KR20160148241A - a Screen which is wound up like a Roll, And Screen Production Device And Method Thereof - Google Patents

a Screen which is wound up like a Roll, And Screen Production Device And Method Thereof Download PDF

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Publication number
KR20160148241A
KR20160148241A KR1020150084970A KR20150084970A KR20160148241A KR 20160148241 A KR20160148241 A KR 20160148241A KR 1020150084970 A KR1020150084970 A KR 1020150084970A KR 20150084970 A KR20150084970 A KR 20150084970A KR 20160148241 A KR20160148241 A KR 20160148241A
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KR
South Korea
Prior art keywords
screen
bar
fixing
winding
mold plate
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KR1020150084970A
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Korean (ko)
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KR101729695B1 (en
Inventor
박용광
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주식회사 나보텍
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Priority to KR1020150084970A priority Critical patent/KR101729695B1/en
Publication of KR20160148241A publication Critical patent/KR20160148241A/en
Application granted granted Critical
Publication of KR101729695B1 publication Critical patent/KR101729695B1/en

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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
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • 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
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • E06B9/42Parts or details of roller blinds, e.g. suspension devices, blind boxes

Abstract

A screen for shielding light that is wound in a roll manner according to one aspect of the present invention; a circular fixing bar for receiving both ends of the screen and fixing both ends of the screen by pressure, .

Description

A screen which is wound in a roll manner, and a screen manufacturing apparatus and method,

BACKGROUND OF THE INVENTION 1. Field of the Invention [0001] The present invention relates to a screen and a screen manufacturing apparatus and method for winding the screen in a roll manner, and more particularly, to a screen which is rolled up in a rollable manner in which a fixing bar is fixed to both ends of a screen, And a screen manufacturing apparatus and method.

The curtain is an interior accessory installed to the window or entrance of the building to control the light coming from the outside. Such a curtain has the purpose of shielding an external line of sight, soundproofing, waving, and so forth, in addition to the above-mentioned object. In particular, the purpose is to enhance the aesthetics of the interior by changing the hard and cold feeling felt on the wall or glass to soft and warm.

On the other hand, the curtain is divided into a method of being opened and closed right and left according to the opening and closing operation and a method of opening and closing the upper and lower. However, such distinction is only a general and general division, and in reality, it is a blind, a vertical, a screen, a roman shade, a silhouette shade, a triple shade, , Eco shade, etc., which are rolled into a rolled form, and are widely used.

Among them, a blind, particularly a roll blind, is a roll screen in which a chain coupled to one side is pulled to wind or unroll a roll-shaped screen to introduce or block light.

However, in the conventional roll screen, it is necessary to insert a screen into a circular bar that winds the screen so as to move up and down. However, when the screen is inserted into a circular bar, a separate latch is provided. Therefore, there is a problem that the operation is very cumbersome and the operation takes a long time.

SUMMARY OF THE INVENTION The present invention has been conceived to solve the problems as described above, and an object of the present invention is to provide a method and an apparatus for driving a motor, which is wound in a roll manner using a driving motor of a pneumatic, A screen which is wound in a roll manner in which a fixing bar can be fixed to both ends of the screen, and an apparatus and a method for producing a screen.

It is still another object of the present invention to provide a screen and a screen manufacturing apparatus and a method for producing a screen in which the screens can be wound in a roll manner in a more effective manner by the engagement by the meshing of the teeth.

In order to accomplish the above object, there is provided a screen for blocking light which is wound in a roll manner according to one aspect of the present invention, And may include a circular fixing bar that is assembled and fixed.

The fixing bar is provided at the upper end of the screen to wind the screen. The weight bar is provided at the other end of the winding bar and the screen so that the screen does not move by an external force and fixes the load so that a load can act downward. .

The winding bar may include a first engaging portion that is engaged by pressure after the upper portion of the screen is inserted and a receiving portion that extends from an inner end portion of the first engaging portion and that adjusts the length of the screen accommodated in the winding bar .

The weight bar may include a second engaging portion that is coupled to the screen by a pressure after the lower portion of the screen is inserted, and a load plate provided inside the weight bar so that the screen may not be moved by an external force, can do.

The first and second coupling parts may have coupling holes in which one end of the screen is inserted and the inside of which is formed with teeth and coupling protrusions that are coupled to the coupling holes by a pressure and formed with teeth so that ends thereof are engaged with the teeth of the coupling holes. .

