TW201206771A - A device for creating a strip loop, as well as method and an apparatus for fabricating pull-off lids - Google Patents

A device for creating a strip loop, as well as method and an apparatus for fabricating pull-off lids Download PDF

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Publication number
TW201206771A
TW201206771A TW100112537A TW100112537A TW201206771A TW 201206771 A TW201206771 A TW 201206771A TW 100112537 A TW100112537 A TW 100112537A TW 100112537 A TW100112537 A TW 100112537A TW 201206771 A TW201206771 A TW 201206771A
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TW
Taiwan
Prior art keywords
strip
foil
sealing
rti
side walls
Prior art date
Application number
TW100112537A
Other languages
Chinese (zh)
Other versions
TWI531510B (en
Inventor
Nandor Koeteles
Original Assignee
Soudronic Ag
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Publication date
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Publication of TW201206771A publication Critical patent/TW201206771A/en
Application granted granted Critical
Publication of TWI531510B publication Critical patent/TWI531510B/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/02Advancing work in relation to the stroke of the die or tool
    • B21D43/021Control or correction devices in association with moving strips
    • B21D43/022Loop-control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/02Advancing work in relation to the stroke of the die or tool
    • B21D43/04Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work
    • B21D43/12Advancing work in relation to the stroke of the die or tool by means in mechanical engagement with the work by chains or belts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D51/00Making hollow objects
    • B21D51/16Making hollow objects characterised by the use of the objects
    • B21D51/38Making inlet or outlet arrangements of cans, tins, baths, bottles, or other vessels; Making can ends; Making closures
    • B21D51/44Making closures, e.g. caps
    • B21D51/443Making closures, e.g. caps easily removable closures, e.g. by means of tear strips
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D51/00Making hollow objects
    • B21D51/16Making hollow objects characterised by the use of the objects
    • B21D51/38Making inlet or outlet arrangements of cans, tins, baths, bottles, or other vessels; Making can ends; Making closures
    • B21D51/44Making closures, e.g. caps
    • B21D51/446Feeding or removal of material

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Making Paper Articles (AREA)
  • Closures For Containers (AREA)
  • Laminated Bodies (AREA)
  • Containers And Plastic Fillers For Packaging (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)

Abstract

A foil strip loop (7) is generated for handling a foil strip (6) to be uncoiled from a supply roll (2), the foil strip being fed in stepwise by a feed device (4). In order to ensure that this can proceed without breakdowns at high fabrication rates, a device (1) is provided in which a hollow cylinder (10) rests loosely on the strip with restricted freedom of movement so as to create the strip loop. A device of this type is preferably provided for fabricating pull-off lids, wherein a foil strip is uncoiled from a strip supply roil and fed to punching-and-sealing processing station.

Description

六、發明說明: 【發明所屬之技術領域】 本發明係關於一種用於一 β 。 應輥與一條帶饋入I 驅動展開的條帶供 褒置待別被使用在一種用二=條帶環之襄置。此 =個平行列且由金屬所構成:密:法,其包 -箱條帶係藉由—條帶供應二以=多個處理站, 封蓋環部’羯區段係被打孔 =方式饋入至密 =被施加並熱密封至密封蓋環部上衝 一而以治條帶建構1條帶環,_條帶二“ ΓΐίΓ靠在細咖條帶之二之間。: :易種用於製造包含依據本發明之裝置 【先前技術】 :種熟知之方法係以將供罐狀封裝用之密封蓋永 -说知至封農之上端金屬蓋之型式實施,密封蓋形成 ,開口,其維持被一易開箔(亦被稱為一撕開箔, =封蓋亦被稱為一撕開蓋)密封’特別是被一種已藉 ^擒封而施加之金耗密封,直到㈣之内容物第 二f使用為止。由—種被配置在金屬蓋上面之塑膠 所構成之額外密封蓋,使得封裝之内 命期間能重新密封。用於製造這些d費;6. Description of the Invention: [Technical Field to Which the Invention Is Ascribed] The present invention relates to a method for a β. The roller should be used with a strip with a feed I drive to be used in a device with a two = strip loop. This is a parallel column and consists of metal: dense: method, the bag-box strip is supplied by the strip to the second to = multiple processing stations, and the cover ring portion is punctured. Feeding to the density = is applied and heat sealed to the sealing cover ring portion to form a belt loop with the rule strip, _ strip two " Γΐ Γ Γ lie between the two thin strips.: : For the manufacture of a device according to the present invention [Prior Art]: A well-known method is to form a sealing cover for a can-like package, and to form a sealing cover, an opening, It is maintained by an easy-open foil (also known as a tear-off foil, = the cover is also referred to as a tear-open cover), which is sealed by a gold seal that has been applied by a seal, until (4) The second f of the content is used. An additional sealing cover made of plastic disposed on the metal cover enables resealing during the life of the package.

