F25D2201/122

Insulation structure for an appliance having a uniformly mixed multi-component insulation material, and a method for even distribution of material combinations therein

An insulation structure for an appliance includes a cabinet having an outer wrapper and an inner liner, with an insulating cavity defined therebetween. Insulating powder material is disposed substantially throughout the insulating cavity. An insulating gas is disposed within the insulating cavity, wherein the insulating powder material is combined with the insulating gas and cooperatively defines a suspended state and a precipitated state. The suspended state is defined by the insulating gas in motion and the insulating powder being in an aeolian suspension within the insulating gas while in motion. The precipitated state is defined by the insulating gas being in a deposition state and the insulating powder being precipitated from the insulating gas and deposited within the insulating cavity.

REFRIGERATION APPLIANCE AND DOOR BODY THEREOF
20210095914 · 2021-04-01 ·

A door body for a refrigeration appliance includes a main part and a frame surrounding the main part. The frame includes a housing with a cavity. The cavity is filled with an insulation material in contact with the main part. A door seal is mounted on a rear side of the housing and a seal strip is located between the housing and the main part. A refrigeration appliance including the door body is also provided.

TWO-SHOT BLOW MOLDED COOLER
20210123656 · 2021-04-29 ·

A cooler with a two-color lid includes a cooler body and a lid designed to cover a cavity of the cooler body. The lid includes an outer section and an inner section. The lid is a blow-molded lid, where a color of the outer section is different from a color of the inner section.

VACUUM ADIABATIC BODY, FABRICATION METHOD FOR THE VACUUM ADIABATIC BODY, POROUS SUBSTANCE PACKAGE, AND REFRIGERATOR
20210071941 · 2021-03-11 ·

A vacuum adiabatic body, a method for fabricating a vacuum adiabatic body, a porous substance package, and a refrigerator including a vacuum adiabatic body and a porous substance package are provided. The vacuum adiabatic body may include a first plate, a second plate, a seal, a support, a heat resistance device, and an exhaust port. The support may include a porous substance and a film made of a resin material, the film configured to accommodate the porous substance therein. Accordingly, it may be possible to provide a vacuum adiabatic body through an inexpensive process.

Thermal bridgebreaker and seal features in a thin-walled vacuum insulated structure

A vacuum insulated refrigerator structure includes an outer wrapper having a first opening and a first edge extending around the first opening. A liner has a second opening and second edge extending around the second opening. The liner is disposed inside the wrapper with the first and second edges being spaced apart to form a gap therebetween. An insulating thermal bridge extends across the gap, and an airtight vacuum cavity is formed between the wrapper and the liner. The thermal bridge includes elongated first and second channels having sealant disposed therein, and the first and second edges are disposed in the first and second channels, respectively. Porous core material may be disposed in the vacuum cavity.

Refrigerated Merchandising Cabinet
20210059433 · 2021-03-04 ·

A refrigerated merchandising cabinet comprises an insulated casing, an interior of which forms a product display chamber. Refrigeration apparatus for generating and delivering a cold airstream through the product display chamber to cool the product display chamber is mounted on top of the casing. Access doors are mounted at a front of the casing to provide access to the product display chamber. Each access door is mounted on the casing by means of an inner frame forming an integral part of the casing and defining an access opening at the front of the casing and a complementary outer frame which is demountably engaged with the inner frame. Each door is hingedly mounted on the outer frame.

WET GRANULATION FOR MANUFACTURE OF THERMAL INSULATION MATERIAL
20210018254 · 2021-01-21 · ·

An appliance cabinet includes a structural envelope having an exterior surface and an interior surface that defines an insulating cavity, wherein the insulating cavity defines an at least partial vacuum. A plurality of silica-based agglomerates are disposed within the insulating cavity, wherein each agglomerate of the plurality of silica-based agglomerates includes silica-based powder insulation material that is water-densified and is at least substantially free of a material binder. A secondary insulation material is disposed within interstitial spaces defined between the plurality of silica-based agglomerates, wherein the plurality of silica-based agglomerates defines an interior structure that resists inward compressive forces exerted as a result of the at least partial vacuum defined within the insulating cavity.

MICROSPHERE-BASED INSULATING MATERIALS FOR USE IN VACUUM INSULATED STRUCTURES

A low-density insulating material for use in a vacuum insulated structure for an appliance includes a plurality of microspheres that includes a plurality of leached microspheres. Each leached microsphere has an outer wall and an interior volume. The outer wall has a hole that extends through the outer wall and to the interior volume. A binder engages outer surfaces of the plurality of leached microspheres, wherein the binder cooperates with the plurality of leached microspheres to form at least one microsphere aggregate. The interior volume of each leached microsphere defines an insulating space that includes an insulating gas. The insulating space of each leached microsphere is at least partially defined by the binder.

Vacuum adiabatic body, fabrication method for the vacuum adiabatic body, porous substance package, and refrigerator
10876786 · 2020-12-29 · ·

A vacuum adiabatic body, a method for fabricating a vacuum adiabatic body, a porous substance package, and a refrigerator including a vacuum adiabatic body and a porous substance package are provided. The vacuum adiabatic body may include a first plate, a second plate, a seal, a support, a heat resistance device, and an exhaust port. The support may include a porous substance and a film made of a resin material, the film configured to accommodate the porous substance therein. Accordingly, it may be possible to provide a vacuum adiabatic body through an inexpensive process.

VACUUM ASSISTED AND HEATED AUGER FEEDER FOR ACHIEVING HIGHER PACKING EFFICIENCY OF POWDER INSULATION MATERIALS IN VACUUM INSULATED STRUCTURES
20200240572 · 2020-07-30 · ·

An auger feeder includes a hopper having an inner hopper wall and an outer hopper wall where the inner hopper wall includes an air permeable surface. A space is positioned between the inner and outer hopper walls. A heater is coupled to an outside edge of the inner hopper wall or a n outside edge of the outer hopper wall while a feed screw is positioned along an inside edge of the inner hopper wall. The auger feeder additionally includes an evacuator coupled to a vacuum port that is positioned in the outer hopper wall. The auger feeder also includes an aperture exit positioned at a bottom of the inner and outer hopper walls.