Adjustable Erection Ring Fit for Stable Pressure and Removal
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Solution Overview
Problem
Existing penis rings face issues such as inconsistent fit due to varying penis diameters between flaccid and erect states, discomfort during application and removal, and unreliable positioning of stimulating structures, leading to discomfort and ineffective pressure application.
Innovation Solution
An erection device with a latch and loop design that securely fits around the penis and scrotum, allowing adjustable pressure application and fixed positioning, featuring a loop that slides through a latch for easy adjustment and includes structures for enhanced pleasure.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a fixed diameter ring is used, then the ring structure is simple, but the ring cannot adapt to different penis sizes and states (flaccid vs erect)
Solution Approach 1:
The ring incorporates a dynamic adjustment mechanism that allows the inner diameter to change from a compressed state (for flaccid penis) to an expanded state (for erect penis). The ring transitions from a static fixed-diameter structure to a dynamic adjustable structure, enabling adaptation to different physiological states while maintaining secure fit.
Solution Approach 2:
The ring's inner diameter parameter is made variable through an adjustment mechanism. Users can modify the diameter parameter to match their specific needs and physiological conditions, transforming the ring from a single-parameter fixed structure to a multi-parameter adjustable structure that accommodates size variations.
2Reliability
If the ring is stretched tightly over an erect penis, then sufficient pressure is applied to maintain erection, but the ring becomes difficult to remove and causes discomfort
Solution Approach 1:
The ring employs a dynamic release mechanism that allows easy transition from a tightly secured state (during wear) to a freely removable state (during takeoff). The adjustment mechanism enables users to quickly change the ring's circumference, reducing the force required for removal while maintaining secure fit during use.
Solution Approach 2:
The ring allows users to pre-adjust the diameter to the minimum size for easy donning over the flaccid or erect penis. After positioning, the diameter can be increased to the optimal size for secure wear and comfortable removal, separating the donning phase from the wearing phase requirements.
3Ease of operation
If the ring is made loose to accommodate flaccid state, then comfort during donning is improved, but the ring becomes dislodged during erection and sexual activity
Solution Approach 1:
The ring uses a dynamic diameter adjustment mechanism that allows the circumference to be expanded after donning. Users can start with a loose fit for easy insertion, then tighten the ring to achieve secure positioning, transforming the ring from a static single-size structure to a dynamic multi-size structure.
Solution Approach 2:
The ring's circumference is divided into adjustable segments through the modification mechanism, allowing independent adjustment of the diameter parameter. This segmentation enables the ring to adapt to different fit requirements at different stages of use.
4Manufacturing precision
If multiple ring sizes are produced to accommodate different users, then fit accuracy is improved, but inventory complexity and cost increase
Solution Approach 1:
The ring incorporates a universal adjustment mechanism that enables a single ring design to serve multiple size requirements. Instead of producing multiple fixed-size rings, one adjustable ring can accommodate various penis sizes and states, reducing product line complexity while maintaining fit accuracy.
Solution Approach 2:
The ring transforms from a static fixed-size product to a dynamic adjustable product, allowing a single design to replace multiple fixed-size variants. The adjustment mechanism provides continuous or discrete size variations, eliminating the need for multiple SKUs while maintaining precise fit for different users.
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 maintains consistent pressure and positioning, enhancing sexual pleasure and orgasm duration by restricting blood flow and providing fixed stimulation, while being comfortable to use and adjust.
Implementation Method 1
The loop is formed from an elastic material. The elastic resilience of the loop pulls the loop into the latch, securely engaging the body of the device with the top of the penis and engaging the first portion of the loop around the base of the penis.
Implementation Method 2
The erection device restricts the flow of blood out from the penis by compressing a portion of the penis. The restricted blood flow increases the blood pressure within tissues of the penis including the corpus cavernosum and corpus spongiosum.
Data Source
AI summary
A device for enhancing the tumescence of an erection is disclosed. The device has a body shaped to conform to the dorsal surface of a wearer's penis. A latch is disposed on one end of the body and a loop of elastic material extends from the opposite end of the body. A wearer attaches the device by stretching the loop from the body, placing the body against his penis, inserting his testicles through the loop and engaging the loop with the latch. One portion of the loop encircles the shaft of the penis in front of the scrotum and a second encircles the penis and scrotum behind the scrotum. Elastic rebound of the loop applies compressive force to the penis and scrotum, modifying blood flow in the penis and increasing tumescence.