According to another aspect of the present invention, there is provided a screen manufacturing apparatus including a screen for shielding light, a screen for receiving both ends of the screen, And a fixing device for applying pressure to fix the screen to the fixing bar.

The fixing bar may include a winding bar provided at an upper end of the screen to wind the screen, and a weight bar provided at a lower end of the screen to fix the screen so that a load can be applied to the lower portion without moving by an external force .

The winding bar may include a first engaging portion coupled to the retention device after the top portion of the screen is inserted, a second engaging portion extending from an inner end of the first engaging portion and adapted to adjust the length of the screen received within the reeling bar And a receiving portion may be provided.

The weight bar may include a second engaging portion that is engaged with the securing device after the lower portion of the screen is inserted, and a second engaging portion that is engaged with the load bar provided inside the weight bar so that the screen is not moved by an external force, .

The first and second engaging portions are formed by serration so that one end of the screen is inserted and the inside is formed by serration, and the end portion is engaged with the teeth of the engaging hole by the pressure of the fixing device. As shown in Fig.

The fixing device includes a moving part having a guide plate for moving the screen at the upper part and guiding the position of the screen, a fixing part provided at one end of the moving part to fix the screen to the fixing bar, A mold plate provided at a lower portion of the fixing portion and having a winding hole for winding the screen and a mounting hole for seating a weight bar provided at a lower end of the screen, And a cylinder for applying pressure to the stationary bar seated on the stationary bar.

Wherein the mold plate includes a lower mold plate fixed to one end of the moving portion and on which the winding bar and the weight bar are seated, An upper mold plate may be provided.

According to another aspect of the present invention, there is provided a method of manufacturing a screen, comprising: (a) separating a mold plate of a fixing device on which a fixing bar for fixing both ends of a screen is seated; (b) placing a winding bar provided at an upper end of the screen on a lower mold plate; (c) moving the screen in a moving part fixed to one end of the lower mold plate and inserting the screen into the winding bar; (d) moving the upper mold plate to the lower side by the hydraulic pressure of the cylinder and applying pressure to the winding bar; (e) coupling the coupling holes and the coupling protrusions of the winding bar into which the screen is inserted, by pressure; (f) placing a weight bar provided at a lower end of the screen on the lower winding plate to the lower winding bar; (g) inserting the screen into the weight bar, applying pressure by a cylinder, and engaging the engaging hole of the weight bar with the engaging projection; . ≪ / RTI >

The fixing bar is provided at the upper end of the screen and includes the winding bar for winding the screen. The weight bar is provided at the lower end of the screen and fixes the screen so that the load does not move due to external force, .

The winding bar may include a first engaging portion coupled to the retention device after the top portion of the screen is inserted, a second engaging portion extending from an inner end of the first engaging portion and adapted to adjust the length of the screen received within the reeling bar And a receiving portion may be provided.

The weight bar may include a second engaging portion that is engaged with the securing device after the lower portion of the screen is inserted, and a second engaging portion that is engaged with the load bar provided inside the weight bar so that the screen is not moved by an external force, .

Wherein the first and second coupling portions are formed by the coupling holes having one side of the screen inserted and the inside of which is formed by a sawtoothed portion and a sawtoothed portion that is coupled to the coupling hole by the pressure of the fixing device, And the coupling protrusion may be formed.

The fixing device includes a moving part having a guide plate for moving the screen at the upper part and guiding the position of the screen, a fixing part provided at one end of the moving part to fix the screen to the fixing bar, A mold plate provided on a lower portion of the fixing portion and having a winding hole for winding the screen and a mounting hole for seating the weight bar provided at the lower end of the screen, And the cylinder for applying pressure to the fixed bar placed inside the plate.

According to the screen and the apparatus and method for producing a screen according to the present invention, the screen can be easily fixed to the fixing bar by applying pressure.

The coupling holes and the coupling protrusions are formed to be engaged with each other by teeth or the like so that the screen and the fixing bar can be fixed simply by the pressure.

