CN216517739U - Insect-proof cap arranged on drain hole of window frame - Google Patents

Insect-proof cap arranged on drain hole of window frame Download PDF

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Publication number
CN216517739U
CN216517739U CN202090000621.9U CN202090000621U CN216517739U CN 216517739 U CN216517739 U CN 216517739U CN 202090000621 U CN202090000621 U CN 202090000621U CN 216517739 U CN216517739 U CN 216517739U
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CN
China
Prior art keywords
drain hole
cap
window frame
hole
vermin
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CN202090000621.9U
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Chinese (zh)
Inventor
金成中
郑凤桓
金泰完
金力灿
李儒汉
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Leerxinghuaos Co ltd
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Leerxinghuaos Co ltd
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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/52Devices affording protection against insects, e.g. fly screens; Mesh windows for other purposes
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/14Measures for draining-off condensed water or water leaking-in frame members for draining off condensation water, throats at the bottom of a sash

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Civil Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Insects & Arthropods (AREA)
  • Pest Control & Pesticides (AREA)
  • Architecture (AREA)
  • Catching Or Destruction (AREA)
  • Door And Window Frames Mounted To Openings (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Abstract

The utility model relates to a mothproof cap arranged on a drain hole of a window frame, which comprises: an inner cap provided inside the drain hole, having a space portion with a predetermined size opened on a bottom surface of the case, having an opening portion formed on a front surface of the case to communicate with the drain hole, and having a plurality of through holes formed on both side surfaces and an upper surface of the case; and an outer cap disposed outside the drain hole, wherein a hole communicated with the drain hole is formed in the center of the front surface of the main body, a pair of clamping pieces are formed on the two sides of the rear surface of the main body in a protruding manner, a clamping part and a buckling part are sequentially formed on the clamping pieces in a spaced manner, the clamping part is used for buckling and fixing the inner periphery of the drain hole, and the buckling part is used for buckling and fixing the inner periphery of the opening part.

Description

Insect-proof cap arranged on drain hole of window frame
Technical Field
The utility model relates to an insect-proof cap for doors and windows, in particular to an insect-proof cap which is arranged on a drain hole of a window frame and is used for draining accumulated water in the window frame outwards and preventing pests from flowing in.
Background
In general, a window or door refers to various windows or doors provided in an opening portion such as a window or a doorway in order to insulate the inside from the outside of a building, and a window frame for supporting the window may be classified into a wood window frame and a metal window frame according to materials used, and the window frame is currently made of synthetic resin such as polyvinyl chloride (PVC).
On the other hand, a drain hole is formed in the window frame during the process, and the drain hole is convenient for discharging rainwater in summer or water drops and the like generated due to the condensation phenomenon in winter to prevent the rainwater and the like from flowing into the room.
However, the drain hole formed in the above manner is easy to drain water, but there is a problem that pests such as fruit flies flow into the room through the drain hole.
In this regard, korean laid-open patent No. 10-2013-0052070 proposes an insect-proof cap which is easy to drain rainwater and the like and can prevent the invasion of pests.
However, the conventional insect-proof cap is difficult to be detached when cleaning or maintenance is performed after installation, and it is impossible to effectively drain rainwater and prevent invasion of pests.
Prior art documents:
korean laid-open patent No. 10-2013-0052070
SUMMERY OF THE UTILITY MODEL
Technical problem
The present invention has been made to solve the above problems, and an object of the present invention is to provide an insect-proof cap installed at a drain hole of a window frame, which is composed of an outer cap and an inner cap, is easily detachably installed at the drain hole, is easy to drain, can effectively prevent inflow of vermin, and can improve efficiency of maintenance and management such as cleaning and maintenance.
The technical problems to be solved by the present invention are not limited to the above technical problems, and a person skilled in the art can clearly understand a plurality of other technical problems not mentioned through the following description.
Technical scheme
In one embodiment, the vermin cap for a drain hole provided in a window frame according to the present invention for achieving the above object is configured by an inner cap in which a bottom surface of a case is opened and a space portion having a predetermined size is formed therein, an opening portion communicating with the drain hole is formed in a front surface of the case, and a plurality of through holes are formed in both side surfaces and an upper surface of the case.
