Building structures
The shielding door system addresses space inefficiencies and rail interference by tilting open and integrating rails, enabling smooth object movement without door pockets.
Patent Information
- Application Number
- JP2023020651
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-02-14
- Publication Date
- 2026-01-22
- Estimated Expiration
- 2043-02-14
AI Technical Summary
Conventional shielding doors require large openings and additional space for door pockets, and their installation interferes with rails when opened, complicating the movement of objects between rooms.
A shielding door system with a door body, door-side rail, and hinge, where the hinge is positioned to avoid radiation exposure and allows the door to tilt open, integrating the door-side rail with building-side rails for smooth movement without needing door pockets.
Prevents wasted space and allows seamless movement of objects by integrating the door-side rail with building-side rails, simplifying the operation and reducing interference.
Smart Images

Figure 0007804601000001 
Figure 0007804601000002 
Figure 0007804601000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a building structure equipped with a screening door. [Background technology]
[0002] In building structures with rooms under high radiation levels, such as nuclear power plants and factories, maintenance must be performed by remotely moving a lifting machine to another room in order to reduce worker exposure to radiation. In this case, a shielding door is installed at the boundary between the room in the high-radiation area and the maintenance room. Conventional shielding door technology includes, for example, that described in Patent Document 1.
[0003] Patent Document 1 describes a shielding door that can be opened and closed via hinges in a concrete opening. Patent Document 1 also describes a technology in which the door is made from a thick, single piece of dirty iron plate, and the side of the door on the opening side is formed with multiple inclined surfaces at different angles, while the side of the opening corresponding to the inclined surfaces is formed with inclined surfaces parallel to the inclined surfaces.
[0004] In recent years, sliding type shielding doors that slide horizontally have been used as shielding doors. [Prior art documents] [Patent documents]
[0005] [Patent Document 1] Japanese Patent Application Publication No. 10-132996 Summary of the Invention [Problem to be solved by the invention]
[0006] However, in order to move a moving object from the first room to the second room, the opening formed at the boundary between the first and second rooms must be large enough for the moving object to pass through, and the size of the screening door must also correspond to the size of the opening. Therefore, when a sliding screening door is used, it is necessary to secure space above and below or to the left and right of the opening when the screening door is open, i.e., door pockets, which results in wasted space in the building structure.
[0007] Furthermore, in order to move the moving object from the first room to the second room, it is necessary to install rails along which the moving object moves. In the technology described in Patent Document 1, the rails interfere with the shielding door when the shielding door is opened, so the rails must be installed and removed every time the shielding door is opened or closed, making the work of moving the moving object extremely complicated.
[0008] The object of the present invention is to take the above problems into consideration and to provide a system that can suppress the generation of wasted space and allow the moving body to move smoothly. R The purpose is to provide a building structure. [Means for solving the problem]
[0009] To solve the above problems and achieve the object, a screening door comprises a door body, a door-side rail, and a hinge. The door body closes an opening that connects a first room and a second room in an architectural structure in an openable and closable manner. The door-side rail is provided on one side of the door body that faces the first room when closed. One end of the hinge is attached to a frame provided at the bottom end of the opening, and the other end is attached to the door body.
