WO2018090737A1 - 气膜 - Google Patents

气膜 Download PDF

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Publication number
WO2018090737A1
WO2018090737A1 PCT/CN2017/103864 CN2017103864W WO2018090737A1 WO 2018090737 A1 WO2018090737 A1 WO 2018090737A1 CN 2017103864 W CN2017103864 W CN 2017103864W WO 2018090737 A1 WO2018090737 A1 WO 2018090737A1
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Prior art keywords
film
insulating material
gas
layer
material layer
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PCT/CN2017/103864
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English (en)
French (fr)
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薛飞龙
张辉
索小龙
肖龙
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深圳市博德维环境技术股份有限公司
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Publication of WO2018090737A1 publication Critical patent/WO2018090737A1/zh

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/34Extraordinary structures, e.g. with suspended or cantilever parts supported by masts or tower-like structures enclosing elevators or stairs; Features relating to the elastic stability
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only

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  • the invention relates to the technical field of air film construction, in particular to a gas film.
  • the gas film building is made of a special building membrane, which is inflated into the air film building by a fan, so that a pressure difference is formed inside and outside the film building to maintain a stable shape.
  • Air film construction is increasingly used in all walks of life for its low cost, speed, ease of assembly and disassembly, and light weight.
  • the gas film is usually a two-layer film structure composed of an inner film and an outer film.
  • the heat insulating material is sandwiched between the inner film and the outer film to provide better heat insulation. . Since the size of the heat insulating material is generally smaller than the size of the inner film, when the air film building is blown, an insulating material is placed between the inner film and the outer film, and the heat insulating material is bent and sagging together with the inner film, thereby causing the inner film to There is no heat-insulating area between the outer membranes without insulation material. In the non-insulation area, rapid heat exchange can be performed on both sides of the gas film, thereby causing rapid loss of heat or cold, and the heat preservation performance of the gas film is lowered.
  • a gas film comprising a gas film unit and a connecting piece, wherein the gas film unit is plural, and any two adjacent gas film units are connected by the connecting piece, and the gas film unit comprises:
  • An inner membrane disposed at an interval from the outer membrane
  • a first layer of insulating material disposed between the outer film and the inner film
  • a second layer of insulating material is fixed on an edge of the inner film facing one side of the first layer of insulating material, and at least a portion of the second layer of insulating material is laminated with the layer of first insulating material.
  • the second insulating material layer comprises a thermal insulation layer body and an aluminum foil layer, and the aluminum foil layer is disposed on the thermal insulation layer body.
  • the aluminum foil layer is disposed on both sides of the insulating layer body.
  • the width of the second layer of insulating material is greater than half the difference in width between the inner film and the first layer of insulating material.
  • two of the outer membranes of any two adjacent gas membrane units are connected, and the two inner membranes of any two adjacent gas membrane units are connected, the connection
  • the sheet is disposed at a junction of two adjacent gas film units, and two ends of the connecting sheet are respectively connected to the inner film and the outer film.
  • the air film unit further includes a first extension portion and a second extension portion, the first extension portion is disposed at an edge of the inner film, and the second extension portion is disposed at the outer portion An edge of the film, two of the two adjacent air film units, two of the first extension portions are fitted together, two of the second extension portions are fitted together, and one side of the connection piece and the first extension The other part is connected to the second extension.
  • the two ends of the connecting piece are respectively bent to form a first bent portion and a second bent portion, and in the two adjacent air film units, the first bent portion is The first extending portion is in contact with each other, and the second bent portion is in contact with the second extending portion.
  • one of the two adjacent air film units, the first extension of one of the air film units is connected to the connecting piece, and the other of the air film unit The second extension is connected to the connecting piece.
  • the first extension is integrally formed with the inner film.
  • the second extension is integrally formed with the outer film.
  • the second insulating material layer is fixedly disposed at the edge of the inner film of the gas film unit, so that the first insulating material layer missing region without the first insulating material layer may appear between the inner film and the outer film.
