Door and window protection configurations and sliding doors and windows
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- GOLDEN ARTISTAN TECH IND CO LTD
- Filing Date
- 2023-10-19
- Publication Date
- 2026-07-31
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
【0009】 本発明による効果は、前記扉·窓保護構成により、前記窓本体に耐圧力を高めることができ、前記窓本体が風圧により作用されると、前記扉·窓保護構成により前記窓本体に支持力を提供して前記窓本体の歪みを防ぐことができ、ひいては、気体が本体とフレームとの間の隙間を流れると風音が発生してしまうという問題を解決できると共に好適な扉·窓の気密性を提供できることから、利用者に生活品質を高めることができる効果を達成可能であるということにある。
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Abstract
Description
Technical Field
[0001] The present invention relates to sliding doors and windows, and particularly to a door and window protection structure for enhancing the pressure resistance of the door and window body.
Background Art
[0002] Known sliding windows are generally adopted by users because they are easy to operate and the space occupied by the opened part of the window is smaller than that of push windows. Generally, a sliding window includes a window frame and two window bodies, and tracks are respectively installed in the window frame in a state where the two window bodies are coupled so as to be displaceable and relatively horizontally movable. Its operation mode is that by pushing or pulling the two window bodies, the two window bodies move horizontally along the tracks in the window frame. In this way, the two window bodies and the window frame can prevent wind and rain from the outdoor side from pouring into the indoor space through sealing between them.
[0003] However, when the balance between the outdoor pressure and the indoor pressure is disrupted and a pressure difference is formed, the pressure difference is likely to cause distortion in the structure at the location where the window body and the track are coupled, and as a result, a gap is likely to occur between the window body and the window frame. And when gas flows through the gap between the window body and the window frame, there may be a whistling sound caused by the wind. Therefore, how to provide a structure for enhancing the pressure resistance of the window body has become a problem that needs to be solved at an early date.
Summary of the Invention
Problems to be Solved by the Invention
[0004] In view of this, an object of the present invention is to provide a door and window protection structure for enhancing the pressure resistance of the door and window body.
Means for Solving the Problems
[0005] To achieve the above objectives, the present invention provides a door / window protection configuration for use in a sliding door / window including a frame and a window body mounted on the frame, which is installed in a groove on the outer edge of the window body and positioned between the window body and the frame, and includes a first contact arm, a second contact arm and a continuous arm, the first contact arm and the second contact arm being connected to two opposing sides of the continuous arm, the first contact arm and the second contact arm being in contact with two opposing inner groove walls in the groove of the window body, and the continuous arm being received at the bottom of the groove of the groove of the window body.
[0006] The present invention further provides a sliding door / window comprising a door / window protection configuration, a frame, and a window body, wherein the window body is mounted on the frame so as to be slidable along a first axis, the window body has a groove, and the door / window protection configuration is installed between the frame and the window body, and the first contact arm and the second contact arm each contact two opposing inner groove walls in the groove, and the continuous arm is received at the bottom of the groove.
[0007] The present invention provides a sliding door / window used in a sliding door / window comprising a frame and a window body mounted on the frame, wherein the door / window protection configuration is installed in a groove on the outer edge of the window body and is located between the window body and the frame, and includes a contact arm and a bent portion, the bent portion being connected to the contact arm, and defining the lateral and vertical directions, the contact arm is formed extending along the vertical direction, the bent portion is formed extending along the lateral direction from the point of connection with the contact arm and then extending along the vertical direction, and the inner wall of the bent portion and the contact arm together form an engagement groove.
