Fattepur Gururaj, Patil Arun Y, Kumar Piyush, Kumar Anil, Hegde Chandrashekhar, Siddhalingeshwar I G, Kumar Raman, Khan T M Yunus
School of Mechanical Engineering, KLE Technological University, Hubli, Karnataka 580031 India.
Bio-Inspired Design and Optimization Centre (BIODOC), Manipal Institute of Technology Bengaluru, Manipal Academy of Higher Education, Manipal, Karnataka 576104 India.
3 Biotech. 2024 Dec;14(12):312. doi: 10.1007/s13205-024-04153-w. Epub 2024 Nov 25.
Nature's evolutionary mastery has perfected design over the years, yielding organisms superbly adapted to their surroundings. This research delves into the promising domain of bio-inspired designs, poised to revolutionize mechanical engineering. Leveraging insights drawn from prior conversations, we categorize innovations influenced by life on land, in water, and through the air, emphasizing their pivotal contributions to mechanical properties. Our comprehensive review reveals a wealth of bio-inspired designs that have already made substantial inroads in mechanical engineering. From avian-inspired lightweight yet robust materials to hydrodynamically optimized forms borrowed from marine creatures, these innovations hold immense potential for enhancing mechanical systems. In conclusion, this study underscores the transformative potential of bio-inspired designs, offering improved mechanical characteristics and the promise of sustainability and efficiency across a broad spectrum of applications. This research envisions a future where bio-inspired designs shape the mechanical landscape, fostering a more harmonious coexistence between human technology and the natural world.
多年来,大自然的进化掌控力使设计日臻完善,造就了能完美适应周围环境的生物体。这项研究深入探索了具有广阔前景的仿生设计领域,有望给机械工程带来变革。借助先前讨论得出的见解,我们将受陆上、水中及空中生物影响的创新进行分类,强调它们对机械性能的关键贡献。我们的全面综述揭示了大量已在机械工程领域取得重大进展的仿生设计。从受鸟类启发的轻质却坚固的材料,到借鉴海洋生物的流体动力学优化形态,这些创新对于提升机械系统具有巨大潜力。总之,本研究强调了仿生设计的变革潜力,能提供改进的机械特性,并有望在广泛应用中实现可持续性和高效性。这项研究设想了一个未来,即仿生设计塑造机械领域,促进人类技术与自然世界更和谐地共存。