A fixed crane with a mass of 2000 kg uses a stainless steel cable (Yield Strength = 210 MPa) to lift a 2400 kg mass. The center of the gravity of the crane is located at G and can be used to model the weight of the crane at a single point. • Determine the reactions at A and B Determine the minimum diameter that the cable should be to lift a 2400 kg object for the given crane using a factor of safety equal to 2.5. A 2400 kg 1.5 m B +2 m- 4 m-
A fixed crane with a mass of 2000 kg uses a stainless steel cable (Yield Strength = 210 MPa) to lift a 2400 kg mass. The center of the gravity of the crane is located at G and can be used to model the weight of the crane at a single point. • Determine the reactions at A and B Determine the minimum diameter that the cable should be to lift a 2400 kg object for the given crane using a factor of safety equal to 2.5. A 2400 kg 1.5 m B +2 m- 4 m-
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A fixed crane with a mass of 2000 kg uses a stainless steel cable (Yield Strength =210 MPa) to
lift a 2400 kg mass. The center of the gravity of the crane is located at G and ean be used to
model the weight of the crane at a single point.
• Determine the reactions at A and B
• Determine the minimum diameter that the cable should be to lift a 2400 kg object for the
given erane using a factor of safety equal to 2.5.
2400 kg
1.5 m
B
+2 m-
4 m-
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