DOOR GUIDE FRAME OF DETACHABLE SEGMENT STRUCTURE FOR SLIDING WINDOWS AND DOORS

20200056419 ยท 2020-02-20

Assignee

Inventors

Cpc classification

International classification

Abstract

The present invention relates to a door guide frame of a detachable segment structure for sliding windows and doors, in which in order to improve heat insulating performance of the door guide frame, the door guide frame is divided into an outer body portion and an inner body portion and a thermal break is disposed therebetween, and even when a second pocket guide segment accommodated in the inner side surface of the inner body portion and a third pocket guide segment accommodated in the inner side surface of the outer body portion are separated from an upper cap region of an aluminum material and have a lower leg region formed of a thermal break material, a supporting means capable of providing a good supporting force for the lower leg region formed of such thermal break material is provided without affecting the heat insulating performance of the door guide frame.

Claims

1. A door guide frame of detachable segment structure for sliding windows and doors, in the door guide frame 100, a pocket guide 130 being detachably attached to a main body portion 120 of the door guide frame 100, wherein the pocket guide 130 which is laterally guided and supported on both the inner and outer sides of the sliding window is detachably installed from the main body portion 120 of the door guide frame 100; the pocket guide 130 is formed as a pocket guide segment (130: 130{circle around (a)} or 130{circle around (b)}) that is detachable from the main body portion 120 of the door guide frame 100; and the pocket guide segments (130: 130{circle around (a)} or 130{circle around (b)}) are mutually removably installed on both the inner and outer sides of the sliding window along the traveling direction of the roller guide rail 110; wherein, in a door guide frame 100 of a separable and detachable segment structure for sliding windows and doors, in which the door guide frame 100 is divided into an outer main body portion 120-out and an inner main body portion 120-in, a thermal bridge blocking member 120m is disposed in the middle (between the outer main body portion and the inner main body portion), a second pocket guide segment 130-2 being received in an outer surface of the inner main body portion 120-in and a third pocket guide segment 130-3 being received in an inner surface of the outer main body portion 120-out are separated from an upper cap region of the aluminum material to form a lower leg region 130m formed of a heat bridge blocking material; the door guide frame 100 of a separable and detachable segment structure comprising; in order to improve the heat insulation performance of the door guide frame, an external heat bridge blocking member 120m-out, one side of which is coupled to an inner side surface of the outer main body portion 120-out, and an internal heat bridge blocking member 120m-in, one side of which is coupled to an external side surface of the inner main body portion 120-in; and an intermediate connector 120c of aluminum material having both side surfaces joined to the other side surfaces of the external heat bridge blocking member 120m-out and the internal heat bridge blocking member 120m-in; and wherein, the door guide frame of a separable and detachable segment structure being characterized in that, in order to support the lower leg region 130m-f formed by the heat bridge blocking material, of the second pocket guide segment 130-2 received in an outer surface of the inner main body portion 120-in and the third pocket guide segment 130-3 received in an inner surface of the outer main body portion 120-out, a separation support region 120ct is formed in an upper surface of the intermediate connector 120c.

2. The door guide frame of detachable segment structure for sliding windows and doors of claim 1, characterized in that the separation supporting part 120ct is formed integrally upwardly from the upper surface of the intermediate connector 120c and an upper supporting part 120ct-1 of the separation supporting part 120ct is formed wider than the lower protruding part.

3. The door guide frame of detachable segment structure for sliding windows and doors of claim 2, characterized in that seating projections 130m-fe is formed in the upper support portion 120ct-1 of the separation support portion 120ct, the seating protrusion 130m-fe is formed on the upper surface of the second pocket guide segment 130-2 and the third pocket guide segment 130-3 and is protruded sideward from the lower leg region 130m-f formed of the heat bridge blocking member, are seated and supported facing each other.

4. The door guide frame of detachable segment structure for sliding windows and doors of claim 3, characterized in that a vertical guide frame 101 installed vertically on both sides of the main body 120 constituting the door guide frame 100 is divided into an outer vertical guide frame and an inner vertical guide frame, and an outer side heat bridge blocking member 101m-out, a connector 101c, and an inner side heat bridge blocking member 101m-in between them are arranged, and the outer side heat bridge blocking member 101m-out, the connector 101c, and the inner side heat bridge blocking member 101m-in are respectively connected to the outer heat bridge blocking member 120m-out of the main body 120 of the door guide frame, the intermediate connector 120c, and the inner heat bridge blocking member 120m-in.

