生物增强材料,走向下一个仿生学

Carmen Rotondi
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引用次数: 0

摘要

这篇论文加入了关于新兴材料革命的辩论,它将计算和生物学原理扩展到物质本身,变得本质上敏感、活跃、可编程。它旨在解释数字、物理和生物世界之间的信息关系如何改变当今的设计实践,以及可持续性范式。提出了“生物增强物质性”的新概念,它指的是未来的产品不再由零件组成,而是作为“材料系统”,在这种系统中,材料-产品-性能通过信息、增长和对环境的适应被设计成一个单一的实体。最后,这种概念上的突变为下一个仿生学铺平了道路,在这个仿生学中,多学科研究策略和编码和解码生命原则的能力有助于可持续的情景,而不仅仅是为了减少人类对生态系统的影响,而是通过人类、生物和人工之间的原始形式的合作和整合来增强自然。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bio-Augmented Materiality, Towards the Next Biomimicry
The paper joins the debate on the emerging material revolution that extends computational and biological principles to matter itself, becoming intrinsically sensitive, active, programmable. It aims to explain how the informed relations between digital, physical and biological worlds are today changing the design practice, as well as the sustainability paradigm. The new concept of “Bio-Augmented Materiality” is presented, which refers to future products no longer made of parts but as “material systems” in which material-product-performance are designed as a single entity through information, growth and adaptation to the context. Finally, this conceptual mutation paves the way to the next biomimicry in which multidisciplinary research strategies and the ability to code and decode life principles are helpful for sustainable scenarios, not simply aimed to reduce the human impact on the ecosystem, rather enhance nature through original forms of cooperation and integration between human, biology and artifice.
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