WO2010060303A1 - 帐篷顶部支撑结构 - Google Patents

帐篷顶部支撑结构 Download PDF

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Publication number
WO2010060303A1
WO2010060303A1 PCT/CN2009/072391 CN2009072391W WO2010060303A1 WO 2010060303 A1 WO2010060303 A1 WO 2010060303A1 CN 2009072391 W CN2009072391 W CN 2009072391W WO 2010060303 A1 WO2010060303 A1 WO 2010060303A1
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WO
WIPO (PCT)
Prior art keywords
rod
joint
tent
support structure
spring
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Application number
PCT/CN2009/072391
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English (en)
French (fr)
Inventor
周南庆
Original Assignee
秋野地(厦门)露营用品有限公司
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Publication of WO2010060303A1 publication Critical patent/WO2010060303A1/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
    • E04H15/42Supporting means, e.g. frames external type, e.g. frame outside cover
    • 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 utility model relates to a tent, in particular to a tent top support structure.
  • FIG 1 shows one of the tent structures.
  • the tent mainly comprises a tarpaulin 1 and a support frame 2 for supporting the tarpaulin.
  • the support frame 2 is pivotally connected by a plurality of poles 21 through a top multi-bar connecting member 22, and each of the masts 21 is further composed of a plurality of rods The pieces are pivotally connected to each other by the joints 23.
  • the tent cloth 1 is sleeved on the frame rod 21 by a plurality of fixing sleeves 11 which are sewn by the edges thereof, so as to be distracted with the support of the support frame 2.
  • the tent shown in Figure 1 is generally a small tent. The height of the tent is less than one person.
  • the tarpaulin used is also a thin and light tarpaulin.
  • the tent is lighter in weight and the whole tent is half-lifted. Round, the tarpaulin has a relatively uniform pulling force across the pole, so that the tarpaulin 1 is not torn from the fixing sleeve 11 due to excessive pulling force.
  • the uppermost joint 23 of each of the rods 21 is The angle is bent at an angle, so that the entire tent is clearly separated from the top of the tent and the main body of the tent.
  • the shape of the opening can raise the height of the tent relative to the structure shown in Fig. 1, but it is also because of this shape. , so that the tent pulls more force at the top corner, even when the tent is folded or stretched, the pulling force is larger, so the tarpaulin fixing sleeve 11 of the large tent at the top corner is most likely to be torn.
  • the technical problem to be solved by the present invention is to provide a tent top support structure, which aims to solve the problem of buffering the blistering force by improving the support structure of the top of the tent.
  • the tent top support structure is composed of a plurality of rod connecting members radially pivotally connected with a plurality of top rod members, and the top end of the top rod member is connected to a top joint and pivoted to the multi-bar joint member, and the outer end is connected to a joint and below
  • the rod is connected; at least one of the three parts of the top rod and the top joint, and the joint, and the middle part of the top rod are retractable elastic joints.
  • the top rod is connected to the top joint by a spring located inside the top rod and the top joint.
  • the top joint is provided with a longitudinal sliding groove, and the inner end of the top rod is sleeved on the top joint, and the connecting member passes through the hole in the top rod and the sliding groove on the top joint to connect the two together.
  • the top rod is connected to the lower joint by a spring located inside the top rod and the joint.
  • the joint is provided with a longitudinal sliding groove, and the outer end of the top rod is sleeved behind the joint, and the two are connected by a connecting member passing through the hole in the top rod and the sliding groove on the joint.
  • the top rod consists of two rods, which are connected by a spring between the rods.
  • the spring is located inside the two rods.
  • One of the two rods of the top rod has a longitudinal sliding groove on one of the rods, and the other rod is sleeved on the front rod and passes through a hole in the other rod and the previous rod.
  • the chute connects the two together.
  • the tent can be relieved by the length and contraction of the top rod during the opening or closing process.
  • the awning pulls over the tight force, especially to ease the pulling force at the top corner of the tent, thus effectively preventing the tarpaulin from being torn at the fixing sleeve.
