scispace - formally typeset
J

Jie Zhang

Researcher at Beihang University

Publications -  25
Citations -  370

Jie Zhang is an academic researcher from Beihang University. The author has contributed to research in topics: Navigation system & Ultimate tensile strength. The author has an hindex of 8, co-authored 23 publications receiving 258 citations.

Papers
More filters
Journal ArticleDOI

An investigation of hygrothermal effects on adhesive materials and double lap shear joints of CFRP composite laminates

Abstract: This paper was aimed to investigate the hygrothermal effects on the mechanical behavior of the double lap shear joints of Carbon/Epoxy composite laminates, which were bonded using epoxy adhesive film SY14. First, experimental method was used to evaluate the hygrothermal dependent properties of the adhesive and the static response of composite laminate double lap joints at various environment conditions. The specimens were grouped into room temperature/dry (RD), room temperature/wet (RW), elevated temperature/dry (ED) and elevated temperature/wet (EW). The wet specimens were immersed in deionized water at temperature of 90 °C for 60 h and the elevated temperature is 95 °C. Tensile tests were carried out at room temperature and elevated temperature (95 °C) in a controlled chamber. Results showed that the elastic modulus and tensile strength decreased about 24% and 27% respectively after exposure to humidity environment. And a large degradation was found when exposure to high temperature while the plasticity became notable. The failure modes of the double lap shear joints were studied by visual inspection. It was found that both adhesive and cohesive failure happened for dry specimens at room temperature. While failure modes were dominated by cohesive failure after moisture exposure and adhesive failure at elevated temperature. Second, a finite element model was utilized to simulate the damage evolution of the double lap joints. The moisture diffusion process, swelling stress and thermal stress were included. And hygrothermal dependent cohesive law was considered to study the damage evolution. It revealed that failure modes were highly dependent on the weaker strength of adhesive and cohesive. Moisture absorption caused large degradation in cohesive strength, so the failure modes were mostly cohesive failure. Elevated temperature decreases strength of adhesive seriously, so adhesive failure dominates. Good agreement was achieved between the predicted failure loads and experimental results. And the predicted failure modes were also consistent with the experimental phenomenon.
Journal ArticleDOI

A Fast Calibration Method of the Star Sensor Installation Error Based on Observability Analysis for the Tightly Coupled SINS/CNS-Integrated Navigation System

TL;DR: A fast calibration method of the star sensor installation error for the tightly coupled SINS/CNS-integrated navigation system based on maneuvers and observability analysis is proposed and simulations indicate that the proposed method is feasible and effective when only one star is visible at a time.
Journal ArticleDOI

Effects of stacking sequence and rotation angle of patch on low velocity impact performance of scarf repaired laminates

TL;DR: In this paper, a 3D progressive finite element model was established to simulate scarf repaired laminates subjected to low velocity impact, in which intralaminar damage evolution was captured by user-defined subroutine and interlaminar delamination was simulated via the failure of zero-thickness cohesive elements inserted between plies.
Journal ArticleDOI

Low-velocity impact performance and effect factor analysis of scarf-repaired composite laminates

TL;DR: In this paper, the impact performance of scarf-repaired composite laminates was investigated by experimental and numerical methods using continuum damage mechanics and cohesive elements were used in all the interfaces of the adherends (i.e. the patch and the parent).
Journal ArticleDOI

Effect of damage on failure mode of multi-bolt composite joints using failure envelope method

TL;DR: In this article, the effect of composite damage on failure mode prediction of two-bolt and three-bolt composite joints has been investigated, and the results show that bearing damage has greater influence on failure modes compared with net-section damage.