Shear-thickening fluid-impregnated aramid (STF-im-AR) fabrics have been manufactured for advanced soft body armor applications for which they provide improved ballistic and stab resistances. It is not yet clear whether or not such improvements can be attributed solely to the STF. In this study, the rate-dependent behavior of an STF-im-AR fabric was investigated at the fabric level, using uniaxial tensile, bias-extension, and picture-frame tests. Rate-dependent behavior of the STF-im-AR fabric was observed during uniaxial tensile testing; however, the effect of the STF treatment was slight and consistent with only the inherent effect of the polymeric nature of its constituent fibers. The shear rigidity of the STF-im-AR fabric increased, due ...
The quasi-static and rate-dependent mechanical properties of aramid yarns are presented together wit...
This study reports the ballistic penetration performance of a composite material composed of woven K...
The absorption of dynamic energy during impact of a material is ubiquitous in industrial, biomedical...
Shear-thickening fluid-impregnated aramid (STF-im-AR) fabrics have been manufactured for advanced so...
Shear thickening fluid (STF) is a non-Newtonian fluid featuring the increased viscosity upon high st...
The ballistic resistance of high-strength fabrics improves upon impregnation with Shear Thickening F...
As destructive power of firearms raises over the years, ballistic armors are in continuous need of e...
Great interest has aroused in developing high impact resistant fabrics based on the incorporation of...
The stab resistance of shear thickening fluid (STF)-Kevlar and STF-Nylon fabric composites are inves...
Thesis (Master)--Izmir Institute of Technology, Materials Science and Engineering, Izmir, 2013Includ...
Improvement of the ballistic performance of aramid fabric is an important topic in the study of soft...
The picture frame test was applied to compare Kevlar neat and STF/Kevlar composite fabrics. The digi...
Shear thickening fluids have the potential to improve the effectiveness of fabric materials in body ...
Abstract. The addition of colloidal shear thickening fluids (STFs) to Kevlar fabrics has been shown ...
The stab resistance performance of newly developed fabric composites composed of hexagonal paper hon...
The quasi-static and rate-dependent mechanical properties of aramid yarns are presented together wit...
This study reports the ballistic penetration performance of a composite material composed of woven K...
The absorption of dynamic energy during impact of a material is ubiquitous in industrial, biomedical...
Shear-thickening fluid-impregnated aramid (STF-im-AR) fabrics have been manufactured for advanced so...
Shear thickening fluid (STF) is a non-Newtonian fluid featuring the increased viscosity upon high st...
The ballistic resistance of high-strength fabrics improves upon impregnation with Shear Thickening F...
As destructive power of firearms raises over the years, ballistic armors are in continuous need of e...
Great interest has aroused in developing high impact resistant fabrics based on the incorporation of...
The stab resistance of shear thickening fluid (STF)-Kevlar and STF-Nylon fabric composites are inves...
Thesis (Master)--Izmir Institute of Technology, Materials Science and Engineering, Izmir, 2013Includ...
Improvement of the ballistic performance of aramid fabric is an important topic in the study of soft...
The picture frame test was applied to compare Kevlar neat and STF/Kevlar composite fabrics. The digi...
Shear thickening fluids have the potential to improve the effectiveness of fabric materials in body ...
Abstract. The addition of colloidal shear thickening fluids (STFs) to Kevlar fabrics has been shown ...
The stab resistance performance of newly developed fabric composites composed of hexagonal paper hon...
The quasi-static and rate-dependent mechanical properties of aramid yarns are presented together wit...
This study reports the ballistic penetration performance of a composite material composed of woven K...
The absorption of dynamic energy during impact of a material is ubiquitous in industrial, biomedical...