Abstract:
Mid-size balers and methods for compressing material into bales are disclosed. An exemplary baler (10) comprises a cylindrical baling chamber (24) configured to receive the material. The baling chamber is formed by a pair of circular, disk-shaped end plates (26) limiting opposite end faces of the baling chamber. The baling chamber is further formed by an axial motion actuator operatively associated with at least one of the end plates. The axial motion actuator including at least one piston providing an axial force to position the at least one of the end plates and react to forces of the bales (215) against the at least one of the end plates during operation. The baling chamber is further formed by a driven endless belt (12) guided by a plurality of rollers (20, 30, 32, 34, 42). The endless belt extends around the outer, circular perimeter of the end plates, forming a cylindrical periphery of the baling chamber.
Abstract:
The invention relates to a machine (1) for compacting an annular part (2) made of flexible material, said machine (1) including a swage channel (4) through which the annular part (2) is intended to pass forcibly so as to be folded, said machine (1) being characterized in that said swage channel (4) is defined by at least one swage plate (5) rotatably mounted such that, under the pressure of said annular part (2), said swage plate (5) pivots so as to close on said annular part (2) to compress the latter. The invention further relates to swage machines.
Abstract:
The plant for separate collection of compressible solids and glass refuse comprises: a central seating (1 ) housed underground, superiorly open and closable by a first lid (8) provided with a first and a second turret (4, 5) respectively for receiving and compacting compressible solid refuse and receiving glass refuse; at least two lateral seatings (1a, 1b, 1c) housed underground, superiorly closed and communicating with the central seating (1 ); means located internally of two lateral seatings and the central seating (1 ) for displacing containers (3a, 3b, 3c) from respective lateral seatings (1a, 1b, 1c) to the central seating (1 ) and vice versa; at least a compacting apparatus (6) located in the upper part of one of the lateral seatings for performing a further compacting of the compressible solid refuse collected internally of one of the containers (3a, 3b, 3c).
Abstract:
Die Erfindung betrifft einen Abfallbehälter mit Kompressionsmechanik sowie einen entsprechenden Nachrüstsatz, um herkömmliche Abfallbehälter mit einer erfindungsgemäßen Kompressionsmechanik nachzurüsten. In seinem Innern weist ein Abfallbehälter (1) an einer seiner Wände (3) eine im Bereich einer ihrer Kanten (22) drehbar gelagerte Kompressionsplatte (21) auf. Die Kompressionsplatte (21) ist auf den Abfall (40) absenkbar und kann diesen komprimieren. Sie weist eine Abweisvorrichtung auf, die verhindert, dass Abfall während des Kompressionsvorgangs auf die vom Kompressionsraum abgewandte Seite der Kompressionsplatte gerät. Der erfindungsgemäße Nachrüstsatz umfasst alle Komponenten, die einen erfindungsgemäßen Abfallbehälter von einem herkömmlichen unterscheiden.
Abstract:
Die Erfindung betrifft eine Vorrichtung (1) zum Herstellen von Pressballen (5) aus verpressbaren Pressgutstücken (50), wobei jeder fertige Pressballen (5) eine quaderartige Form mit den Kantenlängen A, B und C aufweist und wobei die Vorrichtung (1) ein Pressgehäuse (10) mit mindestens einer Presskammer (15) und mit einem darin durch einen Kraftantrieb (18, 18') in Pressrichtung (71) und zurück verfahrbaren Pressschild (17) umfasst. Die Presskammer (15) weist eine Querschnittsfläche von A x C/n auf, wobei in der Presskammer (15) in n ersten Pressschritten n Teilpressballen (5.1 - 5.n) in jeweils einer flach quaderartigen Form mit den Kantenlängen A, B und C/n erzeugbar sind. Der Presskammer (15) ist ein Stauraum (20) nachgeordnet ist, in den n Teilpressballen (5.1 - 5.n) überführbar sind. Im Stauraum (20) sind die Teilpressballen (5.1 - 5.n) zu dem quaderförmigen Pressballen (5) mit den Kantenlängen A, B und C miteinander verbindbar. Die Presskammer (15) ist vom Stauraum (20) durch eine verstellbare Trennwand (12) getrennt und eine durch die Trennwand (12) in deren Öffnungsstellung freigebbare Öffnung (12') hat mindestens die Maße A x B, sodass ein in der Presskammer (15) geformter Teilpressballen (5.1 - 5.n) durch diese Öffnung (12') hindurch in den Stauraum (20) förderbar ist.
Abstract:
A waste transfer apparatus including a surface (3) and another surface (4) so that the surfaces are at least partly adapted to compress the waste moving between them, and that a first and a second conveyor surface (1, 2) are adapted to emerge from at least one of the surfaces so that the first conveyor surface is adapted to transfer the waste on the surface for a first distance and the second conveyor surface is adapted to continue transferring the waste for a second distance after the first distance. The conveyor surfaces, which emerge by means of an eccentric rotary movement, are adapted to transfer and convey material, such as waste, alternately on the surface. The conveyor line can be vertical or horizontal and radial.
Abstract:
The present invention relates to a waste bin (1) for used paper towels or the like waste having an upper part including a rear wall (2), two side walls (4.5), and a front wall (3), which upper part include compacting means (6,7). According to the invention the compacting means (6,7) in its rest position divides the inner space of the waste bin (1) into an upper (8) and lower compartment (9) and are movable to open and re-close an opening into a lower part of the waste bin.
Abstract:
High-compression balers and methods for forming bales are disclosed. An exemplary baler (10) comprises a baling chamber (26) configured to receive the material. The baling chamber is formed by a pair of end plates (30a, 30b) defining the longitudinal ends of the baling chamber, and a driven endless belt (28) guided by a plurality of rollers (36, 37, 40, 44, 50). The endless belt defines a periphery of the baling chamber. An exemplary method comprises providing an endless belt around at least a driven roller (40) and a tilt roller pair (36, 37), receiving the material in a baling chamber (26) through a throat (24) formed between the driven roller (40) and the tilt roller pair (36, 37), increasing the pressure applied by the endless belt (28) to the material, and securing the material in the baling chamber with netting (60) to form the bales (20).
Abstract:
Baling apparatus comprising at least two first and second mutually opposed and inclined conveyors (100, 120), each conveyor having a first end and a second end, the second ends being arranged to be spaced apart to form a material entry region (300) into which material to be baled is, in use, deposited, the first ends being relatively closely adjacent to each other, and the apparatus being arranged such that material deposited into the entry region moves toward a pinch region where the two conveyors are close to one another and where the deposited material is rolled and compressed into a bale, the conveyors being driven in opposite directions to roll and compact the material between them, and the conveyors being mutually displaceable and resiliently biased towards one another.
Abstract:
A machine for rotocompressing materials, comprising a chamber (23) defined by motorized rollers (3) and to which the materials to be rotocompressed gain access, means being provided to produce skewing of the rollers (3) and hence and axial thrust on the rotocompressed material, in which said means for skewing the rollers (3) in order to discharge the chamber (23) are provided by supporting at least part of said rolers (3) at one of their ends by a ring (2) rotatable about a shaft (92) eccentric to the axis of said ring.