In another embodiment, the insect-proof cap for a drain hole of a window frame of the present invention is composed of an outer cap, wherein a hole communicating with the drain hole is formed at the center of the front surface of a main body, a blocking member is provided at the hole, and a pair of locking pieces are formed at both sides of the rear surface of the main body in a protruding manner, and the locking pieces are formed with locking parts to lock and fix the inner circumference of the drain hole.
As another embodiment, the insect-proof cap provided at the drain hole of the window frame according to the present invention comprises an inner cap and an outer cap, wherein the inner cap is provided at the inner side of the drain hole, the bottom surface of the case body is open and has a space portion with a predetermined size therein, an opening portion communicating with the drain hole is formed at the front surface of the case body, and a plurality of through holes are formed at both side surfaces and the upper surface of the case body; the outer cap is arranged on the outer side of the drain hole, a hole communicated with the drain hole is formed in the center of the front surface of the main body, a pair of clamping pieces are formed on two sides of the rear surface of the main body in a protruding mode, clamping parts and buckling parts are sequentially formed in the clamping pieces in a spaced mode, the clamping parts are used for buckling and fixing the inner periphery of the drain hole, and the buckling parts are used for buckling and fixing the inner periphery of the opening part.
More preferably, an anti-moving protrusion having a tip partially fitted into the drainage hole is formed at an inner peripheral edge of the opening portion.
More preferably, a plurality of anti-slip protrusions are formed on both side surfaces of the case, and the through holes are formed between the anti-slip protrusions.
More preferably, the front and rear surfaces of the case are bent in a length direction to be coupled between the window sash rail and the insect net rail in an interference fit manner.
More preferably, both side surfaces of the case may be inclined.
More preferably, a waterproof film protrusion may be formed at an inner circumference of the hole of the outer cap.
More preferably, a blocking member is provided in the hole of the outer cap.
More preferably, the blocking member is detachably assembled in the hole.
Advantageous effects
The insect-proof cap provided in the drain hole of the window frame of the present invention has the following effects.
That is, when the vermin proof cap is composed of the inner cap and the outer cap, the inner cap is positioned at the inner side and the outer cap is positioned at the outer side through the drain hole of the vermin proof net rail, and they can be easily and rapidly combined and separated from each other, so that the efficiency of maintenance and management such as cleaning and maintenance of the vermin proof cap can be doubled, and the vermin proof cap can be operated only by the inner cap or the outer cap as needed, and thus, it is convenient for the user.
The effects of the present invention described above are naturally exhibited by the structure of the contents described, and are not related to the recognition by the inventors, and therefore, the effects described above are only some of the effects described, and should not be construed as describing all the effects that the inventors have grasped or actually existed.
The effects of the present invention should be further understood from the description throughout the specification, and even if not explicitly stated herein, the effects should be considered as being described in the present application by those skilled in the art as long as they can be recognized by the present application.
Drawings
Fig. 1 is a perspective view illustrating an insect-proof cap provided to a drain hole of a window frame according to an embodiment of the present invention.
Fig. 2 is a separated perspective view illustrating a separated state of an insect-proof cap provided to a drain hole of a window frame according to an embodiment of the present invention.
Fig. 3 is a separated perspective view illustrating the structures of an inner cap and an outer cap constituting an anti-insect cap according to an embodiment of the present invention.
Fig. 4 is a perspective view illustrating a structure of an inner cap according to another embodiment of the present invention.
Fig. 5 is a longitudinal sectional view illustrating a state in which the inner cap in fig. 4 is provided to the drain hole to constitute the vermin proof cap only by the inner cap.
Fig. 6 is a bottom perspective view illustrating a coupled state of an inner cap and an outer cap constituting an anti-insect cap according to an embodiment of the present invention.
Fig. 7 is a bottom view illustrating a coupled state of an inner cap and an outer cap constituting an anti-insect cap according to an embodiment of the present invention.
Fig. 8 is a perspective view illustrating a structure of an outer cap according to another embodiment of the present invention.
Fig. 9 is a plan sectional view illustrating a state in which the outer cap in fig. 8 is provided to the drain hole to constitute the anti-insect cap only by the outer cap.
Fig. 10 is a side sectional view illustrating a process of providing an inner cap and an outer cap at a drain hole of a window frame according to an embodiment of the present invention.