[0008] The present invention further provides a sliding door / window comprising a door / window protection configuration, a frame, and a window body, wherein the window body is mounted on the frame so as to be slidable along a first axis, the window body has a groove, the door / window protection configuration is installed between the frame and the window body and the engaging groove engages with the groove wall of the groove, and the contact arm is installed in the groove. [Effects of the Invention]
[0009] The effect of the present invention is that the door / window protection configuration can increase the pressure resistance of the window body, and when the window body is subjected to wind pressure, the door / window protection configuration can provide support to the window body to prevent distortion of the window body, thereby solving the problem of wind noise being generated when gas flows through the gap between the body and the frame, and providing suitable airtightness of the door / window, thus achieving the effect of improving the quality of life for the user. [Brief explanation of the drawing]
[0010] [Figure 1] This is a front view showing a sliding door and window according to the first, second, and third preferred embodiments of the present invention. [Figure 2] This is a perspective view of some of the components in Figure 1, disassembled. [Figure 3] This is a perspective view showing a door / window protection configuration according to a first preferred embodiment of the present invention. [Figure 4] This is a perspective view of the door / window protection configuration according to the above preferred embodiment, viewed from a different angle. [Figure 5] This is a cross-sectional view in the F5-F5 direction in Figure 1. [Figure 6] This is a front view showing a door / window protection configuration according to a second preferred embodiment of the present invention. [Figure 7] Figure 6 is a perspective view showing some of the components disassembled. [Figure 8] This is a perspective view showing the door and window protection configuration according to the second preferred embodiment described above. [Figure 9]It is a cross-sectional view in the F9-F9 direction in FIG. 6. [Figure 10] It is a perspective view showing a door and window protection structure according to the third preferred embodiment of the present invention. [Figure 11] It is a perspective view showing a door and window protection structure according to the above-mentioned third preferred embodiment. [Figure 12] It is a cross-sectional view in the F12-F12 direction in FIG. 1. [Figure 13] It is a perspective view showing a door and window protection structure according to the fourth preferred embodiment of the present invention. [Figure 14] It is a perspective view showing a door and window protection structure according to the above-mentioned fourth preferred embodiment. [Figure 15] It is a cross-sectional view in the F15-F15 direction in FIG. 1. [Figure 16] It is a front view showing a sliding door and window according to the fifth preferred embodiment and the sixth preferred embodiment of the present invention. [Figure 17] It is a perspective view of a partial disassembly of FIG. 16 parts. [Figure 18] It is a perspective view showing a door and window protection structure according to another preferred embodiment of the present invention. [Figure 19] It is a perspective view of the door and window protection structure according to the above-mentioned other preferred embodiment from another viewing angle. [Figure 20] It is a cross-sectional view in the F20-F20 direction in FIG. 16. [Figure 21] It is a perspective view showing a door and window protection structure according to the fifth preferred embodiment of the present invention. ` [Figure 22] It is a perspective view of the door and window protection structure according to the above-mentioned fifth preferred embodiment from another viewing angle. [Figure 23] It is a cross-sectional view in the F23-F23 direction in FIG. 16. [Figure 24] It is a perspective view showing a door and window protection structure according to the sixth preferred embodiment of the present invention. [Figure 25] It is a perspective view of the door and window protection structure according to the above-mentioned sixth preferred embodiment from another viewing angle. ` [Figure 26]It is a cross-sectional view in the F26 - F26 direction in FIG. 16.
Embodiments for Carrying Out the Invention
[0011] To explain the present invention more clearly, preferred embodiments will be given and described in detail below with reference to the drawings. As shown in FIGS. 1 to 5, the sliding door and window 1 according to the first preferred embodiment of the present invention includes a door and window protection configuration, a frame 10, and a window body. In this embodiment, the window body is defined as an inner window 20A installed close to the indoor side R1, and the door and window protection configuration is defined as a first protection configuration 30, respectively. The sliding door and window 1 further includes an outer window 20B installed close to the outdoor side R2.
[0012] The inner window 20A is mounted on the frame 10 slidably along the first axis X. When defining a lateral axis Y and a longitudinal axis Z, the first axis X, the lateral axis Y, and the longitudinal axis Z are perpendicular to each other (see FIG. 2). The first protection configuration 30 is installed between the frame 10 and the inner window 20A. In this embodiment, the installation of the first protection configuration 30 between the frame 10 and the inner window is taken as an example for explanation. However, actually, it is not excluded that the first protection configuration 30 is installed between the frame 10 and the outer window 20B. Further to be explained is that in this embodiment, the sliding door and window is taken as an example of a sliding window for explanation. However, in other embodiments, the sliding door and window may be a sliding door.
[0013] The first protection configuration 30 is described by taking it as one in terms of quantity. Also, the first protection configuration 30 is installed in a concave groove 22a at the outer peripheral edge of the inner window 20A (see FIG. 5) and is located at a position approximately in the center of the inner window in the first axis X (see FIG. 1). Actually, one or more first protection configurations 30 may be installed. For example, depending on the number of the first protection configurations 30, if the first protection configurations 30 are installed in the concave groove 22a at the bottom of the inner window 20A at equal intervals along the first axis X, the effect of enhancing the pressure resistance of the inner window 20A can also be achieved similarly.
[0014] As shown in Figures 3 to 5, the first protective configuration 30 includes a first contact arm 31, a second contact arm 32, and a continuous arm 33, with the first contact arm 31 and the second contact arm 32 connected to two opposing sides of the continuous arm 33, respectively. Of these, as shown in Figure 5, the first contact arm 31 and the second contact arm 32 abut against two opposing inner groove walls 22A and 22B in the groove 22a of the inner window 20A, respectively, while the continuous arm 33 is received at the bottom of the groove 22a in the inner window 20A and is in close contact with the bottom of the groove 22a.
