WO2009092227A1 - 一种折叠帐篷架 - Google Patents

一种折叠帐篷架 Download PDF

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Publication number
WO2009092227A1
WO2009092227A1 PCT/CN2008/073445 CN2008073445W WO2009092227A1 WO 2009092227 A1 WO2009092227 A1 WO 2009092227A1 CN 2008073445 W CN2008073445 W CN 2008073445W WO 2009092227 A1 WO2009092227 A1 WO 2009092227A1
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WO
WIPO (PCT)
Prior art keywords
rotating shaft
crossbar
tent frame
pillars
folding tent
Prior art date
Application number
PCT/CN2008/073445
Other languages
English (en)
French (fr)
Inventor
Sunghee Lee
Original Assignee
Sunghee Lee
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 Sunghee Lee filed Critical Sunghee Lee
Publication of WO2009092227A1 publication Critical patent/WO2009092227A1/zh

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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

Definitions

  • the present invention relates to an outdoor living device, and more particularly to a folding tent frame.
  • the folding tent frame in the prior art is usually composed of a supporting leg and a supporting canopy, and is not disassembled by using various parts.
  • the main object of the present invention is to overcome the disadvantages of the prior art and to provide a folding tent which is simple in structure and convenient to fold.
  • a folding tent frame having a simple structure and convenient folding is provided, which is mainly based on the following principles: First, the structure is simple and the support is stable, and the second is convenient to carry and fold.
  • a folding tent frame which is composed of a plurality of pillars and a supporting canopy connected to the pillars
  • the support tent includes: a plurality of supporting poles, a plurality of crossbars, and a connecting member; the first ends of each of the two supporting rods are respectively connected to the two ends of a connecting member by a shaft connection to form an inverted V-shaped structure, and the second ends of the two supporting rods are respectively connected by a rotating shaft connection
  • the crossbar is connected to the top of the two pillars or between the two connecting members by a rotating shaft connection, or the crossbar is connected to the two in a hook connection manner Between the top of the pillar or between the two connectors.
  • each of the cross bars is a telescopic rod.
  • the above-mentioned folding tent frame, the crossbar is a straight rod, and hooks are provided at both ends thereof, and the pillars are correspondingly Or the connecting member is provided with a hanging hole matched with the hook, and the cross bar is hooked and connected between the two pillars or the two connecting members.
  • the above-mentioned folding tent frame has a two-stage structure, wherein the middle portion is a rotating shaft, and the two-stage supporting rods are rotatable and bent relative to the rotating shaft.
  • each of the cross rails or the section support rods is at the end of one end of the shaft connection thereof a concave portion, the two concave portions are mated with a plug connection, and the rotating shaft passes through the two concave portions.
  • the two-stage support rods or cross bars are connected by the following rotating shaft connection: the two-stage support rods or the cross rods respectively form a sleeve, and the two sets of jaws are sleeved with each other and rotatably connected .
  • a folding tent frame of the present invention has the following advantages over the prior art:
  • the support rod and the cross bar can be divided into two-stage structure, the middle part is connected by the rotating shaft, and the folded tent has a smaller volume;
  • the pillars, the crossbars can be telescopic rods, so that the folding tents have a smaller volume
  • FIG. 1 is a schematic perspective view of a first embodiment of the present invention
  • FIG. 2 is a schematic perspective view of a portion of a specific embodiment of the present invention.
  • FIG. 3 is a schematic view showing a state of a half-folding frame according to a specific embodiment of the present invention.
  • FIG. 4 is a schematic view showing a state of a folding raft according to a specific embodiment of the present invention.
  • FIG. 5 is a schematic perspective structural view of a second embodiment of the present invention.
  • FIG. 6 is a schematic enlarged view of a portion A in FIG. 5;
  • FIG. 7 is a schematic perspective structural view of a third embodiment of the present invention.
  • FIG. 8 is a schematic perspective structural view of a fourth embodiment of the present invention.
  • FIG. 9 is a schematic perspective structural view of a four-half folding raft according to a specific embodiment of the present invention.