S 3 201206771 置’係參考圖5而更詳細地說明於下。圖6至圖12係 用於說明在製造這些密封蓋期間之製造步驟。在製造 』間易開箔係以一寬箔網(wide foil web)之型式而從 一條帶供應輥被展開,然後被導入至衝壓與密封處理 站中或被引導在密封蓋元件上面。單一型式或多重 i式之所明的跳動輥(dancer r〇ll)系統’係被採用以提 供一條帶供應用以將箔條帶饋入至衝出與熱密封處理 站中,然而,在箔之逐步運送期間,利用這些跳動輥 f統,尤其是利用薄箔條帶之高生產速率會出現問 題驾知型式之條帶環係藉由控制展開的條帶供應輥 ,驅動機構而產生,並例如利用一測量環與固定感測 器之距離的距離感測器而被調整。為了以高條帶速度 ^幅地改變饋入長度,就驅動機構而論,這種方法係 =雜/昂貴或產生不令人滿意的結果。DE_A4〇 〇2 194 提出利用一空氣流來產生一條帶環。 【發明内容】 本發明之目的係用於建構一裝置,其可容易地提 供一條帶環,且即使以高製造速度(包括條帶之逐步運 送與、冶材料之最廣泛可能的變化)仍可確實地操作。 此目的係藉由一種如申請專利範圍第丨項所述之 裝置而達成。 ' 吾人已發現即使在上述引用的條件之下,一穩定 條帶環可藉由使用一在界限之内可自由移動的中空圓 201206771 柱而被獲得’圓柱從而斷續地而鬆鬆地靠在條帶上並 產生條帶環之底部重新定向。因此,塑膠薄膜或疊層 狀薄膜或麵H ’也可以报有效地於6G公尺/分鐘之條 帶速率下,以及每衝程5G i 15(^厘之饋人衝程速率 被操控’且㈣能力可使裝置被則以湘高速率之 速度製造易開蓋。 一維持於在侧壁之内的兩個末端之水平配向的橫 貫棒最好是運行通過中空圓柱,此棒限侧於中空圓 柱動的自由度。這藉由中空圓柱之行程提供一特 別簡單的限制。另一較佳實施樣態係為橫貫棒係垂直 可移動地配置在-個垂直導槽中,每個導槽位在側壁 之内,藉以限制中空圓柱朝垂直方向之運動的自由 度。令空圓柱可選擇各種直徑與材料。因此,可選擇 例如20 cm或更大的直徑。就材料而論,尤其可 塑膠。 本1明之另一個目的係用於提供一種用於製造易 開蓋之方法及設備,其中有利的裝置係用於獲得一條 帶環。這係藉由如申請專利範圍第9項所述之方法或 如申請專利範圍第12項所述之設備而達成。 於此’箔條帶最好是使用有時不相同的步長(step length),而當從頂端觀看時,水平地並藉由本質上垂 直於密封蓋元件之運送方向之其縱轴線地被饋入至衝 壓與密封處理站中。 ^相較於習知之斜饋入(〇bliqUe feed)時,箔腹板S 3 201206771 is described in more detail below with reference to FIG. 5. 6 to 12 are for explaining the manufacturing steps during the manufacture of these sealing covers. The easy-to-open foil in the manufacturing process is unrolled from a belt supply roll in the form of a wide foil web and then introduced into a stamping and sealing station or guided over the sealing cover member. A single or multiple i-type dancer roll system is employed to provide a strip supply for feeding the foil strip into the punch and heat seal processing station, however, in foil During the step-by-step transportation, the use of these dancer rollers, especially the use of thin foil strips, has a high production rate, and the problem is that the strip type of the belt is produced by controlling the unwinding strip supply roller and the drive mechanism. For example, it is adjusted using a distance sensor that measures the distance between the ring and the fixed sensor. In order to change the feed length at a high strip speed, in the case of a drive mechanism, this method is heterozygous/expensive or produces unsatisfactory results. DE_A4〇 〇2 194 proposes the use of an air flow to create a belt loop. SUMMARY OF THE INVENTION The object of the present invention is to construct a device that can easily provide a belt loop, and even at high manufacturing speeds (including the gradual transport of strips and the widest possible variation of materials). Do it sure. This object is achieved by a device as described in the scope of the patent application. 'We have found that even under the conditions quoted above, a stable strip ring can be obtained by using a hollow circle 201206771 column that is freely movable within the limits to intermittently and loosely rest. The strip is re-oriented at the bottom of the strip loop. Therefore, the plastic film or laminate film or face H' can also be reported effectively at a strip rate of 6 Gm/min, and 5 G i 15 per stroke (the feed stroke rate of ^1 is manipulated' and (4) ability The apparatus can be made to open the easy-opening cover at a speed of a high rate of Xiang. A horizontally aligned transverse rod maintained at both ends of the side wall preferably runs through the hollow cylinder, the rod side being bound to the hollow cylinder Degree of freedom. This provides a particularly simple limitation by the stroke of the hollow cylinder. Another preferred embodiment is that the transverse rods are vertically movably disposed in a vertical channel, each channel being located on the side wall. Within this, the degree of freedom of movement of the hollow cylinder in the vertical direction is limited. The hollow cylinder can be selected from various diameters and materials. Therefore, for example, a diameter of 20 cm or more can be selected. In terms of materials, especially plastic. Another object of the invention is to provide a method and apparatus for making an easy-open lid, wherein an advantageous device is used to obtain a belt loop. This is by the method of claim 9 or as claimed. Special This is achieved by the apparatus described in the scope of item 12. The 'foil strips are preferably used with sometimes different step lengths, and when viewed from the top, horizontally and by essentially perpendicular to the seal The longitudinal direction of the conveying direction of the cover element is fed into the stamping and sealing station. ^Foil web compared to the conventional oblique feed (〇bliqUe feed)