[0015] As shown in Figure 5, if we define the lateral direction Y1 in the lateral axis Y and the vertical direction Z1 in the vertical axis Z, the continuous arm 33 has one end connected to the first contact arm 31, while the other end extends along the lateral direction Y1 and is connected to the second contact arm 32. The first contact arm 31 and the second contact arm 32 are each formed with one end connected to the continuous arm 33 and the other end extending along the vertical direction Z1. The first contact arm 31 has a protruding part 311 on the surface facing backward to the second contact arm 32. The protruding part 311 protrudes from the surface in a direction away from the surface. Furthermore, the protruding part 311 is elastically movable along the lateral axis Y. Opposing grooves 22a in the inner window 20A Inside The groove walls 22A and 22B each have groove-shaped tracks 22C and 22D extending along the first axis X. Thus, the first protective structure 30 is removably coupled to the groove 22a in the inner window 20A.
[0016] For example, when a user attempts to attach the first protective component 30 to the groove 22a of the inner window 20A, by pushing the first protective component 30 toward the bottom of the groove 22a, the protruding component 311 will be positioned toward the groove 22a InsideThe first protective component 30 is pressed against the groove wall 22A and contracts inward. When the first protective component 30 is installed in the groove 22a, the protruding part 311 of the first contact arm 31 recovers and is received in the groove-shaped track 22C, and the second contact arm 32 is received in the groove-shaped track 22D. As a result, the first protective component 30 is firmly received in the groove 22a of the inner window 20A without easily falling out, and is installed in the groove 22a so that the first shaft X can slide. Therefore, it has the effect of helping the user adjust the position in which the first protective component 30 is installed in the inner window 20A.
[0017] As explained in Figure 4, the width D1 of the first contact arm 31 in the first axis X is greater than the width D2 of the second contact arm 32 in the direction of the first axis X, and the width D1 of the first contact arm 31 in the direction of the first axis X is greater than the width D3 of the continuous arm 33 in the direction of the first axis X. The surface of the first contact arm 31 facing the second contact arm 32 has a support portion 312. The support portion 312 gradually shrinks as it moves away from the second contact arm 32 and approaches the second contact arm 32 in the lateral axis Y.
[0018] As shown in Figure 5, when the first protective structure 30 is installed in the groove 22a, a negative wind pressure is formed because the pressure on the indoor side R1 is greater than the pressure on the outdoor side R2, causing the inner window 20A to be deflected by the pressure in the direction toward the outdoor side R2. In this case, the support portion 312 approaches the direction of the track T on the frame 10 and comes into contact with the track T on the frame 10 (see Figure 5). This prevents the inner window 20A from being bent and distorted by force. Consequently, the problem of wind noise being generated when gas flows through the gap between the inner window 20A and the frame 10 can be solved. Moreover, it is possible to provide suitable airtightness for the door / window, and because of the design that gradually shrinks, the area in contact between the support portion 312 and the track T on the frame 10 can be reduced, so that the first protective structure 30 can move smoothly and slide relative to the track on the frame 10.
[0019] As shown in Figures 6 to 9, the sliding door / window 2 according to the second preferred embodiment of the present invention has substantially the same configuration as the sliding door / window 1 according to the first preferred embodiment, so it will not be described again here. The difference lies in the configuration and installation location of the door / window protection structure. In this embodiment, the door / window protection structure is installed in the upper groove 22b of the inner window 20A (see Figure 7).
[0020] In this embodiment, the door / window protection configuration is defined as the second protection configuration 40, and the number of the second protection configurations 40 is set to two. The second protection configurations 40 are installed at equal intervals along the first axis X in the groove 22b at the top of the inner window 20A. In practice, even if one or more second protection configurations 40 are installed, the effect of increasing the pressure resistance capacity of the inner window 20A can be similarly achieved. In this embodiment, the second protection configuration 40 is installed between the frame 10 and the inner window 20A. In practice, however, the installation of the second protection configuration 40 between the frame 10 and the outer window 20B is not excluded.
[0021] As shown in Figures 8 and 9, the second protective configuration 40 includes the first contact arm 41, the second contact arm 42, and the continuous arm 43. The continuous arm 43 has one end connected to the first contact arm 41, while the other end extends along the lateral direction Y1 and is connected to the second contact arm 42. The first contact arm 41 has one end connected to the continuous arm 43, while the other end extends in a direction opposite to the vertical direction Z1. In this embodiment, the second contact arm 42 further includes a connected bent portion 42a and a contact portion 42b. The contact portion 42b has one end connected to the continuous arm 43, while the other end extends in a direction opposite to the vertical direction Z1 and is connected to the bent portion 42a. The bent portion 42a extends along the lateral direction Y1 from the point where it is connected to the contact portion 42b, and then extends along the vertical direction Z1. As a result, the inner wall of the bent portion 42a and the outer wall of the second contact arm 42 in the contact portion 42b both form an engagement groove 421.
