Abstract:
A system and method for shaping and/or directing a spray stream includes electrostatically charging a spray stream by exposing fluid to be sprayed to an electrical field within a fluid sprayer to create an electrostatically charged spray stream, and then creating an electrical field between secondary electrodes externally to the fluid sprayer such that the electrostatically spray stream is shaped and/or redirected as it passes through the electrical field.
Abstract:
An air-blowing system having discharge device includes an air supply passage, and a discharge device provided for generating active ingredients and is disposed outside the air supply passage. Further, the air-blowing system having discharge device includes an introducing pipe having an one end connected to a discharge device and an other end disposed in the air supply passage, and provided for introducing the active ingredients into the air supply passage. The introducing pipe has an opening face on the other end. In the introducing pipe, the opening face and a main stream direction of an air flow, which flows through the air supply passage at a predetermined point of the opening face, are disposed substantially parallel to each other. Thus, an air-blowing system having discharge device with a simplified configuration is provided.
Abstract:
An electrostatic atomizer (100) includes: a spray electrode (1); a reference electrode (2); a current control section (24) for controlling a value of a current flowing through the reference electrode (2); and a voltage application section (22) for applying a voltage across the spray electrode (1) and the reference electrode (2), based on the value of the current controlled by the current control section (24), the reference electrode (2) having a tip whose shape has a specific curvature radius.
Abstract:
An amplifying circuit includes a feedback resistor (RA), and amplifies a voltage that is proportional to a current detected by a current detection resistor (R1) with a gain depending on the feedback resistor (RA). A current control circuit (IC) controls the current flowing through a Peltier element in such a manner that the amplified voltage (VA) output by the amplifying circuit is kept constant. The feedback resistor (RA) includes a thermistor and a fixed resistor (R2) connected to the thermistor in series.
Abstract:
Humidity control method and apparatus are disclosed. The humidity control apparatus may include a water holding tank for holding water therein, a nozzle positioned adjacent to the water holding tank for escape of the water therethrough, a first electrode connected to the nozzle, and a second electrode positioned opposite to the first electrode. The humidity control apparatus may include a first electrical power control unit for applying a voltage to the first electrode and the second electrode, and a first insulator formed on the second electrode.
Abstract:
An atomizing electrode includes: a trunk unit made to be tabular-shaped and almost rectangular-shaped for receiving water dropped from water supply means in a direction of gravitational force and delivering the water; and a top end atomizing unit which is a plate-shaped projection formed so as to be projected from a side surface of the trunk unit and formed unitedly with the trunk unit. The trunk unit of the atomizing electrode extends a long-side direction in a horizontal direction, is provided below the cooling unit with a space of a predetermined distance so as not to contact the cooling unit, and is arranged so that when the cooling unit is projected in the direction of gravitational force, a width of the cooling unit in a horizontal direction should be included in a width of a long-side direction of a top surface of the trunk unit exposed to the cooling unit.
Abstract:
A method of applying particles to a backing having a make layer on one of the backing's opposed major surfaces. The method including the steps of: supporting the particles on a feeding member having a feeding surface such that the particles settle into one or more layers on the feeding surface; the feeding surface and the backing being arranged in a non-parallel manner; and translating the particles from the feeding surface to the backing and attaching the particles to the make layer by an electrostatic force.
Abstract:
An electrostatically atomizing device includes different types of thermoelectric elements and an emitter electrode being configured to cause the electrostatically atomization. The emitter electrode is provided with a mounting member which the different types of thermoelectric elements are mounted on. The mounting member is provided with the electrical conductive path between the different types of thermoelectric elements.
Abstract:
An electrostatic spray device (100) equipped with a spray electrode (1) and a reference electrode (2) includes: a groove (8) formed on a surface of the device for collecting a substance adhered to the surface of the device; and a substance recovery section (9) for recovering the collected substance into the device from the groove (8), wherein the substance recovery section (9) is provided in the form of a trapezoidal opening, and the shorter of the parallel sides of the trapezoidal opening is located below in the direction of gravity in a state where the device is made to stand.
Abstract:
It is an object to provide an electrostatic atomizing apparatus which is simply structured, is easy to assemble, is low in cost, has clogging resistance against foreign matter, can be used for a long time, and is highly reliable, or a home electrical appliance such as a refrigerator, air conditioner, etc. including the electrostatic atomizing apparatus. A discharge electrode formed of foam metal, whereto water that attaches to a surface is supplied by capillary action, a counter electrode provided so as to be opposed to the discharge electrode, and a water supply that is provided directly above the discharge electrode via a predetermined clearance, supplying water to the discharge electrode or the electrode holding part, are included.