S 5 201206771 (foil web)之直角彎曲饋入可達到20%左右之箔的節 省。然而,在平行被製造之兩列以上的密封蓋的情況 下,直線饋入具有讓猪條f饋入之步長很大幅地變動 之結果。利用此裝置之穩定箔條帶環,可使箔或步長 的大變動即使於高饋入速度下仍可被操控。 【實施方式】 以下討論係以圖式為基礎更詳細地說明本發明之 例示實施例以及易開蓋之製造。 圖1至4顯示依據本發明之一裝置1之一實施 例。此裝置係被設置並設計成以—條帶6建構一條帶 環7。條帶6係被一條帶供應輥2所驅動並從條帶供 應輥2被展開,然後通過進入裝置丨中。在此之後, 條帶係由-饋入裝置4所運送’饋入裝置4係為被使 用並處理條帶之裝置之一部分。這種型式之裝置之一 η明於下。如顯示之條帶之運送導致條帶運行方 開通係均勻速度而藉由 緩慢地被調整至快速二d4而只是相當 可隨著改變的饋人長度完成 入、置4 度及/或饋入步驟長度而論,袭入二就速 條帶環7以平衡饋人變動,1的於此係使用 易被饋入之條帶材料跡:此,能夠容 ^ 貝上迫疋一種已知方法。 機構19係例如以—電動馬達之型式被提 細顯示)。此種型式之驅動機構係為熟悉本項 二所热悉的,且因為這個理由,在這點上不需提 外資訊。驅動機構19可藉由控制包含饋入裝置4 :置而被實施,俾能將展開此條帶調整成條帶需 ^、、感測器19’、尤其是一距離感測器之型式、 辩:供’藉由它’驅動機構19會反應,尤其用於 環之長度。感測器信號可被送出絲置之 =早'’它們從那裡係被處理以控制驅動機構19, 被送出至一與驅動裝置直接相關的控制單 俾此増加來自裝置之控制信號。 圓柱10係被*罟柊蚩h地条形成衣7。一中空 :中從 選二.rr 咖 空圓柱最好是具有賴示之_^肖的=張力。中 有-橢圓形或正方形剖面。中:面’然而:亦可具 方式被在側壁之間的其末端面;引主$質上係以齊平 柱就其胸斜。中空圓 其可朝條帶之運行方向並垂直於條帶=二 201206771 t動::預定量。此量係依賴於直徑並取決於展開 機二2之限制可被作用在中㈣柱上之任何期望 二斤限制。作這個的動作最好是在中空圓柱上從内 。,元成’尤其藉由—靠在側壁之間水平地被配置並 =過^圓柱之橫貫棒u。橫貫棒U可被配置 s 固疋在側壁中,或最好是被引導於其中,俾能 j直可移動的。所顯示的垂直導槽12、i 目的而設置。 圖1與圖3顯示位於其垂直最低位置之中空圓柱 n。於此,其藉由其内壁面靠在橫貫棒11上,橫貫棒 11因而座落於導槽之極為底部H裝置4現在拉 =可破供應輥所驅動並從供應輥被展開之更多的條 ,時’條帶環脑了,其結果是中㈣減所顯示之 2位置被移走。就其在㈣之間移動而論,在這點 ^其是自由的。吾人已發現到甚至非常薄且輕的羯條 帶’可利用此種型式之可自由移動的 效地被處理為-環’從而在一移動之自由度的範圍之 =使中空圓柱只藉由其本身的重量(其係藉由為中空 枚^之直徑之選取及/或材料之選取而可調整的)靠在 u帶上1其建構環之重新定向並促成條帶之預裝載。 在所顯示之例子中,依照由中空_所允許之條帶移 動的自由度依然受限於橫貫棒n。每次自由移動率之 路徑長度被用盡(於此係由中空圓柱之内部直徑所決 定)時,於此例子之中空圓柱首先接觸橫貫棒^,其 201206771 結果是其朝上移動之自由度係被用盡且亦被橫向縮 Γ這i固位置係顯示於圖2令。如果現在比被展開更 夕的條f被饋入,則中空圓柱接著將橫貫棒朝上拉。 楚顯示在圖4中。這顯示-位置,於此比可被 條帶供純傳送之更多的條帶已藉由饋人裝置4被饋 =持績某段時間,其結果是環7已被縮短到達中空圓 柱10被朝上㈣且橫貫棒u同樣地在其 的點。導槽12、12,之上端亦將限制 =二果饋入裝置接著饋入比正被供應報傳 衣要者再一次變長,同時靠在條帶上之中 最大量再朝下移動進入圖!與圖3 =中 :構Ϊ =進一步的變長應藉由控制供應輥2之驅動 ㈣而被阻止’其乃因為條帶或環7並非 中空圓柱之穩定效果的情況下貫穿農置卜、’又 於所顯示之本實施例中,此裝置 nit機構於此處係, 而,Γ二 =可以是與條帶1旋轉之滾輪。然 限最好式重新定向機構。可調整橫向極 阳敢好π用於條帶設置,俾能使這在 運打橫越過條帶重新定向機構14、15。二之: 實施例中,轴向可移動且可獲得的止推Π:: 201206771 目的而設置在每個重新定向機構14或15上,止推墊 圈14’與14”在條帶重新定向機構14上,且止推塾圈 在條帶重新定向機構15上。在解除它們的 被調整成^ ’這些止推墊圈係就它們的間距而論而 構橫向極|^之寬度,然後被㈣連結俾能為條帶建 ” IΪ換經由裝置1之入口側重新定向機構14所顯 由(r〇Uting)的是,亦可經由-重新定向機 安排條帶之路線在入口側上,其結果是條 柱1〇八…昆2運行在重新定向銳16之下並到達中空圓 裝置1最好是藉由可調整的附接機構17、18而附 接f給供錢2狀支撐件5或3。於此適應性允許 距離在裝置丨與支料5、3之間被水平地調整。 現在將分別與製造易開蓋或撕開蓋相關來說明一 裝置之較佳用途。此處設置在條帶供應輥2上之條帶 係=易開碡材料,易開箔係從易開箔材料為每個蓋衝 打牙孔二基於圖5至圖12,將提出依據習知技術之利 用易開泊製造金屬蓋之處理設備以及製造步驟之簡短 說明。圖5於此提供一已知設備21之概要側視圖,其 包含在一機器框架22上之處理站23至28及一附加站 29。一種供密封蓋元件用之運送裝置係為一種較佳設 計之直線型運送裝置,如揭露於W02006/042426中。 這種直線型運送裝置係設有鋸齒形皮帶以運送於下所 說明之型式之蓋形狀物件,且能夠達成非常快速的運 送或密封蓋製造。供密封蓋元件用之對向接收機構係 沿者對向與同步移動的錯齒形皮帶而被設置。運送裝 置之功能係以逐步方式將密封蓋元件或密封蓋運送至 個別的處理站,如以下所說明的。圖5所顯示之運送 裝置朝運送方向(以箭號C表示)將密封蓋元件或具有 易開洛之究成在、封蓋,從位於堆疊31之設備之開始端 運送到達設備之末端,於此密封蓋移動滑動進入儲藏 地段36或37。岔封蓋元件係以已知方式從堆疊3丨被 移除並移動進入運送裝置中。所顯示之運送裝置係屬 於一種不同於在W02006/042426中所指出之較佳的直 線型運送裝置之没叶,且於此只簡要地作說明。設置 兩條長軌道,各自與密封蓋元件或密封蓋並排配置, 當這些棒朝方向A被驅動機構舉起時,其軌道向上抬 起放置在儲藏地段上或在站23至29中之密封蓋元^ 或密封蓋,㈣,朝箭號8之方向(與箭號^相同方向) =曲柄鶴器且藉由—順向運動使它們順向前進一 定量。、這些乂奉接著朝箭號A之方向向下移動,密封蓋 凡件或密封蓋再次被儲藏在它們的儲藏地段上。這些 棒接著朝與箭號^正相反的方向向後移動在错藏位置 =下(jl箭財肖B) ’以便接著再執賴㈣之操作。 =封蓋it件或⑨封蓋停靠在運送它們的儲藏位置之 或位於處理它們之處理站十。在—處理步驟之後, 精由所有處理站關始運送。圖6顯示堆疊金屬蓋趣 201206771 料120作為例如那些設置於堆疊31中之密封蓋元件之 例子。,些场料120例如為譬如直徑1 i Cm之圓形金 ===當然容易可能的,例如正方形或 長方縫W及不同直彳i。m之邊緣在—未顯示 之處理機器中已經被預先塑形。從整個盤當中只有一 個區段顯示於圖6與後來的圖中,以便簡化圖式。在 站23中,一使用一上模具與下模具之衝壓程 序係用於將-開口 129衝人射,如圖7所示於其 中開口 ^邊緣細121表*,而被打?孔之圓形盤係 以127示此盤係被移除成為廢料。衝出處理站23 係被-驅動機構115所驅動,而對剩下的站而言也是 這樣的1在處理站24,邊緣121被向下拉,藉以獲得 圖8所不之邊緣之圖案122。環形密封蓋坯料12〇現 在通過進入衝出與處理站25,於其中易開箔125係被 置於密封蓋120之開口上面,於此,其係藉由熱密封 而附接,如圖9與圖1〇所示。易開箔125最好是一疊 層箔或一鋁箔,且這個之底部係以熟知方式設置有一 塑勝塗佈層。所需的羯链料12 5係從一寬箱網被打穿 孔並被置於環形盤之中心開口上面,且藉由一熱密封 站’ 4係藉由熱之施加而被按壓至元件12〇之圓形開 /口之邊緣上’其結果是箔125藉由一融化與後來的冷 二之製程而形成一具有金屬蓋120之緊密密封。這是 #、熱知方法,而於此將不會詳細說明。亦可做準備, 藉以易開箔只在衝出與處理站25中被預先密封,接著The right angle bend of S 5 201206771 (foil web) feeds into a foil that can reach around 20%. However, in the case of two or more sealing caps that are manufactured in parallel, the linear feed has a large variation in the step size in which the pig f is fed. With the stable foil strip loop of this device, large variations in foil or step size can be manipulated even at high feed speeds. [Embodiment] The following discussion explains the exemplary embodiments of the present invention and the manufacture of the easy-open cover in more detail on the basis of the drawings. Figures 1 to 4 show an embodiment of a device 1 according to the invention. This device is arranged and designed to construct a band 7 with a strip 6 . The strip 6 is driven by a belt supply roller 2 and unwound from the strip supply roller 2, and then passes through the apparatus 丨. Thereafter, the strip is carried by the feed-in device 4 and the feed device 4 is part of the device that is used and processes the strip. One of the devices of this type is shown below. The transport of the strip as shown causes the stripper to open at a uniform speed and is slowly adjusted to a fast two d4 and is only comparable to the incoming feed length, 4 degrees and/or feed steps with the changed feed length. In terms of length, the speed of the strip 7 is used to balance the feed change, and the use of the strip material material that is easily fed is used in this case: this can accommodate a known method. The mechanism 19 is shown, for example, in the form of an electric motor. This type of drive mechanism is familiar to those familiar with this item 2, and for this reason, no additional information is required at this point. The driving mechanism 19 can be implemented by controlling the feeding device 4, and can adjust the strip to a strip, the sensor 19', especially a distance sensor, and : For the 'by it' drive mechanism 19 will react, especially for the length of the ring. The sensor signals can be sent out of the wire = early '' from where they are processed to control the drive mechanism 19 and sent to a control unit directly associated with the drive unit to add control signals from the device. The cylinder 10 is formed into a garment 7 by a *罟柊蚩h strip. A hollow: from the choice of two. rr coffee empty cylinder is best to have the _ ^ Xiao = tension. Medium - elliptical or square profile. Medium: Face 'However: it can also be placed on its end face between the side walls; the main body is primed with a flush column on its chest. Hollow circle It can be oriented in the direction of the strip and perpendicular to the strip = two 201206771 t:: a predetermined amount. This amount is dependent on the diameter and depends on any desired two kilogram limit on the middle (four) column depending on the limits of the expander 2-2. The action to do this is preferably from the inside on the hollow cylinder. , Yuan Cheng' is especially horizontally disposed between the side walls and traverses the rod u. The transverse bar U can be configured to be fixed in the side wall or, preferably, guided therein, so that it can be moved. The vertical channels 12, i are displayed for the purpose. Figures 1 and 3 show the hollow cylinder n at its lowest vertical position. Here, by the inner wall surface thereof abutting on the transverse rod 11, traversing the rod 11 and thus seated at the extreme bottom of the guide groove H, the device 4 is now pulled by the breakable supply roller and is deployed from the supply roller. The strip, when the strip is surrounded by the brain, the result is that the position shown in the middle (four) minus is removed. As far as it moves between (iv), at this point it is free. We have found that even very thin and light crepe strips can be treated as a -ring by this type of freely movable effect so that the range of degrees of freedom of movement is such that the hollow cylinder is only The weight of itself, which is adjustable by the choice of the diameter of the hollow piece