Reference numerals:
100. 100': the inner cap 110: box body
111: space portion 112: opening part
113: through hole 114: anti-moving protrusion
115: anti-slip projections 200, 200': external cap
210: the main body 211: hole (C)
212: waterproof film protrusion 213: clamping stop piece
214: locking portion 214 a: first protrusion
215: the engaging portion 215 a: second protrusion
216: the blocking member 300: window frame
310: sash rail 320: insect-proof net track
321: drain hole
Detailed Description
Hereinafter, the configuration and operation of the preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.
This is for the purpose of describing in detail so that those skilled in the art can easily carry out the contents of the present invention, and the technical idea and scope of the present invention are not limited thereto.
Note that, when a plurality of constituent elements in each drawing are denoted by reference numerals, the same constituent elements are denoted by the same reference numerals as much as possible even when they are shown in different drawings, and terms which are defined intentionally in consideration of the configuration and action of the present invention may be changed according to the intention of a user or an operator or a convention, and the definitions of the terms should be determined based on the contents of the entire application.
First, the vermin proof cap of the present invention, which is provided to the drain hole of the window frame, may be roughly divided into an inner cap 100 provided to the inner side of the drain hole 321 and an outer cap 200 provided to the outer side of the drain hole 321 to be coupled to the inner cap 100, wherein the drain hole 321 is formed in the vermin proof mesh rail 320, and each constituent element will be described in more detail as follows.
Inner cap 100
First, as shown in fig. 1, the inner cap 100 is disposed between the sash rail 310 and the insect net rail 320 of the window frame 300 and directly behind the drain hole 321 of the insect net rail 320, for guiding rainwater and the like accumulated on the window frame 300 to be discharged outside through the drain hole, and preventing vermin from flowing into the room through the drain hole.
With reference to fig. 2 and 3, a preferred embodiment of the inner cap 100 is described in detail as follows.
The inner cap 100 is constructed of a hexahedral case 110, the bottom surface of which is open and the inside of which has a space part 111 of a prescribed size, and the case 110 may have a hexahedral shape with a long length and a short width due to being located between the window sash rail 310 and the insect net rail 320.
Since the case 110 is positioned right behind the drain holes 321 formed in the insect net rail 320, the opening 112 having a predetermined size is formed in the front surface of the case 110 so as to communicate with the drain holes 321.
Since the opening 112 may be formed on both the front and rear surfaces of the case 110 and when the opening 112 is formed on both the front and rear surfaces of the case 110, it is not necessary to consider the directionality of the front and rear surfaces of the case 110 on which the opening 112 is formed in the process of disposing the case 110 between the window sash rail 310 and the insect net rail 320, and thus, it is possible to prevent the trouble of re-disposing the case 110 between the window sash rail 310 and the insect net rail 320 due to misalignment between the drain hole 321 and the opening 112.
A plurality of through holes 113 are formed on both side surfaces and an upper surface of the case 110, the size of the through holes 113 is such that rainwater and the like can pass but vermin cannot pass, and when the through holes 113 are formed in a size such that vermin can pass according to design conditions, a locking member in a shape of a letter or a grid or the like may be formed at the through holes 113 to prevent vermin from flowing in.
The number, arrangement, position, and the like of the through holes 113 formed in the case 110 are not limited to a certain form, and various modifications may be made in consideration of the moving direction, moving amount, and the like of rainwater and the like moving in the window frame 300.
It is preferable that both side surfaces of the case 110 are inclined, and when the through-hole 113 is formed at the side surface in the inclined state, a contact area between rainwater or the like moving along both side surfaces of the case 110 and both side surfaces is increased, so that more rainwater or the like can smoothly pass through the through-hole 113, and when the case 110 is interposed between the window sash rail 310 and the insect net rail 320, an external force is applied in a manner of grasping both side surfaces of the case 110, and thus, the external force can be accurately and efficiently transmitted to both side surfaces of the inclined case 110.
In addition, both side surfaces of the case 110 are portions to be held by a hand of a user when the inner cap 100 is installed or separated, and thus, a plurality of anti-slip protrusions 115 in a straight shape may be formed on both side surfaces of the case 110 in a width direction.
When the anti-slip protrusions 115 are formed on both side surfaces of the case body 110, the through-holes 113 formed on both side surfaces of the case body 110 may be formed between each of the anti-slip protrusions 115, or may be formed to cross the anti-slip protrusions 115.
On the other hand, the inner cap 100 may be coupled to the outer cap 200 described later and disposed at the water drain hole 321 to form the vermin proof cap, or the vermin proof cap may be formed only by the inner cap 100' without using the outer cap 200.
