Abstract:
Um transportador enclausurado (10) compreendendo um envoltório (20) formado por uma pluralidade de paredes laterais (21,22) dispostas sobre ao menos uma placa inferior (23) e dotado de uma placa superior (24) disposta sobre as ditas paredes laterais (21,22), sendo a dita placa inferior (23) dotada de uma superfície interna (231) voltada para o interior do dito envoltório (20). Além disso, o transportador enclausurado (10) proposto compreende ao menos um rolo de transporte (30) e ao menos um rolo de retorno (40) montados no interior do envoltório (20), e uma correia transportadora (50) compreendendo uma porção de transporte (51) disposta sobre o dito rolo de transporte (30) e uma porção de retorno (52) disposta sobre o dito rolo de retorno (40). De acordo com a invenção proposta, a placa inferior (23) do transportador enclausurado (10) é articulada por intermédio de ao menos um conjunto de articulação (60).
Abstract:
Trough belt conveyor having a flexible conveyor belt loop (6) tensioned around end pulleys (3, 4). Trough forming guide surfaces (12) are provided under opposite side edge portions (11) of a transport section (7) of the belt (6) and are inclined upward from the transport deck (9) in a laterally outward direction transverse to the transport path (8). The transport section (7) of the belt (6) rests on the transport deck (9) and on the trough forming guide surfaces (12) so as to form a trough extending along the transport path (8). Passages (14) are provided at least in the trough forming guide surfaces (12) or in zones of the transport deck (9) along the trough forming guide surfaces (12), for allowing material caught between the conveyor belt (6) and the trough forming guide surfaces (12) to drop through the guide surfaces (12) or the transport deck (9).
Abstract:
A conveyor apparatus includes a frame (9) with upper frame segments (9e) to support and guide the upper run of a tubular belt, lower frame segments (9f) to support and guide the lower run of the tubular belt, slideable connection mechanisms (17) moveably connecting the upper frame segments (9e) to the lower frame segments (9f) and pivotal connection mechanisms (19) pivotally connecting the upper frame segments (9e) to the frame (9). Sensors are utilized to detect an operational condition of the belt indicating an undesirable alignment of the belt as the belt moves to convey material. Upon such a detected operational condition, a control mechanism automatically actuates adjustment of at least one slideable connection mechanism to adjust the position of the tubular belt in response to the detected operational condition.
Abstract:
A presente patente de invenção é aplicável a setores industriais que façam uso de sistemas de correias no transporte de minério e outros materiais, associando absorção de qualquer nível de impacto e velocidade das correias transportadoras, por ser um sistema de impacto que utiliza concomitantemente em sua montagem cavaletes com pistas de impactos e cavaletes de roletes de impacto, a serem instalados de forma alternada e com pequeno desnível entre eles, perpendiculares ao transportador de correia nos pontos de carregamento e transferência, gerando estabilidade do material transportado, sem comprometer a estrutura metálica nesses pontos, promovendo absorção do choque resultante de impacto e transportando a correia sem produzir aquecimento.
Abstract:
В трубном ленточном конвейере по всей длине конвейерной ленты со стороны ее рабочей поверхности на расстоянии друг от друга закреплены диски круговой формы. Крепление каждого диска снабжено устройством, предотвращающим отклонение или опрокидывание диска назад или вперед. После загрузки материалом и сворачивания конвейерной ленты в трубу диски плотно охватываются ею и выполняют функцию перегородок, делящих гибкую транспортирующую трубу на отдельные герметичные камеры. Обеспечивается возможность транспортирования высокоскоростными и весьма протяженными ленточными трубными конвейерами кусковых и мелкодисперсных сыпучих материалов под очень большими углами подъема/снижения вплоть до вертикальных.
Abstract:
A Tube conveyor with a device for protecting the conveyor belt of the tube conveyor against volumetric overloading, the tube conveyor containing a middle part (13), situated between a filling site (11) and a discharge site, wherein the middle part (13) the conveyor belt (15) is coiled essentially into the shape of a tube by the action of rollers (2), which are mounted on roller stands, a measuring stand (5) is arranged behind the filling site (11), the measuring stand comprising a stationary frame (53) and a swivelling frame (54) able to pivote relative to the stationary frame (53), the stationary frame (53) comprising lower rollers (22, 24) mounted beneath a horizontal transverse axis (h) of the coiled conveyor belt (15), the swiveling frame (54) comprising upper inclined rollers (23) mounted above the horizontal transverse axis (h) of the coiled conveyor belt (15), and the measuring stand (5) comprising a force measuring device (51) provided for continuous detection of the loading forces transferred from the conveyor belt (15), and provided for sending signals representing the loading forces to a control unit (6). In addition a releasing stand (4) of a tube conveyor with a fixed frame and a pivoting frame is described.
