TW200911641A - Airtight body made of multi-layered heterogeneous substrates - Google Patents

Airtight body made of multi-layered heterogeneous substrates Download PDF

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Publication number
TW200911641A
TW200911641A TW97146844A TW97146844A TW200911641A TW 200911641 A TW200911641 A TW 200911641A TW 97146844 A TW97146844 A TW 97146844A TW 97146844 A TW97146844 A TW 97146844A TW 200911641 A TW200911641 A TW 200911641A
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Taiwan
Prior art keywords
air
gas
substrate
heat sealing
layered
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TW97146844A
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Chinese (zh)
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TWI343351B (en
Inventor
Chian-Hua Liao
Yaw-Shin Liao
Bo-Xin Jian
Yao-Chuan Liao
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Yaw-Shin Liao
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Priority to TW97146844A priority Critical patent/TW200911641A/en
Publication of TW200911641A publication Critical patent/TW200911641A/en
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Publication of TWI343351B publication Critical patent/TWI343351B/zh

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  • Bag Frames (AREA)

Abstract

The present invention provides an airtight body made of multi-layered heterogeneous substrates. The space between two vertically stacked external films is installed with one or more internal films separated from each other and coated with a heat resistant material. Furthermore, the external films and internal films are sealed with hot sealing spots. Thermal sealing means is used to form an inflation channel and a plurality of air chambers. Furthermore, an inlet channel is formed between the inflation channel and each air chamber. A lateral side of the air chamber is installed with a plate body. During the inflation process, external air at the inflation opening inflates the inflation channel, and the hot sealing spots drive the internal films to draw outward and open the inlet channel so that air enters the air chambers through the inlet channel and inflates the air chambers. When the plate body wraps an article, the air chambers provides a buffering protection effect on the article, preventing the air chambers from being pierced by sharp points of the article and causing leakage of air.

Description

200911641 六、發明說明: 【發明所屬之技術領域】 本發明係有關一種空氣密封體 體。 種複層異類基材之空氣密封 【先前技術】 傳統用於緩衝包裝物品之方式,多以―勉跋 ^片上突設複數個凸起小氣 囊’將此一塑膠膜片包覆於物品外周而達到噁雪 葸緩衝作用,但小氣囊的吸200911641 VI. Description of the Invention: [Technical Field to Be Invented] The present invention relates to an air sealing body. Air sealing of a multi-layered heterogeneous substrate [Prior Art] Traditionally used to buffer packaging articles, a plurality of raised small airbags are protruded on the "勉跋^ film" to wrap a plastic film on the outer periphery of the article. Achieve the buffering effect of the scorpion, but the suction of the small balloon

震能力有限,躲較大的震滅衝擊負荷便無法翻緩衝吸震的效果,因 此便發展出一種以氣體包裝袋作為包覆用之緩衝材。 然而’以聚乙稀㈣ethy丨ene,PE)材料製成之氣體包裝袋容易受到包 裝物品尖獅編或五金接麟刺破,—域體包U現小賴,氣體包 裝袋内之氣體即會若氣體包裝袋之每一氣柱體均設置有獨立的逆向 止氣閥裝置,則伽於產纽洞的紐财氣,而不至絲減他未破損 之氣柱體洩氣。反之,若氣體包裝袋僅設置一個逆向止氣閥裝置,任一氣 柱體產生破洞即會使整個氣體包裝袋内之氣體洩出,造成氣體包裝袋喪失 緩衝保護之功效。 由此可知,如何改良氣體包裝袋之結構,解決氣體包裝袋受到包裝物 品刺破之問題,避免任一次氣柱體破損而使整個氣體包裝喪失緩衝保護之 功效,係為本案之發明人以及從事此相關行業之技術領域者亟欲改善的課 題。 【發明内容】 有鑑於此’本發明提出一種複層異類基材之空氣密封體,用以包覆一 200911641 物品而提供緩衝保護之用,包含:二外膜,上下疊合;二内膜,介於二外 膜之間,一充氣通道,位於二外膜之間,包含有可供外部氣體充入之充氣 口,複數熱封點’位於充氣通道内,介於一片外膜與一片内膜之間而接著 一片外膜與一片内膜;一個以上氣室,為經由熱封手段接著二外膜而形成 * 可儲存氣體的空間;—個以上進氣通道’連接充氣通道與氣室,係由内膜 * 之一面依序間隔塗佈一耐熱材料後,經由熱封手段不接著其他膜而形成, 進入充氣口之氣體膨脹充氣通道,使二片外膜與向外拉開,經由熱封點帶 (f動不接著的二片内膜向外拉開而開啟進氣通道,氣體進入氣室後壓迫内膜 覆蓋進氣通道而封閉氣室;及一片體,位於氣室與物品之間,用以避免氣 室遭物品刺穿而破損。 本發明亦提出一種複層異類基材之空氣密封體,用以包覆一物品而提 供缓衝保護之用,包含:一氣柱片,包含:二外膜,上下疊合;二内膜, 介於二外狀H統道,位於二箱之間,包含有可供外部氣體充 入之充氣口;複數熱封點,位於充氣通道内,介於一片外膜與一片内膜之 I;間而接著-片外膜與-片内膜;一個以上氣室,為經由熱封手段接著二外 膜而形成可赫氣體的雜;-舰±贼通道,連氣通道與氣室, 係由内膜之-面依序間隔塗佈一耐熱材料後,經由熱封手段不接著其他膜 _ 而形成,進人充氣π之紐祕統通道n補與⑽拉開,經由 熱封點㈣不接著的二#嶋向外糊而.進紐道,氣觀入氣室後 壓迫内臈覆蓋進氣通道而封閉氣室;及一盒體,包含一填充空間,用以收 容氣柱片’避免氣柱片遭物品刺穿而破損。 200911641 本發明亦提出_觀層異類基材之空氣密趣,_包覆—物品而提 供缓衝保護之用,包含:__氣柱片,包含:二外膜,上下疊合,·二内膜, 介於二外膜H氣通道’錄二補之間,包含村供外部氣體充 入之充氣口 ;複數熱封點,位於絲通勒,介於-片外膜與—片内膜之 間而接著—片外膜與—片内膜;—個以上氣室,為經由熱封手段接著二外 膜而形成謂絲_如;-_上進統道,連接絲通道與氣室, 係由内膜之-面依序塗佈—㈤歸料後,經輪封手段不接著其他膜The shock capacity is limited, and the shocking shock load can not be evaded by the large shock load, so a cushion material for coating with a gas bag is developed. However, the gas packaging bag made of polyethylene (e) ethy丨ene, PE) material is easily pierced by the packaged item lion or hardware splicing, and the domain body package is now small, the gas in the gas packaging bag will be If each gas cylinder of the gas packaging bag is provided with an independent reverse air valve device, it is gambling with the new currency of the production hole, and not for the air cylinder of his unbroken gas. On the other hand, if only one reverse air valve device is provided in the gas packaging bag, the gas hole in any gas cylinder will leak the gas in the entire gas packaging bag, thereby causing the gas packaging bag to lose the buffer protection effect. It can be seen that how to improve the structure of the gas packaging bag, solve the problem that the gas packaging bag is pierced by the packaged article, and avoid the loss of the buffer protection of the entire gas package caused by the damage of the gas cylinder, and is the inventor of the case and engaged in The subject of technical fields in this related industry is an issue that is desired to be improved. SUMMARY OF THE INVENTION In view of the above, the present invention provides an air sealing body for a multi-layer heterogeneous substrate for covering a 200911641 article to provide cushioning protection, comprising: two outer films, superposed on top and bottom; two inner films, Between the two outer membranes, an inflation channel is located between the two outer membranes, and includes an inflation port for external air to be filled. The plurality of heat sealing points are located in the inflation channel, between an outer membrane and an inner membrane. And then an outer membrane and an inner membrane; more than one air chamber, forming a space for storing gas by heat sealing means followed by two outer membranes; more than one air inlet passage connecting the inflation passage and the air chamber After a heat-resistant material is sequentially applied from one side of the inner film*, it is formed by heat sealing means without following other films, and the gas entering the inflation port expands the inflation channel, so that the two outer films are pulled outward, through heat sealing. The strips (the two inner membranes that are not followed by the movement open outwardly to open the air inlet passage, the gas enters the air chamber and presses the inner membrane to cover the air inlet passage to close the air chamber; and the body is located between the air chamber and the object To avoid gas The object is also pierced and damaged. The invention also provides an air sealing body for a multi-layer heterogeneous substrate for covering an article to provide buffer protection, comprising: a gas column comprising: two outer films, stacked one on top of another Two intima, between the two outer H-channels, between the two boxes, containing an inflatable port for external air filling; multiple heat sealing points, located in the inflatable channel, between an outer membrane and a piece I of the inner membrane; and then - the outer membrane and the inner membrane; one or more air chambers, which are formed by heat sealing means followed by two outer membranes to form a gas of a gas; a ship ± thief passage, a gas passage and The air chamber is formed by sequentially coating a heat-resistant material from the inner surface of the inner membrane, and then forming the heat-resistant material without heat-sealing means, and the air-filling π is closed and the (10) is opened. The sealing point (4) does not follow the second #嶋 嶋 outward paste. Entering the road, the gas is pressed into the air chamber and the inner chamber is covered to cover the air inlet passage to close the air chamber; and a box body containing a filling space for accommodating the gas The column piece 'avoids that the air column piece is damaged by the piercing of the article. 200911641 The present invention also proposes The air of the substrate is dense, _ wrapping - the object provides buffer protection, including: __ gas column, including: two outer membrane, superimposed on the upper and lower sides, · two inner membrane, between the outer membrane H gas The channel 'recorded between two supplements, including the village for the external gas to fill the inflatable port; the multiple heat seal points, located in the wire pass, between - the film and the inner film and then - the film and the film Intra-film; more than one air chamber, which is formed by heat sealing means followed by two outer membranes to form a silk yarn _, such as; - _ Shangjin Road, connecting the wire channel and the air chamber, sequentially coated by the inner membrane Cloth—(5) After returning, the film is not followed by other methods

