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Linking impact-related progeny sizes of cement clinker to modes of single-particle breakage

机译:将与冲击相关的后代大小与单颗粒破损的模式连接到单粒子破损的模式

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摘要

Fragmentation of particulate solids is an important process in many industrial activities, particularly in the mineral, cement and glass industries to comminute the raw materials to a required size. Understanding of processes and mechanisms responsible for fragmentation of particulate solids is a hard task. This may bring great precision for designing and controlling the comminution process. This work aims to contribute to understanding fragmentation of cement clinker particles under impact loading. For this purpose, six narrow-size classes of Portland clinker were fragmented with varying specific impact energy levels in a drop weight test apparatus. Then, breakage probabilities and functions of these size classes were determined from the product size distributions. The calculated breakage functions show evidences for the modes of breakage (meridian cracks to oblique cracks and shattering) given in the literature. Results of this study indicate that self-similarity of progeny size distributions can only be achieved, regardless of particle size and impact energy, if the particles have the same breakage probability, that is the same mode of breakage.
机译:颗粒状固体的破碎化是许多工业活动中的重要过程,特别是在矿物,水泥和玻璃工业中以将原料与所需的尺寸汇集。理解负责颗粒状固体碎片的过程和机制是一项艰巨的任务。这可能为设计和控制粉碎过程带来了很大的精确度。这项工作旨在有助于了解在冲击载荷下的水泥熟料颗粒的破碎化。为此目的,六种窄尺寸的波特兰熟料分段,在下降重试装置中具有不同的特异性冲击能级。然后,从产品尺寸分布确定这些大小类的破坏概率和功能。计算的破损功能表明文献中给出的破损模式(经络裂缝和倾斜裂缝和破碎)的证据。本研究的结果表明,如果颗粒具有相同的破损概率,则只能实现后代尺寸分布的自相似性,这是具有相同破损概率的粒度和冲击能力。

著录项

  • 作者

    Mahmut Camalan; Çetin Hoşten;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 fra/fre;eng
  • 中图分类

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