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Controlled Cracking for Industrial Concrete Waste by Steam Pressure Cracking Agent

机译:蒸汽压力裂解剂对工业混凝土废物的控制开裂

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摘要

We propose a quick and controlled cracking method for industrial ceramic waste by applying a steam pressure cracking (SPC) agent. The agent is a non-explosive and low-vibration-type chemical, which was developed by one of the authors of this study. We prepared a concrete specimen that had a diameter and cylinder height of 150 mm. Several grams of the agent cracked the specimen. We could control the cracking better in water than air when the air and water conditions were compared. When tested in water, the agent was placed in the hole of the concrete specimen and ignited, and the specimen could be split into two or three pieces of the same size. However, using another SPC agent that was explosive, the concrete specimen was broken into small fragments and size of the concrete pieces could not be controlled. The crushing mechanism was different for the two cases. The explosive crushed the concrete mainly through elastic shock waves. However, the steam pressure cracking agent breaks the specimen using the steam pressure and shock waves. We demonstrated that the cracking can also be controlled using guide holes. This steam pressure method can be applied to industrial waste as a safe and well-controlled method.
机译:通过施加蒸汽压力裂解(SPC)试剂,为工业陶瓷废物提出了一种快速和受控的开裂方法。该代理是一种非爆炸性和低振动型化学品,由本研究的作者之一开发。我们制作了一种混凝土试样,其直径和圆柱高度为150毫米。几克代理人破裂了样品。在比较空气和水条件时,我们可以在水中控制裂缝。当在水中进行测试时,将试剂置于混凝土试样的孔中并点燃,并且样本可以分成两种相同尺寸的两组或三个。但是,使用爆炸性的另一个SPC剂,将混凝土样本分为小碎片,并且无法控制混凝土件的尺寸。粉碎机制对于两种情况不同。爆炸主要通过弹性冲击波粉碎混凝土。然而,蒸汽压力裂解剂使用蒸汽压力和冲击波断裂样品。我们证明了裂缝也可以使用引导孔控制。这种蒸汽压力方法可以作为一种安全且良好控制的方法应用于工业废物。

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  • 作者单位

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Department of System Design Engineering Faculty of Engineering Science Akita University Akita 010-8502 Japan;

    Research & Development Department Nippon Koki Co. Ltd. Fukushima 961-8686 Japan;

    Research & Development Department Nippon Koki Co. Ltd. Fukushima 961-8686 Japan;

    Research & Development Department Nippon Koki Co. Ltd. Fukushima 961-8686 Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

    Sanwa Tekki Co. Ltd. 6-4-6 Minami-Shinagawa Shinagawa-ku Tokyo Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steam Pressure Cracking Agent; Industrial Ceramics Waste; Recycling Process;

    机译:蒸汽压力裂解剂;工业陶瓷废物;再循环过程;

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