Abstract:
A method for production of hard gelatin capsules (C) having a lid (3) and body (2) containing a quantity (1) of pharmaceutical material including feeding empty capsules along a handling line (L); separating the capsule bodies (2) from the lids (3) to form two separate rows of capsule bodies (2) and lids (3); feeding and dosing the quantities (1) of pharmaceutical material to be filled into the capsule bodies (2); and closing the capsules (C) by placing a lid (3) over each respective body (2). A mechanism (9) for detecting and volumetrically checking the quantity (1) of pharmaceutical material filled into each capsule body (2) is provided and includes a transducer (5) measuring the volume of the quantities (1) before they are filled into the capsule bodies (2).
Abstract:
A granulator device (101) for the treatment of powdered products comprises a closed container (102) forming a chamber (103) for treatment of the products, filter elements (104, 105) projecting into the treatment chamber (103), the filter elements comprising a multi-layer filtering wall (105) through which a fluid current can pass, and powder removing parts (106; 107, 108, 109, 110) designed to diffuse at least one service fluid directed towards at least the filtering wall (105); the powder removing parts (106; 107, 108, 109, 110) having at least first diffuser nozzles (107) and at least second diffuser nozzles (108) to diffuse the service fluid so as to free the filtering wall (105) of the powders trapped in it; there also being parts (140, 142, 147) for supporting and driving the filter elements (104, 105) which can change the angle of the filter elements (104, 105) from a first operating position, in which at least the first nozzles (107) act on the filtering wall (105), to a second operating position in which the filter elements (104) are set at an angle to the first operating position to allow the second diffuser nozzles (108) to operate on the filtering wall (105).
Abstract:
A capsule filling machine (100) for the production of hard gelatin capsules (C) of the type with lid (3) and body (2) containing a quantity (1) of pharmaceutical material comprises a rotary turret or carousel (15) which defines at least one capsule (C) handling line (L) and on which the following are positioned, one after the other: at least one station (6) for feeding empty capsules (C); at least one opening station (20) where the capsule bodies (2) are separated from the lids (3) to form two separate rows of capsule bodies (2) and lids (3); at least one station (7) for feeding and dosing the quantities (1) of pharmaceutical material to be filled into the capsule bodies (2); and at least one station (8) for closing the capsules (C) by placing a lid (3) over each respective body (2); the machine (100) also comprises means (9) for detecting and volumetrically checking the quantity (1) of pharmaceutical material filled into each capsule body (2), the detecting and checking means (9) comprise transducer means (5) for measuring the volume of said quantities (1) before they are filled into the capsule bodies (2).
Abstract:
A TANK FOR WATER CLOSET APPARATUS HAS FIRST AND SECOND CLOSED CHAMBERS COMMUNICATING VIA AN OPENING WHICH IS SMALLER IN SIZE THAN A DRAIN APERTURE FROM THE FIRST CHAMBER, THE SECOND CHAMBER BEING CONNECTED TO A SUPPLY CIRCUIT SUCH THAT WHEN THE DRAIN APERTURE IS CLOSED THE CHAMBERS ARE FILLED WITH WATER AND A COMPRESSED AIR CUSHION IS FORMED IN EACH CHAMBER WHEREAS WHEN THE DRAIN APERTURE IS OPENED WATER IS DISCHARGED THERETHROUGH RAPIDLY AND INTENSELY IN A FIRST DRAIN STAGE WHEREAFTER THE WATER FROM THE SECOND CHAMBER IS MORE SLOWLY AND GRADUALLY DISCHARGED DURING A SECOND DRAIN STAGE.
THE CHAMBERS ARE PREFERABLY FORMED BY TWO MOLDED SECTIONS CONNECTED TOGETHER WITH A GASKET INTERPOSED THEREBETWEEN.