而形成’進人充氣口之氣體膨脹絲通道,使二料膜與向外拉開,經由 熱封點讀不接著的二片内膜向外拉開而開啟進氣通道,氣體進入氣室後 壓迫内膜覆蓋進氣通道而封閉氣室;—片體,位魏柱片與物品之間,用 以避免氣室遭物品刺穿而破損;及-外箱,包含-容置空間,用以收容氣 柱片、片體及物品而便於搬運。 ’And forming a gas expansion wire passage into the inflation port, so that the two film is pulled outward, and the two inner films that are not subsequently read through the heat sealing point are opened outward to open the intake passage, and the gas enters the air chamber. Compressing the inner membrane to cover the air inlet passage to close the air chamber; - the sheet body, between the Wei pillar piece and the article, to prevent the air chamber from being pierced and damaged; and - the outer box containing the accommodating space for It is easy to carry by accommodating gas column sheets, sheets and articles. ’

當充氣時充氣口之外A 邻氣體膨脹充氣通道,並經由進氣通道進入 而充氣膨脹,當使用者利 、至 „ 不同形狀、大小之片體或盒體包覆物品後,gp =由氣室提供物品__之用,並避免物品之尖角做氣室而使“ 【實施方式】 請參照第1A圖、第lRm、 圖以及第ic圖為本發明的第一實施例,第 圖為充氣前的平面圊,第弟 面圖。 圖為充氣後的立體圖,第1C圖為充氣後的剖 >· ·χ ^ 複層異類基材之空氣密她包含:二片外膜& 與化、充氣通道9、氣 Ί 11、進氣通道13、片體15 200911641 二片外膜2a與2b上下疊合。 一片内膜1 a與1 b侧貼於外膜2a咬 塗佈有耐熱材料1C,以_耐熱材料i j _1a與1b之間為 芍二氣可流通之通路。哉 段產生複數刪點1d,射_個醜點id介彻2植内膜la、之 間而接綱細咖心心觸㈣介彻2b與内膜1b 之間而接著外膜2b與内膜1b。 、 沿著熱封綠3aWhen inflating, the gas adjacent to the inflating port A expands the inflation channel and enters through the air inlet channel to inflate and expand. When the user benefits, to the different shapes and sizes of the sheet or the box to cover the article, gp = by gas The room provides the article __, and avoids the sharp corner of the article as the air chamber. [Embodiment] Please refer to FIG. 1A, FIG. 1Rm, FIG. and the ic diagram for the first embodiment of the present invention, and the figure is Plane 前 before inflation, the first half of the picture. The picture shows the perspective view after inflation, the 1C picture shows the section after inflation>··· ^ The airtightness of the multi-layered heterogeneous substrate contains: two outer membranes & chemistry, inflation channel 9, gas enthalpy Air passage 13, sheet body 15 200911641 Two sheets of outer film 2a and 2b are superposed on top of each other. A piece of inner film 1 a and 1 b is attached to the outer film 2a and is coated with a heat-resistant material 1C. The heat-resistant material i j _1a and 1b is a passage through which the gas can flow. The 哉 segment produces a plurality of deletion points 1d, the _ ugly point id passes through the 2 endometrium la, and the finer coffee touches between the 2b and the endometrium 1b and then the outer membrane 2b and the inner membrane 1b . , along the heat seal green 3a

