Bathing Apparatus with Active Oxygen Sterilization and Physiological Detection
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Solution Overview
Problem
Current automatic bathing devices lack integrated functions for effective epidemic prevention, physiological detection, stress relief, and personalized care, particularly in high-risk environments, and are not optimized for reduced labor costs and water usage.
Innovation Solution
An automatic bathing apparatus that incorporates active oxygen sterilization, physiological detection using non-wearable sensors, Schumann resonance for stress relief, and fragrance deployment, with an electronically controlled system for ozone concentration regulation and water management, enabling efficient cleaning and relaxation with minimal manual intervention.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If traditional manual operation bathing machines are used, then device simplicity is maintained, but productivity and labor efficiency deteriorate
Solution Approach 1:
The bathing machine is divided into multiple functional modules: water spray devices for cleaning, massage mechanisms for stress relief, physiological detection systems for monitoring, and fragrance deployment systems for aromatherapy. Each module operates independently but coordinates through the control unit, enabling automated bathing while maintaining manageable system complexity through modular design
Solution Approach 2:
The system performs self-service through automated control of water spray patterns, massage intensity, fragrance release timing, and physiological monitoring. The control unit autonomously adjusts parameters based on detected user physiological states, eliminating the need for manual operation while reducing labor costs and improving bathing efficiency
2Adaptability or versatility
If comprehensive functions are integrated, then adaptability and versatility improve, but device complexity worsens
Solution Approach 1:
The bathing machine integrates multiple functions including cleaning, sterilization, massage, physiological detection, and fragrance deployment within a single device. The control unit coordinates all these functions to provide comprehensive bathing care, making the system adaptable to different user needs and physiological states while maintaining unified control architecture
Solution Approach 2:
The patent combines previously separate functions into integrated systems: water spray devices are merged with massage mechanisms, physiological sensors are integrated with the control unit for real-time monitoring, and fragrance deployment is synchronized with bathing cycles. This merging reduces the number of separate devices needed while providing comprehensive care
3Measurement precision
If automated physiological detection is implemented, then measurement precision and care quality improve, but device complexity worsens
Solution Approach 1:
The system replaces manual physiological assessment with automated non-wearable sensors that detect heart rate, respiratory rate, and other vital signs. These sensors provide precise, continuous monitoring without requiring physical contact or wearable devices, improving measurement accuracy while simplifying user interaction
Solution Approach 2:
The control unit receives real-time physiological data from sensors and automatically adjusts bathing parameters such as water temperature, spray intensity, and massage intensity based on detected user states. This feedback mechanism ensures precise physiological monitoring and personalized care while automating the detection and response process
4Reliability
If active oxygen sterilization is used, then reliability and epidemic prevention improve, but harmful factors worsen
Solution Approach 1:
The system controls ozone concentration by adjusting parameters such as spray duration, intensity, and timing based on detected user presence and physiological states. The control unit modulates active oxygen generation to maintain effective sterilization while preventing excessive ozone levels that could harm the user, achieving reliable epidemic prevention with controlled harmful factors
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 apparatus provides comprehensive and automated bathing, sterilization, and stress relief while reducing labor costs and water usage, offering precise physiological monitoring and personalized care through integrated ozone and fragrance technologies.
Implementation Method 1
a ozone generation device, matched with a spray atomization nozzle, to produce a variety of fragrance bubbles of ultra-nano active oxygen
Implementation Method 2
match with non-contact Schumann wave resonance strengthens deep cleaning and body relaxation
Data Source
AI summary
A body massaging and washing apparatus, which is a harmonized intelligent active oxygen generator (low concentration ozone) that adjusts the concentrations according to the conditions of users, and can be used at any time; it performs physiological detection before and after use, so as to carry out non-wearable physiological detection for the user, which includes heart rate autonomic nerve balance and thermal imaging to display the balance state of the body, and deploys fragrance according to personal physical fitness testing, and with non-contact Schumann wave resonance, strengthens deep cleansing and body relaxation, becoming an integrated cleaning and epidemic prevention physiology detect relieve stress and relax and personalize physiological physique detection and deploy experience fragrance technology, which can provide users with humanized anti-epidemic care, and allow caregivers and doctors to identify users' physiological conditions.


