The tip of a cutting tool has stresses at the surfaces, as shown in the sketch. On the upper surface, o is a normal stress and t is a shearing stress. Also, it is known that Txy = - 15.9 MPa. Determine Ox and oy. Then, determine the shearing stress t on the upper surface.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The tip of a cutting tool has stresses at the surfaces, as shown in the sketch. On the
upper surface, o is a normal stress and t is a shearing stress. Also, it is known that
Txy = - 15.9 MPa. Determine ox and oy. Then, determine the shearing stress t on
the upper surface.
y
20°
20°
30°
90°
13.53 MPa
35.39 MPa
(Final Answer: Ox = - 22.7 MPa, oy = 33.8 MPa, t = 30.3 MPa)
Transcribed Image Text:The tip of a cutting tool has stresses at the surfaces, as shown in the sketch. On the upper surface, o is a normal stress and t is a shearing stress. Also, it is known that Txy = - 15.9 MPa. Determine ox and oy. Then, determine the shearing stress t on the upper surface. y 20° 20° 30° 90° 13.53 MPa 35.39 MPa (Final Answer: Ox = - 22.7 MPa, oy = 33.8 MPa, t = 30.3 MPa)
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