  • the second layer of insulating material can heat the missing region of the first insulating material layer to cooperate with the first insulating material layer to form a continuous heat insulating structure in the gas film unit, thereby effectively improving the heat insulating property of the gas film.
  • FIG. 1 is a schematic view showing the structure of a gas film according to an embodiment of the present invention.
  • a gas film 10 includes a plurality of gas film units 100 and a connecting sheet 200. There are a plurality of gas film units 100. Any two adjacent gas film units 100 are connected by a connecting sheet 200 to form a gas film 10 having an area larger than that of the air film unit 100.
  • the film unit 100 includes an outer film 110, an inner film 120, and a first insulating material layer 130 and a second insulating material layer 140.
  • the outer film 110 and the inner film 120 are both made of a dense, dense architectural film.
  • the first insulating material layer 130 is made of an insulating material and has heat insulating properties.
  • the inner membrane 120 is spaced apart from the outer membrane 110.
  • the first insulating material layer 130 is disposed between the outer film 110 and the inner film 120 to reduce heat exchange between the inner film 120 and the outer film 110, thereby providing a heat insulating effect.
  • the gas film unit 100 also includes a second layer of insulating material 140.
  • the second insulating material layer 140 is made of an insulating material and has thermal insulation properties.
  • the second insulating material layer 140 is fixed to one side of the inner film 120 toward the first insulating material layer 130 and at the edge of the inner film 120.
  • a portion of the second insulating material layer 140 is laminated with the first insulating material layer 130 and partially beyond the edge of the first insulating material layer 130.
  • the second insulating material layer 140 is sewn at the edge of the inner film 120.
  • the second layer of insulating material 140 may also be adhered to the inner film 140 by an adhesive.
  • the first insulating material layer 130 When the first insulating material layer 130 is placed between the inner film 120 and the outer film 110, the first insulating material layer 130 will sag with the inner film 120. At this time, a first insulating material layer missing region without the first insulating material layer 130 may appear between the inner film 120 and the outer film 110, and a second portion disposed at the edge of the inner film 120 may be present.
  • the insulating material layer 140 can cover the first insulating material layer missing region to insulate the first insulating material layer missing region.
  • the second heat insulating material layer 140 cooperates with the first heat insulating material layer 130 to form a continuous heat insulating structure in the gas film unit 100, thereby effectively improving the heat insulating property of the gas film 10.
  • edge of the first insulating material layer 130 may also be flush with the edge of the second insulating material layer 140, so that the second insulating material layer 140 is provided after the first insulating material layer 130 hangs down with the inner film 120. It can completely cover the missing area of the first insulating material layer.
  • the width of the second insulating material layer 140 is greater than half of the difference between the inner film 120 and the first insulating material layer 130, that is, the width of the second insulating material layer 140 cannot be smaller than the first insulating material appearing at the edge of the inner film 120.
  • the width of the layer missing region is such that the second insulating material layer 140 can completely cover the first insulating material layer missing region, thereby avoiding the occurrence of the thermal insulation missing region.
  • the second insulating material layer 140 includes a thermal insulation layer body (not shown) and an aluminum foil layer (not shown).
  • the aluminum foil layer covers the body of the insulation layer.
  • the aluminum foil layer is disposed on both sides of the body of the thermal insulation layer.
  • the aluminum foil layer on both sides of the second heat insulating material layer 140 has a strong reflection effect, and can have a better heat insulation effect.
  • the second insulating material layer 140 is gas-tight and impervious to water. After the first insulating material layer 130 hangs down with the inner film 120, the second insulating material can have no first insulating material between the inner film 120 and the outer film 110. The non-insulated area is effectively insulated.
  • the second insulating material layer 140 may also be covered with an aluminum foil layer only on one side of the insulating layer body, which also has a better thermal insulation effect.