  • FIG. 10 is a schematic perspective structural view of a fifth embodiment of the present invention.
  • FIG. 11-1 is a schematic structural view of a connection manner of a support rod and a shaft rotation shaft of the present invention
  • Figure 11-2 is a schematic structural view of another connection manner of the support rod and the cross shaft of the crossbar according to the present invention.
  • Figure 11-3 is a schematic structural view of another connection manner of the support rod and the cross shaft of the crossbar according to the present invention.
  • FIG. 11-4 is a schematic structural view showing another connection manner of a support rod and a cross shaft of the cross member according to the present invention.
  • FIG. 11-5 is a schematic structural view of another connection manner of a support rod and a cross shaft of the crossbar according to the present invention.
  • Figure 12-1 is a schematic enlarged view of the structure at B in Figure 11-1;
  • Figure 12-2 is a schematic enlarged view of the portion C in Figure 11-2;
  • Figure 12-3 is a schematic diagram of the enlarged structure of D in Figure 11-3;
  • Figure 12-4 is a schematic diagram of the enlarged structure of E in Figure 11-4;
  • Figure 12-5 is a schematic diagram of the enlarged structure of F in Figure 11-5.
  • a folding tent frame of the present invention includes four pillars 11, 12, 13, and 14.
  • the pillars 11, 12, 13, and 14 are respectively connected to the support rods 21, 22 by means of a shaft connection.
  • the connecting rods 31 are connected to the connecting rods 31 and 22 in a rotating shaft connection manner
  • the connecting rods 32 are connected between the supporting rods 23 and 24 by a shaft connection, the supporting rods 21 and 22, the supporting rods 23 and 24 through the connector 31, 32 points
  • the connecting members 31, 32 can be locked by springs, and the springs are not shown in the drawings.
  • a crossbar 41 is connected between the pillars 11, 13 and a crossbar 42 is connected between the pillars 12, 14.
  • the two ends of the crossbar 41 are connected to the pillars 11, 13 by a shaft connection, respectively.
  • both ends of the crossbar 42 are connected between the pillars 12, 14 by a shaft connection.
  • the connecting rod 21 and the strut 11 are connected by a rotating shaft 61
  • the strut 11 and the crossbar 41 are connected by a rotating shaft 71. Both the rotating shaft 61 and the rotating shaft 71 are disposed on the same fixing member 51, which is convenient for production and production.
  • the connection fixing relationship between the other support rods and the pillars is also the same.
  • a cross bar 43 is connected between the connecting members 31, 32 by a hook connection.
  • the crossbars 41, 42 are two-stage, have the same structure, taking the crossbar 42 as an example, which is divided into 4
  • each section of the crossbars 421 and 422 are telescopic rods.
  • the cross bar 43 may be a telescopic bar.
  • FIG. 3 it is a schematic diagram of a state of a half-folding raft of the present embodiment.
  • FIG. 4 it is a schematic diagram of a state of the folding frame of the present embodiment.
  • the pillars 11, 12, 13, and 14 are telescopic rods.
  • FIG. 1 is a schematic structural diagram of several connection modes of the support rod and the cross shaft of the cross member of the present invention.
  • Figure 12-1 to Figure 12-5 show the enlarged structure of 8, C, D, E, and F in Figure 11-1 to Figure 11-5.
  • the two-stage support rods or the cross-bars respectively form the convex portions 101, 102, which are fixedly connected by the rotation shaft 103.
  • the two-stage support rods or the cross-bars respectively form sleeves 105, 106, and the sleeves 105, 106 are sleeved with each other and rotatably connected.
  • the two-stage support rod or the cross-bar respectively form a concave portion 107 and a convex portion 108, and the convex portion 108 is fitted into the concave portion.
  • the rotating shaft 109 passes through the concave portion 107 and the convex portion 108.
  • the two-stage supporting rods or the cross-bars respectively form two L-shaped portions 110 and 111, and the two L-shaped portions 110 and 111 are cooperatively connected.
  • the rotating shaft 112 is connected to the other through the L-shaped portions 110, 111.
