The following data are available from orthogonal cutting experimental. In this case: Thermal diffusivity= 80 mm/s Chip before cutting=0.25 mm Width of cut = 2.2 mm. The cutting force = 1500 N The cutting speed = (your student ID number x10°) mm/s. Volumetric specific heat is 0.0029 J/mm'-C), %3D By Using Cook's equation. determine the cutting temperature if the ambient temperature = 12.85 °C. %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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MENG364 MANUFACTURING TECHNOLOGY 1-Please Put the letter as it is and I will put the student number later 2- Please have to give me the final answer without rounding and with digit number at least 3 digit number should be include and dont forget the Unit 3- please solve the question very quickly
The following data are available from orthogonal cutting
experimental. In this case:
Thermal diffusivity= 80 mm²/s
Chip before cutting=0.25 mm
Width of cut = 2.2 mm.
The cutting force 1500 N
The cutting speed = (your student ID number x10°) mm/s,
Volumetric specific heat is 0.0029 J/mm'-C),
%3D
By Using Cook's equation. determine the cutting temperature if the
ambient temperature = 12.85 °C.
%3D
Transcribed Image Text:The following data are available from orthogonal cutting experimental. In this case: Thermal diffusivity= 80 mm²/s Chip before cutting=0.25 mm Width of cut = 2.2 mm. The cutting force 1500 N The cutting speed = (your student ID number x10°) mm/s, Volumetric specific heat is 0.0029 J/mm'-C), %3D By Using Cook's equation. determine the cutting temperature if the ambient temperature = 12.85 °C. %3D
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