[0022] As shown in Figure 9, when the second protective configuration 40 is attached to the groove 22b of the inner window 20A, the engagement groove 421 of the second protective configuration 40 can engage with the groove wall of the groove 22b in the inner window 20A, and the groove width of the engagement groove 421 matches the thickness of the groove wall. In addition, the continuous arm 43 of each of the second protective configurations 40 can be received at the bottom of the groove 22b in the inner window 20A and can be in close contact with the bottom of the groove 22b.
[0023] Furthermore, the side of the groove 22b that is in contact with the first contact arm 41 has a groove-shaped track 22E that extends along the first axis X. A protruding part 431 is installed at a position on the first contact arm 41 corresponding to the groove-shaped track 22E, and the protruding part 431 protrudes in a direction away from the surface of the first contact arm 41 that faces the groove-shaped track 22E. By receiving the protruding part 431 in the groove-shaped track 22E, the second protective structure 40 can be stably installed in the groove 22b without falling out, and by installing the second protective structure 40 in the groove 22b so that it can slide along the first axis X, it is possible to provide an effect that helps the user adjust the position in which the second protective structure 40 is installed in the inner window 20A.
[0024] In this embodiment, the folding portion 42a has a support portion 422 on the side of the outer wall facing backward to the contact portion 42b (see Figure 8). The support portion 422 gradually shrinks away from the second contact arm 42 in the lateral direction Y1, and there is a distance between the support portion 422 and the frame 10 (see Figure 9). In this case, by installing the second protective configuration 40 in the groove 22b, the pressure on the indoor side R1 becomes greater than the pressure on the outdoor side R2, and when a negative wind pressure is formed, the inner window 20A is deflected by the pressure in the direction toward the outdoor side R2. In this case, the support portion 422 moves closer to the frame 10. By contacting the frame 10, it is possible to prevent the inner window 20A from being bent and distorted by force. Consequently, the problem of wind noise being generated when gas flows through the gap between the inner window 20A and the frame 10 can be solved. Moreover, it is possible to provide suitable airtightness for the door / window, and because the design gradually shrinks, the area in contact between the support portion 422 and the frame 10 can be reduced, so that the second protective structure 40 can move smoothly and slide relative to the frame 10.
[0025] In this embodiment, the explanation describes the second protective configuration 40 having a support portion 422 that gradually shrinks. However, in other embodiments, as shown in Figures 16 to 20, the second protective configuration 40' may have a support portion 422 that is flat. By installing the second protective configuration 40' in the groove 22b, when the pressure on the indoor side R1 becomes greater than the pressure on the outdoor side R2, creating a negative wind pressure, the inner window 20A is deflected by the pressure toward the outdoor side R2. In this case, the support portion 422 approaches the frame 10. By contacting the frame 10, it is possible to prevent the inner window 20A from being bent and distorted by force. Similarly, it is possible to solve the problem of wind noise being generated when gas flows through the gap between the inner window 20A and the frame 10, and to provide suitable airtightness for the door / window.
[0026] As shown in Figures 1 and 10 to 12, the sliding door / window 3 according to the third preferred embodiment of the present invention has substantially the same configuration as the sliding door / window 2 according to the second preferred embodiment described above, and therefore will not be described again here. The difference lies in the configuration and installation location of the door / window protection configuration. In this embodiment, the door / window protection configuration is installed in the groove wall of the recessed groove 22b located above the inner window 20A (see Figure 10).
[0027] In this embodiment, the door / window protection configuration is defined as the third protection configuration 50, and the number of third protection configurations 50 is set to two. The third protection configurations 50 are installed at equal intervals along the first axis X on the groove wall of the recessed groove 22b at the top of the inner window 20A. In practice, installing one or more third protection configurations 50 can similarly enhance the pressure resistance of the inner window 20A. In this embodiment, the third protection configuration 50 is installed between the frame 10 and the inner window 20A. In practice, however, the installation between the frame 10 and the outer window 20B is not excluded.
