Modular Rotating Suction Massager With Combined Vibration Modes
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Solution Overview
Problem
Existing massagers offer limited functionality, typically only vibrating or rotating, failing to meet the diverse user demands for a comprehensive massage experience.
Innovation Solution
A rotating, sucking, and vibrating massager with modular components allowing for simultaneous or combined massage functions, including a detachable manual massager cup with replaceable silicone sleeves, and multiple disassembly options for convenience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a massager provides only single function (vibrating or rotating), then the device complexity is low, but the adaptability and user experience are insufficient
Solution Approach 1:
The patent combines rotating, sucking, and vibrating functions into a single massager device. The rotating head can simultaneously perform rotation (driven by reducer motor), sucking (driven by air pump creating negative pressure), and vibration (driven by vibrator). This merging of multiple massage modalities into one device resolves the contradiction by providing comprehensive adaptability while maintaining integrated structural design.
Solution Approach 2:
The massager is designed with multi-functionality to accommodate diverse user needs. The device can operate in multiple modes: rotating only, sucking only, vibrating only, or any combination thereof. The universal design allows the same device to serve different massage requirements, improving adaptability without requiring separate specialized devices for each function.
2Adaptability or versatility
If a massager provides multiple functions (rotating, sucking, vibrating), then the adaptability improves, but the device complexity increases
Solution Approach 1:
The massager is divided into modular components: main power unit (containing air pump, reducer motor, vibrator, control unit), cup body, and detachable rotating head. This segmentation allows independent control of each function through separate motors while maintaining a compact integrated structure. The modular design manages complexity by organizing components into functional modules that can work independently or in combination.
Solution Approach 2:
The rotating head is nested within the cup body structure, with the rotating silicone sleeve containing the vibrator inside it. The connector with locking blocks integrates multiple functions (rotation transmission, vibration isolation, electrical connection) into a single nested assembly. This nesting reduces overall device complexity by space-efficient arrangement of multiple components.
3Ease of operation
If the massager components are detachable for convenience, then the ease of operation improves, but the reliability of connection may deteriorate
Solution Approach 1:
The connector design incorporates dynamic locking mechanisms where locking blocks can move between locked and unlocked states. The bayonet-style connection allows rotational movement during assembly to engage locking blocks with locking sockets, providing secure connection while maintaining ease of operation. The dynamic nature of the locking mechanism ensures reliable connection during use while allowing simple detachment when needed.
Solution Approach 2:
The locking mechanism provides tactile feedback to the user during assembly. When the locking blocks engage with the locking sockets, the user can feel the clicking sensation confirming proper connection. This feedback mechanism ensures reliable connection by giving users immediate confirmation that the detachable components are properly assembled, resolving the reliability concern.
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 massager provides a multi-functional experience with simultaneous or combined massage modes, enhancing user satisfaction and market competitiveness through versatility and ease of use.
Implementation Method 1
the air pump is used to extract the air inside the cavity I and the cavities II
Implementation Method 2
the pressure relief valve is used to connect the outside air with the cavity I and the cavities II
Implementation Method 3
the main power unit comprises an air pump, a reducer motor and a pressure relief valve
Implementation Method 4
the rotating head comprises a rotating silicone sleeve and a vibrator inside the rotating silicone sleeve
Data Source
AI summary
Provided is a rotating, sucking and vibrating massager, which relates to the technical field of massage equipment. The massager comprises a massager body, comprising a main power unit, a rotating head, a cup body, a manual massager cup and a cup lid. The bottom of the main power unit is detachably connected to the rotating head; the cup body is detachably connected to the main power unit at one end and the manual massager cup at the other end, and provided with a cavity I inside. The massager can perform rotating, sucking or vibrating massage alone or simultaneously, or in any combination. The massager can be disassembled for easy carrying. The manual massager cup can be used independently, and the manual silicone sleeve inside is replaceable, so as to give users freedom of DIY massage functions. This design improves the market competitiveness of the massager product and meets user needs.