[0010] The building structure also includes a first room in which a first building-side rail is installed, a second room adjacent to the first room in which a second building-side rail is installed, and a shielding door that can be opened and closed to close an opening that connects the first room to the second room.The shielding door is the same as the above-mentioned shielding door. [Effects of the Invention]
[0011] The above configuration of The architectural structure can prevent the occurrence of wasted space and allows moving objects to move smoothly. [Brief explanation of the drawings]
[0012] [Figure 1] 1 is a plan view showing an architectural structure according to a first embodiment. [Figure 2] FIG. 2 is a cross-sectional view taken along line AA in FIG. [Figure 3] FIG. 2 is a cross-sectional view showing the shielding door according to the first embodiment. [Figure 4] FIG. 2 is a view of the shielding door according to the first embodiment as seen from the first room side. [Figure 5] 1 is a diagram showing a state in which a shielding door in an architectural structure according to a first embodiment is open. FIG. [Figure 6] FIG. 2 is a diagram showing a state in which a lifting machine has moved in the architectural structure according to the first embodiment. [Figure 7] 1 is a diagram showing a state in which a shielding door is closed in an architectural structure according to a first embodiment. FIG. [Figure 8] 10 is an enlarged cross-sectional view showing a shielding door in an architectural structure according to a second embodiment. FIG. [Figure 9] FIG. 10 is a view of the shielding door in the architectural structure according to the second embodiment, viewed from the first room side. [Figure 10] FIG. 10 is a cross-sectional view showing a shielding door according to a third embodiment. [Figure 11] FIG. 10 is a diagram showing a state in which the shielding door according to the third embodiment is being opened. [Figure 12] FIG. 11 is a diagram showing a state in which the shielding door according to the third embodiment is open. [Figure 13] FIG. 10 is an enlarged cross-sectional view showing a shielding door in an architectural structure according to a fourth embodiment. [Figure 14] FIG. 10 is a view of the shielding door in the architectural structure according to the fourth embodiment, viewed from the first room side. [Figure 15]FIG. 13 is a diagram showing a state in which the shielding door according to the fifth embodiment is being opened. [Figure 16] FIG. 13 is a diagram showing a state in which the shielding door according to the fifth embodiment is open. DETAILED DESCRIPTION OF THE INVENTION
[0013] Hereinafter, an embodiment of the architectural structure and the shielding door will be described. Note that the same reference numerals are used to designate common members in each drawing.
[0014] 1. First embodiment 1-1. Example of architectural structure First, an architectural structure according to a first embodiment (hereinafter referred to as "this example") will be described with reference to FIGS. Fig. 1 is a plan view showing an architectural structure, and Fig. 2 is a cross-sectional view taken along line AA shown in Fig. 1.
[0015] 1 and 2, a nuclear power plant is an example of an example of the architectural structure 100. The architectural structure 100 has a first room 101, a second room 102 adjacent to the first room 101, and a shielding door 1. The architectural structure 100 also has a floor 108 and a ceiling 109 made of reinforced concrete.
[0016] An opening 110 is formed at the boundary between a first room 101 that indicates a high-dose area and a second room 102 that indicates a maintenance room. A shielding door 1 is disposed to close the opening 110 in an openable and closable manner.
[0017] A first building-side rail 103 is installed in the first room 101. The first building-side rail 103 is installed at a predetermined height from the floor 108. The first building-side rail 103 extends from the first room 101 to an opening 110. A lifting machine M1, which is an example of a moving body, is movably installed on the first building-side rail 103.
[0018] A second building-side rail 104 is installed in the second room 102. The second building-side rail 104 is installed at a predetermined height from the floor 108, matching the installation height of the first building-side rail 103. The second building-side rail 104 is disposed at a predetermined distance from the opening 110. The distance between the second building-side rail 104 and the opening 110 is the length of a shielding door 1, which will be described later. This prevents interference between the shielding door 1 and the second building-side rail 104 when the shielding door 1, which will be described later, is opened. The first building-side rail 103 and the second building-side rail 104 are configured to be connectable to a door-side rail 3 provided on the shielding door 1, which will be described later.
[0019] An opening 110 connecting the first room 101 and the second room 102 is formed to a size that allows a crane M1 to pass through. The opening 110 is formed at a predetermined height from the floor 108 in accordance with the installation height of the first building-side rail 103 and the second building-side rail 104. A frame 106 standing upright on the floor 108 is disposed at the lower end of the opening 110.
[0020] A skeleton 106 representing the door frame is made of a reinforced concrete structure, similar to the floor 108 and ceiling 109. A building-side fitting portion 107 is formed at the upper end of the skeleton 106. The building-side fitting portion 107 is a step portion that protrudes from the upper end of the skeleton 106. A shielding door 1 is attached to the skeleton 106 so that it can be opened and closed.
[0021] 1-2.Configuration of the shielding door Next, the configuration of the shielding door 1 will be described with reference to FIGS. FIG. 3 is a cross-sectional view showing the shielding door 1, and FIG. 4 is a view of the shielding door 1 as seen from the first room 101 side.
