CN109505454B - Folding tent with automatic cornice structure - Google Patents

Folding tent with automatic cornice structure Download PDF

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Publication number
CN109505454B
CN109505454B CN201811612416.3A CN201811612416A CN109505454B CN 109505454 B CN109505454 B CN 109505454B CN 201811612416 A CN201811612416 A CN 201811612416A CN 109505454 B CN109505454 B CN 109505454B
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CN
China
Prior art keywords
cornice
sliding sleeve
rod
push rod
folding
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Active
Application number
CN201811612416.3A
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Chinese (zh)
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CN109505454A (en
Inventor
孙渊儒
曾超
何健
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Zhejiang Jiansheng Leisure Products Co Ltd
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Zhejiang Jiansheng Leisure Products Co Ltd
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Application filed by Zhejiang Jiansheng Leisure Products Co Ltd filed Critical Zhejiang Jiansheng Leisure Products Co Ltd
Priority to CN201811612416.3A priority Critical patent/CN109505454B/en
Publication of CN109505454A publication Critical patent/CN109505454A/en
Priority to US16/628,680 priority patent/US11072943B2/en
Priority to JP2020600019U priority patent/JP3230328U/en
Priority to DE212019000099.1U priority patent/DE212019000099U1/en
Priority to PCT/CN2019/084962 priority patent/WO2020133855A1/en
Priority to AU2019101725A priority patent/AU2019101725A4/en
Application granted granted Critical
Publication of CN109505454B publication Critical patent/CN109505454B/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
    • E04H15/48Supporting means, e.g. frames collapsible, e.g. breakdown type foldable, i.e. having pivoted or hinged means
    • E04H15/50Supporting means, e.g. frames collapsible, e.g. breakdown type foldable, i.e. having pivoted or hinged means lazy-tongs type
    • E04H15/505Supporting means, e.g. frames collapsible, e.g. breakdown type foldable, i.e. having pivoted or hinged means lazy-tongs type characterised by connecting arches with lazy-tongues

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Tents Or Canopies (AREA)
  • Supports For Plants (AREA)

Abstract

The invention discloses a folding tent with an automatic cornice structure, which comprises a folding tent body, wherein the folding tent body comprises leg pipes and folding rod assemblies, the leg pipes and the folding rod assemblies are installed in a matched mode through leg pipe sliding blocks and leg pipe top pieces, the folding tent also comprises a cornice assembly, the cornice assembly comprises a connecting sleeve group and a cornice rod group, the connecting sleeve group comprises a first sliding sleeve, a second sliding sleeve and a third sliding sleeve, and the cornice rod group comprises cornice rods, diagonal rods and push rods. According to the invention, through the optimization design, the movable structure of the push rod is optimized, and the structural design of combining central fixation with sliding at two ends is adopted, so that the push rod can finish good smoothness, the length of the push rod is shortened, and interference is avoided; in addition, the push rod is combined with the first sliding sleeve, so that the stress point of the cornice lever can be in a movable state, and the overturning cornice of the cornice lever can be conveniently realized; simultaneously, the cornice lever is limited by the first sliding sleeve and the push rod, so that cornice stability is improved.

