Huipu Gao

Huipu Gao

North Carolina State University

H-index: 7

North America-United States

About Huipu Gao

Huipu Gao, With an exceptional h-index of 7 and a recent h-index of 6 (since 2020), a distinguished researcher at North Carolina State University, specializes in the field of Smart textile, protective clothing, nonwoven, polymers.

His recent articles reflect a diverse array of research interests and contributions to the field:

Impact of Durable Water-Repellent Finishing in Thermal Liner on Firefighter Heat Stress

Effects of incident solar radiation on evaporative heat loss through firefighter turnout composites incorporating microporous and bi-component type moisture barrier components

Using a physiological manikin to evaluate the effect of foam thermal reinforcement in firefighter turnout construction on heat strain

Relationship between heat loss indexes and physiological indicators of turnout-related heat strain in mild and hot environments

A Novel Method for Measuring the Wet Cling Properties of Textiles

Effects of air gaps on heat loss through firefighter turnout composites with different moisture barrier components

Effects of the moisture barrier and thermal liner components on the heat strain and thermal protective performance of firefighter turnout systems

Identifying factors that contribute to structural firefighter heat strain in North America

Huipu Gao Information

University

Position

___

Citations(all)

224

Citations(since 2020)

199

Cited By

93

hIndex(all)

7

hIndex(since 2020)

6

i10Index(all)

6

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Huipu Gao Skills & Research Interests

Smart textile

protective clothing

nonwoven

polymers

Top articles of Huipu Gao

Impact of Durable Water-Repellent Finishing in Thermal Liner on Firefighter Heat Stress

AATCC Journal of Research

2024/3/28

Huipu Gao
Huipu Gao

H-Index: 4

Effects of incident solar radiation on evaporative heat loss through firefighter turnout composites incorporating microporous and bi-component type moisture barrier components

The Journal of The Textile Institute

2024/2/14

Using a physiological manikin to evaluate the effect of foam thermal reinforcement in firefighter turnout construction on heat strain

The Journal of The Textile Institute

2023/5/4

Huipu Gao
Huipu Gao

H-Index: 4

Relationship between heat loss indexes and physiological indicators of turnout-related heat strain in mild and hot environments

International journal of occupational safety and ergonomics

2023/4/3

Huipu Gao
Huipu Gao

H-Index: 4

Xiaomeng Fang
Xiaomeng Fang

H-Index: 5

A Novel Method for Measuring the Wet Cling Properties of Textiles

Fibers and Polymers

2023/1

Huipu Gao
Huipu Gao

H-Index: 4

Effects of air gaps on heat loss through firefighter turnout composites with different moisture barrier components

Fibers and Polymers

2022/11

Effects of the moisture barrier and thermal liner components on the heat strain and thermal protective performance of firefighter turnout systems

Textile Research Journal

2022/11

Huipu Gao
Huipu Gao

H-Index: 4

Xiaomeng Fang
Xiaomeng Fang

H-Index: 5

Identifying factors that contribute to structural firefighter heat strain in North America

International journal of occupational safety and ergonomics

2022/10/2

A new test method for evaluating the evaporative cooling efficiency of fabrics using a dynamic sweating hot plate

Measurement Science and Technology

2022/9/6

Huipu Gao
Huipu Gao

H-Index: 4

Effects of outer shell fabric color, smoke contamination, and washing on heat loss through turnout suit systems

Textile Research Journal

2022/6

Effects of environmental temperature and humidity on evaporative heat loss through firefighter suit materials made with semi-permeable and microporous moisture barriers

Animals

2022/9/19

Methods and devices for multi-layer nanofibers

2021/10/5

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

2021

Huipu Gao
Huipu Gao

H-Index: 4

Fabrication of core-sheath nanoyarn via touchspinning and its application in wearable piezoelectric nanogenerator

The Journal of The Textile Institute

2020/6/2

See List of Professors in Huipu Gao University(North Carolina State University)