[0022] As shown in Figures 3 and 4, the shielding door 1 has a door body 2, a door side rail 3, and a hinge 6. The door body 2 is made of reinforced concrete or steel. The door body 2 is formed to a size and shape that will close the opening of the opening 110 of the architectural structure 100. When the shielding door 1 is closed, the upper end of the door body 2 is in contact with or close to the ceiling 109 of the architectural structure 100.
[0023] A door-side fitting portion 5 is formed at the lower end of the door body 2. The door-side fitting portion 5 is a stepped portion formed at the lower end of the door body 2. When the shielding door 1 is closed, the door-side fitting portion 5 fits into a building-side fitting portion 107 provided on the frame 106. This makes it possible to prevent radiation from leaking from the first room 101, which is a high-dose area, to the second room 102, which is a maintenance room, through the opening 110 when the shielding door 1 is closed.
[0024] When the shielding door 1 is closed, a door-side rail 3 is installed on one side of the door body 2 that faces the first room 101. When the shielding door 1 is closed, the door-side rail 3 extends from the lower end to the upper end on one side of the door body 2. When the shielding door 1 is opened, the door-side rail 3 is connected to the first building-side rail 103 and the second building-side rail 104. In this way, in the shielding door 1 of this example, the door-side rail 3 along which the lifting machine M1, which is a moving body, moves is provided integrally with the door body 2.
[0025] Furthermore, a hinge 6 is provided at the lower end of the door body 2. The hinge 6 is formed on the other side of the door body 2 opposite to the side on which the door-side rail 3 is installed, i.e., on the side facing the second room 102. One end of the hinge 6 is connected to the side of the frame 106 facing the second room 102. The other end of the hinge 6 is connected to the other side of the door body 2. In this way, by providing the hinge 6 on the other side opposite to the first room 101, which is a high-dose area, it is possible to prevent the hinge 6 from being exposed to radiation, and to suppress deterioration of the hinge 6, which is a moving part, due to radiation.
[0026] 1-3. Example of lifting machine movement Next, an example of the movement operation of the crane M1 in the building structure 100 equipped with the shielding door 1 having the above-described configuration will be described with reference to FIGS. Fig. 5 is a diagram showing a state in which the shielding door 1 is open, Fig. 6 is a diagram showing a state in which the crane M1 has moved, and Fig. 7 is a diagram showing a state in which the shielding door 1 is closed.
[0027] In the operation example shown below, an example will be described in which the lifting machine M1 is moved from the first room 101, which is a high-dose area, to the second room 102, which is a maintenance room, when maintenance of the lifting machine M1 is performed.
[0028] First, as shown in Fig. 5, the door body 2 of the shielding door 1 rotates approximately 90 degrees around the hinge 6. That is, the upper end of the door body 2 tilts down toward the second room 102. Furthermore, by opening the door body 2, the opening 110 connecting the first room 101 and the second room 102 is opened. Because the shielding door 1 can be opened by the weight of the door body 2, the drive mechanism for opening and closing the door body 2 can be made smaller.
[0029] The second building-side rail 104 provided in the second room 102 is installed so that it is spaced from the opening 110 by the length of the door body 2. This prevents interference between the second building-side rail 104 and the door body 2 when the door body 2 is open. The space provided in the second room 102 can be used as a work space when the door body 2 is closed.
[0030] As the door body 2 tilts toward the second room 102, the side of the door body 2 that faces the first room 101 when closed, i.e., the side on which the door-side rail 3 is provided, faces upward in the vertical direction. Then, as the door body 2 opens, the direction in which the door-side rail 3 extends faces from the first room 101 toward the second room 102. Furthermore, when the opening operation of the door body 2 is completed, one end of the door-side rail 3 is connected to the first building-side rail 103, and the other end of the door-side rail 3 is connected to the second building-side rail 104. As a result, the first building-side rail 103 and the second building-side rail 104 are connected via the door-side rail 3.
[0031] Because the door body 2 and the door-side rail 3 are integrally provided, the door-side rail 3 can be installed when the door body 2 is open. As a result, the lifting machine M1 can be easily moved, and can be moved smoothly. Furthermore, when the door body 2 is closed, the door-side rail 3 can also be easily removed.
