Published: 17:19, September 19, 2026 | Updated: 17:50, September 19, 2026
HKUST unveils world’s first zero-degradation cooling device
By Shamim Ashraf in Hong Kong
Compared to traditional NiTi materials, the alloy newly developed by the HKUST team exhibits significantly superior fatigue resistance. Its double-layer fin-type refrigerant structure enhances heat transfer efficiency, and the device architecture has been optimized to reduce thermal losses and improve system stability. (PHOTO COURTESY OF HONG KONG UNIVERSITY OF SCIENCE AND TECHNOLOGY)

Researchers from The Hong Kong University of Science and Technology have unveiled the world’s first zero-degradation elastocaloric cooling device which, they hope, could revolutionize sustainable refrigeration technology.

Powered by a fatigue-resistant, solid-state refrigerant, the innovation delivers durable and green cooling, maintaining its stable performance even over a stunning one million operational cycles, the university said, adding that the breakthrough will usher in highly efficient eco-friendly cooling, driving progress towards sustainable global development.

The findings have been published in Joule – a leading academic journal in the energy field – under the title “A zero-degradation elastocaloric cooling device using fatigue-resistant refrigerant”.

According to researchers, refrigeration faces challenges from traditional vapor-compression systems, which are energy-intensive and employ refrigerants that exacerbate the greenhouse effect and damage the ozone layer.

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Elastocaloric cooling, which is based on the reversible stress-induced phase transformation of shape memory alloys, offers a promising green alternative to traditional refrigeration, but its commercialization has been impeded by performance degradation and low reliability.

To overcome the bottleneck, a team led by Sun Qingping, chair professor at the HKUST’s Department of Mechanical and Aerospace Engineering, developed a fatigue-resistant shape memory alloy and integrated it into an innovative refrigerant structure. By combining advanced SMA materials with device-level design and engineering, they have successfully addressed the critical issues of material functional fatigue and structural reliability.

Sun Qingping (third right), Chair Professor in the Department of Mechanical and Aerospace Engineering at The Hong Kong University of Science and Technology, poses for a photo with his team members. They are (from left) Li Xueshi, Su Changfeng and Li Yang, and Lin Hongyang (second right) and Hu Jiyuan (first right). (PHOTO COURTESY OF HONG KONG UNIVERSITY OF SCIENCE AND TECHNOLOGY)

The innovation has resulted in a zero-degradation elastocaloric cooling device capable of maintaining stable cooling performance over long-term operation, according to the team.

“This breakthrough in cooling stability, achieved at both the material and device levels, brings the technology one step closer to real-world applications beyond laboratory demonstrations,” said Sun, who is the corresponding author of the paper.

The team is currently developing an air-conditioner based on the technology, he said, adding: “Moving forward, we aim to further enhance energy efficiency, power density and cost competitiveness of elastocaloric refrigeration systems to accelerate their market adoption as a sustainable cooling solution.”

Contact the writer at shamim@chinadailyhk.com