  • the connecting piece 200 is disposed at a junction of two adjacent air film units 100, and two ends of the connecting piece 200 are respectively connected to the inner film 120 and the outer film 110. That is, the inner film 120 of the air film unit 100 and the outer film 110 are connected by the connecting piece 200, thereby forming a chamber capable of accommodating the first heat insulating material layer 130 and the second heat insulating material layer 140.
  • the air film unit 100 further includes a first extension portion 150 and a second extension portion 160.
  • the first extension portion 150 is disposed at an edge of the inner membrane 120
  • the second extension portion 160 is disposed at an edge of the outer membrane 110.
  • first extension portion 150 is integrally formed with the inner film 120.
  • second extension portion 160 is integrally formed with the outer film 110.
  • Both ends of the connecting piece 200 are bent to form a first bent portion 210 and a second bent portion 220, respectively.
  • the first bent portion 210 is in contact with the first extending portion 150
  • the second bent portion 220 is in contact with the second extending portion 160, so that the first bent portion is made
  • the surface of the 210 and the first extending portion 150 and the second bent portion 220 and the second extending portion 160 are respectively connected to each other, which not only increases the contact area between the connecting piece 200 and the two air film units 100, but also improves the connection stability.
  • the thickness of the joint of the two gas film units 100 is also increased, and the heat insulating property of the joint is improved.
  • the first extension portion 150 of one of the air film units 100 is connected to the first bending portion 210, and the second extension portion 160 of the other air film unit 100 is connected to the second bending portion 220. . That is, the first extending portion 150 and the second extending portion 160 connected to both sides of the connecting piece 200 belong to the two air film units 100 respectively. At this time, the connection of the two air film units 100 is more firm.
  • first extension portion 150 and the second extension portion 160 connected to both sides of the connecting piece 200 may also belong to the same film unit 100. At this time, the first extension portion 150 and the second extension portion 160 of one air film unit 100 are simultaneously disposed between the first extension portion 150 and the second extension portion 160 of the other air film unit 100.
  • the second heat insulating material layer 140 needs to be fixed on the inner film 120, and then the outer film 110 of the two gas film units 100 and the inner film 120 are connected.
  • the sheet 200 is connected, and then the first insulating material layer 130 is placed between the inner film 120 and the outer film 110, and then the opening for the first insulating material layer 130 is placed, and so on, thereby The gas film units 100 are connected.
  • the second heat insulating material layer 140 is fixedly disposed at the edge of the inner film 120 of the air film unit 100, so that when the inner film 120 and the outer film 110 are not present, the first insulating material layer 130 does not appear.
  • the second insulating material layer 140 can heat the first insulating material layer missing region to cooperate with the first thermal insulating material layer 130 to form in the gas film unit 100.
