From: David C. Angstadt
[mailto:dc...@CLEMSON.EDU]
Sent: Saturday, November 03, 2007 2:16 PM
To: Thomas R Cash
Cc: kat...@CLEMSON.EDU
Subject: Re: FW: Confirming your order from 11/1/2007
Kathryn:
This order is fine with me assuming they are still within budget.
Dave
At 09:49 AM 11/3/2007, you wrote:
From: Kathryn Poole [
mailto:KAT...@exchange.clemson.edu]
Sent: Thursday, November 01, 2007 3:30 PM
To: Thomas R Cash
Subject: RE: Confirming your order from 11/1/2007
Thomas,
I also need your advisor's approval for this order. An e-mail is fine.
Order Date
11/01/2007
ORDER CONFIRMATION
Confirmation Number
1101KPOOLE
Order Placed By
Kathryn Poole (kat...@clemson.edu)
Shipping
Billing
Address
Clemson University
102 Fluor Daniel Bldg.
Mechanical Engineering
Clemson, SC 29634
E-Mail
kat...@clemson.edu
Attention
Wagner
Attention
Kathryn Poole
Shipping Method
Payment Method
Ground
Shipment
Details
Visa (**** **** **** 1648)
Products
Line
Quantity
Part Number
Description
Unit Price
Total Price
Ships
1
1
Each
9056K136
Alloy 6061 Aluminum Round Tube 2" OD, 1-1/2" ID, .250" Wall Thickness, 6' Length (Same as 9056K13)
$82.12
$82.12
today
2
1
Each
89155K24
Alloy 6061 Aluminum Oversize Sheet .250" Thick, 12" X 12"
$34.71
$34.71
today
3
1
Each
9056K11
Alloy 6061 Aluminum Round Tube 1-1/2" OD, 1" ID, .250" Wall Thk, 6' Length (Same as 9056K27)
$60.17
$60.17
today
4
2
Each
57145K87
Hinged One-Piece Clamp-on Shaft Collar Steel, 2" Bore, 3-1/4" OD, 5/8" Width
$15.70
$31.40
today
5
1
Each
9525K571
Laminated Buna-N Rubber Sheet Aluminum-Back, 2" Thk, 6" X 6", 70A Durometer (Same as 9525K57)
$29.81
$29.81
3 days
Merchandise
$238.21
Applicable shipping charges and tax will be added.
Phone:(404) 346-7000 Fax:(404) 349-9091 Internet:www.mcmaster.com E-mail: atl....@mcmaster.com
David C. Angstadt
Assistant
Professor
Department of Mechanical Engineering
Clemson University
216 Fluor Daniel Building
Clemson, SC 29634-0921
Phone: 864-656-6851
FAX: 864-656-4435
http://www.ces.clemson.edu/~dca22/home.html
Matlab output:
Pmax =
4.7142e+003 (Newtons)
m = 9.361; % kg
v = 4.02; % m/s
E = 68.9e9; % GPA Youngs modulus
l = 0.68;
do = 0.0508;
di = 0.0381;
I = (pi/64)*(do^4-di^4);
Pmax = (3*E*I/(l^3))*sqrt((m*v^2*l^3)/(3*E*I))