  • the two-stage supporting rods or the cross-bars respectively form two concave portions 113 and 114, and the two concave portions 113 and 114 are inserted and inserted. Connected, the shaft 115 passes through the same The two concave portions 113, 114 form a connection.
  • a folding tent frame of the present invention has the same basic principle as that of the first embodiment, and includes four pillars 11, 12, 13, and 14.
  • the upper ends of the pillars 11, 12, 13, and 14 are respectively
  • the connecting shafts 21, 22, 23, 24 are connected to the rotating shaft, and the connecting members 31, 32 are connected between the supporting rods 21 and 22 and the connecting rods 23 and 24 are respectively connected by the rotating shafts, and the connecting members 31, 32 are connected.
  • a cross bar 41 is connected between the shafts, and the cross bar 41 has the same structure as the cross bar 42 in the first embodiment.
  • the upper ends of the pillars 11, 13 are connected with a cross bar 42 by hook connection, and the cross bars 43 are connected by hooks between the pillars 12, 14.
  • FIG. 6 FIG.
  • the end portion of the cross bar 43 forms a hook 431
  • the upper end portion of the strut 14 forms a hanging hole 141 adapted to the hook 431, and the hook 431 is hung in the hanging hole 141.
  • the other end of the cross bar 43 has the same connection with the strut 12 and the cross bar 42 and the strut 11, 13.
  • the crossbars 42, 43 When using ⁇ , the crossbars 42, 43 are hung in their corresponding hanging holes, and they are removed without using ⁇ , the crossbars 42, 43 may be telescopic rods; the crossbars 42, 43 may also be folded The rod has a core which is an elastic cord and does not need to be removed.
  • the basic principle and structure are the same as those of the second embodiment, except that the cross bars 42 and 43 have the same structure as the cross bar 41, and each has a two-stage structure, wherein the middle portion is a rotating shaft.
  • the two sections of the crossbar are rotatable and bent relative to the rotating shaft, and the two sections of the crossbar are both telescopic rods.
  • a folding tent frame including pillars 11, 12, 13 and 14, the upper ends of the pillars 11, 12, 13, 14 are respectively connected by a rotating shaft connection.
  • the crossbar 41 is connected to the upper end of the pillars 11 and 13, and the crossbar 42 is connected to the upper end of the pillars 11, 13 so that the upper ends of the pillars 12 and 14 are connected to the crossbar 43 by a shaft.
  • the support rods 21, 22, 23, 24 and the cross bars 41, 42, 43 are two-stage structures.
  • the middle part is a rotating shaft, and the two supporting rods or the horizontal rods are rotatable and bent relative to the rotating shaft, and the horizontal crossbar 4 1, the two sections of 42 and 43 are all telescopic rods.
  • FIG. 9 a schematic perspective view of a half-folding structure of the embodiment is shown.
  • the present embodiment has the same principle and basic structure as Embodiment 4, with the difference that: in order to make the entire structure stronger, the connection between the pillars 11 and 12 and the pillars 13 and 14 is strengthened.
  • the members 44 , 45 and the reinforcing members 44, 45 are respectively hung between the pillars 11 and 12 and the pillars 13 and 14 in a hooking manner.
  • the stiffeners 44, 45 can be telescopic rods.
  • the folding tent frame of the invention has the advantages of simple structure, firmness, convenient folding, small volume after folding, convenient storage and carrying, greatly facilitating people's outdoor life, and good industrial applicability.

