Lab 1 MET143
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Lab # ___1___
MET 143 - _T-9:30_
_Kim, Alex_
1/3
Lab Day-Time (X - X:00)↑
↑Last Name, First Name
Page #’s ↑
_Mulkey, Cian_
↑Last Name, First Name
_Siurek, Blake_
↑Last Name, First Name
________________________
↑Last Name, First Name
LAB 1 – “Hardness Test”
Hardness Test
Hardness Results
(include appropriate
hardness label with
number, i.e., 38.2
HRE)
Aluminum, HB
102 HB
Aluminum, HRK
78.5 HRK
Aluminum, HRB
60.8 HRB
Steel, HB
192 HB
Steel, HRG
72.8 HRG
Steel, HRA
56.5 HRA
A. What were the indentor-load combinations used for each of the four Rockwell
tests. Include the scale letter with its combination.
HRK uses a 150 kg load and a ⅛” diameter steel sphere. HRB uses a 100 kg load with
a 1/16” diameter steel sphere as well. HRG used a 150 kg load as well with a 1/16”
diameter steel sphere. HRA use don;y a 60 kg load with a 120 degree diamond brale.
B. Why are so many different load and indentor combinations available for hardness
testing?
Different materials require different indentor geometries and loads to accurately display a
detent used for hardness testing. Some softer materials might become impacted too much from
higher loads.
C. Explain why the HRK and HRB values for the aluminum sample are different
from each other. Which one is higher/lower? Why?
They are different because the loads for the two tests are different from one another
and the diameter of the steel sphere is also different.
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Situation 9 - A 6-m long ladder weighing 600 N is shown in the Figure. It is required to determine
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4.5 m
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McGraw-Hill Campus - ALEKS Science - CHM1045 GEN CHEM 1 BLENDED 669113
A bconline.broward.edu/d21/le/content/466883/fullscreen/12868783/View
McGraw-Hill Campus - ALEKS Science
O GASES
Interconverting pressure and force
A chemistry graduate student is designing a pressure vessel for an experiment. The vessel will contain gases at pressures up to 470.0 MPa. The student's
design calls for an observation port on the side of the vessel (see diagram below). The bolts that hold the cover of this port onto the vessel can safely withstand
a force of 2.80 MN.
pressure vessel
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Calculate the maximum safe diameter w of the port. Round your answer to the nearest 0.1 cm.
O cm
Explanation
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O2021 McGraw-Hill Education. All Rights Reserved. Terms of Use
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