rotating the operation portion 810 of the slide operation portion 8 in the direction approaching the hooking portion 5 (right side), the jig body 4 and the pressing portion 7 can be moved leftward, and the panel 3 can be moved leftward.
[0116] Further, the panel position adjusting jig 1 has two types: one in which the pressing portion 7 is fixed to the left end portion of the jig body 4 (the jig body 4 and the pressing portion 7 of the second embodiment), and the other in which the pressing portion 7 is fixed to the right end portion of the jig body 4 (the jig body 4 and the pressing portion 7 of the modification). One selected from these two may be provided with the hooking portion 5, the fixing operation portion 6, and the slide operation portion 8. In this case, the structure of the panel position adjusting jig 1 can be changed according to the usage conditions.
[0117] (Summary) As in the first and second embodiments and their modifications described above, the panel position adjusting jig (1) of the first aspect has the following configuration.
[0118] That is, the panel position adjusting jig (1) of the first aspect is a panel position adjusting jig (1) for adjusting the position of a panel (3) that is slidably locked in the longitudinal direction to a cross member (2) constituting a part of the structural frame and to which an accessory part (30) is fixed. The panel position adjusting jig (1) includes a jig body (4) extending in one direction, a hooking portion (5) provided at a part of the longitudinal direction of the jig body (4) and hooked on the cross member (2), a fixing operation portion (6) capable of fixing and releasing the hooking portion (5) with respect to the cross member (2), a pressing portion (7) provided at another part of the longitudinal direction of the jig body (4) and applied to the accessory part (30) of the panel (3), and a slide operation portion (8) capable of sliding the pressing portion (7) in the longitudinal direction of the jig body (4).
[0119] In the panel position adjusting jig (1) of the first aspect having the above configuration, by operating the fixing operation portion (6) while the hooking portion (5) is locked to the cross member (2) on the side of the accessory part (30) of the panel (3) slidably locked to the cross member (2), the hooking portion (5) can be fixed to the cross member (2). Thereafter, in the panel position adjusting jig (1) of the first aspect, by operating the slide operation portion (8), the pressing portion (7) is slid and moved, and the accessory part (30) of the panel (3) is pressed by the pressing portion (7) to slide-move the panel (3). Thus, in the panel position adjusting jig (1) of the first aspect, since the panel (3) can be slid and moved by bringing the pressing portion (7) into contact with the accessory part (30) of the panel (3), it is possible to suppress the panel (3) from being scratched.
[0120] Also, as in the above-described first and second embodiments and their modifications, the panel position adjusting jig (1) of the second aspect additionally includes the following configuration in addition to the configuration of the panel position adjusting jig (1) of the first aspect.
[0121] That is, in the panel position adjusting jig (1) of the second aspect, the jig body (4) is a rod-shaped member (40) having a thread groove (400) on the outer peripheral surface. The pressing portion (7) is fixed to a part of the jig body (4) in the longitudinal direction. The hooking portion (5) is attached to another part of the jig body (4) in the longitudinal direction so as to be slidable in the longitudinal direction. The slide operation portion (8) is attached to still another part of the jig body (4) in the longitudinal direction so as to be rotatable in the longitudinal direction.
[0122] In the panel position adjusting jig (1) of the second aspect having the above configuration, the jig body (4) can be formed with a simple structure such as a rod-shaped member (40) having a thread groove (400) on the outer peripheral surface, and the pressing portion (7) can be moved by a simple operation such as rotating the slide operation portion (8).
[0123] Also, like the first and second embodiments and their modified examples described above, the panel position adjusting jig (1) of the third aspect additionally includes the following configuration in addition to the configuration of the panel position adjusting jig (1) of the second aspect.
[0124] That is, in the panel position adjusting jig (1) of the third aspect, the slide operation portion (8) has a nut-shaped operation portion (810) and a cylindrical portion (811) located closer to the hooking portion (5) side than the operation portion (810).
[0125] In the panel position adjusting jig (1) of the fourth aspect having the above configuration, since the nut-shaped operation portion (810) can be rotated at a position away from the hooking portion (5), the rotation operation of the slide operation portion (8) is easy. Further, in the panel position adjusting jig (1) of the fourth aspect, since the operation portion (810) is nut-shaped, the pressing portion (7) can be moved steplessly, and fine adjustment of the position of the panel (3) is easy.