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

Description

说明书 一种折叠帐篷架
技术领域
[1] 本发明涉及户外生活装置, 特别是指一种折叠帐篷架。
背景技术
[2] 折叠帐篷在人们野营、 户外工作吋广泛应用, 为人们的户外生活提供了一定的 保障及很大的方便。
[3] 现有技术中的折叠帐篷架通常由支撑腿及支撑天篷构成, 不使用吋各部件拆解
、 分散开来, 使用吋再将各部件组装在一起, 使用极其不便。 也有一些帐篷釆 用整体收折式结构, 但往往其支撑天篷的结构复杂, 各个部件相互支撑, 倘若 某一部件损坏, 维修起来极其不便。
发明内容
[4] 本发明的主要目的在于克服现有技术的缺点, 提供一种结构简单、 方便收折的 折叠帐篷。
[5] 为了实现本发明的目的, 提供一种结构简单、 方便收折的折叠帐篷架, 主要基 于如下原则, 一是要结构简单同吋支撑稳定, 二要方便收折同吋要便于携带。
[6] 本发明釆用如下技术方案: 一种折叠帐篷架, 由多根支柱、 一与该支柱连接的 支撑篷架构成, 所述支撑篷架包括: 若干根撑持杆、 若干根横杆和连接件; 每 两根撑持杆的第一端以转轴连接的方式分别连接于一连接件的两端, 形成一倒 V 字形结构, 该两根撑持杆的第二端分别以转轴连接的方式连接于两根支柱的顶 部; 所述横杆以转轴连接的方式连接于两根所述支柱的顶部或两个所述连接件 之间, 或所述横杆以挂钩连接的方式连接于两根所述支柱的顶部或两个所述连 接件之间。
[7] 前述一种折叠帐篷架, 所述横杆为两段式结构, 其中部为一转轴, 两段横杆可 相对于该转轴转动、 弯折。
[8] 前述一种折叠帐篷架, 所述每段横杆均是可伸缩杆。
[9] 前述一种折叠帐篷架, 所述横杆为直杆, 其两端均设有挂钩, 相应地所述支柱 或所述连接件上设有与该挂钩相匹配的挂孔, 横杆以挂钩连接的方式挂设于两 根所述支柱或两个所述连接件之间。
[10] 前述一种折叠帐篷架, 所述横杆是可伸缩杆。
[11] 前述一种折叠帐篷架, 所述撑持杆为两段式结构, 其中部为一转轴, 两段撑持 杆可相对于该转轴转动、 弯折。
[12] 前述一种折叠帐篷架, 其所述两段横杆或两段撑持杆以如下的转轴连接方式连 接: 其中一段横杆或段撑持杆在其转轴连接的一端的端部为一凹形部, 另一段 横杆或段撑持杆在其转轴连接的一端的端部为一凸起部, 该凸起部配合插入所 述凹形部, 所述转轴同吋穿过凸起部及凹形部。
[13] 前述一种折叠帐篷架, 所述两段横杆或两段撑持杆以如下的转轴连接方式连接 : 其中每一段横杆或段撑持杆在其转轴连接的一端的端部均为一 L形部, 该两个 L形部配合连接, 所述转轴同吋穿过该两个 L形部。
[14] 前述一种折叠帐篷架, 所述两段横杆或两段撑持杆以如下的转轴连接方式连接 : 其中每一段横杆或段撑持杆在其转轴连接的一端的端部均为一凹形部, 该两 个凹形部配合插设连接, 所述转轴同吋穿过该两个凹形部。
[15] 前述一种折叠帐篷架, 所述两段撑持杆或横杆以如下的转轴连接方式连接: 两 段撑持杆或横杆分别形成套圏, 两套圏互相套设, 可转动地连接。
[16] 前述一种折叠帐篷架, 所述支柱为可伸缩杆。
[17] 由上述对本发明的描述可知, 与现有技术相比, 本发明的一种折叠帐篷架具有 如下优点:
[18] 1、 本发明的支柱、 撑持杆及横杆间以转轴方式连接, 折叠帐篷可整体收折在 一起;
[19] 2、 撑持杆及横杆间又可分为两段式结构, 其中部以转轴连接, 在折叠帐篷收 折吋具有更小的体积;
[20] 3、 支柱、 横杆可以是伸缩杆, 使折叠帐篷收折吋具有更小的体积;
[21] 4、 本发明支柱、 撑持杆、 横杆相互支撑连接, 整体上结构简单、 牢靠, 收折 方便, 收折后体积小, 方便存储及携带, 极大地方便了人们的户外生活, 具有 附图说明
