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    • 1. 发明申请
    • AUTOMATED SYSTEM FOR CARRYING OUT CAPPING TESTS
    • WO2022264032A1
    • 2022-12-22
    • PCT/IB2022/055502
    • 2022-06-14
    • AROL S.P.A.
    • FORNO, Marco
    • B67B3/26B67B3/261
    • Automated system (1000) for carrying out capping tests, comprising: electronic processor means (500); a first container (10) for containing a plurality of randomly arranged caps (T); a second container (20) for containing a plurality of randomly arranged preforms (P); a quality control device (200) for caps (T) and preforms (P); a robotic device (100), configured for identifying, selecting and picking a cap (T) to be tested from said first container (10) and a preform (P) to be tested from said second container (20), and for subsequently placing said cap (T) and said preform (P) into corresponding seats (201) of said quality control device (200); a capping control device (300), arranged downstream of said quality control device (200) and configured for: carrying out at least one cycle of application of said cap (T) to said preform (P), so as to obtain a sample, and ascertaining one or more characteristics of said sample on the basis of mechanical and/or physical quantities detected during said application cycle, and a marking device (600), configured for affixing, to each tested sample, a marking identifying the characteristics ascertained in respect thereof, wherein said electronic processor means (500) are implemented with software means configured for determining, on the basis of said characteristics of said sample, one or more parameters optimal for carrying out application of a cap to a vessel, said cap and said vessel having the same mechanical and physical characteristics as the cap (T) and preform (P) forming said sample, respectively.
    • 9. 发明申请
    • INFRARED SMOKE DETECTOR AND ALIGNMENT METHOD THEREOF
    • WO2019175842A3
    • 2019-09-19
    • PCT/IB2019/052110
    • 2019-03-15
    • TECNOALARM S.R.L.
    • TRUCCHI, LucianoNEGRO, Giovanni
    • G08B17/103F16M11/18G02B7/00G08B29/20G08B17/113
    • A smoke detector (100) employing infrared radiations comprises a first optical emitter (5) adapted to generate a first focused beam of infrared radiations (8a) and a receiver (6) arranged so as to receive the first beam of radiations (8a, 8b), which has propagated within an environment (1) in which the detector (100) is arranged, and has been reflected by a reflecting element (7). The first emitter (5) and the receiver (6) belong to a local unit (3) which further comprises a motorized aligning system (9) controlled by a control system (10) and adapted to act onto the first emitter (5) and/or onto the receiver (6) in order to adjust the alignment between the first emitter (5), the receiver (6) and the reflecting element (7) and guarantee optimum optical reception, by the receiver (6), of the beam (8b) reflected by the reflecting element (7), whereas the reflecting element (7) belongs to a remote unit (4). The local unit (3) further comprises a first radio device (13) acting at least as transmitter for generating an aligning radio signal and sending the same towards the remote unit (4), and the remote unit (4) further comprises: a second radio device ( 14) adapted to receive the radio signal transmitted by the first radio device (13); and a second emitter (15), adapted to generate a second beam of radiations (8c) and send the same towards the receiver (6) when the second radio device (14) receives the radio signal transmitted by the first radio device (13). The control system (10) is adapted to determine the intensity of the second beam of radiations (8c) received by the receiver (6) and to activate the motorized aligning system (9) when said intensity falls below' a threshold indicative of a misalignment between the first emitter (5), the receiver (6) and the reflecting element (7). A method for mutually aligning the components of the detector (100) is also provided.