Highly-motivated employee with desire to take on new challenges. Strong worth ethic, adaptability and exceptional interpersonal skills. Adept at working effectively unsupervised and quickly mastering new skills. Hardworking employee with customer service, multitasking and time management abilities. Devoted to giving every customer a positive and memorable experience. Committed job seeker with a history of meeting company needs with consistent and organized practices. Skilled in working under pressure and adapting to new situations and challenges to best enhance the organizational brand. Organized and motivated employee eager to apply time management and organizational skills in various environments. Seeking entry-level opportunities to expand skills while facilitating company growth.
This project involved a combined experimental and computational approach to study the damage and deformation of 3D-printed auxetic honeycombs. We conducted physical tensile and compression tests to gather critical damage properties, which were then used to create a realistic simulation model in LS-DYNA. By correlating the experimental data with the finite element analysis, we successfully analyzed how damage parameters influence the unique deformation mechanisms and failure modes of these structures. This provided a validated model for predicting the structural performance of auxetic materials.