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The article argues that technological change in weaving was significant, and was not a response to declining competitiveness, but part of a transition in markets and organizations that the surviving handlooms experienced.
The process was satisfactory since the coating of polypyrrole was not excessively damaged by the weaving process.
For the MAS and MMAS, the matrix fill is shown to be much faster, since no time-consuming integrations are involved.
While the size and complexity of meshes generated by whisker weaving are currently limited, the algorithm shows promise for extension to much more general problems.
Consequently, it seems that the proposed method enables the design of the optimum weaving structure in the 3-D composites.
However, an available method well-characterizes the weaving process in bringing about interlacement of three orthogonal sets of yarns and hence qualifies to be regarded as the ‘true’ 3D weaving process.
The combination of tools was implemented and the results have been checked, showing a significant impact in the Weaving production process, with gains of 10% in the useful available time by the operator.
Cartwright’s powerloom, by contrast, was little more than a flash in the pan; it was not until after 1815 that powerlooms (of different design) began to play more than a negligible role in cotton weaving, and it was not until the 1850s that weaving by machine triumphed over the alternative, traditional subsector of handloom weaving.

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