Horizontal movement module for horizontally moving joinery.

JP7901934B1Active Publication Date: 2026-08-07CST CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
CST CO LTD
Filing Date
2025-11-04
Publication Date
2026-08-07

AI Technical Summary

Benefits of technology

【0040】 本発明によると、水平移動モジュールは、上部水平移動モジュール及び下部水平移動モジュールを含むことによって、建具の水平移動を上部と下部で安定的に誘発して案内する。

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Abstract

This invention provides a horizontal movement module for horizontally moving joinery that offers improved productivity, operational performance, and sealing performance while maintaining a simple structure. [Solution] A horizontal moving module for a horizontally moving joinery comprises: a moving bar equipped with a moving guide groove; a first plate on which the moving bar is placed; a second plate positioned on the opposite side of the moving bar with respect to the first plate and provided to move relative to the first plate in conjunction with the movement of the moving bar; and a roller module provided on the second plate, wherein the roller module is rotatable about a horizontal axis and includes a moving roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis; and a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis and provided to be in contact with a relative object on the side and prevents rotation of the second plate on the horizontal plane.
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Description

Technical Field

[0001] The present invention relates to a horizontal movement module for a horizontally movable fitting, and more particularly, to a horizontal movement module for a horizontally movable fitting having a simple structure while improving productivity, operating performance, and sealing performance.

Background Art

[0002] Patent Document 1 (Korean Patent Application Publication No. 10-2016-0033690) relates to an opening / closing system for a window or a door, and particularly to an apparatus for pressing a sliding door against a fixed door frame.

[0003] Here, a displacement device is presented that allows the door to move in parallel and perpendicular directions with respect to the door frame. The door has one or more moving wheels, and these moving wheels have protrusions.

[0004] A guide rail is installed on the fixed door frame, and a guide member that moves along the moving direction is installed on the door. This guide member has two grooves, one of which extends long in the moving direction, and the other is a groove having a locus that interacts with the protrusion.

[0005] The guide member is hinge-coupled to move perpendicular to the moving direction and includes a roller supported by a displaceable support portion. Through this structure, the door is closed in close contact with the door frame during sliding.

[0006] Particularly, when the door moves in one direction, there is a feature that clamping occurs between the door and the fixed door frame. At this time, a large number of guide members can also be used.

[0007] The window or door opening / closing system described in Patent Document 1 focuses on increasing the sealing force by pressing the door against the door frame together with sliding. However, in such a horizontal movement module, stability problems may occur when applied to an actual fitting system.

[0008] In particular, when the lower horizontal movement module moves horizontally or along the window frame, a phenomenon of swaying from side to side on the horizontal plane may occur.

[0009] This means that while the guide member and roller system described in Patent Document 1 may be effective in pressing the door in a perpendicular direction, it may be weak in providing stable support against various external forces and uneven load distributions that occur during horizontal movement.

[0010] When the lower moving module rotates horizontally from side to side (rotation around the Z-axis), it not only interferes with the smooth opening and closing operation of the window, but also prevents a secure seal with the door frame, potentially leading to a decrease in airtightness and thermal insulation performance. Furthermore, continuous rotation can accelerate wear on the parts, reducing durability.

[0011] Another problem relates to the curved shape of the moving guide groove, which creates the inconvenience of having to distinguish between left and right when assembling the horizontal moving module. Patent Document 1 describes a guide member groove having a curved trajectory in a specific direction.

[0012] If the left and right sides are misidentified during assembly, the system will not function properly, requiring time and effort to reassemble it, which is a significant factor in reducing productivity.

[0013] Furthermore, in Patent Document 1, since the curved movable guide groove is directly made on the plate, it incurs high processing costs and time, and when the guide groove wears out, the entire plate must be replaced, which presents a problem.

[0014] In Patent Document 1, the movable guide groove must be directly machined, which can be a significant burden in terms of maintenance and repair. In particular, since building fixtures are products that are used for a long time, a structure that is susceptible to wear and tear will lead to increased maintenance and repair costs and a shortened product lifespan.

[0015] Furthermore, in Patent Document 1, an upper horizontal movement module and a lower horizontal movement module are installed at the top and bottom of the window, respectively. In the case of the lower horizontal movement module, the groove of the moving roller is inserted into the central rail and its position is fixed, so the lower plate, moving roller and horizontal roller do not swing from side to side relative to the entire rail (the space formed by the central rail and the side walls of the central rail).

[0016] In this case, the horizontal rollers must not be in close contact with the side walls of the rail. This is because if the horizontal rollers come into contact with the side walls of the rail, friction will occur, causing the horizontal rollers to slip instead of rotating, which could hinder the movement of the window.

[0017] Nevertheless, as described above, the lower horizontal movement module does not allow the lower plate, movement rollers, and horizontal rollers to sway from side to side relative to the entire rail (the space formed by the central rail and the side walls of the central rail) because the grooves of the movement rollers are inserted into the central rail and their position is fixed.

[0018] However, in the case of the upper horizontal movement module, there are no movement rollers, only horizontal rollers. Even here, the horizontal rollers must not be in close contact with the side walls of the rail. The reason for this is that, as mentioned above, if the horizontal rollers come into contact with the side walls of the rail, friction will occur, causing the horizontal rollers to slip instead of rotating, which can hinder the movement of the window.

[0019] For these reasons, the horizontal rollers of the upper horizontal movement module are separated from both side walls of the rail, which clearly presents a problem where the upper part of the window may sway from side to side (swaying around the X-axis direction - the direction of sliding movement of the window) only within that separated space.

[0020] Therefore, while the technology described in Patent Document 1 can facilitate the function of pressing windows together, it has technical problems in that it is difficult to ensure the stability of horizontal movement when applied to an actual building system, which can lead to reduced ease of assembly and increased manufacturing and maintenance costs. [Prior art documents] [Patent Documents]

[0021] [Patent Document 1] Korean Patent Application Publication No. 10-2016-0033690 Specification [Overview of the Initiative] [Problems that the invention aims to solve]

[0022] The present invention was created to solve these problems, and aims to provide a horizontal movement module for horizontally moving joinery that has a simple structure while improving productivity, operational performance, and sealing performance. [Means for solving the problem]

[0023] To achieve this objective, the present invention provides a horizontal moving module for a horizontally moving joinery, comprising: a moving bar with a moving guide groove; a first plate on which the moving bar is placed; a second plate positioned on the opposite side of the moving bar with respect to the first plate and provided to move relative to the first plate in conjunction with the movement of the moving bar; and a roller module provided on the second plate, wherein the roller module is rotatable about a horizontal axis and guides the moving roller to move in a direction perpendicular to the horizontal direction with respect to the horizontal axis; and a support roller rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis and provided to be in contact with a relative object on the side and to prevent rotation on the horizontal plane of the second plate.

