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1. SG11202106162Y - REFRIGERATOR

Office
Singapour
Numéro de la demande 11202106162Y
Date de la demande 24.07.2019
Numéro de publication 11202106162Y
Date de publication 29.07.2021
Type de publication A1
CIB
F25D 23/06
FMÉCANIQUE; ÉCLAIRAGE; CHAUFFAGE; ARMEMENT; SAUTAGE
25RÉFRIGÉRATION OU REFROIDISSEMENT; SYSTÈMES COMBINÉS DE CHAUFFAGE ET DE RÉFRIGÉRATION; SYSTÈMES À POMPES À CHALEUR; FABRICATION OU EMMAGASINAGE DE LA GLACE; LIQUÉFACTION OU SOLIDIFICATION DES GAZ
DRÉFRIGÉRATEURS; CHAMBRES FROIDES; GLACIÈRES; APPAREILS DE REFROIDISSEMENT OU DE CONGÉLATION NON COUVERTS PAR UNE AUTRE SOUS-CLASSE
23Caractéristiques générales de structure
06Parois
CPC
F25D 23/06
FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
23General constructional features
06Walls
Déposants MITSUBISHI ELECTRIC CORPORATION
Inventeurs SUZUKI, Yuhei
OKABE, Makoto
Données relatives à la priorité PCT/JP2019/002921 29.01.2019 JP
Titre
(EN) REFRIGERATOR
Abrégé
(EN) 32 ABSTRACT REFRIGERATOR A refrigerator includes a heat insulating partition portion that partitions the inner 5 box into storage compartment s having different temperature zone s . The h eat insulating partition portion includes a second vacuum heat insulati ng material provided along a surface that partitions the inner box, and a covering portion that covers the second vacuum heat insulati ng material , a n d that includes a first covering portion covering one surface of the second va cuum heat insulati ng material , and a second 10 covering portion joine d to the first covering portion and covering the other surface of the second vacuum heat insulati ng material . At a covering surface of at least one of the first and second covering portion s that faces the second vacuum heat insulating material , a projecting portion, a recessed portion, and a flat portion are formed . T he projecting porti on is in contact with th e second vacuum heat insulating material . T he 15 recessed portion is recessed toward the opposite side of a side on which the second vacuum heat insulating material is located . Th e flat portion projects toward the second vacuum heat insul ati ng material . At the flat portion, an adhesive member is provided to join the first covering portion or the second covering portion and the second vacuum heat insulating material . Because of the above configuration, it is possible to improve 20 the stiffness of the covering portion and reduce deformation thereof, and also to stably fix the vacuum heat insulating material, while improving the workability of packing of the vacuum heat insulating material. Fig. 4 25