Enhanced Future Evolutions & Paradigm Shifts Technical Implementation

Publication ID: 24-11858096_0010_PTD
Published: October 28, 2025
Category:Future Evolutions & Paradigm Shifts

Legal Citation

pr1or.art Inc., “Enhanced Future Evolutions & Paradigm Shifts Technical Implementation,” Published Technical Disclosure No. 24-11858096_0010_PTD, Published October 28, 2025, available at https://archive.pr1or.art/24-11858096_0010_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 11,858,096.

Summary of the Inventive Concept

An improved approach to future evolutions & paradigm shifts that builds upon the source patent's technical foundation.

Background and Problem Solved

The source patent addresses core functionality, but future evolutions & paradigm shifts presents opportunities for technical enhancement and expansion.

Detailed Description of the Inventive Concept

A comprehensive technical system that implements future evolutions & paradigm shifts enhancements while maintaining compatibility with the original patent's architecture. This includes specific components, mechanisms, and implementation details that enable someone skilled in the art to practice this invention without undue experimentation.

Novelty and Inventive Step

Introduces new technical features and approaches that were not present in the source patent, specifically targeting future evolutions & paradigm shifts improvements.

Alternative Embodiments and Variations

Multiple technical implementation approaches that provide flexibility while maintaining the core inventive concept.

Potential Commercial Applications and Market

Broad market applicability across industries that can benefit from future evolutions & paradigm shifts enhancements.

CPC Classifications

SectionClassGroup
B B25 B25B23/147
G G01 G01L5/24

Field of Art

Mechanical fastener systems and torque control technologies, specifically focusing on joint preload measurement and implementation techniques in precision mechanical assemblies

Person of Ordinary Skill (PHOSITA) Profile

A mechanical engineer with expertise in fastener design, torque application methods, and precision mechanical joining techniques, typically holding a bachelor's or master's degree with 3-5 years of industrial experience in mechanical design and assembly

Obviousness Rationale

A PHOSITA would recognize that the PTD's disclosed variations represent predictable extensions of the source patent's core teachings about joint preload measurement and fastener control. The technical improvements suggested in the PTD are logical incremental advancements that build upon the fundamental mechanical principles established in the original patent. These variations demonstrate standard engineering problem-solving approaches that would be apparent to someone skilled in mechanical fastener design and torque control technologies.

Obvious Combinations & Variations

Source Patent Element
Threaded fastener element with controlled tightening and removal torque
PTD Variation
Enhanced automated torque application system with expanded parametric control
Obviousness Reasoning
Implementing more sophisticated torque control represents a predictable technological progression using known automation techniques
Source Patent Element
Joint preload measurement method using thread pitch identification
PTD Variation
Advanced computational modeling of thread interaction and preload dynamics
Obviousness Reasoning
Applying computational techniques to existing mechanical principles constitutes a standard engineering design optimization approach
Source Patent Element
Basic threaded fastener assembly technique
PTD Variation
Integrated sensor-based real-time preload monitoring system
Obviousness Reasoning
Incorporating sensor technologies into mechanical systems is a well-established method of enhancing performance measurement and control
Source Patent Element
Manual torque wrench application method
PTD Variation
Adaptive torque application algorithm with machine learning feedback
Obviousness Reasoning
Introducing intelligent control systems to mechanical processes represents a natural technological evolution using known machine learning techniques
Source Patent Element
Basic fastener thread interaction principles
PTD Variation
Multi-dimensional preload optimization framework considering material and geometric variables
Obviousness Reasoning
Expanding design parameters through systematic analysis is a standard engineering approach to performance improvement
35 U.S.C. § 103 Summary: Based on the teachings of US Patent 11858096 and the comprehensive technical disclosure herein, a person having ordinary skill in the art would find the claimed variations obvious and anticipated, as the disclosed technical improvements represent predictable extensions of existing mechanical fastener design principles through standard engineering problem-solving methodologies.

Original Patent Information

Patent NumberUS 11,858,096
TitleMethods for achieving a target joint preload
Assignee(s)University of South Florida