1 is a perspective view showing a blind provided with a screen wound in a roll manner according to an embodiment of the present invention;
2 is a perspective view illustrating a screen wound in a roll manner according to an embodiment of the present invention;
FIG. 3 is a perspective view illustrating a fixing bar according to an embodiment of the present invention; FIG.
4 is a cross-sectional view illustrating a screen installed on a winding bar according to an embodiment of the present invention.
FIG. 5 is a cross-sectional view illustrating a screen installed in a weight bar according to an embodiment of the present invention; FIG.
6 is a perspective view illustrating a fixing device according to another embodiment of the present invention.
7 is a cross-sectional view showing a state where a winding bar according to another embodiment of the present invention is coupled by a mold plate.
8 is a sectional view showing a state in which a weight bar according to another embodiment of the present invention is coupled by a mold plate.
9 is a flowchart showing a method of manufacturing a screen according to another embodiment of the present invention.

DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, a roll-wound screen and an apparatus and method for producing a screen according to an embodiment of the present invention will be described in detail with reference to the accompanying drawings.

FIG. 1 is a perspective view showing a blind provided with a screen-wound screen according to an embodiment of the present invention, and FIG. 2 is a perspective view illustrating a screen of a roll-type screen according to an embodiment of the present invention.

As shown in FIGS. 1 and 2, a screen 30 to be wound in a roll manner according to an embodiment of the present invention includes a screen 100 for shielding light, a fixing (not shown) fixed to both ends of the screen 100, A bar 200 may be provided.

Generally, the blind 10 can be installed indoors or outdoors in a window where sunlight enters the room to block the sunlight. The blind 10 is advantageous in that it is lighter than a curtain and easy to operate. A method of operating the blind 10 includes a screen 30 having a plurality of blinds 10, The screen 30 wound up in the roll-type manner can be wound on the upper portion and moved up and down.

The screen 100 may be formed as a fabric having fluidity secured to the screen 30 wound in a roll manner. In addition to a shading effect for blocking sunlight, a privacy effect for blocking an external visual line and a heat conduction rate are blocked Various effects such as enhancing the heat insulating effect by the function can be shown.

The screen 100 may be formed of a variety of materials that are invisible for the purpose of a shading effect and a privacy protection effect, and may be formed by mixing a mesh or the like so as to allow ventilation while shading.

In addition, the screen 100 may be formed of various flexible materials to be wound on the fixed bar 200.

When the screen 100 is received, the fixing bar 200 may be formed into a circle having various shapes such as a 'C' shape and an ellipse, and may be formed at the upper and lower ends of the screen 100 So that the screen 100 can be wound up so that the upper and lower ends of the screen 100 can be received therein and the screen 100 can be moved up and down.

The fixing bar 200 includes a winding bar 210 provided at an upper end of the screen 100 to wind up the screen 100 and a fixing bar 200 provided at a lower end of the screen 100 to fix the screen 100 to an external force And a weight bar 220 for fixing the load to the lower portion without moving.

The winding bar 210 may be formed in a circular or circular shape to smoothly wind the screen 100. The weight bar 220 may be formed in various shapes to apply a load to the screen 100 .

The blind 10 may be provided with a length adjusting device 20 for rotating the winding bar 210 fixing the screen 100 and moving the screen 100 up and down. Can be automatically driven by a motor or the like.

FIG. 3 is a perspective view showing a fixing bar according to an embodiment of the present invention, FIG. 4 is a sectional view showing a screen installed on a winding bar according to an embodiment of the present invention, FIG. 5 is a cross- FIG. 2 is a cross-sectional view illustrating a state where a screen is installed on a weight bar according to an embodiment of the present invention.

3 to 5, the fixing bar 200 according to an embodiment of the present invention includes a winding bar 210 provided at an upper end of the screen 100 to wind the screen 100, And a weight bar 220 provided at a lower end of the screen 100 to fix the screen 100 so that a load can be applied to the screen 100 without being moved by an external force.

As shown in FIG. 4, the winding bar 210 is inserted into an upper portion of the screen 100, and then is guided by a driving motor of a pneumatic, pneumatic or cam type, a lifting / lowering driving motor, And a receiving portion 212 extending from an inner end of the first coupling portion 211 and adapted to adjust a length of the screen 100 accommodated in the winding bar 210 .

The first coupling part 211 may be provided inside the winding bar 210 at a position where the screen 100 is inserted into the winding bar 210. After the screen 100 is inserted, So that the screen 100 can be prevented from being disturbed when the screen 100 is wound around the winding bar 210.

