Advanced Bonding Method for Heterogeneous Systems
An advanced method for seamlessly bonding similar and dissimilar materials, maintaining grain structure to minimize disruptions at the bond interface and enhancing material properties and integrity.
The Challenge:
In the high-stakes realms of aerospace, electronics, and nuclear industries, the integrity of material bonds can mean the difference between success and catastrophic failure. Traditionally, bonding similar and dissimilar materials often involves using interlayers or powders, which unfortunately creates visible bond lines that can become points of weakness. Researchers at INL have pioneered a groundbreaking method to achieve bonding of dissimilar materials through a multi-stage sintering process.
How it Works:
This innovative bonding method is much less energy intensive relative to other diffusion welding type technologies. The process also eliminates the need for additional interface materials to achieve material bonding. It removes the weaknesses associated with visible bond lines, providing a stronger, more reliable bond for a range of materials including ceramics, metals, and various combinations. The method has been demonstrated using Electric Field Assisted Sintering (EFAS) technologies, but it is adaptable for use with multiple sintering technologies, offering flexibility across different manufacturing contexts.
Key Advantages:
Problems Solved
Market Applications
Development Status: TRL 6
US Provisional Patent Application No. 63/593,137, “METHODS OF BONDING OF SIMILAR AND DISSIMILAR MATERIALS AND RELATED ARTICLES,” BEA Docket No. BA-1444
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