…可于奴進行熱封形成氣柱片8, 其中以熱封手段接著二片外膜2a與2b以及二片内膜^與化,使二片外 膜2a與2b之_成統通道9,絲通道9貫穿熱封㈣,並包含一充 氣口 12連接於外部氣體。並經由熱封手段接著二片外㈣& % 複數氣室H,並以熱封手段於氣室Ή上產生複數節點14a,使氣室H循 著節點14a轉折。此外,前述說明之熱封點1d係位於充氣通道9内。 二片内膜1 a與1 b之間為依序間隔塗佈有耐熱材料]c,例如:以印刷 方式列印财娜或油墨,經過熱封手段,二片嶋1a與1b仍不接著而形 成進氣通道13。 氣柱片8為可以平行鋪放、依序堆疊或垂直排放等方式放置於片體15 之側邊’並利用黏貼方式固定於片體15上,而片體15為由軟質材料所製 成,例如:聚氣乙稀(卩〇^叫比丨〇如6,?7〇)、聚丙婦(?〇^「〇卩細阳,户卩)、 發泡聚乙烯(EPE)'發泡聚丙烯(EPP)、布質、泡棉等材質,亦可為瓦楞紙、 紙類及類紙材料所製成。 進入充氣口 12之氣體膨脹充氣通道9,使二片内膜1a與1b向外拉 200911641 開,經由熱封點1d帶動不接著的二片内膜1a與1b向外拉開而開啟進氣 通道13,藉此可糊絲通道9之輸_彳彳進行絲,使氣室^充 氣膨脹。進氣通道13於曲線部位之氣體壓力大於二侧之氣體壓力,使充氣 通運9的氣體容祕人而;^逸出,於氣室彳彳内部壓力增大時迫緊進氣通 道13之曲線部份而達成鎖氣效果。而氣室彳彳之氣體的崎壓力壓迫二片 内膜1a與1b而緊密麟於外膜2a或2b,覆蓋進氣通道13而賴氣室 11 ’使氣體不外洩而達成閉氣的效果。 當充氣完成後,即可片體15包覆物品20,並藉由氣柱片8提供物品 20緩衝倾之用,並聽物品2Q之尖肖嫩錄# 8而使氣室u之氣體 外泡。 依據本發明所揭賴結構’二#舰13與化、外膜23與处為聚乙 稀(卩〇如%如6,卩£)所製成’再者,複層異類基材之空氣密封體6更包 含一外箱30 ’且外箱30具有一容置空Μ 32,當氣柱片8與片體15包覆 物品20後’即可放入外箱3〇之容置空間32内,以便使用者運送物品2〇。 再者,片體15為可彎折形成一盒體16,盒體16包含一填充空間160,用 以收容氣柱片8。 明參照第2Α圖、第2Β圖 '第2C圖以及第2D圖亦為本發明的第一 實施例’第2Α圖為彎折的示意圖(一),第2Β圖為彎折的示意圖(二), 第2C圖為彎折的示意圖(三),第2D圖為彎折的示意圖(四)。 為能更完整包覆物品20,可將片體15裁剪成適當形狀、大小,或是 將片體15進行彎折,以使片體15更貼合物品2〇,例如將片體15彎折成 200911641 弧面,使片體15完全貼合於物品20表面,或將片體15彎折成圓柱體, 使物品20可收容於圓柱體中間之空間,並藉由氣室七提供物品2〇緩衝 保護之用,若收容之物0口0 20具有尖角,可透過片體15防止尖角刺破氣室 11而使氣體外茂。片體15亦可彎折形成—個以上直角,而片體15相互垂 • 錢兩片可分別黏貼氣室’亦可將氣室11循著節點14a轉折而緊貼於 • 片體15。其中片體15為聚丙烯(ρ·Γ〇Ρ_θ, PP)或發泡聚乙烯(EPE)所 製成時,更可提供物品20二次緩衝之用,強化吸震緩衝之效果。 Ο 請參照第3A圖、第3B ®、第3C圖以及第3D圖為本發明的第二實 鈿例’第3A圖為充氣後的示意圖(一),第3B圖為充氣後的示意圖(二), 第3C圖為充氣後的示意圖(三),第3D圖為充氣後的示意圖(四)。 複層異類基材之空氣密封體6包含:氣柱片8、盒體16。 氣柱片8為由二片外膜2a與2b、二片内膜1a與1b所組成,經由熱 封手段接著而形成充氣通道9、複數氣室11以及進氣通道13,而氣室11 亦以熱封手段產生複數節點14a,使氣室11循著節點14a轉折。 I, 盒體16為由軟質材料所製成,例如:聚氯乙稀(p〇|yV_Ch|orjde, PVC)、聚丙烯(p〇|ypropy|ene,pp)、發泡聚乙烯(EPE)、發泡聚丙烯(Epp)、 布質、泡棉等材質’亦可為瓦楞紙、紙類及類紙材料所製成,而盒體16 具有填充空間160,用以收容複數氣室11,其中複數氣室11為可以平行 鋪放、依序堆疊或垂直排放等方式放置於填充空間160内,並利用黏貼方 式固定於盒體16。 請參照第4A圖至第4G圖亦為本發明的第二實施例,第4A圖為彎折 200911641 的示意圖(一)’第4B囷為彎折的示意圖(二),第4(:圖為彎折的示意圖 (三)’第4D圖為彎折的示意圖(四),第4E圖為彎折的示意圖(五), 第4F圖為彎折的不意圖(六)’第4G囷為彎折的示意圖(七),第4H圖 為第4G圖充氣前的平面圖。 為能更完整包覆物品20,可使用不同形狀、大小之盒體16,例如具 有孤面之斜體敎體16、Π字型之盒體16或陳型之雜16,並於盒體 16之填充空間160内放置-個以上氣柱片8,即可承載或夾持不同形狀、 大小之物品20。 盒體16亦設有夾持空間162,用以夾持物品2〇之一角,避免物品2〇 於運送過程中受撞擊而刮傷或損壞。再者,盒體16可為一四方形之箱型 體’以藉由盒體16中間之空間收容物品2〇,並可將收容物品2〇之盒體 16置入外箱30,形成箱内箱之結構而強化吸震緩衝之防護效用。 再者,氣柱片8於中間的部份氣室μ設有不可充氣區14b,使氣柱片 8沿著節點14a轉折後,再循著不可充氣區14b彎折,俾讓氣柱片8緩衝 保護物品20相互垂直之兩面及其_,或是緩衝紐物叾2q相鄰之三 面,藉此可使單-個氣柱片8提供多方向的緩衝作用,強化氣柱片8之吸 震緩衝的效果。 請參照第5A圖、第5B圖、第5C圖以及第5D圖亦為本發明的第二 實施例,第5A圖為實際使用時的示意圖(一),第5B圖為實際使用時的 示意圖(二)’第5C @為實際使用時的示意圖(三),第犯圖為實際使用 時的示意圖(三)。 200911641 當物品20為一弧·型體時,各ff ip 體16可攻有弧形夾持面,以夹持物品20 之弧面,使物品20便於裝入外箱3〇之 防護效用 谷罝二間32内而達到吸震緩衝之 而物品20為方形時’為可利用兩個门形之盒體π套住物品2〇之上 下兩侧邊或左右兩側邊,再將物品2Q裝人外㈣。或可_四個L形之 盒體16套住物品20之四角,即可將物品2Q裝人外箱加。除此之外,可 視物品2G或使用者之需求’搭配多個大小不同之门形之盒 20,強化對物品20吸震緩衝的保護效果。 體16套住物品... can be heat-sealed to form a gas column piece 8, wherein the two outer film 2a and 2b and the two inner film are combined by heat sealing means, so that the two outer film 2a and 2b are integrated into the channel 9, The wire passage 9 extends through the heat seal (4) and includes an inflation port 12 connected to the outside air. And through the heat sealing means, two sheets of the outer (four) & % plurality of gas chambers H are formed, and a plurality of nodes 14a are generated on the gas chamber by heat sealing means, so that the gas chamber H follows the node 14a. Further, the heat seal point 1d described above is located in the inflation passage 9. The two inner membranes 1 a and 1 b are sequentially coated with a heat-resistant material]c, for example, printing the ink or ink by printing, and after heat sealing, the two sheets 1a and 1b are not continued. An intake passage 13 is formed. The gas column sheets 8 are placed on the side edges of the sheet body 15 in a manner of being stacked in parallel, sequentially stacked or vertically discharged, and are fixed to the sheet body 15 by means of adhesive bonding, and the sheet body 15 is made of a soft material. For example: polystyrene (卩〇^叫比丨〇如6,?7〇), polypropylene women (?〇^“〇卩细阳, household 卩), expanded polyethylene (EPE) foamed polypropylene (EPP), cloth, foam and other materials, can also be made of corrugated paper, paper and paper-like materials. Enter the gas expansion inflation channel 9 of the inflation port 12, so that the two inner membranes 1a and 1b are pulled outwards 200911641 Opening, through the heat sealing point 1d, the two inner membranes 1a and 1b which are not connected are pulled outward to open the air inlet passage 13, thereby the filaments of the filament passage 9 are subjected to the yarn, and the air chamber is inflated. The gas pressure of the inlet passage 13 at the curve portion is greater than the gas pressure of the two sides, so that the gas of the inflating passage 9 is secreted by the person; and the escape occurs, and the intake passage 13 is forced when the internal pressure of the chamber is increased. The curve portion is used to achieve the gas lock effect, and the gas pressure of the gas chamber is pressed against the two inner membranes 1a and 1b and closely adjacent to the outer membrane 2a or 2b. The air intake passage 13 and the air chamber 11' prevent the gas from leaking out to achieve the effect of closing the air. When the inflation is completed, the sheet 15 can cover the article 20, and the air column 8 provides the article 20 for buffering. And listen to the object 2Q tip Xiaonen recorded # 8 and make the gas of the gas chamber u bubble. According to the invention, the structure of the 'two # ship 13 and the outer film 23 and the polyethylene is small (such as %, as in the case of )£), the air-sealed body 6 of the multi-layer heterogeneous substrate further comprises an outer box 30' and the outer box 30 has a receiving space 32, when the air column 8 and the sheet After the body 15 is covered with the article 20, it can be placed in the accommodating space 32 of the outer box 3 , so that the user can transport the article 2 〇. Furthermore, the sheet 15 is bendable to form a box body 16 and the box body 16 A filling space 160 is included for