[0024] The moving bar is arranged in the longitudinal direction of the first plate. The first plate is provided with a placement groove on which the moving bar is placed. The placement groove is provided with an opening. The moving bar includes an interlocking member that interlocks the moving guide groove of the moving bar and the second plate. The second plate is formed with an interlocking member coupling hole into which the interlocking member that has passed through the opening while being inserted into the moving guide groove provided in the moving bar is coupled.

[0025] The moving guide groove includes a first moving guide groove offset to the first side with respect to the center line in the longitudinal direction of the moving bar, a second moving guide groove offset to the second side opposite to the first side, and a third moving guide groove that connects the first moving guide groove and the second moving guide groove.

[0026] The first moving guide groove and the second moving guide groove are formed parallel to the center line in the longitudinal direction of the moving bar. The third moving guide groove is provided so as to intersect with the center line in the longitudinal direction of the moving bar at a predetermined diagonal angle.

[0027] The moving bar further includes a moving guide member connecting portion to which a moving guide member that is provided on the moving bar and provides an external force for moving the moving bar to the moving bar is connected.

[0028] The second plate further includes a roller module coupling portion provided at the lower part of the second plate to which the roller module is coupled. The diagonal axis of the support roller is connected to the lower surface of the roller module coupling portion.

[0029] The support rollers are provided in a plurality in the longitudinal direction and the width direction.

[0030] The outer surface of the support roller is provided perpendicular to the plane in the vertical direction so that it can be continuously in contact with the relative object in the vertical direction of the outer surface of the support roller.

[0031] A second plate is inserted into the lower part of the first plate, a guide groove is provided to guide the relative movement between the first plate and the second plate, and the second plate is provided with a guide step that is inserted into the guide groove.

[0032] Furthermore, the present invention provides a horizontal moving module for a horizontally moving type building fixture, comprising: a moving bar equipped with a moving guide groove; a first plate on which the moving bar is placed; a second plate positioned on the opposite side of the moving bar with respect to the first plate and provided to move relative to the first plate in conjunction with the movement of the moving bar; and a roller module provided on the second plate, wherein the roller module is rotatably provided about a diagonal axis having an inclination angle with respect to a virtual vertical axis, is provided to be able to contact a relative object on its side, and includes support rollers that prevent rotation of the second plate on the horizontal plane.

[0033] The second plate is provided at the lower part and further includes a roller module coupling portion to which a roller module is connected, characterized in that the diagonal axis of a support roller is connected to the lower surface of the roller module coupling portion.

[0034] The support rollers are characterized by being provided in multiple units in both the longitudinal and lateral directions.

[0035] The outer surface of the support roller is provided perpendicular to a plane in the vertical direction, and is characterized by being provided so that it can continuously contact the object in the vertical direction with the outer surface of the support roller.

[0036] The movable bar is arranged in the longitudinal direction of the first plate, and the first plate is provided with a mounting groove on which the movable bar is placed, and the mounting groove is provided with an opening, and includes an interlocking member that interlocks the movable guide groove of the movable bar with the second plate, and the second plate is formed with an interlocking member coupling hole on which the interlocking member is coupled after passing through the opening while being inserted into the movable guide groove provided on the movable bar.

[0037] The aforementioned moving guide groove is characterized by including a first moving guide groove that is biased to the first side with respect to the center line in the longitudinal direction of the moving bar, a second moving guide groove that is biased to the second side which is opposite to the first side, and a third moving guide groove that connects the first moving guide groove and the second moving guide groove.

[0038] The first and second movement guide grooves are formed parallel to the longitudinal centerline of the movement bar, and the third movement guide groove is provided so as to intersect the longitudinal centerline of the movement bar at a predetermined oblique angle.

[0039] The present invention further includes a movement guide member connecting portion to which a movement guide member is provided on the movement bar and to which an external force for moving the movement bar is connected. [Effects of the Invention]

[0040] According to the present invention, the horizontal movement module includes an upper horizontal movement module and a lower horizontal movement module, thereby stably inducing and guiding the horizontal movement of the joinery from both the upper and lower parts.

[0041] A horizontal moving module for a horizontally moving joinery, which includes a moving bar having a moving guide groove, a first plate on which the moving bar is placed, a second plate that moves relative to the first plate in conjunction with the movement of the moving bar, and a roller module on the second plate, has the effect of guiding orthogonal movement in the horizontal direction through horizontal axis rotating moving rollers in the roller module, and preventing rotation of the second plate on the horizontal plane by contact with a side relative object through a diagonal axis center rotating support roller having an inclination angle of a virtual vertical axis.

[0042] In the horizontal movement module, the movement bar is arranged in the longitudinal direction of the first plate, the first plate is provided with a groove for mounting the movement bar and an opening, and includes an interlocking member that interlocks the movement bar guide groove and the second plate, and the second plate has a hole formed therein into which the interlocking member, which is inserted into the movement bar guide groove and passes through the opening, is connected, thereby effectively interlocking the movement between the movement bar and the second plate.

[0043] The movable guide groove is configured to include two grooves that are offset to the first and second sides with respect to the longitudinal centerline of the movable bar, and a third groove that connects them, thereby enabling the realization of specific movement patterns.

[0044] The first and second movement guide grooves are formed parallel to the centerline of the movement bar, and the third movement guide groove is provided so as to intersect the centerline at an oblique angle, thereby providing a simple yet effective interlocking mechanism.

[0045] The horizontal movement module further includes a movement guidance member connecting section that transmits external forces to move the movement bar, thereby facilitating connection with an external operating mechanism.

[0046] In the horizontal movement module, a roller module coupling portion is further included at the lower part of the second plate, and the diagonal axis of the support roller is connected to the lower surface of the coupling portion, thereby enabling stable mounting and support of the roller module.

