Site Logo E-PROJECTTOPICS

FINITE ELEMENT MODEL FOR PREDICTING RESIDUAL STRESSES IN SHIELDED METAL ARC WELDING OF MILD STEEL PLATES


📝


Presented To


Engineering Department

📄 Pages: 85       🧠 Words: 11900       📚 Chapters: 5 🗂️️ For: PROJECT

👁️‍🗨️️️ Views: 203      

⬇️ Download (Complete Report) Now!

ABSTRACT
This study investigates the prediction of residual stresses developed in shielded metal arc welding of ASTM A36 mild steel platesvia simulation and experiments. The specific objectives were to simulate the shielded manual metal arc welding process by using the finite element method in ANSYS Multiphysics Version 14, to produce experimental samples of butt welded ASTM A36 mild steel plates, to determine the residual stresses developed in the weldment of the steel plates and those generated from the Finite Element Model Simulation, and to establish correlation between experimental and predicted values of residual stress. Findings indicate that the maximum temperature was 1827ÂC while that at the end of the plate was maintained at around 27ÂC. From the Finite Element Model Simulation, the transverse residual stress in the x direction (σx) had a maximum value of 375MPa (tensile) and minimum value of -183MPa (compressive) while in the y direction (σy), the maximum value of 172MPa (tensile) and minimum value of 0.The longitudinal stress in the x direction (σx) indicated a maximum value of 355MPa (tensile) and a minimum value of -10MPa (compressive) while in the y direction (σy), the maximum value was 167MPa and the minimum value of the residual stress was -375MPa. The experimental values as measured by the X-Ray diffractometer were similar as transverse residual stress (σx) along the weld line in the transverse x directionvaried from 353MPa (tensile) to -209MPa (compressive) while in the y direction, stress (σy) along the weld line varied from 177MPa (tensile) to 0. The longitudinal stress measured by the X-Ray diffractometer in the x direction (σx) varied from 339MPa (tensile) to 0 (compressive) while in the y direction (σy) varied from 171MPa (tensile) to -366MPa (compressive). The result of the correlation coefficient test between the experimental and finite element results of residual stresses the was close to unity (1) which indicates a positive uphill linear relationship. The result of the F-Test conducted was also close to unity (1) which indicates the level of variance between the experimental and finite element results of residual stresses was not significant. Based on these results, it was established that using the 3D FEM analysis, results of residual stresses obtained was in good agreement with the experiment.

PLEASE NOTE

This material is a comprehensive and well-written project, structured into Chapter (1 to 5) for clarity and depth.


To access the full material click the download button below


OR


Contact our support team via Call/WhatsApp: 09019904113 for further inquiries.

Thank you for choosing us!

📄 Pages: 85       🧠 Words: 11900       📚 Chapters: 5 🗂️️ For: PROJECT

👁️‍🗨️️️ Views: 203      

⬇️ Download (Complete Report) Now!

🔗 Related Topics

SORPTION OF METAL IONS FROM AQUEOUS SOLUTION BY POLYMER RESINS:DEVELOPMENT OF A GENERALIZED KINETIC MODEL EFFECT OF ORANGE PEEL, WATERMELON PEEL, AND THEIR SYNERGISTIC EFFECT ON THE REMOVAL OF HEAVY METALS FROM DYE WASTEWATER MATHEMATICAL MODELLING OF DRAUGHT CHARACTERISTICS OF SELECTED ANIMAL-DRAWN IMPLEMENTS ON THE UPLAND SOILS OF SAMARU, NIGERIA RELIABILITY BASED CALIBRATION OF PARTIAL SAFETY FACTOR ON CHARACTERISTICS STRENGTH OF STEEL REINFORCEMENT BARS MODELING AND SIMULATION OF COMPACT FLUORESCENT LAMP FOR THE ANALYSIS AND MITIGATION OF HARMONICS INJECTION INTO POWER DISTRIBUTION NETWORK DEVELOPMENT OF ENHANCED DIFFERENTIATED SERVICES MODEL OF CAMPUS INTERNET NETWORK: A CASE STUDY OF AHMADU BELLO UNIVERSITY, ZARIA EVALUATION OF NEEM (AZADIRACHTA INDICA), TIGER NUT (CYPERUS ESCULENTUS) AND FALSE WALNUT (CANARIUM SCHWEINFURTHII) OILS AS METAL WORKING LUBRICANTS DESIGN AND ENVIRONMENTAL - BEHAVIOUR MODELLING OF A BLUETOOTH CONTROLLED PLANTER ROBOT MODELLING AND CONTROL OF MULTI PROCESS SYSTEM USING BOND GRAPH AND DECENTRALIZED MODEL PREDICTIVE CONTROLTECHNIQUE MATHEMATICAL MODELING AND DYNAMIC SIMULATION OF TEMPERATURE DISTRIBUTION IN A CHAMBER FURNACE EFFECTS OF GAS METAL ARC WELDING PARAMETERS ON THE MECHANICAL AND CORROSION BEHAVIOUR OF AUSTENITIC STAINLESS STEEL IN SOME ENVIRONMENTS DEVELOPMENT OF AN OPTIMIZED ROUTING SCHEME FOR A CAPACITATED VEHICLE MODEL DESIGN AND FABRICATION OF AIR SAMPLER IN AIR QUALITY ASSESSMENT FOR SELECTED HEAVY METALS MODELLING OF ENERGY REQUIREMENT DEMAND FOR TILLAGE OPERATIONS IN MAIZE PRODUCTION DYNAMIC MODEL DEVELOPMENT AND RECEDING HORIZON CONTROL OF BLOOD GLUCOSE CONCENTRATION EFFECTS OF INHIBITORS ON CORROSION OF LOW CARBON STEEL IN HYDROCHLORIC ACID PICKLING SOLUTION EXPERIMENTAL INVESTIGATION OF FLOW CHARACTERISTICS OVER SEMI-CIRCULAR BROAD CRESTED WEIR MODELS DEVELOPMENT OF CONCEPTUAL MODELS FOR PLANTS AND EQUIPMENT PROCUREMENT IN TERTIARY INSTITUTIONS IN KADUNA STATE INVESTIGATION OF CORROSION INHIBITION OF GUAVA, BANANA AND ALMOND PLANT EXTRACT IN 0.5M OF HCl AND H2SO4 SOLUTION ON LOW CARBON STEEL OPTIMUM PERFORMANCE OF A BATTERY OF WELLS USING A CCMPUTER SIMULATION MODEL

click on whatsapp