Abstract:
A retainer assembly (150) includes a retaining member assembly (170) and a motion assembly (190). The retaining member assembly (170) is structured to selectively retain at least one shell (3) in a transfer belt assembly belt recess (90). The retaining member assembly (170) includes a retaining member (172). The motion assembly (190) is structured to move the retaining member (172) between a first position, wherein the retaining member (172) is spaced from the transfer belt assembly transfer belt (80), and, a second position, wherein the retaining member (172) is disposed a retaining distance from the transfer belt assembly transfer belt (80).
Abstract:
A transfer belt assembly (70) includes a plurality of transfer belts (80). The transfer belt assembly (70) is structured to move any of an increased number of shells (3), a very increased number of shells (3), or an extremely increased number of shells (3) through said conversion press (10).)
Abstract:
본 발명은 비정형 곡면패널 성형장치에 관한 것으로서, 보다 상세하게는 상면에 성형할 패널(A)을 올려놓을 수 있도록 된 금형블록(20)과, 컨베이어장치(12)의 중간부 상측에 위치되어 상기 금형에 올려진 패널(A)을 하측으로 가압하는 가압수단(30)으로 구성되어짐으로써, 상기 패널(A) 전체를 가압하여 상기 패널(A) 전체가 일정한 압력으로 가압되도록 할 수 있으며, 상기 패널(A)을 성형하는데 소요되는 시간을 최소화 할 수 있고, 상기 금형블록(20)에 올려놓여진 비정형 곡면패널을 효과적으로 성형할 수 있도록 된 새로운 구조의 비정형 곡면패널 성형장치에 관한 것이다.
Abstract:
An apparatus for gripping, guiding and transporting opposite longitudinal side edges (10) of slit, deformable strip (12) for forming expanded mesh sheet. One chain (22) of each of two pairs of opposed endless chains (21, 22) has a longitudinal recess (36) adjacent a longitudinal planar side edge of the strip (12) for receiving the planar edge (10) of the strip (12) therein and the opposed chain (21) of each of said pairs has a plurality of equispaced sharp projections (32) for penetrating the longitudinal planar side edge (10) of the strip (12) whereby the said edge (10) is effectively gripped between the opposed chains (21, 22) during expansion.
Abstract:
The sheet metal brake with side loading rollers (10) includes a plurality of stations (11, 12, 13, 14, 15, 16), each having a lower beam (20) and an upper beam (22). Each of the lower and upper beams (20, 22) has a workpiece clamping element (24, 26) extending therefrom. Each station (11, 12, 13, 14, 15, 16) includes at least one bending tool carrier (42, 44) having a bending tool (46, 48). The at least one tool carrier (42, 44) is movable relative to a corresponding one of the lower and upper beams (20, 22). A plurality of supports (30, 32, 34, 36, 38, 40) selectively carry a workpiece (18) between selected ones of the plurality of stations (11, 12, 13, 14, 15, 16). Each support (30, 32, 34, 36, 38, 40) is selectively vertically adjustable, and may be a set of driven rollers or the like.
Abstract:
El método comprende generar un haz de rayos X con una intensidad I 0 conocida que inciden sobre la pieza cerámica (3) a controlar, detectar la intensidad I de los rayos X que atraviesan la pieza cerámica (3) , medir su espesor e y obtener la densidad de la baldosa a partir de. I, I 0 y e Realiza un barrido del haz de rayos X para obtener la densidad de una pluralidad de puntos de la pieza cerámica (3) y genera un mapa de su densidad . También puede obtener el mapa del espesor e de los puntos en los que obtiene la densidad. El aparato incluye medios que posibilitan la realización del procedimiento.
Abstract:
Bei einer linearen Fördervorrichtung (30) für Gegenstände (20) werden die Gegenstände durch Mitnehmer (40) aufgenommen, die an umlaufenden Zahnriemen (31, 32) angeordnet sind. Während der Förderung werden die Gegenstände gegen ein Abheben von der Fördervorrichtung gesichert, insbesondere mechanisch durch eine Abdeckleiste (50). Auf diese Weise können auch leichte Gegenstände mit hoher Kadenz im Taktbetrieb gefördert werden.