[0047] In the horizontal movement module, the arrangement of multiple support rollers in the length and width directions effectively prevents left-right rotation in the horizontal plane when the lower horizontal movement module or the sash is moved.

[0048] In a horizontal movement module, the outer surface of the support roller is positioned perpendicular to the plane in the vertical direction, and is arranged to make continuous contact with the relative object. This provides line contact rather than point contact, thereby enhancing contact support stability.

[0049] In the horizontal movement module, a second plate is inserted below the first plate, and there is a guide groove that guides relative movement. The second plate is provided with a step that is inserted into the guide groove, which has the effect of inducing stable relative movement between the first plate and the second plate.

[0050] In summary, the present invention focuses on preventing module rotation in horizontally moving joinery, efficiently linking the movement mechanism, providing stable support, and improving operational performance.

[0051] Furthermore, it has the effect of improving productivity through structural simplification, saving processing costs and time, and reducing the need for parts replacement due to wear.

[0052] In particular, the arrangement of multiple support rollers and the line contact structure are key features that greatly improve horizontal movement stability.

[0053] Furthermore, by not using guide grooves with a curved shape formed in a specific direction on the plate, ease of assembly and ease of maintenance and repair can be ensured. [Brief explanation of the drawing]

[0054] [Figure 1] This is a side view showing the door / window in the open position. [Figure 2] This is a side view showing the door / window in the closed position. [Figure 3] This is a cross-sectional view showing the door / window in its open position. [Figure 4] This is a cross-sectional view showing the door / window in the closed position. [Figure 5] This diagram shows the lower horizontal movement module installed on the window frame. [Figure 6] This is a partially enlarged view of Figure 5. [Figure 7] This is an unfolded perspective view showing the lower horizontal movement module. [Figure 8] This is an unfolded perspective view showing the lower horizontal movement module. [Figure 9] This is a plan view showing the lower moving bar. [Figure 10] This is a front view showing the lower horizontal movement module with the movement rollers omitted. [Figure 11] This diagram shows the upper horizontal movement module installed on the window frame. [Figure 12] This is a partially enlarged view of Figure 11. [Figure 13] This is an unfolded perspective view showing the upper horizontal movement module. [Figure 14] This is an unfolded perspective view showing the upper horizontal movement module. [Figure 15] This is a plan view showing the upper moving bar. [Figure 16] This is a front view showing the upper horizontal movement module. [Figure 17] This is a lower perspective view showing the lower movable module in its open state. [Figure 18] This is a top perspective view showing the lower movable module in its open state. [Figure 19] This is a lower perspective view showing the lower mobile module in the closed state. [Figure 20] This is a top perspective view showing the lower mobile module in the closed state. [Figure 21a] This is a bottom view showing the lower movable module in the open state. [Figure 21b] This is a bottom view showing the lower mobile module in the closed state. [Figure 22a] This is a plan view showing the lower movable module in its open state. [Figure 22b] This is a plan view showing the lower mobile module in a closed state. [Figure 23a] This is a front view showing the lower movable module in the open state. [Figure 23b] This is a front view showing the lower movable module in the closed state. [Figure 24a] This is a side view showing the lower movable module in the open state. [Figure 24b] This is a side view showing the lower mobile module in the closed state. [Figure 25] This is a lower perspective view showing the upper movable module in its open state. [Figure 26] This is a top perspective view showing the upper movable module in its open state. [Figure 27] This is a lower perspective view showing the upper mobile module in the closed state. [Figure 28] This is a top perspective view showing the upper movable module in the closed state. [Figure 29a] This is a bottom view showing the upper movable module in the open state. [Figure 29b] This is a bottom view showing the upper movable module in the closed state. [Figure 30a] This is a plan view showing the upper movable module in its open state. [Figure 30b] This is a plan view showing the upper movable module in a closed state. [Figure 31a] This is a front view showing the upper movable module in the open state. [Figure 31b] This is a front view showing the upper movable module in the closed state. [Figure 32a] This is a side view showing the upper movable module in its open state. [Figure 32b] This is a side view showing the upper movable module in the closed state. [Modes for carrying out the invention]

[0055] Since the present invention can be modified in various ways and may have many different embodiments, specific embodiments will be illustrated and described in the drawings.

[0056] However, this should be understood not as an attempt to limit the present invention to any particular embodiment, but rather as including all modifications, equivalents, or substitutions that fall within the spirit and technical scope of the present invention.

[0057] Terms including ordinal numbers such as "first" and "second" may be used to describe a variety of components, but the components are not limited by these terms.

[0058] Each of the aforementioned terms is used solely for the purpose of distinguishing one component from another.

[0059] For example, just as the second component may be named the first component without departing from the scope of the present invention, the first component may also be named the second component.

[0060] The term "and / or" includes any combination of the items in any of the related descriptions or any of the items in any of the related descriptions.

[0061] When it is mentioned that one component is "linked" or "connected" to another component, it should be understood that this may mean that it is directly linked to or connected to the other component, or that other components may be present in between.

[0062] On the other hand, when it is mentioned that one component is "directly connected" or "directly linked" to another component, it should be understood that there are no other components in between.

[0063] The terminology used in this application is solely for the purpose of describing specific embodiments and is not intended to limit the present invention.

[0064] A singular expression includes plural forms unless the context clearly indicates otherwise.

[0065] In this application, terms such as “includes” or “having” are intended to specify the presence of features, numbers, stages, operations, components, parts, or combinations thereof as described in the specification, and should be understood not to preemptively exclude the existence or possibility of adding one or more other features, numbers, stages, operations, components, parts, or combinations thereof.

[0066] The embodiments will be described in detail below with reference to the attached drawings. Regardless of the reference numerals in the drawings, identical or corresponding components will be assigned the same reference numerals, and redundant explanations will be omitted.

[0067] The joinery 10 having a horizontal movement function to which the present invention is applied (hereinafter referred to as "joinery") comprises a sash 20 having an opening 21 on which rails are formed and the window can move, and a window 30 that is placed inside the sash 20 and can slide.

[0068] Window 30 has a window frame 31 within its frame, and a rotatable handle 40 is provided on one side of the window frame 31. The handle 40 can rotate 180 degrees vertically. The following describes the state of the window depending on the position of the handle 40.

