International Conference on Mechanical Engineering and Robotics in Aerospace - (ICMERA-27)
2nd - 3rd February, 2027 | Haifa, Israel
Multi-format (In-person/Virtual)
Explore conference registration categories designed for every mode of participation.
3rd January, 2027
8th January, 2027
18th January, 2027
2nd - 3rd February, 2027
This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.
SDG 8 — Decent Work and Economic Growth
SDG 9 — Industry, Innovation and Infrastructure
SDG 11 — Sustainable Cities and Communities
SDG 12 — Responsible Consumption and Production
SDG 13 — Climate Action
This track focuses on the latest developments in materials synthesis and processing for aerospace applications. It aims to explore innovative materials that enhance performance and durability in extreme environments.
This session will delve into the integration of robotics in aerospace, highlighting advancements in automation and robotic systems. Topics will include robotic design, control systems, and their applications in manufacturing and maintenance.
This track emphasizes the role of computational mechanics in solving complex aerospace engineering problems. It will cover finite element analysis, computational fluid dynamics, and simulation techniques.
This session will explore the principles of aerodynamics and their implications for aircraft design and performance. Additionally, it will address the challenges of aeroacoustics in reducing noise pollution.
This track will focus on innovative experimental methods for stress analysis in aerospace structures. Participants will discuss techniques such as strain gauging, digital image correlation, and their applications.
This session will cover the latest advancements in instrumentation and control systems used in aerospace applications. Topics will include sensor technologies, data acquisition, and automation strategies.
This track will investigate the behavior of multiphase and granular flows in aerospace contexts. It will address theoretical models, experimental studies, and practical applications in propulsion and material transport.
This session will focus on the principles of orbital mechanics and their application in mission planning and design. Topics will include trajectory optimization, satellite deployment, and interplanetary missions.
This track will explore cutting-edge developments in rocket engine design and performance. Discussions will include propulsion systems, fuel technologies, and efficiency improvements.
This session will delve into the topological synthesis of mechanisms relevant to aerospace applications. It will cover design methodologies, optimization techniques, and case studies.
This track will examine the intersection of biotechnology and nanotechnology within the aerospace sector. Topics will include the development of bio-inspired materials and nanoscale engineering solutions.