Impact events are common in every-day life and can severely compromise the integrity and reliability of high-performing structures such as sandwich composites that are widespread in different industrial fields. Considering their susceptibility to impact damage and the environmental issues connected with their exploitation of synthetic materials, the present work aims to propose a bio-based sandwich structure with an agglomerated cork core and a flax/basalt intraply fabric as skin reinforcement and to address its main weakness, i.e. its impact response. In-service properties are influenced by temperature, therefore the effect of high (60 °C) and low (−40°C) temperatures on the impact behavior of the proposed structures was investigated and a...
The performance of sandwich structures is highly affected by the varying environmental temperature d...
The focus of this study is manufacture of sandwich composites using palm and jute natural fibers wit...
In this study, alternative core materials to commercial cork were searched for. Additionally, aging ...
Impact events are common in every-day life and can severely compromise the integrity and reliability...
Considering the susceptibility of sandwich structures to impact events and the increasing environmen...
Sandwich structures are widespread in all the industrial applications where a high stiffness-to-weig...
The unremitting quest of natural and renewable materials able to replace their synthetic counterpart...
The aim of this experimental investigation is to assess the response to low velocity impacts of gree...
Cork is a sustainable material with remarkable properties. In addition to its main application as wi...
Low-velocity impacts can severely jeopardize the structural reliability of polymer composites. In vi...
The low-velocity impact response of sandwich structures based on fully-recyclable skin and core mate...
Considering the major role played by sandwich structures in many fields where high stiness-to-weight...
Considering the major role played by sandwich structures in many fields where high stiffness-to-weig...
Thanks to the unique flexural properties, sandwich composites are considered as irreplaceable struct...
The performance of sandwich structures is highly affected by the varying environmental temperature d...
The focus of this study is manufacture of sandwich composites using palm and jute natural fibers wit...
In this study, alternative core materials to commercial cork were searched for. Additionally, aging ...
Impact events are common in every-day life and can severely compromise the integrity and reliability...
Considering the susceptibility of sandwich structures to impact events and the increasing environmen...
Sandwich structures are widespread in all the industrial applications where a high stiffness-to-weig...
The unremitting quest of natural and renewable materials able to replace their synthetic counterpart...
The aim of this experimental investigation is to assess the response to low velocity impacts of gree...
Cork is a sustainable material with remarkable properties. In addition to its main application as wi...
Low-velocity impacts can severely jeopardize the structural reliability of polymer composites. In vi...
The low-velocity impact response of sandwich structures based on fully-recyclable skin and core mate...
Considering the major role played by sandwich structures in many fields where high stiness-to-weight...
Considering the major role played by sandwich structures in many fields where high stiffness-to-weig...
Thanks to the unique flexural properties, sandwich composites are considered as irreplaceable struct...
The performance of sandwich structures is highly affected by the varying environmental temperature d...
The focus of this study is manufacture of sandwich composites using palm and jute natural fibers wit...
In this study, alternative core materials to commercial cork were searched for. Additionally, aging ...