Ultrasonic Washer–Dryer System for Space Habitats: Design Upgrades and Parabolic Flight ReadinessClothing makes up nearly 25% of all non-food supplies sent to the International Space Station (ISS). To support sustainable human missions in deep space, NASA’s Life Support and Habitation Systems Focus Area looks to advance technologies to support and improve logistics. Our team is creating a compact ultrasonic clothing washer/dryer system that bypasses traditional limitations and is suitable for space. Thermal drying uses a lot of energy to evaporate water, while our ultrasonic drying method offers a quicker, more efficient alternative. It uses piezoelectric transducers to vibrate textiles at the micron scale, mechanically removing water as cold mist rather than evaporating it. This speeds up drying and reduces energy use, no matter the fabric makeup. This paper details recent upgrades to a full-scale ultrasonic washer–dryer system, readying it for parabolic flight testing. Improvements include an enhanced human–machine interface, better packaging, and optimized performance and control. We also present extensive pre-flight ground tests conducted to ensure reliability and identify potential risks. Collaborating with P&G, we report preliminary cleaning tests using various detergents. These results lay a crucial foundation for the laundry system designed specifically for space. By cutting clothing-related payload and waste by over 97%, this technology supports long-term human exploration missions on the ISS, the Moon, Mars, and beyond.
Document ID
20260005341
Acquisition Source
Johnson Space Center
Document Type
Presentation
Authors
Ayyoub Momen (Ultrasonic Technology Solutions Knoxville, Tennessee, United States)
Connor Shelander (Ultrasonic Technology Solutions Knoxville, Tennessee, United States)
Melissa McKinley (Johnson Space Center Houston, United States)
Mark Sivik (Procter & Gamble (United States) Cincinnati, United States)
Kristine Niehaus (Procter & Gamble (United States) Cincinnati, United States)
Julie Porter (Procter & Gamble (United States) Cincinnati, United States)
Date Acquired
June 12, 2026
Publication Date
July 12, 2026
Publication Information
Publisher: International Conference on Environmental Systems
Subject Category
Man/System Technology and Life Support
Report/Patent Number
ICES-2026-263
Meeting Information
Meeting: 55th International Conference on Environmental Systems (ICES) 2026
Location: Rio Grande
Country: PR
Start Date: July 12, 2026
End Date: July 16, 2026
Sponsors: International Conference on Environmental Systems