KR20020018687A - Structure of canopy - Google Patents

Structure of canopy Download PDF

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Publication number
KR20020018687A
KR20020018687A KR1020020000982A KR20020000982A KR20020018687A KR 20020018687 A KR20020018687 A KR 20020018687A KR 1020020000982 A KR1020020000982 A KR 1020020000982A KR 20020000982 A KR20020000982 A KR 20020000982A KR 20020018687 A KR20020018687 A KR 20020018687A
Authority
KR
South Korea
Prior art keywords
roof
block
frame
key lever
center
Prior art date
Application number
KR1020020000982A
Other languages
Korean (ko)
Inventor
김대환
Original Assignee
김대환
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 김대환 filed Critical 김대환
Priority to KR1020020000982A priority Critical patent/KR20020018687A/en
Publication of KR20020018687A publication Critical patent/KR20020018687A/en
Priority claimed from AT03701158T external-priority patent/AT377685T/en

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/32Parts, components, construction details, accessories, interior equipment, specially adapted for tents, e.g. guy-line equipment, skirts, thresholds
    • E04H15/34Supporting means, e.g. frames
    • E04H15/44Supporting means, e.g. frames collapsible, e.g. breakdown type having connecting nodes
    • E04H15/48Supporting means, e.g. frames collapsible, e.g. breakdown type having connecting nodes foldable, i.e. having pivoted or hinged means

Abstract

PURPOSE: A structure of a canopy is provided to drain smoothly and to improve in appearance by applying variously according to the shape and kind of a roof, to increase persistence and durability against external force by reinforcing the corner of a roof, to secure the safety of a user by using a key lever, to ventilate well and to prevent an increase of temperature by forming a ventilator and a penthouse on a roof, to heighten the quality of products and to use variously according to various environments such as weather, temperature, etc. by removing a ventilator and a penthouse. CONSTITUTION: The structure of a canopy comprises: at least four or more pillars(1); a slide connecting block(2) formed to slide along the pillars(1); an end connecting block fixed to the end of the pillars(1); a frame(3) for supporting the border of a roof border; at least four pairs of frames(4) for supporting the central part of a roof; a bar connecting block(10) for connecting the frame(3) for the border of a roof and the frame(4) for the central part of a roof; an upper head connecting block(5) pivoted to a primary bar of the frame(4) for the central part of a roof to form the exterior uppermost end of a roof; a lower head connecting block(6) pivoted to a secondary bar of the frame(4) for the central part of a roof to form the interior uppermost end of a roof; and roof cloth(7) for covering the frame(3) of the border of a roof and the frame(4) for the central part of a roof.

Description

Structure of canopy

The present invention relates to the structure of a canopy, and more particularly, to the structure of a canopy that is robust, aesthetically pleasing and can be used for many purposes.

In general, a canopy or a simple house, that is, a canopy, is a product that is widely used in campings, street events, sports events, etc. by setting up a frame at a predetermined height to cover the wind or the sun in the field and covering the roof over the frame.

The canopy was a configuration in which a roof was constructed by covering a roof cloth by erecting a pillar and connecting a roof frame frame and a roof center frame using a plurality of connecting blocks.

However, the roof rim frame and the center frame of the roof is composed of simple "X" structure bars of the same length, and the appearance of the roof is flat or vertically installed in the center of the roof. There is a problem that the roof fabric does not live, the roof cloth sags and is difficult to drain and structurally weak.

In addition, it is difficult to extend and use the roof in multiple stages, and when the user operates the snap button, the user may be injured on his / her fingers, the ventilation of the roof is not smooth, and the internal air circulation is not possible, and the product cannot be upgraded. There were problems.

An object of the present invention for solving the above problems, by using the difference in the length of the rod without the need for a separate vertical bar, the top of the roof sharply, successively, the four sides, the center and the center to the maximum height of various roof shapes Depending on the type and type, it can be applied to ground roof (pyramid) type, slate roof (gable) type, cross roof type, cross resource membrane roof type, strain cross resource membrane roof type, etc. To provide a structure of a canopy of various shapes resistant to external forces.

