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Characterisation of Titanium Powder Flow, Shear and Bulk Properties Using the FT4 Powder Rheometer

机译:使用FT4粉末流变仪表征钛粉末流动,剪切和散装性能

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In order to reliably design and operate different powder processes, an understanding of the dynamic flow, shear and bulk properties of powders is required. Generally, powders are evaluated by several techniques that determine their flow, shear and bulk properties. The techniques can include compression tests, shear tests, angle of repose, flow of powder in a funnel, tapped density and many others. In order to minimize the number of instruments required to characterise the powder and eliminate operator error, automated powder rheometers that can do most of the required tests have been developed. The FT4 powder rheometer is one of these and has found widespread use in the pharmaceutical industry. In this study, the FT4 powder rheometer was used to characterise two metallic titanium powders with different particle sizes, namely CSIR Ti -45μm (Fine Powder) and CSIR Ti +45-180μm (Coarse Powder). Their particle size, particle size distribution, bulk densities, compressibility, cohesion, flowability index, effective angle of internal friction and wall friction angle were determined. Preliminary results of the study indicated that fine powder had a lower bulk density, was more compressible and more cohesive than the coarse powder. The fine powder had a lower flowability index compared to the coarse powder for both the Jenike and Peschl classification. The varying degrees of cohesion of these powders were confirmed by the cohesion values that were higher for the fine powder. The fine powder had a lower angle of internal friction but higher wall friction angle compared to the coarse powder.
机译:为了可靠地设计和操作不同的粉末过程,需要了解粉末的动态流动,剪切和散装性能。通常,通过若干技术评估粉末,该技术确定其流动,剪切和散装性能。该技术可包括压缩试验,剪切试验,储存角,漏斗中的粉末流动,螺纹密度等许多。为了最小化表征粉末所需的仪器的数量并消除操作员误差,已经开发了大多数所需测试的自动粉末流变仪。 FT4粉末流变仪是其中之一,发现在制药行业广泛使用。在该研究中,FT4粉末流变仪用于表征两种具有不同颗粒尺寸的金属钛粉末,即Csir Ti-45μm(细粉)和Csir Ti +45-180μm(粗粉)。确定其粒度,粒度分布,散装密度,可压缩性,内聚力,流动性指数,确定内部摩擦和壁摩擦角的有效角度。研究的初步结果表明,细粉具有较低的堆积密度,比粗粉更可压缩,更具内聚。与JNike和PESCHL分类的粗粉相比,细粉具有较低的流动性指数。通过较高的细粉的内聚值证实了这些粉末的不同程度的凝聚力。与粗粉相比,细粉具有较低的内部摩擦角,但壁摩擦角较高。

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