Water Atomizing Cup Lid Pump Integration
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Existing water atomizing cups rely on straws that limit flexibility, can wear out, and cause blockages, affecting the atomization effect.
Innovation Solution
A water atomizing cup design that eliminates the need for a straw by integrating a water pump in the lid, with a hermetically connected water supply ring and a direct communication between the water pump taps and the atomization nozzle, forming a complete water mist generation system.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a straw is used to connect the water pump to the atomizer, then the water flow can be maintained, but the flexibility of the cup body is limited and the atomization effect deteriorates due to wear or blockage
Solution Approach 1:
The patent removes the straw component from the system and replaces it with a direct integrated connection between the water pump and atomizer through the cup lid structure. This extraction of the problematic straw element eliminates wear and blockage issues while maintaining water flow functionality.
Solution Approach 2:
The patent merges the water pump, atomizer, and cup lid into a single integrated assembly. The water pump is positioned within the cup lid, and the atomizer is directly connected to the pump outlet through the lid structure, eliminating the need for separate straw connections and improving both flexibility and reliability.
2Duration of action of moving object
If a straw is used for water delivery, then water can be pumped to the atomizer, but the straw may wear or blockage occurs during long-term use
Solution Approach 1:
The straw is completely removed from the system, eliminating the source of wear and blockage problems. Water delivery is achieved through direct hydraulic connections within the integrated pump-lid-atomizer assembly, ensuring long-term reliability without the degradation issues associated with straw materials.
Solution Approach 2:
The patent replaces the mechanical straw connection system with a direct hydraulic integration where water flows through sealed channels and connections within the pump and lid assembly. This substitution eliminates the mechanical wear and blockage problems inherent in straw-based systems.
3Adaptability or versatility
If the water pump is directly integrated in the cup lid, then the flexibility of the cup body is improved, but the structural complexity increases
Solution Approach 1:
The water pump, atomizer, and cup lid are merged into a single integrated unit. The pump is positioned within the lid structure, and all water delivery and atomization components are combined in this assembly, achieving flexibility while managing complexity through functional integration rather than separate components.
Solution Approach 2:
The cup lid structure serves multiple functions: it contains the water pump, provides the atomizer mounting, establishes water delivery pathways, and maintains the cup's flexible design. This multi-functionality reduces the need for separate components and manages overall system complexity.
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 design enhances the flexibility of the cup body, maintains a stable water flow, and prevents the reduction in atomization effect due to straw wear or blockage, ensuring efficient water mist generation.
Implementation Method 1
a water pump is disposed in the lid body, an atomization seat is disposed at a top of the water pump, an atomization nozzle is mounted on the atomization seat
Implementation Method 2
the atomization seat and the water supply seat jointly... a spraying portion of the atomization nozzle is exposed on the lid shell
Data Source
AI summary
Disclosed is a water atomizing cup, belonging to the technical field of cups. The water atomizing cup includes a cup lid and a cup body, the cup lid includes a lid body, a water pump is disposed in the lid body, an atomization nozzle is mounted on an atomization seat that is at a top of the water pump, one end of the water pump communicates with the atomization nozzle through the atomization seat, a water supply ring is disposed at a bottom of the lid body, and the other end of the water pump is in butt joint communication with the water supply ring through a water supply base. In the present disclosure, both ends of the water pump communicate with the water supply ring and the atomization nozzle, respectively, to improve the flexibility and the atomization effect of the cup body.