  • the continuous heat preservation structure effectively improves the heat preservation performance of the gas film 10.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Acoustics & Sound (AREA)
  • Thermal Insulation (AREA)
  • Building Environments (AREA)

Abstract

一种气膜(10),包括多个气膜单元(100)及连接片(200),气膜单元(100)包括外膜(110)、内膜(120)、第一保温材料层(130)和第二保温材料层(140)。外膜(110)与内膜(120)间隔设置,第二保温材料层(140)的部分与第一保温材料层(130)层叠,且部分超出第一保温材料层(130)的边缘。该气膜(10)保温性能好。

Description

气膜 技术领域
本发明涉及气膜建筑技术领域,特别是涉及一种气膜。
背景技术
气膜建筑是用特殊的建筑膜材做外壳,通过风机向气膜建筑内充气,使气膜建筑内外形成压力差而维持稳定的形状。气膜建筑以其低成本、快速、便于拆装、轻便等特点越来越多的运用于各行各业。
而而气膜作为气膜建筑的主体,其通常为由内膜及外膜组成的双层膜结构,通过在内膜与外膜中间夹设保温材料,以起到较好的隔热保温作用。由于保温材料的尺寸一般小于内膜的尺寸,当气膜建筑吹气后,在内膜与外膜之间放入保温材料,保温材料会随内膜一起弯折、下垂,从而使得内膜与外膜之间出现没有保温材料的无保温区域,在无保温区域,气膜两侧能够进行快速的热交换,从而造成热量或冷量的快速散失,使得气膜的保温性能降低。
发明内容
基于此,有必要提供一种保温性能较好的气膜。
一种气膜,包括气膜单元及连接片,所述气膜单元为多个,任意相邻两个所述气膜单元之间通过所述连接片相连接,所述气膜单元包括:
外膜;
内膜,与所述外膜间隔设置;
第一保温材料层,设于所述外膜与所述内膜之间;及
第二保温材料层,固定于所述内膜上朝向所述第一保温材料层的一侧的边缘处,至少部分所述第二保温材料层与所述第一保温材料层层叠。
在其中一个实施例中,所述第二保温材料层包括保温层本体及铝箔层,所述铝箔层设于所述保温层本体上。
在其中一个实施例中,所述保温层本体的两侧均设有所述铝箔层。
在其中一个实施例中,所述第二保温材料层的宽度大于所述内膜与所述第一保温材料层的宽度差的一半。
在其中一个实施例中,任意相邻两个所述气膜单元的两个所述外膜相连接,任意相邻两个所述气膜单元的两个所述内膜相连接,所述连接片设于相邻两个所述气膜单元的连接处,且所述连接片的两端分别与所述内膜及所述外膜连接。
在其中一个实施例中,所述气膜单元还包括第一延伸部及第二延伸部,所述第一延伸部设于所述内膜的边缘,所述第二延伸部设于所述外膜的边缘,相邻两个所述气膜单元中,两个所述第一延伸部相贴合,两个所述第二延伸部相贴合,所述连接片的一侧与第一延伸部连接,另一侧与第二延伸部连接。
在其中一个实施例中,所述连接片的两端分别弯折形成第一折弯部及第二折弯部,在相邻两个所述气膜单元中,所述第一折弯部与所述第一延伸部相贴合,所述第二折弯部与所述第二延伸部相贴合。
在其中一个实施例中,相邻两个所述气膜单元中,其中一个所述气膜单元的所述第一延伸部与所述连接片连接,另一个所述气膜单元的所述第二延伸部与所述连接片连接。
在其中一个实施例中,所述第一延伸部与所述内膜一体成型。
在其中一个实施例中,所述第二延伸部与所述外膜一体成型。
上述气膜中,通过在气膜单元的内膜的边缘处固定设置第二保温材料层,以使得当内膜与外膜之间会出现没有第一保温材料层的第一保温材料层缺失区时,第二保温材料层能够对第一保温材料层缺失区进行保温,从而与第一保温材料层相配合,以在气膜单元内形成连续的保温结构,有效的提高气膜的保温性能。
附图说明
图1为本发明一实施例的气膜的结构示意图。
具体实施方式
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施方式。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施方式。相反地,提供这些实施方式的目的是使对本发明的公开内容理解的更加透彻全面。