When only the inner cap 100 'is disposed at the drain hole 321 without using the outer cap 200 to form the vermin proof cap, if the inner cap 100' positioned between the window sash rail 310 and the vermin proof mesh rail 320 is unnecessarily moved, the opening 112 formed at the case 110 of the inner cap 100 'cannot communicate with the drain hole 321 of the vermin proof mesh rail 320, and thus rainwater and the like flowing into the inside of the window frame 300 cannot be discharged through the drain hole 321, and thus it is necessary to prevent the inner cap 100' disposed between the window sash rail 310 and the vermin proof mesh rail 320 from being unnecessarily moved.
Therefore, as an example of preventing the inner cap 100' from being unnecessarily moved, a front surface or a rear surface in a length direction of the case 110, or both the front surface and the rear surface in a length direction may be curved to protrude toward the inner surfaces of the window sash rail 310 and the insect-proof net rail 320, and a curved portion of the case 110 may be coupled to the inner surface of the window sash rail 310 or the insect-proof net rail 320, or the inner surfaces of the window sash rail 310 and the insect-proof net rail 320 in an interference fit manner, so as to prevent unnecessary play.
In addition, as another embodiment for preventing the unnecessary movement of the inner cap 100', as shown in fig. 4 and 5, movement preventing protrusions 114 protruding toward the front may be formed at both sides of the upper side among the inner circumference of the opening portion 112 of the case 110, and when the case 110 is disposed between the window sash rail 310 and the insect net rail 320, the movement preventing protrusions 114 may be in a state of being caught at the inner circumference of the water discharge hole 321 of the insect net rail 320, thereby preventing the unnecessary movement of the case 110 disposed between the window sash rail 310 and the insect net rail 320.
Among them, when the movement prevention protrusion 114 excessively protrudes from the inner circumferential edge of the opening portion 112 of the case 110, it may cause unnecessary interference between the movement prevention protrusion 114 and the inner surface of the anti-insect net rail 320 in the process of inserting the case 110 between the window sash rail 310 and the anti-insect net rail 320, and therefore, it is preferable to properly protrude within the elastic range, and it is preferable to incline the bottom surface of the movement prevention protrusion 114 so that the movement prevention protrusion 114 smoothly moves along the inner surface of the anti-insect net rail 320.
In addition, in order to prevent the case 110 from being unnecessarily moved, the movement prevention protrusion 114 may be formed while having the aforementioned curved shape of the case 110 to more effectively prevent the case 110 from being unnecessarily moved.
Outer cap 200
As shown in fig. 2, the outer cap 200 is disposed in front of the drain hole 321, and is combined with the inner cap 100 disposed between the window sash rail 310 and the insect net rail 320 and behind the drain hole 321, wherein the drain hole 321 is formed in the insect net rail 320.
A preferred embodiment of the outer cap 200 is described in detail by means of fig. 3 and 6.
The body 210 of the outer cap 200 has a hole 211 formed at the center of the front surface thereof in a shape and size corresponding to the water discharge hole 321, and a pair of locking pieces 213 formed at right angles to the rear surface and protruding by a predetermined length at opposite sides of the rear surface of the body 210, the locking pieces 213 being caught in the water discharge hole 321.
When rainwater or the like drained through the drainage hole 321 moves, a water film is formed on the hole 211 formed at the central portion of the front surface of the body 210 due to surface tension and the water film reduces a drainage function, and therefore, it is necessary to prevent the water film from being formed on the hole 211, and for this, at least one waterproof film protrusion 212 protruding toward the central portion may be formed at the inner circumferential edge of the hole 211.
As shown in fig. 7, the interval between the both-side locking pieces 213 formed on the rear surface of the body 210 may correspond to the interval in the longitudinal direction of the water discharge hole 321, and a first protrusion 214a is formed on the outer surface of the both-side locking pieces 213 in the longitudinal direction at a position spaced apart from the rear surface of the body 210 by a predetermined distance to form the locking portion 214 between the rear surface of the body 210 and the first protrusion 214a, and a second protrusion 215a is formed on the outer surface of the both-side locking pieces 213 in the longitudinal direction at a position spaced apart from the rear surface of the body 210 by a predetermined distance to form the engaging portion 215 between the first protrusion 214a and the second protrusion 215 a.