and/or the choice of material, rests on the u-belt 1 and re-orients its constructed ring and facilitates preloading of the strip. In the example shown, the degree of freedom in accordance with the band allowed by the hollow _ is still limited by the traverse bar n. When the path length of each free movement rate is exhausted (this is determined by the inner diameter of the hollow cylinder), the hollow cylinder of this example first contacts the transverse rod, and its 201206771 result is the degree of freedom of its upward movement. It is used up and is also horizontally retracted. This position is shown in Figure 2. If the strip f is now fed more than the unfolded, then the hollow cylinder will then pull up across the rod. Chu is shown in Figure 4. This display-position, where more strips can be transmitted by the strip for pure delivery, has been fed by the feeder 4 for a certain period of time, with the result that the loop 7 has been shortened to reach the hollow cylinder 10 Upward (four) and across the bar u at the same point. The guide grooves 12, 12, the upper end will also be limited = the second fruit feeding device is then fed again than the one that is being supplied by the newspaper, and the maximum amount is moved downwards into the figure. And Figure 3 = Medium: Structure = further lengthening should be prevented by controlling the drive (4) of the supply roller 2 'It is because the strip or ring 7 is not a stable effect of the hollow cylinder, In addition, in the embodiment shown, the device nit mechanism is here, and the second device = can be a roller that rotates with the strip 1. However, the best reorientation mechanism is limited. The adjustable lateral polar π is used for the strip setting, which enables this to be traversed across the strip reorientation mechanisms 14, 15. Second: In the embodiment, the axially movable and obtainable thrust Π: 201206771 is provided on each of the reorienting mechanisms 14 or 15, and the thrust washers 14' and 14" are in the strip reorienting mechanism 14 And the thrust loops are on the strip reorientation mechanism 15. In the release of them, the thrust washers are arranged in the width of the transverse poles, and then connected by (4). It can be shown that the strips can be traversed by the inlet side reorienting mechanism 14 of the device 1 or the route of the strips can be arranged on the inlet side via the -redirecting machine, the result is The column 1 is operated by the reorientation sharp 16 and reaches the hollow circular device 1 preferably by attaching f to the money supply 2 support 5 or 3 by means of the adjustable attachment mechanisms 17, 18. The adaptability allows the distance to be adjusted horizontally between the device and the support 5, 3. A preferred use of a device will now be described in connection with the manufacture of an easy open lid or a tear open lid, respectively. Here, the strip system provided on the strip supply roller 2 is an easy-opening material, and the easy-opening foil is punched from the easy-open foil material for each cover. Based on FIG. 5 to FIG. 12, it will be proposed according to the conventional knowledge. The use of technology facilitates the opening of a processing device for the manufacture of metal caps and a brief description of the manufacturing steps. Figure 5 provides a schematic side view of a known device 21 including processing stations 23 through 28 and an additional station 29 on a machine frame 22. A transport device for a seal cover member is a preferred design of a linear transport device, as disclosed in WO2006/042426. This linear transport device is provided with a zigzag belt for transporting the cover-shaped article of the type described below, and enables very fast transport or seal cover manufacture. A pair of misaligned belts for opposing and receiving movement of the opposing receiving mechanism for the sealing cover member are provided. The function of the transport device is to transport the seal cover element or seal cover to individual processing stations in a stepwise manner, as explained below. The transport device shown in Figure 5 is oriented in the transport direction (indicated by arrow C) to seal the cover member or the open cover, from the beginning of the device at the stack 31 to the end of the device, This sealing cover is slidably moved into the storage section 36 or 37. The crucible cover element is removed from the stack 3 in a known manner and moved into the transport device. The transport device shown is a different type of leafless transport device than the one shown in WO2006/042426, and is only briefly described herein. Two long rails are provided, each arranged side by side with the sealing cover element or the sealing cover, and when the rods are lifted in the direction A by the driving mechanism, the rails are lifted up to the sealing cover placed on the storage section or in the stations 23 to 29. Element ^ or seal cover, (four), in the direction of arrow 8 (the same direction as the arrow ^) = crank cranes and by forward movement to make them forward a certain amount. These shovels then move downwards in the direction of arrow A, and the seals or seals are again stored in their storage areas. These sticks then move backwards in the opposite direction of the arrow ^ in the wrong position = (jl arrow B) so that the operation of (4) is followed. = The cover or 9 covers are docked at the storage location where they are transported or at the processing station where they are processed. After the - processing step, the fines are shipped from all processing stations. Figure 6 shows an example of a stacked metal cover 201206771 material 120 as a sealing cover element such as those disposed in stack 31. These field materials 120 are, for example, circular gold having a diameter of 1 i Cm === Of course, it is easily possible, such as square or rectangular slits W and different straight ridges i. The edge of m has been pre-shaped in the processing machine not shown. Only one segment from the entire disc is shown in Figure 6 and later in order to simplify the drawing. In the station 23, a stamping process using an upper mold and a lower mold is used to punch the opening 129, as shown in Fig. 7, in which the opening ^ edge is fine 121, and is hit. The circular disk of the hole shows that the disk is removed as waste. The punch-out processing station 23 is driven by the drive mechanism 115, and the same is true for the remaining stations. At the processing station 24, the edge 121 is pulled downward to obtain the pattern 122 of the edge of Fig. 8. The annular seal cover blank 12 is now passed through the punch-out and processing station 25, wherein the easy-open foil 125 is placed over the opening of the sealing cover 120, where it is attached by heat sealing, as shown in Figure 9 Figure 1〇. The easy-open foil 125 is preferably a laminated foil or an aluminum foil, and the bottom portion is provided with a plastic coating layer in a well-known manner. The desired shackle 12 5 is perforated from a wide box of nets and placed over the central opening of the annular disk and is pressed to the element 12 by a heat sealing station '4' by application of heat. The result is that the foil 125 forms a tight seal with a metal cover 120 by a process of melting and subsequent cooling. This is the #,热知方法, and will not be explained in detail here. It can also be prepared, whereby the easy-open foil is only pre-sealed in the punch-out and processing station 25, and then

