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    • 3. 发明申请
    • MACHINE AND MANUFACTURING METHOD FOR BUILDING BOARD
    • 建筑板材机械及制造方法
    • WO2014116157A1
    • 2014-07-31
    • PCT/SE2013/051409
    • 2013-11-28
    • ONEDAY WALL AB
    • LINDBERG, Peter
    • E04C2/26B30B3/02B32B37/22
    • B32B37/1284B29C63/003B30B3/02B32B37/0053B32B37/10B32B37/226B32B2317/16B32B2607/02E04F13/0866E04F13/0887E04F13/24E04F15/16E04F15/182Y10T156/17
    • A building board is finished in a first processing station (A) via laterally operating processing means (131A, 132A, 132B), wherein a first edge strip (121) is glued along a first edge side of body element (120) of the building board. In a second processing station (B) a primary surface layer (140) is glued, by vertically operating processing means (141 B, 151 B, 152BC, 148B), to cover the entire primary main side and the primary side of the first edge stripe (121). Thereafter, a vertical pressure is applied over the body element (120) and the first edge stripe (121) across a working direction (F) while the body element (120) and the first edge stripe (121) pass the second processing station (B) in such a manner that a primary side of the first edge stripe (121) is brought in level with a primary main side of the body element (120) when passing the second processing station (B).
    • 建筑板通过横向操作处理装置(131A,132A,132B)在第一处理站(A)中完成,其中第一边缘条(121)沿建筑物的主体元件(120)的第一边缘侧胶合 板。 在第二处理站(B)中,通过垂直操作处理装置(141B,151B,152BC,148B)将主表面层(140)胶合,以覆盖第一边缘的整个主要主侧和初级侧 条纹(121)。 此后,在身体元件(120)和第一边缘条纹(121)通过第二处理站(...)的同时,在主体元件(120)和第一边条(121)上跨过工作方向(F) B)使得当通过第二处理站(B)时,使第一边条(121)的初级侧与主体元件(120)的主主侧平齐。
    • 9. 发明申请
    • STAMPING SYSTEM FOR PHOTO-DIGITALIZED MONITORING
    • 用于照片数字化监控的冲压系统
    • WO2006032118A1
    • 2006-03-30
    • PCT/BR2004/000184
    • 2004-09-23
    • GLOBAL ID SOUTH AMERICA LTDAMACEDO, Milton, Flávio de
    • MACEDO, Milton, Flávio de
    • H04N7/18
    • B26F1/405B26D5/007B32B37/226B32B38/0004
    • Stamping system for photo-digitalized monitoring has as its object an innovative cutting process by stamping, included in the electromechanical field, used for cutting around thin objects embedded between two polymeric films, since it innovatively comprises a process in which the transponders (1) are transported until the plastifier­-cutter, being plastified between two polymeric pellicles, thus forming a double film pellicle (15) which follows until the locator-cutter device, which has the principle of transponder (1) localization on the double film pellicle (15) and its corresponding cuttings by stamping by means of the plastifier-­cutter, by analysing the image of the contours of the transponder (1) to be cut, when it gets close to the vision field (22) of the digital video camera (20), so to direct it until the center of the stamping cylinder body (18), which is immediately activated by means of the pneumatic piston (17), cutting the plastified transponder (1A) over the support table (23) and subsequently ejecting it by means of the ejecting device (19), both computer (21) commanded.
    • 光电数字化监控的冲压系统作为其对象,通过冲压(包括在机电领域中)进行创新的切割过程,用于切割嵌入在两个聚合物膜之间的薄物体,因为其创新地包括将应答器(1) 运送到增塑器切割器,在两个聚合物薄膜之间被塑化,从而形成双层薄膜(15),直到定位器切割装置具有应答器(1)定位在双层薄膜(15)上的原理, 以及当其靠近数字摄像机(20)的视野(22)时,通过分析待切割的应答器(1)的轮廓的图像,借助于塑化器切割器冲压其相应的切屑, ,以便将其引导直到通过气动活塞(17)立即启动的冲压缸体(18)的中心,在支撑件t上切割塑化的应答器(1A) 能够(23)并且随后通过排出装置(19)弹出它们,计算机(21)命令。
    • 10. 发明申请
    • CONTINUOUS LAMINATION OF RFID BANDS AND INLETS
    • RFID银行和入口连续层压
    • WO2004086285A2
    • 2004-10-07
    • PCT/US2004/006306
    • 2004-03-02
    • PRECISION DYNAMICS CORPORATION
    • CHAOUI, Sam, M.
    • G06K
    • B32B37/226B31D1/026B31D1/028B32B2305/347B32B2519/02G06K19/07718Y10T156/1084
    • A process for continuous lamination of radio frequency identification (RFID) bracelets includes placing at least one RFID inlet between two substrates made of plastic sheets or rolls of web. A continuous source of pre-fabricated RFID inlets is provided which can include target marks at specific locations for timing and indexing purposes. The RFID inlets are dispensed and then sealed between the substrates. This forms a continuous strip which is then separated into a plurality of separate bracelets of predetermined length and shape. Separation of the continuous strip into a plurality of separate bracelets may be accomplished by die-cutting the continuous strip. Alternatively, instead of dispensing individual RFID inlets between two substrates, a substrate containing RFID inlets may be sealed between the two substrates.
    • 一种用于射频识别(RFID)手镯的连续层压的方法包括在由塑料片材或纤维网形成的两个基底之间放置至少一个RFID入口。 提供了连续的预制RFID入口源,其可以在特定位置包括用于定时和索引目的的目标标记。 RFID入口被分配,然后密封在基板之间。 这形成连续条带,然后将其分离成预定长度和形状的多个单独的手镯。 将连续条带分离成多个单独的手镯可以通过对连续条进行模切来实现。 或者,代替在两个基板之间分配单独的RFID入口,可以在两个基板之间密封包含RFID入口的基板。