[0028] As shown in Figures 11 and 12, each of the third protective structures 50 includes a contact portion 51 and a bent portion 52. The bent portion 52 is connected to the contact portion 51. The contact portion 51 is formed extending along the vertical direction Z1 (see Figure 12). The bent portion 52 extends in the lateral direction Y1 from the point where it is connected to the contact portion 51, and then extends along the vertical direction Z1. Both the bent portion 52 and the contact portion 51 form an engagement groove 53. As a result, when the third protective structure 50 is attached to the groove wall of the groove 22b in the inner window 20A, the contact portion 51 is installed in the groove 22b, the engagement groove 53 of the third protective structure 50 engages with the groove wall of the groove 22b in the inner window 20A, and the groove width of the engagement groove 53 matches the thickness of the groove wall, thereby increasing the pressure resistance capacity of the inner window 20A. Further explanation is provided when the third protective structure 50 is installed in the groove wall of the outdoor side R2 adjacent to the groove 22b.
[0029] Furthermore, in this embodiment, the surface of the contact portion 51 facing the bent portion 52 has a protruding part 54. The protruding part 54 protrudes from the surface in a direction away from the surface and is located in the engagement groove 53. The groove 22b has a groove-shaped track 22F extending along the first axis X on the side that is in contact with the contact portion 51. The protruding part 54 is received in the groove-shaped track 22F. As a result, the third protective structure 50 is stably installed in the groove 22b so as not to fall out, and is slidably installed in the groove 22b on the first axis X, so that the user can adjust the position in which the third protective structure 50 is installed in the inner window 20A.
[0030] Referring to Figure 12, the surface of the bent portion 52 facing backward to the contact portion 51 has a support portion 55. The support portion 55 is in contact with the lateral direction Y1. portionThe support portion 55 gradually shrinks away from the frame 10, and a gap is maintained between the support portion 55 and the frame 10. As a result, when the third protective structure 50 is installed in the groove 22b, if the pressure on the indoor side R1 becomes greater than the pressure on the outdoor side R2, creating a negative wind pressure, the inner window 20A will be deflected by the pressure in the direction toward the outdoor side R2. In this case, the support portion 55 moves closer to the frame 10. By contacting the frame 10, it is possible to prevent the inner window 20A from being bent and distorted by force. Furthermore, it is possible to solve the problem of wind noise being generated when gas flows through the gap between the inner window 20A and the frame 10, and to provide suitable airtightness for the door / window. Due to the design that gradually shrinks, the area in contact between the support portion 55 and the frame 10 can be reduced, so that the third protective structure 50 can move smoothly and slide along the frame 10.
[0031] As shown in Figures 1, 2 and 13 to 15, the sliding door / window 4 according to the fourth preferred embodiment of the present invention has substantially the same configuration as the sliding door / window 1 according to the first preferred embodiment described above, and therefore will not be described again here. The difference lies in the configuration and installation location of the door / window protection structure. In this embodiment, the door / window protection structure is installed in the groove 22c on the side edge of the inner window 20A.
[0032] In this embodiment, the door / window protection configuration is defined as the fourth protection configuration 60, and the number of the fourth protection configurations 60 is set to three. The fourth protection configurations 60 are installed at equal intervals along the vertical axis Z in the grooves 22c on the side of the inner window 20A. However, in practice, one or more fourth protection configurations 60 may be installed. This similarly enhances the pressure resistance of the inner window 20A. In this embodiment, the fourth protection configuration 60 is installed between the frame 10 and the inner window 20A. However, this does not preclude the installation of the fourth protection configuration 60 between the frame 10 and the outer window 20B.
[0033] As shown in Figure 13, each of the fourth protective configurations 60 includes a contact arm 61 and an extension arm 62. The extension arm 62 has one end connected to the contact arm 61, while the other end extends along the lateral axis. The extension arm 62 is received at the bottom of the groove 22c in the inner window 20A and is in close contact with the bottom of the groove. The contact arm 61 has one end connected to the extension arm 62, while the other end extends along the first axis X. The free end of the extension arm 62 abuts against the groove wall in the groove 22c (see Figure 15), while the side away from the contact arm 61 abuts against another groove wall in the groove 22c. As a result, when pressure is applied to the indoor side R1 or outdoor side R2 of the inner window 20A, the inner window 20A is less likely to be distorted by support from the fourth protective configuration 60. Ultimately, this can provide optimal airtightness for doors and windows, and extend their lifespan.
[0034] Further explanation is provided, as shown in Figure 13, in this embodiment, the contact arm 61 has a protruding part 63 on the surface away from the extension arm 62. The protruding part 63 protrudes from the surface in a direction away from the surface. On the side of the recessed groove 22c that is in contact with the contact arm 61, there is an engagement groove 22 corresponding to the protruding part 63. F The protruding part 63 has the engagement groove 22 F It is received therein. As a result, the fourth protective component 60 is stably installed in the groove 22c so as not to fall out, and the fourth protective component 60 is received in each of the engagement grooves 22 F Because it is engaged in this manner, it does not move relative to the inner window 20A.