Another object of the present invention is to extend the roof in multiple stages, to facilitate the use of the user's key lever, and to form a ventilation hole and a awning roof on the roof having ventilation and temperature control function of the internal air circulation, the product It is to provide a canopy structure that can be advanced.

1A and 1B are perspective views showing the structure of a one-stage canopy of the ground-membrane roof type according to an embodiment of the present invention.

Figure 2 is a perspective view showing the structure of a two-stage canopy according to an embodiment of the present invention.

3A, 3B, 3C, 3D and 3E are schematic diagrams showing the canopy shape to which the structure of the canopy of the present invention is applicable.

Figure 4a is an exploded perspective view showing an example of the column end connecting block of Figure 1b.

Figure 4b is an exploded perspective view showing another extensible embodiment of the column end connecting block of Figure 1b.

Figure 4c is a perspective view showing an example of the head connecting block of Figure 1b.

Figure 4d is a perspective view showing an example of the rod connecting block of Figure 1b.

Figure 4e is a perspective view showing an example of the connection state of the connecting block and the rod of Figure 1b.

Figure 5a is an exploded perspective view showing an embodiment of a key lever of the slide connecting block of Figure 1b.

Figure 5b is an exploded perspective view showing another embodiment of the key lever of the slide connecting block of Figure 1b.

6A and 6B are perspective views showing the structure of a single-stage canopy according to another preferred embodiment of the present invention.

7A, 7B and 7C are perspective views illustrating an example of a connection structure of the first rod and the second rod of the roof center frame of FIG. 6B.

8A and 8B are perspective views showing an example of the folding sunshade roof of FIG. 6B.

The structure of the canopy of the present invention for achieving the above object, at least four pillars erected on the ground; A slide connecting block formed to slide along the pillar; An end connection block fixed to the end of the pillar; The first rod is pivoted on the end connection block of the pillar, the second rod is pivoted on the slide connection block, and the center bar is pivoted in the form of "X" so as to be foldable, and a plurality of roof border frames supporting the edge of the roof. ; The first rod is pivoted on the end connecting block of the first rod of the roof frame, and the second rod is pivoted on the end connecting block of the second rod of the roof frame so that the center of the roof frame can be folded. At least four pairs of roof center frames pivoted and supporting the center of the roof; A bar connection block connecting the roof border frame and the roof center frame; An upper head connecting block pivoted on a first bar of each roof center frame to form an outermost upper end of the roof; A lower head connecting block pivoted on a second bar of each of the roof center part frames to form an innermost upper end of the roof; And a roof cloth covering the roof border frame and the roof center frame.

In addition, the bar length of the roof center frame is longer than the length of the roof border frame bar so that the height of the upper head connecting block is greater than the horizontal plane height of the roof border frame when unfolding, the first rod of the roof center frame is the second bar It is preferable that the length is longer.

In addition, a corner reinforcing bar that can be folded between the pillar end connection block and the upper head connection block to enhance the appearance and to form a corner toward the center of the roof in a pyramid shape to withstand external forces (Fig. 7a) 7B and 7C of FIG. 7C may be further included.

In addition, a guide hole is inserted into the upper head connecting block to prevent the roof cloth from sagging or the position is separated from the upper head connecting block, and a guide bar that is slidable is formed, and an elastic spring may be installed on the guide bar. .

In addition, a vent hole is formed in the pointed center of the roof fabric, the upper head connecting block is formed to protrude upward through the vent opening, spaced apart from the ventilation hole at a predetermined interval formed a folding sunshade roof on the upper head connecting block A separate two-layer sunshade roof may be installed.

Hereinafter, a structure of a canopy according to preferred embodiments of the present invention will be described in detail with reference to the drawings.