[0069] As shown in Figure 1, when the end portion 41 of the handle 40 (opposite the rotating portion 42) is turned upward, the window 30 becomes openable. The window frame 31 and the sash 20 are not in a horizontal, tightly pressed position, and the window frame 31 does not interfere with any part of the sash 20.

[0070] Conversely, as shown in Figure 2, when the end portion 41 of the handle 40 (opposite the rotating portion 42) moves downward, the window 30 becomes sealed. The window frame 31 moves horizontally relative to the sash 20 in preparation for opening, and the window frame 31 comes into close contact with the sash 20.

[0071] In this case, the locking part (not shown) of the window 30, which will be described later, becomes locked to the striker (not shown) of the sash 20, so the window 30 will not open without sliding.

[0072] On the other hand, when the end portion 41 of the handle 40 (opposite the rotating portion 42) is in a horizontal position, the horizontal contact between the window frame 31 and the sash 20 is released and they separate from each other. However, since the locking portion (not shown) of the window 30 is locked to the striker (not shown) of the sash 20, even though opening is not possible, air can flow into the gap between the window frame 31 and the sash 20, thus creating a ventilated state. Air from inside and outside can move through this gap, allowing for ventilation.

[0073] In other words, when attempting to move the window frame 31 in the opening direction, the window frame 31 becomes loose, but as a result, it is prevented from opening due to the locking relationship between the locking part (not shown) and the striker (not shown) described above.

[0074] The horizontal movement module according to the present invention includes an upper horizontal movement module 2000 positioned on the upper part of the window frame 31 and a lower horizontal movement module 1000 positioned on the lower part of the window frame 31.

[0075] As shown in Figure 3, when the window 30 is in an openable state, the upper horizontal movement module 2000 and the lower horizontal movement module 1000 do not move horizontally, and the window frame 31 maintains a state of separation from the sash 20.

[0076] On the other hand, as shown in Figure 4, when the window 30 is closed, the upper horizontal movement module 2000 and the lower horizontal movement module 1000 move horizontally, and the window frame 31 moves to one side in accordance with the horizontal movement of the upper horizontal movement module 2000 and the lower horizontal movement module 1000, and the window frame 31 comes into close contact with the sash 20.

[0077] The specific structure and horizontal movement of the lower horizontal movement module 1000 and the upper horizontal movement module 2000 will be described in detail later.

[0078] As shown in Figures 5 and 6, the lower horizontal movement module 1000 is installed on the lower surface of the window frame 31.

[0079] In Figures 5 and 6, the outer body portion constituting the window frame 31 is omitted, and the internal structure of the window frame 31 and the lower horizontal movement module 1000 connected thereto are shown.

[0080] The handle 40 is linked to the first actuation bar 51 through a predetermined connecting structure. The first actuation bar 51 is a long, strip-shaped bar provided on the side of the window frame 31 that can move upward or downward in accordance with the rotation of the handle 40.

[0081] A second operating bar 52 is provided at the bottom of the window frame 31, and the second operating bar 52 is connected to the first operating bar 51 and is provided to move in accordance with the movement of the first operating bar 51 caused by the movement of the handle 40.

[0082] The second actuation bar 52 is connected to the lower movement bar 1010, which is provided on the lower horizontal movement module 1000. As will be described later, the lower horizontal movement module 1000 can move horizontally in accordance with the movement of the lower movement bar 1010.

[0083] As shown in Figures 7 to 10, the lower horizontal movement module 1000 includes a lower movement bar 1010 equipped with a movement guide groove 1020, a first lower plate 1100 on which the lower movement bar 1010 is placed and which is coupled to the lower surface of the window frame 31, a second lower plate 1200 positioned on the opposite side of the lower movement bar 1010 with respect to the first lower plate 1100 and provided to move relative to the first lower plate 1100 in conjunction with the movement of the lower movement bar 1010, and a lower roller module 1300 provided on the second lower plate 1200.

[0084] The lower roller module 1300 includes a lower moving roller 1410 that is rotatably mounted around a horizontal axis 1420 and guides it to move in a direction perpendicular to the horizontal direction with respect to the horizontal axis 1420, and a lower support roller 1510 that is rotatably mounted around a lower diagonal axis 1520 formed along lower diagonals (CL1-CL1', CL2-CL2') that have an inclination angle with respect to a virtual vertical axis (VL-VL'), and is mounted to be in contact with a relative object on the side (the inner surface of both side walls of the lower rail) and prevents the second lower plate 1200 from rotating on the horizontal plane.

[0085] Two lower moving rollers 1410 are provided in the front-rear direction and are rotatably connected to the lower moving roller support plate 1440 by a horizontal shaft 1420. The center of the lower moving roller support plate 1440 is connected to the side wall of the lower roller module coupling portion 1220 by a support shaft 1460.

[0086] The lower movable bar 1010 is arranged in the longitudinal direction of the first lower plate 1100, and the first lower plate 1100 is provided with a lower mounting groove 1110 on which the lower movable bar 1010 is placed, and the lower mounting groove 1110 is provided with a lower opening 1120.

[0087] The lower movable bar 1010 includes an interlocking member 1600 that interlocks the movable guide groove 1020 of the lower movable bar 1010 with the second lower plate 1200. The second lower plate 1200 has an interlocking member coupling hole 1230 into which the interlocking member 1600, which has been inserted into the movable guide groove 1020 provided on the lower movable bar 1010 and passed through the lower opening 1120, is coupled.

[0088] As shown in Figure 9, the moving guide groove 1020 includes a first moving guide groove 1021 that is biased toward the first side 1011 with respect to the longitudinal center line (A1-A1') of the lower moving bar 1010, a second moving guide groove 1022 that is biased toward the second side 1012 which is opposite to the first side, and a third moving guide groove 1023 that connects the first moving guide groove 1020 and the second moving guide groove 1020.

[0089] The first movement guide groove 1021 and the second movement guide groove 1022 are formed parallel to the longitudinal centerline (A-A') of the lower movement bar 1010, and the virtual centerline of the third movement guide groove 1020 is provided to intersect the longitudinal centerline (A1-A1') of the lower movement bar 1010 at a predetermined oblique angle.