Description

Folding tent with automatic cornice structure
Technical Field
The invention relates to the technical field of folding tents, in particular to a folding tent with an automatic cornice structure.
Background
Tent is various in structural form, and a tent for outdoor sun-shading use is generally a folding tent. The traditional folding tent sunshade area is smaller, so that the sunshade area after the tent is unfolded is enlarged, the cornice tent with the cornice structure is arranged, the protruding cornice rod is arranged at the vertex angle of the tent, and the aim of increasing the sunshade area is fulfilled by the surrounding edge arranged on the cornice rod. The outer end of the cornice rod is movably arranged outside the upright posts in a stretching way by pivoting the cornice rod or the inserting cornice rod on the ejector rod of the awning top bracket. However, in the present folding tent, the cornice is independently disposed relative to the tent main body frame, and needs to be operated in two steps when being unfolded or folded. When the tent is unfolded, the tent main body support is unfolded, and then each cornice rod is broken off or pulled out one by one, and the cornice rods are positioned at higher positions, so that the operation is inconvenient to realize, and otherwise, the same problem exists. Therefore, the existing folding tent has the problems of complex structure, complicated folding and unfolding operation and inconvenience.
Therefore, the publication number is CN107476647A, a foldable tent is disclosed, the sunshade area is larger, the cornice rod and the first ejector rod can be unfolded and folded together, and the operation is convenient; the transmission piece has a reinforcing effect on the second ejector rod after being unfolded. The device comprises a stand column assembly and a mandril assembly, wherein the mandril assembly comprises a first mandril, a second mandril and a cornice rod, the inner end part of the first mandril is connected with the inner end part of the second mandril in a rotating way, the outer end part of the first mandril is connected with the inner end part of the second mandril in a rotating way, and the outer end part of the second mandril, the inner end part of the cornice rod and the upper end part of the stand column assembly are connected in a two-to-two opposite rotating way or coaxial rotating way; in the unfolded state of the tent, the first ejector rod, the second ejector rod and the cornice rod are respectively unfolded relatively, and the outer end parts of the cornice rods extend to the outer sides of the corresponding upright post assemblies; in the folded state, the first ejector rod, the second ejector rod and the cornice rod are respectively close to each other; each ejector rod assembly further comprises a transmission piece which is connected between the first ejector rod and the cornice rod and used for enabling the cornice rod and the first ejector rod to be unfolded or folded. The foldable awning comprises a transmission piece connected between a first ejector rod and an overhanging eave rod and used for enabling the overhanging eave rod to unfold or fold along with the first ejector rod, wherein the transmission piece is a transmission rod rotatably connected between the first ejector rod and the overhanging eave rod, a four-bar mechanism is formed among the first ejector rod, the second ejector rod, the overhanging eave rod and the transmission rod, the four rods are linked to fold and relatively unfold each other, the transmission rod is provided with an inner end part rotatably connected with the outer end part of the first ejector rod through a pivot and an outer end part rotatably connected with the inner end part of the overhanging eave rod through a pivot, the joint of the transmission rod and the first ejector rod is positioned at the outer side of the joint of the second ejector rod and the overhanging eave rod, the joint of the transmission rod and the overhanging eave rod is positioned at a fixed position, the whole stress point of the overhanging eave structure needs a longer size, and the inner end of the transmission rod is positioned at the joint of the first ejector rod and the second ejector rod, the transmission rod is relatively longer in the whole storage process, and particularly has the folding effect due to the fact that the folding effect of the other rods are more than the folding rods are folded, and the folding effect is easy to be influenced due to the folding mechanism; in addition, the four-bar mechanism is adopted after the structure is finished to cornice, so that the structure is easy to shake when wind power is large, and the using effect is influenced.
Disclosure of Invention