需要说明的是,当元件被称为“固定于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的,并不表示是唯一的实施方式。
除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施方式的目的,不是旨在于限制本发明。本文所使用的术语“及/或”包括一个或多个相关的所列项目的任意的和所有的组合。
如图1所示,本发明一实施例的气膜10包括多个气膜单元100及连接片200。气膜单元100为多个。任意相邻两个气膜单元100通过连接片200相连接,从而形成面积大于气膜单元100的气膜10。
气膜单元100包括外膜110、内膜120及第一保温材料层130及第二保温材料层140。外膜110与内膜120均为具有一定柔性的、致密的建筑膜材制成。第一保温材料层130为保温材料制成,且具有保温性能。内膜120与外膜110间隔设置。第一保温材料层130设于外膜110与内膜120之间,以减少内膜120与外膜110之间的热交换,从而起到保温效果。
气膜单元100还包括第二保温材料层140。第二保温材料层140为保温材料制成,且具有保温性能。第二保温材料层140固定于内膜120上朝向第一保温材料层130的一侧,且位于内膜120的边缘处。第二保温材料层140的部分与第一保温材料层130层叠,且部分超出第一保温材料层130的边缘。
具体在本实施例中,第二保温材料层140缝制于内膜120的边缘处。在其他实施例中,第二保温材料层140还可以通过粘接剂粘贴于内膜140上。
当在内膜120与外膜110之间放入第一保温材料层130,第一保温材料层 130会随内膜120下垂,此时,在内膜120与外膜110之间会出现没有第一保温材料层130的第一保温材料层缺失区,而设置于内膜120边缘处的第二保温材料层140能够覆盖此第一保温材料层缺失区,以对第一保温材料层缺失区进行保温。第二保温材料层140与第一保温材料层130相配合,以在气膜单元100内形成连续的保温结构,有效的提高了气膜10的保温性能。
需要指出的是,上述第一保温材料层130的边缘还可以与第二保温材料层140的边缘平齐,只要使得在第一保温材料层130随内膜120下垂后,第二保温材料层140能够完全覆盖第一保温材料层缺失区即可。
具体的,第二保温材料层140的宽度大于内膜120与第一保温材料层130的宽度差的一半,即第二保温材料层140的宽度不能小于内膜120边缘处出现的第一保温材料层缺失区的宽度,从而使得第二保温材料层140能够完全覆盖第一保温材料层缺失区,避免出现保温遗漏区。
具体在本实施例中,第二保温材料层140包括保温层本体(未示出)及铝箔层(未示出)。铝箔层覆盖于保温层本体上。具体的,保温层本体的两侧均设有铝箔层。此时,第二保温材料层140两侧的铝箔层具有较强的反射作用,能够起到较好的隔热保温效果。而且,第二保温材料层140不透气、不透水,在第一保温材料层130随内膜120下垂后,第二保温材料能够对内膜120与外膜110之间出现的没有第一保温材料的无保温区域进行有效的保温。
需要指出的是,在其他实施例中,第二保温材料层140中,还可以仅在保温层本体的一侧覆盖铝箔层,其也同样具有较好的保温效果。
具体在本实施例中,相邻两个气膜单元100在连接时,两个气膜单元100的外膜110相连接,两个气膜单元100的内膜120相连接。连接片200设于相邻两个气膜单元100的连接处,且连接片200的两端分别与内膜120及外膜110连接。即气膜单元100的内膜120与外膜110之间通过连接片200连接,从而形成能够容纳第一保温材料层130及第二保温材料层140的腔室。
具体的,气膜单元100还包括第一延伸部150及第二延伸部160。第一延伸部150设于内膜120的边缘,第二延伸部160设于外膜110的边缘。两个气膜单元100在连接时,一个气膜单元100上的第一延伸部150与另一气膜单元100 的第一延伸部150相贴合。一个气膜单元100上的第二延伸部160与另一气膜单元100上的第二延伸部160相贴合,从而使两个气膜单元100之间形成严密的连接。
在本实施例中,第一延伸部150与内膜120一体成型。第二延伸部160与外膜110一体成型。
