Automatic nano material filtering machine and use method thereof
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A technology of nanomaterials and filters, applied in separation methods, filtration and separation, chemical instruments and methods, etc., can solve the needs of mass production of nanomaterials, affect the performance of nanomaterials, produce defective nanomaterials, etc. problems, to reduce errors, save labor, and avoid solution contamination
Inactive Publication Date: 2013-09-04
SHANDONG UNIV
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However, in the production process of nanomaterials, pollutants such as raw materials and defective nanomaterials will inevitably remain, which seriously affects the performance of nanomaterials. Therefore, how to remove pollutants in nanomaterials and improve the use of nanomaterials Performance is an important content in the production of nanomaterials
[0003] During the production process of nanomaterials, pollutants in the materials need to be filtered out. At present, it is mainly carried out by manual filtration. Manual filtration requires the staff to operate in strict accordance with the filtration steps, but it is inevitable that there will be operational errors, resulting in production losses. The number of times of filtration is small, the operation time is long, and the consumption of cleaning fluid is large, resulting in low efficiency and high cost. This situation can no longer meet the needs of mass production of nanomaterials
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[0054] The present invention is described in detail below in conjunction with accompanying drawing:
[0055] like figure 1 As shown, a nanometer material automatic filter includes a funnel 1, the two sides of the funnel 1 are connected to a symmetrical lifting device through the funnel support shaft 2, an ultrasonic cleaning machine 4 is arranged below the funnel 1, and the bottom of the funnel 1 is connected to a vacuum pump 34 connected;
[0056] The nanomaterial automatic filter also includes a cleaning liquid pump 42, the cleaning liquid pump 42 is connected to the cleaning liquid bucket 41 through a hose, and the cleaning liquid bucket 41 is connected to the nozzle device;
[0057] The ultrasonic cleaning machine 4, the cleaning liquid pump 42 and the vacuum pump 34 are connected with the control host through the control circuit board.
[0058] Funnel 1 comprises funnel top board 26, funnel middle board 27 and funnel base 28, and funnel top board 26 bottoms have two ful...
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Abstract
The invention particularly discloses an automatic nano material filtering machine and a use method thereof. The automatic nano material filtering machine comprises a funnel, wherein two sides of the funnel are connected with symmetric lifting devices through funnel support shafts, an ultrasonic cleaning machine is arranged below the funnel, and the bottom of the funnel is connected with a vacuum pump. The automatic nano material filtering machine also comprises a cleaning solution pump, wherein the cleaning solution pump is connected with a cleaning solution barrel through a flexible pipe, the cleaning solution barrel is connected with a nozzle device, and the ultrasonic cleaning machine, the cleaning solution pump and the vacuum pump are connected with a control host through a control circuit board. According to the automatic nano material filtering device, the automatic control of the whole filtering process can be realized, and thus errors possibly caused by the manual operation are greatly reduced, and the production safety is improved; according to the automatic nano material filtering device, the large-capacity material filtration can be realized, the filtering time is short and the production efficiency is high; and by adopting the cleaning solution flow control and the rapid nozzle movement, a filter net can be efficiently cleaned, the consumption of the cleaning solution can be reduced, and the production cost is saved.
Description
technical field [0001] The invention relates to an automatic filter, in particular to a nanometer material automatic filter and a use method. Background technique [0002] Compared with traditional crystal materials, nanomaterials have high strength-hardness, high diffusivity, high plasticity-toughness, low density, low elastic modulus, high electrical resistance, high specific heat, high thermal expansion coefficient, low thermal conductivity, and strong soft magnetic properties. These special properties enable nanomaterials to be widely used in high mechanical performance environments, photothermal absorption, nonlinear optics, magnetic recording, special conductors, molecular sieves, ultramicro composite materials, heat exchange materials, sensitive components, catalysts and other fields. Due to its high degree of dispersion and a large number of interfaces, nanomaterials provide short-range diffusion paths for atoms, resulting in high diffusivity, which has a significant...
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