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Dynamic Behavior of Air Void during the Discharge of Cohesive Powder in a Hopper Using a Rubber Air Spring

机译:使用橡胶空气弹簧在料斗中粘性粉末排出期间空气空隙的动态行为

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An unstable discharge rate occurs during dry fine powder discharge from a hopper because of the significant two-phase solid/gas interactions that occur in powder flows. In addition, the air bubble phenomenon may occur in a silo during fine powder discharge. In this study, we conducted experiments using a semi-conical dual-structure hopper, and examined the effects on the hopper internal flow structure, cavity fluid pressure, pressure inside the airtight cavity section, and the powder discharge rate when changes are made in the position of the supplied air injection port and the solenoid valve open/close timing. From the experimental results, it was confirmed that an appropriate pressure supply port position exists, and the change in expansion/contraction of the flexible container due to air vibration is determined by the balance between the amount of air inserted and the amount of air discharged, and does not affect the presence or absence of powder so much. Furthermore, as the pressure value in the airtight void is directly related to the change in the expansion and contraction of the flexible container, the maximum amplitude value of the pressure in the airtight void can be kept high and constant at the time of opening and closing the solenoid valve.
机译:由于在粉末流动中发生的显着的两相固体/气体相互作用,在料斗的干细粉末排出期间发生不稳定的放电速率。另外,在细粉放电期间,气泡现象可能在筒仓中发生。在这项研究中,我们使用半锥形双结构料斗进行了实验,并检查了对料斗内流结构,空腔流体压力,气密腔内压力的影响,以及在变化时的粉末放电速率供应的空气喷射口的位置和电磁阀打开/关闭定时。从实验结果中,证实存在适当的压力供应端口位置,并且由于空气振动而导致的柔性容器的膨胀/收缩的变化由插入的空气量和排出的空气量之间的平衡来确定。并且不影响粉末的存在或不存在。此外,随着气密空隙中的压力值与柔性容器的膨胀和收缩的变化直接相关,随着柔性容器的膨胀和收缩的变化,在打开和关闭时,气密空隙中的压力的​​最大幅度值可以保持高并且恒定电磁阀。

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