[0090] A movement guide member 521 (see Figure 6) is connected to the lower movement bar 1010, which provides the force of the second actuation bar 52 that moves the lower movement bar 1010 to the lower movement bar 1010.

[0091] For this purpose, the lower moving bar 1010 is provided with a moving guide member connecting portion 1030, The moving guide member 521, which is connected to the moving guide member connecting portion 1030, can be implemented in the form of a boss, projection, pin, or screw. Preferably, the moving guide member connecting portion 1030 is provided in the form of a hole into which the moving guide member 521 is fitted.

[0092] As shown in Figures 7 and 8, a lower roller module coupling portion 1220 in the form of a block is provided at the lower part of the second lower plate 1200, to which the lower roller module 1300 is coupled.

[0093] The lower diagonal shaft 1520 of the lower support roller 1510 is connected to the lower surface of the lower roller module coupling portion 1220, and multiple lower support rollers 1510 are provided in the length direction and width direction. In this embodiment, the case in which there are two lower support rollers 1510 in the length direction and two in the width direction is shown, but the number is not limited to this.

[0094] As described above, multiple lower support rollers 1510 are provided in the longitudinal direction and are in close contact with the side wall 23 of the rail (see Figure 3) at multiple points, so when the lower horizontal movement module 1000 moves horizontally, or when the lower horizontal movement module 1000 moves along the sash 20, it is possible to prevent the lower horizontal movement module 1000 from rotating left to right on the horizontal plane.

[0095] Furthermore, as shown in Figure 10, the outer surface of the lower support roller 1510 is positioned perpendicular to the plane in the vertical direction, allowing the outer surface of the lower support roller 1510 to continuously contact the side wall 23 of the rail of the sash 20 (see Figure 3), which is the relative object, in the vertical direction. Through this, line contact rather than point contact can be realized, thereby further enhancing contact support stability.

[0096] On the other hand, as shown in Figures 7 and 8, a second lower plate 1200 is inserted below the first lower plate 1100, a guide groove 1150 is provided to guide the relative movement between the first lower plate 1100 and the second lower plate 1200, and a guide step 1250 is provided on the second lower plate 1200 which is inserted into the guide groove 1150.

[0097] As shown in Figures 11 and 12, the upper horizontal movement module 2000 is installed on the upper surface of the window frame 31.

[0098] In Figures 11 and 12, the outer body portion constituting the window frame 31 is omitted, and the internal structure of the window frame 31 and the upper horizontal movement module 2000 connected thereto are shown.

[0099] As described above, the handle 40 is linked to the first operating bar 51 through a predetermined connecting structure.

[0100] A third operating bar 53 is provided at the top of the window frame 31. The third operating bar 53 is connected to the first operating bar 51 and is configured to move in accordance with the movement of the first operating bar 51 caused by the movement of the handle 40.

[0101] The third actuation bar 53 is connected to the upper movement bar 2010, which is provided on the upper horizontal movement module 2000. As will be described later, the upper horizontal movement module 2000 can move horizontally in accordance with the movement of the upper movement bar 2010.

[0102] As shown in Figures 13 to 16, the upper horizontal movement module 2000 includes an upper movement bar 2010 equipped with a movement guide groove 2020, a first upper plate 2100 on which the upper movement bar 2010 is placed and which is coupled to the upper surface of the window frame 31, a second upper plate 2200 positioned on the opposite side of the upper movement bar 2010 with respect to the first upper plate 2100 and provided to move relative to the first upper plate 2100 in conjunction with the movement of the upper movement bar 2010, and an upper roller module 2500 provided on the second upper plate 2200.

[0103] The upper roller module 2500 is rotatably mounted around an upper diagonal axis 2520 formed along upper diagonals (CL3-CL3', CL4-CL4') having an inclination angle with respect to a virtual vertical axis (VL-VL'), and includes upper support rollers 2510 that are in contact with relative objects on the sides (e.g., the inner surfaces of the side walls of the upper rail) to prevent the second upper plate 2200 from rotating on the horizontal plane.

[0104] The upper movable bar 2010 is arranged in the longitudinal direction of the first upper plate 2100, and the first upper plate 2100 is provided with an upper mounting groove 2110 on which the upper movable bar 2010 is placed, and the upper mounting groove 2110 is provided with an upper opening 2120.

[0105] The upper moving bar 2010 includes an upper interlocking member 2600 that interlocks the moving guide groove 2020 of the upper moving bar 2010 with the second upper plate 2200. The second upper plate 2200 has an interlocking member coupling hole 2230 into which the interlocking member 2600, which has been inserted into the moving guide groove 2020 provided on the upper moving bar 2010 and passed through the upper opening 2120, is coupled.

[0106] As shown in Figure 15, the moving guide groove 2020 includes a first moving guide groove 2021 that is biased toward the first side 2011 with respect to the longitudinal centerline (A2-A2') of the upper moving bar 2010, a second moving guide groove 2022 that is biased toward the second side 2012, which is opposite to the first side 2011, and a third moving guide groove 2023 that connects the first moving guide groove 2021 and the second moving guide groove 2022.

[0107] The first movement guide groove 2021 and the second movement guide groove 2022 are formed parallel to the longitudinal centerline (A2-A2') of the upper movement bar 2010, and the virtual centerline of the third movement guide groove 2023 is provided to intersect the longitudinal centerline (A2-A2') of the upper movement bar 2010 at a predetermined oblique angle.

[0108] The third moving guide groove 2023 may be implemented in a diagonal direction in a straight or curved form.

[0109] The upper movable bar 2010 is connected to a movable guide member 531, which is provided on the third actuation bar 53 that moves the upper movable bar 2010 and provides the force of the third actuation bar 53 to the upper movable bar 2010.

[0110] A moving guide member connecting portion 2030 is provided on the upper moving bar 2010 so that the moving guide member 531 (see Figure 12) can be connected to it. The moving guide member 531 connected to the moving guide member connecting portion 2030 can be realized in the form of a boss, projection, pin, or screw. Preferably, the moving guide member connecting portion 2030 is provided in the form of a hole into which the moving guide member 531 is fitted.

[0111] As shown in Figures 13 and 14, the upper part of the second upper plate 2200 is provided with an upper roller module coupling section 2220, which is in the form of a block to which the upper roller module 2500 is coupled.