First, as shown in Figure 1a, 1b, the structure of the canopy according to a preferred embodiment of the present invention, the pillar (1), the slide connecting block (2), the end connecting block (8), the roof border frame ( 3), the roof center frame 4, the rod connecting block 10, the upper head connecting block 5, the lower head connecting block 6 and the roof fabric (7).

That is, the pillar (1) is built on the ground to support the canopy of the present invention, at least four in the first stage, at least six in the second stage, at least eight in the third stage It is a configuration in which a plurality of pieces are placed side by side in order to support them.

Here, the slide connecting block (2) is formed in a shape surrounding the column (1) to be able to slide in the vertical direction along the column (1), the sliding so as to secure the elevated position when the roof unfolds It is a component that cannot be lowered by being caught by a key lever embedded in the slide connecting block (2).

At this time, when folding the roof, the user may release the key lever or release the slide connecting block 2 to freely descend, and collect the pillars to fold the roof rim frame 3 and the roof center frame 4. .

In addition, the roof frame frame 3 is composed of a first rod 31 and a second rod 32, the first rod 31 is pivoted to the end connecting block 8 of the column 1 The second rod is pivoted on the slide connecting block 2 so that the center is pivoted in the form of "X" so that it can be folded, and is usually connected by at least two pairs per roof for supporting the edge of the roof. 8 pairs).

In addition, the roof center frame 4 is composed of four pairs of the first rod 41 and the second rod 42, the first rod 41 is the first rod of the roof frame frame 3 (31) is pivoted on the rod connecting block (9), the second rod 42 is pivoted on the rod connecting block (10) of the second rod (32) of the roof border frame (3) to the center Is pivoted in an "X" shape and is installed to support the central portion of the roof.

Here, the length of the bar of the roof center frame 4 is longer than the length of the roof border frame 3 so that the height of the upper head connecting block 5 is higher than the height of the roof border frame 3 when unfolded. Since the first bar 41 of the roof center frame 4 is longer than the second bar 42, the roof top may be formed without a separate vertical bar in the center of the roof.

In addition, the upper head connecting block 5 is pivoted on the first bar 41 of each of the plurality of roof center part frames 4 to form the outermost upper end of the roof, the lower head connecting block 6, The second bar 42 of each of the four roof center part frames 4 is pivoted to form an innermost upper end of the roof.

On the other hand, the roof cloth (7) is a cloth that can cover the rim frame (3) and the roof center portion frame (4) to form a sunshade, to drain rainwater in the rain.

Therefore, as shown in FIG. 1B, when the user spreads open four pillars 1, the slide connecting block 2 rises, and the first rod 31 and the second frame of the roof frame frame 3 rise. As the angle between the rods 32 becomes narrower, the length is extended, and the first rod 41 and the second rod 42 of the roof center frame 4 connected thereto are also extended as the angle between the rods 32 becomes narrower. Since the first bar 41 of the central frame 4 is longer than the second bar 42, the upper head connecting block 5 may rise higher than the height of the roof rim frame 3.

Subsequently, when the user unfolds the pillar 1 to the maximum, the slide connecting block 2 is caught by the key lever and cannot be lowered, and the shape of the roof frame frame 3 and the roof center frame frame 4 is lowered. This can be fixed.

Subsequently, the user can complete the canopy of the present invention by covering the roof cloth 7 on the roof rim frame 3 and the roof center frame 4 as shown in FIG. 1A.

Thereafter, the user presses or releases the key lever to lower the slide connecting block 2, and closes the pillar 1 to completely fold the roof border frame 3 and the roof center frame 4 Minimizing the volume can facilitate storage and transport.

On the other hand, as shown in Figures 3a, 3b, 3c, 3d, 3e, the structure of this canopy of the present invention is not necessarily limited to the dome membrane roof type shown in Figures 1a and 3a, the slate roof type shown in Figure 3b In addition, it can be applied to the cross-shaped roof type shown in Figure 3c, the cross- resources membrane roof type shown in Figure 3d, the modified cross- resources membrane roof type shown in Figure 3e.

