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Determination of Waste Industrial Dust Safety Characteristics

机译:废物工业粉尘安全特性的测定

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摘要

This article deals with the assessment of the hazards of dust waste generated by modern CNC (computer numerical control) technologies from the processing of resin-containing plastic composites. The change of the original material into dusty waste predicts the emergence of new hazardous characteristics such as flammability, explosiveness and adverse effects on employee health. The aim of this article is to determine the experimental measurement of dust particle size, its thermal degradation and safety characteristics. Sieve analysis showed that the representative sample contained a 93.8% weight of particles with a size of less than 0.4 mm. Three degrees of thermal degradation of industrial dust samples and heat production (exo reaction ∑ΔH = 9172.9 J/g) were determined by TG (thermogravimetry), DTA (differential thermal analysis) and DSC (differential scanning calorimetr) methods. The measurement safety characteristics such as the lower explosion limit, the maximum explosion pressure, the maximum pressure rise rate, and the calculated cubic constant confirmed that the dust is an explosive, and is determined as explosion class St1 (determined by Cubic constant).
机译:本文旨在评估现代CNC(计算机数控)技术在处理含树脂的塑料复合材料时产生的粉尘废物的危害。原始材料变成多尘废物,预示着新的危险特性的出现,例如易燃性,爆炸性和对员工健康的不利影响。本文的目的是确定粉尘粒度,其热降解和安全特性的实验测量。筛分析表明,代表性样品包含93.8%重量的尺寸小于0.4mm的颗粒。通过TG(热重法),DTA(差热分析)和DSC(差示扫描量热)方法确定了工业粉尘样品的三级热降解和热量产生(外生反应∑ΔH = 9172.9 J / g)。爆炸下限,最大爆炸压力,最大压力上升率和计算出的立方常数等测量安全特性确定粉尘为爆炸物,并确定为爆炸等级St1(由立方常数确定)。

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