Abstract:
A thermal management system for a vehicle includes a base circuit in which a compressor, a condenser, an expansion valve, and an evaporator are provided in order and in which a refrigerant is circulated, a recirculation circuit branched from a discharge portion of the compressor in the base circuit and joined to an inlet portion of the compressor so that the refrigerant discharged from the compressor is recirculated to an inlet of the compressor, and an adjusting valve positioned at the discharge portion where the recirculation circuit is branched from the base circuit or positioned at the inlet portion where the recirculation circuit is joined to the base circuit, the adjusting valve configured to adjust a flow rate of the refrigerant that flows to the recirculation circuit.
Abstract:
A thermal management system for a vehicle, includes: a base refrigerant flow path provided sequentially with a compressor, a second expansion valve, an indoor condenser, a first expansion valve, an external condenser, and an evaporator and configured to flow a refrigerant in the base refrigerant flow path; a chiller refrigerant flow path branched off from the base refrigerant flow path at a downstream point of the external condenser, provided sequentially with a third expansion valve and an integrated chiller, and merged with the base refrigerant flow path at an upstream point of the compressor; and a parallel refrigerant flow path branched off from the base refrigerant flow path at an upstream point of the first expansion valve and merged with the chiller refrigerant flow path at an upstream point of the third expansion valve.
Abstract:
An integrated thermal management circuit for vehicles, includes a refrigerant line configured so that a refrigerant subsequently flows into a compressor and a refrigerant heater, the refrigerant discharged from the refrigerant heater passes through an internal condenser or an integrated chiller and then flows into an external condenser, and the refrigerant discharged from the external condenser passes through the integrated chiller or an evaporator and then flows into the compressor, a battery cooling line configured so that a coolant circulates between a battery and an integrated radiator or the integrated chiller, an electronic part cooling line configured so that the coolant circulates between an electronic driving unit and the integrated radiator or the integrated chiller, and a heat radiation control valve provided between the refrigerant heater and the internal condenser on the refrigerant line and configured to control an amount of heat radiated by the internal condenser.
Abstract:
The vent apparatus includes: a transfer duct located inside an upper surface of an interior of a vehicle; a vent located at a portion of the transfer duct; a variable guide located adjacent to the vent; and a driver located at a first end of the variable guide, and configured to apply a driving force to the variable guide and insert the variable guide into a trim, and to change a shape of the variable guide based on the driving force such that a direction of air discharged through the vent is controlled.
Abstract:
Disclosed herein is a moisture electrolysis apparatus for a headlamp including: a first electrode configured to be exposed in an inside space of a headlamp housing, and have a surface coated with a dielectric substance; a second electrode configured to be disposed to be spaced apart from the first electrode by a predetermined distance; and a discharge ventilation path configured to be formed between the surface of the first electrode coated with the dielectric substance and the second electrode.
Abstract:
Disclosed is a steering wheel having cooling system inside. A steering wheel includes a hub connected to a steering column, a rim provided with a hollow formed therein and spokes configured to connect the hub and the rim. Cooling units located at the hub or the spokes of the steering wheel is provided to supply cooling air. Heat pipes thermally connect the cooling units and the rim of the steering wheel.
Abstract:
A device for sterilizing an evaporator core of an air conditioning system includes a sterilizer is mounted at a front end of the eva core for sterilization and deodorization of the eva core. The sterilizer is mounted at one side of a wall surface of an air channel formed between a blower which blows air toward the eva core and the eva core to prevent an air volume of an air channel from being reduced.