Here, the slate roof type of FIG. 3b is designed to replace and assemble the bar of the high roof center frame of the center peak in FIG. 1b to the front side and the rear side, and to design the width and length of the roof frame frame equally or differently. It is possible to vary the shape of the peaks (note, "A", "B" front truss can be applied).

In addition, the cross-shaped roof of FIG. 3C may be designed such that rain or snow flows from the center peak to four corners by replacing and assembling the bars of the roof center frame on the left and right sides in FIG. 3B. (See, "B of FIG. 3B." "Front truss can be applied)

In addition, the decayed dome roof type of FIG. 3D may be designed to be used in an area of heavy snow or rain by designing a much higher center peak, that is, a pipe of the roof center frame in FIG. 3C. (Refer to FIG. 3B. "B" front truss also available)

In addition, the deformed dorsal membrane roof type of FIG. 3E may be designed to remove the peaks on the left and right sides in FIG. 3D so as to maintain the height of the center portion back and forth.

In addition, the structure of the canopy of the present invention can be applied to all canopies of various forms and types.

In addition to the canopies shown in FIGS. 3A, 3B, 3C, 3D, and 3E, the pillar 1 is further extended by two, and the roof border frame 3 and the roof center frame 4 are extended. It is also possible to install in two stages so that the two upper head connecting block 5 and the lower head connecting block (6) is formed.

In addition, the pillar 1, the roof frame frame 3, and the roof center frame frame 4 may be further extended to form three or four stages as necessary.

On the other hand, as shown in Figure 5a, the slide connecting block 2 is configured to indirectly press the slide-type key lever 10 so that the user does not injure fingers or the like, the main body 12 and the slide type The key lever 10, the elastic spring 30, and the key lever fixture 22 are comprised.

That is, the main body 12 is an injection molding block in which a cylindrical rail 20 is formed on a lower surface thereof, and the sliding key lever 10 is inserted into the rail 20 of the main body 12 to be slidable. And, when the user pushes the sliding key lever 10 to move forward, the front end is a cylindrical injection block is formed to be inserted into the through-hole (2a) formed in the column (1).

In addition, the elastic spring 30 is inserted between the front end of the sliding key lever 10 is installed between the main body 12 and the sliding key lever 10 to the sliding key lever 10. Restorative force acts in the reverse direction.

In addition, the key lever fixture 22, which is a bent on the locking groove (10a) formed in the sliding key lever 10, the fixing cap 101 for covering and fixing the sliding key lever (10). The slide type is inserted into the vertical hole 101a formed in the lower portion and lowered by its own weight so that its front end is caught by the locking groove 10a of the slideable key lever 10, and the slideable key lever 10 is moved forward. It is a kind of stopper for fixing the key lever 10.

Therefore, when the user wants to lower the slide connecting block 2 which is hung by the sliding key lever 10, the key lever fixing tool 22 which fixes the sliding key lever 10 is lifted. When the sliding key lever 10 is lifted up and the sliding key lever 10 is retracted by the elastic spring 30, the front end portion of the slide key lever 10 is connected to the pillar 1. It is separated from the formed through hole (2a) is the coupling of the column 1 and the slide connecting block 2 is released to freely descend the slide connecting block (2).

In addition, when fixing the slide connecting block (2) to the pillar (1), the user pushes the rear end of the sliding key lever 10 to the front end of the sliding key lever 10 to the pillar ( After the slide connecting block is fixed to the pillar 1 by inserting it into the through hole 2a formed in 1), the vertical hole formed in the fixing tab 101 so that the sliding key lever 10 does not reverse. The key lever fixture 22 can be fixed while being spun down by itself.

On the other hand, as shown in Figure 5b, in another embodiment of Figure 5a, the slide connecting block 2 is configured to indirectly press the rotary key lever 70 so as not to injure the user finger, the main body, (12), the rotary key lever 70 and the elastic spring (80).