The first coupling unit 211 includes a coupling hole 230 having one end of the screen 100 inserted therein and having an inner side formed with teeth and a driving motor driven by a hydraulic, A coupling protrusion 240 formed by a saw tooth to be engaged with the teeth of the coupling hole 230 at an end thereof.

The coupling hole 230 may be provided at a predetermined interval inside the winding bar 210 so that the screen 100 can be fixed inside the winding bar 210 after the screen 100 is inserted. have.

In addition, the coupling protrusions 240 and the coupling holes 230 may be coupled to each other by various methods such as hooking, forcibly inserting into a 'C' shape in addition to the saw tooth shape.

The coupling protrusion 240 is provided at the other end of the winding bar 210, which is formed in a circular shape, and is accommodated in the coupling hole 230 to fix the screen 100.

The inner side of the coupling hole 230 and the outer side of the coupling protrusion 240 are formed as teeth so that the coupling protrusion 240 is inserted into the screen 100 after the insertion of the coupling hole 230, The coupling hole 230 and the coupling protrusion 240 are not separated from each other and the screen 100 is fixed to the coupling hole 230 when the coupling hole 230 is received in the coupling hole 230 by a cam driving motor, .

Since the coupling hole 230 is not fixed inside the winding bar 210, when the coupling protrusion 240 is received in the coupling hole 230, the coupling hole 230 and the coupling protrusion 240 240 may be spaced inwardly of the winding bar 210 by a thickness of the screen 100 fixed between the winding bars 210.

The coupling protrusion 240 is formed to be bent at a predetermined angle inward from one end of the winding bar 210 so that the winding bar 210 may have a circular shape when the coupling bar 230 is received in the coupling hole 230. [ .

The receiving part 212 is formed to extend from one side of the coupling hole 230 provided inside the winding bar 210 so that the screen 100 is introduced into the winding bar 210 by an external force Or one end of the screen 100 is bent to the inside of the winding bar 210 so that the screen 100 can measure the length of the screen 100 when the coupling hole 230 and the coupling protrusion 240 are coupled to each other .

For example, if the length of the screen 100 inserted into the winding bar 210 is short, when the screen 100 is inserted into the coupling hole 230 when the coupling hole 230 and the coupling protrusion 240 are coupled, And the coupling protrusion 240, so that the screen 100 can be separated by an external force. In addition, if the length of the screen 100 inserted into the winding bar 210 is long, the length of the screen 100 does not match the length of the window, and a smooth shading effect can not be exhibited. Therefore, if the screen 100 is inserted into the winding bar 210 and then inserted into the receiving part 212 and is no longer inserted, the coupling hole 230 and the coupling protrusion 240 are engaged with each other, And may be fixed to the bar 210.

The weight bar 220 may be fixed to the other end of the screen 100 coupled to the winding bar 210 to apply a load such that one end of the screen 100 faces downward.

As shown in FIG. 5, the weight bar 220 is inserted into a lower portion of the screen 100 after being inserted into the weight bar 220. The weight bar 220 is coupled with a driving motor of a pneumatic or pneumatic or cam type, And a load plate 222 provided inside the weight bar 220 so that the screen 100 can be moved to a lower load without being moved by an external force.

The second coupling portion 221 includes a coupling hole 230 having one side of the screen 100 inserted and the inside of the coupling hole 230 being formed like a tooth as the first coupling portion 211, And the coupling protrusion 240 may be formed as a saw tooth so that the end of the coupling protrusion 240 is engaged with the teeth of the coupling hole 230. [

The weight plate 222 may be provided inside the weight bar 220 to prevent the screen 100 inserted in the weight bar 220 from moving due to an external force, Load can be applied.

The load plate 222 may be formed in various shapes and the weight of the load plate 222 may be varied according to the size and material of the screen 100.

In the following description of the screen manufacturing apparatus according to another embodiment of the present invention, the same reference numerals are used for the same components as those of the roll-type screen according to the above-described embodiment, and a detailed description thereof will be omitted.

FIG. 6 is a perspective view showing a fixing device according to another embodiment of the present invention, FIG. 7 is a cross-sectional view showing a state where a winding bar according to another embodiment of the present invention is coupled by a mold plate, Sectional view showing a state in which the weight bar according to the embodiment is coupled by the mold plate.

6 to 8, the fixing device 300 may apply pressure to fix the screen 100 to the fixing bar 200 according to an embodiment of the present invention.