  • Figure 1 is a schematic structural view of one of the existing tents
  • FIG. 2 is a schematic perspective view of a first embodiment of the present invention
  • Figure 2A is a partial enlarged view of Figure 2;
  • Figure 3 is a cross-sectional view showing the structure of the first embodiment of the present invention.
  • FIG. 3A is a partial enlarged view of FIG. 3;
  • FIG. 4 is a schematic perspective view of the overall tent of the utility model applied to the tent;
  • Figure 5 is a side view of the overall tent of the utility model applied to a tent
  • FIG. 6 is a schematic perspective view of the first embodiment of the present invention after being stowed
  • Figure 6A is a partial enlarged view of Figure 6;
  • Figure 7 is a cross-sectional view showing the structure of the first embodiment of the present invention after being stowed
  • Figure 7A is a partial enlarged view of Figure 7;
  • FIG. 8 is a schematic structural view of a second embodiment of the present invention.
  • Figure 8A is a partial enlarged view of Figure 8.
  • Figure 9 is a schematic structural view of a third embodiment of the present invention.
  • Figure 9A is a partial enlarged view of Figure 9.
  • the utility model relates to a tent top support structure.
  • a plurality of top rod members 211 are radially pivoted by a multi-bar connecting member 22 at the top of the tent bracket.
  • a top joint 24 is attached to the inner end of each of the top rod members 211, and the top joint 24 is pivotally coupled to the multi-bar joint member 22.
  • the key to this embodiment is that the top rod member 211 and the top joint 24 are telescopic elastic joints. Specifically, as shown in FIG. 2A and FIG.
  • a spring 25 is connected between the top rod 211 and the top joint 24, and the spring 25 is located inside the top rod 211 and the top joint 24;
  • a vertical sliding slot 241 is opened, and the inner end of the top rod member 2 11 is sleeved on the top joint 24, and a connecting member 26 passes through a hole in the top rod member 211 (not shown).
  • the sliding groove 241 on the top joint 24 connects the two together. The arrangement of the sliding groove 241 and the connecting member 26 prevents the top rod from being excessively stretched and affects the service life of the spring.
  • the top rod 211 is connected to the lower rod 212 through the joint 23, that is, the completed rod 21, each rod 21 and its joints 23, and the top multi-rod connecting rod 22 It also constitutes a tent support frame 2, as shown in Figs.
  • the tarpaulin 1 is directly sleeved on the frame rod 21 through the fixing sleeve 11 which is sewn on the frame, or a fixing hook 12 is connected to the fixing sleeve 11, and then the fixing hook 12 is hooked on the support frame 2 , in order to prop up the tarpaulin 1 .
  • the tent can be relieved by the length expansion and contraction between the top joint 23 and the top rod member 211 during the expansion or stowage process.
  • the awning pulls over the tight force, especially to relieve the pulling force at the top corner, which can effectively prevent the tarpaulin from being torn at the fixing sleeve.
  • FIG. 8 and FIG. 8A it is a second preferred embodiment of the present invention.
  • the tent top support structure of the present embodiment is also constituted by a plurality of rod connecting members 22 radially pivotally connected with a plurality of top rod members 211.
  • a joint 23 is connected to the lower rod (not shown) at the outer end of each of the top rod members 211, and the key to the present embodiment is that the top rod member 211 and the joint 23 are telescopic. Flexible connection.
  • the specific connection structure is similar to the above-described first embodiment and is not described.
  • FIG. 9 and Fig. 9A it is a third embodiment of the present invention.
  • the tent top support structure described in this embodiment is also constituted by a plurality of rod connecting members 22 radially pivotally connected with a plurality of top rod members 211.
  • the key to this embodiment is that the top bar member 211 is composed of two segments, and the two segments are telescopically elastically connected.
  • the specific connection structure can also be similar to the above-described first embodiment, and is not described.
  • the retractable elastic connection can be disposed at any position of the inner end, the outer end or the middle of the rod of the top rod 211, as long as the top rod can be expanded and contracted, the awning can be alleviated.
  • the purpose of the force is to prevent the problem of tearing the tarpaulin by pulling too tight.