连接片200的两端分别弯折形成第一折弯部210及第二折弯部220。在相邻两个气膜单元100中,第一折弯部210与第一延伸部150相贴合,第二折弯部220与第二延伸部160相贴合,从而使得第一折弯部210与第一延伸部150、第二折弯部220与第二延伸部160之间分别呈面面连接,不仅能够增加连接片200与两个气膜单元100的接触面积,提高连接稳定性。而且,也增加了两个气膜单元100连接处的厚度,提高了连接处的保温性能。
具体的,在本实施例中,其中一个气膜单元100的第一延伸部150与第一折弯部210连接,另一个气膜单元100的第二延伸部160与第二折弯部220连接。即连接片200的两侧连接的第一延伸部150及第二延伸部160分别属于两个气膜单元100,此时,两个气膜单元100的连接更为牢固。
需要指出的是,在其他实施例中,连接片200的两侧连接的第一延伸部150及第二延伸部160还可以属于同一气膜单元100。此时,一个气膜单元100的第一延伸部150及第二延伸部160同时设于另一气膜单元100的第一延伸部150与第二延伸部160之间。
另外,需要指出的是,在对气膜10进行组装时,需要先将第二保温材料层140固定于内膜120上,再将两个气膜单元100的外膜110与内膜120通过连接片200进行连接,之后再将第一保温材料层130放入内膜120与外膜110之间,再将供第一保温材料层130放入的开口处进行连接,以此类推,从而将多个气膜单元100进行连接。
上述气膜10中,通过在气膜单元100的内膜120的边缘处固定设置第二保温材料层140,以使得当内膜120与外膜110之间会出现没有第一保温材料层130的第一保温材料层缺失区时,第二保温材料层140能够对第一保温材料层缺失区进行保温,从而与第一保温材料层130相配合,以在气膜单元100内形成 连续的保温结构,有效的提高气膜10的保温性能。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种气膜,其特征在于,包括气膜单元及连接片,所述气膜单元为多个,任意相邻两个所述气膜单元之间通过所述连接片相连接,所述气膜单元包括:
    外膜;
    内膜,与所述外膜间隔设置;
    第一保温材料层,设于所述外膜与所述内膜之间;及
    第二保温材料层,固定于所述内膜上朝向所述第一保温材料层的一侧的边缘处,至少部分所述第二保温材料层与所述第一保温材料层层叠。
  2. 根据权利要求1所述的气膜,其特征在于,所述第二保温材料层包括保温层本体及铝箔层,所述铝箔层设于所述保温层本体上。
  3. 根据权利要求2所述的气膜,其特征在于,所述保温层本体的两侧均设有所述铝箔层。
  4. 根据权利要求1所述的气膜,其特征在于,所述第二保温材料层的宽度大于所述内膜与所述第一保温材料层的宽度差的一半。
  5. 根据权利要求1所述的气膜,其特征在于,任意相邻两个所述气膜单元的两个所述外膜相连接,任意相邻两个所述气膜单元的两个所述内膜相连接,所述连接片设于相邻两个所述气膜单元的连接处,且所述连接片的两端分别与所述内膜及所述外膜连接。
  6. 根据权利要求5所述的气膜,其特征在于,所述气膜单元还包括第一延伸部及第二延伸部,所述第一延伸部设于所述内膜的边缘,所述第二延伸部设于所述外膜的边缘,相邻两个所述气膜单元中,两个所述第一延伸部相贴合,两个所述第二延伸部相贴合,所述连接片的一侧与第一延伸部连接,另一侧与第二延伸部连接。
  7. 根据权利要求6所述的气膜,其特征在于,所述连接片的两端分别弯折形成第一折弯部及第二折弯部,在相邻两个所述气膜单元中,所述第一折弯部与所述第一延伸部相贴合,所述第二折弯部与所述第二延伸部相贴合。
  8. 根据权利要求6所述的气膜,其特征在于,相邻两个所述气膜单元中, 其中一个所述气膜单元的所述第一延伸部与所述连接片连接,另一个所述气膜单元的所述第二延伸部与所述连接片连接。
  9. 根据权利要求7所述的气膜,其特征在于,所述第一延伸部与所述内膜一体成型。
  10. 根据权利要求7所述的气膜,其特征在于,所述第二延伸部与所述外膜一体成型。
PCT/CN2017/103864 2016-11-17 2017-09-28 气膜 WO2018090737A1 (zh)

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