[0126] Also, like the first and second embodiments and their modified examples described above, the panel position adjusting jig (1) of the fourth aspect additionally includes the following configuration in addition to the configuration of the panel position adjusting jig (1) of any one of the first to third aspects.
[0127] That is, in the panel position adjusting jig (1) of the fourth aspect, the pressing portion (7) has a locking groove (70) into which a part of the longitudinal direction of the horizontal beam (2) can be inserted.
[0128] In the panel position adjusting jig (1) of the fourth aspect having the above configuration, since the pressing portion (7) can be moved with the horizontal beam (2) inserted into the locking groove (70) of the pressing portion (7), it is easy to suppress the positional deviation of the pressing portion (7) during movement. Therefore, in the panel position adjusting jig (1) of the fifth aspect, it is easy to press the accessory (30) of the panel (3) by the pressing portion (7).
[0129] Also, like the above-described first and second embodiments and their modified examples, the panel position adjustment method of the fifth aspect is a panel position adjustment method for adjusting the position of the panel (3) using the panel position adjustment jig (1) of any one of the first to fourth aspects. In the panel position adjustment method of the fifth aspect, the hanging portion (5) is hooked on the horizontal member (2), the fixing operation portion (6) is operated to fix the hanging portion (5) to the horizontal member (2), and the sliding operation portion (8) is operated to slide the pressing portion (7) in the longitudinal direction of the jig body (4), so that the pressing portion (7) presses the accessory part (30) of the panel (3) to slide the panel (3).
[0130] In the panel position adjustment jig (1) of the fifth aspect having the above configuration, since the pressing portion (7) can press the accessory part (30) of the panel (3) to move the panel (3), it is easy to suppress the panel (3) from being scratched.
[0131] As described above, the present disclosure has been described based on the embodiments shown in the accompanying drawings. However, the present disclosure is not limited to the above-described embodiments, and appropriate design changes can be made within the intended scope of the present disclosure.
Description of Reference Numerals
[0132] 1 Panel position adjustment jig 2 Horizontal member 3 Panel 30 Accessory part 4 Jig body 40 Rod-shaped member 400 Thread groove 5 Hanging portion 6 Fixing operation portion 7 Pressing portion 70 Locking groove 8 Sliding operation portion 810 Operation portion 811 Cylindrical portion
Claims
1. A panel position adjusting jig for adjusting the position of a panel that is slidably locked in the longitudinal direction to a cross member forming part of a structural body and to which accessories are fixed, comprising: A jig body extending in one direction; A hook portion provided on a part of the longitudinal direction of the jig body and hooked on the cross member; A fixing operation portion capable of fixing and releasing the hook portion to and from the cross member; A pressing portion provided on another part of the longitudinal direction of the jig body and applied to the accessories of the panel; A slide operation portion capable of sliding the pressing portion in the longitudinal direction of the jig body. Panel position adjusting jig.
2. The jig body is a rod-shaped member having a screw groove on its outer peripheral surface, The pressing portion is fixed to a part of the longitudinal direction of the jig body, The hook portion is slidably attached in the longitudinal direction to another part of the longitudinal direction of the jig body, The slide operation portion is rotatably attached in the longitudinal direction to still another part of the longitudinal direction of the jig body. The panel position adjusting jig according to Claim 1.
3. The slide operation portion has a nut-shaped operation portion and a cylindrical portion located on the hook portion side with respect to the operation portion. The panel position adjusting jig according to Claim 2.
4. The pressing portion has a locking groove into which a part of the longitudinal direction of the cross member can be inserted. The panel position adjusting jig according to any one of Claims 1 to 3.
5. A panel position adjusting method for adjusting the position of the panel using the panel position adjusting jig according to any one of Claims 1 to 4, comprising: Hooking the hook portion on the cross member; Operating the fixing operation portion to fix the hook portion to the cross member; Operating the slide operation portion to slide the pressing portion in the longitudinal direction of the jig body, thereby pressing the accessories of the panel with the pressing portion to slide the panel and adjusting the position of the panel. Panel position adjusting method.
Citation Information
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