Landscapes

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

Description

说明书 帐篷顶部支撑结构
#細或
[1] 本实用新型涉及一种帐篷, 尤指一种帐篷顶部支撑结构。
[2] 目前, 帐篷的种类及结构多种多样, 不同结构的帐篷应用于不同的场合, 如图
1所示, 就是其中一种帐篷结构。 该帐篷主要包括篷布 1及用于撑起篷布的支撑 架 2, 支撑架 2由若干架杆 21通过顶部多杆连接件 22枢接而成, 每一根架杆 21又 由若干根杆件通过关节 23相互枢接而成, 帐篷布 1通过其边缘缝置的若干固定套 11套于架杆 21上, 从而可随支撑架 2的支起而被撑开。 而图 1所示的帐篷一般为 小型帐篷, 其撑起后高度不足一人高, 所使用的篷布也为较薄且轻的防水布, 帐篷的体重较轻, 而且整个帐篷撑起后呈半圆形, 篷布对架杆各处的拉力较为 均匀, 因此不会出现因拉扯力过大而令篷布 1从固定套 11处撕裂的情形。
[3] 然而, 对于同样使用上述结构的大型帐篷来说, 就存在篷布容易在固定套处撕 裂的情形。 这是因为: 大型帐篷的体积较大, 篷布重量较重, 通常釆用的是较 厚且重的防水帆布, 因此使篷布对架杆的拉扯力加大, 导致易在固定套处撕裂 ; 而且大型帐篷被撑起后其形状也不是半圆形, 可配合图 4、 5所示, 大型帐篷 的支撑架 2撑开后, 其各根架杆 21的最上方一个关节 23处呈一角度弯折, 从而将 整个帐篷清楚的分出帐篷顶部及帐篷主体, 这种撑开的形状, 相对图 1所示结构 来说, 可以抬高帐篷的高度, 但是也正是因为这种形状, 使帐篷在顶部角落处 拉扯力加大, 甚至在收起或撑开帐篷吋, 拉力更大, 因此这种大型帐篷在顶部 角落处的篷布固定套 11最容易被撕裂。
[4] 为了解决上述结构的大型帐篷顶部角落处的固定套易撕裂的问题, 有业者想到 将该处的固定套用松紧带代替, 这种可伸缩的结构可以对拉力进行缓冲, 从而 减少撕裂的可能。 但是松紧带弹性用久后易消失, 且其本身的强度也不能保证 。 后来有人又想到以弹簧来代替松紧带, 以达到缓冲的目的, 但弹簧外露, 在 帐篷收起或撑开操作吋易夹手, 使用安全又得不到保证。 [5] 针对上述种种不足, 本设计人经过潜心研究, 终有本案产生。
應 靈
[6] 本实用新型所欲解决的技术问题在于提供一种帐篷顶部支撑结构, 旨在通过对 帐篷顶部支撑结构的改进, 来解决缓冲篷布拉扯力度的问题。
[7] 为达成上述技术问题, 本实用新型的技术解决方案是:
[8] —种帐篷顶部支撑结构, 由一多杆连接件放射状枢接若干根顶部杆件构成, 顶 部杆件内端连接一顶关节与多杆连接件枢接, 外端连接一关节与下方杆件连接 ; 所述顶部杆件与顶关节之间、 与关节之间、 及顶部杆件中段, 三处中至少一 处为可伸缩的弹性连接。
[9] 所述顶部杆件与顶关节之间由一弹簧连接, 该弹簧位于顶部杆件及顶关节的内 部。
[10] 所述顶关节上开有纵向滑槽, 顶部杆件内端套于顶关节后, 以一连接件穿过顶 部杆件上的孔及顶关节上的滑槽而将两者连接在一起。
[11] 所述顶部杆件与下方关节之间由一弹簧连接, 该弹簧位于顶部杆件及该关节的 内部。
[12] 所述关节上开有纵向滑槽, 顶部杆件外端套于关节后, 以一连接件穿过顶部杆 件上的孔及关节上的滑槽而将两者连接在一起。
[13] 所述顶部杆件由两段杆组成, 两段杆之间由一弹簧连接, 该弹簧位于两段杆的 内部。
[14] 所述顶部杆件的两段杆的其中一杆上开有纵向滑槽, 另一杆套于前一杆后, 以 一连接件穿过另一杆上的孔及前一杆上的滑槽而将两者连接在一起。
[15] 釆用上述方案后, 由于本实用新型将帐篷顶部的顶部杆件设计成可伸缩的弹性 结构, 这样帐篷在撑开或收起的过程中, 可以通过顶部杆件的长短伸缩来缓解 篷布拉扯过紧的力量, 尤其可缓解帐篷顶部角落处的拉扯力, 从而可有效避免 该处篷布在固定套处被撕裂。
[16] 此外, 本实用新型还具有下述增进效果:
[17] 1.用于连接顶部杆件各处的、 起到弹性连接作用的弹簧, 可设置于顶部杆件及 各关节的内部, 右令使用更安全。 [18] 2.可以通过在两弹性连接的部件上设置滑槽及连接杆, 来达到限制过度拉伸的 作用, 可防止弹簧因长期过度拉伸而永久变形, 保证弹簧的使用寿命。
國删
[19] 图 1是其中一种现有帐篷的结构示意图;
[20] 图 2是本实用新型第一实施例的立体结构示意图;
[21] 图 2A是图 2的局部放大图;
[22] 图 3是本实用新型第一实施例的结构剖视图;
[23] 图 3A是图 3的局部放大图;
[24] 图 4是本实用新型应用于帐篷的整体帐篷立体结构示意图;
[25] 图 5是本实用新型应用于帐篷的整体帐篷侧视图;
[26] 图 6是本实用新型第一实施例收起后的立体结构示意图;
[27] 图 6A是图 6的局部放大图;
[28] 图 7是本实用新型第一实施例收起后的结构剖视图;
[29] 图 7A是图 7的局部放大图;
[30] 图 8是本实用新型第二实施例的结构示意图;
[31] 图 8A是图 8的局部放大图;
[32] 图 9是本实用新型第三实施例的结构示意图;
[33] 图 9A是图 9的局部放大图。
[34] 下面结合附图和具体实施例对本实用新型作进一步详述。
[35] 本实用新型所涉及的是一种帐篷顶部支撑结构。 如图 2及图 3所示, 为本实用新 型的第一较佳实施例, 在帐篷支架的顶部由一多杆连接件 22放射状枢接若干根 顶部杆件 211构成。 通常来说, 为了方便组装, 在各根顶部杆件 211的内端连接 有一顶关节 24, 再由该顶关节 24与多杆连接件 22枢接。 本实施例的关键在于: 所述顶部杆件 211与顶关节 24之间为可伸缩的弹性连接。 具体结构为, 配合图 2A 及图 3A所示, 在顶部杆件 211与顶关节 24之间连接一弹簧 25, 该弹簧 25位于顶部 杆件 211及顶关节 24的内部; 另外所述顶关节 24上开有纵向滑槽 241, 顶部杆件 2 11内端套于顶关节 24后, 以一连接件 26穿过顶部杆件 211上的孔 (图中未示出) 及顶关节 24上的滑槽 241而将两者连接在一起, 该滑槽 241及连接件 26的设置, 可防止顶部杆件过度拉伸, 而影响弹簧的使用寿命。
[36] 所述的顶部杆件 211再通过关节 23与下方的杆件 212连接, 即构成完成的架杆 21 , 各根架杆 21及其上各关节 23, 以及顶部的多杆连接杆 22又构成帐篷支撑架 2, 如图 4、 5所示。 而篷布 1则通过其上缝置的固定套 11直接套于架杆 21上, 或者再 于固定套 11上连接一固定钩 12, 再由该固定钩 12钩挂于支撑架 2的各处, 以便将 篷布 1撑起。 由于所述的顶部杆件 211与顶关节 24之间由弹簧 25连接在一起, 这 样帐篷在撑开或收起的过程中, 可以通过顶关节 23与顶部杆件 211之间的长短伸 缩来缓解篷布拉扯过紧的力量, 尤其可缓解顶部角落处的拉扯力, 从而可有效 避免该处篷布在固定套处被撕裂。
[37] 帐篷在收起吋, 如图 6、 7所示, 由于顶部杆件 211的外端不再受力, 则其内端 在弹簧 25的回拉下缩回至原有的长度 (如图 6A及图 7A所示) , 而不至于影响帐 篷的收折。
[38] 如图 8及图 8A所示, 为本实用新型的第二较佳实施例。 本实施例所述的帐篷顶 部支撑结构也是由一多杆连接件 22放射状枢接若干根顶部杆件 211构成。 在各顶 部杆件 211的外端连接有一关节 23与下方的杆件 (图中未示出) 连接, 而本实施 例的关键在于: 所述顶部杆件 211与关节 23之间为可伸缩的弹性连接。 具体连接 结构与上述第一实施例类似, 不赞述。
[39] 再如图 9及图 9A所示, 为本实用新型的第三实施例。 本实施例所述的帐篷顶部 支撑结构同样是由一多杆连接件 22放射状枢接若干根顶部杆件 211构成。 本实施 例的关键在于: 所述的顶部杆件 211由两段杆组成, 而两段杆之间为可伸缩的弹 性连接。 具体连接结构同样可与上述第一实施例类似, 不赞述。
[40] 上述两实施例说明, 所述的可伸缩弹性连接可设置于顶部杆件 211的内端、 外 端或杆中段任何位置, 只要可令顶部杆件伸缩, 都可达到缓解篷布拉扯力的目 的, 从而可防止因拉扯过紧而撕裂篷布的问题。