accommodating the gas column sheet 8. Referring to the second drawing, the second drawing, the second drawing C, and the second drawing, the second embodiment is a schematic view of the bending. a), the second diagram is a schematic diagram of the bending (2), the 2C diagram is a schematic diagram of the bending (3), and the 2D diagram is a schematic diagram of the bending (4). In order to more completely cover the article 20, The sheet 15 can be cut into an appropriate shape and size, or the sheet 15 can be bent so that the sheet 15 fits more closely to the article 2, for example, the sheet 15 is bent into a 200911641 curved surface to make the sheet 15 Fully conforming to the surface of the article 20, or bending the sheet 15 into a cylinder, so that the article 20 can be accommodated in the space between the cylinders, and the object is provided by the air chamber 7 for cushioning protection, if the object is contained The 0 port 0 20 has a sharp corner, and can prevent the sharp corner from piercing the air chamber 11 through the sheet body 15 to make the gas exogenous. The sheet body 15 can also be bent to form more than one right angle, and the sheet body 15 is suspended from each other. The air chambers can be adhered separately. The air chambers 11 can also be folded to follow the nodes 14a and adhere to the sheet body 15. When the sheet 15 is made of polypropylene (ρ·Γ〇Ρ_θ, PP) or expanded polyethylene (EPE), the article 20 can be provided for secondary buffering, and the shock absorbing cushioning effect is enhanced. Ο Refer to FIG. 3A, 3B, 3C, and 3D for the second embodiment of the present invention. FIG. 3A is a schematic view (1) after inflation, and FIG. 3B is a schematic view after inflation (2) Fig. 3C is a schematic view (3) after inflation, and Fig. 3D is a schematic view (4) after inflation. The air sealing body 6 of the multi-layer heterogeneous substrate comprises: a gas column piece 8 and a case body 16. The gas column sheet 8 is composed of two outer membranes 2a and 2b and two inner membranes 1a and 1b, and then formed by a heat sealing means to form an inflation passage 9, a plurality of air chambers 11 and an intake passage 13, and the air chamber 11 is also The plurality of nodes 14a are generated by heat sealing means, and the gas chamber 11 is turned following the node 14a. I, the case 16 is made of a soft material, such as: polyvinyl chloride (p〇|yV_Ch|orjde, PVC), polypropylene (p〇|ypropy|ene, pp), expanded polyethylene (EPE) The material of foamed polypropylene (Epp), cloth, foam, etc. can also be made of corrugated paper, paper and paper-like materials, and the casing 16 has a filling space 160 for accommodating a plurality of gas chambers 11, wherein The plurality of air chambers 11 are placed in the filling space 160 in a manner of being stacked in parallel, sequentially stacked, or vertically discharged, and are fixed to the casing 16 by means of adhesive bonding. Please refer to FIG. 4A to FIG. 4G , which are also a second embodiment of the present invention. FIG. 4A is a schematic diagram of bending 200911641 (1) FIG. 4B is a schematic diagram of bending (2), and 4th (the figure is Schematic diagram of bending (3) '4D is a schematic diagram of bending (4), 4E is a schematic diagram of bending (5), 4F is not intended for bending (6) '4G囷 is bending Folded schematic diagram (7), Fig. 4H is a plan view of the 4Gth image before inflation. In order to more completely cover the article 20, different shapes and sizes of the box body 16, such as an italic body with a solitary surface, may be used. The box 16 of the U-shaped type or the miscellaneous 16 of the Chen type, and more than one air column piece 8 are placed in the filling space 160 of the casing 16, so that the articles 20 of different shapes and sizes can be carried or clamped. There is also a clamping space 162 for holding a corner of the article 2 to prevent the article 2 from being scratched or damaged by the impact during transportation. Further, the casing 16 can be a square box-shaped body. The object is stored in the space between the middle of the casing 16 and the casing 16 of the storage article 2 can be placed in the outer casing 30 to form the structure of the inner casing. The protection effect of the shock absorbing cushion is enhanced. Further, the air chamber piece 8 in the middle of the air chamber μ is provided with an inflatable area 14b, and the air column piece 8 is bent along the node 14a, and then bent along the non-inflatable area 14b.俾 Let the gas column sheet 8 buffer the two sides of the article 20 perpendicular to each other and the _, or the three sides adjacent to the buffer 叾 2q, thereby allowing the single-column sheet 8 to provide multi-directional buffering effect, strengthening The effect of the shock absorbing buffer of the air column piece 8. Referring to FIG. 5A, FIG. 5B, FIG. 5C and FIG. 5D, the second embodiment of the present invention is also shown, and FIG. 5A is a schematic view (1) in actual use. Figure 5B is a schematic diagram of actual use (2) '5C@ is a schematic diagram (3) in actual use, and the first diagram is a schematic diagram (3) in actual use. 200911641 When the item 20 is an arc type Each ff ip body 16 can be tapped with an arc-shaped clamping surface to grip the curved surface of the article 20, so that the article 20 can be easily loaded into the outer box 3, and the protection effect is used in the valley 32 to achieve the shock absorption buffer. 20 is square when 'is available for two door-shaped boxes π to cover the upper and lower sides of the item 2 Or the left and right sides, and then the item 2Q is loaded outside (4). Or the four L-shaped box 16 can be placed around the four corners of the item 20, and the item 2Q can be loaded into the outer box. The item 2G or the user's needs 'matches a plurality of door-shaped boxes 20 of different sizes to enhance the protection effect on the shock absorbing cushion of the item 20.