Aiming at the problems, the invention aims to provide the folding tent with the automatic cornice structure, which has the characteristics of convenient and quick shrinkage and more reasonable cornice transmission structure.
The technical problems solved by the invention can be realized by adopting the following technical scheme:
The utility model provides a folding tent with automatically, cornices structure, includes folding tent body, folding tent body includes leg pipe and folding pole subassembly, the leg pipe with install its characterized in that through leg pipe slider and leg pipe top cooperation between the folding pole subassembly: still include cornice subassembly, cornice subassembly includes adapter sleeve group and cornice pole group, adapter sleeve group includes first sliding sleeve, second sliding sleeve and third sliding sleeve, cornice pole group includes cornice pole, diagonal draw bar and push rod, first sliding sleeve with cornice pole sliding fit, first sliding sleeve with the articulated cooperation of push rod, the second sliding sleeve with push rod fixed fit, second sliding sleeve and folding ejector pin sliding fit, the second sliding sleeve with diagonal draw bar hinged fit, the third sliding sleeve with folding ejector pin fixed fit, third sliding sleeve and folding diagonal draw bar hinged fit.
When the folding tent is in a contracted state, the open end of the cornice rod is positioned at an inward position; when the folding tent is in an open state, the open end of the cornice rod is in an outward position; when the folding tent is changed from a contracted state to a spread state, the first sliding sleeve gradually slides to the hinged end of the cornice rod, and when the first sliding sleeve slides to the limit position, the cornice rod starts to turn over, and the first sliding sleeve gradually slides to the open end until the folding tent is completely opened; and a distance is arranged between the limiting position and the hinged end position of the cornice lever.
And one end of the cornice rod is in hinged fit with the leg pipe top piece, and the first sliding sleeve is pushed by the push rod to slide along the cornice rod.
When the folding tent is in a contracted state, the push rod is far away from the end of the hinged position of the push rod and the first sliding sleeve and is positioned at the innermost position; when the folding tent is in an open state, the push rod is far away from the end of the hinged position of the push rod and the first sliding sleeve and is in the outermost position; when the folding tent is converted from the contracted state to the expanded state, the diagonal draw bar drives the second sliding sleeve to move outwards along the folding ejector rod and drives the push rod to move outwards, and the sliding stroke of the second sliding sleeve is between the third sliding sleeve and the hinge position of the folding ejector rod and the leg pipe top piece.
The middle part of the push rod is fixedly arranged with the second sliding sleeve, one end of the push rod is hinged with the first sliding sleeve, and the other end of the push rod is sleeved on the third sliding sleeve in a penetrating manner and is in sliding fit.
The push rod comprises a first push rod part and a second push rod part, and the second push rod part is used for stretching and sliding on the third sliding sleeve.
The leg pipe top piece is provided with a cornice lever installation groove and a folding ejector rod hinge groove, and the cornice lever is in hinge fit with the groove wall of the cornice lever installation groove.
Push rod standing grooves are formed in one side of the cornice rod mounting groove.
The second sliding sleeve is provided with a second hinged lifting lug, the second hinged lifting lug is used for being in hinged fit with one end of the diagonal draw bar, the other end of the diagonal draw bar is in hinged fit with the folding diagonal draw bar, and the second sliding sleeve is also provided with a second push rod perforation and a second folding push rod perforation.
The third sliding sleeve is provided with a third hinge lifting lug which is used for being in hinge fit with the folding diagonal rod, and the third sliding sleeve is also provided with a third push rod perforation and a third folding push rod perforation.
According to the invention, through the optimization design, the movable structure of the push rod is optimized, and the structural design of combining central fixation with sliding at two ends is adopted, so that the push rod can finish good smoothness, the length of the push rod is shortened, and interference is avoided; in addition, the push rod is combined with the first sliding sleeve, so that the stress point of the cornice lever can be in a movable state, and the overturning cornice of the cornice lever can be conveniently realized; simultaneously, the cornice lever is limited by the first sliding sleeve and the push rod, so that cornice stability is improved.
