Patent classifications
B67D7/0288
Storage tank with fluid transfer
A stackable tank that allows fluids to flow from one tank to a succeeding tank through an interconnect coupler having a check-valve allowing the user to safely and conveniently increase the uninterrupted run-time of a generator or other fuel-driven device. For non-fuel applications, the invention creates increased capacity of the desired fluid without the need for multiple refilling or changing of the tanks. The instant invention also minimizes the horizontal footprint for storing multiple tanks and containers.
Fluid Transfer Connector
A fluid transfer connector or adapter for coupling to a container or pharmacy bottle for facilitating the transfer of fluid or medicine from the bottle to a syringe, or from the syringe to the bottle. Optionally, an additional connector can be provided for coupling the fluid transfer connector to the syringe.
Fluid interface to receive removable container
A fluidic interconnect includes a first interface including a liquid port, a gas port, and a cradle; a second interface including a liquid port, a gas port, and a swing bar to engage the cradle, a weight of a container attached to one of the first or second interfaces to drive the liquid port of the first interface into connection with the liquid port of the second interface and the gas port of the first interface into connection with the gas port of the second interface.
SYSTEM AND METHOD FOR DISTRIBUTING SCENTED, COLOR-CODED, OR COLOR SCENTED DILUTION RATIOS OF DISINFECTANTS, DISINFECTANT BASED CLEANING CONCENTRATES AND READY TO USE FOAMING AND NON FOAMING HARD SURFACE, SOFT SURFACE AND SKIN CLEANING CONCENTRATES THAT ARE DILUTED INTO READY TO USE FORM PRODUCTS
A system and method for distributing color-coded dilution ratios of cleaning concentrates at different dilution ratios and flow rates. The system mixes a concentrated cleaning composition with different quantities of water to produce diluted concentrates. A plurality of separate dyes or scented dyes are added to the diluted concentrates, with each color of dye correlating to a unique diluted concentrate. This provides a visual indication of the dilution ratio of the diluted concentrate. A plurality of metering devices selectively dispense the dyed diluted concentrates at different dilution ratios and at multiple flow rates. The metering devices are labeled with identification markings, indicating dilution ratios and flow rates. The dilution ratio and the flow rate are selected based on the type of cleaning that is required, and the type of dispensing means used for cleaning. A plurality of lines carry the concentrated cleaning composition, water, dyes, and dyed diluted concentrate.
Retaining frame for a multicoupling for filling and/or draining a chemical plant container
A holding stand for a multicoupling for filling and/or emptying a chemical plant container is provided, having a mounting device for the essentially stationary fastening of the holding stand and at least one compensating device, couplable indirectly or directly to the multicoupling, for varying a position of the multicoupling in relation to the mounting device in the vertical direction and/or in the horizontal direction and/or for varying an angular position of the multicoupling in relation to the mounting device about a vertical and/or horizontal axis of rotation. It thereby becomes possible for a multicoupling to be coupled simply.
PROBE
The disclosure provides methods and probes used to dispense flowable materials from a packaged source, such as a bag in box container. The probes are adapted to engage with one or more dispensing components, for example, spouts, faucets, caps, bags, boxes, or other dispensing components. The disclosure also provides methods of using the probe, including connecting the probe to one or more dispensing components, for example flip caps, and methods of dispensing the packaged flowable material.
Handling system for a filling system for filling containers and circuits of vehicles with different operating materials on assembly lines of the automobile industry
A handling system for a filling system for filling containers and circuits of vehicles with different operating materials on assembly lines of the automobile industry is disclosed. The filling system has a base unit, a controller, a console, and an adapter. The adapter is operatively connected to a hose packet for supplying the respective operating materials which is movably supported on the console. The handling system handles the hose packets which are operated with a medium other than a pneumatic system. The drive of the movable hose packets and the drive system of a lifting unit equipped with a tray for the adapter are each designed as an electromotive drive. The disclosure further provides the sequences of movement of the adapter and lifting unit.
ASSEMBLY FOR AN UREA TANK SYSTEM
Systems are provided for an assembly for a urea tank system. In one example, coaxial tubes including an inner tube and an outer tube are used to separate a urea passage from a gas passage. An angled tube, which extends from a urea tank to a portion of the outer tube downstream of a filler head relative to a direction of urea flow directs gases from the urea tank to the gas passage. This decreases a packaging size of the urea tank system.
Fluid transfer connector
A fluid transfer connector or adapter for coupling to a container or pharmacy bottle for facilitating the transfer of fluid or medicine from the bottle to a syringe, or from the syringe to the bottle. Optionally, an additional connector can be provided for coupling the fluid transfer connector to the syringe.
CAP ROTATION DEVICE
A cap rotation device includes a cap rotator, a liquid transferring device and an optical detecting device. The liquid transferring device is disposed near the cap rotator, and the optical detecting device is disposed between the cap rotator and the liquid transferring device. The optical detecting device is used to detect a position of a sealing cap of a chemical drum to guide the cap rotator aligning with the sealing cap. Therefore, the sealing cap is opened by the cap rotator, and then the chemical liquid is transferred by the liquid transferring device.