[0035] As shown in Figures 16, 17 and 21 to 23, the sliding door / window 5 according to the fifth preferred embodiment of the present invention includes a door / window protection configuration, a frame 10, and a window body. In this embodiment, the door / window protection configuration is defined as the fifth protection configuration 70, and the window body is defined as the outer window 20B installed on the outer side R2.
[0036] The outer window 20B is mounted on the frame 10 so as to be slidable along the first axis X. The fifth protective component 70 is installed between the frame 10 and the outer window 20B. In this embodiment, the fifth protective component 70 is described as being installed between the frame 10 and the outer window 20B as an example, but this does not preclude actually installing the fifth protective component 70 between the frame 10 and the inner window 20A.
[0037] In this embodiment, the number of fifth protective components 70 is set to two, and the fifth protective components 70 are installed at equal intervals along the first axis X in the grooves 22d at the top of the outer window 20B. However, in practice, one or more fifth protective components 70 may be installed. This similarly enhances the pressure resistance of the outer window 20B.
[0038] As shown in Figures 21 and 22, the fifth protective configuration 70 includes the first contact arm 71, the second contact arm 72, and the continuous arm 73. As shown in Figure 23, one end of the continuous arm 73 is connected to the first contact arm 71, while the other end extends along the lateral direction Y1 and is connected to the second contact arm 72. The first contact arm 71 is formed with one end connected to the continuous arm 73, while the other end extends in a direction opposite to the vertical direction Z1.
[0039] As shown in Figure 23, when the five protective components 70 are attached to the grooves 22d of the outer window 20B, the continuous arms 73 of each of the five protective components 70 are received at the bottom of the grooves 22d in the outer window 20B and are in close contact with the bottom of the grooves 22d.
[0040] Furthermore, the groove 22d has a groove-shaped track 22G extending along the first axis X on the side that contacts the first contact arm 71. The first contact arm 71 has a protruding part at a position corresponding to the groove-shaped track 22E. 711 The protruding part 711 is positioned from the first contact arm 71 to the grooved track 22G. OppositeThe protruding part 711 protrudes from the surface in a direction away from the surface. The protruding part 711 is elastically movable along the lateral axis Y. As a result, the fifth protective component 70 is stably installed in the groove 22d so as not to fall out, and is also slidably and detachably installed in the groove 22d along the first axis X, which allows the user to adjust the position in which the fifth protective component 70 is installed in the outer window 20B.
[0041] For example, if the user inserts the fifth protective component 70 into the groove 22 of the outer window 20B d When attempting to install it, the fifth protective component 70 is pushed toward the bottom of the groove 22d, causing the protruding component 711 to be pressed against the groove wall of the groove 22d and to contract inward. When the fifth protective component 70 is installed in the groove 22d, the protruding component 711 on the first contact arm 71 is retractable and received by the groove-shaped track 22G. The fifth protective component 70 is then stably received in the groove 22d of the outer window 20B so as not to fall out.
[0042] In this embodiment, the first contact arm 71 has a support portion 712. There is also a gap between the support portion 712 and the frame 10 (see Figure 23). As a result, when the fifth protective configuration 70 is installed in the groove 22d, the pressure on the indoor side R1 becomes greater than the pressure on the outdoor side R2, and when a negative wind pressure is formed, the outer window 20B is deflected by the pressure in the direction toward the outdoor side R2. In this case, the support portion 712 moves closer to the frame 10. By contacting the frame 10, it is possible to prevent the outer window 20B from being bent and distorted by force. Consequently, it is possible to solve the problem of wind noise being generated when gas flows through the gap between the outer window 20B and the frame 10, and to provide suitable airtightness of the door / window. The design, which gradually shrinks, reduces the area in contact between the support portion 712 and the frame 10, allowing the fifth protective component 70 to move smoothly and slide along the frame 10.
[0043] As shown in Figures 16, 17 and 24 to 26, the sliding door / window 6 according to the sixth preferred embodiment of the present invention includes a door / window protection configuration, a frame 10, and a window body. In this embodiment, the door / window protection configuration is defined as the sixth protection configuration 80, and the window body is defined as the exterior window 20B installed on the exterior side R2.
[0044] The outer window 20B is slidably mounted on the frame 10 along the first axis X. The sixth protective component 80 is installed between the frame 10 and the outer window 20B. In this embodiment, the sixth protective component 80 is described as being installed between the frame 10 and the outer window 20B as an example, but this does not preclude actually installing the sixth protective component 80 between the frame 10 and the outer window 20B.
