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Study on safe air transporting velocity of nanograde aluminum, iron, and titanium

机译:纳米级铝,铁和钛的安全空气传输速度研究

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The process of delivering nanograde metal powders by a high-speed carrier gas is often subject to high explosion risks. This study adopted initial flow rates of 13.1, 8.5, 6.5, and 3.5 m/s for air transporting 30-nm titanium powder, 35-nm iron powder, and 35-nm aluminum powder to gauge the impact on a pipe bend in a 20-1-apparatus. The test results revealed that the 30-nm titanium powder caused an explosion at all initial flow rates; the 35-nm iron powder also caused an explosion, but dust explosion and sintering were eliminated when the flow rate was adjusted to less than 3.5 m/s; and the 35-nm aluminum powder exhibited no explosion or sintering at all flow rates. When pure nitrogen was used for transporting nanograde metal powders, no explosions occurred for all the three types of metal powders. The minimum ignition energy for these three types of nanograde metal powders was less than 1 mJ.
机译:通过高速载气输送纳米级金属粉末的过程通常会面临很高的爆炸风险。这项研究采用初始流量13.1、8.5、6.5和3.5 m / s来空气传输30 nm钛粉,35 nm铁粉和35 nm铝粉,以测量20毫米弯管对弯管的影响-1-装置。测试结果表明,30纳米钛粉在所有初始流量下均引起爆炸。 35纳米铁粉也引起爆炸,但将流量调节至小于3.5 m / s时,消除了粉尘爆炸和烧结。 35 nm铝粉在所有流速下都没有爆炸或烧结。当纯氮气用于运输纳米级金属粉末时,所有三种类型的金属粉末均未发生爆炸。这三种类型的纳米级金属粉末的最小着火能量小于1 mJ。

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