The locking part 214 has a distance corresponding to the thickness of the window sash rail 310 formed with the drainage hole 321 for the inner circumference of the drainage hole 321 to be engaged, and the engaging part 215 has a distance corresponding to the thickness of the inner circumference of the opening 112 of the case 110 formed in the inner cap 100 for the inner circumference of the opening 112 to be engaged.
Therefore, when the outer cap 200 is fitted from the outside of the drainage hole 321, the locking piece 213 exerts an elastic action such that the inner peripheral edge of the drainage hole 321 is fitted into the both-side locking portions 214 of the locking piece 213 to fix the outer cap 200 to the outside of the drainage hole 321, and at this time, the engaging portion 215 of the locking piece is naturally positioned inside the drainage hole 321, and when the inner cap 100 is set to move downward behind the drainage hole 321, the inner peripheral edge of the opening 112 formed in the case 110 of the inner cap 100 is fitted into the engaging portion 215 to fix the inner cap 100 by the outer cap 200, and the opening 112 of the inner cap 100 is naturally aligned with the drainage hole 321.
On the other hand, the outer cap 200 may be combined with the inner cap 100 and disposed at the water discharge hole 321 to constitute the vermin proof cap, or only the outer cap 200' may constitute the vermin proof cap without using the inner cap 100.
When the inner cap 100 is not used and only the outer cap 200 'is provided to the water discharge hole 321 to constitute the vermin proof cap, as shown in fig. 8 and 9, the catching piece 213 constitutes only the catching part 214, rainwater or the like flowing into the window frame 300 is outwardly discharged through the hole 211 formed at the body 210 of the outer cap 200', and the hole 211 may be provided with a blocking member 216 such as a gauze to prevent vermin from flowing in through the hole 211, and the blocking member 216 is provided to the hole 211 in such a manner that it can be assembled as needed.
The assembly and disassembly processes of the insect-proof cap according to the embodiment of the present invention are as follows.
That is, as shown in fig. 4 and 5, when the vermin proof cap provided to the drain hole 321 of the window frame 300 is formed of only the inner cap 100', the case 110 of the inner cap 100' is lowered between the window sash rail 310 and the vermin proof net rail 320 and fixed to the rear of the drain hole 321 of the vermin proof net rail 320, and the opening 112 of the case 110 is aligned with the drain hole 321, so that rainwater and the like flowing into the inside of the window frame 300 are drained to the outside of the window frame 300 through the drain hole 321 aligned with the opening 112 via the through hole 113 of the case 110, and vermin flowing in through the drain hole 321 are caught in the space portion 111 of the case 110 or cannot flow into the room and return to the outside of the drain hole 321.
When it is necessary to remove vermin caught in the space 111 of the case 110 or to clean or inspect the inner cap 100', the inner cap 100' may be easily separated from the window frame 300 by being lifted up while holding both side surfaces of the case 110 between the window sash rail 310 and the insect net rail 320, and then, the vermin caught in the space 111 of the case 110 may be removed and the inside and outside of the inner cap 100' may be cleaned and inspected.
In addition, as shown in fig. 8 and 9, when the vermin proof cap provided to the drain hole 321 of the window frame 300 is composed of only the outer cap 200', the hole 211 of the body 210 and the drain hole 321 are naturally aligned by fitting the locking piece 213 positioned at the rear surface of the body 210 into the drain hole 321 and the locking part 214 of the locking piece 213 is fixed to the drain hole 321, so that rainwater and the like flowing into the window frame 300 can be discharged to the outside of the window frame 300 through the drain hole 321 and the hole 211 of the body 210, and the blocking member 216 provided to the hole 211 of the body 210 can prevent vermin from flowing in through the hole 211 of the body 210.
Further, when the outer cap 200' is separated from the drain hole 321 for cleaning, maintenance, or the like of the blocking member 216 or the outer cap 200', the inner peripheral edge of the drain hole 321 is separated from the locking portion 214 simply by tightening the both-side locking pieces 213 inward, and therefore, the outer cap 200' can be easily and quickly separated so as to be pushed out of the drain hole 321.
