Frage 1
Frage
The dislocation can move by requiring [blank_start]........ bond[blank_end] to be broken at a time.
Antworten
-
only one bond
-
multiple bonds
Frage 2
Frage
Positive and negative dislocations move in opposite directions to produce shear of the [blank_start]same[blank_end] sign.
Frage 3
Frage
Positive and negative dislocations (of same type, e.g., screw) attract each other, positives (or negatives) repel.
Frage 4
Frage
The slip plane is defined as ......
Frage 5
Frage
For an edge dislocation, the slip plane is defined as the plane which contains both the line direction an Burgers vector of the dislocation.
Frage 6
Frage
Dislocation motion can be conservative or non-conservative:
• Conservative motion [blank_start]involves no mass transport[blank_end] (i.e., diffusion)
• Non-conservative motion requires [blank_start]the addition/subtraction of atoms[blank_end] or [blank_start]vacancies to the extra half[blank_end] plane
Antworten
-
involves no mass transport
-
the addition/subtraction of atoms
-
vacancies to the extra half
Frage 7
Frage
The force required to move the dislocation is known as .......?
Antworten
-
dislocation force
-
glide force
-
strain force
Frage 8
Frage
Enter the symbols the Frank's rule formula (not given in the formula sheet by the way):
T = [blank_start]..............[blank_end]
Use * as a multiplication sign , alpha as a constant alpha, G as a shear modulus and b as a Burgers vector.
Frage 9
Frage
The Peierls stress is the stress to glide a dislocation through an otherwise perfect crystal.
Frage 10
Frage
What is the definition of the dislocation width?
Frage 11
Frage
Why is the energy or stress is minimised by slip on the close packed planes in the close packed directions?
Frage 12
Frage
Which type of dislocations is more mobile and hence has smaller Pierls Stress?
Antworten
-
Edge dislocation
-
Screw dislocation
Frage 13
Frage
The energy or stress increases with a decrease in dislocation width.
Frage 14
Frage
In FCC metals, Peierls stress is a strong function of temperature while in BCC metals, Peierls is not a strong function of temperature.
Frage 15
Frage
What can cause an increase in number of dislocations/ dislocation density?
Choose one or more than one of the answers.
Antworten
-
Grain Boundaries
-
Interfaces between matrix and precipitates
-
Migrating grain boundaries
-
Homogenous nucleation of dislocations due to very high applied stresses