That is, the main body 12 is an injection molding block in which a guide plate 70a is formed on a side surface, and the rotary key lever 70 is rotated around the pivot axis on the guide plate 70a of the main body 12. When the user raises the slider connection block when unfolding, the rotary key lever 70 is rotated forward by the elastic spring, so that the stem formed on one side is inserted into the through hole 2a formed in the pillar 1. It is a rotating plate-shaped injection block to be formed.

In addition, the elastic spring 80 is inserted between the other tail portion of the rotary key lever 70 is installed between the main body 12 and the rotary key lever 70 as the rotary key lever 70. Restoring force acts in the direction of forward rotation.

Therefore, when the user wants to lower the slide connection block 2 hanging by the rotary key lever 70, the knob of the rotary key lever 10 is pressed to reverse the rotary key lever 10. By rotating the top of the rotary key lever 70 is separated from the through hole (2a) formed in the pillar 1, the coupling of the pillar 1 and the slide connecting block 2 is released to the slide connecting block ( The descent of 2) becomes free.

In addition, when fixing the slide connecting block (2) to the pillar (1), the user only releases the handle of the rotary key lever 70, the top of the rotary key lever 70 is the elastic spring ( The slide connecting block 2 can be fixed to the pillar 1 by being pushed by 80 and inserted into the through hole 2a formed in the pillar 1.

In addition, various forms and types of fixing means capable of fixing the slide connecting block 2 and the pillar 1 may be applied without departing from the technical spirit of the present invention, and those skilled in the art It is easy to modify and change.

The slide connecting block 2, the end connecting block 8 of the pillar, the first bar rod connecting block 9, the second bar connecting rod 10, and the upper part of the roof frame frame 3 The head connection block 5 and the lower head connection block 6 may be plastic injection structures or welded structures depending on the application, and as shown in FIGS. 4A, 4B, 4C, 4D and 5A, 5B, It can be produced in an embodiment.

That is, as shown in FIG. 4A, a hinge shaft 33 penetrating simultaneously through the pinhole 31a formed in each of the first bar 31 and the second bar 32 and the pinhole 33a formed in the connection block. Arm 34 is formed to be pivotally coupled by).

Herein, a wavy spline groove is formed in the inner diameter surfaces of the pinholes 31a formed in the first rods 31 and 41 and the second rods 32 and 42, and the hinge penetrates through the pinholes 31a. On the outer surface of the shaft 33 is formed a wave-shaped spline projection corresponding to the spline groove (35a), the hinge axis 33 and the first rod 31 or the second rod ( The pin is rotated in the hinge 32 is connected, and the cap or pin 36 is fixed to the end of the hinge shaft 33 to further secure the coupling.

At this time, the pinhole 31a formed at the ends of the first rod 31 and the second rod 32 is formed by pressing the puncher directly at the ends of the first rod 31 and the second rod 32. 4A, the pinhole 31a is formed in a separate injection molding 35, and the pinhole 31a is also formed in the first rod 31 and the second rod 32. The hinge shaft 33 passes through the pinhole 31a of the injection molding 35 and the pinhole 31a of the first rod 31 or the second rod 32 at the same time, so that the hinge shaft 33 A pin or a cap at the end can secure the injection 35 and the first rod 31 or the second rod 32.

On the other hand, as shown in Figure 6a, 6b, the structure of the canopy according to another preferred embodiment of the present invention, the ventilation hole 55 is formed in the pointed center of the roof cloth (7), the upper head connection block (2) is formed to protrude upwardly through the vent hole 55, and is spaced apart from the vent hole (55) at a predetermined interval, the separate foldable shade roof 51 formed on the upper head connection block (5) The awning roof 52 is installed.

Here, the two-layer sunshade roof 52 has a diameter sufficiently larger than that of the ventilation opening 55 to completely block sunlight from the ventilation opening 55.

