Richardson Brendon MET320 Review Assignment - Milling Machines pt2
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MET320 AO Machine Tools
Review Assignment - Milling Machines pt2
Brendon E Richardson
Date: 10/28/2023
The Honor Pledge States:
“I pledge to support the Honor System of ECPI. I will refrain from any form of academic dishonesty
or deception, such as cheating or plagiarism. I am aware that as a member of the academic
community, it is my responsibility to turn in all suspected violators of the honor code. I understand
that any failure on my part to support the Honor System will be turned over to a Judicial Review
Board for determination. I will report to the Judicial Review Board hearing if summoned.”
1.
A 3.500-in.-diameter high-speed steel cutter should revolve at
800
r/min to cut aluminum
(700 CS) efficiently.
2.
When you are face milling and more than one pass is required, the machined surface will
be
Tapered
if the head is not aligned.
3.
In order for the workpiece to be seated properly on parallels, in a vise,
paper
feelers should
be placed under each corner.
4.
The distance from the bottom of the tooth to the pitch circle is called the
dedendum
.
5.
When setting up to cut a gear, place the
large
end of the mandrel on the indexing-head
center.
1.
Which of the following is
not
a formed cutter?
a. Concave.
b.
Gear tooth.
c.
Helical.
d. Convex.
2.
When the vise is being aligned, the indicator may
not
be mounted on the
a. Cutter.
b.
Face of the column.
c.
Solid jaw or parallel in vise.
d. Arbor.
3.
When a two-fluted end mill is used to cut a slot, the maximum depth of cut should be
a.
twice the cutter diameter.
b.
one-half the cutter diameter
c.
one-quarter the cutter diameter.
d.
The same as the cutter diameter.
4.
Which of the following shapes would be produced if the crank were turned 13 full turns
plus 7 holes on the 21-hole circle?
a. Octagon
b. Hexagon
c.
Square
d.
Triangle.
5.
The plain milling cutter is used to produce a
a.
flat surface parallel to its axis.
b.
contoured surface.
c.
vertical surface at 90° to its axis.
d.
angular surface.
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>
I Review
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Find the magnitude of the projected component of the force along the pipe AO.
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