Abstract:
Microencapsulated delivery vehicles comprising an active agent are disclosed. In one embodiment, the microencapsulated delivery vehicles are heat delivery vehicles capable of generating heat upon activation. The microencapsulated heat delivery vehicles may be introduced into wet wipes such that, upon activation, the wet wipe solution is warmed resulting in a warm sensation on a user's skin. Any number of other active ingredients, such as cooling agents and biocides, can also be incorporated into a microencapsulated delivery vehicle.
Abstract:
A stretchable device is provided including a base layer; a wipe layer attached to the base layer at a seam and defining an interior space between the wipe and base layers, the interior space having an internal surface; and a pouch positioned within the interior space and attached to one of the seam and the internal surface, the pouch having a top layer, a bottom layer attached to the top layer to form a cavity therebetween, an opening in one of the top and bottom layers, and a pull tab coupled to the pouch and to one of the seam and the internal surface.
Abstract:
A method and a device for determining the system load of a processor system. The processor system transmits a process status via an interface, an active process status indicating that an active process is being executed. The active process status is transmitted to a protocol device. The protocol device records a first time interval, a first time interval corresponding to a time interval for which an active process status exists. The protocol device determines a system load existing within a monitoring period by relating the first time intervals which were recorded within this monitoring period to the duration of the monitoring period.
Abstract:
The present invention relates to a decal and method for treating a surface. The decal includes a web and an agent for treating the surface. The decal further includes a bonding material that attaches the decal to the surface. In some embodiments, the agent may be attached to the web while in other embodiments the agent may form part of the web. In one embodiment, the agent includes a composition formed of Urea HP and boric acid. In another embodiment, the agent includes a composition formed of polyhexamethylene biguanide and boric acid. In still another embodiment, the agent includes a composition formed of Urea HP and polyhexamethylene biguanide. In yet another embodiment, the agent includes a composition formed of polyhexamethylene biguanide and benzoic acid. In another embodiment, the agent includes a composition formed of polyhexamethylene biguanide and propionic acid.
Abstract:
An oral cleaning device that can fit onto a human finger is provided. The oral cleaning device, or dental wipe, is at least partially made from an elastomeric material, such as an elastomeric nonwoven, so that the wipe can more aptly fit onto a finger. Furthermore, the wipe, in some instances, can possess a barrier that is liquid-impervious, but vapor-permeable so that the finger of a user is more comfortable during cleaning. Various additives can be applied to the wipe to aid in the cleaning process.
Abstract:
A cleaning product is provided that comprises a reservoir and a cleaning pad configured to clean a surface. The reservoir contains a first reactant that is released upon the application of a certain force that ruptures the reservoir. A second reactant is applied to the cleaning pad that is placed into contact with the first reactant when the reservoir is ruptured.
Abstract:
The invention relates to a method of feeding welding wire (13) from a wire supply reel (14) to a welding torch (10), having at least one welding wire feeder (27) and an apparatus, in particular another welding wire feeder (28), for applying a feed force, in particular a main drive (29) and an auxiliary drive (30), whereby a feed force or a pressure force, acting on the welding wire (13) between the welding wire feeders (27, 28) is detected by a detection means, in particular a sensor, and compensated or limited. A deflection or lateral deflection of the welding wire (13) is detected on the basis of the feed force or pressure force on the welding wire (13) between the welding wire feeders (27, 28), in particular the main drive (29) and the auxiliary drive (30), and this deflection is used as information for regulating at least one of the welding wire feeders (27, 28).
Abstract:
The invention describes a method of positioning a welding torch (10) and a welding wire (13) at the center of a seam (32). The welding torch (10) is positioned by means of a robot arm on a predetermined or programmed position between two seam edges (34, 35), after which an alignment process is run whereby the robot arm moves the welding torch (10) in one direction until a short circuit occurs between the welding torch (10) or the welding wire (13) and a seam edge (34, 35) of the workpiece (16), and the welding torch (10) is then displaced in the opposite direction by the robot arm until another short circuit occurs between the welding torch (10) or the welding wire (13) and another side seam edge (34, 35) of the workpiece (16). A control system (4) then evaluates the displacement path in order to calculate a seam center, on which the welding torch (10) is positioned. No additional hardware components are needed in order to implement the method.
Abstract:
The invention describes a control device for a welding device (1), consisting of a digital control device (4), in particular a microprocessor control, and a welding process control unit, comprising a signal processing unit, hereinafter referred to as SP unit, and a pulse width modulator, hereinafter referred to as PWM, and at least one external component, such as a power component (3) or an input and/or output device (22), etc., for example. The welding process control is digitally operated by the welding process control unit and the configuration and parameter settings for the welding process control unit are handled by the control device (4) through software means.
Abstract:
A method and a device for operating a vehicle provide a convenient and flexible function for limiting a performance quantity, in particular the speed or the engine speed of the vehicle. At least one limiting value is predefined for the performance quantity. The at least one limiting value is predefined at an input unit as a function of at least one criterion. A check is made to determine whether the at least one criterion is satisfied. The at least one limiting value is activated if the at least one criterion is satisfied.