The fixing device 300 includes a moving part 310 having a guide plate 311 for moving the screen 100 at the upper part and guiding the position of the screen 100, A fixing part 320 provided at one end of the fixing part 320 for fixing the screen 100 to the fixing bar 200 and a winding bar provided on the lower part of the fixing part 320 for winding the screen 100 And a mounting hole 333 for receiving a weight bar 220 provided at a lower end of the screen 100. The mold plate 330 and the fixing portion 320 are fixed to each other, And a cylinder 340 may be provided to apply pressure to the fixing bar 200 mounted in the mold plate 330.

In addition, the fixing device 300 may further include a support portion 350 to be formed at a predetermined height above the ground for smooth operation of the worker.

The moving part 310 is provided on the upper part of the supporting part 350 and can direct the screen 100 to the fixing part 320 by raising the upper part of the moving part 310.

The moving unit 310 may include the guide plate 311 so that the guide plate 311 guides the correct position when the screen 100 moves in the moving unit 310. [ (Not shown).

For example, if there is no guide plate 311, the position of the screen 100 moving toward the fixing unit 320 is not constant because the movable plate 310 moves upward, The screen 100 can not be uniformly inserted into the fixing bar 200, which is not known accurately. Therefore, the guide plate 311 may be coupled to one side of the moving unit 310 or extended to the upper side so that the screen 100 can be moved to a predetermined position.

The fixing part 320 is provided at one end of the moving part 310 and the mold plate 330 and the cylinder 340 are fixed to the inside.

7 to 8, the mold plate 330 is fixed to one end of the moving unit 310 and includes a lower mold plate 332 on which the winding bar 210 and the weight bar 220 are mounted A winding bar 210 placed on the lower mold plate 332 by the cylinder 340 at an upper portion of the lower mold plate 332 and an upper mold plate 333 for applying pressure to the weight bar 220. [ (331).

The seating hole 333 may be provided at a position where the lower mold plate 332 and the upper mold plate 331 are coupled to each other so that the winding bar 210 and the weight bar 220 may be respectively provided. And may be formed in the same size and shape as the winding bar 210 and the weight bar 220.

The lower mold plate 332 may be fixed to one end of the moving unit 310 and may be provided inside the fixing unit 320 so as to coincide with the upper mold plate 331.

The upper mold plate 331 may be disposed at the same position as the lower mold plate 332, and one end of the cylinder 340 may be coupled to the upper mold plate 331.

When the winding bar 210 or the weight bar 220 is seated in the seating hole 333 of the lower mold plate 332, the screen 100 is uniformly held by the guide plate 311 The upper mold plate 331 is moved from the upper part to the lower part by the cylinder 340 after being inserted into the winding bar 210 or the weight bar 220 that are seated, (Not shown).

When pressure is applied to the winding bar 210 or the weight bar 220, each of the first and second engaging portions 211 and 221 receives the screen 100 therein, (100) can be fixed.

In addition, since the winding bar 210 and the weight bar 220 are provided at both ends of the screen 100, they can not proceed simultaneously. Although not shown in the drawing, the fixing part 320 is provided at both ends of the moving part 310 to fix the winding bar 210 and the weight bar 220 at the same time, The weight bar 220 and the winding bar 210 may be fixed by applying pressure to the winding bar 210 and the weight bar 220, respectively.

The cylinder 340 is provided between the upper portion of the upper mold plate 331 and the fixing portion 320 and is connected to the upper mold plate 331 by a driving motor of a hydraulic, pneumatic or cam type, 331 may be pressurized.

In the following description of the screen manufacturing method according to another embodiment of the present invention, the same reference numerals are used for the same components as those of the screen and the production system thereof, which are wound in a roll manner according to the above- Is omitted.

9 is a flowchart showing a screen manufacturing method according to another embodiment of the present invention.

The mold plate 330 provided inside the fixing portion 320 of the fixing device 300 can be separated into the lower mold plate 332 and the upper mold plate 331 in step S1100. Since the lower mold plate 332 is fixed to one end of the moving unit 310, the upper mold plate 331 can be moved upward by the cylinder 340 to be separated.

Step S1200 is a step of placing the winding bar 210 on the seating hole 333 of the same size as that of the winding bar 210 among the plurality of seating holes 333 provided on the inner side of the lower mold plate 332 have.

