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drainage Requirements of the Crushing roll Surface

机译:压榨辊表面的排水要求

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The surface roughness of sugar mill rolls is recognised as being a critical facotr in the feeding and juice extraction processes that occur in a milling train. During the past five years, there has been renewed interest in the application of long-life rough surfaces to minimise maintenance costs and minimise the need for roll arching. These new surfaces usually have smaller, more numerous and more closely spaced roughness globules than the globules that are currently produced by roll arcing. The smaller size of the globules also suggests a reduction in he local cross-section available for juice drainage at the interface between the roll surface and the prepared cane or bagasse blanket. If the roll surface is not able to provide adequate drainage, then the grip, as well as other properties, will be affected to the detriment of crushing performance. this paper reports on the results of an investigation which compared the drainage properties of an arced surface to those of a smooth steel surface and a rough sandpaper surface (similar globule size and surface density to proposed new long-life surface). The analysis of the results indicates that the adoption of new long-life surfaces with small-scale roughness should not have a deterimental effect on juice drainage. Some problems with the testing methods are identified with the aim of making the test methods and geometries more rigorous/conclusive in the future. It is show nthat care is required when carrying out and interpreting tests similar to historical uniaxial compression and permeability tests as the magnitude of pressure drops across drainage holes might be significant under certian conditions.
机译:糖厂轧辊的表面粗糙度被认为是碾磨机中进料和榨汁过程中的关键因素。在过去的五年中,人们对使用长寿命粗糙表面产生了新的兴趣,以最大程度地减少维护成本并最大程度地减少对滚拱的需求。这些新表面通常具有比当前通过电弧滚轧产生的小球更小,数量更多,间隔更近的粗糙度小球。较小的小球尺寸还表明,在辊表面与制备的甘蔗或甘蔗渣毯之间的界面处可用于汁液排出的局部横截面减小。如果辊子表面不能提供足够的排水,则抓地力以及其他性能都会影响破碎性能。本文报告了一项调查结果,该调查结果将弧形表面的排水性能与光滑的钢表面和粗糙的砂纸表面的排水性能进行了比较(球形小球的尺寸和表面密度与拟议的新长寿命表面相似)。结果分析表明,采用具有小尺度粗糙度的新的长寿命表面不应对汁液排放产生不利影响。为了使将来的测试方法和几何形状更加严格/结论明确,测试方法存在一些问题。结果表明,在进行和解释类似于历史单轴压缩和渗透率测试的测试时,需要谨慎,因为在特定条件下,排水孔两端的压降幅度可能很大。

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