The features of the present invention will be apparent from the following detailed description of the preferred embodiments, taken in conjunction with the accompanying drawings.
Drawings
FIG. 1 is a schematic view of the overall opening structure of the present invention;
FIG. 2 is a schematic view of a cornice assembly according to the present invention;
FIG. 3 is a schematic view of a cornice assembly according to the present invention;
FIG. 4 is a schematic view of a cornice assembly according to the present invention;
FIG. 5 is a schematic view of a second sliding sleeve according to the present invention;
FIG. 6 is a schematic view of a third sliding sleeve according to the present invention;
FIG. 7 is a schematic view of the structure of the cornice assembly in the complete turning state of the cornice lever according to the present invention;
FIG. 8 is a schematic view of the structure of the cornice assembly of the present invention in the about-to-turn state of the cornice lever;
FIG. 9 is a schematic view of the structure of the cornice assembly of the present invention in the non-flipped state of the cornice lever;
FIG. 10 is a second schematic diagram of the overall distraction structure of the present invention;
FIG. 11 is a schematic view of the overall contracted structure of the present invention;
FIG. 12 is a schematic view of an overall semi-open/close structure of the present invention;
FIG. 13 is a schematic diagram of a whole distracting structure according to the present invention;
1, a cornice component; 11. a cornice lever; 12. a push rod; 13. a diagonal draw bar; 14. a first sliding sleeve; 15. the second sliding sleeve; 151. the second hinge lifting lug; 152. a second pushrod perforation; 153. the second folding ejector rod is perforated; 154. a second cornice lever placement slot; 16. a third sliding sleeve; 161. a third hinge lug; 162. a third push rod perforation; 163. a third folding ejector rod perforation; 164. a third cornice lever placement slot; 2. leg tube; 3. a leg tube slider; 4. a central rod; 5. a center lock assembly; 6. a sidebar assembly; 7. leg tube top; 71. folding the ejector rod hinge groove; 72. a cornice lever mounting groove; 73. a push rod placing groove; 8. folding the ejector rod; 9. folding the diagonal rod; A. a hinged end; B. a limit position; C. an open end.
Detailed Description
The invention is further described with reference to the following detailed drawings in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the implementation of the invention easy to understand.
As defined herein, the terms "inner", "outer", and the like are all referenced to the location of the center point of the collapsible shelter, and are closer to the center of the collapsible shelter, and vice versa.
As shown in fig. 1 to 13, the present invention provides a folding tent with an automatic cornice structure, comprising a folding tent body, wherein the folding tent body comprises leg pipes 2 and a folding rod assembly, and the leg pipes 2 and the folding rod assembly are installed in a matched manner through leg pipe sliding blocks 3 and leg pipe top pieces 7.
The leg pipe 2, the leg pipe sliding block 3 and the folding rod assembly in the folding tent body can all adopt corresponding structures in the existing folding tent; wherein the number of the leg pipes 2 is at least 2, and is 4 or 6 conventionally, and a plurality of multi-top folding canopies are also arranged, and the number of the leg pipes can be 8 and the like; the folding rod assembly comprises a central lock assembly 5 positioned at the central part and a plurality of central rods 4 hinged and matched with the central lock assembly 5, and side rod assemblies 6 are arranged between the leg pipes 2, wherein the components of the central lock assembly 5, the side rod assemblies 6, the leg pipe sliding blocks 3, the leg pipes 2, the central rods 4 and the like are all structural characteristics in the prior art, and the corresponding connection relationship is conventional structural design in the folding tent.
Wherein, leg pipe top 7 is equipped with cornice pole mounting groove 72 and folding ejector pin hinge groove 71, cornice pole 11 and cornice pole mounting groove 72 cell wall hinge cooperation, and cornice pole mounting groove 72 one side is equipped with push rod standing groove 73, and optimal design leg pipe top 7 structure can effectively cooperate cornice subassembly 1 structure.
