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首页> 外文期刊>Journal of Civil Engineering and Management >DEPENDENCES OF SMA MIXTURE AND ITS BITUMINOUS BINDER PROPERTIES ON BITUMEN BATCHING SYSTEM, MIXING TIME AND TEMPERATURE ON ASPHALT MIXING PLANT
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DEPENDENCES OF SMA MIXTURE AND ITS BITUMINOUS BINDER PROPERTIES ON BITUMEN BATCHING SYSTEM, MIXING TIME AND TEMPERATURE ON ASPHALT MIXING PLANT

机译:沥青混合料中SMA混合物及其双键结合性能的关系,混合时间和温度

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Bitumen holds the aggregate in hot mix asphalt (HMA). Without asphalt binder, HMA would simply be crushed stone or gravel. A bitumen batching system (BBS) is comprised of bitumen storage, transportation, weighing and discharge equipment in an asphalt mixing plant (AMP). The function of the equipment is to batch the binder heated up to working temperature and to discharge it into a mixer in batches. In the entire system, the binder is exposed to high temperature and oxygen. Bitumen is slowly oxidized when it is in contact with oxygen. The degree of oxidation is highly dependent on temperature, time and thickness of a bitumen film. This article models the key factors influencing on the dynamics of bitumen oxidation in BBS equipment. Stone mastic asphalt (SMA) mixture was produced from the same materials according to the same job-mix formula (JMF) in neighbouring batch type AMP by changing the mixing time of materials from 20 to 60 s. Bitumen binder was separated from the taken SMA samples and its gradation was identified. Thus, Marshall specimens were produced and tested. Penetration Pen_(25) of bitumen binder recovered in rotary evaporator, softening point T)(sp) was determined and penetration index I_p was calculated. The presented findings of experimental investigation show that the properties of bitumen binder in BBS working at two different technologies changed inconsistently. Due to gravitation, the bitumen intensively flowing into a mixer (BBS1) is impacted by oxidation more than the bitumen batched by a high-pressure pump (BBS2).
机译:沥青将骨料保持在热拌沥青(HMA)中。如果没有沥青粘合剂,HMA只会是碎石或砾石。沥青配料系统(BBS)由沥青混合厂(AMP)中的沥青存储,运输,称重和卸料设备组成。设备的功能是将加热到工作温度的粘合剂分批加入,然后分批排入混合机。在整个系统中,粘合剂会暴露于高温和氧气中。沥青与氧气接触时会缓慢氧化。氧化程度高度依赖于沥青膜的温度,时间和厚度。本文模拟了影响BBS设备中沥青氧化动力学的关键因素。通过在相邻的批处理类型AMP中将相同的材料根据相同的工作混合公式(JMF)由相同的材料生产,方法是将材料的混合时间从20 s更改为60 s。从获取的SMA样品中分离出沥青粘合剂,并确定其等级。因此,生产并测试了马歇尔标本。确定在旋转蒸发仪中回收的沥青粘合剂的渗透率Pen_(25),确定软化点T)(sp),并计算渗透指数I_p。提出的实验研究结果表明,在两种不同技术下工作的BBS中的沥青粘合剂的性能变化不一致。由于重力作用,大量流入混合器(BBS1)的沥青比高压泵(BBS2)分配的沥青受到的氧化作用更大。

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