Therefore, the user usually keeps the frame folded and as shown in Figure 6b, open the column (1) slightly open, as shown in Figure 6a, as shown in Figure 6a, on the completed two-layer awning roof 52 , Covering the roof cloth formed with the ventilation hole 55 can be completed.

The sunshade roof 51 supporting the two-layer sunshade roof 52, as shown in Figure 6b, consisting of a radial sunshade roof 511 and a folding sunshade roof 512, the Radial sunshade roof 511, the skeleton to form the sunshade roof 52, the foldable sunshade roof 512 is supported so that the radial sunshade roof 511 unfolded when the frame is unfolded It is to play a role.

Of course, the canopy formed with the two-layer sunshade roof 52 is provided by extending the two additional pillars 1, and extending the roof rim frame 3 and the roof center frame 4 by two upper portions. The head connecting block 5 and the lower head connecting block 6 are formed, and the four-layer reinforcing bar 53 of FIG. It is also possible to install one more stage in two stages. In addition, the pillar 1, the roof frame frame 3, the roof center frame frame 4, and the edge reinforcing bar 53 may be further extended to form three or four stages as necessary.

Meanwhile, as shown in FIGS. 7A, 7B, and 7C, the first rod 41, the second rod 42, and the first rod 41 of the roof center frame 4 where one end of the foldable sunshade roof 512 is pivoted. The shape of the three bars 53 can be produced in a variety of ways depending on the purpose or the strength of the wind, as shown in Figure 7a, so that the first bar 41 to push up the second bar (42). It may be pivoted on the slide bar 42 that is slid, and as shown in FIG. 7B, the second bar 42 may be pivoted on the slide bar 41 that is slid to pull up along the first bar 41. As shown in FIG. 7C, the first bar 41 and the second bar 42 may be pivoted by crossing each other in an “X” shape. In addition, the third bar 53 may be used for strength or use. May be included or excluded accordingly.

In addition, as shown in Figures 8a and 8b, in the form of the radial sunshade roof 511, the other end pivoting the foldable sunshade roof 512 is pivoted, such as straight, curved, bending, etc. 8A, the foldable sunshade roof 512 may be hinged out of the center or the center of the radial sunshade 511 or as shown in FIG. 8B. The sunshade roof 512 may be pivoted at both ends of a pair of foldable sunshade roofs that are slid or fixed along the radial sunshade roof 511 and the first bar 41, respectively.

Therefore, the roof frame frame 3 and the roof center frame frame 4 can form various shapes of the roof installed by bars having different lengths and shapes, and improve the appearance and firmly secure the edges of the roof. There is an advantage to support.

In addition, it is easy to form the roof in multiple stages, to prevent injuries that can be worn when the user operates the snap button 11 by using the key lever, and to smoothly ventilate the roof, and at the same time to enhance the product There is an advantage to enable temperature control by smoothing the internal air circulation.

The present invention is not limited to the above-described embodiments, and of course, modifications may be made by those skilled in the art without departing from the spirit of the present invention.

For example, in the embodiment of the present invention is limited to the structure of the canopy of the first and second stages, but can also be formed in various ways by connecting various stages, depending on the shape and type of roof roof, roof roof, slate roof, cross roof, It can be applied to cross-roofed film, modified cross-roofed film, etc., and it is possible to change the shape and type of two-layer sunshade roof in various ways to make ventilation and beauty more beautiful.

Therefore, the scope of the claims in the present invention will not be defined within the scope of the detailed description, but will be defined by the following claims and the technical spirit thereof.

According to the structure of the canopy of the present invention as described above, according to the shape and type of the roof, it can be applied to the ground-top roof (pyramid) type, slate roof (gable) type, cross roof type, cross-source membrane roof type, modified cross-source membrane roof type It not only beautifully drains and aesthetics, but also reinforces the edge of the roof if necessary to strengthen the endurance and preservation of external force, and it is safe by using the user's key lever. It is possible to prevent the temperature rise, to improve the product, and also to remove the vents and the two-layer sunshade roof, it has the effect that it can be used for two purposes according to various environments, such as seasonal temperature.