[0112] The upper surface of the upper roller module coupling portion 2220 is connected to the upper diagonal shaft 2520 of the upper support roller 2510, and multiple upper support rollers 2510 are provided in the length and width directions.

[0113] In this embodiment, the upper support rollers 2510 are shown as two in the length direction and two in the width direction, but the number is not limited to this.

[0114] As described above, multiple upper support rollers 2510 are provided in the longitudinal direction and are in close contact with the side wall 23 of the rail at multiple points, so when the upper horizontal movement module 2000 moves horizontally, or when the upper horizontal movement module 2000 moves along the sash, it is possible to prevent the upper horizontal movement module 2000 from rotating left to right on the horizontal plane.

[0115] Furthermore, as shown in Figure 16, the outer surface of the upper support roller 2510 is positioned perpendicular to the horizontal plane in the vertical direction, allowing for continuous vertical contact between the outer surface of the upper support roller 2510 and the side wall 23 of the rail of the sash 20 (see Figure 3), which is the relative object.

[0116] Through this process, line contact can be realized rather than point contact, thereby further enhancing contact support stability.

[0117] On the other hand, as shown in Figures 13 and 14, a second upper plate 2200 is inserted into the upper part of the first upper plate 2100, a guide groove 2150 is provided to guide the relative movement between the first upper plate 2100 and the second upper plate 2200, and a guide step 2250 is provided on the second upper plate 2200 which is inserted into the guide groove 2150.

[0118] Figures 17 and 18 are upper and lower perspective views showing the arrangement of the lower horizontal movement module 1000 when the window 30 is open, while Figures 19 and 20 are upper and lower perspective views showing the arrangement of the lower horizontal movement module 1000 when the window 30 is closed.

[0119] Figure 21a is a bottom view showing the lower horizontal movement module 1000 with the window 30 open, Figure 21b is a bottom view showing the lower horizontal movement module 1000 with the window 30 closed, Figure 22a is a plan view showing the lower horizontal movement module 1000 with the window 30 open, and Figure 22b is a plan view showing the lower horizontal movement module 1000 with the window 30 closed.

[0120] Figure 23a is a front view showing the lower horizontal movement module 1000 with the window 30 open, Figure 23b is a front view showing the lower horizontal movement module 1000 with the window 30 closed, Figure 24a is a side view showing the lower horizontal movement module 1000 with the window 30 open, and Figure 24b is a front view showing the lower horizontal movement module 1000 with the window 30 closed.

[0121] As shown in Figures 17, 18, 21a, 22a, 23a, and 24a, when the window 30 is open, the lower movable bar 1010 is moved by the second operating bar 52, and the rear end of the lower movable bar 1010 is aligned with the rear end of the first lower plate 1100, so that the lower movable bar 1010 is housed to the maximum extent inside the first lower plate 1100.

[0122] Furthermore, only a portion of the front end of the lower movable bar 1010 is positioned beyond the front end of the first lower plate 1100.

[0123] On the other hand, the interlocking member 1600 is positioned in the lower first movement guide groove 1021.

[0124] In this state, the lower moving roller 1410 is positioned on the longitudinal centerline (B1-B1') of the lower horizontal moving module 1000, and this centerline coincides with the longitudinal centerline (A1-A1') of the lower moving bar 1010.

[0125] Furthermore, one long side 1201 of the second lower plate 1200 is positioned near one long side 1101 of the first lower plate 1100. The other long side 1202 of the second lower plate 1200 is positioned at a distance from the other long side 1102 of the first lower plate 1100.

[0126] In this state, when the lower moving bar 1010 is pulled by the second operating bar 52, relative horizontal movement occurs between the first lower plate 1100 and the second lower plate 1200, and the system is converted to a closed state.

[0127] As shown in Figures 19, 20, 21b, 22b, 23b, and 24b, when the window is closed, the lower movable bar 1010 is moved by the second operating bar 52, and the rear end of the lower movable bar 1010 is recessed into the first lower plate 1100, so that the lower movable bar 1010 is minimally housed inside the first lower plate 1100.

[0128] Furthermore, the front and middle portions of the lower movable bar 1010 are positioned to be pulled as far as possible by the second operating bar 52, beyond the front end of the first lower plate 1100.

[0129] On the other hand, the interlocking member 1600 is positioned in the second movement guide groove 1022 of the lower movement bar 1010.

[0130] In this state, the lower moving roller 1410 deviates from the longitudinal centerline (B1-B1') of the lower horizontal moving module 1000 and is positioned next to the longitudinal centerline (B1-B1') of the lower horizontal moving module 1000, at a distance from the longitudinal centerline (B1-B1').

[0131] The relative movement between the first lower plate 1100 and the second lower plate 1200 causes the other side 1202 of the long side of the second lower plate 1200 and the other side 1102 of the long side of the first lower plate 1100 to be positioned closer together, while one side 1201 of the long side of the second lower plate 1200 is positioned at a distance from one side 1101 of the long side of the first lower plate 1100.

[0132] Thus, when the first lower plate 1100 and the second lower plate 1200 move relative to each other, the window frame 31, which is coupled to the first lower plate 1100, moves together with the first lower plate 1100. Ultimately, this results in relative movement between the window frame 31 and the second lower plate 1200, which can induce the opening or closing of the window 30.

[0133] On the other hand, since the lower end of the lower support roller 1510 is positioned higher than the lower end of the lower moving roller 1410, the lower support roller 1510 does not come into contact with the relative object (the bottom surface of the rail) that it comes into contact with the lower moving roller 1410, and therefore does not obstruct its movement.

[0134] Having described the operation of the lower horizontal movement module 1000 above, the operation of the upper horizontal movement module 2000 will be described below.

[0135] Figures 25 and 26 are upper and lower perspective views showing the arrangement of the upper horizontal movement module 2000 with the window open, while Figures 27 and 28 are upper and lower perspective views showing the arrangement of the upper horizontal movement module 2000 with the window closed.

[0136] Figure 29a is a bottom view showing the upper horizontal movement module 2000 with the window 30 open, Figure 29b is a bottom view showing the upper horizontal movement module 2000 with the window 30 closed, Figure 30a is a plan view showing the upper horizontal movement module 2000 with the window 30 open, and Figure 22b is a plan view showing the upper horizontal movement module 2000 with the window 30 closed.