The cornice assembly 1 comprises a connecting sleeve group and a cornice rod group, wherein the connecting sleeve group comprises a first sliding sleeve 14, a second sliding sleeve 15 and a third sliding sleeve 16, and the cornice rod group comprises a cornice rod 11, a diagonal draw bar 13 and a push rod 12.
The first sliding sleeve 14 is in sliding fit with the cornice rod 11, the first sliding sleeve 14 is in hinged fit with the push rod 12, one end of the cornice rod 11 is in hinged fit with the leg pipe top piece 7, and the first sliding sleeve 14 is pushed by the push rod 12 to slide along the cornice rod 11; when the folding tent is in a contracted state, the open end C of the cornice lever 11 is positioned inwards; when the folding tent is in an open state, the open end C of the cornice lever 11 is in an outward position; when the folding tent is converted from a contracted state to an expanded state, the first sliding sleeve 14 gradually slides to the hinged end A of the cornice rod 11, when the first sliding sleeve 14 slides to the limit position B, the cornice rod 11 starts to turn over, and the first sliding sleeve 14 gradually slides to the open end C until the folding tent is completely opened; a distance is arranged between the limit position B and the position A of the hinged end of the cornice lever 11.
In the above description, the open end C and the hinge end a are respectively located at two ends of the cornice 11, where the spacing between the limit position B and the hinge end a of the folding tent with different specifications and sizes is different, and the spacing between the limit position B and the hinge end a must be set, where the spacing is for the better force-driven operation of the cornice 11 during the overturning process, and there is an arc spacing during the overturning process of the cornice 11, and in addition, the sliding curve of the first sliding sleeve 14 is an arc line, and the first sliding sleeve 14 also moves gradually toward the development end C during the sliding process until the folding tent is completely opened; when the collapsible shelter is fully unfolded, the first sliding sleeve 14 is spaced from the hinge end a by a distance greater than the spacing between the extreme position B and the hinge end a.
The second sliding sleeve 15 is fixedly matched with the push rod 12, the second sliding sleeve 15 is in sliding fit with the folding ejector rod 8, the second sliding sleeve 15 is in hinged fit with the diagonal draw rod 13, the third sliding sleeve 16 is in sliding fit with the push rod 12, the third sliding sleeve 16 is fixedly matched with the folding ejector rod 8, the third sliding sleeve 16 is in hinged fit with the folding diagonal draw rod 9, the middle part of the push rod 12 is fixedly installed with the second sliding sleeve 15, one end of the push rod 12 is hinged with the first sliding sleeve 14, and the other end of the push rod 12 is sleeved on the third sliding sleeve 16 in a penetrating manner; the push rod 12 includes a first push rod portion 121 and a second push rod portion 122, and the second push rod portion 122 is configured to slide on the third sliding sleeve 16 in a telescopic manner; when the folding tent is in a contracted state, the push rod 12 is at the innermost position away from the end where the push rod is hinged with the first sliding sleeve 14; when the folding tent is in the open state, the end of the push rod 12, which is far away from the hinge position of the push rod and the first sliding sleeve 14, is in the outermost position; when the folding tent is changed from the contracted state to the expanded state, the diagonal draw bar 13 drives the second sliding sleeve 15 to move outwards along the folding ejector rod 8 and drives the push rod 12 to move outwards, and the sliding stroke of the second sliding sleeve 15 is between the third sliding sleeve 16 and the hinged position of the folding ejector rod 8 and the leg pipe top piece 7.
Further, a second hinged lifting lug 151 is arranged on the second sliding sleeve 15, the second hinged lifting lug 151 is used for being in hinged fit with one end of the diagonal draw bar 13, the other end of the diagonal draw bar 13 is in hinged fit with the folding diagonal draw bar 9, a second push rod through hole 152 and a second folding push rod through hole 153 are further arranged on the second sliding sleeve 15, a second cornice bar placing groove 154 is arranged in the middle of the upper portion of the second sliding sleeve 15, and when the folding tent is in a contracted state, the cornice bar 11 is placed on the second cornice bar placing groove 154.