Abstract:
A Tube conveyor with a device for protecting the conveyor belt of the tube conveyor against volumetric overloading, the tube conveyor containing a middle part (13), situated between a filling site (11) and a discharge site, wherein the middle part (13) the conveyor belt (15) is coiled essentially into the shape of a tube by the action of rollers (2), which are mounted on roller stands, a measuring stand (5) is arranged behind the filling site (11), the measuring stand comprising a stationary frame (53) and a swivelling frame (54) able to pivote relative to the stationary frame (53), the stationary frame (53) comprising lower rollers (22, 24) mounted beneath a horizontal transverse axis (h) of the coiled conveyor belt (15), the swiveling frame (54) comprising upper inclined rollers (23) mounted above the horizontal transverse axis (h) of the coiled conveyor belt (15), and the measuring stand (5) comprising a force measuring device (51) provided for continuous detection of the loading forces transferred from the conveyor belt (15), and provided for sending signals representing the loading forces to a control unit (6). In addition a releasing stand (4) of a tube conveyor with a fixed frame and a pivoting frame is described.
Abstract:
Gegenstand der Erfindung ist eine Rollgurtförderanlage (100) mit einem Gurtkörper (10), mindestens einer an einem ersten Ende der Rollgurtförderanlage (100) angeordneten ersten Führungsrolle (11) zur Führung des Gurtkörpers (10), mindestens einer an einem dem ersten Ende der Rollgurtförderanlage (100) gegenüberliegenden zweiten Ende der Rollgurtförderanlage (100) angeordneten zweiten Führungsrolle (12) zur Führung des Gurtkörpers (10), und mehreren zwischen der mindestens einen ersten Führungsrolle (11) und der mindestens einen zweiten Führungsrolle (12) angeordneten Tragrollen (13, 14, 15, 6, 20, 21, 22, 23, 24, 25, 27, 28, 29, 30, 31, 32, 33, 34, 36, 37, 38), wobei die mindestens eine erste Führungsrolle (11) und/oder die mindestens eine zweite Führungsrolle (12) mittels einer Antriebseinrichtung angetrieben sind, wobei mindestens eine der mehreren Tragrollen (13, 14, 15, 16, 20, 21, 22, 23, 24, 25, 27, 28, 29, 30, 31, 32, 33, 34, 36, 37, 38) mittels mindestens einer Zusatzantriebseinrichtung antreibbar ist.
Abstract:
Method for transporting pellets of a glass fibre reinforced thermoplastic polymer composition from a loading position to an unloading position, said pellets comprising a core and a thermoplastic polymer sheath surrounding said core, wherein the core comprises glass fibres extending in a longitudinal direction of the pellets and an impregnating agent, the method comprising loading pellets onto a non-vibrating belt conveyor at said loading position, conveying the pellets by means of said non-vibrating belt conveyor to said unloading position and unloading the pellets from said non-vibrating belt conveyor at said unloading position. Further methods are claimed as regards a process for manufacturing pellets of a glass fibre reinforced thermoplastic polymer composition and a process for the manufacture at a moulding position of a moulded product from pellets of a glass fibre reinforced thermoplastic polymer composition.
Abstract:
Eine Förderanlage zum Fördern von wenigstens einem Fördergut umfasst einen endlos umlaufenden Förderer, wenigstens einen am oder im Förderer angeordneten Transponder, bevorzugt RFID-Transponder, und wenigstens eine Kommunikationseinrichtung zum drahtlosen Übertragen von Daten an den Transponder und/oder zum drahtlosen Auslesen von in dem Transponder gespeicherten Daten, wobei der Förderer ein Taschenfördergurt ist. Bevorzugt weist der Förderer eine Vielzahl von in regelmäßigen Abständen angeordneten Transpondern auf, wobei die an die einzelnen Transponder übertragenen Daten bzw. die in den einzelnen Transponder gespeicherten Daten vorzugsweise Daten sind, welche Informationen über einen definierten Abschnitt des Förderers betreffen, wie beispielsweise Informationenüber die Art und/oder Menge des Fördergutes in einem dem jeweiligen Transponder zugeordneten Abschnitt des Förderers.