[0137] Figure 31a is a front view showing the upper horizontal movement module 2000 with the window 30 open, Figure 31b is a front view showing the upper horizontal movement module 2000 with the window 30 closed, Figure 32a is a side view showing the upper horizontal movement module 2000 with the window 30 open, and Figure 32b is a front view showing the upper horizontal movement module 2000 with the window 30 closed.

[0138] As shown in Figures 25, 26, 29a, 30a, 31a, and 32a, when the window 30 is open, the upper movable bar 2010 is moved by the third operating bar 53, and the rear end of the upper movable bar 2010 is aligned with the rear end of the first upper plate 2100, so that the upper movable bar 2010 is housed to the maximum extent inside the first upper plate 2100.

[0139] Furthermore, only a portion of the front end of the upper movable bar 2010 is positioned beyond the front end of the first upper plate 2100.

[0140] On the other hand, the interlocking member 2600 is positioned in the first movement guide groove 2021 of the upper movement bar 2010.

[0141] One long side 2201 of the second upper plate 2200 is positioned near one long side of the first upper plate 2100. The other long side 2202 of the second upper plate 2200 is positioned at a distance from the other long side of the first upper plate 2100.

[0142] In this state, when the upper moving bar 2010 is pulled by the third operating bar 53, relative horizontal movement occurs between the first upper plate 2100 and the second upper plate 2200, and the system is converted to a closed state.

[0143] As shown in Figures 27, 28, 29b, 30b, 31b, and 32b, when the window 30 is closed, the upper movable bar 2010 is moved by the third operating bar 53, and the rear end of the upper movable bar 2010 enters the inside of the first upper plate 2100, so that the upper movable bar 2010 is minimally housed inside the first upper plate 2100.

[0144] Furthermore, the front and middle portions of the upper movable bar 2010 are positioned to be pulled as far as possible by the third actuation bar 53, beyond the front end of the first upper plate 2100.

[0145] On the other hand, the interlocking member 2600 is positioned in the second movement guide groove 2022 of the upper movement bar 2010.

[0146] The relative movement between the first upper plate 2100 and the second upper plate 2200 causes the other side 2202 of the long side of the second upper plate 2200 and the other side 2102 of the long side of the first upper plate 2100 to be positioned closer together, and one side 2201 of the long side of the second upper plate 2200 is positioned at a distance from one side 2101 of the long side of the first lower plate 1100.

[0147] Thus, when the first upper plate 2100 and the second upper plate 2200 move relative to each other, the window frame 31, which is coupled to the first upper plate 2100, moves together with the first upper plate 2100. Ultimately, this results in relative movement between the window frame 31 and the second upper plate 2200, which can induce the opening or closing of the window 30.

[0148] On the other hand, since the upper end of the upper support roller 2510 is positioned lower than the upper surface of the sash rail, the upper support roller 2510 does not come into contact with the upper surface of the sash rail and does not obstruct its movement.

[0149] Thus, when the upper horizontal movement module 2000 and the lower horizontal movement module 1000 are in the open state, the window frame 31 can move freely because it is separated from the side of the sash 20, as shown in Figure 3.

[0150] On the other hand, when the upper horizontal movement module 2000 and the lower horizontal movement module 1000 are in the closed state, as shown in Figure 4, the window frame 31 is in close contact with the side of the sash 20, eliminating the separation space and creating a sealed environment.

[0151] In this invention, an upper horizontal movement module 2000 and a lower horizontal movement module 1000 are installed at the top and bottom of the window, respectively. In the case of the lower horizontal movement module 1000, the groove of the moving roller 1410 is inserted into the central rail and its position is fixed, so the lower plate 1100, the moving roller 1410 and the lower support roller 1510 do not swing from side to side relative to the entire rail (the space formed by the central rail and the side walls of the central rail).

[0152] In this case, the lower support rollers 1510 come into contact with the side walls of the rail. However, even if they come into contact, because each of the lower support rollers 1510 is smaller than the existing large horizontal rollers, rotation can proceed smoothly with minimal friction, and therefore does not interfere with the sliding movement of the window.

[0153] Furthermore, although the upper support rollers 2510 of the upper horizontal movement module 2000 also come into contact with the side walls of the rail, even if they do come into contact, the small frictional force required for each of the upper support rollers 2510 compared to the existing large horizontal rollers allows for smooth rotation and thus does not interfere with the sliding movement of the window.

[0154] Furthermore, the support force exerted by the lower support roller 1510 and the upper support roller 2510 on both side walls of the rails allows the window to maintain an upright position without swaying in the X-axis direction (the axis direction in which the window slides).

[0155] As described above, the present invention has been explained with reference to the embodiments shown in the drawings. However, this is merely for the purpose of explaining the invention, and a person with ordinary skill in the art to which the present invention belongs will understand from the detailed description of the invention that various modifications or equivalent embodiments are possible.

[0156] Therefore, the true scope of the present invention must be determined by the technical idea of ​​the claims. [Explanation of symbols]

[0157] 1 0 Doors and fittings 20 sash 21 Opening 30 windows 31 Window Frames 40 handle 41 Handle end 42 Rotating parts 51. First actuation bar 52 Second Actuation Bar 521 Lower moving guide member 53 Third Actuator Bar 531 Upper moving guide member 1000 Lower horizontal movement module 1010 Lower Movement Bar 1020 Movable guide groove 1030 Moving guide member connecting part 1100 First Lower Plate 1101 One side of the long edge of the first lower plate 1110 Lower mounting groove 1120 Lower opening 1150 Guide groove 1200 Second Lower Plate 1201 One side of the long edge of the second lower plate 1202 The other side of the long edge of the second lower plate 1220 Lower roller module connection 1230 Interlocking member connection hole 1250 Guide step 1300 Lower Roller Module 1410 Lower moving roller 1420 horizontal axis 1440 Lower movable roller support plate 1460 Support shaft 1510 Lower support roller 1520 Lower diagonal axis 1600 Interlocking member 2000 Upper horizontal movement module 2010 Top Movement Bar 2020 Movable Guide Channel 2021 First movable guide channel 2022 Second Moving Guide Channel 2023 Third Moving Guide Channel 2100 First upper plate 2110 Upper mounting groove 2120 Top opening 2150 Guide groove 2200 Second upper plate 2201 One side of the long edge of the second upper plate 2202 The other side of the long edge of the second upper plate 2220 Upper roller module connection 2230 Interlocking member connection hole 2250 Guide step 2500 Upper Roller Module 2510 Upper support roller 2520 Upper diagonal axis 2600 Upper interlocking member

