Abstract:
A fluid dispenser comprises a dispenser valve defining a fluid dispenser passage, and a container comprising a deformable inner pouch and a deformable outer shell that co-operate with each other to define an intermediate gap therebetween. The deformable outer shell includes a collar in engagement with the dispenser valve, and an annular flange that extends radially inwards inside the collar in such a manner as to define an edge that defines a central opening. The deformable inner pouch includes a neck that is engaged in the central opening in engagement with the edge of the annular flange and with the dispenser valve in fluid communication with the dispenser passage. The dispenser valve comprises an inlet sleeve in engagement with the neck of the deformable inner pouch and a fastener ring that in engagement with the collar of the deformable outer shell.
Abstract:
A device for dispensing liquids in the form of foam. The device including a container and a foam engine having a gas inlet, a liquid inlet and a foam discharge. The device also including a vent comprising a switchable valve between the environment and the interior of the device container.
Abstract:
A system and method for dispensing sprayable material such as paint and other liquefied products. The system includes a dispenser such as a marking stick or other commercially available dispenser. The dispenser is configured to accept a container housed inside a cartridge and filled with sprayable material. The sprayable material is sprayed through a valve and spray tip at one end of the cartridge. An electrically powered motor assembly is removably coupled to the cartridge. The motor is used to power a pump that is incorporated in the cartridge to draw the sprayable material from the container. The material is pumped from the container and delivered through a tube to a spray head. The pressure generated by the pump inside the container and the tube are sufficient to spray the product through the valve and spray tip when valve is opened.
Abstract:
Systems, methods, and processes are disclosed for the manufacture, filling and dispensing of flowable contents. The dispenser system generally includes a dispenser bottle, a dispensing cap, a pre-filled container, and an optional inversion tube wherein the pre-filled container contains flowable contents therein for dispensing when a dispenser bottle is squeezed, pumped or sprayed. A user grasps the bottle, squeezes it to increase internal pressure, and forces out through the dispensing cap the flowable contents. Upon release, the system allows air to enter and replace the forced-out flowable contents and neutralize the pressure in the space between the container and the bottle. An inline process of manufacturing and filling the containers is provided.
Abstract:
Bellow actuated pump devices for dispensing a product from a container may include a bellow and a base or a bellow, a base, and a valve wherein actuation of the bellow dispenses a product and the de-actuation of the bellow refills the pump for the next actuation.
Abstract:
A sprayer includes a flexible ball for receiving perfume or powder therein and an outer part is mounted to the flexible ball. A nozzle unit is engaged with the opening of the flexible ball and the top hole of the outer part. The nozzle unit includes a body which has a passage defined therethrough. A connector has a groove defined in the first end thereof which is inserted into the opening of the flexible ball and the inner periphery of the opening of the flexible ball is engaged with the groove. The second end of the connector extends beyond the opening of the flexible ball and is threadedly connected to the body. A mounting part is mounted to the body and the second end of the connector. The mounting part has a flange which presses the periphery of the top opening of the outer part against the connector.
Abstract:
A liquid supply assembly is disclosed. The liquid supply assembly may be used in combination with a spraying device or spray gun to apply liquid to a substrate. The liquid supply assembly is particularly suitable for use in systems utilizing pressurized liquid containers.
Abstract:
An integral miniaturized nebulizer for an elastically deformable bottle (1), provided with a rotatable closing cap (5), with discharge orifice, and with a suction tube (16) immersed in the liquid to be nebulized, includes a head (3) in a single piece with a body (4) connectable to an elastically deformable bottle (1). The head (3) internally has an elbow conduit (13) for the liquid to be sprayed, extending in a longitudinal segment (14) able to engage the suction tube (16), and in a transverse segment (15) able to end in the discharge orifice of the rotatable closing cap (5) when the cap (5) is in the nebulization position. The transverse segment (15) is coaxial inside a conduit (18) of the air inside the bottle (1) and in communication therewith via a plurality of radial channels (25) drilled in the terminal end of the same transverse segment (15).
Abstract:
A sprayer with a changeable volume includes a container, a pump, a first pipe, a second pipe and a nozzle. The container includes an upper wall and a lower wall. The upper wall can be compressed while not containing water and extensible for containing water. The lower wall is connected to the upper wall. The pump is positioned in a space defined in the lower wall. The first pipe is directed to the pump from a space defined in the upper wall. The second pipe is directed to the exterior of the container from the pump. The nozzle is connected to the second pipe.
Abstract:
The invention relates to a fluid product dispenser having a reservoir (1) containing a fluid product and a gas, and having an opening (15), a bottom (13), and an actuation wall (11) that is movable to reduce the volume of the reservoir. The dispenser also has a dispensing orifice (22), a plunger tube (4) that extends into the reservoir, and a porous material part (3) that absorbs fluid product by capillary action, and which is placed between the plunger tube and the dispensing orifice (22). The porous material part has a discharge end (31) located in the immediate vicinity of the dispensing orifice (22).