利用带有双轴振动的直流电机进行微粉喷点的方法

Muhammad Imawan Badranaya, Juan Pratama, U. A. Salim, S. Suyitno, B. Arifvianto, M. Mahardika
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引用次数: 0

摘要

对粉末流动的全面了解至关重要,尤其是在固体自由成型工艺中添加剂的合成和制药行业的配料过程中。振动法是最广泛使用的粉末流动诱导方法。在这种方法中,通过压电系统振动装有粉末的料斗,使粉末流动。然而,这种方法也存在一些缺点,尤其是在所产生的流动的一致性方面。出现这种情况的原因是,所产生的振动特性只有一个轴方向,这可能会导致粉末压实。为解决这一问题,本研究旨在确定通过双轴振动分配的钛粉的流动特性。通过直流电机对粉末料斗中尺寸小于 74 μm 的钛(Ti)粉末进行 15 分钟的振动,并测量分配粉末的重量,以评估所产生的粉末流动的一致性。结果表明,直流电机产生的粉末流量在分配期间保持一致。然而,在转速为 1800 转/分的情况下,粉末流动率在 5-10 分钟内下降了 8.6%。总之,使用直流电机进行双轴振动可以防止粉末压实现象,并确保在点胶过程中微尺寸粉末的稳定流动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Method for Micro Powder Dispensing by Using DC Motor with a 2-Axis Vibration
A comprehensive understanding of powder flow is essential, particularly in the synthesis of additives in the solid free-forming process and dosage dispensing in pharmaceutical industries. The vibration method is the most widely used for inducing powder flow. In this method, a hopper containing powder is vibrated by a piezoelectric system to allow powder flow. However, there are several drawbacks in this method, particularly in the degree of consistency of the resulting flow. This occurs because the vibration characteristics created have a single axis direction, resulting in which can lead to powder compaction. To resolve this problem, this research is conducted to determine the flow properties of titanium powder dispensed by 2-axis vibration. The titanium (Ti) powder having a size of less than 74 μm in the powder hopper was vibrated for 15 min by a DC motor and the weight of the dispensed powder was measured to evaluate the consistency of the resulting powder flow. The result shows that the powder flow generated by the DC motor was consistent during the period of dispensing. However, the powder flow rate dropped up to 8.6% during 5-10 min of dispensing at a speed of 1800 rpm. In conclusion, the 2-axis vibration by using a DC motor could prevent the powder compacting phenomenon and ensure a consistent flow of micro-sized powders during the dispensing process.
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