Figure 1: body-solid bicep/tricep machine :D A B 1040 E 1070 CRIT 990 Figure 2: Machine Dimensions (All dimension are gi
Posted: Fri Apr 29, 2022 9:54 am
Figure 1: body-solid bicep/tricep machine
A B 1040 E 1070 CRIT 990 Figure 2: Machine Dimensions (All dimension are given in mm.
The project deliverable 2 is a professional report that must include the following points: 1. Describe the problem without addressing any possible solutions - Problem definition. 2. Conduct research to complete properly any missing data or dimension and draw the sketch of the Steel Arm ABCDEF. 3. Create a simplified line diagram of the arm indicating different forces and moments. 4. Define the maximum force that the athlete can apply at both handles. 5. Conduct research and gather information to determine the materials used in the arm. 6. Show the properties of the selected material in a table. 7. Consider the structure as fixed at portion EF and apply required stress analysis at the design critical points by determining in all members: a. the average normal stress due to axial loading if applicable, b. the average shearing stress due to transverse loading if applicable, c. the maximum shearing stress due to the torsional load if applicable, d. the maximum stresses due to the bending behavior if applicable. 8. Select the maximum normal (can be stress due to bending) and shear stresses. 9. Calculate the factor of safety of the machine. 10. Explain how individual members have contributed using a Gantt chart.
The project deliverable 2 is a professional report that must include the following points: 1. Describe the problem without addressing any possible solutions - Problem definition. 2. Conduct research to complete properly any missing data or dimension and draw the sketch of the Steel Arm ABCDEF. 3. Create a simplified line diagram of the arm indicating different forces and moments. 4. Define the maximum force that the athlete can apply at both handles. 5. Conduct research and gather information to determine the materials used in the arm. 6. Show the properties of the selected material in a table. 7. Consider the structure as fixed at portion EF and apply required stress analysis at the design critical points by determining in all members: a. the average normal stress due to axial loading if applicable, b. the average shearing stress due to transverse loading if applicable, c. the maximum shearing stress due to the torsional load if applicable, d. the maximum stresses due to the bending behavior if applicable. 8. Select the maximum normal (can be stress due to bending) and shear stresses. 9. Calculate the factor of safety of the machine. 10. Explain how individual members have contributed using a Gantt chart.