Charleston, SC, United States of America

Kayley E Seawright


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Kayley E Seawright: Innovator in Composite Structure Analysis

Introduction

Kayley E Seawright is a notable inventor based in Charleston, SC (US). She has made significant contributions to the field of composite structures through her innovative patent. Her work focuses on enhancing the quality analysis of composite laminates, which is crucial in various engineering applications.

Latest Patents

Kayley holds a patent titled "Method for computer analysis of as-programmed surface quality of composite structure." This patent describes a method for analyzing the quality of an as-programmed surface of a composite laminate. The process involves generating a first data set based on ply definitions and tool surface definitions. Subsequently, a second data set is created to represent coordinates of points on the as-programmed top surface, forming a first mesh. A third data set is then generated for a defined tool surface. The method calculates the angles of mesh elements and compares them to a threshold of acceptable angles. If the number of angles exceeding the threshold is acceptable, a tow placement machine can be programmed to fabricate the composite structure.

Career Highlights

Kayley is currently employed at The Boeing Company, where she applies her expertise in composite materials and engineering. Her innovative approach to surface quality analysis has the potential to improve manufacturing processes and product quality in the aerospace industry.

Collaborations

Kayley has collaborated with colleagues such as Matthew S Stauffer and Russell A Strope, contributing to advancements in their field through teamwork and shared expertise.

Conclusion

Kayley E Seawright is a pioneering inventor whose work in composite structure analysis is shaping the future of engineering. Her contributions are vital for enhancing the quality and efficiency of composite manufacturing processes.

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