In addition, when the vermin proof cap provided to the drain hole 321 of the window frame 300 is composed of the inner cap 100 and the outer cap 200, as shown in fig. 10, the locking piece 213 of the outer cap 200 is inserted into the drain hole 321 so that the inner peripheral edge of the drain hole 321 is engaged with the locking portion 214 of the locking piece 213, thereby fixing the outer cap 200 to the drain hole 321 first, and then the case 110 of the inner cap 100 is lowered vertically downward from the upper side of the window sash rail 310 and the vermin proof net rail 320 so that the inner peripheral edge of the opening 112 formed in the case 110 is engaged with the engaging portion 215 of the locking piece 213 of the outer cap 200 penetrating the drain hole 321, thereby firmly coupling the inner cap 100 and the outer cap 200 to each other across the drain hole 321.
At this time, since the space 111 formed in the case 110 of the inner cap 100 prevents inflow of vermin, the hole 211 of the outer cap 200 does not need to be provided with the blocking member 216, but if necessary, the blocking member 216 may be provided in the hole 211 of the outer cap 200, and for example, when the hole 211 of the outer cap 200 is provided with the blocking member 216 having a large gap, the blocking member 216 can prevent inflow of foreign substances such as fallen leaves or pebbles even though inflow of vermin is not prevented, and thus, the vermin proof cap can be used more effectively and cleanly.
Further, when the inner cap 100 needs to be cleaned and inspected in a state where the inner cap 100 and the outer cap 200 are coupled with each other through the water discharge hole 321 and used, the inner cap 100 is raised without adjusting the outer cap 200, so that the inner peripheral edge of the opening 112 of the case 110 is separated from the engaging portion 215 of the engaging piece 213 positioned in the outer cap 200, that is, the inner cap 100 can be easily separated from the window frame 300 to perform cleaning or inspection, and the inner cap 100 can be easily set to be lowered to the original position after cleaning or inspection.
Further, when cleaning and inspection of the outer cap 200 are required, since the outer cap 200 cannot be separated from the water discharge hole 321 in a state of being coupled to the inner cap 100, the engaging portion 214 of the engaging piece 213 can be separated from the inner peripheral edge of the water discharge hole 321 by simply tightening and pushing the engaging piece 213 inward and outward in a state of raising the inner cap 100, and the outer cap 200 can be easily separated from the water discharge hole 321, and conversely, when the outer cap 200 is coupled to the water discharge hole 321, the engaging piece 213 can be easily coupled so as to be pushed into the water discharge hole 321.
As described above, in the detailed description of the present invention, the specific embodiments may be modified. Therefore, the scope of the description is not limited to the embodiments described, but is defined by the appended claims and their equivalents.

Claims (14)

1. An insect-proof cap arranged on a drain hole of a window frame for preventing insects from flowing in, which is characterized in that,
the insect-proof cap is composed of an inner cap (100'), wherein the bottom surface of a box body (110) is open and a space part (111) with a specified size is arranged in the box body, an opening part (112) communicated with the drainage hole (321) is formed on the front surface of the box body (110), and a plurality of through holes (113) are formed on the two side surfaces and the upper surface of the box body (110).
2. The vermin cap provided to the drain hole of the window frame as claimed in claim 1,
a movement prevention protrusion (114) is formed to protrude from the inner peripheral edge of the opening (112).
3. The vermin cap provided to the drain hole of the window frame as claimed in claim 1,
a plurality of anti-slip protrusions (115) are formed on both side surfaces of the case (110), and the through holes (113) are formed between the anti-slip protrusions (115).
4. The vermin cap provided to the drain hole of the window frame as claimed in claim 1,
the front and rear surfaces of the case (110) are bent in a length direction to be coupled between the window sash rail (310) and the insect net rail (320) in an interference fit manner.
5. The vermin cap provided to the drain hole of the window frame as claimed in claim 1,
the two side surfaces of the box body (110) are inclined.
6. An insect-proof cap arranged on a drain hole of a window frame for preventing insects from flowing in, which is characterized in that,
the insect-proof cap is composed of an external cap (200'), wherein a hole (211) communicated with the drain hole (321) is formed at the center part of the front surface of the main body (210), a blocking component (216) is arranged in the hole (211), a pair of clamping sheets (213) are formed at two sides of the rear surface of the main body (210) in a protruding way, and a clamping part (214) is formed on the clamping sheets (213) to clamp and fix the inner periphery of the drain hole (321).
7. The vermin cap provided to the drain hole of the window frame as claimed in claim 6,
the blocking member (216) is detachably assembled in the hole (211).
