Volatilization Device Automatic Liquid Quantitative Supplement

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Solution Overview

Problem

Conventional vaporizers lack control over liquid volatilization quantity, result in inefficient use due to varying liquid viscosities, and waste liquid cannot be recycled, leading to manual and inefficient operation.

Innovation Solution

A volatilization device with a vaporizer, gas supply, and liquid supply system that includes a controller to regulate liquid absorption and conversion into aerosol spray, featuring a reflux tube for excess liquid recycling and an air press pump for controlled gas input, allowing for scheduled aerosol production.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Manufacturing precision

If manual liquid addition is used in conventional vaporizers, then the device structure is simple, but the volatilization quantity of liquid cannot be controlled

Engineering Contradiction:
Improvevolatilization quantity controlVSAvoiddevice structure
Core Design Contradiction:
Manufacturing precisionVSDevice complexity

Solution Approach 1:

The system uses automatic detection and control mechanisms where the controller monitors liquid levels and triggers the liquid supply device to replenish liquid automatically, eliminating the need for manual intervention while maintaining precise control over volatilization quantities

Inventive Principle:
Principle #25Self-service

Solution Approach 2:

The controller receives feedback from liquid level detection and adjusts the liquid supply accordingly, creating a closed-loop control system that precisely manages volatilization quantities based on actual consumption rates and container levels

Inventive Principle:
Principle #23Feedback

2Adaptability or versatility

If different liquids with varying viscosities are used, then the liquid container can accommodate various liquids, but the liquid volatilization speed cannot be controlled

Engineering Contradiction:
Improveliquid type compatibilityVSAvoidvolatilization speed control
Core Design Contradiction:
Adaptability or versatilityVSManufacturing precision

Solution Approach 1:

The liquid supply device can dynamically adjust its operation parameters based on liquid viscosity characteristics, modifying the rate and method of liquid delivery to compensate for viscosity variations and maintain consistent volatilization speeds across different liquid types

Inventive Principle:
Principle #15Dynamics

Solution Approach 2:

The system changes operational parameters such as liquid supply rate, pressure, and temperature based on the specific liquid being used, allowing the volatilization speed to be controlled and optimized for each liquid type's unique properties

Inventive Principle:
Principle #35Parameter changes

3Loss of substance

If liquid is not recycled in conventional vaporizers, then the device structure is simple, but liquid waste occurs

Engineering Contradiction:
Improveliquid wasteVSAvoidrecycling structure
Core Design Contradiction:
Loss of substanceVSDevice complexity

Solution Approach 1:

The system implements a recycling mechanism where excess or unused liquid is captured and returned to the liquid container through the reflux tube, preventing waste and maximizing liquid utilization without significantly complicating the overall device structure

Inventive Principle:
Principle #34Discarding and recovering

4Productivity

If automatic liquid supply is implemented, then the volatilization quantity can be controlled, but the device complexity increases

Engineering Contradiction:
Improveoperational efficiencyVSAvoidcontrol system
Core Design Contradiction:
ProductivityVSDevice complexity

Solution Approach 1:

The controller serves multiple functions including monitoring liquid levels, controlling the liquid supply device, managing the gas supply, and coordinating the volatilization process, reducing the need for separate dedicated components and minimizing overall system complexity while maintaining high operational efficiency

Inventive Principle:
Principle #6Universality (Multi-functionality)

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

Enables precise control over liquid volatilization and recycling, converting liquids into aerosol sprays efficiently and reducing waste, suitable for deodorants, pharmaceuticals, sterilization agents, and insect repellents.

Implementation Method 1

a press piece (303), the controller being in corresponding connection with the liquid inlet, allowing the liquid supply to input liquid to the vaporizer

Methodology Applied
Scientific EffectPressure: Pressure Increase

Implementation Method 2

aerosol will be ejected from the opening of the vaporizer when the liquid enters the accommodation space and the gas supply input gas to the accommodation space

Methodology Applied
Scientific EffectAerosol formation: Aerosol

Implementation Method 3

too much the liquid input to the vaporizer from the liquid supply flows back to the liquid container through the reflux tube

Methodology Applied
Scientific EffectGravity flow: Gravitation

Data Source

PatentUS10245603B2Volatilization device capable of automatic quantitative supplement of liquid
Publication Date: 2019.04.02 GUANGZHOU FANER AROMA PROD CO
  • US10245603B2 patent drawing
  • US10245603B2 patent drawing
  • US10245603B2 patent drawing

AI summary

A volatilization device capable of automatic quantitative supplement of liquid includes: a vaporizer, defining an accommodation space and having an opening, air inlet and liquid inlet, the accommodation space being in communication with the opening, air inlet and liquid inlet; a gas supply, connected correspondingly to the gas inlet, allowing the gas supply to input gas to the vaporizer; and a liquid supply, having a liquid container, controller and press piece, the liquid container being connected to the controller and press piece, the controller being connected correspondingly with the liquid inlet, allowing the liquid supply to input liquid to the vaporizer, where the controller controls the start of the press piece to absorb the liquid in the liquid container, and input the liquid to the liquid inlet, and aerosol will be ejected from the opening when the liquid and gas is input to the accommodation space.