Abstract:
A sheet feeding device, which is included in an image forming apparatus, includes a roller detachably attached to the image forming apparatus and configured to feed a sheet in a sheet conveying direction, a shaft configured to engage with the roller and transmit a driving force to the roller, a movable body configured to rotate in a direction of rotational axis and includes a holding portion configured to engage with the second engaging portion of the roller and rotatably hold the roller and a guide configured to guide attachment of the second engaging portion of the roller to the holding portion, and a biasing body configured to apply a biasing force and bias the movable body from a drive receiving side to a drive transmitting side.
Abstract:
A cylindrical shaft is provided of which a pair of ends are formed in a cylindrical shape by a press work so as to form a joining portion therebetween. Here, the joining portion includes: a central linear section which is provided on a center portion in an axis direction of the cylindrical shaft and is formed in a linear shape to be parallel to the axis direction of the cylindrical shaft; and a folded section which includes a plurality of intersections which are provided on both ends of the center portion and are disposed so as to be extended in a direction perpendicular to the axis direction of the cylindrical shaft, and a connection linear section which connects ends of a pair of the adjacent intersections.
Abstract:
The invention relates to a method and a device for correcting the bending of a shaft (2), an axle or another carrier resting with both ends upon a pair of bearing elements (6, 7). The carrier bends under its own weight and/or additional loading and/or due to forces applied on the bearing elements. Said bearing elements are submitted to a bending counterforce (4) produced using the carrier weight and/or additional loading and/or forces applied.
Abstract:
A roller assembly used for the image reading unit of a facsimile machine, comprises a white roller assembly made of an extruded pipe. The white roller assembly (which can be a rubber roll) is directly extruded so as to be formed to a cylindrical pipe which doesn't need to be subjected to an additional machining process. The assembly is provided with hooking grooves on the insides of both ends. Both shafts support the rotating white roller and are separately formed by molding so as to be each inserted into the respective ends on both sides of the white roller. One of the shafts is integrally formed with a gear without requiring an E-ring, and a hooking jaw is formed on both shafts so as to be fitted into the hooking groove formed inside both ends of the white roller.
Abstract:
A sheet feeding device includes a roller unit having first and second engagement units, a first engaged unit, and a pressing arm having a second engaged unit. By being rotated about the first engagement unit from a first position where the first engagement unit and the first engaged unit are engaged with each other, and the second engagement unit and the second engaged unit are not engaged with each other, the roller unit is movable to a second position at which the first engagement unit and the first engaged unit are engaged with each other, and the second engagement unit and the second engaged unit are engaged with each other. By the second engagement unit pressing the second engaged unit to move the roller unit from the first position to the second position, the second engaged unit moves to a position retracted from a second engagement unit movement locus.
Abstract:
There is provided a recording apparatus including a recording unit and a transporting mechanism to transport a recording medium. The transporting mechanism includes, a guide surface to guide an end portion, of the recording medium, in a direction intersecting with a transporting direction of the recording medium, and a pair of rollers arranged, in a direction orthogonal to the guide surface, at a position between the guide surface and a central portion of the transporting path. The pair of rollers includes, a driving roller to transport the recording medium, and a driven roller having a rotary portion facing a recording surface, of the recording medium, on which the image is recorded, and configured to rotate about a rotation axis thereof following movement of the recording medium, and a first shaft to support the rotary portion rotatably. The rotary portion is supported rockably with respect to the first shaft.
Abstract:
In a roller member where a rotary shaft is inserted through a through-hole of a roller part so that the roller part is removably mounted on the rotary shaft, the rotary shaft is provided with a positioning retention part for retaining one end of the roller part. Further, the rotary shaft is provided with an engagement recess at place on its portion outward of the other end of the roller part. An engagement protrusion is provided at a snap fit portion extended axially outward from the other end of the roller part. In a state where the snap fit portion is elastically deformed in a direction opposite to the extension direction, the engagement protrusion is engaged with the engagement recess.
Abstract:
A guide roller has a hollow roller and a fabric tube fitted under pressure over the hollow roller. The fabric tube has ends held respectively in axial ends of the hollow roller and fixed thereto by respective pressers which are pressed into the axial ends of the hollow roller.
Abstract:
A shaft assembly having desirably stable dimensions for forming a precise sheet drive nip in a sheet handling machine such as a reproduction machine. The shaft assembly includes a shaft member having an outer surface, and a sheet drive-effecting member formed on the outer surface of their shaft member. The sheet drive-effecting member consists essentially of a first dimensionally stable molded material and has desired external dimensions. Importantly, the drive-effecting member has a thermoplastic elastomeric (TPE) material layer formed over the desired external dimensions for forming the precise sheet drive nip. The TPE material consists essentially of a thermoplastic vulcanizate (TPV) including a vulcanized rubber phase and a plastic material phase.