A lightweight carbon-phenolic ablator, with a density of 0.5 g/cm3, designed to be used as a thermal protection system for a re-entry space vehicle, was manufactured by infiltration of a carbon felt with a phenolic resin. A sample of this ablative material was tested in a Plasma Wind Tunnel (PWT) facility, simulating erosion and heat flux conditions consistent with an orbital reentry. The surface temperature of the test article was monitored during the PWT test. Microstructural and microtomographic analyses were carried out on the tested sample to investigate the effect of the high heat flux exposure on the composite material, by measuring the amount of ablation and the depth of pyrolyzation. Moreover a finite element model was implemented ...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
ABSTRACT Carbon fiber/phenolic resin composites have long been used as ablative materials in rocketr...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
Thermal Protection Systems (TPS) are designed to protect re-entry space vehicles from the severe hea...
Abstract Space exploration missions rely on ablative heat shields for the thermal protection of spac...
Future space exploration missions beyond Earth's orbit, such as sample returns from Mars, will use a...
Thermal protection systems (TPS) are designed to protect re-entry space vehicles from the severe hea...
This paper presents the initial studies carried out in materials used as thermal protection systems ...
The TPS (Thermal Protection System) is a subsystem providing protection and isolation from aerodynam...
ZURAM® is an ablative carbon-phenolic thermal protection material, developed by the German Aerospace...
The Thermal Protection System (TPS) protects (insulates) a body from the severe heating encountered ...
Ablative thermal protection materials are a key technology for current and future space exploration ...
ABSTRACT Carbon fiber/phenolic resin composites have long been used as ablative materials in rocketr...
Protecting a spacecraft during atmospheric entry is one of highest risk factors that needs to be mit...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
ABSTRACT Carbon fiber/phenolic resin composites have long been used as ablative materials in rocketr...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
Thermal Protection Systems (TPS) are designed to protect re-entry space vehicles from the severe hea...
Abstract Space exploration missions rely on ablative heat shields for the thermal protection of spac...
Future space exploration missions beyond Earth's orbit, such as sample returns from Mars, will use a...
Thermal protection systems (TPS) are designed to protect re-entry space vehicles from the severe hea...
This paper presents the initial studies carried out in materials used as thermal protection systems ...
The TPS (Thermal Protection System) is a subsystem providing protection and isolation from aerodynam...
ZURAM® is an ablative carbon-phenolic thermal protection material, developed by the German Aerospace...
The Thermal Protection System (TPS) protects (insulates) a body from the severe heating encountered ...
Ablative thermal protection materials are a key technology for current and future space exploration ...
ABSTRACT Carbon fiber/phenolic resin composites have long been used as ablative materials in rocketr...
Protecting a spacecraft during atmospheric entry is one of highest risk factors that needs to be mit...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...
ABSTRACT Carbon fiber/phenolic resin composites have long been used as ablative materials in rocketr...
Cost-affordable and reliable manufacturing technologies to produce Carbon/Phenolic Composites (CPCs)...