ί 再者’使用時可先將複層異類基材之空氣密封體6置入外箱3〇内,再 將物品2G裝人外箱3G,亦可達顺震緩衝之防護效用。 依據本發明所揭露的結構’充氣通道9為經由熱封手段接著二片外膜 2a與2b而形成的空間’亦可為經由熱封手段接著二片内膜^與仆而形 成的空間,或經由熱封手段接著^内膜1a與―片外膜2a _成的空 間。再者,若僅有一片内膜1a時,可於一片内膜1a與一片外膜&之間 塗佈耐熱觀’以糊耐紐料1G做為空氣可流通之通路。社述說明之 熱封手段可為熱模具印壓。 由於氣柱片8或氣至11於包裝物品20時可提供良好的吸震缓衝之保 護效用,但易受物品20之尖角刺破而使氣體外洩,反觀片體π或盒體π, 無物品20之尖角刺破之虞’但卻無法提供物品2〇吸震缓衝之保護效用, 是以,本發明使用複層基材而結合兩者之優點’強化氣柱片8或氣室11 而可避免物品20之尖角刺破氣室11而使氣體外洩,再者,本發明可利用 200911641 不同形狀、大小之片體15或盒體16包覆物品20,並可選擇部份包覆或完 全包覆物品20,同時藉由氣室11提供物品20緩衝保護之用,當氣柱片8 與片體15或盒體16包覆物品20後,即可放入外箱30之容置空間32内, 以便使用者運送物品20。 雖然本發明的技術内容已經以較佳實施例揭露如上,然其並非用以限 定本發明,任何熟習此技藝者’在不脫離本發明之精神所作些許之更動與 潤飾,皆應涵蓋於本發明的範疇内,因此本發明之保護範圍當視後附之申 請專利範圍所界定者為準。 【圖式簡單說明】 第1A圖為本發明第一實施例充氣前的平面圖。 第1B圖為本發明第一實施例充氣後的立體圖。 第1C圖為本發明第一實施例充氣後的剖面圖。 第2A圖為本發明第一實施例彎折的示意圖(_)。 第2B圖為本發明第一實施例彎折的示意圖(二)。 第2C圖為本發明第一實施例彎折的示意圖(三 第2D圖為本發明第一實施例彎折的示意圖(四)。 第3A圖為本發明第二實施例充氣後的示意圖(_)。 第3B圖為本發明第二實施例充氣後的示意圖(二)。 第3C圖為本發明第二實施例充氣後的示意圖(三)。 第3D圖為本發明第二實施例充氣後的示意圖(四> 第4A圖為本發明第二實施例彎折的示意圖(―)。 第4B圖為本發明第二實施例彎折的示意圖(二)。 11 200911641 第4C圖為本發明第二實施例彎折的示意圖(三)。 第4D圖為本發明第二實施例彎折的示意圖(四)。 第4E圖為本發明第二實施例彎折的示意圖(五)。 第4F圖為本發明第二實施例彎折的示意圖(六)。 第4G圖為本發明第二實施例彎折的示意圖(七)。 第4H圖為第4G圖充氣前的平面圖。 第5A圖為本發明第二實施例實際使用時的示意圖(一)。 第5B圖為本發明第二實施例實際使用時的示意圖(二)。 第5C圖為本發明第二實施例實際使用時的示意圖(三)。 第5D圖為本發明第二實施例實際使用時的示意圖(三)。 【主要元件符號說明】 1a、1b 内膜 1c 耐熱材料 1d 熱封點 2a、2b 外膜 3a、3b、3c、3d、3e 熱封線 6 空氣密封體 8 氣柱片 9 充氣通道 11 氣室 12 充氣口 13 進氣通道 14a 節點 12 200911641 14b 不可充氣區 15 片體 16 盒體 160 填充空間 162 夾持空間 20 物品 30 外箱 32 容置空間 l 13ί Further, when using, the air sealing body 6 of the multi-layered substrate can be placed in the outer box 3〇, and the item 2G can be loaded into the outer box 3G, which can also achieve the protection effect of the shock buffer. According to the structure disclosed in the present invention, the space in which the inflation passage 9 is formed by the heat sealing means followed by the two outer films 2a and 2b may be a space formed by heat sealing means followed by two inner membranes and a servant, or The space formed by the inner film 1a and the "outer film 2a" is followed by heat sealing means. Further, when there is only one inner film 1a, a heat-resistant view can be applied between the inner film 1a and the outer film & and the paste-resistant material 1G is used as a passage through which air can flow. The heat sealing method can be used for hot stamping. Since the gas column sheet 8 or the gas to 11 can provide a good shock absorbing cushioning protection effect when the article 20 is packaged, it is easily pierced by the sharp corners of the article 20 to cause gas leakage, and the sheet π or the box body π, Without the sharp corners of the article 20, but the inability to provide the protection effect of the shock absorber of the article 2, the present invention uses the multi-layer substrate to combine the advantages of both, 'enhance the gas column 8 or the gas chamber 11 can prevent the sharp corners of the article 20 from piercing the air chamber 11 to leak the gas. Furthermore, the present invention can utilize the 200911641 different shapes and sizes of the sheet 15 or the box 16 to cover the article 20, and select parts. The article 20 is covered or completely covered, and the article 20 is provided with buffer protection by the air chamber 11. When the air column 8 and the body 15 or the case 16 are covered with the article 20, the outer box 30 can be placed. The accommodating space 32 is provided for the user to transport the article 20. Although the technical content of the present invention has been disclosed in the above preferred embodiments, it is not intended to limit the present invention, and any modifications and refinements made by those skilled in the art without departing from the spirit of the present invention are encompassed by the present invention. The scope of protection of the present invention is therefore defined by the scope of the appended claims. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1A is a plan view showing a first embodiment of the present invention before being inflated. Fig. 1B is a perspective view showing the first embodiment of the present invention after inflation. Fig. 1C is a cross-sectional view showing the first embodiment of the present invention after inflation. Fig. 2A is a schematic view (_) showing the bending of the first embodiment of the present invention. Fig. 2B is a schematic view (b) of the bending of the first embodiment of the present invention. 2C is a schematic view showing the bending of the first embodiment of the present invention (three 2D drawings are schematic diagrams of the bending of the first embodiment of the present invention (4). FIG. 3A is a schematic view of the second embodiment of the present invention after inflation (_ Fig. 3B is a schematic view (2) of the second embodiment of the present invention after inflation. Fig. 3C is a schematic view (3) of the second embodiment of the present invention after inflation. Fig. 3D is a second embodiment of the present invention after inflation 4 (a) is a schematic view (-) of a second embodiment of the present invention. Fig. 4B is a schematic view (b) of a second embodiment of the present invention. 11 200911641 FIG. 4D is a schematic view (4) of bending of the second embodiment of the present invention. FIG. 4E is a schematic view (5) of bending of the second embodiment of the present invention. The figure is a schematic view (6) of the bending of the second embodiment of the present invention. Fig. 4G is a schematic view (7) of the bending of the second embodiment of the present invention. Fig. 4H is a plan view of the 4Gth drawing before inflation. Schematic diagram (1) of the second embodiment of the present invention in actual use. FIG. 5C is a schematic view (3) of the second embodiment of the present invention when it is actually used. FIG. 5D is a schematic view of the second embodiment of the present invention when it is actually used ( 3) [Main component symbol description] 1a, 1b inner film 1c heat resistant material 1d heat seal point 2a, 2b outer film 3a, 3b, 3c, 3d, 3e heat seal line 6 air seal body 8 gas column piece 9 air passage 11 Air chamber 12 Inflator 13 Intake passage 14a Node 12 200911641 14b Non-inflatable area 15 Sheet 16 Box 160 Filling space 162 Clamping space 20 Item 30 Outer box 32 Housing space l 13