[0032] When the connection work of the door-side rail 3 with the first building-side rail 103 and the second building-side rail 104 is completed, the lifting machine M1 moves from the first room 101 to the second room 102 along the first building-side rail 103, the door-side rail 3, and the second building-side rail 104, as shown in Fig. 6. When the lifting machine M1 has completed its movement to the second room 102, as shown in Fig. 7, the door body 2 of the shielding door 1 is rotated approximately 90 degrees around the hinge 6, and is placed upright so that one face of the door body 2 is approximately parallel to the vertical direction. As a result, the opening 110 is closed by the shielding door 1.
[0033] Since the opening 110 connecting the first room 101 and the second room 102 is closed by the shielding door 1, the worker can safely perform maintenance on the lifting machine M1 in the second room 102. By performing the steps described above, the movement operation of the lifting machine M1 is completed.
[0034] As described above, according to the shielding door 1 and architectural structure 100 of this example, by providing the door side rail 3 on the door main body 2, when the shielding door 1 is open, the door main body 2 can be used as a support for the lifting machine M1, which is a moving body. Furthermore, because the door main body 2 is opened by tilting toward the second room, there is no need to provide door pockets above, below, or to the left and right of the opening 110. As a result, according to the shielding door 1 and architectural structure 100 of this example, it is possible to prevent the creation of wasted space due to door pockets. Furthermore, as described above, when the door main body 2 is closed, the space provided in the second room 102 can be used as a work space.
[0035] 2. Second embodiment Next, an architectural structure according to a second embodiment will be described with reference to FIGS. Fig. 8 is an enlarged cross-sectional view of the shielding door in the architectural structure according to the second embodiment. Fig. 9 is a view of the shielding door in the architectural structure according to the second embodiment as seen from the first room side.
[0036] The architectural structure 100A according to the second embodiment differs from the architectural structure 100 according to the first embodiment in the configuration of the opening 110 in the door frame of the screening door 1. Therefore, parts common to the architectural structure 100 according to the first embodiment are given the same reference numerals and redundant explanations will be omitted.
[0037] 8 and 9, a ceiling 109 on the first room 101 side of the architectural structure 100A is provided with a protruding portion 112. The protruding portion 112 protrudes downward in the vertical direction from the ceiling 109. Therefore, the height of the ceiling 109 of the first room 101 is lower than the height of the ceiling 109 of the second room 102.
[0038] Furthermore, the height of the ceiling 109 of the second room 102, into which the door main body 2 falls when the shielding door 1 is open, is located higher than the upper end of the door main body 2. When the shielding door 1 is closed, a gap is formed between the upper end of the door main body 2 and the opening 110. This makes it possible to prevent the door main body 2 from interfering with the ceiling 109 when the shielding door 1 is open.
[0039] Furthermore, the lower end of the protruding portion 112 is located vertically lower than the upper end of the door body 2 when the shielding door 1 is closed. When the shielding door 1 is closed, the upper end of the door body 2 faces and comes into contact with the surface of the protruding portion 112 facing the second room 102. This makes it possible to prevent radiation from leaking from the first room 101 to the second room 102, even if a gap is present between the upper end of the door body 2 and the opening 110.
[0040] Other configurations are the same as those of the architectural structure 100 and the shielding door 1 according to the first embodiment, and therefore a description thereof will be omitted. The architectural structure 100A and the shielding door 1 having such a configuration can also obtain the same effects as those of the architectural structure 100 and the shielding door 1 according to the first embodiment described above.
[0041] 3. Third embodiment Next, an architectural structure and a shielding door according to a third embodiment will be described with reference to FIGS. Fig. 10 is a cross-sectional view showing the shielding door according to the third embodiment. Fig. 11 is a diagram showing the shielding door according to the third embodiment in the process of being opened. Fig. 12 is a diagram showing the shielding door according to the third embodiment in the opened state.
[0042] The architectural structure 100B and the shielding door 1B according to the third embodiment are the same as the architectural structure 100, 100A and the shielding door 1 according to the second embodiment, but with a counterweight. Therefore, the same reference numerals are used here for the parts common to the architectural structures 100, 100A and the shielding door 1 according to the first and second embodiments, and redundant explanations will be omitted.
