Mechanical modification of softwood pulp fibers using a novel lightweight vertical bar plate

Author:

GU HO-GYUNG,MIN BYUNG-GUL,LEE JI-YOUNG,PARK SEE-HAN,LEE MIN-SEOK,LEE CHANG-YOUNG,KIM CHUL-HWAN

Abstract

Refiner plates made using sand casting have a draft angle, which results in a trapezoidal bar shape. These trapezoidal bar plates have a limited throughput compared to the vertical bar plates, and eventually the edges of the bars become dull, resulting in longer time to reach the target freeness and shorter service life. The new light-weight refiner plate with a bar insertion method into a plate base was developed by selecting an aluminium-based alloy as the plate base material and a stainless steel alloy with high wear resistance as the bar material. The light-weight plate with sharp bar edges was very effective in reducing refining energy by reaching the target freeness faster than the sand-cast bar plate. Finally, the lightweight sharp bar plate, which weighed only about half the weight of the cast bar plate, was expected to significantly contribute to easy replacement, improved paper quality, and larger throughput without excessive loss of fiber length.

Publisher

TAPPI

Subject

Mechanical Engineering,General Materials Science,Media Technology,General Chemical Engineering,General Chemistry

Reference10 articles.

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2. Kay, I.M., Eng. Cast. Solutions 4(1): 48(2002).

3. Sama, S.R. and Manogharan, G.P., “Sand casting design rules,” Pennsylvania State University, State College, PA, USA, 2017. Available [Online] https://sites.psu.edu/shapelab/files/2017/02/Trad_Casting_Rules_Santosh-2kkxcb8.pdf <1April2021>.

4. AFT, “Finebar refiner plates: Low-intensity refining at its finest,” AFT Catalog, Aikawa Fiber Technology, Sherbrooke, QC, Canada, 2019.

5. J&L Fiber Services, “J&L refiner plates: Ultra-BarTM patterns with PowerCastTM technology,” Valmet, Waukesha, WI, USA, 2006.

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