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首页> 外文期刊>Journal of food engineering >Flow and strength properties of cassava and yam starch-glycerol composites essential in the design of handling equipment for granular solids
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Flow and strength properties of cassava and yam starch-glycerol composites essential in the design of handling equipment for granular solids

机译:木薯和山药淀粉-甘油复合材料的流动性和强度特性对颗粒状固体处理设备的设计至关重要

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摘要

A research was conducted to determine the flow and strength properties of cassava and yam starch-glycerol composites for their application in the design of hopper or any other storage bin, with a consistent flow during the handling of the granular solids, in the food industry. The flow and strength properties of the bulk materials which include the consolidation, shear and unconfined yield stresses were determined at different bulk densities and glycerol concentrations in the range of 1.5-3.0 g/cm~3 and 15-25 ml glyc-erol per 100 g starch using a uniaxial compression test. The flowability of the bulk solids were classified using Jenike's flow specifications. The angles of internal and wall frictions of the bulk solids were determined from their yield loci. The hopper half angles were determined from the conical hopper design chart; and the friction factors, which account for the vibration in the arch thickness and the geometric configuration of the composites, were computed empirically. The results show that the compressive strength of the cassava and yam starch-glycerol composites increased significantly with an increase in bulk density and a decrease in the glycerol concentration (p < 0.05). The cohesiveness of the composites increase with increasing glycerol concentration, up to 25 ml per 100 g starch, because of their increasing flow function (1 <ff< 2). The hopper half angle, friction factor and angles of internal and wall frictions of the cassava starch-glycerol composite at 3.0 g/cm~3 were 18.0°, 2.48, 43.0° and 26.0°, respectively. The higher angle of wall friction at 3 g/cm~3 implies that a steeper hopper wall is required for a consistent flow of the granular solids through a hopper.
机译:进行了一项研究,以确定木薯和山药淀粉-甘油复合材料的流动性和强度特性,以用于食品工业中料斗或任何其他存储箱的设计,并在处理颗粒状固体时保持一致的流动性。在不同的堆积密度和甘油浓度范围为每100片1.5-3.0 g / cm〜3和15-25 ml甘油中测定了散装材料的流动性和强度特性,包括固结,剪切和无侧限屈服应力。克淀粉使用单轴压缩试验。使用Jenike的流量规格对散装固体的流动性进行分类。散装固体的内摩擦和壁摩擦的角度由其屈服位点确定。料斗半角由锥形料斗设计图确定;并根据经验计算了摩擦系数,该摩擦系数解释了拱形厚度中的振动和复合材料的几何构型。结果表明,随着堆积密度的增加和甘油浓度的降低,木薯和山药淀粉-甘油复合材料的抗压强度显着提高(p <0.05)。复合材料的内聚性随甘油浓度的增加而增加,每100克淀粉中最多25毫升,这是因为它们具有增加的流动功能(1 <ff <2)。木薯淀粉-甘油复合材料在3.0 g / cm〜3时的漏斗半角,摩擦系数以及内,壁摩擦角分别为18.0°,2.48、43.0°和26.0°。壁摩擦角在3 g / cm〜3时较大,这意味着需要较陡的料斗壁,以使颗粒状固体始终通过料斗流动。

著录项

  • 来源
    《Journal of food engineering》 |2014年第5期|38-46|共9页
  • 作者单位

    Department of Agricultural and Bioresources Engineering, Federal University of Technology Minna, Nigeria;

    Department of Agricultural and Bioresources Engineering, Federal University of Technology Minna, Nigeria;

    Engineering Department, National Cereal Research Institute Badegi, Niger State, Nigeria;

    Department of Biochemistry, Federal University of Technology Minna, Nigeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flow properties; Cassava starch; Yam starch; Consolidation stress; Flow function;

    机译:流动特性;木薯淀粉;山药淀粉;固结应力;流功能;

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