Claims (8)

  1. At least four pillars erected on the ground;
    An end connection block fixed to an end of the pillar;
    A slide connecting block formed to slide along the pillar;
    The first rod is pivoted on the end connection block of the pillar, the second rod is pivoted on the slide connection block, and the center bar is pivoted in the form of "X" so as to be foldable, and a plurality of roof border frames supporting the edge of the roof. ;
    The first rod is pivoted on the end connecting block of the first rod of the roof frame, and the second rod is pivoted on the end connecting block of the second rod of the roof frame so that the center of the roof frame can be folded. At least four pairs of roof center frames pivoted and supporting the center of the roof;
    A bar connection block connecting the roof frame and the roof frame;
    An upper head connecting block pivoted on a first bar of each roof center frame to form an outermost upper end of the roof;
    A lower head connecting block pivoted on a second bar of each of the roof center part frames to form an innermost upper end of the roof;
    A connection block including an edge reinforcement bar that is foldable between the roof end connection block and the upper head connection block to form a corner toward the center of the roof to reinforce the corner; And
    A roof cloth covering the roof border frame and the roof center frame;
    Canopy structure, characterized in that comprises a.
  2. The method of claim 1,
    The bar length of the roof center frame is longer than the length of the bar border frame so that the height of the upper head connecting block is higher than the horizontal plane height of the roof border frame, and the first rod of the roof center frame is larger than the second bar. Long canopy structure, canopy roof (pyramid) type, slate (gable) roof type, cruciform roof type, cruciform membrane roof type, strain canopy roof type, characterized in that the canopy structure.
  3. The method of claim 1,
    The pillar, and the structure of the canopy, characterized in that installed in multiple stages to extend the roof border frame and the roof center portion frame to form a plurality of upper head connection block and lower head connection block.
  4. The method of claim 1,
    The slide connecting block,
    A main body which is an injection molding block having a cylindrical rail formed on its bottom surface;
    A sliding key lever inserted into a rail of the main body, the sliding key lever being a cylindrical injection block formed to be inserted into a through hole formed in the pillar when the user pushes the sliding forward;
    An elastic spring inserted into a distal end of the sliding key lever and installed between the main body and the sliding key lever to act as a restoring force in a direction of reversing the sliding key lever; And
    It is a bent clamp that is caught in the locking groove formed in the sliding key lever, and is inserted into a vertical hole formed in a fixed cap that covers and fixes the sliding key lever and descends by its own weight so that its tip is the locking groove of the sliding key lever. A key lever fixture for fixing the sliding key lever when the sliding key lever is in a forward state;
    Canopy structure, characterized in that comprises a.
  5. The method of claim 1,
    The slide connecting block,
    A main body which is an injection molding block on which side guide plates are formed;
    Rotating plate shape is rotatable around the pivot axis to the guide plate of the main body, and is rotated forward by the elastic spring when the user raises the slider connection block when the user unfolds, so that the spigot formed on one side is inserted into the through hole formed in the pillar. A rotary key lever which is an injection block of the; And
    An elastic spring inserted into the other tail portion of the rotatable key lever and installed between the main body and the rotatable key lever and having a restoring force acting in a direction of forward rotation of the rotatable key lever;
    Canopy structure, characterized in that comprises a.
  6. The method of claim 1,
    The slide connecting block, the end connecting block of the column, the rod connecting block of the first rod of the frame frame, the rod connecting block of the second rod, the upper head connecting block, the lower head connecting block is a plastic injection structure, Depending on the application, a welded structure is possible, and an arm is formed to pivot by a pinhole formed in each of the first and second rods and a spool line or a cylindrical hinge shaft that simultaneously passes through the pinhole formed in the connecting block. Canopy structure, characterized in that.
  7. The method of claim 1,
    A vent hole is formed at the pointed center of the roof cloth, and the upper head connection block, which is a plastic injection molding or a welding structure, is formed to protrude upward through the vent hole, and is spaced apart from the vent hole at a predetermined interval to connect the upper head. Canopy structure, characterized in that a separate two-layer awning roof is formed on the block folding awning roof.
  8. The method of claim 7, wherein
    The awning roof bar is a radial awning roof bar to form the awning roof; And
    One end is pivoted out of the center or the center of the radial awning roof, or sliding or fixed along the radial awning roof to be foldable, the other end is the second reinforcement bar and / or the second of the roof center frame Folding sunshade roof pivoted to each rod;
    Canopy structure, characterized in that comprises a.
KR1020020000982A 2002-01-08 2002-01-08 Structure of canopy KR20020018687A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020020000982A KR20020018687A (en) 2002-01-08 2002-01-08 Structure of canopy