[22] 图 1为本发明具体实施方式一的立体结构示意图;
[23] 图 2为本发明具体实施方式一一部分的立体结构示意图;
[24] 图 3为本发明具体实施方式一半收折吋的状态示意图;
[25] 图 4为本发明具体实施方式一收折吋的状态示意图;
[26] 图 5为本发明具体实施方式二的立体结构示意图;
[27] 图 6为图 5中 A处放大结构示意图;
[28] 图 7为本发明具体实施方式三的立体结构示意图;
[29] 图 8为本发明具体实施方式四的立体结构示意图;
[30] 图 9为本发明具体实施方式四半收折吋的立体结构示意图;
[31] 图 10为本发明具体实施方式五的立体结构示意图;
[32] 图 11-1为本发明撑持杆及横杆转轴的一种连接方式结构示意图;
[33] 图 11-2为本发明撑持杆及横杆转轴的另一种连接方式结构示意图;
[34] 图 11-3为本发明撑持杆及横杆转轴的另一种连接方式结构示意图;
[35] 图 11-4为本发明撑持杆及横杆转轴的另一种连接方式结构示意图;
[36] 图 11-5为本发明撑持杆及横杆转轴的另一种连接方式结构示意图;
[37] 图 12-1为图 11-1中 B处放大结构示意图;
[38] 图 12-2为图 11-2中 C处放大结构示意图;
[39] 图 12-3为图 11-3中 D处放大结构示意图;
[40] 图 12-4为图 11-4中 E处放大结构示意图;
[41] 图 12-5为图 11-5中 F处放大结构示意图。
具体实施方式
[42] 以下通过具体实施方式对本发明作进一步的描述。
[43] 具体实施方式一
[44] 参照图 1, 本发明的一种折叠帐篷架, 包括四根支柱 11、 12、 13、 14, 支柱 11 、 12、 13、 14以转轴连接的方式分别连接有撑持杆 21、 22、 23、 24, 撑持杆 21 、 22之间以转轴连接的方式连接有连接件 31, 撑持杆 23、 24之间以转轴连接的 方式连接有连接件 32, 撑持杆 21和 22、 撑持杆 23和 24之间通过连接件 31、 32分 别形成一倒 V字形结构, 连接件 31、 32可通过弹簧锁紧, 弹簧在图中未显示。
[45] 参照图 1, 支柱 11、 13之间连接有横杆 41, 支柱 12、 14之间连接有横杆 42, 横 杆 41的两端分别以转轴连接的方式连接在支柱 11、 13的上端, 横杆 42的两端分 别以转轴连接的方式连接在支柱 12、 14之间。 特别值得注意的是, 连撑持杆 21 与支柱 11之间通过转轴 61连接, 支柱 11与横杆 41之间通过转轴 71连接, 转轴 61 与转轴 71均设置在同一固定件 51上, 便于生产与组装; 同样的道理, 其他各撑 持杆与支柱之间的连接固定关系也与其相同。
[46] 参照图 1, 连接件 31、 32之间以挂钩连接的方式连接有横杆 43。
[47] 参照图 1, 横杆 41、 42均为两段式, 具有相同的结构, 以横杆 42为例, 其分为 4
21、 422两段, 中部以转轴 423连接, 每一段横杆 421、 422均为可伸缩杆。
[48] 参照图 2, 为将横杆 43取下吋的结构示意图, 横杆 43可以是可伸缩杆。
[49] 参照图 3, 为本实施方式半收折吋的状态示意图。
[50] 参照图 4, 为本实施方式收折吋的状态示意图。
[51] 另外, 在本实施方式中, 支柱 11、 12、 13、 14是可伸缩杆。
[52] 参照图 11-1至图 11-5, 为本发明撑持杆及横杆转轴的几种连接方式结构示意图
; 图 12-1至图 12-5为图 11-1至图 11-5中8、 C、 D、 E、 F处放大结构示意图。