[0045] In this embodiment, the explanation will be given using the example of having only one of the sixth protective components 80. The sixth protective component 80 is installed in the groove 22e on the outer edge of the outer window 20B (see Figure 26) and is located approximately in the center of the outer window 20B on the first axis X (see Figure 16). In practice, one or more sixth protective components 80 may be installed. For example, depending on the number of sixth protective components 80, the sixth protective components 80 may be installed at equal intervals on the first axis X in the groove 22e at the bottom of the outer window 20B. This will similarly enhance the pressure resistance of the outer window 20B.
[0046] As shown in Figures 24 to 26, the sixth protective configuration 80 includes the first contact arm 81, the second contact arm 82, and the continuous arm 83. The continuous arm 83 is connected to the first contact arm 81 and the second contact arm 82 on two opposing sides, respectively. Of these, the first contact arm 81 and the second contact arm 82 abut against two opposing inner groove walls in the groove 22e in the outer window 20B, as shown in Figure 26. The continuous arm 83 is received at the bottom of the groove 22e in the outer window 20B and is in close contact with the bottom of the groove 22e.
[0047] As shown in Figure 26, the continuous arm 83 has one end connected to the first contact arm 81, while the other end extends along the lateral direction Y1 and is connected to the second contact arm 82. The first contact arm 81 and the second contact arm 82 are formed with one end connected to the continuous arm 83 and the other end extending along the vertical direction Z1. The first contact arm 81 has a plurality of protruding parts 811 on its first surface facing backward to the second contact arm 82. The protruding parts 811 protrude in a direction away from the first surface. The second contact arm 82 has a protruding part 821 on its second surface facing backward to the first contact arm 81. The protruding part 821 protrudes in a direction away from the second surface. The groove wall of the groove 22e in the outer window 20B has a groove-shaped track 22H extending along the first axis X. The protruding part 821 is slidably installed in the groove-shaped track 22H.
[0048] As a result, when the sixth protective component 80 is installed in the groove 22e of the outer window 20B, the slight protruding part 821 As shown in Figure 26, by contacting the groove wall of the groove 22e, the sixth protective component 80 is stably received in the groove 22e of the outer window 20B so as not to fall out, and the slightly protruding parts 821 As the sixth protective component 80 gradually shrinks in the direction away from the first surface, it is installed in the groove 22e so as to be slidable on the first axis X, thereby allowing the user to adjust the position in which the sixth protective component 80 is installed on the outer window 20B.
[0049] As explained in Figure 25, the first contact arm 81 has a support portion 812 on the surface facing the second contact arm 82. The support portion 812 gradually retracts as it approaches the second contact arm 82 from a point further away along the lateral axis Y.
[0050] As described above, as shown in Figure 26, when the sixth protective configuration 80 is installed in the groove 22e, if the pressure on the indoor side R1 becomes greater than the pressure on the outdoor side R2, a negative wind pressure is formed, and the outer window 20B is deflected by the pressure in the direction toward the outdoor side R2. In this case, the support portion 812 approaches the direction of the track T in the frame 10. By contacting the track T of the frame 10, it is possible to prevent the inner window 20A from being bent and distorted by force. Consequently, the problem of wind noise being generated when gas flows through the gap between the outer window 20B and the frame 10 can be solved, and suitable airtightness of the door / window can be provided. Moreover, because the design gradually shrinks, the area in contact between the support portion 812 and the track T of the frame 10 can be reduced, so that the sixth protective configuration 80 can move smoothly and slide along the track of the frame 10.
[0051] Furthermore, the explanation is that, in practice, the user may use the inner window 20A or the outside At least one of the door / window protection configurations 30, 40, 40', 50, 60, 70, and 80 described in each of the above embodiments, or a combination thereof, may be attached to the groove on the outer edge of window 20B.
[0052] In short, the effects of the present invention are that the door / window protection configuration enhances the pressure resistance of the window body, provides support to the window body when it is subjected to wind pressure, thereby preventing distortion of the window body, solves the problem of wind noise being generated when gas flows between the window body and the frame, and improves the quality of life for users by providing suitable airtightness of the door / window.
