Abstract:
A method and apparatus for transferring a web wound (40) about a loaded core (30). The steps include providing a core shaft (20) axially extending between a core shaft first end (22) and a core shaft second end (24), providing a web wound (40) about a loaded core, the loaded core coaxially related to the core shaft, axially supporting the core shaft by a first axial support (50) operatively engaged with the core shaft first end and a second axial support (60) operatively engaged with the core shaft second end, axially moving the loaded core from the core shaft to the second axial support, and removing the first axial support and the second axial support.
Abstract:
An apparatus for forming air-laid fibrous articles. The apparatus can have a core pocket operatively related with an air-distribution manifold that can apply different air pressures to different portions of the core pocket. The core pocket can have a shield and a central opening defined by a void in the shield. The core pocket can have a central forming chamber in air-flow communication with the central opening and have a central forming chamber periphery. The core pocket can have a central foraminous forming surface in air-flow communication with the central forming chamber. The core pocket can have a pair of edge openings extending along the shield. The core pocket can have an edge forming chamber disposed about the central forming chamber periphery and in air- flow communication with the edge openings. The core pocket can have an edge foraminous forming surface in air-flow communication with the edge forming chamber.
Abstract:
An apparatus for forming air-laid fibrous articles. The apparatus can have a core pocket. The core pocket can have a shield. The core pocket can further have a central opening defined by a void in the shield. The core pocket can further have a central forming chamber in air-flow communication with the central opening and having a central forming chamber periphery. The core pocket can further have a central foraminous forming surface in air-flow communication with the central forming chamber. The core pocket can further have a pair of edge openings extending along the shield. The core pocket can further have an edge forming chamber disposed about the central forming chamber periphery and in air-flow communication with the edge openings. The core pocket can further have an edge foraminous forming surface in air-flow communication with the edge forming chamber.
Abstract:
An apparatus for forming air-laid fibrous articles. The apparatus can have a core pocket operatively related with an air-distribution manifold that can apply different air pressures to different portions of the core pocket. The core pocket can have a shield and a central opening defined by a void in the shield. The core pocket can have a central forming chamber in air-flow communication with the central opening and have a central forming chamber periphery. The core pocket can have a central foraminous forming surface in air-flow communication with the central forming chamber. The core pocket can have a pair of edge openings extending along the shield. The core pocket can have an edge forming chamber disposed about the central forming chamber periphery and in air- flow communication with the edge openings. The core pocket can have an edge foraminous forming surface in air-flow communication with the edge forming chamber.
Abstract:
A folding system (10) is provided for folding at least one wing extending from a central chassis of each of a plurality of absorbent articles formed from a continuous moving web moving in a longitudinal direction. The folding system has a wing-folding conveyor (42) and at least one elongated, folding plow (44) , which has an entrance end, an exit end and an inner edge that define a twist axis. The folding plow has a contoured surface having a configuration defined by a twist angle that increases along the twist axis from zero degrees near the entrance end to 180 degrees near the exit end. The wing-folding conveyor moves the central chassis along the inner edge of the folding plow and the wing slides against the contoured surface from the entrance end to the exit end, such that the wing folds around the central chassis near the inner edge.
Abstract:
A folding system is provided for folding at least one wing extending from a central chassis of each of a plurality of absorbent articles formed from a continuous moving web moving in a longitudinal direction. The folding system has a wing-folding conveyor and at least one elongated, folding plow, which has an entrance end, an exit end and an inner edge that define a twist axis. The folding plow has a contoured surface having a configuration defined by a twist angle that increases along the twist axis from zero degrees near the entrance end to 180 degrees near the exit end. The wing-folding conveyor moves the central chassis along the inner edge of the folding plow and the wing slides against the contoured surface from the entrance end to the exit end, such that the wing folds around the central chassis near the inner edge.
Abstract:
An apparatus for forming air-laid fibrous articles. The apparatus can have a core pocket. The core pocket can have a shield. The core pocket can further have a central opening defined by a void in the shield. The core pocket can further have a central forming chamber in air-flow communication with the central opening and having a central forming chamber periphery. The core pocket can further have a central foraminous forming surface in air-flow communication with the central forming chamber. The core pocket can further have a pair of edge openings extending along the shield. The core pocket can further have an edge forming chamber disposed about the central forming chamber periphery and in air-flow communication with the edge openings. The core pocket can further have an edge foraminous forming surface in air-flow communication with the edge forming chamber.