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Analysis of the pressure requirements for silk spinning reveals a pultrusion dominated process

机译:对真丝纺制压力要求的分析显示了拉挤成型工艺

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Silks are remarkable materials with desirable mechanical properties, yet the fine details of natural production remain elusive and subsequently inaccessible to biomimetic strategies. Improved knowledge of the natural processes could therefore unlock development of a host of bio inspired fibre spinning systems. Here, we use the Chinese silkworm Bombyx mori to review the pressure requirements for natural spinning and discuss the limits of a biological extrusion domain. This provides a target for finite element analysis of the flow of silk proteins, with the aim of bringing the simulated and natural domains into closer alignment. Supported by two parallel routes of experimental validation, our results indicate that natural spinning is achieved, not by extruding the feedstock, but by the pulling of nascent silk fibres. This helps unravel the oft-debated question of whether silk is pushed or pulled from the animal, and provides impetus to the development of pultrusion-based biomimetic spinning devices.
机译:丝绸是具有理想机械性能的非凡材料,但是自然生产的精细细节仍然难以捉摸,因此仿生策略无法实现。因此,提高对自然过程的了解可能会释放出许多受生物启发的纤维纺丝系统。在这里,我们使用家蚕Bombyx mori来审查自然纺丝的压力要求,并讨论生物挤压域的局限性。这为丝绸蛋白流动的有限元分析提供了一个目标,目的是使模拟域和天然域更紧密地对齐。在两条平行的实验验证路线的支持下,我们的结果表明,实现自然纺丝不是通过挤压原料,而是通过拉动新生的丝纤维。这有助于解开经常被争论的问题,即丝绸是从动物身上被拉出还是拉出,并为基于拉挤成型的仿生纺丝设备的发展提供了动力。

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