Claims (1)

200911641 七、申請專利範圍: 1、一種複層異類基材之空氣密封體,用以包覆一物品而提供緩衝保護之 用,包含: 二外膜,上下疊合; 二内膜,介於該二外膜之間; 一充氣通道’位於該二外膜之間,包含有可供外部氣體充入之充氣 〇 ; 複數熱封點,位於該充氣通道内,介於一片該外膜與一片該内膜之 間而接著一片該外膜與一片該内膜; 個以上乳室,為經由熱封手段接著該二外膜而形成可儲存氣體的 空間,用以提供該物品緩衝保護之用; 個以上進氣通道,連接該充氣通道與該氣室,係由該内膜之一面 依序間隔塗佈一耐熱材料後,經由熱封手段不接著其他膜而形成,進入 該充氣口之氣體膨脹該充氣通道,使二片該外膜與向外拉開,經由該熱 封點帶動不接著的二片該内膜向外拉開而開啟該進氣通道,氣體進入該 氣至後壓迫該内膜覆蓋該進氣通道而封閉該氣室;及 一片體,位於該氣室與該物品之間,用以避免該氣室遭該物品刺穿 而破損。 月東項1之複層異類基材之空氣密封體,其中該充氣通道為經由熱封 手段接著該二外臈而形成的空間。 3如π求項1之複層異類基材之空氣密舰,其巾該充氣通道為經由熱封 手段接著該内膜與-片該外膜而形成的空間。 200911641 4、 如請求項1之複層異類基材之空氣密封體,其中該絲通道為經由熱封 手段接箸二片該内膜而形成的空間。 5、 如請求項1之複層異類基材之空氣密封體,其中該氣室為黏貝占於該片體 之側邊。 .6、如請求項1之複層異類基材之空氣密封體,其中該氣室經由熱封手段熱 , 封而形成—個以上節點,使該氣室循著該節點轉折而具有多層緩衝之功 用0 7、 如請求項1之複層異類基材之线密封體,其中該氣室為平行鋪放於該 片體之側邊。 8、 如請求項】之複層異類基材之空氣密封體,其中該氣室為依序堆疊於該 片體之側邊。 9、 如請求項1之複層翻基材之空氣韻體,財該氣室為垂直排放於該 片體之侧邊。 瓜、如請求項1之複層異類基材之空氣密封體,其中刻體為由軟質材料 I 所製成。 ' 11、如請求項10之複層異類基材之空氣密封體,其中該軟質材料為選自布 質及泡棉所構成的群組中。 -12、如請求項10之複層異類基材之空氣密封體,其中該軟質材料為選自瓦 • 楞紙、紙類及類紙材料所構成的群組中。 13、如請求項1Q之複層基材之空氣密舰,其巾該軟質材料為選自聚 氯乙烯心丨^_比丨_6,卩乂〇、聚丙烯(卩0_0州咖,叩)、發泡聚 15 200911641 乙烯(EPE)及發泡聚丙烯(EPP)所構成的群組中。 14、 如請求項1之複層異類基材之空氣密封體,其中該片體彎折形成一圓 柱體。 15、 如請求項1之複層異類基材之线密封體,其中該片體彎折形成一孤 面。 伯、如請求項i之複層異類基材之空氣密封體,其中該片體弯折形成一個 以上直角而包覆該物品。 17、 如凊求項16之複層異類基材之空氣密封體,其中該氣室經由熱封手段 熱封而形成-個以上節點,使該氣室姆該節點轉折而緊貼於該片體 之側邊。 18、 如請求項16之複層異類基材之空氣密封體,其中該氣室經由熱封手段 熱封而形成一個以上不可充氣區,使該氣室循著該不可充氣區彎折而 緩衝保護該物品相鄰之三面。 19種複層異類基材之空氣密封體,用以包覆一物品而提供緩衝保護之 用,包含: 氣柱片’用以提供該物品緩衝保護之用.,包含: 二外膜,上下疊合; 二内臈,介於該二外膜之間; 一充氣通道,位於該二外膜之間,包含有可供外部氣體充入 之充氣口; 複數熱封點,位於該充氣通道内,介於一片該外膜與—片該 16 200911641 内膜之間而接著一片該外膜與一片該内膜; 一個以上氣室,為經由熱封手段接著該二外膜而形成可儲存 氣體的空間;及 -個以上進氣通道,連接該充氣通道與該氣室,係由該内膜 之一面依序間隔塗佈一耐熱材料後,經由熱封手段不接著其他膜 而形成,進入該充氣口之氣體膨脹該充氣通道,使二片該外膜與 向外拉開,經由該熱封點帶動不接著的二片該内膜向外拉開而開 ' 啟該進氣通道,氣體進入該氣室後壓迫該内膜覆蓋該進氣通道而 封閉該氣室; 及 一盒體,包含一填充空間,用以收容該氣柱片,避免該氣柱片遭 該物品刺穿而破損。 20、如請求項19之複層異類基材之空氣密封體,其中該充氣通道為經由熱 封手段接著該二外膜而形成的空間。 21 '如請求項19之複層異類基材之空氣密封體,其中該充氣通道為經由熱 封手段接著該内膜與一片該外膜而形成的空間。 22、 如請求項19之複層異類基材之空氣密封體,其中該充氣通道為經由熱 封手段接著二片該内膜而形成的空間。 23、 如請求項19之複層異類紐之空氣密封體,其中該氣室為黏貼於該盒 體之該填充空間内。 24、 如請求項19之複層賊紐之空氣密封體,其巾該氣室經由熱封手段 17 200911641 熱封而形成一個以上節點 之功用。 使該氣室循著該節點轉折而具有多層緩衝 25、如請求項19之複層異類基材之空氣密封體, 該盒體之該填充空間内。 其中該氣室為平行鋪放於 26、如請求項19之複層異類基材之空氣密封體, 該盒體之該填充空間内。 其中該氣室為依序堆疊於 如請求㈣之複層異類基材之空氣密封體,其中該氣室為垂直排放於 該盒體之該填充空間内。 28、如請柄彳9之顧異織狀_缝,其巾财體為由軟 所製成。 質材料 29、 如請求項28之娜麵後_时⑽嶋為選自布 質及泡棉所構成的群組中。 3〇、如請求項28之複層異纖材之空氣密龍,其中該婦材料為選自瓦 楞紙、紙類及類紙材料所構成的群組中。 31、 如請求項28之複層異類基材之空氣密封體,其中該健材料為選自聚氯乙埽(P〇__〇ride, PVC)、聚丙稀(p〇|yp「叩y|ene,pp)、發泡聚 乙烯(EPE)及發泡聚丙烯(EPP)所構成的群組中。 32、 如請求項19之複層異類紐之空氣密封體,其巾該盒體料形成—圓 柱體。 33、如請求項19之複層異類基材之空氣密封體,其中該盒體彎折形成—弧 面。 1S 200911641 糾、如請求項19之娜類基材之瞻封體,其中該盒體彎折形成一個 以上直角而包覆該物品。 35、如請求項34之複層異_之瞻封體,其t該氣餘由熱封手段 熱封而形成-個以上節點,使該氣室循著該節點轉折而置放於該盒體 之該填充空間内。 %、如請求項34之複層基材之空氣密封體,其#該氣室經由熱封手段 熱封而形成-個以上不可充餘,使魏室循著該不可充氣區彎折而 緩衝保護該物品相鄰之三面。 7、-種複層異類紐之轉賴體,用以包覆—物⑼提供緩衝保護之 用,包含: 一氣柱片,用以提供該物品緩衝保護之用,包含: 二外膜,上下疊合; 二内膜,介於該二外膜之間; 一充氣通逭’位於該二外膜之間,包含有可供外部氣體充入 之充氣口; 複數熱封點’位於該充氣通道内,.介於一片該外膜與一片該 内膜之間而接著一片該外膜與一片該内膜; 個以上氣至’為經由熱封手段接者該二外膜而形成可儲存 氣體的空間;及 一個以上進氣通道’連接該充氣通道舆該氣室,係由該内膜 之一面依序間隔塗佈一耐熱材料後,經由熱封手段不接著其他膜 19 200911641 而形成,進入該充氣口之氣體膨脹該充氣通道,使二片該外膜與 向外拉開,經由該熱封點帶動不接著的二片該内膜向外拉開而開 啟該進氣通道,氣體進入該氣室後壓迫該内膜覆蓋該進氣通道而 封閉該氣室; 一片體,位於該氣柱片與該物品之間,用以避免該氣室遭該物品 刺穿而破損;及 一外箱’包含一容置空間,用以收容該氣柱片、該片體及該物品 而便於搬運。 38、 如請求項37之複層異類基材之空氣密封體.,其中該氣柱片為黏貼於該 片體之側邊。 39、 如請求項37之複層異類基材之空氣密封體,其中該氣柱片為平行鋪放 於該片體之側邊。 4〇、如請求項37之複層異類基材之空氣密封體,其中該氣检片為依序堆疊 於該片體之侧邊。 41、 如請求項37之複層異類基材之空氣密封體,其中該氣柱片為垂直排放 於該片體之側邊。 42、 如請求項37之複f異類基材之空氣密封體,其中該充氣通道為經由熱 封手段接著該二外膜而形成的空間。 月求項37之複層異類基材之空氣密封體,其中該充氣通道為經由熱 封手段接著該内膜與一片該外膜而形成的空間。 月東項37之複層異類基材之空氣密封體,其中該充氣通道為經由熱 20 200911641 封手段接著二片該内膜而形成的空間β 45、 如請求項37之複層異類基材之空氣密封體,其中該氣室經由熱封手段 熱封而形成-個以上節點,使該氣室循著該節點轉折而具有多層緩: 之功用。 46、 如請求項37之複層麵基材之空氣密封體,其中該片體為由軟質材料 所製成。 ’ 47、 如請求項46之複層異類基材之空氣密封體,其中該軟質材料為選自布 質及泡棉所構成的群組t。 47、如請求項46之複層異類基材之空氣密封體,其中該軟質材料為選自瓦 楞紙、紙類及類紙材料所構成的群組中。 49、 如請求項46之複層異類基材之空氣密封體,其中該軟質材^選自聚 氯乙烯(Ρ_η__β,Ρν〇,_(ρ_〇_ηθ,ρρ)、^《 乙烯(ΕΡΕ)及發泡聚丙烯(ΕΡΡ)所構成的群組中。 50、 如請求項37讀層異類基材之空氣密封體,其中該片體彎折形成一圓 柱體。 51、 如請求項37之複層異類基材之空氣密封體,其中該片體彎折形成一狐 面。 52、 如請求項37之複層異類基材之空氣密封體,其中該片體f折形成一個 以上直角而包覆該物品。 53、 如請求項52之複層異類基材之空氣密封體,其中該氣室經由熱封手段 熱封而形成-個以上節點,使該氣室循著該節點轉折而緊貼於該片體 21 200911641 之側邊。 54、 如請求項52之複層異類基材之空氣密封體,其中該氣室經由熱封手段 熱封而形成一個以上不可充氣區,使該氣室循著該不可充氣區彎折而 緩衝保護該物品相鄰之三面。 55、 如請求項37之複層異類基材之空氣密封體,其中該片體彎折形成一盒 體,該盒體包含一填充空間,用以收容該氣柱片。200911641 VII. Patent application scope: 1. An air sealing body of a multi-layer heterogeneous substrate for covering an object to provide buffer protection, comprising: two outer membranes, superposed on top and bottom; Between the two outer membranes; an inflation passage 'between the two outer membranes, comprising an inflatable raft for external air charging; a plurality of heat sealing points located in the inflation passage, between one piece of the outer membrane and one piece of the outer membrane Between the inner membrane and then a piece of the outer membrane and a piece of the inner membrane; more than one milk chamber, forming a space for storing gas through the heat sealing means and then the two outer membranes for providing buffer protection for the article; The air inlet passage is connected to the air passage and the air chamber, and a heat resistant material is sequentially applied from one surface of the inner film, and then formed by heat sealing means without following another film, and the gas entering the air inlet is expanded. Inflating the passage, the two outer membranes are pulled outwardly, and the two inner membranes which are not connected are driven to open the inlet passage through the heat sealing point, and the gas enters the gas to press the inner membrane Cover this Closing the gas passage plenum; and a body located between the article and the plenum, the plenum to avoid piercing the article was being damaged. The air seal of the multi-layer heterogeneous substrate of Yuedong 1 wherein the inflation passage is a space formed by heat sealing means followed by the two outer turns. An airtight ship of a multi-layer heterogeneous substrate of π, wherein the inflated passage is a space formed by heat sealing means followed by the inner film and the outer film. The air-sealing body of the multi-layered heterogeneous substrate of claim 1, wherein the wire passage is a space formed by joining two sheets of the inner film via a heat sealing means. 5. The air seal of the multi-layer heterogeneous substrate of claim 1, wherein the air chamber is on the side of the sheet. 