Claims

1. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, It includes a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on the side, and prevents the second plate from rotating on the horizontal plane, The aforementioned moving bar is arranged in the longitudinal direction of the first plate, The first plate is provided with a mounting groove on which the movable bar is placed, and the mounting groove is provided with an opening. The interlocking member includes a mechanism that interlocks the moving guide groove of the moving bar with the second plate. A horizontal movement module for horizontally moving joinery, characterized in that the second plate has an interlocking member coupling hole formed therein, into which the interlocking member, which has passed through the opening while being inserted into the moving guide groove provided on the moving bar, is coupled.

2. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, It includes a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on the side, and prevents the second plate from rotating on the horizontal plane, The aforementioned moving guide groove includes a first moving guide groove that is biased towards the first side with respect to the longitudinal center line of the moving bar, and a second moving guide groove that is biased towards the second side, which is opposite to the first side. A horizontal movement module for a horizontally moving type joinery, characterized by including a third movement guide groove that connects the first movement guide groove and the second movement guide groove.

3. The horizontal movement module for horizontally moving joinery according to claim 2, characterized in that the first movement guide groove and the second movement guide groove are formed parallel to the center line in the longitudinal direction of the moving bar, and the third movement guide groove is provided so as to intersect the center line in the longitudinal direction of the moving bar at a predetermined oblique angle.

4. The horizontal movement module for horizontally moving joinery according to claim 2, further comprising a movement guide member connecting portion to which a movement guide member is provided on the moving bar and which provides an external force to the moving bar to move the moving bar.

5. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar. To and, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, It includes a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on the side, and prevents the second plate from rotating on the horizontal plane, A horizontal moving module for a horizontally moving joinery, further comprising a roller module coupling portion provided at the lower part of the second plate to which the roller module is coupled, wherein the diagonal axis of the support roller is connected to the lower surface of the roller module coupling portion.

6. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, It includes a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on the side, and prevents the second plate from rotating on the horizontal plane, The horizontal movement module for horizontally moving joinery is characterized in that the support rollers are provided in multiple quantities in the length direction and width direction.

7. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, It includes a support roller that is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on the side, and prevents the second plate from rotating on the horizontal plane, A horizontal movement module for a horizontally moving building component, characterized in that the outer surface of the support roller is provided perpendicular to a plane in the vertical direction, and is provided so that it can continuously contact the opposing object with the outer surface of the support roller in the vertical direction.

8. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatably mounted around a horizontal axis and includes a movable roller that guides movement in a direction perpendicular to the horizontal direction with respect to the horizontal axis, A support rod is provided to be rotatable around a diagonal axis having an inclination angle with respect to a virtual vertical axis, and to be able to contact a relative object on the side, thereby preventing the second plate from rotating on the horizontal plane. -er and, including, The second plate is inserted into the lower part of the first plate, and a guide groove is provided to guide the relative movement between the first plate and the second plate. A horizontal movement module for horizontally moving joinery, characterized in that the second plate is provided with a guide step that is inserted into the guide groove.

9. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on its side, and includes a support roller that prevents the second plate from rotating on the horizontal plane. A horizontal moving module for a horizontally moving joinery, further comprising a roller module coupling portion provided on the upper part of the second plate to which the roller module is coupled, wherein the diagonal axis of the support roller is connected to the upper surface of the roller module coupling portion.

10. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on its side, and includes a support roller that prevents the second plate from rotating on the horizontal plane. The horizontal movement module for horizontally moving joinery is characterized in that the support rollers are provided in multiple quantities in the length direction and width direction.

11. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on its side, and includes a support roller that prevents the second plate from rotating on the horizontal plane. A horizontal movement module for a horizontally moving building component, characterized in that the outer surface of the support roller is provided perpendicular to a plane in the vertical direction, and is provided so that it can continuously contact the opposing object with the outer surface of the support roller in the vertical direction.

12. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on its side, and includes a support roller that prevents the second plate from rotating on the horizontal plane. The aforementioned moving bar is arranged in the longitudinal direction of the first plate, The first plate is provided with a mounting groove on which the movable bar is placed, and the mounting groove is provided with an opening. The interlocking member includes a mechanism that interlocks the moving guide groove of the moving bar with the second plate. A horizontal movement module for horizontally moving joinery, characterized in that the second plate has an interlocking member coupling hole formed therein, into which the interlocking member, which has passed through the opening while being inserted into the moving guide groove provided on the moving bar, is coupled.

13. A movable bar equipped with a movable guide groove, A first plate on which the aforementioned movable bar is placed, A second plate is positioned on the opposite side of the moving bar with respect to the first plate, and is provided to move relative to the first plate in conjunction with the movement of the moving bar, The second plate includes a roller module, The roller module is rotatable about a diagonal axis having an inclination angle with respect to a virtual vertical axis, and is provided to be in contact with a relative object on its side, and includes a support roller that prevents the second plate from rotating on the horizontal plane. The aforementioned moving guide groove includes a first moving guide groove that is biased towards the first side with respect to the longitudinal center line of the moving bar, and a second moving guide groove that is biased towards the second side, which is opposite to the first side. A horizontal movement module for a horizontally moving type joinery, characterized by including a third movement guide groove that connects the first movement guide groove and the second movement guide groove.

14. The horizontal movement module for horizontally moving joinery according to claim 13, characterized in that the first movement guide groove and the second movement guide groove are formed parallel to the center line in the longitudinal direction of the moving bar, and the third movement guide groove is provided to intersect the center line in the longitudinal direction of the moving bar at a predetermined oblique angle.

15. The horizontal movement module for horizontally moving joinery according to claim 13, further comprising a movement guide member connecting portion to which a movement guide member is provided on the moving bar and which provides an external force to the moving bar to move the moving bar.

Citation Information

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