Airframes & Systems
T1, T2a
T1, T2a
Kartei Details
Karten | 499 |
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Sprache | Deutsch |
Kategorie | Technik |
Stufe | Grundschule |
Erstellt / Aktualisiert | 10.11.2014 / 01.01.2023 |
Weblink |
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3 main assemblies
1. Airframe 2. Power plant 3. Equipment => All Systems (hydraulic, Oxygen )
fuselage
Flugzeugrumpf
Fixed wing airplanes can be divided into categories
1. Wing position 2. Tail plane design 3. Type of landing gear
most aeroplanes are monoplanes with
low or high cantilever wings
tails usually?
tail configuration or canard configuration (horizontal stabilizer vor dem Cockpit)
landing gear usually?
fixed or retractable TRICYCLE ( Nicht unter dem Flügel, sondern am fuselage) landing gear
Stress
Wiederstand; applied per unit area of surface=> internal force inside a structural member => resists deformation N/mm^2 or PSI square Inch
Strength
Strength is ability to withstand stress without failure => the maximum stress it can withstand at failure
Stregth to density ratio (specific strength)
specific strength is material strength divided by its density
Strain
deformation of a structural part is called strain and is expressed as ratio of the deformed structure to the non deformed structure
6 Major stresses
Tension 2. Compression => 3. bending 4. Shear 5. Torsion 6. Buckling
Tension
tends to pull part ==> Zieht an etwas Auseinanderziehen
compression
zusammendrücken == > Landung Gear => Feder => Gewicht Flugzeug
shear
2 Platten sind miteinander verbunden => man zieht an beiden => one layer of a material to slide over an adjacent layer
Torsion
Moment => Stossen und ziehen ==> when parts are twisted => results fromm a moment
Torsion strength
torsion strength of material is its resistance to twisting (drehen)
bending
==> Combination of compression and tension ==> verbiegen => Flügem ==> Grösste Kraft bei einem beam (Balken) is at its attachment (Befestigung) => the material of beam should be located where the stress and resulting strain are high
Buckling
A320 Lufthansa => compressing structure with length combined with a small thickness ==> Klinking ( ineinander drücken , Dose ineinader stampfen)
Klinking
result of buckling
elastic Deformation
temporary deformation due to an applied force that is self-reversing after the force is removed
plastic Deformation
when the stress is sufficient to permanently deform the material
stiffness
the rigidity (Steifheit) of an object => resistance against deformation => higher the stiffness, the smaller the deformation due to a given load => Kraft/Deformation = Stiffness ==> Stiffness not to confuse with strength!!
Elasticity
physical property of material which return to their shape after the had been deformed
hight stiffness leads to a
small deformation when a load is applied
junction
starrheit
Hoop Stress
mechanical stress in a direction perpendicular to the radius of the item ==> Kabinendruck
plasticity
the deformation of a material undergoing non-reversible changes of shape in response to applied forces
Creep
tendency of a material to deform under permanent stress => more severe to material subjected to heat for long periosds=>increases with temp.=> Turbine: wird grösser und wieder kleiner, jedoch nicht mehr ganz an den Ursprung; wächst immer ein kleines stück
result od stress
sharp corners or holes ==> cracking (Risse)
When do you say that an aircraft has a cantilever wing
When the wing is attached to the fuselage without external bracing.
double bubber
fueselage wie eine 8
3 different types of fuselage construction principles:
1. truss type or framework type (Gitter) 2. monocoque typ 3. semi-monocoque typ
who carries the wight by the framework fuselage
Struts (Querbalken) carries the weight
framework
Gerüst
Wie macht an eine Tür bei eimer Semi-Monocoque Structure?
mit Reinforced Shell Structure
Wie stoppt mane einen Ris bei einerm Semi-Monocoque Hülle?
Repair by a Doubler
Waht is the Firewall
is a kind of bulkhead => fire resistance between engine and the rest of the airplane