Traction Device for Ligament Elongation via Vacuum Seal
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Solution Overview
Problem
Current methods for penis enlargement, such as vacuum pumps and surgical techniques, are either ineffective in producing permanent lengthening or come with risks like ischemia, pain, and limited effectiveness due to anatomical limitations posed by the suspensory and fundiform ligaments.
Innovation Solution
A traction device with a gel-flex sleeve and traction chamber that applies controlled tension using weights or elastic bands to stretch the suspensory and fundiform ligaments, ensuring secure contact and pressure to avoid physiological side effects, featuring a unique airlock port assembly and gel flex air seal to maintain airtight integrity and prevent tissue damage.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Length of moving object
If vacuum pumps are used for penis enlargement, then temporary volumizing with blood is achieved, but permanent lengthening is not produced
Solution Approach 1:
The invention changes the fundamental parameter from vacuum pressure (which only fills with blood) to mechanical traction force (which physically stretches and lengthens tissue). The traction device applies sustained mechanical force to elongate the penis permanently, rather than temporarily filling it with blood like vacuum pumps do.
2Length of moving object
If constrictive rings are used to restrict blood flow, then erection enhancement is achieved, but actual lengthening of the penis is not produced
Solution Approach 1:
The invention replaces the blood flow restriction mechanism (constrictive rings) with a direct mechanical stretching mechanism (traction device). Instead of using blood flow dynamics to achieve enhancement, the device applies direct mechanical traction to physically lengthen the penis, substituting one mechanical approach for another more effective one.
3Length of moving object
If surgical techniques are used to lengthen the penis, then permanent lengthening is achieved, but risks of ischemia, pain and limited effectiveness occur
Solution Approach 1:
The invention allows the body to naturally adapt and lengthen through controlled mechanical traction without surgical intervention. The gradual stretching stimulates tissue growth and ligament elongation through the body's own biological processes, eliminating the need for surgery and its associated risks while achieving permanent lengthening.
4Length of moving object
If traction is applied to stretch ligaments, then permanent lengthening is achieved, but tissue damage may occur without proper control
Solution Approach 1:
The invention uses a dynamic, adjustable traction system that can be customized to each user's tolerance and progress. The device allows for gradual increase in traction force over time, adapting to the body's response and preventing tissue damage while maximizing lengthening effectiveness. This dynamic approach ensures safety while achieving the desired permanent lengthening.
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 device safely and effectively stretches the ligaments, potentially leading to permanent penis lengthening without the risks associated with existing methods, improving user comfort and reducing the likelihood of adverse physiological reactions.
Implementation Method 1
A vacuum pump assembly is coupled to the airlock port assembly and configured to remove air from the traction chamber
Implementation Method 2
The airlock port assembly includes a gel flex air seal that forms an airtight seal
Implementation Method 3
A traction device with a gel-flex sleeve and traction chamber that applies controlled tension using weights or elastic bands to stretch the suspensory and fundiform ligaments
Data Source
AI summary
A penis lengthening device comprises a traction chamber with tapered sidewalls configured to secure the penis within the chamber by forming a partial vacuum therein. A flexible air seal covers the upper portion of the traction chamber and extends over the penis. As the chamber is evacuated, the air seal tightens around the penis, creating an air seal to retain the vacuum within the chamber. Tensile force is transmitted through the chamber to the penis of the user. Alternative “light traction” embodiments utilize a condom-like device configured to attach to an elastic band, or to suspend weights therefrom. Larger tensile forces are applied for shorter periods of a few minutes up to an hour using the traction chamber embodiment, and smaller forces of 1-2 pounds are applied for longer periods of several hours using a light-traction embodiment. Alternate between the two methods throughout the day enhances its effectiveness.


