Experimental Shaking Table

#Industry ·2025-09-19

In terms of structural design, some models such as the micro electromagnetic experimental shaking table have distinctive features. Traditional shaking tables have complex transmission mechanisms, including motors, pulleys, and headstocks, which result in large size, heavy weight, and significant space occupation. In contrast, the micro electromagnetic experimental shaking table takes a different approach, replacing the traditional transmission mechanism with an electromagnetic device. The armature is fixed on the vibrating plate B with bolts, the electromagnet fixing base is welded to the shaking table base, and the iron core is further secured to the electromagnet fixing base with bolts. In this way, vibration is generated through the attraction and separation of the electromagnet, which significantly reduces the weight and size of the shaking table. This makes it easy to move and place flexibly in the limited space of a laboratory, effectively solving the drawbacks of traditional equipment.

From the perspective of functional characteristics, Jiangxi Mingxin's experimental shaking table has a high concentrate ratio and can efficiently enrich target minerals. In material separation experiments, its separation efficiency is outstanding, enabling rapid and accurate separation of different components. It is also relatively easy to operate, allowing operators to get started without complex training. At the same time, key parameters such as the bed surface angle can be adjusted as needed. Whether it is for separation experiments of non-ferrous metals (such as tungsten, tin, tantalum, niobium, and chromium ores), ferrous metals (such as iron and manganese ores), or coal, it can adapt to materials with different characteristics through adjustability to achieve ideal experimental results.

In addition, the multi-layer and multi-control shaking table is also a featured product of Jiangxi Mingxin. This shaking table adds a lower beam, an upper beam, and columns, and is equipped with an upper bed surface. It is also provided with slope adjusters on the upper and lower bed surfaces respectively, enabling independent adjustment of the inclination angle of each bed surface. The bed surface connectors installed on each bed surface ensure the vertical installation of the support plates, guaranteeing the stable operation of the equipment and improving the pulp separation effect. This design not only makes full use of space and reduces the floor space occupied by the equipment but also saves power. It is suitable for scenarios where multiple materials need to be processed simultaneously or comparative experiments need to be conducted on different materials.

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Jiangxi Mingxin Metallurgy Equipment Co., Ltd