Patent classifications
B05B11/0002
ATOMIZING DEVICE
The present disclosure provides an atomizing device comprising an atomizing component, a controlling component, and a battery component. The atomizing component comprises an induction coil and an atomizing piece. The controlling component is disposed on one side of the atomizing component, wherein the controlling component comprises a substrate, a first elastic connecting piece, a second elastic connecting piece, and a first conductive protrusion. The substrate has a first surface and a second surface. The first elastic connecting piece is disposed on the first surface, wherein the first elastic connecting piece is electrically connected to the atomizing piece. The second elastic connecting piece is disposed on the first surface, wherein the second elastic connecting piece is electrically connected to the induction coil. The first conductive protrusion is disposed on the second surface. The battery component is disposed on one side of the controlling component away from the atomizing component.
Aerosol delivery device with sliding and axially rotating locking mechanism
The present disclosure is directed to an aerosol delivery device and a holder for use with a removable substrate cartridge. In one implementation, the holder includes a first body portion and a second body portion, the first body portion defining a main body and a guide post that defines a receiving chamber extending at least a portion therethrough. The second body portion is configured to rotate about and slide along at least a portion of the guide post to and from a use position, wherein the second body portion is proximate the main body of the first body portion and the substrate cartridge is retained in the receiving chamber, and an open position, wherein the second body portion is rotated relative to and extended away from the main body of the first body portion such that the substrate cartridge can be inserted into or removed from the receiving chamber.
Compact hot air gun
A compact hot air gun comprising a body, an air blowing pump, an air outlet tube, and a heating coil. The air blowing pump is disposed in the body. The air outlet tube has an end connected to the air blowing pump and another end extending beyond the body. The heating coil is disposed in the another end of the air outlet tube opposite to the air blowing pump. The compact hot air gun can generate an ignition effect by using hot air through the above structure.
Dispenser for applying liquid, in particular for applying a pharmaceutical liquid, and set comprising such a dispenser
A dispenser for applying liquid, having a housing with an applicator opening and a liquid reservoir. The dispenser has a ventilation duct by which an ambient atmosphere is connected to the liquid reservoir so that, after the application of liquid, an inflow of air from the atmosphere is permitted into the liquid reservoir. The dispenser is provided with a detection installation which for detecting an application procedure detects air flowing in through the ventilation duct. The dispenser has a protective cap covering the applicator opening on the housing. The dispenser in the ventilation duct has a switch valve operable by activating a push-button on the external side of the housing. The protective cap acts on the push-button when placed on the housing or when the protective cap is being placed thereon to open the switch valve.
System and method for vaporizing cartridge system with diffuser
Provided is a system and method for a vaporizer cartridge system wherein the cartridge provides the diffuser. More specifically, an embodiment of the system includes a vaporizing device providing a heating element proximate to a removable cartridge system receiving port, and a dispenser trigger structured and arranged to engage the removable cartridge to dispense a predetermined amount of a liquid concentrate from within the removable cartridge. The system further includes a cartridge with diffuser including: a housing; a reservoir of liquid concentrate; a diffuser element; a metered dispenser structured and arranged to dispense from the reservoir into the diffuser element a predetermined amount of liquid concentrate. An associated method of use is also provided.
NOVEL PORTABLE MOSQUITO DISPELLER
A novel portable mosquito dispeller comprises a shell, wherein a battery case is fixedly mounted in the shell, a battery is received in the battery case, a lower portion of the battery case is flat, a base is screwed at a bottom of the shell such that receiving cavities for receiving mosquito-repellent mats are defined by the battery case, the shell and the base, first studs and second studs are disposed on an upper portion of the battery case, a circuit board is fixedly connected to the first studs with screws and is provided with atmosphere lights, an indicator light and a switch button, a top cover is fixed to the second studs with screws to mount a PTC heating element/heating film bracket between the circuit board and the top cover, and a PTC heating element/heating film electrically connected to the circuit board is disposed in the PTC heating element/heating film bracket. The mosquito dispeller is compact in structure, easy to assemble and low in production cost, uses the battery as a power supply, adopts environmentally-friendly PTC to convert electric energy into heat energy to heat mosquito-repellent mats to be volatilized to dispel mosquitoes, and is convenient to carry, exquisite in appearance, and capable of meeting diversified market requirements.
Cleansing bar reusage system
The present invention relates to an upcycling system for recycling fragments of solid personal care products. The system includes a dispensing device and a method that allows an individual to turn personal care bar fragments into a liquid cleansing solution that can then be dispensed from the device. The dispenser has at least one suction cup and a removable hook to allow it to easily be stored within a shower. Further, the dispenser has a spout and a push-button assembly that controls the flow of liquid soap from the spout. The method allows a user to place a personal cleansing bar fragment into the device and add a warm liquid to turn the fragment into a liquid cleansing solution that can then be poured from the dispenser.
Aerosol-generating component for use in an aerosol-generating article
An aerosol-generating component for an aerosol-generating article is provided, the aerosol-generating component including: a combustible heat source; an aerosol-forming substrate; and a heat-transfer element disposed between the combustible heat source and the aerosol-forming substrate, the heat-transfer element including a cup-shaped receptacle defining a cavity, and the aerosol-forming substrate forms a coating on at least a portion of an inner surface of the cup-shaped receptacle. An aerosol-generating article including the aerosol-generating component, and a method of manufacturing the aerosol-generating component are also provided.
Work machine
A work machine in which an engine and a reserving unit configured to reserve lubricating oil to be supplied to the engine are connected by a lubricating oil channel, and the lubricating oil is circulated, wherein at least a part of the lubricating oil channel and at least a part of a working fluid channel for a working fluid to be supplied to a work unit of the work machine are arranged such that heat can be exchanged between the lubricating oil and the working fluid.
Beauty Device with Hydrogen Sterilization Water Spray and Temperature Stimulation Function
The beauty device according to the present invention comprises by including a mist processing part generating sterilization water by electrolyzing water in a water tank and spraying the generated sterilization water in the form of mists, and a temperature stimulation processing part applying temperature stimulation to skin using a thermoelement. A more convenient and efficient skin care can be made possible because a mist spray function of hydrogen sterilization water and a temperature stimulation function can be simultaneously implemented using a single portable device. The temperature stimulation function can be simply implemented because temperature is controlled using a Peltier device.