Further, a third hinge lifting lug 161 is arranged on the third sliding sleeve 16, the third hinge lifting lug 161 is used for being in hinge fit with the folding diagonal rod 9, a third push rod through hole 162 and a third folding push rod through hole 163 are further arranged on the third sliding sleeve 16, a third cornice rod placing groove 164 is arranged in the middle of the upper portion of the third sliding sleeve 16, and when the folding tent is in a contracted state, the cornice rod 11 is placed on the third cornice rod placing groove 164.
When the folding tent is in the whole contracted state, as shown in fig. 11, the folding tent is gradually converted to fig. 12 by pulling the leg pipes 2, is in the semi-opened state, continues to synchronously pull the leg pipes 2 and completes locking the central lock assembly 5, and when the folding tent is in the whole contracted state, the cornice assembly 1 gradually enters the starting state and gradually converts to fig. 13, so that the whole folding tent is unfolded.
One end of the folding diagonal rod is hinged to the leg pipe sliding block, the other end of the folding diagonal rod is hinged to the third hinging lifting lug, the leg pipe sliding block continuously moves upwards, the folding lifting rod is driven to be upwards opened through supporting the third hinging lifting lug, meanwhile, the diagonal rod is driven to change in position along with the continuous movement of the folding diagonal rod, the diagonal rod drives the second sliding sleeve to slide outwards along the folding diagonal rod, the second sliding sleeve synchronously drives the push rod to slide outwards, the push rod drives the first sliding sleeve to slide along the cornice rod in a limiting manner, when the push rod drives the first sliding sleeve to slide to a position close to or at which the cornice rod is hinged to the leg pipe top, the cornice rod continuously receives the outward sliding force due to the continuous thrust of the push rod, so that the cornice rod can be quickly turned over at 180 degrees through the hinging point axial center of the leg pipe top, a certain angle deviation exists due to the arrangement of the product rod pieces, the angle deviation does not represent 180 degrees of turning over, the continuous thrust of the push rod is released after the turning over is completed, and the first sliding sleeve is slid outwards until the folding tent is in a completely opened state; if the shrinkage is needed, the movement direction and the acceptance of the component are in opposite states, and the method can be completed.
The invention adopts three different connecting sleeve structures to realize the stress transmission among the rod pieces, wherein the first sliding sleeve is characterized in that the position movement can be realized on the cornice rod, and the push rod is used for driving the first sliding sleeve to slide to drive and output, so that the stress point of the cornice rod can be in a changeable state and is not limited by the stress of a fixed connecting point; the second sliding sleeve is used for inputting the driving force of the push rod, and simultaneously optimally designed to slide along the folding ejector rod, so that the limitation of the stroke direction of the push rod is facilitated; and a third sliding sleeve is additionally arranged, and the push rod slides on the third sliding sleeve, so that the sliding stability of the push rod is improved.
The folding tent is characterized in that a folding and unfolding structure of the folding tent is utilized, a diagonal draw bar is additionally arranged to realize output of driving force, the second sliding sleeve and the push rod are combined to realize secondary transmission, and the first sliding sleeve is utilized to finish stress output of the cornice lever, so that overturning movement of the cornice lever is realized, and overturning cornice is finished.
According to the invention, through the optimization design, the movable structure of the push rod is optimized, and the structural design of combining central fixation with sliding at two ends is adopted, so that the push rod can finish good smoothness, the length of the push rod is shortened, and interference is avoided; in addition, the push rod is combined with the first sliding sleeve, so that the stress point of the cornice lever can be in a movable state, and the overturning cornice of the cornice lever can be conveniently realized; simultaneously, the cornice lever is limited by the first sliding sleeve and the push rod, so that cornice stability is improved.
The foregoing description is only a preferred embodiment of the present invention, and is not intended to limit the invention in any way, but any simple modification, equivalent variation or modification made to the above embodiments according to the technical principles of the present invention still falls within the scope of the technical solutions of the present invention.