[53] 参照图 12-1, 撑持杆或横杆转轴连接方式 B中, 两段撑持杆或横杆分别形成凸 起部 101、 102, 通过转轴 103固定连接。
[54] 参照图 12-2, 撑持杆或横杆转轴连接方式 C中, 两段撑持杆或横杆分别形成套 圏 105、 106, 套圏 105、 106互相套设, 可转动地连接。
[55] 参照图 12-3, 撑持杆或横杆转轴连接方式 D中, 两段撑持杆或横杆分别形成一 凹形部 107及一凸起部 108, 凸起部 108配合插入凹形部 107中, 转轴 109同吋穿过 凹形部 107及凸起部 108。
[56] 参照图 12-4, 撑持杆或横杆转轴连接方式 E中, 两段撑持杆或横杆分别形成两 个 L形部 110、 111, 该两个 L形部 110、 111配合连接, 转轴 112同吋穿过两个 L形 部 110、 111形成连接。
[57] 参照图 12-5, 撑持杆或横杆转轴连接方式 F中, 两段撑持杆或横杆分别形成两 个凹形部 113、 114, 该两个凹形部 113、 114配合插设连接, 转轴 115同吋穿过该 两个凹形部 113、 114形成连接。
[58] 具体实施方式二
[59] 参照图 5, 本发明的一种折叠帐篷架, 其基本原理与具体实施方式一相同, 包 括四根支柱 11、 12、 13、 14, 支柱 11、 12、 13、 14的上端分别以转轴连接的方 式连接有撑持杆 21、 22、 23、 24, 撑持杆 21和 22之间、 撑持杆 23和 24之间分别 以转轴连接的方式连接有连接件 31、 32, 连接件 31、 32之间以转轴连接的方式 连接有横杆 41, 横杆 41与具体实施方式一中的横杆 42具有相同的结构。
[60] 参照图 5, 支柱 11、 13的上端以挂钩连接的方式连接有横杆 42, 支柱 12、 14之 间以挂钩连接的方式连接有横杆 43, 参照图 6, 为图 5中 A处放大图, 横杆 43的一 端部形成挂钩 431, 支柱 14的上端部形成与挂钩 431相适配的挂孔 141, 挂钩 431 挂设于挂孔 141内。 横杆 43的另外一端与支柱 12以及横杆 42与支柱 11、 13之间具 有相同的连接方式。
[61] 在使用吋, 将横杆 42、 43挂设其相应的挂孔内, 不使用吋将其取下, 横杆 42、 43可以是可伸缩杆; 横杆 42、 43也可以是折叠杆, 其芯部为一弹性绳, 收折不 需要取下。
[62] 具体实施方式三
[63] 参照图 7, 其基本原理和结构与具体实施方式二相同, 区别在于: 横杆 42、 43 具有与横杆 41具有相同的结构, 均为两段式结构, 其中部为一转轴, 两段横杆 可相对于该转轴转动、 弯折, 同吋两段横杆均为可伸缩杆。
[64] 具体实施方式四
[65] 参照图 8, 为本发明的具体实施方式四, 一种折叠帐篷架, 包括支柱 11、 12、 1 3、 14, 支柱 11、 12、 13、 14的上端分别以转轴连接的方式连接有撑持杆 21、 22 、 23、 24, 撑持杆 21和 22之间、 撑持杆 23和 24之间分别以转轴连接的方式连接 有连接件 31、 32, 连接件 31、 32之间以转轴连接的方式连接有横杆 41, 支柱 11 、 13的上端以转轴连接的方式连接有横杆 42, 支柱 12、 14的上端以转轴连接的 方式连接有横杆 43。
[66] 在本实施方式中, 撑持杆 21、 22、 23、 24以及横杆 41、 42、 43均为两段式结构
, 其中部为一转轴, 两段撑持杆或横杆可相对于该转轴转动、 弯折, 同吋横杆 4 1、 42、 43的两段横杆均为可伸缩杆。
[67] 参照图 9为本实施方式半收折吋的立体结构示意图。
[68] 具体实施方式五