Claims

权利要求书
[1] 1、 一种帐篷顶部支撑结构, 由一多杆连接件放射状枢接若干根顶部杆件构 成, 顶部杆件内端连接一顶关节与多杆连接件枢接, 外端连接一关节与下 方杆件连接; 其特征在于: 所述顶部杆件与顶关节之间、 与关节之间、 及 顶部杆件中段, 三处中至少一处为可伸缩的弹性连接。
[2] 2、 如权利要求 1所述的帐篷顶部支撑结构, 其特征在于: 所述顶部杆件与 顶关节之间由一弹簧连接, 该弹簧位于顶部杆件及顶关节的内部。
[3] 3、 如权利要求 2所述的帐篷顶部支撑结构, 其特征在于: 所述顶关节上开 有纵向滑槽, 顶部杆件内端套于顶关节后, 以一连接件穿过顶部杆件上的 孔及顶关节上的滑槽而将两者连接在一起。
[4] 4、 如权利要求 1所述的帐篷顶部支撑结构, 其特征在于: 所述顶部杆件与 下方关节之间由一弹簧连接, 该弹簧位于顶部杆件及该关节的内部。
[5] 5、 如权利要求 4所述的帐篷顶部支撑结构, 其特征在于: 所述关节上开有 纵向滑槽, 顶部杆件外端套于关节后, 以一连接件穿过顶部杆件上的孔及 关节上的滑槽而将两者连接在一起。
[6] 6、 如权利要求 1所述的帐篷顶部支撑结构, 其特征在于: 所述顶部杆件由 两段杆组成, 两段杆之间由一弹簧连接, 该弹簧位于两段杆的内部。
[7] 7、 如权利要求 6所述的帐篷顶部支撑结构, 其特征在于: 所述顶部杆件的 两段杆的其中一杆上开有纵向滑槽, 另一杆套于前一杆后, 以一连接件穿 过另一杆上的孔及前一杆上的滑槽而将两者连接在一起。
PCT/CN2009/072391 2008-11-26 2009-06-23 帐篷顶部支撑结构 WO2010060303A1 (zh)

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EP3098368A1 (en) * 2015-05-28 2016-11-30 Sportsman Corporation Tent assembly

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CN103711358A (zh) * 2014-01-13 2014-04-09 福建军鹏特种装备科技有限公司 一种新型帐篷支架节点连接结构
CN211691769U (zh) * 2019-07-23 2020-10-16 漳浦诚隆休闲用品有限公司 一种帐篷

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US4648734A (en) * 1982-12-02 1987-03-10 Anchor Industries, Inc. Corner connector assembly
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Publication number Priority date Publication date Assignee Title
EP3098368A1 (en) * 2015-05-28 2016-11-30 Sportsman Corporation Tent assembly
JP2016223282A (ja) * 2015-05-28 2016-12-28 能昌實業股▲ふん▼有限公司 テントアッセンブリ
US9752346B2 (en) 2015-05-28 2017-09-05 Sportsman Corporation Tent assembly

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