8. An insect-proof cap provided to a drain hole of a window frame for preventing inflow of vermin, comprising:
an inner cap (100) provided inside the drain hole (321), wherein the bottom surface of the case (110) is open and has a space (111) having a predetermined size therein, an opening (112) communicating with the drain hole (321) is formed in the front surface of the case (110), and a plurality of through holes (113) are formed in the upper surface and both side surfaces of the case (110);
the outer cap (200) is arranged outside the drain hole, a hole (211) communicated with the drain hole (321) is formed in the center of the front surface of the main body (210), a pair of clamping sheets (213) are formed in a protruding mode on two sides of the rear surface of the main body (210), a clamping part (214) and a buckling part (215) are sequentially formed in the clamping sheets (213) in a spaced mode, the clamping part (214) is used for buckling and fixing the inner periphery of the drain hole (321), and the buckling part (215) is used for buckling and fixing the inner periphery of the opening part (112).
9. The vermin cap provided to the drain hole of the window frame as claimed in claim 8,
a plurality of anti-slip protrusions (115) are formed on both side surfaces of the case (110), and the through holes (113) are formed between the anti-slip protrusions (115).
10. The vermin cap provided to the drain hole of the window frame as claimed in claim 8,
the front and rear surfaces of the case (110) are bent in a length direction to be coupled between the window sash rail (310) and the insect net rail (320) in an interference fit manner.
11. The vermin cap provided to the drain hole of the window frame as claimed in claim 8,
the two side surfaces of the box body (110) are inclined.
12. The vermin-proof cap provided to the water drain hole of the window frame as claimed in claim 8,
a waterproof film protrusion (212) is formed on the inner periphery of the hole (211) of the outer cap (200).
13. The vermin cap provided to the drain hole of the window frame as claimed in claim 8,
a blocking member (216) is disposed in the hole (211) of the outer cap (200).
14. The vermin cap provided to the drain hole of the window frame as claimed in claim 13,
the blocking member (216) is detachably assembled in the hole (211).
CN202090000621.9U 2019-06-25 2020-01-08 Insect-proof cap arranged on drain hole of window frame Active CN216517739U (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
KR10-2019-0075722 2019-06-25
KR1020190075722A KR102415231B1 (en) 2019-06-25 2019-06-25 Vermin preventing cap installed in dain hole of window frame
PCT/KR2020/000351 WO2020262784A1 (en) 2019-06-25 2020-01-08 Insect-repelling cap installed in drain hole of window frame

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KR102356833B1 (en) * 2021-08-24 2022-02-08 주식회사 씨에스테크 Pest blocking cap for drain hole of window frame
CN114753756B (en) * 2022-03-18 2024-01-12 斯卡特(北京)智能科技有限公司 Bridge-cutoff aluminum alloy inward opening window
KR102500300B1 (en) 2022-10-12 2023-02-16 주식회사 제스트 Pest blocking cap for drain hole of window frame

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JPS5043294Y2 (en) * 1971-08-03 1975-12-11
JPS5322462Y2 (en) * 1973-12-28 1978-06-10
JPS60148488U (en) * 1984-03-12 1985-10-02 ミサワホ−ム株式会社 Drainage structure in Rubasatushi etc.
JPH07279555A (en) * 1994-04-11 1995-10-27 Ykk Architect Prod Kk Cover for drain hole
US5822934A (en) * 1997-04-15 1998-10-20 O'donnell; Richard Drain
KR20100000530U (en) * 2008-07-08 2010-01-18 김명근 Drain cover for window frame
JP5290736B2 (en) * 2008-12-26 2013-09-18 Ykk Ap株式会社 Joinery
KR20130052070A (en) 2011-11-11 2013-05-22 (주)엘지하우시스 Vermin preventing cap and window frame having the same
KR20150003019U (en) * 2014-01-28 2015-08-05 조영택 The screen of drain hole in a window
KR20160009438A (en) * 2014-07-16 2016-01-26 박은애 Opening and colsing apparatus for drain hall of window sash
CN207863811U (en) 2018-01-29 2018-09-14 北京兰天方圆铝塑门窗有限公司 A kind of Aluminum plastics door and window scupper shutter

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KR102415231B1 (en) 2022-07-01
KR20210000502A (en) 2021-01-05
KR20220044708A (en) 2022-04-11
WO2020262784A1 (en) 2020-12-30
KR20220044709A (en) 2022-04-11
JP7278433B2 (en) 2023-05-19
DE212020000671U1 (en) 2022-02-02

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