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Huipu Gao
Huipu Gao
Fashion Institute of Technology
Verified email at fitnyc.edu
Title
Cited by
Cited by
Year
High-performance flexible yarn for wearable piezoelectric nanogenerators
H Gao, PT Minh, H Wang, S Minko, J Locklin, T Nguyen, S Sharma
Smart materials and structures 27 (9), 095018, 2018
712018
Composite melt-blown nonwoven fabrics with large pore size as Li-ion battery separator
H Wang, Y Zhang, H Gao, X Jin, X Xie
International Journal of Hydrogen Energy 41 (1), 324-330, 2016
442016
A sandwich-like composite nonwoven separator for Li-ion batteries
H Wang, H Gao
Electrochimica Acta 215, 525-534, 2016
392016
Fabrication of core-sheath nanoyarn via touchspinning and its application in wearable piezoelectric nanogenerator
H Gao, D Asheghali, NS Yadavalli, MT Pham, TD Nguyen, S Minko, ...
The Journal of The Textile Institute 111 (6), 906-915, 2020
282020
Effects of environmental temperature and humidity on evaporative heat loss through firefighter suit materials made with semi-permeable and microporous moisture barriers
H Gao, AS Deaton, X Fang, K Watson, EA DenHartog, R Barker
Textile Research Journal 92 (1-2), 219-231, 2022
222022
Preparation of hydroentangled CMC composite nonwoven fabrics as high performance separator for nickel metal hydride battery
Y Tian, H Gao, J Wang, X Jin, H Wang
Electrochimica Acta 177, 321-326, 2015
112015
Identifying factors that contribute to structural firefighter heat strain in North America
R Barker, X Fang, S Deaton, E DenHartog, H Gao, R Tutterow, M Schmid
International journal of occupational safety and ergonomics 28 (4), 2183-2192, 2022
92022
Effects of outer shell fabric color, smoke contamination, and washing on heat loss through turnout suit systems
H Gao, AS Deaton, X Fang, RL Barker, E DenHartog, K Watson
Textile Research Journal 92 (11-12), 1909-1922, 2022
62022
Effects of the moisture barrier and thermal liner components on the heat strain and thermal protective performance of firefighter turnout systems
H Gao, AS Deaton, R Barker, X Fang, K Watson
Textile Research Journal 92 (21-22), 4163-4176, 2022
42022
A new test method for evaluating the evaporative cooling efficiency of fabrics using a dynamic sweating hot plate
H Gao, AS Deaton, R Barker
Measurement Science and Technology 33 (12), 125601, 2022
42022
Relationship between heat loss indexes and physiological indicators of turnout-related heat strain in mild and hot environments
H Gao, A Shawn Deaton, R Barker, X Fang, K Watson
International journal of occupational safety and ergonomics 29 (2), 562-572, 2023
22023
Effects of air gaps on heat loss through firefighter turnout composites with different moisture barrier components
H Gao, AS Deaton, R Barker, E DenHartog, X Fang
Fibers and Polymers 23 (11), 3214-3224, 2022
12022
Methods and devices for multi-layer nanofibers
S Sharma, D Asheghali, S Minko, NS Yadavalli, H Gao
US Patent US011136695B2, 2021
12021
The effects of materials and environmental factors on heat loss indexes used to characterize the contribution of turnout suits to heat strain in structural firefighting
H Gao
North Carolina State University, 2021
12021
Impact of Durable Water-Repellent Finishing in Thermal Liner on Firefighter Heat Stress
H Gao, AS Deaton, R Barker
AATCC Journal of Research, 24723444241237313, 2024
2024
Effects of incident solar radiation on evaporative heat loss through firefighter turnout composites incorporating microporous and bi-component type moisture barrier components
H Gao, AS Deaton, RL Barker, E DenHartog, X Fang
The Journal of The Textile Institute, 1-9, 2024
2024
Using a physiological manikin to evaluate the effect of foam thermal reinforcement in firefighter turnout construction on heat strain
H Gao, AS Deaton, RL Barker
The Journal of The Textile Institute 114 (5), 737-745, 2023
2023
A Novel Method for Measuring the Wet Cling Properties of Textiles
H Gao, AS Deaton, RL Barker
Fibers and Polymers 24 (1), 187-194, 2023
2023
Wearable sensors utilizing nanofiber technology
H Gao, D Asheghali, Y Kim, S Sharma, S Minko
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY 255, 2018
2018
High performance piezoelectric energy harvesting textiles
H Gao
University of Georgia, 2018
2018
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