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    • 2. 发明申请
    • APPARATUS FOR RECEIVING MAIL
    • WO2018193371A1
    • 2018-10-25
    • PCT/IB2018/052654
    • 2018-04-17
    • ARESU, Daniele
    • ARESU, Daniele
    • A47G29/12A47G29/124
    • An apparatus (1) for receiving mail is described, comprising a body (2) provided with a main inner cavity (3), configured for containing at least one mail item, a movable closing element (4), configured for allowing or preventing access to the main inner cavity (3), a through opening (5), configured for allowing the insertion of the mail item inside the main inner cavity (3), and a locking device (6) of the movable closing element (4). The locking device (6) is of the electronically actuated type and comprises a first user interface element (7) configured for allowing the input of a signal for locking and/or unlocking the locking device (6). The first user interface element (7) can be accessed from outside the apparatus (1) for receiving mail. The apparatus (1) comprises electric power supply means (25) configured for supplying the locking device (6) and the respective user interface element (7), respectively. The apparatus (1) further comprises an emergency opening equipment comprising in turn a second user interface element (26), provided with connecting means (27) with the locking device (6), and at least one unlocking device (28) configured for unlocking the locking device (6) by means of the connecting means (27), in case of malfunction of said locking device (6) and/or of the first user interface element (7).
    • 10. 发明公开
    • METHOD AND PLANT FOR MANUFACTURING CERAMIC PRODUCTS
    • EP4104990A1
    • 2022-12-21
    • EP22176124.0
    • 2022-05-30
    • G.Tech S.R.L.
    • CROCI, RobertaRIVI, Giovanni
    • B28B13/02B28B1/00B28B5/02B28B17/00
    • A method for manufacturing ceramic products (T) is described, sequentially comprising the steps of: feeding a mixture of ceramic powders, micro metering the ceramic powders by means of a metering device (14), dispensing and depositing the powders on a transport device (18), accumulating and compacting the powders by means of an accumulation and compaction device (20), pressing the compacted ceramic powders (CL). The feeding step comprises a sub-step of feeding the ceramic powders along inclined feeding directions (A1, A2, A3), so as to relieve the vertical load of the powder weight on the metering device (14). The micro metering step comprises a sub-step of removal of any powders not meeting quality criteria. The dispensing and depositing step comprises a sub-step of separating the ceramic powders along a plurality of longitudinal channels, parallel to the feeding direction (B) of the transport device (18), to avoid dispersion by falling of the ceramic powders. This separation sub-step is implemented by a transport device (18) in the form of a conveyor belt whose surface comprises longitudinal protrusions (44) interspersed by longitudinal grooves (46). The accumulation and compaction step comprises a sub-step of dynamic variation of the accumulation and compaction direction (C) with respect to a substantially vertical plane, so as to control the formation of chromatic effects in the thickness of the compacted ceramic powders. A plant (10) for manufacturing ceramic products (T) by implementing the aforementioned method is also claimed.