[0043] As shown in Figs. 10 to 12, the shielding door 1B includes a door body 2, a door-side rail 3, and a hinge 6. The shielding door 1B also includes a counterweight 21, a rope 22, and a pulley 23. The pulley 23 is installed on the ceiling 109 of the first room 101. One end of the rope 22 is fixed to one surface of the door body 2 facing the first room 101. The other end of the rope 22 is provided with a counterweight 21. The rope 22 is wound around the pulley 23 installed on the ceiling 109. The counterweight 21 is set to a weight that balances with the door body 2.
[0044] Other configurations are the same as those of the architectural structure 100 and the shielding door 1 according to the first embodiment, and therefore a description thereof will be omitted. The architectural structure 100B and the shielding door 1B having such a configuration can also obtain the same effects as those of the architectural structure 100 and the shielding door 1 according to the first embodiment described above.
[0045] In addition, according to the shielding door 1B of the third embodiment, the counterweight 21 is connected to the door body 2 via a rope 22. This allows the counterweight 21 to reduce the driving force required for the opening and closing operation of the door body 2.
[0046] 4. Fourth embodiment Next, an architectural structure according to a fourth embodiment will be described with reference to FIGS. Fig. 13 is an enlarged cross-sectional view of the shielding door in the architectural structure according to the fourth embodiment. Fig. 14 is a view of the shielding door in the architectural structure according to the fourth embodiment as seen from the first room side.
[0047] The architectural structure 100C according to the fourth embodiment differs from the architectural structure 100 according to the first embodiment in the position where the hinge 6 of the screening door 1 is provided. Therefore, the same reference numerals are used for the parts common to the architectural structure 100 according to the first embodiment, and redundant explanations will be omitted.
[0048] As shown in Figures 13 and 14, a building frame 106C, which represents the lower end of the door frame in an architectural structure 100C according to the fourth embodiment, does not have a building-side fitting portion. The shielding door 1C includes a door body 2C, a door-side rail 3, and a hinge 6C. One end of the hinge 6C is installed at the upper end of the body 106C. The other end of the hinge 6C is installed on the surface of the door body 2C facing the second room 102. The other end of the hinge 6C is connected to the middle of the door body 2C in the up-down direction.
[0049] A door-side fitting portion 5C is formed at the lower end of the door main body 2C. The door-side fitting portion 5C protrudes downward in the vertical direction from the point where the hinge 6C is connected to the door main body 2C. When the shielding door 1 is closed, the door-side fitting portion 5C fits into the surface of the frame 106C facing the first room 101. This makes it possible to prevent radiation from leaking from the first room 101, which is a high-dose area, to the second room 102, which is a maintenance room, through the opening 110 when the shielding door 1 is closed, even if the hinge 6C is provided in the middle of the door main body 2C.
[0050] Furthermore, even if the hinge 6C is installed at the upper end of the frame 106C, which is the boundary between the first room 101 and the second room 102, the hinge 6C is covered by the door main body 2C and the door-side fitting part 5C. As a result, the hinge 6C can be prevented from being exposed to radiation, and deterioration of the hinge 6C, which is a movable part, due to radiation can be suppressed.
[0051] Other configurations are the same as those of the architectural structure 100 and the shielding door 1 according to the first embodiment, and therefore a description thereof will be omitted. The architectural structure 100C and the shielding door 1C having such a configuration can also obtain the same effects as those of the architectural structure 100 and the shielding door 1 according to the first embodiment described above.
[0052] 5. Fifth embodiment Next, an architectural structure according to a fifth embodiment will be described with reference to FIGS. Fig. 15 is an enlarged cross-sectional view of the shielding door in the architectural structure according to the fifth embodiment. Fig. 16 is a diagram showing the shielding door according to the fifth embodiment in an open state. Note that parts common to the architectural structure 100 according to the first embodiment are given the same reference numerals and redundant explanations will be omitted.
