Wireless tele-transmission intelligent water meter
A technology for smart water meters and housings, applied in measuring devices, instruments, liquid/fluid solid measurement, etc., can solve the problems of difficult process, difficult treatment, large wastewater pollutants, etc., to improve the dispersion effect, reduce the cost of raw materials, cost low cost effect
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Embodiment 1
[0022] A passive remote intelligent water meter, which includes a casing, and the casing is prepared from the following raw materials in parts by weight:
[0023] 200 parts of stainless steel powder, 50 parts of copper powder, 30 parts of alumina, 30 parts of silicon carbide, 25 parts of aluminum nitride, 18 parts of phenolic resin, 15 parts of polycarbonate, 12 parts of chitin, 10 parts of polydimethylsiloxane 8 parts of hydroxyethyl cellulose, 6 parts of boric acid, 5 parts of kaolin, 5 parts of attapulgite, 3 parts of glass fiber, 3 parts of graphite fiber, 2 parts of titanium carbide, 1 part of molybdenum disulfide, and 1 part of talc.
[0024] The preparation method of the above-mentioned shell comprises the following steps:
[0025] Take each raw material according to the above parts by weight;
[0026] Add kaolin and attapulgite into the stirring reactor in turn, mix well, then add 2 times the weight of 1M hydrochloric acid, stir at 200 rpm for 5 minutes, centrifuge to...
Embodiment 2
[0031] A passive remote intelligent water meter, which includes a shell, which is prepared from the following raw materials in parts by weight:
[0032] 250 parts of stainless steel powder, 70 parts of copper powder, 40 parts of alumina, 40 parts of silicon carbide, 28 parts of aluminum nitride, 20 parts of phenolic resin, 17 parts of polycarbonate, 15 parts of chitin, 12 parts of polydimethylsiloxane 10 parts of hydroxyethyl cellulose, 8 parts of boric acid, 7 parts of kaolin, 7 parts of attapulgite, 5 parts of glass fiber, 5 parts of graphite fiber, 3 parts of titanium carbide, 2 parts of molybdenum disulfide, and 2 parts of talcum powder.
[0033] The preparation method of the above-mentioned shell comprises the following steps:
[0034] Take each raw material according to the above parts by weight;
[0035] Add kaolin and attapulgite into the stirring reactor in turn, mix well, then add 2 times the weight of 1M hydrochloric acid, stir at 200 rpm for 5 minutes, centrifuge ...
Embodiment 3
[0041] Performance test of the passive remote transmission intelligent water meter casing material prepared by the present invention:
[0042] Performance tests were performed on the shells prepared in Examples 1 and 2 of the present invention; where the bending strength was tested according to ASTM D790; the tensile strength was tested according to ASTM D638; the notched impact strength was tested according to ASTM D256. The test results of the obtained materials are shown in Table 1:
[0043] Table 1
[0044] Performance parameters
[0045] The present invention also detects the above-mentioned mechanical properties at -70°C, wherein the bending strength and tensile strength both maintain more than 95% in the 120-hour test, and have good stability.
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