The suitability of mechanical clinching (press joining) to join fiber-reinforced plastics with aluminum sheets was investigated. To this end, different types of tools were tested, including split, grooved, flat dies, as well as rectangular ones. The influence of sheet thickness (thin sheets of 2 and 3 mm in thickness) and alloy composition (AA6082-T6 and AA5086) on joinability and mechanical behavior of the joints was analyzed. Single lap shear tests were conducted to characterize the joints, and fracture produced after joining and testing was performed. In addition, the geometry evolution of the joints during clinch joining was studied to understand the material flow and damage evolution of both aluminum and Glass Fiber Reinforced Polymer ...
The joint between different lightweight materials plays a significant role in multi-material design ...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...
The suitability of mechanical clinching (press joining) to join fiber-reinforced plastics with alumi...
The aim of this work is to analyze the possibility to join aluminum alloy AA6086 and composite lamin...
Aluminum alloy sheets have been widely used to build the thin-walled structures by mechanical clinch...
In recent years, the use of aluminum alloy has tended to increase for building lightweight automobil...
This work investigates the mechanism of bonding and the influence of the process parameters during F...
Mechanical joining processes by plastic deformation such as self-piercing riveting, mechanical clinc...
The importance of environment friendly mobility strengthens the need of lightweight design in the au...
In the multi-material lightweight design of structural components for the automotive industry, the j...
AbstractThis paper is focused on experimental evaluation and comparison of progressive damage behavi...
The mechanical clinching as an alternative joining process for fabricating lightweight aluminum to s...
This paper presents an environmentally friendly joining process based on sheet-bulk plastic deformat...
AbstractFriction Press Joining (FPJ) is a joining process for the production of multi material combi...
The joint between different lightweight materials plays a significant role in multi-material design ...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...
The suitability of mechanical clinching (press joining) to join fiber-reinforced plastics with alumi...
The aim of this work is to analyze the possibility to join aluminum alloy AA6086 and composite lamin...
Aluminum alloy sheets have been widely used to build the thin-walled structures by mechanical clinch...
In recent years, the use of aluminum alloy has tended to increase for building lightweight automobil...
This work investigates the mechanism of bonding and the influence of the process parameters during F...
Mechanical joining processes by plastic deformation such as self-piercing riveting, mechanical clinc...
The importance of environment friendly mobility strengthens the need of lightweight design in the au...
In the multi-material lightweight design of structural components for the automotive industry, the j...
AbstractThis paper is focused on experimental evaluation and comparison of progressive damage behavi...
The mechanical clinching as an alternative joining process for fabricating lightweight aluminum to s...
This paper presents an environmentally friendly joining process based on sheet-bulk plastic deformat...
AbstractFriction Press Joining (FPJ) is a joining process for the production of multi material combi...
The joint between different lightweight materials plays a significant role in multi-material design ...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...
A new cold worked, penetrative mechanical reinforcement method was evaluated for its potential to en...