Insulated Refrigerator Viewing Window for Item Visibility
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Solution Overview
Problem
Refrigerators face challenges in allowing users to locate items without opening the door, leading to heat loss and increased power consumption due to the need to open the door to identify stored items.
Innovation Solution
Incorporating a glass member with a deposition-treated layer that allows light to pass through, a transparent plate with an insulating gas layer, and a light emitting part to illuminate the storage compartment, enabling users to see inside the refrigerator through a viewing window without opening the door.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of energy
If the door is made opaque for insulation, then heat insulation performance is improved, but visibility of stored items deteriorates
Solution Approach 1:
The door is divided into multiple sections: opaque insulating portions and a transparent viewing window portion. This segmentation allows different parts of the door to serve different functions - the majority maintains insulation while a specific segment provides visibility without requiring the entire door to be transparent.
Solution Approach 2:
The door structure transitions from uniform opacity to having localized transparency. The viewing window portion is specifically positioned and sized to provide necessary visibility while minimizing impact on overall insulation. The light emitting part is also localized to illuminate only the storage compartment area visible through the window.
2Loss of information
If the door is opened to locate items, then visibility of stored items is improved, but power consumption increases
Solution Approach 1:
The viewing window with light emitting part and display unit provides visibility and information about stored items before the door is opened. Users can locate desired items, check storage status, and receive notifications without opening the door, thereby performing the information-gathering action preliminarily and avoiding unnecessary door openings that cause heat loss.
Solution Approach 2:
The viewing window acts as an intermediary between the user and the stored items. Instead of direct access requiring door opening, the window provides indirect visual access. The display unit serves as another intermediary, conveying information about items and refrigerator status without physical access to the interior.
3Loss of information
If a transparent door is used for visibility, then visibility of stored items is improved, but insulation performance deteriorates
Solution Approach 1:
The door is divided into multiple sections: opaque insulating portions and a transparent viewing window portion. This segmentation allows different parts of the door to serve different functions - the majority maintains insulation while a specific segment provides visibility without requiring the entire door to be transparent.
Solution Approach 2:
The door structure transitions from uniform opacity to having localized transparency. The viewing window portion is specifically positioned and sized to provide necessary visibility while minimizing impact on overall insulation. The light emitting part is also localized to illuminate only the storage compartment area visible through the window.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This solution allows users to perceive stored items without opening the door, reducing power consumption and maintaining insulation performance by allowing light to pass through while minimizing heat exchange.
Implementation Method 1
Gas for insulation is injected in a space formed between the glass member and the transparent plate
Implementation Method 2
a deposition treated layer formed on a rear surface of the glass member to allow light to partially pass through the glass member
Data Source
AI summary
Provided is a refrigerator, which includes a refrigerating compartment, a freezing compartment, and a door assembly. The freezing compartment is adjacent to the refrigerating compartment. The door assembly selectively opens the refrigerating compartment and the freezing compartment. The door assembly includes a glass member defining a frontal exterior thereof and allowing an inside of the refrigerating compartment or the freezing compartment to be seen therethrough when the door assembly is closed, a deposition treated layer formed on a rear surface of the glass member to allow light to partially pass through the glass member, and a transparent plate spaced a predetermined distance from the glass member. Gas for insulation is injected in a space formed between the glass member and the transparent plate, and the space is sealed.


