Airframe

GPTKB entity

Statements (61)
Predicate Object
gptkbp:instance_of gptkb:aircraft
gptkbp:can_include gptkb:Pilot
Passenger cabin
Cargo hold
gptkbp:designed_by gptkb:Aerospace_engineers
gptkbp:developed_by gptkb:Research_and_development
gptkbp:has_part gptkb:Wings
Fuselage
Landing gear
Empennage
https://www.w3.org/2000/01/rdf-schema#label Airframe
gptkbp:is_associated_with gptkb:traffic_control
gptkb:Pilot_training
Flight operations
Flight safety
Maintenance procedures
Repair techniques
gptkbp:is_critical_for Control surfaces
Flight stability
gptkbp:is_designed_for Structural integrity
Aerodynamic efficiency
Cost efficiency
Weight reduction
gptkbp:is_evaluated_by Computational fluid dynamics
Wind tunnel testing
Simulation models
Certification authorities
gptkbp:is_influenced_by gptkb:Aerodynamics
Material properties
Weight considerations
gptkbp:is_part_of gptkb:civil_aviation
Transportation sector
Aircraft design
Aircraft manufacturing
Engineering field
gptkbp:is_subject_to Structural analysis
Regulatory compliance
Load testing
Environmental testing
Impact testing
Vibration testing
Fatigue testing
gptkbp:is_tested_for gptkb:safety_standards
gptkb:Endurance
Performance standards
Performance under stress
Operational limits
gptkbp:is_used_in gptkb:military_aircraft
gptkb:Commercial_aviation
gptkb:drones
General aviation
Helicopters
Cargo transport
Private jets
gptkbp:made_of Aluminum
Composite materials
gptkbp:manufacturer Aircraft manufacturers
gptkbp:support Payload
Fuel capacity
gptkbp:bfsParent gptkb:Michael_Crichton
gptkbp:bfsLayer 5