6. The air-tight body of the multi-layer heterogeneous substrate of claim 1, wherein the air chamber is heat-sealed by a heat sealing means to form more than one node, so that the air chamber follows the node turning and has a multi-layer buffer The utility model provides the wire sealing body of the multi-layer heterogeneous substrate of claim 1, wherein the air chamber is laid on the side of the sheet in parallel. 8. The air seal of a multi-layer heterogeneous substrate according to the claim, wherein the gas chambers are sequentially stacked on the side of the sheet. 9. The airborne body of the substrate of claim 1 is vertically circulated on the side of the sheet. A melon, such as the airtight body of the multi-layered substrate of claim 1, wherein the engraved body is made of soft material I. 11. The air seal of the multi-layered substrate of claim 10, wherein the soft material is selected from the group consisting of cloth and foam. -12. The air seal of the multi-layered substrate of claim 10, wherein the soft material is selected from the group consisting of wavy paper, paper, and paper-like materials. 13. The airtight ship of the multi-layer substrate of claim 1Q, wherein the soft material is selected from the group consisting of polyvinyl chloride 丨^_比丨_6, 卩乂〇, polypropylene (卩0_0州咖,叩) , foamed poly 15 200911641 Ethylene (EPE) and expanded polypropylene (EPP) group. 14. The air seal of the multi-layer heterogeneous substrate of claim 1, wherein the sheet is bent to form a cylinder. 15. The wire sealing body of the multi-layered heterogeneous substrate of claim 1, wherein the sheet is bent to form an orphan. The air seal of the multi-layered substrate of claim i, wherein the sheet is bent to form more than one right angle to cover the article. 17. The air sealing body of the multi-layer heterogeneous substrate of claim 16, wherein the air chamber is heat-sealed by heat sealing to form more than one node, so that the gas chamber is turned and adhered to the sheet Side of it. 18. The air seal of the multi-layer heterogeneous substrate of claim 16, wherein the air chamber is heat sealed by a heat sealing means to form one or more non-inflatable regions, so that the air chamber is bent and protected by the non-inflatable region. The item is adjacent to three sides. The air sealing body of 19 kinds of multi-layered heterogeneous substrates is used for covering an object to provide cushioning protection, comprising: a gas column piece for providing cushioning protection for the article, comprising: two outer films, stacked on top of each other a second inner cymbal between the two outer membranes; an inflation passage between the two outer membranes, including an inflation port for external air to be filled; a plurality of heat sealing points located in the inflation passage Between one piece of the outer membrane and the inner membrane of the 16 200911641 and then one piece of the outer membrane and one piece of the inner membrane; one or more air chambers for forming a space for storing gas via heat sealing means followed by the two outer membranes And more than one air inlet passage connecting the air passage and the air chamber, wherein a heat resistant material is sequentially applied from one side of the inner film, and then formed by heat sealing means without following another film, and entering the air inlet The gas expands the inflation passage, so that the two outer membranes are pulled outwardly, and the two inner membranes which are not connected are driven to open outwardly through the heat sealing point to open the air inlet passage, and the gas enters the gas. Pressing the intima over the chamber to cover the Closing the gas passage plenum; and a box body, comprising a filling space for accommodating the plate column, the column sheet was to avoid piercing the article being damaged. 20. The air seal of a multi-layered heterogeneous substrate of claim 19, wherein the inflation channel is a space formed by heat sealing means followed by the two outer films. The air sealing body of the multi-layered heterogeneous substrate of claim 19, wherein the inflation channel is a space formed by heat sealing means followed by the inner film and a piece of the outer film. 22. The air seal of a multi-layered heterogeneous substrate of claim 19, wherein the inflation channel is a space formed by heat sealing means followed by two sheets of the inner film. 23. The air-sealed body of the multi-layer heterogeneous core of claim 19, wherein the plenum is adhered to the filling space of the casing. 24. The air seal of the layered thief of claim 19, wherein the air chamber is heat sealed by heat sealing means 17 200911641 to form a function of more than one node. The air chamber is caused to have a multi-layer buffer 25, which is an air seal of a multi-layered heterogeneous substrate of claim 19, which is in the filling space of the casing. Wherein the air chamber is an air seal body placed in parallel with the multi-layer heterogeneous substrate of claim 19, the filling space of the box. Wherein the gas chamber is an air seal body sequentially stacked on the multi-layer heterogeneous substrate as claimed in (4), wherein the gas chamber is vertically discharged into the filling space of the box body. 28, such as the handle 彳 9 of the different weave _ seam, the towel body is made of soft. The material 29, as in the case of the claim 28, is (10) 嶋 selected from the group consisting of cloth and foam. 3. The air ampule of the multi-layered foreign matter of claim 28, wherein the material is selected from the group consisting of corrugated paper, paper, and paper-like materials. 31. The air seal of the multi-layered substrate of claim 28, wherein the material is selected from the group consisting of polyvinyl chloride (P〇__〇ride, PVC) and polypropylene (p〇|yp "叩y| A group of ene, pp), expanded polyethylene (EPE) and expanded polypropylene (EPP). 32. The air-sealed body of the multi-layered heterogeneous core of claim 19, wherein the casing is formed 33. The air-sealing body of the multi-layer heterogeneous substrate of claim 19, wherein the box body is bent to form a curved surface. 