Dildo Adaptor Locking Mechanism for Vibration-Resistant Attachment
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Solution Overview
Problem
Current dildo and driving mechanism connections suffer from easy separation during vibration or rotation, with fixed connections being non-detachable and inconvenient for replacement, and detachable connections lacking firmness.
Innovation Solution
A connecting mechanism featuring a dildo connecting end, a driving mechanism connecting end, and a connecting mechanism body with a connecting column, limiting groove, and compression springs that provide a secure and easy-to-assemble interface, ensuring the dildo remains firmly attached to the driving mechanism.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Strength
If fixed connection is used between dildo and driving mechanism, then connection firmness is improved, but ease of operation for replacement deteriorates
Solution Approach 1:
The connection structure is divided into separate components: a connecting column on the dildo side, a connecting cavity in the driving mechanism, and a limiting member that locks them together. This segmentation allows the dildo to be firmly connected during use while enabling easy detachment by removing the limiting member, thus resolving the contradiction between connection firmness and ease of replacement.
Solution Approach 2:
The connection mechanism transitions from a static fixed connection to a dynamic system where the limiting member can move between locked and unlocked positions. The limiting member is held in place by a limiting groove during operation, providing firm connection, but can be easily removed to allow detachment, thus achieving both connection firmness and ease of replacement.
2Ease of operation
If detachable connection is used between dildo and driving mechanism, then ease of operation for replacement is improved, but connection firmness deteriorates
Solution Approach 1:
The connection structure is divided into separate components: a connecting column on the dildo side, a connecting cavity in the driving mechanism, and a limiting member that locks them together. This segmentation allows the dildo to be firmly connected during use while enabling easy detachment by removing the limiting member, thus resolving the contradiction between connection firmness and ease of replacement.
Solution Approach 2:
The limiting member acts as an intermediary element between the connecting column and connecting cavity. It provides the locking function that ensures firm connection during operation, while its removable nature allows easy detachment when needed, thus achieving both connection firmness and ease of replacement.
3Ease of operation
If simple detachable connection is used, then ease of operation is improved, but reliability against separation deteriorates
Solution Approach 1:
The limiting member is pre-positioned in the limiting groove to automatically lock the connecting column in place once inserted into the connecting cavity. This preliminary locking action ensures that the connection is reliably secured before any vibration or rotation occurs, preventing separation while maintaining ease of operation for connection and detachment.
Solution Approach 2:
The limiting member acts as an intermediary element between the connecting column and connecting cavity. It provides the locking function that ensures firm connection during operation, while its removable nature allows easy detachment when needed, thus achieving both connection firmness and ease of replacement.
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 mechanism allows for quick and secure connection of the dildo to the driving mechanism, maintaining firmness even during vibrations, and facilitates easy detachment for replacement, enhancing user convenience.
Implementation Method 1
a pressing column and a compression spring I are sequentially arranged in the internal connecting cavity in a direction close to the driving mechanism connecting end, when the limiting member is located in the limiting groove, the connecting column exerts a pressure on the pressing column, and the pressing column exerts a pressure on the compression spring I, so that the compression spring I is in a deformed state
Implementation Method 2
An outer sleeve is sleeved over the outside of the connecting mechanism body, and the outer wall of the connecting mechanism body has a space for the outer sleeve to move axially. A protrusion I is arranged at an inner wall of the outer sleeve, and when the protrusion I corresponds to the limiting member embedding groove in position, the protrusion I exerts a pressure on the limiting member
Implementation Method 3
a compression spring II is sleeved over the outside of the connecting mechanism body, and the compression spring II is located between the connecting mechanism body and the outer sleeve. A protrusion II is arranged at an outer wall of one end of the connecting mechanism body, one end of the compression spring II abuts against the protrusion I, and the other end of the compression spring II abuts against the protrusion II
Data Source
AI summary
The invention discloses a connecting mechanism of a dildo. One end of a driving mechanism connecting end is connected to one end of a connecting mechanism body, and the other end of driving mechanism connecting end is provided with a driving mechanism connecting member. One end of a dildo connecting end is provided with a dildo connecting member, and the other end of the dildo connecting end is connected to the other end of the connecting mechanism body. The other end of the dildo connecting end is provided with a connecting column, the inside of the other end of the connecting mechanism body is provided with an internal connecting cavity matched with the connecting column, and the connecting column is inserted into the internal connecting cavity. A concave limiting groove is formed in the connecting column circumferentially, a limiting member embedding groove communicated with the internal connecting cavity is formed in an outer wall of the connecting mechanism body, and a limiting member is embedded in the limiting member embedding groove. An outer sleeve is sleeved over the outside of the connecting mechanism body, a protrusion I is arranged at an inner wall of the outer sleeve, and when the protrusion I corresponds to the limiting member embedding groove in position, the protrusion I exerts a pressure on the limiting member. The invention helps to solve the problem of easy separation of a dildo and a driving mechanism.


