lab 4 - Applied Load(lbs Strain at Gage A(theta A = 0 deg...

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Epsilon x Epsilon y 0 3 3 3 3 3 400.2 -67 220 252 -67 252 810 -137 442 506 -137 506 Adjusted Values Epsilon x Epsilon y 400.2 -70.0 217.0 249.0 -70.0 249.0 810.0 -140.0 439.0 503.0 -140.0 503.0 Analytical Results Sigma 1 Sigma 2 Theta P 400.2 8539.0 -1292.0 -21.3 2201.1 400.2 810.0 17282.7 -2615.0 -21.3 4455.0 810.0 Experimental Values Analytical Values Load 400.2 810 400.2 810 Epsilon 1 293.7 593.4 307.4 622.1 Epsilon 2 -114.7 -230.4 -129.9 -263.0 Sigma 1 8246.1 16673.3 8539.0 17282.7 Sigma 2 -934.8 -1846.6 -1292.0 -2615.0 -21.3 -21.3 -19.3 -19.3 Applied Load (lbs) Strain at Gage A (theta A = 0 deg) Channel #1 Strain at Gage B (theta B = 45 deg) Channel #2 Strain at Gage C (theta C = 90 deg) Channel #3
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Unformatted text preview: Applied Load (lbs) Strain at Gage A (theta A = 0 deg) Channel #1 Strain at Gage B (theta B = 45 deg) Channel #2 Strain at Gage C (theta C = 90 deg) Channel #3 Applied Load (lbs) Torque (in-lbs) Shear force (lbs) Principle Angle (deg) J I 12 0.5 0.25 625 1253 Epsilon 1 Epsilon 2 Sigma 1 Sigma 2 613.0-19.3 293.7-114.7 8246.1-934.8 1241.0-19.3 593.4-230.4 16673.3-1846.6 sigma x sigma y sigma xy Epsilon 1 Epsilon 2 2401.2 0.0 7246.9 3321.5 307.4-129.9 4860.0 0.0 14667.7 6722.7 622.1-263.0 Gamma xy Gamma xy Principle Angle (deg) Bending Moment (in-lbs)...
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This note was uploaded on 04/29/2008 for the course MAE 244 taught by Professor Cairns during the Spring '07 term at WVU.

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lab 4 - Applied Load(lbs Strain at Gage A(theta A = 0 deg...

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