Abstract:
An apparatus and method is described herein for automatically labeling using labels having a fluid activatable adhesive along the back surface of the label. The apparatus includes a dispensing magazine for retaining a stack of labels, a first rotating transfer member, and an adhesive activation station aligned with the rotating transfer member. The dispensing magazine includes a dispensing end and a loading end. The first rotating transfer member is rotated in close proximity to the stack of labels and includes at least one belt having multiple openings for communication of suction to enable the belt to receive and releasably secure the front of the labels. The adhesive activation station is configured to apply to a fluid to the back of the labels to activate the adhesive such that the adhesive becomes tacky along the back surface of the label.
Abstract:
An apparatus and method is described herein for automatically labeling using labels having a fluid activatable adhesive along the back surface of such label. The apparatus has multiple pallets each being positionable with the lowermost label of a stack of one or more labels to releasably secure by suction the label against the pallet, and multiple pads each being positionable with respect to pallets to receive labels from the pallets and then releasably retain such labels until application onto containers. Fluid for activating adhesive is applied by an applicator onto labels retained upon the pad to change the fluid activatable adhesive along the label's back surface from a non-tacky state to a tacky state just prior to application of the label onto container.
Abstract:
An apparatus and method for automatically modulating vacuum applied to a vacuum cup are described herein. More particularly an automated labeling apparatus and method for applying labels onto containers using a vacuum based transport mechanism is described herein.
Abstract:
An apparatus and method for automatically modulating vacuum applied to a vacuum cup are described herein. More particularly an automated labeling apparatus and method for applying labels onto containers using a vacuum based transport mechanism is described herein.
Abstract:
An apparatus and method is described herein for applying labels to containers. The apparatus includes a guidance mechanism configured to provide a path for receiving a plurality of labels having a back surface with a fluid activatable adhesive that is non-tacky until activated, an adhesive activation station aligned with at least a portion of the guidance mechanism and configured to apply to the back surface of said labels a fluid to activate said adhesive along said back surface of said labels, and a label application station configured to apply at least one of said labels with said activated adhesive onto an exterior surface of a corresponding object located on a rotatable platform. The guidance mechanism includes at least one rotatable transfer member having a plurality of pallets. Each of the pallets includes multiple openings for communication of suction to enable at least one of the pallets to receive and releasably secure a front of the labels onto at least one pallet, and one or more rollers connected to each of the pallets by one or more tunable complaint members. The label application station includes a servo motor configured to drive a linear speed and a rotational direction of the platform.
Abstract:
An apparatus and method is described herein for automatically labeling using labels having a fluid activatable adhesive along the back surface of such label. The apparatus has multiple pallets each being positionable with the lowermost label of a stack of one or more labels to releasably secure by suction the label against the pallet, and multiple pads each being positionable with respect to pallets to receive labels from the pallets and then releasably retain such labels until application onto containers. Fluid for activating adhesive is applied by an applicator onto labels retained upon the pad to change the fluid activatable adhesive along the label's back surface from a non-tacky state to a tacky state just prior to application of the label onto container.
Abstract:
A label applicator pad is included in a labeling system to press a label against the surface of an article. According to some aspects, a label applicator pad includes a pad body having a support portion and a contact portion having a textured working surface. The support may have a compliance that is higher than a compliance of the contact portion. According to other aspects, the textured working surface may have a contact area that physically contacts a label and a void portion adjacent the contact portion, and the void portion does not contact the label. The textured working area may include contact portion having a contact area that is less than a total area of the working area.
Abstract:
An apparatus and method for automatically modulating vacuum applied to a vacuum cup are described herein. More particularly an automated labeling apparatus and method for applying labels onto containers using a vacuum based transport mechanism is described herein.
Abstract:
An apparatus and method is described herein for automatically labeling using labels having a fluid activatable adhesive along the back surface of such label. The apparatus has multiple pallets each being positionable with the lowermost label of a stack of one or more labels to releasably secure by suction the label against the pallet, and multiple pads each being positionable with respect to pallets to receive labels from the pallets and then releasably retain such labels until application onto containers. Fluid for activating adhesive is applied by an applicator onto labels retained upon the pad to change the fluid activatable adhesive along the label's back surface from a non-tacky state to a tacky state just prior to application of the label onto container.