Abstract:
A total weight checking system and method for capsules filled with product includes a filling machine for filling the capsules according to a defined filling order, a weighing apparatus for weighing all the capsules and a transferring arrangement transferring for the capsules from the filling machine to the weighing apparatus. The transferring arrangement includes a removing arrangement and a conveying arrangement, the removing arrangement being suitable for removing the capsules from the filling machine and for transferring the capsules to the conveying arrangement according to the defined filling order, the conveying arrangement being suitable for housing and accumulating a plurality of capsules according to the defined filling order and transferring the capsules to the weighing apparatus according to the defined filling order.
Abstract:
Described is a rotary pan (1) of the type comprising a central hollow cylindrical body (3) with end portions (4, 4′) shaped substantially like truncated cones, and mixing/deflecting means (7) attached to at least one inside surface of the pan (1) itself; the peripheral inside cylindrical surface (5) of the hollow body (3) comprises an extended zone (A) defined by a uniform distribution of through holes (6) and at least one zone (B) within the zone (A) forming an area by which the mixing/deflecting means (7) are attached or fixed to the peripheral surface (5).
Abstract:
A capsule filling machine (10) for producing hard gelatin capsules (C) of the type with lid and body (3, 4) containing particles (12) of pharmaceutical material, in particular microtablets (12) or pellets comprises a rotary carousel (2) mounting a plurality of slide units (5) for holding and handling the capsules (C) in order to open and then close the capsules (C) by first separating and then pairing the capsule lids (3) and bodies (4); and means (11) for feeding the particles (12) to the carousel (2) for filling doses of the particles (12) into the respective capsule bodies (4); the feed means (11) comprise at least one hopper (13) containing a mass of these particles (12), and roller means (14) partly immersed in said mass of particles (12) in the hopper (13); the roller means (14) having a plurality of suction recesses (15) for accommodating and retaining a predetermined number of the particles (12) drawn from the hopper (13) and then releasing the particles (12) into a series of hollow conduits (16) mounted on the carousel (2).
Abstract:
A granulator device (1) for the treatment of powdered material, in particular pharmaceutical powdered material, comprises a substantially cylindrical container (2), in which there is a chamber (4) for treatment of the powdered material using a fluid flow fed into the chamber (4); filtering means (5) for filtering the inside of the chamber (4), the filtering means (5) being located in the chamber (4) and comprising at least one filter (5) with a cylindrical metal mesh filtering wall (6); and means (P) for cleaning the filtering means (5) which can be activated during maintenance operations, the cleaning means comprising at least one element (7) rotating about each filter (5) and supporting diffuser means (8) designed to diffuse a service fluid on the cylindrical wall (6) in order to eliminate any impurities trapped in the filter (5) wall (6); the cleaning means (P) also comprise means (9) for temporarily opening at least one portion (10) of the filter (5) to allow the service fluid to flow out of the filter (5) together with the impurities.
Abstract:
Described is a rotary pan (1) of the type comprising a central hollow cylindrical body (3) with end portions (4, 4′) shaped substantially like truncated cones, and mixing/deflecting means (7) attached to at least one inside surface of the pan (1) itself; the peripheral inside cylindrical surface (5) of the hollow body (3) comprises an extended zone (A) defined by a uniform distribution of through holes (6) and at least one zone (B) within the zone (A) forming an area by which the mixing/deflecting means (7) are attached or fixed to the peripheral surface (5).
Abstract:
A granulator device (101) for the treatment of powdered products comprises a closed container (102) forming a chamber (103) for treatment of the products, filter elements (104, 105) projecting into the treatment chamber (103), the filter elements comprising a multi-layer filtering wall (105) through which a fluid current can pass, and powder removing parts (106; 107, 108, 109, 110) designed to diffuse at least one service fluid directed towards at least the filtering wall (105); the powder removing parts (106; 107, 108, 109, 110) having at least first diffuser nozzles (107) and at least second diffuser nozzles (108) to diffuse the service fluid so as to free the filtering wall (105) of the powders trapped in it; there also being parts (140, 142, 147) for supporting and driving the filter elements (104, 105) which can change the angle of the filter elements (104, 105) from a first operating position, in which at least the first nozzles (107) act on the filtering wall (105), to a second operating position in which the filter elements (104) are set at an angle to the first operating position to allow the second diffuser nozzles (108) to operate on the filtering wall (105).