[69] 参照图 10, 本实施方式与具体实施方式四具有相同的原理及基本结构, 区别在 于: 为了使整个结构更加牢固, 在支柱 11和 12之间、 支柱 13和 14之间连接有加 强件 44、 45 , 加强件 44、 45以挂钩连接的方式分别挂设于支柱 11和 12、 支柱 13 和 14之间。 加强件 44、 45可以是可伸缩杆。
[70] 上述仅为本发明的几个具体实施方式, 但本发明的设计构思并不局限于此, 凡 利用此构思对本发明进行非实质性的改动, 均应属于侵犯本发明保护范围的行 为。
工业实用性
[71] 本发明一种折叠帐篷架, 整体上结构简单、 牢靠, 收折方便, 收折后体积小, 方便存储及携带, 极大地方便了人们的户外生活, 具有良好的工业实用性。

Claims

权利要求书
[1] 一种折叠帐篷架, 由多根支柱、 一与该支柱连接的支撑篷架构成, 其特征 在于: 所述支撑篷架包括: 若干根撑持杆、 若干根横杆和连接件; 每两根 撑持杆的第一端以转轴连接的方式分别连接于一连接件的两端, 形成一倒
V字形结构, 该两根撑持杆的第二端分别以转轴连接的方式连接于两根支 柱的顶部; 所述横杆以转轴连接的方式连接于两根所述支柱的顶部或两个 所述连接件之间, 或所述横杆以挂钩连接的方式连接于两根所述支柱的顶 部或两个所述连接件之间。
[2] 如权利要求 1所述的一种折叠帐篷架, 其特征在于: 所述横杆为两段式结构
, 中部通过转轴连接, 两段横杆可相对于该转轴转动、 弯折。
[3] 如权利要求 2所述的一种折叠帐篷架, 其特征在于:所述每段横杆均是伸缩 杆。
[4] 如权利要求 1所述的一种折叠帐篷架, 其特征在于: 所述横杆为直杆, 其两 端均设有挂钩, 相应地所述支柱或所述连接件上设有与该挂钩相匹配的挂 孔, 横杆以挂钩连接的方式挂设于两根所述支柱或两个所述连接件之间。
[5] 如权利要求 4所述的一种折叠帐篷架, 其特征在于: 所述横杆是可伸缩杆或 可折叠杆。
[6] 如权利要求 1所述的一种折叠帐篷架, 其特征在于: 所述撑持杆为两段式结 构, 中部通过转轴连接, 两段撑持杆可相对于该转轴转动、 弯折。
[7] 如权利要求 2或 6所述的一种折叠帐篷架, 其特征在于: 所述两段横杆或两 段撑持杆以如下的转轴连接方式连接: 其中一段横杆或一段撑持杆在其转 轴连接的一端的端部为一凹形部, 另一段横杆或段撑持杆在其转轴连接的 一端的端部为一凸起部, 该凸起部配合插入所述凹形部, 所述转轴同吋穿 过凸起部及凹形部。
[8] 如权利要求 2或 6所述的一种折叠帐篷架, 其特征在于: 所述两段横杆或两 段撑持杆以如下的转轴连接方式连接: 其中每一段横杆或段撑持杆在其转 轴连接的一端的端部均为一 L形部, 该两个 L形部配合连接, 所述转轴同吋 穿过该两个 L形部。
[9] 如权利要求 2或 6所述的一种折叠帐篷架, 其特征在于: 所述两段横杆或两 段撑持杆以如下的转轴连接方式连接: 其中每一段横杆或段撑持杆在其转 轴连接的一端的端部均为一凹形部, 该两个凹形部配合插设连接, 所述转 轴同吋穿过该两个凹形部。
[10] 如权利要求 1所述的一种折叠帐篷架, 其特征在于: 所述支柱为伸缩杆。
PCT/CN2008/073445 2007-12-21 2008-12-11 一种折叠帐篷架 WO2009092227A1 (zh)

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CN106193790A (zh) * 2016-08-25 2016-12-07 中山市合信包装有限公司 一种帐篷及其顶部连接件
CN111802252A (zh) * 2020-07-17 2020-10-23 和县和顺牧业有限公司 一种快速拆装的移动式湖羊养殖棚及其拆装方法
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