Kempton, PA, United States of America

David J Lach


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 28(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Innovator David J Lach: Advancing Inert Gas Blanketing Technology

Introduction

David J Lach is a notable inventor based in Kempton, Pennsylvania, with a focus on innovations that enhance industrial processes. He holds a patent that addresses the efficient management of inert gases in reactors and vessels, contributing to safer and more effective operations in metal production.

Latest Patents

His primary patent is titled "Method and apparatus for inert gas blanketing of a reactor or vessel." This breakthrough invention outlines a method and apparatus for creating a swirling flow of inert gas over the surface of materials, such as molten metal, within an open-top vessel like an induction furnace. The invention specifically highlights the importance of using an inert gas with a density greater than air, exiting through a specially designed flow controlling apparatus, ensuring a controlled and efficient blanketing process.

Career Highlights

David currently works at Air Products and Chemicals, Inc., where his expertise in gas handling and safety technologies is leveraged to streamline industrial applications. His contributions to the company have not only advanced productivity but have also played a pivotal role in ensuring environmental compliance and operational safety within the industry.

Collaborations

Throughout his career, David has collaborated with esteemed colleagues, including Zbigniew Zurecki and John Lewis Green. Together, they address complex challenges in gas management and chemical processing, driving advancements that benefit both their organization and the wider industry.

Conclusion

David J Lach exemplifies the innovative spirit that is crucial in today’s rapidly evolving industrial landscape. His patented method for inert gas blanketing is a testament to his commitment to improving safety and efficiency in metal production processes. By continuing to collaborate with fellow experts, David is sure to make further contributions that will impact the field for years to come.

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