A plurality of the seating holes 333 may be provided so that the winding bar 210 and the weight bar 220 can be seated.

In step S1300, the screen 100 can be inserted into the winding bar 210 that is seated in the seating hole 333 in step S1200.

The screen 100 may be inserted into the screen 100 while being guided by a guide plate 311 at a predetermined position in a moving part 310 of the fixing device 300. At this time, the screen 100 can be inserted until it is no longer inserted by the receiving part 212 provided inside the winding bar 210.

In step S1400, the upper mold plate 331 separated in step S1100 may be moved downward by the cylinder 340. [

When the upper mold plate 331 moves downward, the winding bar 210 moves so as to coincide with the seating hole 333 of the lower mold plate 332 on which the winding bar 210 is seated, The pressure can be applied by the hydraulic pressure of the cylinder 340 until the engaging hole 230 formed with teeth and the engaging protrusion 240 are engaged with each other.

In step S1500, when the coupling hole 230 of the first coupling part 211 and the coupling protrusion 240 are coupled, the upper mold plate 331 can be moved upward by the cylinder 340.

The step S1600 can remove the winding bar 210 that is seated in the seating hole 333 of the lower mold plate 332 after moving the upper mold plate 331 upward in step S1500.

In step S1700, the weight bar 220 may be seated in the seating hole 333 of the lower mold plate 332. [ At this time, the weight bar 220 can be seated in the seating hole 333 of the same size as the weight bar 220 among the plurality of seating holes 333.

In step S1800, the screen 100 may be inserted into the weight bar 220. The screen 100 may be rotated and the other end inserted into the weight bar 220 because the winding bar 210 is fixed at one end thereof.

After the screen 100 is inserted into the weight bar 220, the upper mold plate 331 moves downward from the upper portion as in steps S1400 to S1600, and the second engaging part 221 of the weight bar 220 moves downward, The engaging hole 230 of the second engaging part 221 and the engaging protrusion 240 can be engaged with each other.

In step S1900, when the coupling hole 230 of the second coupling part 221 is coupled with the coupling protrusion 240, the upper mold plate 331 is moved upward by the cylinder 340, The weight bar 220 can be separated from the seating hole 333 of the plate 332.

While the present invention has been particularly shown and described with reference to exemplary embodiments thereof, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. Those skilled in the art, who understands the spirit of the present invention, can readily suggest other embodiments by adding, changing, deleting, adding, or the like of components within the scope of the same idea, I would say.

100: Screen 200: Fixed bar
210: Winding bar 220: Weight bar
230: coupling hole 240: coupling projection
300: Fixing device 310: Moving part
320: fixing part 330: mold plate
340: cylinder

Claims (18)