1S 200911641 Correction, such as the seal of the Na-type substrate of claim 19, Wherein the box body is bent to form more than one right angle to cover the article. 35. According to the multi-layered seal of claim 34, the gas is heat-sealed by heat sealing means to form more than one node. The gas chamber is placed in the filling space of the box according to the node turning. %, such as the air sealing body of the multi-layer substrate of claim 34, the air chamber is heat-sealed by heat sealing means Forming more than one is not enough, so that the Wei room follows the non-inflatable area to bend and protect the three sides adjacent to the item. The lyophilized body is used for providing cushioning protection for the covering material (9), comprising: a gas column piece for providing cushioning protection for the article, comprising: two outer membranes, superimposed on top and bottom; two inner membranes, between the two Between the outer membranes; an inflatable venting 位于 between the two outer membranes, including an inflation port for external air to be filled; a plurality of heat sealing points 'in the inflation channel, between one piece of the outer membrane and one piece Between the inner membranes and then a piece of the outer membrane and a piece of the inner membrane; more than one gas to 'the space for forming a storable gas by the heat sealing means; and one or more inlet passages' The gas passage is formed by sequentially applying a heat-resistant material to one side of the inner film, and is formed by heat sealing means without following another film 19 200911641, and the gas entering the gas inlet expands the gas passage, so that The outer membrane is pulled outwardly, and the two inner membranes are opened by the heat sealing point to open the inlet passage, and the gas enters the air chamber to press the inner membrane to cover the inlet passage. And closing the air chamber; a body between the gas column piece and the article to prevent the gas chamber from being damaged by the piercing of the article; and an outer box 'including an accommodating space for accommodating the gas column piece, the piece body and 38. The article of claim 37, wherein the air column sheet is adhered to the side of the sheet. 39. The multi-layer heterogeneous group of claim 37. The air sealing body of the material, wherein the air column sheets are laid in parallel on the side of the sheet body. 4. The air sealing body of the multi-layer heterogeneous substrate of claim 37, wherein the gas detecting sheets are sequentially stacked 41. The air seal of the multi-layered heterogeneous substrate of claim 37, wherein the gas column is vertically discharged to the side of the sheet. 42. The air seal of claim 19, wherein the gas passage is a space formed by heat sealing means followed by the outer film. The air seal of the multi-layer heterogeneous substrate of item 37, wherein the inflation passage is a space formed by heat sealing means followed by the inner film and a piece of the outer film. The air sealing body of the multi-layer heterogeneous substrate of Yuedong 37, wherein the inflation channel is a space β 45 formed by the heat 20 200911641 sealing means followed by two sheets of the inner film, and the multi-layer heterogeneous substrate of claim 37 The air sealing body, wherein the air chamber is heat-sealed by heat sealing means to form more than one node, so that the air chamber follows the node turning and has the function of multiple layers. 46. The air seal of the multi-layer substrate of claim 37, wherein the sheet is made of a soft material. 47. The air seal of the multi-layered substrate of claim 46, wherein the soft material is a group t selected from the group consisting of cloth and foam. 47. The air seal of a multi-layered substrate of claim 46, wherein the soft material is selected from the group consisting of corrugated paper, paper, and paper-like materials. 49. The air seal of the multi-layer heterogeneous substrate of claim 46, wherein the soft material is selected from the group consisting of polyvinyl chloride (Ρ_η__β, Ρν〇, _(ρ_〇_ηθ, ρρ), ^" ethylene (ΕΡΕ) And a group of expanded polypropylene (ΕΡΡ) 50. An air seal of a layered heterogeneous substrate, as recited in claim 37, wherein the sheet is bent to form a cylinder. 51. The air sealing body of the layered substrate, wherein the sheet is bent to form a fox surface. 52. The air sealing body of the multi-layer heterogeneous substrate of claim 37, wherein the sheet f is folded to form one or more right angles and coated The air seal of the multi-layer heterogeneous substrate of claim 52, wherein the air chamber is heat-sealed by a heat sealing means to form more than one node, so that the air chamber follows the node turning and is closely attached to 54. The side of the sheet 21 200911641. 54. The air seal of the multi-layered substrate of claim 52, wherein the chamber is heat sealed by heat sealing to form more than one non-inflatable region, such that the chamber follows The non-inflatable zone is bent to cushion the three sides adjacent to the article. 5. The air seal of the multi-layered substrate of claim 37, wherein the sheet is bent to form a box, the box comprising a filling space for receiving the gas column.
TW97146844A 2006-09-07 2006-09-07 Airtight body made of multi-layered heterogeneous substrates TW200911641A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI399325B (en) * 2010-07-27 2013-06-21 Naturally open the air valve of the air seal
TWI424940B (en) * 2011-05-05 2014-02-01
CN105775394A (en) * 2016-05-16 2016-07-20 温州振平机械有限公司 Inflatable thin film buffer cushion and machining method thereof
CN105775395A (en) * 2016-05-19 2016-07-20 王兴明 Novel packaging air sac without hot streak pints in inflation channel

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI399325B (en) * 2010-07-27 2013-06-21 Naturally open the air valve of the air seal
TWI424940B (en) * 2011-05-05 2014-02-01
CN105775394A (en) * 2016-05-16 2016-07-20 温州振平机械有限公司 Inflatable thin film buffer cushion and machining method thereof
CN105775395A (en) * 2016-05-19 2016-07-20 王兴明 Novel packaging air sac without hot streak pints in inflation channel

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