Contact formation and autohesion with respect to their role as the major mechanisms governing the tack between thermoset prepregs in automated fiber placement were explored. Therefore, a novel 90° peel test with strictly separated and individually controllable compaction and debonding phases was employed for experimental tack characterization in a rheometer. Variation of compaction pressure, dwell time and temperature enabled the experimental isolation of contact formation and autohesion influences. The experimentally determined tack, ply-ply contact area and resin viscoelastic characteristics were used to parametrize simplified semi-empirical bond strength sub-models that have originally been developed for thermoplastic composite manufactu...
Non-crimp fabrics (NCF) have become established in the fields of the automotive, aircraft, and wind ...
The automated tape laying (ATL) process has been examined and found to be sensitive to tack and stif...
The Laser-Assisted Fiber Placement (LAFP) process is an additive manufacturing technique with the po...
Contact formation and autohesion with respect to their role as the major mechanisms governing the ta...
Contact formation and autohesion with respect to their role as the major mechanisms governing the ta...
Employing a test method with coupled application and peel phases, tack was characterised for a UD pr...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
AbstractA recently developed peel test designed to simulate the automated tape lay-up (ATL) process ...
A new peel test has been developed which quantifies the tack and dynamic stiffness of uncured prepre...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
The stickiness of prepregs (tack) is considered a decisive material property for the success of high...
Automated fiber placement process is a fast growing technique to manufacture aircraft structures wi...
Laser assisted fiber placement (LAFP) is a promising additive manufacturing technique for large aero...
Automated fiber placement process is a fast growing technique to manufacture aircraft structures wi...
Non-crimp fabrics (NCF) have become established in the fields of the automotive, aircraft, and wind ...
The automated tape laying (ATL) process has been examined and found to be sensitive to tack and stif...
The Laser-Assisted Fiber Placement (LAFP) process is an additive manufacturing technique with the po...
Contact formation and autohesion with respect to their role as the major mechanisms governing the ta...
Contact formation and autohesion with respect to their role as the major mechanisms governing the ta...
Employing a test method with coupled application and peel phases, tack was characterised for a UD pr...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
AbstractA recently developed peel test designed to simulate the automated tape lay-up (ATL) process ...
A new peel test has been developed which quantifies the tack and dynamic stiffness of uncured prepre...
A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used...
The stickiness of prepregs (tack) is considered a decisive material property for the success of high...
Automated fiber placement process is a fast growing technique to manufacture aircraft structures wi...
Laser assisted fiber placement (LAFP) is a promising additive manufacturing technique for large aero...
Automated fiber placement process is a fast growing technique to manufacture aircraft structures wi...
Non-crimp fabrics (NCF) have become established in the fields of the automotive, aircraft, and wind ...
The automated tape laying (ATL) process has been examined and found to be sensitive to tack and stif...
The Laser-Assisted Fiber Placement (LAFP) process is an additive manufacturing technique with the po...