Learning Goal: I’m working on a mechanical engineering project and need an expla

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Learning Goal: I’m working on a mechanical engineering project and need an explanation and answer to help me learn.you can pick any of the projects, but not project #4 because I need to show it to the professor, please answer all the question and make sure you follor the formatePROJECT 1) NUMERICAL PERFORMANCE ANALYSIS OF VARIOUS HEAT-project #1This project reflects the ability of students to relate and apply their individual understanding related to concepts related to Course Objectives #1, #2, #3, #7, #9 and #10 into a real problem. Using the following tables (Callister Jr., Materials Science) for the mechanical properties of different alloy steels , model stress-strain performance under the applied mechanical conditions (Figure 2) and study the critical failure zones with intense stress concentration and possible edge dislocations.  Case a) Hot-Rolled High-Strength Low-Alloy Steel A656 Grade 1 (Table 11.1b) Case b) Oil-Quenched and Tempered Carbon Steel 1040 (Table 11.2b) Case c) Austenitic, Stainless Steel AISI 409 (Table 11.4) Case d) Ferritic Stainless Steel AISI 316L (Table 11.4) Case e) Martensitic Stainless Steel AISI 440A (Table 11.4) Case f) Precipitation-Hardenable Stainless Steel AISI 17-7PH (Table 11.4) Case g) Gray Cast Iron SAE G1800 with Mixture Structure of Ferrite and Pearlite (Table 11.5) Case h) Nodular Cast Iron ASTM-A536 120–90–02 with Mixture Structure of Tempered martensite (Table 11.5) Case i) Malleable Cast Iron 32510 with Mixture Structure of Ferrite (Table 11.5) Case j) Compacted Graphite Cast Iron ASTM-A842 Grade-450 with Mixture Structure of Pearlite (Table 11.5)PROJECT 2: FRACTURE AND CRACK PROPAGATION ANALYSIS OF CARABINERThis project reflects the ability of students to relate and apply their individual understanding related to concepts related to Course Objectives #1, #2, #3, and #10 into a real problem. Fracture and crack propagation analysis of MARINE CITY 316 Stainless-Steel 4” Carabiners under an axial tensile load of 1000 lbs.Fracture and fatigue behavior of a carabiner subjected to a tensile load is studied numerically using Ansys finite element analyses. First, a carabiner is studied for stress intensity zones under tensile force then the cracked carabiner is computed for crack propagation. In the models, crack lengths, crack depths and crack inclination angles relative to the applied load are discussed based on the obtained results for the selected material.PROJECT 2: FRACTURE AND CRACK PROPAGATION ANALYSIS OF CARABINERThis project reflects the ability of students to relate and apply their individual understanding related to concepts related to Course Objectives #1, #2, #3, and #10 into a real problem. Fracture and crack propagation analysis of MARINE CITY 316 Stainless-Steel 4” Carabiners under an axial tensile load of 1000 lbs.Fracture and fatigue behavior of a carabiner subjected to a tensile load is studied numerically using Ansys finite element analyses. First, a carabiner is studied for stress intensity zones under tensile force then the cracked carabiner is computed for crack propagation. In the models, crack lengths, crack depths and crack inclination angles relative to the applied load are discussed based on the obtained results for the selected material.

 

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