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Fibre Characterisation Of Pulp Logs Using Acoustics

机译:纸浆纤维的声学特性

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A scoping trial sorted peeler cores according to speed of sound. Subsequent pulping and testing showed that fibre length, pulp strength and various properties of handsheets varied systematically with the velocity of sound along the logs. For example, the average fibre length ranged from 1.8 to 2.6 mm at the two extremes of sound groups. Where the sound travelled slowly along the log the fibre length was short and vice versa. Here we report laboratory and mill trials. First the pulp characteristics of slabwood chip from acoustically sorted logs are determined, and then the results of two mill trials using large numbers of pulp logs are discussed. The two mill trials while substantiating the earlier work did not produce such decisive improvements in fibre sorting as observed with the peeler cores. Overall, acoustics offers the prospect of better fibre allocation according to end-use, and the prospect that, with more closely characterised pulps, papers will have more uniform properties. Acoustic tools provide a totally new and effective means of allocating individual logs to the process for which the fibre is best suited.
机译:范围界定试验根据声音速度对剥离器芯进行了分类。随后的制浆和测试表明,纤维长度,纸浆强度和手抄纸的各种特性会随着音速沿原木而系统地变化。例如,在两个极端声音组中,平均纤维长度在1.8到2.6毫米之间。声音沿着对数线缓慢传播的地方,纤维长度很短,反之亦然。在这里,我们报告实验室和工厂的试验。首先通过声学分选的原木确定了厚木片的纸浆特性,然后讨论了使用大量纸浆原木进行两次轧机试验的结果。两次纸厂试验虽然证实了较早的工作成果,但并没有像剥皮机芯所观察到的那样对纤维分选产生决定性的改善。总体而言,声学提供了根据最终用途分配更好的纤维的前景,以及纸浆特性更接近的纸张具有更均匀特性的前景。声学工具提供了一种全新的有效方式,可将单个原木分配到最适合光纤的过程中。

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