[0053] 15 and 16, an architectural structure 100D and a shielding door 1D according to the fifth embodiment are the architectural structure 100C and the shielding door 1C according to the fourth embodiment, with a counterweight 21 added. The shielding door 1D comprises a door main body 2D, a door-side rail 3, a door-side fitting portion 5D provided on the door main body 2D, and a hinge 6D. One end of the hinge 6D is installed at the upper end of a frame 106D, and the other end of the hinge 6D is installed at the middle of the door main body 2D.
[0054] The shielding door 1D also includes a counterweight 21, a rope 22, and a pulley 23 installed on the ceiling 109 of the first room 101. One end of the rope 22 is fixed to one surface of the door main body 2D facing the first room 101, and the other end of the rope 22 is connected to the counterweight 21. The rope 22 is then wound around the pulley 23 installed on the ceiling 109.
[0055] Other configurations are the same as those of the architectural structure 100 and the shielding door 1 according to the first embodiment, and therefore a description thereof will be omitted. The architectural structure 100D and the shielding door 1D having such a configuration can also obtain the same effects as those of the architectural structures 100, 100B, 100C and the shielding doors 1, 1B, 1C according to the first, third, and fourth embodiments described above.
[0056] The present invention is not limited to the embodiments described above and shown in the drawings, and various modifications can be made without departing from the spirit of the invention as set forth in the claims.
[0057] In the above-described embodiment, an example was described in which a lifting machine was used as the mobile body, but this is not limited to this, and any machine that performs work in the first room can be used, and various other mobile bodies can also be used.
[0058] Furthermore, although an example of application of a nuclear power plant to an architectural structure has been described, the present invention is not limited to this and can be applied to various other architectural structures, such as pharmaceutical factories and thermal power plants. Furthermore, while the first room is a high-dose area and the second room is a maintenance room, the first and second rooms are not limited to these. Various other architectural structures can be applied as long as the first and second rooms are connected by an opening that can be closed by a shielding door.
[0059] In this specification, the words "parallel" and "orthogonal" are used, but these do not mean only "parallel" and "orthogonal" in the strict sense, but also include "parallel" and "orthogonal" and may also mean a "substantially parallel" or "substantially orthogonal" state within a range in which the functions can be exerted. [Explanation of symbols]
[0060] DESCRIPTION OF SYMBOLS 1, 1B, 1C, 1D...Shielding door, 2, 2C, 2D...Door body, 3...Door side rail, 5, 5C, 5D...Door side fitting portion, 6, 6C, 6D...Hinge, 21...Counterweight, 22...Rope, 23...Pulley, 100, 100A, 100B, 100C, 100D...Building structure, 101...First room, 102...Second room, 103...First building side rail, 104...Second building side rail, 106, 106C, 106D...Frame, 107...Building side fitting portion, 108...Floor, 109...Ceiling, 110...Opening, 112...Extending portion, M1...Lifting machine (moving body)
Claims
1. A first room in a high-dose area in which a first rail formed at a predetermined height from the floor of the room is installed; a second room of a maintenance room adjacent to the first room and having a second rail formed at the predetermined height installed therein; a shielding door that can open and close and close an opening formed at the predetermined height that connects the first room and the second room; a frame that stands upright from the floor and has a step portion; The shielding door is a door body that closes the opening in an openable and closable manner; a door-side rail provided on one surface of the door body that faces the first room when closed; a step portion formed at a lower end portion of the door body; a hinge provided on one surface facing the second room, one end of which is attached to the frame and the other end of which is attached to the door body; Equipped with When the shielding door is closed, a step portion formed on the door body and a step portion of the frame are fitted together, When the shielding door is open, the door-side rail is connected to the first rail and the second rail. An architectural structure characterized by:
2. a protruding portion is provided on the ceiling of the first room, the protruding portion facing the upper end portion of the door body when closed; The ceiling of the second room is located above the upper end of the door body when closed, The ceiling height of the first room is lower than the ceiling height of the second room. The architectural structure according to claim 1.
3. A pulley installed in the first room; A rope wound around the pulley and having one end fixed to the door body; A counterweight provided at the other end of the rope. The architectural structure according to claim 1.
Citation Information
Patent Citations
JP1986154593U
Apparatus carrying-in / out device for atomic power plant
JP1992109195A
Shielding door
JP1998132996A
Disaster prevention door
JP2019218698A