Elongated Vibration Massage Device With Front-Mounted Motor
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Solution Overview
Problem
Existing elongated massage devices suffer from weakened vibration due to long transmission distances, leading to reduced massage effectiveness and complex structural designs that limit universality.
Innovation Solution
The device incorporates a motor positioned at the approximate front end within a vibration shell, connected via a composite wire rope and conductive assembly, ensuring effective vibration transmission to both ends.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If the motor is arranged at one end of the elongated massage device, then the structure is simplified, but the vibration amplitude is greatly attenuated when transmitted to the other end
Solution Approach 1:
The massage device is divided into multiple functional modules: a power supply assembly containing the motor, a long sleeve, and an elongated component. This segmentation allows the motor to be positioned within the power supply assembly while still effectively transmitting vibration through the divided structural sections, resolving the contradiction between simplified structure and effective vibration transmission.
Solution Approach 2:
The long sleeve acts as an intermediary component connecting the power supply assembly to the elongated component. It facilitates vibration transmission from the motor through the power supply assembly to the elongated component, ensuring that vibration amplitude is maintained despite the elongated structure, thus resolving the attenuation issue while preserving structural simplicity.
2Ease of manufacture
If the massage device has a fixed integrated structure, then the manufacturing is simplified, but the universality and ease of repair are poor
Solution Approach 1:
The massage device is designed with separable modules including a power supply assembly, long sleeve, and elongated component that can be assembled and disassembled. This modular segmentation enables simplified manufacturing of individual components while allowing the device to be configured for different applications, thereby improving both manufacturing ease and universality.
Solution Approach 2:
The connection between components is designed to be dynamically adjustable, allowing the device to transition between assembled and disassembled states. This dynamic design enables the device to adapt to different usage scenarios and repair needs while maintaining manufacturing simplicity through standardized connection interfaces.
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
Enhances vibration transmission across the device's length, maintaining massage effectiveness and allowing for easier disassembly and improved universality.
Implementation Method 1
when the motor vibrates, because a transmission distance is too long, the vibration will be greatly attenuated and weakened when it is transmitted to the other end
Data Source
AI summary
An elongated vibration massage device includes a power supply assembly, a long sleeve, a conductive assembly, a vibration shell, a motor, an elongated component, a composite wire rope and a wire rope; the long sleeve is installed at a front end of the power supply assembly, the conductive assembly is installed inside the long sleeve, the vibration shell is installed at a front end of the long sleeve, the motor is installed inside the vibration shell, the composite wire rope includes a wire rope and a conductive wire, the power supply assembly transmits electric energy to the motor through the conductive assembly, and the elongated component is installed at a front end of the vibration shell. The motor is located at the approximate front end of the device, thus the vibration of the motor can be better transmitted to two ends to ensure the use effect of the device.