Claims (7)

1. The utility model provides a folding tent with automatically, cornices structure, includes folding tent body, folding tent body includes leg pipe and folding pole subassembly, the leg pipe with install its characterized in that through leg pipe slider and leg pipe top cooperation between the folding pole subassembly: the novel folding cornice comprises a cornice body, and is characterized by further comprising a cornice assembly, wherein the cornice assembly comprises a connecting sleeve group and a cornice rod group, the connecting sleeve group comprises a first sliding sleeve, a second sliding sleeve and a third sliding sleeve, the cornice rod group comprises a cornice rod, an inclined pull rod and a push rod, the first sliding sleeve is in sliding fit with the cornice rod, the first sliding sleeve is in hinged fit with the push rod, the second sliding sleeve is in fixed fit with the push rod, the second sliding sleeve is in sliding fit with a folding ejector rod, the second sliding sleeve is in hinged fit with the inclined pull rod, the third sliding sleeve is in fixed fit with the folding ejector rod, and the third sliding sleeve is in hinged fit with the folding inclined rod; one end of the cornice rod is in hinged fit with the leg pipe top piece, and the first sliding sleeve is pushed by the push rod to slide along the cornice rod; the middle part of the push rod is fixedly arranged with the second sliding sleeve, one end of the push rod is hinged with the first sliding sleeve, and the other end of the push rod is sleeved on the third sliding sleeve in a penetrating manner and is in sliding fit; the push rod comprises a first push rod part and a second push rod part, and the second push rod part is used for stretching and sliding on the third sliding sleeve; the third sliding sleeve is in sliding fit with the push rod, the middle part of the push rod is fixedly installed with the second sliding sleeve, one end of the push rod is hinged with the first sliding sleeve, and the other end of the push rod is sleeved on the third sliding sleeve in a penetrating mode.
2. A collapsible shelter having an automatic cornice construction as claimed in claim 1 wherein: when the folding tent is in a contracted state, the open end of the cornice rod is positioned at an inward position; when the folding tent is in an open state, the open end of the cornice rod is in an outward position; when the folding tent is changed from a contracted state to a spread state, the first sliding sleeve gradually slides to the hinged end of the cornice rod, and when the first sliding sleeve slides to the limit position, the cornice rod starts to turn over, and the first sliding sleeve gradually slides to the open end until the folding tent is completely opened; and a distance is arranged between the limiting position and the hinged end position of the cornice lever.
3. A collapsible shelter having an automatic cornice construction as claimed in claim 1 or claim 2 wherein: when the folding tent is in a contracted state, the push rod is far away from the end of the hinged position of the push rod and the first sliding sleeve and is positioned at the innermost position; when the folding tent is in an open state, the push rod is far away from the end of the hinged position of the push rod and the first sliding sleeve and is in the outermost position; when the folding tent is converted from the contracted state to the expanded state, the diagonal draw bar drives the second sliding sleeve to move outwards along the folding ejector rod and drives the push rod to move outwards, and the sliding stroke of the second sliding sleeve is between the third sliding sleeve and the hinge position of the folding ejector rod and the leg pipe top piece.
4. A collapsible shelter having an automatic cornice construction as claimed in claim 1 or claim 2 wherein: the leg pipe top piece is provided with a cornice lever installation groove and a folding ejector rod hinge groove, and the cornice lever is in hinge fit with the groove wall of the cornice lever installation groove.
5. The collapsible shelter with automatic cornice construction of claim 4, wherein: push rod standing grooves are formed in one side of the cornice rod mounting groove.
6. A collapsible shelter having an automatic cornice construction as claimed in claim 1 wherein: the second sliding sleeve is provided with a second hinged lifting lug, the second hinged lifting lug is used for being in hinged fit with one end of the diagonal draw bar, the other end of the diagonal draw bar is in hinged fit with the folding diagonal draw bar, and the second sliding sleeve is also provided with a second push rod perforation and a second folding push rod perforation.
7. A collapsible shelter having an automatic cornice construction as claimed in claim 1 wherein: the third sliding sleeve is provided with a third hinge lifting lug which is used for being in hinge fit with the folding diagonal rod, and the third sliding sleeve is also provided with a third push rod perforation and a third folding push rod perforation.
CN201811612416.3A 2018-12-27 2018-12-27 Folding tent with automatic cornice structure Active CN109505454B (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
CN201811612416.3A CN109505454B (en) 2018-12-27 2018-12-27 Folding tent with automatic cornice structure
US16/628,680 US11072943B2 (en) 2018-12-27 2019-04-29 Folding tent with automatic cornice structure
JP2020600019U JP3230328U (en) 2018-12-27 2019-04-29 Folding tent with automatic awning structure
DE212019000099.1U DE212019000099U1 (en) 2018-12-27 2019-04-29 Foldable tent with an automatic eaves structure
PCT/CN2019/084962 WO2020133855A1 (en) 2018-12-27 2019-04-29 Collapsible tent having automated overhang structure
AU2019101725A AU2019101725A4 (en) 2018-12-27 2019-04-29 Folding tent with automatic cornice structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811612416.3A CN109505454B (en) 2018-12-27 2018-12-27 Folding tent with automatic cornice structure

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Publication Number Publication Date
CN109505454A CN109505454A (en) 2019-03-22
CN109505454B true CN109505454B (en) 2024-04-26

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US12037808B2 (en) * 2018-05-29 2024-07-16 Zhejiang Jiansheng Leisure Products Co., Ltd Folding canopy with eave structure
JP3230328U (en) * 2018-12-27 2021-01-21 浙江健盛休▲閑▼用品有限公司 Folding tent with automatic awning structure

Citations (8)

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