Applications Claiming Priority (10)

Application Number Priority Date Filing Date Title
KR1020020000982A KR20020018687A (en) 2002-01-08 2002-01-08 Structure of canopy
KR10-2003-0000366A KR100517368B1 (en) 2002-01-08 2003-01-03 Structure of canopy
AT03701158T AT377685T (en) 2002-01-08 2003-01-07 Shelter structure
DE60317304T DE60317304D1 (en) 2002-01-08 2003-01-07 Shelter structure
EP20030701158 EP1470305B1 (en) 2002-01-08 2003-01-07 Structure of canopy
JP2003558293A JP4052247B2 (en) 2002-01-08 2003-01-07 Canopy structure
CN 03805370 CN1283889C (en) 2002-01-08 2003-01-07 Structure of canopy
US10/500,926 US7422026B2 (en) 2002-01-08 2003-01-07 Structure of canopy
AU2003203201A AU2003203201A1 (en) 2002-01-08 2003-01-07 Structure of canopy
PCT/KR2003/000021 WO2003058010A1 (en) 2002-01-08 2003-01-07 Structure of canopy

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100660688B1 (en) * 2003-11-11 2006-12-21 김대환 Structure of new truss-type canopy
KR100725305B1 (en) * 2003-11-22 2007-06-07 김대환 Structure of 2 step peak-type canopy
KR100890798B1 (en) * 2007-07-23 2009-03-31 김생운 Frame structure for easy house
KR200486851Y1 (en) 2017-12-02 2018-07-06 홍종구 Adjustable lever of the canopy

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7497227B2 (en) 2006-07-14 2009-03-03 Carter Mark C Corner brace
KR100760241B1 (en) * 2006-10-18 2007-10-02 권혁종 Polygon foldable type canopy structure and complex-shape foldable canopy structure having a shape combination function
KR100886118B1 (en) * 2007-09-14 2009-02-27 조민태 Apparatus for fixing prop of folding tent
KR101207949B1 (en) 2011-11-02 2012-12-04 정봉균 Canopy with auto ascent and descent function of center frame
KR101285129B1 (en) * 2012-10-17 2013-07-11 이동학 A solidly canopy
KR101285130B1 (en) * 2012-11-09 2013-07-19 이동학 A solidly large-sized canopy
KR101875367B1 (en) 2017-10-26 2018-08-02 주식회사 아웃팅 Withdrawal distance adjustment type canopy leg

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100660688B1 (en) * 2003-11-11 2006-12-21 김대환 Structure of new truss-type canopy
KR100725305B1 (en) * 2003-11-22 2007-06-07 김대환 Structure of 2 step peak-type canopy
KR100890798B1 (en) * 2007-07-23 2009-03-31 김생운 Frame structure for easy house
KR200486851Y1 (en) 2017-12-02 2018-07-06 홍종구 Adjustable lever of the canopy

Also Published As

Publication number Publication date
KR20030060785A (en) 2003-07-16
KR100517368B1 (en) 2005-09-28

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