S 12 201206771 在另一個熱密封站中隨後被完成密封。一冷卻處理站 27亦可依需要被設置以達到冷卻。箔125可在處理站 28中設有一壓花124(圖11),且邊緣121再者被聯成 一串以建構完成的邊緣123。完成密封蓋現在於一測 試站29中接受測試,其測試通常包含對施加在密封蓋 上之易開箔25之密封測試,且將更精確說明於下。一 旦箔已利用一緊密密封而被黏著至其餘的金屬蓋,密 封蓋就落入接收機構以供完成的密封蓋用。如果已偵 測到一不適當的密封,則此密封蓋沿著所顯示之另一 個移動而滑動進入報廢容器中。 上述之直線型運送裝置係能夠以一高循環速率 (例如,每分鐘200個)運送密封蓋元件或密封蓋,並 能夠利用在這些站之間之可複製的部分步驟來運送這 些。本發明再者產生一種關於一大幅面範圍之項目或 密封蓋之彈性概念,其關於圓形密封蓋可延伸例如從 一 50以上至200 mm之直徑,且亦可順應不同的長方 形格式,例如,目前標準的魚罐頭。運送裝置再者被 設計成一小型模組,尤其是關於一種多軌建設性的設 計。依據本發明之裝置可特別較佳地被使用,用以與 這個以一高速率製造密封蓋之方法結合來產生條帶 環。然而,其亦可與其他必須產生一條帶環之裝置一 起被使用。 一箔條帶環係在從一供應輥將一羯條帶處理成被 展開時產生,其箔條帶係逐漸地被饋入至一饋入裝置 s 13 201206771 中。為了確保在沒有毁損的情況下,使這甚至仍可以 高製造速度被實施,提供一裝置,於其中一中空圓柱 鬆鬆地靠在具有被限制的移動之自由度之條帶上,俾 能建構一條帶環。此種型式之裝置最好是被提供以製 造易開蓋,其中一箔條帶係從一條帶供應輥被展開並 饋至一衝壓與密封處理站。 【圖式簡單說明】 圖1係為依據本發明之一在被部署於一條帶供應 輥與一條帶饋入之間時之裝置之一實施例之概要側視 圖。 圖2說明包含被條帶舉起之中空圓柱之圖1之裝 置。 圖3係為圖1之裝置之立體圖。 圖4係為具有在一不同位置中之中空圓柱之裝置 之側視圖。 圖5係為一用於運送並製造易開蓋之已知裝置之 概要侧視圖。 圖6至12顯示為了說明密封蓋製造的目的之金屬 蓋之區段。 2 :供應輥 3、5 :支撐件 4:饋入裝置 【主要元件符號說明】 A-C :箭號 D:條帶運行方向 1 :裝置S 12 201206771 Subsequently sealed in another heat sealing station. A cooling station 27 can also be provided as needed to achieve cooling. The foil 125 can be provided with an embossment 124 (Fig. 11) in the processing station 28, and the edges 121 are again joined together to form a completed edge 123. The completed sealing cap is now tested in a test station 29, which typically includes a seal test of the easy-open foil 25 applied to the closure and will be more precisely described below. Once the foil has been adhered to the remaining metal cover with a tight seal, the sealing cover falls into the receiving mechanism for the completed sealing cover. If an improper seal has been detected, the seal slides into the end-of-life container along the other movement shown. The linear conveyor described above is capable of transporting the closure member or closure at a high cycle rate (e.g., 200 per minute) and is capable of transporting these portions using a replicable portion of the steps between the stations. The present invention further produces a resilience concept for a large-area range of items or closures that can extend, for example, from a diameter of from 50 to 200 mm, and can also conform to different rectangular formats, for example, The current standard canned fish. The transport unit is again designed as a small module, especially with regard to a multi-track constructive design. The apparatus according to the present invention can be particularly preferably used in conjunction with this method of manufacturing a sealing cover at a high rate to produce a strip loop. However, it can also be used in conjunction with other devices that must produce a loop. A foil strip loop is produced when a strip of tape is processed from a supply roll to be unfolded, and the foil strip is gradually fed into a feed device s 13 201206771. In order to ensure that this can even be carried out at a high manufacturing speed without damage, a device is provided in which a hollow cylinder loosely rests on a strip having a degree of freedom of movement of restriction, and can be constructed A belt loop. Preferably, the device of this type is provided to produce an easy open lid wherein a foil strip is unwound from a strip supply roll and fed to a stamping and sealing station. BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 is a schematic side elevational view of one embodiment of a device when deployed between a supply roll and a belt feed in accordance with one aspect of the present invention. Figure 2 illustrates the apparatus of Figure 1 including a hollow cylinder lifted by a strip. Figure 3 is a perspective view of the apparatus of Figure 1. Figure 4 is a side elevational view of the device having a hollow cylinder in a different position. Figure 5 is a schematic side elevational view of a known apparatus for transporting and manufacturing an easy open lid. Figures 6 through 12 show sections of a metal cover for the purpose of illustrating the manufacture of the closure. 2: Supply roller 3, 5: Support member 4: Feeding device [Main component symbol description] A-C: Arrow D: Strip running direction 1 : Device

