Abstract:
A transmission device for a printing machine having an endless transmission element, and rotating bodies around which the transmission element is wrapped, includes a tensioning device for tautening the transmission element, and an actuating device for displacing a first one of the rotating bodies parallel to the axis of rotation thereof, the tensioning device being formed by the actuating device, the actuating device having a tensioning shaft operatively connected to the first rotating body, the tensioning shaft, when rotated about a longitudinal axis thereof, causing a lateral displacement of a center-of-mass line thereof.
Abstract:
A system of mitigating force in a mechanical system, the system comprising a frame member, a first rail connected to the frame member, a second rail connected to the frame member and extending along the frame member in parallel to the first rail, an assembly movably engaging the first and second rails, and a first bracket located between the first and second rails, with at least one first bracket attachment secured to the frame member, the first bracket sharing an upper edge with a lower edge of the first rail, such that a downward force applied on the first rail is distributed to the first bracket and the frame member via the at least one first bracket attachment.
Abstract:
A paper separating device of the automatic document feeder can be assembled with a paper case loaded at least one piece of paper to provide the automatic paper separating and feeding function. The separating device includes: a paper feeding roller, which is located at one side of the paper case to carry its internal paper moving along the rolling tangent direction; a friction slice, which has one side near the paper feeding roller and locates the paper between the friction slice and the paper feeding roller; a first elastic component, which is combined at one bottom of the friction slice to provide the elastic force perpendicular to the tangent direction to force the friction slice approach the paper feeding roller; the characteristic is there is a second elastic component located at the other side of the friction slice to provide an elastic force opposite to the tangent to force the friction slice move toward the opposite tangent direction.
Abstract:
A transfer drum for conveying a sheet in a machine of the graphic arts industry. The transfer drum is developed for controlling grippers without much effort and without much wear to the components of the gearing mechanism. The transfer drum includes grippers that are suited for holding an edge of the sheet and are arranged on a gripper shaft. Levers are fixed to the ends of the shafts. A cam mechanism for opening and closing the grippers has control cams that are connected to the frame and have contact surfaces, and cam followers fixed to the levers and in contact with the contact surfaces. Opposing torques act on the ends of the gripper shaft.
Abstract:
A follower roller is brought into press contact with a driving roller by a load having a predetermined value, thereby being rotated in accordance with a rotation of the driving roller to transport the medium clamped therebetween in a first direction. The follower roller includes a shaft portion and a roller body provided so as to surround the shaft portion. The follower roller is configured such that a value of a ratio f/F is not greater than 0.03. Here, F is a force transporting the medium in the first direction which is generated by the load, and f is a resistance force generated in a second direction opposite to the first direction by a friction loss of the shaft portion of the follower roller which is generated by the load.
Abstract:
A medium transport device includes: a first transport unit that is provided in a first transport path, and nips and transports a medium by a pair of rotating bodies; a second transport unit that is provided in a second transport path different from the first transport path, and nips and transports a medium by a pair of rotating bodies; a first rotation drive unit that rotationally drives the pair of rotating bodies of the first transport unit; a second rotation drive unit that rotationally drives the pair of rotating bodies of the second transport unit; and a pressure contact force adjustment unit that is provided in at least one of the first transport unit or the second transport unit, and adjusts a pressure contact force of the pair of rotating bodies. When one of the first transport unit or the second transport unit nips and transports the medium, the pressure contact force adjustment unit adjusts the pressure contact force of the one transport unit that nips and transports the medium by utilizing a drive source of a rotation drive unit that provides no driving force for transporting the medium to the first transport unit or the second transport unit.
Abstract:
A skew correction device is configured to transport a medium through regular rotation of a resist roller and correct skew of the medium through reverse rotation or stoppage of the resist roller. The skew correction device includes the resist roller, a driven roller configured to transport the medium by nipping the medium together with the resist roller and correct skew of the medium, and a driving force transmission unit configured to transmit a driving force from a driving source to the resist roller, wherein the driving force transmission unit includes a torque limiter configured to regularly rotate the resist roller by transmitting a driving source from the driving source, and a clutch configured to perform switching between a state of regularly rotating the resist roller and a state of reversely rotating or stopping the resist roller.
Abstract:
A system of mitigating force in a mechanical system, the system comprising a frame member, a first rail connected to the frame member, a second rail connected to the frame member and extending along the frame member in parallel to the first rail, an assembly movably engaging the first and second rails, and a first bracket located between the first and second rails, with at least one first bracket attachment secured to the frame member, the first bracket sharing an upper edge with a lower edge of the first rail, such that a downward force applied on the first rail is distributed to the first bracket and the frame member via the at least one first bracket attachment.
Abstract:
A system of mitigating force in a mechanical system, the system comprising a frame member, a first rail connected to the frame member, a second rail connected to the frame member and extending along the frame member in parallel to the first rail, an assembly movably engaging the first and second rails, and a first bracket located between the first and second rails, with at least one first bracket attachment secured to the frame member, the first bracket sharing an upper edge with a lower edge of the first rail, such that a downward force applied on the first rail is distributed to the first bracket and the frame member via the at least one first bracket attachment.
Abstract:
A follower roller is brought into press contact with a driving roller by a load having a predetermined value, thereby being rotated in accordance with a rotation of the driving roller to transport the medium clamped therebetween in a first direction. The follower roller includes a shaft portion and a roller body provided so as to surround the shaft portion. The follower roller is configured such that a value of a ratio f/F is not greater than 0.03. Here, F is a force transporting the medium in the first direction which is generated by the load, and f is a resistance force generated in a second direction opposite to the first direction by a friction loss of the shaft portion of the follower roller which is generated by the load.