5. The door guide frame of detachable segment structure for sliding windows and doors of claim 4, characterized in that in order to additionally provide an insect-proof window installation structure in the sliding window system, at an outer front surface of the door guide frame 100, in order to allow the sliding insect-proof window 600 to be integrally installed into an insect-proof window installation frame 500 and to be able to separate an installed sliding insect-proof window 600 from the insect-proof window installation frame 500, an insect-proof window installation frame 500 is additionally provided, wherein the insect-proof window installation frame 500 comprises; an insect-proof screen mounting frame main body pocket 510 installed in a pocket shape; a rail 522 extending along the sliding movement direction of the sliding insect-proof window 500 at a position having a predetermined distance from the bottom surface or the ceiling of the insect-proof screen installation main body portion pocket 510; and a rail bridge 520 detachably inserted into the insect-proof screen installation main body portion pocket 510; and a fastening groove 101a for the insect-proof window mounting frame is provided on at least one outer surface of an outer surface of the outer vertical guide frame of the vertical guide frame 101 and a extended outer surface 102-out extended from an outer surface of the outer main body 120-out forming the main body 120 of the guide frame of the door guide frame 100, and that a fastening protrusion 501 being engaged with the fastening groove 101a is protruded from the insect-proof screen installation main body portion pocket 510.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

[0020] FIGS. 1 to 4 are cross-sectional views of an operating state of a sliding window installation structure including a door guide frame of a segment structure detachable and detachable according to the related art to which the present invention is applied.

[0021] FIG. 5 is a partially exploded perspective view of the position of a broken line taken along line B-B in FIG. 4, and is a perspective view showing an embodiment in which a sliding window installation structure is applied to an aluminum window frame system.

[0022] FIG. 6 is a cross-sectional view illustrating an application example in which the structure shown in FIG. 1 to FIG. 4 and FIG. 5.

[0023] FIG. 7 is a longitudinal sectional view of FIG. 6, and FIG. 8 is an enlarged view of a portion A of FIG. 7.

[0024] FIG. 9 is a cross-sectional view of a sliding window installation structure having a door guide frame of a separable and detachable segment structure according to a preferred embodiment of the present invention.

[0025] FIG. 10 is a longitudinal sectional view of the embodiment shown in FIG. 9.

[0026] FIG. 11 is an enlarged view of a portion B in FIG. 10.

[0027] FIG. 12 is a cross-sectional view illustrating a state in which an insect-proof window installation frame including a sliding insect-proof window is additionally installed in the embodiment shown in FIG. 9.

[0028] FIG. 13 is a longitudinal section of a further embodiment shown in FIG. 12.

[0029] FIG. 14 is an enlarged view of a portion C in FIG. 13.

MODE FOR CARRYING OUT THE INVENTION

[0030] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings such that a person ordinarily skilled in the art to which the present invention belongs may easily embody the present invention. However, the present invention may be implemented in various forms and is not limited to the embodiments described herein.

[0031] As described above, the present invention is intended to solve a problem of the prior art, FIGS. 9, 10, and 11 are cross-sectional views of an installation state of a preferred embodiment of a sliding window installation structure (a sliding window installation structure including a door guide frame of a separable and detachable segment structure) according to the basic concept of the present invention are shown, and according to a preferred embodiment of the present invention illustrated through these figures,

[0032] As shown in FIG. 9, in the door guide frame 100, a pocket guide 130 being detachably attached to a main body portion 120 of the door guide frame 100, wherein the pocket guide 130 which is laterally guided and supported on both the inner and outer sides of the sliding window is detachably installed from the main body portion 120 of the door guide frame 100; the pocket guide 130 is formed as a pocket guide segment (130: 130{circle around (a)} or 130{circle around (b)}) that is detachable from the main body portion 120 of the door guide frame 100; and the pocket guide segments (130: 130{circle around (a)} or 130{circle around (b)}) are mutually removably installed on both the inner and outer sides of the sliding window along the traveling direction of the roller guide rail 110;

[0033] wherein, in a door guide frame 100 of a separable and detachable segment structure for sliding windows and doors, in which the door guide frame 100 is divided into an outer main body portion 120-out and an inner main body portion 120-in, a thermal bridge blocking member 120m is disposed in the middle (between the outer main body portion and the inner main body portion), a second pocket guide segment 130-2 being received in an outer surface of the inner main body portion 120-in and a third pocket guide segment 130-3 being received in an inner surface of the outer main body portion 120-out are separated from an upper cap region of the aluminum material to form a lower leg region 130m formed of a heat bridge blocking material, as shown FIG. 10;

[0034] the door guide frame 100 of a separable and detachable segment structure comprising; in order to improve the heat insulation performance of the door guide frame,

[0035] an external heat bridge blocking member 120m-out, one side of which is coupled to an inner side surface of the outer main body portion 120-out, and an internal heat bridge blocking member 120m-in, one side of which is coupled to an external side surface of the inner main body portion 120-in; and

[0036] an intermediate connector 120c of aluminum material having both side surfaces joined to the other side surfaces of the external heat bridge blocking member 120m-out and the internal heat bridge blocking member 120m-in;

[0037] and wherein, the door guide frame of a separable and detachable segment structure being characterized in that, in order to support the lower leg region 130m-f formed by the heat bridge blocking material, of the second pocket guide segment 130-2 received in an outer surface of the inner main body portion 120-in and the third pocket guide segment 130-3 received in an inner surface of the outer main body portion 120-out, a separation support region 120ct is formed in an upper surface of the intermediate connector 120c.

