Explain the basic idea of the Impact Test to determine the absorbed energy and the Toughness of a metal specimen by the schematic diagram below. Calculate the absorbed energy and the Toughness for a test where the hammer weight 25kg, the initial height 6 feet and the final height 2.8 feet. The specimen has 10mm x 10mm in a cross-section and 75mm length.
Explain the basic idea of the Impact Test to determine the absorbed energy and the Toughness of a metal specimen by the schematic diagram below. Calculate the absorbed energy and the Toughness for a test where the hammer weight 25kg, the initial height 6 feet and the final height 2.8 feet. The specimen has 10mm x 10mm in a cross-section and 75mm length.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Read the question carefully and give me right solution according to the question. This is I'm uploading second time, first time I was received incomplete and wrong solution. Given solution is
Energy Absorbed = mg(H-h)
Energy Absorbed = 25×9.81×(1.83−0.853) =239.61 J.
![Explain the basic idea of the Impact Test to determine the absorbed energy and the
Toughness of a metal specimen by the schematic diagram below. Calculate the absorbed energy and
the Toughness for a test where the hammer weight 25kg, the initial height 6 feet and the final height
2.8 feet. The specimen has 10mm x 10mm in a cross-section and 75mm length.
B
Impact](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5459d827-89ce-42eb-91b9-9a841cd7b37e%2F732ee811-edd8-4972-bdb5-40583ea8411d%2Fp011bcl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Explain the basic idea of the Impact Test to determine the absorbed energy and the
Toughness of a metal specimen by the schematic diagram below. Calculate the absorbed energy and
the Toughness for a test where the hammer weight 25kg, the initial height 6 feet and the final height
2.8 feet. The specimen has 10mm x 10mm in a cross-section and 75mm length.
B
Impact
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