Fatigue failure analysis of washing machine top frame under cyclic loading – an investigative study in mitigating market complaint

Análisis de fallas de fatiga del marco superior de la lavadora bajo la carga cíclica: un estudio de investigación mitigando la queja del mercado

Análise de falha de fadiga do quadro superior da máquina de lavar sob carga cíclica - um estudo de investigação na mitigação de queixa do mercado

Hasnain, Sohail - Mansoor Uz Zaman Siddiqui, Muhammad - Tabassum, Adeel - Haider Raza Naqvi, Syed - Naqvi, Asad A.
Detalles Bibliográficos
2024
Análisis de elementos finitos
Mecánica de fractura
Comportamiento de fractura
Fatiga
Modelado
Simulaciones
Mediciones de tensión-deformación
Finite element analysis
Fracture mechanics
Fracture behavior
Fatigue
Modelling
Simulations
Stress-Strain measurements
Análise de elementos finitos
Mecânica de fratura
Comportamento de fratura
Fadiga
Modelagem
Simulações
Medições de tensão-deformação
Español
Universidad de Montevideo
REDUM
http://revistas.um.edu.uy/index.php/ingenieria/article/view/1421
https://hdl.handle.net/20.500.12806/2681
Acceso abierto
Atribución 4.0 Internacional
Resumen:
Sumario:This study paper looks into the structural integrity and failure mechanisms of washing machine top frames, with the goal of improving household appliance durability and reliability. Critical regions prone to fatigue failure were identified using SolidWorks software. Stress analysis and deformation analysis revealed the failure prone areas but upon assessing the costs associated with designing new molds for modified design and performing the breakeven calculation, we decided to go with an approach of using an alternate material which will not cause any change in existing mold. Polycarbonate (PC) with 50% long glass fiber reinforcement, were investigated to improve fatigue resistance. A new top frame of this material was made along with existing material ABS. Testing on a door simulator machine demonstrated a considerable improvement in durability, with the PC-based top frame demonstrating a 1128% increase in cycle endurance over the ABS counterpart. Top frame made up of ABS broke after 297 cycles and PC with 50% long glass fiber top frame broke after 3697 cycles. These findings highlight the significance of systematic design optimization and material selection for assuring long-term performance and safety in washing machine top frames.