[0053] The above are merely preferred embodiments of the present invention, and it goes without saying that any equivalent substitutions based on the specification and scope of the present invention are included within the scope of the present invention. [Explanation of Symbols]
[0054] 1, 2, 3, 4, 5, 6 Sliding doors and windows 10 frames 20A Interior window 20B Exterior window 22a, 22b, 22c, 22d, 22e groove 22A, 22B Inner groove wall 22C, 22D, 22E 、2 2G, 22H grooved track twenty two F Engagement groove 30 First protection configuration 31, 41, 71, 81 First contact arm 311, 431, 54, 63, 711, 811, 821 Protruding parts 312, 31a, 422, 55, 712, 812 Support part 32, 42, 72, 82 Second contact arm 33, 43, 73, 83 consecutive arms 40, 40' Second protection configuration 421, 53 Engagement grooves 42a, 52 Folded parts 42b, 51 Contact part 50 Third protection configuration 60 Fourth protection configuration 61 Contact Arm 62 Extendable Arm 70 Fifth protection configuration 80 Sixth protection configuration R1 Interior side R2 Outdoor side T orbit X first axis Y horizontal axis Y1 Horizontal direction Z vertical axis Z1 vertical direction D1, D2, D3 width
Claims
1. A door / window protection configuration used in a sliding door / window including a frame and a window body attached to the frame, which is installed in a groove on the outer edge of the window body and located between the window body and the frame, First contact arm and The second contact arm and It includes a continuous arm to which the first contact arm and the second contact arm are connected, respectively, on two opposing sides, The first contact arm and the second contact arm each contact two opposing inner groove walls in the recessed groove of the window body. A track is provided at the lower part of the frame on which the window body can slide. The continuous arm is received at the bottom of the groove in the window body, The first contact arm or the second contact arm has a support portion for which the track contacts, and there is a distance between the support portion and the frame. Defining the lateral and vertical directions, the continuous arm is formed extending in the lateral direction, and the first contact arm and the second contact arm are formed such that one end is connected to the continuous arm, while the other end extends in the vertical direction. The first contact arm has a protruding part on the surface facing backward to the second contact arm, and the protruding part protrudes from the surface in a direction away from the surface, A door / window protection configuration characterized in that, when a first axis perpendicular to the lateral and vertical directions is defined, the width of the first contact arm on the first axis is greater than the width of the second contact arm on the first axis.
2. The door / window protection configuration according to claim 1, characterized in that the width of the first contact arm on the first axis is greater than the width of the continuous arm on the first axis.
3. A door / window protection configuration used in a sliding door / window including a frame and a window body attached to the frame, which is installed in a groove on the outer edge of the window body and located between the window body and the frame, First contact arm and The second contact arm and It includes a continuous arm to which the first contact arm and the second contact arm are connected, respectively, on two opposing sides, The first contact arm and the second contact arm each contact two opposing inner groove walls in the recessed groove of the window body. A track is provided at the lower part of the frame on which the window body can slide. The continuous arm is received at the bottom of the groove in the window body, The first contact arm or the second contact arm has a support portion for which the track contacts, and there is a distance between the support portion and the frame. The second contact arm includes a connected contact portion and a bent portion, The door / window protection configuration is characterized in that, defining the lateral and vertical directions, the continuous arm is formed extending in the lateral direction, the first contact arm has one end connected to the continuous arm and the other end extending in a direction opposite to the vertical direction, the contact portion has one end connected to the continuous arm and the other end extending in a direction opposite to the vertical direction and connected to the bent portion, the bent portion extends in the lateral direction from the point where it is connected to the contact portion and then extends in the vertical direction, and the outer walls of the bent portion and the contact portion both form engagement grooves.
4. The door / window protection configuration according to claim 3, characterized in that the outer wall facing backward to the contact portion in the bent portion has the support portion on one side.
5. The door / window protection configuration according to claim 1, characterized in that the surface of the first contact arm facing the second contact arm has the support portion.
6. A door / window protection configuration according to any one of claims 1 to 5, The aforementioned frame and, A window body having a groove is mounted on the frame so as to be slidable along the first axis, The sliding door / window protection configuration is installed between the frame and the window body, and the first contact arm and the second contact arm each contact two opposing inner groove walls in the groove, and the continuous arm is received at the bottom of the groove.
7. A door / window protection configuration used in a sliding door / window including a frame and a window body attached to the frame, which is installed in a groove on the outer edge of the window body and located between the window body and the frame, First contact arm and The second contact arm and It includes a continuous arm to which the first contact arm and the second contact arm are connected, respectively, on two opposing sides, The first contact arm and the second contact arm each contact two opposing inner groove walls in the recessed groove of the window body. A track is provided at the lower part of the frame on which the window body can slide. The continuous arm is received at the bottom of the groove in the window body, The first contact arm or the second contact arm has a support portion for which the track contacts, and there is a distance between the support portion and the frame. Door and window protection configuration; The frame; and A window body having a groove, mounted on the frame so as to be slidable along the first axis; Including; The sliding door / window protection configuration is installed between the frame and the window body, and the first contact arm and the second contact arm each contact two opposing inner groove walls in the groove, and the continuous arm is received at the bottom of the groove.