Niskayuna, NY, United States of America

Melvin Robert Jackson

USPTO Granted Patents = 167 

 


Average Co-Inventor Count = 2.8

ph-index = 23

Forward Citations = 2,249(Granted Patents)

Forward Citations (Not Self Cited) = 2,106(Dec 10, 2025)


Inventors with similar research interests:


Location History:

  • Schenectady, NY (US) (1977 - 1998)
  • Corea, ME (US) (2008 - 2011)
  • Niskayuna, NY (US) (1981 - 2012)

Company Filing History:


Years Active: 1977-2012

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Areas of Expertise:
High-Temperature Alloys
Solid Oxide Fuel Cells
Metal Alloy Compositions
Refractory Metal Composites
Oxidation Resistant Coatings
Nickel-Base Superalloys
Turbine Engine Components
Thermal Exposure Evaluation
Robotic Pen Technology
Combinatorial Material Production
Protective Coatings
Advanced Gas Turbine Blades
167 patents (USPTO):Explore Patents

Title: Melvin Robert Jackson: A Pioneer in High-Temperature Composite Articles

Introduction:

Melvin Robert Jackson, hailing from Niskayuna, NY, is an exceptional inventor and researcher in the field of high-temperature composite articles. With an impressive portfolio of 131 patents, Jackson's contributions have significantly advanced the development of refractory metal-intermetallic composites and metal alloy compositions. Let us explore his latest patents, career highlights, and notable collaborations, showcasing his invaluable expertise in this domain.

Latest Patents:

One of Melvin Robert Jackson's recent patents involves a groundbreaking method for forming a refractory metal-intermetallic composite through a series of carefully orchestrated steps. This method combines refractory metal powders with silicide precursors, blending them together to create a powder blend. The blend is then consolidated and mechanically deformed at a specific temperature, followed by a reaction process at an even higher temperature. This results in the formation of both a metal phase and an intermetallic phase, crucial for the creation of refractory metal-intermetallic composites.

Another notable patent by Jackson encompasses improved metal alloy compositions suitable for protecting gas turbine parts at elevated temperatures. These compositions, known as MCrAlY type, consist of Nickel, or Nickel in combination with cobalt and/or iron. Additionally, these compositions incorporate lanthanides and group 4 metals, such as hafnium, zirconium, and titanium. Moreover, the inclusion of group 14 elements like silicon and/or germanium further enhances the Al retention properties of these compositions. The resulting coatings demonstrate exceptional thermal stability and corrosion resistance, making them ideal for gas turbine applications.

Career Highlights:

Melvin Robert Jackson has made significant contributions throughout his career, establishing himself as an authority in the field of high-temperature composite materials. His work primarily revolves around designing novel manufacturing methods, optimizing material compositions, and developing efficient processing techniques for refractory metal-intermetallic composites. These advancements have not only expanded our understanding of these materials but also promoted their practical applications in various industries.

Collaborations:

Throughout his journey, Melvin Robert Jackson has collaborated with esteemed researchers to further his research and bring transformative ideas to life. Notably, he has worked alongside Ji-Cheng Zhao and Ann Melinda Ritter, both renowned in their respective fields. These collaborations have undoubtedly enriched his scientific pursuits and allowed for the exchange of knowledge, promoting innovation and creativity within the realm of high-temperature composites.

Conclusion:

Melvin Robert Jackson's exceptional work in the realm of high-temperature composite articles has revolutionized the field, enabling the development of materials and techniques that have numerous practical applications. With an impressive portfolio of 131 patents and his contribution to companies like General Electric Corporation and others, Jackson's expertise and ingenuity continue to shape the future of high-temperature materials. His dedication to scientific progress, coupled with his remarkable collaborations, solidifies his standing as one of the key pioneers in this domain.

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