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Influence of Different In-Process and Building Materials with Varying Hardness on Impact Sensitivity of the Matchhead Composition

机译:不同型材和建筑材料对柴头组成的影响敏感性的影响

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The objective of this research work is to study the influence of different in-process contact materials (steel, aluminium and brass) and building contact materials (concrete and wood), and its hardness on the impact sensitivity of matchhead composition. The BAM fall hammer was used for measurement of impact sensitivity. The result demonstrated that the in-process and building contact materials, and its hardness imparted variation to the sensitivity between 3.33J and 15.892J. The least LIE was found at 3.33J for the steel at 115 HRB and 117 HRB; 3.72J for aluminium at 53 HRB; 4.7J for brass at 82 HRB; 12.16J for concrete at 35 RHN, and 13.14J for wood at 16 HRB. The limited impact energy was lowest when there was contact between steel and steel as in-process material and contact between concrete and concrete as building contact material. The impact sensitivity was higher for material with higher hardness for all building and in-process contact materials. Brass and wood is suggested to be used as process and building materials in order to reduce the risk of explosions due to impact sensitivity.
机译:本研究工作的目的是研究不同的过程接触材料(钢,铝和黄铜)和建筑接触材料(混凝土和木材)的影响,以及其对匹配头组成的影响敏感性的硬度。 BAM落锤用于测量冲击敏感性。结果表明,过程和建筑接触材料,其硬度赋予了3.33J和15.892J之间的灵敏度的变化。在115 HRB和117 HRB的钢中,最少的谎言被发现为3.33J; 3.72J为53 HRB的铝; 4.7J为82 HRB的黄铜; 12.16J在35 rhn的混凝土,13.14J为16小时,16 HRB。当钢和钢接触时,有限的冲击能量是最低的,作为过程中的材料和混凝土和混凝土之间的接触作为建筑接触材料。对于所有建筑物和工艺接触材料具有更高硬度的材料,冲击敏感性更高。建议黄铜和木材用作过程和建筑材料,以降低因冲击敏感性而导致爆炸的风险。

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