A screen for blocking light,
And a circular fixing bar for accommodating both ends of the screen and fixing the upper and lower portions to each other by pressure by fixing both ends of the screen.
The method according to claim 1,
Wherein the fixing bar is provided at an upper end of the screen to wind the screen,
And a weight bar provided at the other end of the screen to fix the screen so that a load can be applied to the bottom without moving the screen by an external force.
3. The method of claim 2,
Wherein the winding bar includes a first engaging portion that is engaged by pressure after the upper portion of the screen is inserted,
And a receiving portion extending from an inner end of the first engaging portion to adjust a length of the screen received in the winding bar.
3. The method of claim 2,
The weight bar may include a second engaging portion that is engaged by a pressure after the lower portion of the screen is inserted,
And a load plate provided inside the weight bar so that the screen can be moved to a lower load without moving by an external force.
The method according to claim 3 or 4,
Wherein the first and second coupling portions include coupling holes into which the one end of the screen is inserted and the inside of which is formed with teeth,
And a coupling protrusion which is coupled to the coupling hole by a pressure and is formed as a tooth so that an end of the coupling protrusion is engaged with the teeth of the coupling hole.
A screen for blocking light,
A circular fixing bar which accommodates both ends of the screen therein and assembles upper and lower portions by pressure by fixing both ends of the screen,
And a fixing device for applying pressure to fix the screen to the fixing bar.
The method according to claim 6,
Wherein the fixing bar is provided at an upper end of the screen to wind the screen,
And a weight bar provided at a lower end of the screen to fix the screen so that a load can be applied to the lower portion without moving by an external force.
8. The method of claim 7,
Wherein the winding bar comprises a first engaging portion which is engaged by the fixing device after the upper portion of the screen is inserted,
And an accommodating portion extending from an inner end of the first engaging portion to adjust a length of the screen accommodated in the winding bar.
8. The method of claim 7,
The weight bar may include a second engaging portion that is engaged by the securing device after the lower portion of the screen is inserted,
And a load plate provided inside the weight bar so that the screen does not move by an external force and a load can be applied to the lower part.
10. The method according to claim 8 or 9,
Wherein the first and second coupling portions include coupling holes into which the one end of the screen is inserted and the inside of which is formed with teeth,
And a coupling protrusion coupled to the coupling hole by a pressure of the fixing device, the coupling protrusion being formed as a tooth so that an end of the coupling protrusion is engaged with the teeth of the coupling hole.
The method according to claim 6,
The fixing device includes a moving unit having a guide plate for moving the screen and guiding the position of the screen,
A fixing part provided at one end of the moving part and fixing the screen to the fixing bar,
A mold plate provided at a lower portion of the fixing portion and having a winding hole for winding the screen and a mounting hole for seating a weight bar provided at a lower end of the screen,
And a cylinder provided between the mold plate and the fixing unit for applying pressure to the fixing bar placed inside the mold plate.
12. The method of claim 11,
Wherein the mold plate is fixed to one end of the moving unit, and the lower mold plate on which the winding bar and the weight bar are seated,
And an upper mold plate for applying pressure to the winding bar and the weight bar that are seated on the lower mold plate by the cylinder at an upper portion of the lower mold plate.
(a) separating a mold plate of a fixing device on which a fixing bar for fixing both ends of the screen is seated, from the upper part to the lower part;
(b) placing a winding bar provided at an upper end of the screen on a lower mold plate;
(c) moving the screen in a moving part fixed to one end of the lower mold plate and inserting the screen into the winding bar;
(d) moving the upper mold plate to the lower side by the hydraulic pressure of the cylinder and applying pressure to the winding bar;
(e) coupling the coupling holes and the coupling protrusions of the winding bar into which the screen is inserted, by pressure;
(f) placing a weight bar provided at a lower end of the screen on the lower winding plate to the lower winding bar;
(g) inserting the screen into the weight bar, applying pressure by a cylinder, and engaging the engaging hole of the weight bar with the engaging projection;
Wherein the screen is a screen.
14. The method of claim 13,
Wherein the fixing bar is provided at an upper end of the screen to wind the screen,
And a weight bar provided at a lower end of the screen to fix the screen so that a load can be applied to the lower portion without moving by an external force.
15. The method of claim 14,
Wherein the winding bar comprises a first engaging portion which is engaged by the fixing device after the upper portion of the screen is inserted,
And an accommodating portion extending from an inner end of the first engaging portion to adjust a length of the screen accommodated in the winding bar.
15. The method of claim 14,
The weight bar may include a second engaging portion that is engaged by the securing device after the lower portion of the screen is inserted,
And a load plate provided inside the weight bar so that the screen does not move by an external force and a load can be applied to the lower part.
17. The method according to claim 15 or 16,
Wherein the first and second coupling portions include the coupling hole into which one end of the screen is inserted and the inside is formed with teeth,
And the engaging protrusion is formed as a tooth so that the engaging hole is engaged with the pressure of the fixing device and the end portion is engaged with the teeth of the engaging hole.
14. The method of claim 13,
The fixing device includes a moving unit having a guide plate for moving the screen and guiding the position of the screen,
A fixing part provided at one end of the moving part and fixing the screen to the fixing bar,
A mold plate provided on a lower portion of the fixing portion and having a winding hole for winding the screen and a mounting hole for seating the weight bar provided at the lower end of the screen,
And the cylinder is provided between the mold plate and the fixing unit to apply pressure to the fixing bar placed inside the mold plate.


KR1020150084970A 2015-06-16 2015-06-16 a Screen which is wound up like a Roll, And Screen Production Device And Method Thereof KR101729695B1 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110481284A (en) * 2019-08-20 2019-11-22 宁波帅特龙集团有限公司 A kind of preparation process of car side window sunshade curtain assembly

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110481284A (en) * 2019-08-20 2019-11-22 宁波帅特龙集团有限公司 A kind of preparation process of car side window sunshade curtain assembly

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