S 14 201206771 6 :條帶 7 :(條帶)環 8、9 :側壁 10 :中空圓柱 11 :橫貫棒 12、12’ :導槽 14 :重新定向機構 14’、14π :止推墊圈 15 :重新定向機構 15'、15π :止推墊圈 16 :重新定向機構/ 重新定向輥 17、18 :附接機構 19 :驅動機構 19':感測器 21 :設備 22 :機器框架 23-28 :(處理)站 29:(附加)站/(測試) 站 31 :堆疊 36、37 :儲藏地段 115 :驅動機構 120:金屬蓋/金屬蓋 述料/密封蓋/密封蓋述 料/述料/元件 121 :邊緣 122 :圖案 123 :邊緣 124 :壓花 125 :易開箔/箔(坯 料) 127 :圓形盤 129 :開口 15S 14 201206771 6 : strip 7 : (strip) ring 8, 9 : side wall 10 : hollow cylinder 11 : transverse rod 12 , 12 ' : guide groove 14 : reorientation mechanism 14 ′, 14π : thrust washer 15 : re Orientation mechanism 15', 15π: thrust washer 16: reorientation mechanism / reorientation roller 17, 18: attachment mechanism 19: drive mechanism 19': sensor 21: device 22: machine frame 23-28: (treatment) Station 29: (additional) station / (test) Station 31: stack 36, 37: storage section 115: drive mechanism 120: metal cover / metal cover description / sealing cover / sealing cover Description / description / component 121 : edge 122 : Pattern 123 : Edge 124 : Embossed 125 : Easy-open foil / foil (blank) 127 : Round disk 129 : Opening 15

