Atomizing Container with Pneumatic Gas Inlet for Fine Mist Dispersion
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Solution Overview
Problem
Existing atomizers for spraying perfumes or essential oils are inconvenient to use and inefficient due to the need for frequent manual operation and the limited drifting range of large perfume particles, leading to wastefulness and poor air quality improvement.
Innovation Solution
An atomization container with a built-in atomizer that includes a gas inlet passage and a mist outlet passage, allowing for automatic atomization of liquid essential oils into a fine mist using a gas pump, with valves for controlled operation and easy mounting within an atomization apparatus.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If manual spraying of perfume or essential oil is used, then fragrance can be dispersed in the room, but frequent operation is required and the drifting range is limited
Solution Approach 1:
The atomizer is designed to automatically spray essential oil without requiring manual operation. The atomizing head contains a liquid storage cavity that holds essential oil, and a blowing component generates airflow to automatically atomize and disperse the oil throughout the room, eliminating the need for frequent manual spraying by users.
Solution Approach 2:
The atomizing head is pre-filled with essential oil in the liquid storage cavity before use. The system is prepared in advance with the atomizing head installed in the housing, containing the liquid storage cavity already filled with essential oil, so that when power is supplied, atomization begins automatically without requiring user preparation or frequent refilling operations.
2Quantity of substance
If large perfume particles are sprayed, then fragrance can be dispersed, but the drifting range is small and the method is inefficient
Solution Approach 1:
The atomizer uses a blowing component that generates a stream of blowing gas to atomize the essential oil. The gas flow shears the liquid essential oil into fine droplets, creating a mist that can drift extensively throughout the room. This pneumatic atomization process produces much smaller particle sizes compared to manual spraying, significantly increasing the drifting range and dispersion efficiency.
3Reliability
If the atomizing head and essential oil bottle are mounted in atomizer housing, then the atomizer can function, but the use becomes inconvenient
Solution Approach 1:
The atomizer is divided into separate functional components: a removable atomizing head containing the liquid storage cavity and atomizing structure, and a housing that contains the blowing component and power supply. The atomizing head can be detached from the housing for easy cleaning, maintenance, or replacement of the essential oil, while the housing remains stationary. This segmentation allows the device to function reliably while maintaining user convenience for maintenance operations.
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
The solution provides a convenient and efficient atomization process, ensuring consistent air quality improvement by automatically dispersing fragrances or disinfectants over a wider area with reduced waste and improved user experience.
Implementation Method 1
the atomizer is configured to mix and atomize the gas flow provided through the gas inlet passage and liquid in the accommodating cavity to form mist
Implementation Method 2
gas flow of a gas pump may enter the atomizer through the gas inlet passage
Data Source
AI summary
An atomization container includes a container body and an atomizer, wherein the container body has an accommodating cavity therein, the atomization container also has a gas inlet passage and a mist outlet passage, the gas inlet passage has one end configured to be connected with an external gas source and the other end connected with the atomizer for providing gas flow for the atomizer, the atomizer is configured to mix and atomize the gas flow provided through the gas inlet passage and liquid in the accommodating cavity to form mist, the mist outlet passage is configured to discharge the mist out of the container body, and the atomizer is located in the accommodating cavity.


