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    • 6. 发明公开
    • CLOTHES DRYER
    • 干衣机
    • EP3022351A1
    • 2016-05-25
    • EP14826639.8
    • 2014-07-15
    • LG Electronics Inc.
    • CHO, HongjunBAE, JinwooBAE, Sanghun
    • D06F58/04
    • D06F58/02D06F58/20D06F58/26D06F58/263
    • A clothes dryer capable of minimizing heat energy loss and increasing energy efficiency includes a cabinet, a drum provided within the cabinet, an exhaust duct through which air discharged from the drum is discharged out of the cabinet, an intake duct through which air is guided to the drum, a heating portion which heats air introduced into the intake duct, a heat exchanger provided within the exhaust duct and having a first heat exchange space in which air discharged from the drum exchanges heat with air introduced from the inside or outside of the cabinet into the exhaust duct, and a preheating member including a second heat exchange space through which air passing through the heat exchanger is guided to the intake duct so that air flowing into the intake duct via the heat exchanger exchanges heat with heat radiated from the intake duct in the second heat exchange space.
    • 能够使热能损失最小化并且提高能量效率的干衣机包括箱体,设置在箱体内的滚筒,将从滚筒排出的空气从箱体排出的排气管,将空气引导至其中的进气管 鼓,加热部分,加热部分,其加热被引入到进气管道中的空气;热交换器,其设置在排气管道内并具有第一热交换空间,在该第一热交换空间中,从鼓部排出的空气与从柜内部或外部引入的空气进行热交换 流入排气管的预热构件和包括第二热交换空间的预热构件,穿过热交换器的空气通过该第二热交换空间被引导到进气管,使得经由热交换器流入进气管的空气与从进气管辐射的热交换热量 在第二热交换空间中。
    • 7. 发明公开
    • LAUNDRY TREATMENT APPARATUS
    • EP4446494A2
    • 2024-10-16
    • EP24191619.6
    • 2021-09-03
    • LG Electronics Inc.
    • BAE, JinwooLEE, YeonjuLEE, JongminNOH, Hyunwoo
    • D06F58/20
    • D06F58/20D06F58/02
    • A laundry treatment apparatus includes a drum configured to include a drum body providing a space in which laundry is stored, a front cover forming a front surface of the drum body, a rear cover forming a rear surface of the drum body, and a drum inlet penetrating the front cover, a fixing panel provided to be spaced apart from the rear cover, a driver configured to include a stator supported by the fixing panel to form a rotating magnetic field, and a rotor rotated by the rotating magnetic field to generate power required to rotate the drum, a panel exhaust port provided to penetrate the fixing panel; an exhaust duct configured to guide air discharged from the drum to the panel exhaust port, a heat exchanger configured to include a fan for enabling air to move along the exhaust duct, a heat absorption unit for dehumidifying air introduced into the exhaust duct, and a heating unit for heating air having penetrated the heat absorption unit, a supply port configured to allow a plurality of through-holes penetrating the fixing panel to surround the stator, an air inlet formed to penetrate the rear cover, a flow passage forming portion, one end of which is fixed to the fixing panel and the other end of which contacts the rear cover, configured to interconnect the supply port and the air inlet, a supply duct configured to include a duct body that is fixed to the fixing panel to guide air discharged from the panel exhaust port to the supply port, and a rotor reception portion formed to penetrate the duct body so that the rotor is exposed to the outside of the duct body. The supply port is configured in a manner that the number of through-holes disposed over a horizontal line penetrating a center of rotation of the rotor is greater than the number of other through-holes disposed below the horizontal line, or is configured in a manner that the sum of areas of the through-holes disposed over the horizontal line is greater than the sum of areas of the other through-holes disposed below the horizontal line.