[0038] Here, as shown in an enlarged view of FIG. 11, it is preferable that the separation supporting part 120ct is formed integrally upwardly from the upper surface of the intermediate connector 120c and an upper supporting part 120ct-1 of the separation supporting part 120ct is formed wider than the lower protruding part. Also, it is preferable that seating projections 130m-fe, which is formed in the upper support portion 120ct-1 of the separation support portion 120ct, the seating protrusion 130m-fe is formed on the upper surface of the second pocket guide segment 130-2 and the third pocket guide segment 130-3 and is protruded sideward from the lower leg region 130m-f formed of the heat bridge blocking member, are seated and supported facing each other.

[0039] Meanwhile, according to a more preferred embodiment of the present invention, as shown in FIG. 9, a vertical guide frame 101 installed vertically on both sides of the main body 120 constituting the door guide frame 100 is divided into an outer vertical guide frame and an inner vertical guide frame, it is preferable to arrange and connect an outer side heat bridge blocking member 101m-out, a connector 101c, and an inner side heat bridge blocking member 101m-in between them, therefore the outer side heat bridge blocking member 101m-out, the connector 101c, and the inner side heat bridge blocking member 101m-in are respectively connected to the outer heat bridge blocking member 120m-out of the main body 120 of the door guide frame, the intermediate connector 120c, and the inner heat bridge blocking member 120m-in, so as to improve the heat insulation performance of the entire sliding window system.

[0040] In addition, according to a further preferred embodiment of the present invention, as shown in FIGS. 12 to 14, in order to additionally provide an insect-proof window installation structure in the sliding window system, at an outer front surface of the door guide frame 100, in order to allow the sliding insect-proof window 600 to be integrally installed into an insect-proof window installation frame 500 and to be able to separate an installed sliding insect-proof window 600 from the insect-proof window installation frame 500, an insect-proof window installation frame 500 is additionally provided, wherein the insect-proof window installation frame 500 comprises;

[0041] an insect-proof screen mounting frame main body pocket 510 installed in a pocket shape;

[0042] a rail 522 extending along the sliding movement direction of the sliding insect-proof window 500 at a position having a predetermined distance from the bottom surface or the ceiling of the insect-proof screen installation main body portion pocket 510; and

[0043] a rail bridge 520 detachably inserted into the insect-proof screen installation main body portion pocket 510.

[0044] Further, a fastening groove 101a for the insect-proof window mounting frame may be provided on at least one outer surface of an outer surface of the outer vertical guide frame of the vertical guide frame 101 and a extended outer surface 102-out extended from an outer surface of the outer main body 120-out forming the main body 120 of the guide frame of the door guide frame 100, and it is preferable that a fastening protrusion 501 that can be engaged with the fastening groove 101a is protruded from the insect-proof screen installation main body portion pocket 510.

[0045] As shown in FIG. 14, an inner side of the insect-proof screen mounting frame main body part pocket 510 is preferably provided with a latching end 514 protruding and formed along a traveling direction of the rail 522. At both inner and outer ends of the rail bridge 520, it is preferable that an engagement protrusion 524 which is fitted to the latching end 514 is provided along the traveling direction of the rail 522. The rail bridge 520 is prevented from separating from the insect-proof screen installation main body portion pocket 510 unless a predetermined frictional force is generated and an external force is applied at a portion where the latching end 514 and the engagement protrusion 524 are engaged, it is preferable that the rail 522 is protruded from the upper surface of the rail bridge 520 and is easily detached and separated when the rail 522 is gripped and pulled.

[0046] The rail bridge 520 may be formed of two or more rail bridge segments detachable from the inside of the insect-proof screen installation main body portion pocket 510.

[0047] It should be understood by those skilled in the art that a single window 200 other than the sliding window 400 is illustrated in the form of a fixed window in the drawings, but may be a sliding window other than a fixed window within the scope of the present invention. It will be obvious.

[0048] According to the basic concept of the present invention, the pocket guide segments 130{circle around (a)} and 130{circle around (b)} supporting the sliding window 400 can be removed from the door guide frame 100, separation from the door guide frame 100 or installation on the door guide frame 100 may be performed, which process is substantially the same as the process outlined in FIGS. 1 to 4 of the accompanying drawings. The entire structure and operation of the present invention are described in Korean Patent Application No. 10-2012-0047789 (Korean Patent Registration No. 10-1367835) filed by the inventor of the present invention and PCT Application No. PCT/KR2013/003912 published in a laid-open Publication No. WO 2013/168943A1), which is incorporated herein by reference in its entirety.

[0049] However, the scope of the present invention to be protected is not limited thereto and may cover various types of sliding windows (door or window) to which the present invention is applied, and various modifications and changes using the basic concept of the present invention defined in the accompanying claims also belong to the scope of the present invention.