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Measuring shear properties and normal stresses generated within a rotational shear cell for consolidated and non-consolidated powders

机译:测量固结和非固结粉末的旋转剪切单元内产生的剪切性能和法向应力

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摘要

Powder behaviour and particularly the measurement and prediction of flow properties remains of great importance to industry.Analytical studies over many decades have increased understanding,but it is modern instrumentation,sometimes using empirical methodologies that is providing new means of characterising powders and better understanding of the elements of powder processing.Progress is rapid and every study reveals the potential for further research.This work uses a rotational shear cell to evaluate five very different powders from a large particle ceramic(bi-modal size distribution:60 and 170 mu m)to 4 mu m limestone.The focus of the study was firstly to determine the yield loci of all materials after 9 kPa pre-consolidation and then to use a different shear cell control methodology to investigate the stresses automatically generated normal to the shear plane,as shearing proceeds.Non-consolidated or unstressed powders are of special interest and shear tests were done at close to zero consolidation stress,including the measurement of generated normal stress.The ratio of this generated normal stress to applied shear stress was derived for a wide range of pre-shear conditions and the results suggest that this parameter is differentiating and useful.Values for the coarse and the fine powders varied by a factor of about 2 and up to 3 when the powders were non-consolidated.
机译:粉末的性能,尤其是流动特性的测量和预测对工业仍然很重要。几十年来的分析研究已加深了理解,但它是现代仪器,有时使用经验方法,提供了表征粉末的新方法和对粉末的更好理解。这项工作使用旋转剪切池来评估从大颗粒陶瓷(双峰尺寸分布:60和170μm)到5微米的陶瓷中的五种截然不同的粉末。 4毫米石灰石。研究的重点是首先确定9 kPa预固结后所有材料的屈服点,然后使用不同的剪切单元控制方法研究法向自动生成的垂直于剪切面的应力,即剪切力。非固结或未加应力的粉末特别受关注,并且在zer附近进行了剪切测试o固结应力,包括产生的正应力的测量结果。在各种预剪切条件下得出了该产生的正应力与施加的剪应力之比,结果表明该参数是有区别的和有用的。当粉未固结时,细粉的变化系数约为2到3。

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