Claims (1)

201206771 七、申請專利範圍: 1. 一種裝置(1),其係被設置並設計以在一展開之被驅動 條帶供應輥(2)與一被驅動饋入裝置(4)之間建構一條 帶環(7),以供一條帶(6)之一逐步饋入,其中,該裝 置包含兩側壁(8、9)與一中空圓柱(10),該條帶在該 些側壁之間運行,而該中空圓柱(10)係藉由該裝置之 該些側壁之其中一個而於其每一末端被引導,且在該 些側壁之間可自由地移動一預定量,其中該中空圓柱 係意圖變成靠在該條帶(6)上並在該裝置正操作時使 該條帶更改方向以建構一條帶環(7)。 2. 如申請專利範圍第1項所述之裝置,其中,一維持在 該些側壁之内的兩個末端之水平運行的橫貫棒(11)運 行通過該中空圓柱,這個棒限制該中空圓柱之移動之 自由度。 3. 如申請專利範圍第2項所述之裝置,其中,該橫貫棒 (11)係垂直可移動的配置在一個垂直導槽(12、12’) 中,每個導槽在該些側壁(8、9)中。 4. 如申請專利範圍第1或2項所述之裝置,其中,一進 入側與一出口側條帶重新定向機構(14、15)係被設置 在該些侧壁上面。 S 16 201206771 5.如申請專利範圍第1或2項所述之裝置,其中,一條 帶重新定向機構(16)係設置於在該些側壁前面之該進 入側上,而一條帶重新定向機構(15)係設置於在該些 側壁上面之該出口側上。 6.如申請專利範圍第4或5項所述之裝置,其中,橫向 界限(14,、14”、15,、15”)係被提供為該條帶設置在該 條帶重新定向機構上,該些界限係可調整成該條帶之 寬度。 如申請專利範圍第1項所述之裝置,其中,該裝置包 含附接機構(17、18),用於將其附接至該條帶供應= ^支撐件(3、5),藉由該附接機構,沿著該條帶^運 送方向可調整在該裝置(1)與該條帶供應輥(2)之間的 8. 如申請專利範圍第1項所述之裝置,其中,該勺 :非接觸感測H (19,)以決定該條帶環之&amp;置 二距離感測器以決定該條帶環與該感測器之 種- 使用依據中請專利範圍第i至8 之裝置來劍冰且1 項所述 產吐Λ“易開盍之方法’包含以下步驟: -連串的多個平行列且由金屬所構成之密封 蓋 S 17 9. 201206771 環部,其中該些密封蓋元件之一逐步直線型運送至處 理站係被造成; -從一條帶供應輥逐步饋送一箔條帶至該些密封蓋環 部並衝出(punching out)箔區段,以及在一衝壓與密封 處理站令施加並熱密封該些箔區段至該些密封蓋環 部,其中藉由該裝置而以該箔條帶建構一條帶環,該 條帶環變成靠在該條帶供應輥與該箔條帶之該饋入 之間進入該衝壓與密封處理站中。 10. 如申請專利範圍第9項所述之方法,其中,該箔條帶 係以有時不相同的步長(step length)被饋入至該衝壓 與密封處理站中,當從該條帶之縱方向中之頂端觀看 時,這被水平地造成並相對於該些密封蓋元件之運送 方向本質上垂直地站立。 11. 如申請專利範圍第9或10項所述之方法,其中,該 些密封蓋元件之該逐步直線型運送係在一具有藉由 鋸齒形皮帶與推動器而建構之密封蓋元件接收機構 之運送裝置上被造成。 12. —種用於製造包含依據申請專利範圍第1至8項中任 一項所述之裝置之易開蓋之設備,包含一運送裝置與 一箔條帶饋入,該運送裝置係被設置以造成密封蓋元 件至多個連續的處理站之該逐步直線型運送,這些處 18 201206771 理站之其中一個係為一衝壓與密封處理站,其係被設 計以衝出箔區段且施加並熱密封該些箔區段至該些 密封蓋環部,而該箔條帶饋入係被設置以造成一箔條 帶從一條帶供應輥至該衝壓與密封處理站之逐步饋 入,其中一箔條帶環係能夠藉由該裝置而產生,該箔 條帶環變成靠在該條帶供應輥與該箱腹板之饋入之 間進入該衝出與熱密封處理站中。 13. 如申請專利範圍第12項所述之設備,其中,該箔運 送饋入係以下述的方式被配置:當從該條帶之縱方向 中之該頂端觀看時,相對於該些密封蓋元件之運送方 向,使該箔條帶能夠水平地與本質上垂直地站立被饋 入至該衝壓與密封處理站中。 14. 如申請專利範圍第12或13項所述之設備,其中,一 運送裝置係被設置,以造成該些密封蓋元件之逐步直 線型運送,該運送裝置包含密封蓋元件接收機構,該 密封蓋元件接收機構係由鋸齒形皮帶以及於其上之 載體所產生。201206771 VII. Patent Application Range: 1. A device (1) arranged and designed to construct a belt between an unfolded driven strip supply roller (2) and a driven feed device (4) a ring (7) for progressive feeding of one of the strips (6), wherein the device comprises two side walls (8, 9) and a hollow cylinder (10), the strip running between the side walls, and The hollow cylinder (10) is guided at each end thereof by one of the side walls of the device, and is freely movable between the side walls by a predetermined amount, wherein the hollow cylinder is intended to become The strip is changed in direction on the strip (6) and while the device is operating to construct a belt loop (7). 2. The device of claim 1, wherein a horizontally running transverse rod (11) that maintains both ends of the sidewalls runs through the hollow cylinder, the rod restricting the hollow cylinder The freedom of movement. 3. The device of claim 2, wherein the transverse bars (11) are vertically movable in a vertical channel (12, 12'), each channel being on the side walls ( 8, 9). 4. The device of claim 1 or 2, wherein an entry side and an exit side strip reorientation mechanism (14, 15) are disposed over the side walls. 5. The apparatus of claim 1 or 2, wherein a belt repositioning mechanism (16) is disposed on the entry side in front of the side walls, and a belt repositioning mechanism ( 15) is disposed on the outlet side above the side walls. 6. The device of claim 4, wherein the lateral limit (14, 14", 15, 15") is provided such that the strip is disposed on the strip reorienting mechanism, The boundaries can be adjusted to the width of the strip. The device of claim 1, wherein the device comprises an attachment mechanism (17, 18) for attaching to the strip supply = ^ support (3, 5) by The attachment mechanism, along the strip, can be adjusted between the device (1) and the strip supply roller (2). The device of claim 1, wherein the spoon : non-contact sensing H (19,) to determine the strip ring &amp; two distance sensor to determine the strip ring and the sensor species - use of the scope of patents i to 8 The device is provided with Sword Ice and the above-mentioned method for producing sputum "Easy-opening method" comprises the following steps: - a series of sealing plates of a plurality of parallel columns and made of metal S 17 9. 201206771, wherein the rings One step of the linear transport of the sealing cover element to the processing station is caused; - a foil strip is fed stepwise from a strip supply roll to the sealing ring rings and punched out of the foil section, and in a stamping And sealing the processing station to apply and heat seal the foil segments to the sealing cover ring portions, wherein the device The foil strip constructs a belt loop that becomes into the stamping and sealing station between the strip supply roll and the feed of the foil strip. 10. As claimed in claim 9 The method wherein the foil strip is fed into the stamping and sealing station in a step length that is sometimes different, when viewed from the top of the strip in the longitudinal direction, </ RTI> </ RTI> </ RTI> </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; Manufactured on a transport device having a sealing cover member receiving mechanism constructed by a zigzag belt and a pusher. 12. A manufacturing method as claimed in any one of claims 1 to 8 The easy-opening device of the device comprises a transport device and a foil strip feeding, the transport device being arranged to cause the stepwise linear transport of the sealing cover element to a plurality of successive processing stations, these 1810606771 station One of them is a stamping and sealing station designed to punch out the foil segments and apply and heat seal the foil segments to the sealing ring segments, and the foil strip feeding system is configured to Forming a stepwise feed of a foil strip from a strip supply roll to the stamping and sealing station, wherein a foil strip loop can be produced by the apparatus, the strip strip loop becoming dependent on the strip supply roll The apparatus of claim 12, wherein the foil transport feed is configured in the following manner: When viewed from the top end in the longitudinal direction of the strip, the foil strip is capable of standing horizontally and substantially perpendicularly to be fed to the stamping and sealing station relative to the direction in which the sealing cover elements are transported in. 14. The apparatus of claim 12, wherein a transport device is provided to cause progressive linear transport of the seal cover members, the transport device comprising a seal cover member receiving mechanism, the seal The cover member receiving mechanism is produced by a zigzag belt and a carrier thereon.
TW100112537A 2010-04-13 2011-04-12 A device for creating a strip loop, as well as method and an apparatus for fabricating pull-off lids TWI531510B (en)

