Abstract:
A dispensing device for dispensing compressed fluid from a can through a valve stem of the can has a hollow tube with a channel extending through it from an entrance end to an opposing dispensing end, a connector defining a conduit therethrough that is in fluid communication with the channel of the hollow tube and that attaches to a valve stem of a can, a plug located within the channel of the hollow tube that forms a sealing configuration within the channel when pressed towards the dispensing end of the channel, and a sleeve that wraps at least partially around the hollow tube and that has a protrusion that upon activating the sleeve extends through the dispensing end of the hollow tube and prevents the plug from establishing a sealing configuration with the hollow tube.
Abstract:
An apparatus for applying a powdery or liquid substance includes a delivery device having a delivery pressurant connector and a substantially tubular applicator. The tubular applicator has an upstream portion for connecting to the delivery pressurant connector (16) and a downstream delivery orifice for delivering the powdery or liquid substance. The applicator is provided with at least one reservoir for the powdery or liquid substance and at least one valve permitting, when opened, delivery of the powdery or liquid substance by means of the pressurant via the delivery orifice.
Abstract:
A dispensing device (10) for dispensing compressed fluid from a can (100) through a valve stem (110) of the can, the dispensing device containing a hollow tube (20) defining a channel (22) there-through, a connector (40) defining a conduit (46) there-through that is in fluid communication with the channel of the hollow tube, a plug (30) located in the channel of the hollow tube that is able to move in the channel of the hollow tube and seal the hollow tube from fluid flow when pressed towards the dispensing end (24) of the hollow tube (22), a sealed port between the inside and outside of the dispensing device and a flexible and inelastic extension piece (50) attached to the plug and extending through the channel of the hollow tube and, optionally, the conduit of the connector then out from the dispensing device through the sealed port and capable of attaching to a can (100) to which the dispensing device (100) is connected.
Abstract:
A finger trigger spray cap actuator for use in conjunction with a mounting cup (11) on an aerosol container including a base (5) having an integral collar (8), a finger trigger support (22); a finger trigger (3) hingedly connected to the trigger support (22), and a finger grip (39) depending from the finger trigger (3) and extending radially beyond the outer circumference of the collar (8). The present invention also relates to a method of manufacturing the finger trigger spray cap assembly including integrally molding a base portion (5) and finger trigger portion (3) as a single unit about a living hinge (10).
Abstract:
A product dispenser includes a housing adapted to receive a refill unit having a product reservoir. A multidirectional pushbar is carried by the housing and movable in a plurality of directions to actuate the pump. The multidirectional pushbar may be carried by a collar pivotally secured around a pushbar support member in the shape of a spherical zone. Pivoting movement of the multidirectional pushbar is converted into an actuating force by a transfer mechanism, which may include a vertically movable carriage. In other embodiments, the multidirectional pushbar may include ramped surfaces and may support a carriage having rolling elements. Lateral movement of the multidirectional pushbar causes the carriage to roll up the ramped surfaces and actuate a pump to dispense a product.
Abstract:
An improved manifold for an aerosol system may include a valve interface (120) capable of flexing to fit with a valve stem of an aerosol system and form a seal and methods for making a manifold may include a gate (106) positioned to improve contact between steel defining a fluid flow path in the manifold.
Abstract:
A dispensing system has a central longitudinal axis and includes a shroud adapted to receive a container. The shroud includes a gripping portion adapted to be gripped by a hand of a user. The dispensing system also includes an actuation member adapted to rotate about a rotation point on a rotation axis toward an interior of the shroud in response to a force applied to the actuation member by the user. The actuation member is configured such that a rotation distance is at least about 6 centimeters. The rotation distance is measured in a direction parallel to the central longitudinal axis between a location where the user can apply the force to the actuation member and the rotation point of the actuation member.
Abstract:
An actuation member for a dispensing system includes a shroud that is adapted to be gripped by a hand of a user. The actuation member includes a portion of a sidewall of the shroud. The portion is integral with the sidewall of the shroud such that no visible or distinct trigger is formed as part of the dispensing system.
Abstract:
A dispensing system includes a manifold adapted to be fluidly coupled to a valve stem of a container. A shroud has a gripping portion and is adapted to fit within a user's hand. The gripping portion includes first and second cutout portions and at least one actuation member. A force applied to the gripping portion causes the at least one actuation member to contact the manifold to force the manifold downwardly.
Abstract:
A dispensing system includes a container and a shroud for holding the container. The shroud includes a gripping portion. The gripping portion includes an actuation area that is activated by a user upon exertion of an average force per finger of less than about 31 kPa.