Abstract:
An unwinding device (10) is described for unwinding rolls (12, 14) of one-ply or two-ply web- like material (24). The device (10) comprises: a support group for sustaining a first roll (12) and a second roll (14), the support group being composed of a support pin (16) for each roll (12, 14), the support pins (16) being bound on two opposite sides of a vertical column (18) made integral with the base (20) of the unwinding device (10); an unwinding mechanism (22) for each roll (12, 14), adapted to unwind the web- like material (24) from the rolls (12, 14); a joining mechanism (26), adapted to join specific web-like material portions (24) together that respectively come from the first roll (12) and from the second roll (14). One of the support pins (16) is bound to the vertical column (18) at a height (Hi), measured with respect to the base (20), that is different from the height (H2) of the second support pin (16) bound on the opposite side of the vertical column (18), so as to limit the thickness of the vertical column (18) along with the width of the unwinding device (10) as much as possible.
Abstract:
An inkjet recording device is disclosed that is capable of precisely defining the gap between a conveyance belt and a recording head and maintaining good flatness of the conveyance belt and a recording medium being conveyed. A guide unit is arranged to push a portion of the conveyance belt from the inner side to approach the recording unit. The guide unit has a number of projecting ribs formed on the surface of the guide unit in contact with the conveyance belt and arranged to be perpendicular to the rolling direction of the conveyance belt.
Abstract:
An unwinding device (10) is described for unwinding rolls (12, 14) of one-ply or two-ply web- like material (24). The device (10) comprises: a support group for sustaining a first roll (12) and a second roll (14), the support group being composed of a support pin (16) for each roll (12, 14), the support pins (16) being bound on two opposite sides of a vertical column (18) made integral with the base (20) of the unwinding device (10); an unwinding mechanism (22) for each roll (12, 14), adapted to unwind the web- like material (24) from the rolls (12, 14); a joining mechanism (26), adapted to join specific web-like material portions (24) together that respectively come from the first roll (12) and from the second roll (14). One of the support pins (16) is bound to the vertical column (18) at a height (Hi), measured with respect to the base (20), that is different from the height (H2) of the second support pin (16) bound on the opposite side of the vertical column (18), so as to limit the thickness of the vertical column (18) along with the width of the unwinding device (10) as much as possible.
Abstract:
A method of receiving and paying out bills including the steps of providing a bill passage in about the central portion of an elongate casing that extends along one side of a bill receiving chamber having a bill payback outlet; providing a bill conveying apparatus for conveying a bill delivered to said bill passage to a predetermined position for receiving it; utilizing a bill pushing member being capable of moving in a reciprocating motion across said passage to bill receiving chamber when the bill located at said predetermined position in said passage to be received, effects receiving of the bill by pushing it with a surface of said bill pushing member across from said passage; disengaging the rearmost bill from said bill receiving chamber by operating bill extracting apparatus in the reverse direction by a predetermined amount while said bill pushing member is activated causing it to extract away and pull out from a rearmost bill leading edge retainer which holds the remaining bills in position; and, operating the extracting apparatus in the forward direction to transport said extracted rearmost bill through said bill payback outlet to said bill conveying apparatus which is operated in reverse to direct it to the customer.
Abstract:
Disclosed are methods and systems for processing a web. The web (402) has a first surface, a second surface opposite the first surface, and includes a magnetic material. An example system includes a processing bed (202) configured to support the web while the first surface of the web undergoes one or more processing steps. The system also includes magnets (300) positioned relative to the processing bed so as to exert a magnetic force on the web that pulls the center of the web (403) toward the processing bed. The system further includes a conveyor belt (404) configured to move the web over the processing bed (202). The conveyor belt (404) has a first contact surface and a second contact surface opposite the first contact surface. The first contact surface is configured to contact the second surface of the web, and the second contact surface is configured to contact the processing bed.
Abstract:
A winder for winding a web to produce a rolled product is provided. The winder includes a web transport apparatus that is used for conveying the web. Also included in one exemplary embodiment is a plurality of independent winding modules. The winding modules are independently positioned to independently engage the web as the web is conveyed by the web transport apparatus. The winding modules may be configured to wind the web to form a rolled product by center winding, surface winding, and combinations of center and surface winding. The winding modules are structurally and operationally independent of one another where if one module is disabled, another may still operate to produce the rolled product without shutting down the winder.
Abstract:
A winder for winding a web to produce a rolled product is provided. The winder includes a web transport apparatus that is used for conveying the web. Also included in one exemplary embodiment is a plurality of independent winding modules. The winding modules are independently positioned to independently engage the web as the web is conveyed by the web transport apparatus. The winding modules may be configured to wind the web to form a rolled product by center winding, surface winding, and combinations of center and surface winding. The winding modules are structurally and operationally independent of one another where if one module is disabled, another may still operate to produce the rolled product without shutting down the winder.
Abstract:
A method of receiving and paying out bills including the steps of providing a bill passage in about the central portion of an elongate casing that extends along one side of a bill receiving chamber having a bill payback: outlet; providing a bill conveying apparatus for conveying a bill delivered to said bill passage to a predetermined position for receiving it; utilizing a bill pushing member being capable of moving in a reciprocating motion across said passage to bill receiving chamber when the bill located at said predetermined position in said passage to be received, effects receiving of the bill by pushing it with a surface of said bill pushing member across from said passage; disengaging the rearmost bill from said bill receiving chamber by operating bill extracting apparatus in the reverse direction by a predetermined amount while said bill pushing member is activated causing it to extract away and pull out from a rearmost bill leading edge retainer which holds the remaining bills in position; and, operating the extracting apparatus in the forward direction to transport said extracted rearmost bill through said bill payback outlet to said bill conveying apparatus which is operated in reverse to direct it to the customer.
Abstract:
An ink-jet recording method for performing recording on a recording medium by attaching ink thereto with the recording medium adhering to a conveyor belt because of electrostatic attraction thereto is disclosed. In this method, the electrostatic attraction is caused by a charging unit that applies AC bias to the conveyor belt so that positive and negative charges are provided on the conveyor belt so as to alternate with each other in a direction in which the conveyor belt moves. The surface of the recording medium which surface comes into contact with the conveyor belt has surface resistivity that falls within a range of 1 to 9 .