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CH00531/10A CH702938A1 (en) 2010-04-13 2010-04-13 An arrangement for forming a strap loop and method and apparatus for the production of tear-open.

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TW201206771A true TW201206771A (en) 2012-02-16
TWI531510B TWI531510B (en) 2016-05-01

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SG11201807768XA (en) * 2016-03-10 2018-10-30 Agency Science Tech & Res A polysiloxane hydrophobic coating material
US10367699B2 (en) * 2016-04-25 2019-07-30 Cisco Technology, Inc. Network architecture for predictive services management in cable network environments
CN108746388A (en) * 2018-06-05 2018-11-06 深圳市舵轮自动化有限公司 For numerical control press automatic loading/unloading equipment
CN113399584B (en) * 2021-06-30 2022-04-19 广东建邦机械有限公司 Aluminum foil sterile cover making and cover feeding system for linear sterile filling machine

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CN102958625B (en) 2015-04-15
PT2558231E (en) 2015-07-21
US20130028685A1 (en) 2013-01-31
WO2011127613A1 (en) 2011-10-20
CN102958625A (en) 2013-03-06
ES2539718T3 (en) 2015-07-03
EP2558231B1 (en) 2015-06-03
TWI531510B (en) 2016-05-01
CH702938A1 (en) 2011-10-14
EP2558231A1 (en) 2013-02-20

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