Method for preparing quartz composite material by electrophoretic deposition of silica sol
A silicon dioxide and electrophoretic deposition technology, which is applied in the field of preparing quartz composite materials, can solve the problems of restricting wide application, low impregnation efficiency, and long preparation cycle, and achieve the effects of improving compactness and uniformity, low cost, and short cycle
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Embodiment 1
[0027] A method for electrophoretic deposition of silica sol to prepare a flat plate of quartz fiber reinforced quartz ceramic composite material, comprising the following steps:
[0028] (1) The quartz glass fiber with a purity of 99.95wt% is prepared into a fabric with a size of 200*200*10mm by three-dimensional orthogonal weaving; the fiber surface sizing is removed by burning;
[0029] (2) In a square insulating container with a size of 300*300*80mm, put graphite positive electrodes, quartz fiber fabrics, and graphite negative electrodes of the same size as the fabric in the vertical direction, and connect them to a DC power supply;
[0030] (3) Vacuum inject silica sol with a mass concentration of 25% into the container;
[0031] (4) Turn on the DC power supply, adjust the voltage to 5 volts, and perform electrophoretic deposition of silica on the fabric. When the sol on the upper layer of the container is found to be clear, take out the clarified part, and then add an eq...
Embodiment 2
[0035] A method for electrophoretic deposition of silica sol to prepare a hemispherical quartz fiber reinforced quartz ceramic composite member, comprising the following steps:
[0036] (1) Quartz glass fiber with a purity of 99.95wt% is prepared into a hemispherical fabric with a diameter of 200mm and a thickness of 15mm by three-dimensional and four-way weaving; the fiber surface sizing agent is removed by burning;
[0037] (2) In a drum insulated container with a diameter of 300mm and a depth of 400mm, put graphite anodes, quartz fiber fabrics, and flat graphite anodes that are well-coordinated with the fabric in sequence in the vertical direction, and connect them to a DC power supply;
[0038] (3) Vacuum inject silica sol with a mass concentration of 27% into the container;
[0039] (4) Turn on the DC power supply, adjust the voltage to 4 volts, and perform electrophoretic deposition of silica on the fabric. When the sol on the upper layer of the container is found to be ...
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