This inventor holds 1 USPTO granted patent. Top assignee: United Technologies Corporation. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: Innovations of Laurence E Bernat
Introduction
Laurence E Bernat is an accomplished inventor based in Woodstock, CT (US). He has made significant contributions to the field of polyurethane technology, particularly in applications related to commercial gas turbine engines. His innovative work has led to the development of a unique polyurethane compound that serves a critical function in engineering.
Latest Patents
Laurence E Bernat holds a patent for a "Mixable room temperature castable polyurethane system." This invention relates to a polyurethane compound that is particularly useful as a potting compound for fan exit guide vane assemblies of commercial gas turbine engines. The formulation consists of polyurethane prepolymers mixed with an aromatic amine curing agent in a volumetric mix ratio ranging from about 0.9:1 to about 1:1. The polyurethane prepolymer is a blend of different polyethers based on diphenylmethane diisocyanate (MDI). The amine curing agent is a combination of oligomeric diamines and an aromatic diamine, along with a catalytic component. Notably, both blends remain liquid at room temperature in their uncured state. He has 1 patent to his name.
Career Highlights
Laurence E Bernat has had a notable career at United Technologies Corporation, where he has applied his expertise in polyurethane technology. His work has been instrumental in advancing the capabilities of materials used in high-performance engineering applications.
Collaborations
Throughout his career, Laurence has collaborated with esteemed colleagues, including John William Putnam and John P Wesson. These partnerships have contributed to the successful development and implementation of innovative technologies in their field.
Conclusion
Laurence E Bernat's contributions to the field of polyurethane technology exemplify the impact of innovation in engineering. His patented work continues to influence the design and functionality of critical components in commercial gas turbine engines.
