Junyi Zhou

Junyi Zhou

University of Oxford

H-index: 5

Europe-United Kingdom

About Junyi Zhou

Junyi Zhou, With an exceptional h-index of 5 and a recent h-index of 5 (since 2020), a distinguished researcher at University of Oxford, specializes in the field of Mechanical Testing, Impact testing.

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

Piezo-driven clamp release for synchronisation and timing of combined direct-shear stress waves

A new technique to measure the dynamic fracture toughness of solids

System and method for applying dynamic loading to a test specimen

Optimal design, development and experimental analysis of a tension–torsion Hopkinson bar for the understanding of complex impact loading scenarios

Brief moderate-intensity aerobic exercise improves the executive function of Chinese undergraduates regardless of mobile phone addiction: Evidence from the antisaccade task

Physically active undergraduates perform better on executive‐related oculomotor control: Evidence from the antisaccade task and pupillometry

EXPERIMENTAL ANALYSIS OF GLASS FIBRE REINFORCED NYLON-66 UNDER COMBINED LOADING AT LOW AND HIGH RATES OF STRAIN

The mechanical response of commercially pure copper under multiaxial loading at low and high strain rates

Junyi Zhou Information

University

Position

Research Associate Department of Engineering and Science

Citations(all)

72

Citations(since 2020)

72

Cited By

9

hIndex(all)

5

hIndex(since 2020)

5

i10Index(all)

3

i10Index(since 2020)

3

Email

University Profile Page

Google Scholar

Junyi Zhou Skills & Research Interests

Mechanical Testing

Impact testing

Top articles of Junyi Zhou

Piezo-driven clamp release for synchronisation and timing of combined direct-shear stress waves

International Journal of Impact Engineering

2023/10/1

A new technique to measure the dynamic fracture toughness of solids

Polymer Testing

2023/10/1

System and method for applying dynamic loading to a test specimen

2023/5/4

Optimal design, development and experimental analysis of a tension–torsion Hopkinson bar for the understanding of complex impact loading scenarios

Experimental Mechanics

2023/3/22

Brief moderate-intensity aerobic exercise improves the executive function of Chinese undergraduates regardless of mobile phone addiction: Evidence from the antisaccade task

Frontiers in Psychology

2023/3/9

Junyi Zhou
Junyi Zhou

H-Index: 2

Physically active undergraduates perform better on executive‐related oculomotor control: Evidence from the antisaccade task and pupillometry

PsyCh Journal

2023/2

Junyi Zhou
Junyi Zhou

H-Index: 2

EXPERIMENTAL ANALYSIS OF GLASS FIBRE REINFORCED NYLON-66 UNDER COMBINED LOADING AT LOW AND HIGH RATES OF STRAIN

2022/6/30

The mechanical response of commercially pure copper under multiaxial loading at low and high strain rates

International Journal of Mechanical Sciences

2022/6/15

Differences in the effects of reading and aerobic exercise interventions on inhibitory control of college students with Mobile phone addiction

Frontiers in Psychiatry

2022/3/1

Junyi Zhou
Junyi Zhou

H-Index: 2

Lulu Wang
Lulu Wang

H-Index: 3

Experimental analysis of the multiaxial failure stress locus of commercially pure titanium at low and high rates of strain

International Journal of Impact Engineering

2022/12/1

Differences on prosaccade task in skilled and less skilled female adolescent soccer players

Frontiers in Psychology

2021/10/14

Junyi Zhou
Junyi Zhou

H-Index: 2

The sensitivity of the tensile properties of PMMA, Kevlar® and Dyneema® to temperature and strain rate

Polymer

2021/5/26

Application of the Photon Doppler Velocimetry (PDV) technique in tension-torsion Hopkinson bar experiments

EPJ web of conferences

2021

On the development of new test techniques to measure the tensile response of materials at high and ultra-high strain rates

Experimental Mechanics

2021

Junyi Zhou
Junyi Zhou

H-Index: 2

Vito L Tagarielli
Vito L Tagarielli

H-Index: 21

A new technique for tensile testing of high performance engineering material

2020

Junyi Zhou
Junyi Zhou

H-Index: 2

See List of Professors in Junyi Zhou University(University of Oxford)

Co-Authors

academic-engine