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33results about How to "Prevent migration" patented technology

Method of preventing carbon friction material anti oxidation system migration by utilizing carbon vapor deposition

Method of protecting carbon-carbon composite brake disc against migration of anti-oxidant composition through the porosity of the composite brake disc. The method starts with a porous carbon-carbon composite brake disc, and densifies it to a density of 1.70 grams per cubic centimeter or higher. The densified brake disc is then machine to the required dimensions. The pores in the densified brake disc are closed by subjecting it to CVD/CVI processing employing (i) a gaseous feedstock comprising natural gas spiked with 10 to 25% of a more reactive gas, and/or (ii) a temperature in the range of 1100° C. to 1500° C., and/or (iii) a gas pressure in the range 10 to 100 torr, and/or (iv) a gas flow rate of 300 cc/min to 450 cc/min. CVD/CVI processing carried out using these parameters deposits carbon within and closes the pores of the surface area of the carbon-carbon composite brake disc. Subsequently, an anti-oxidant solution is applied to the non-friction surfaces of the resulting carbon-carbon composite brake disc. Due to the fact that the surface pores have been closed by processing using the specified conditions, the composite brake disc resists migration of the anti-oxidant through the body of the disc to the friction surfaces thereof.
Owner:HONEYWELL INT INC

Method for artificially cultivating litchi chinensis bacteria

The invention discloses a method for artificially cultivating litchi chinensis bacteria. The method comprises the following steps: (1) carrying out termite mound building; (2) carrying out termite propagation; (3) carrying out mycelium inoculation; and (4) carrying out daily management. The invention further discloses a method for preparing a litchi chinensis wood crude extract. The method comprises the steps of crushing litchi chinensis wood, adding 0.1mol/L to 0.3mol/L of oxalic acid into the crushed litchi chinensis wood, carrying out treatment for 2.5 to 3.5 hours at the temperature of 98 DEG C to 104 DEG C, washing litchi chinensis wood extracted residues by water, and then, diluting the residues by 3 to 5 times, thereby obtaining the litchi chinensis wood crude extract. Compared with the prior art, the method has the beneficial effects that the migration of termites can be effectively prevented, the propagation of the termites and the growth of the litchi chinensis bacteria are promoted, the wild growth conditions of the litchi chinensis bacteria can be simulated to the maximum, the wild taste of the litchi chinensis bacteria is reserved, the good growth and high yield of the litchi chinensis bacteria are guaranteed, the cost is low, the artificial cultivation of the litchi chinensis bacteria is achieved, and the seasonal restriction of growth of the litchi chinensis bacteria is broken through, so that the method has a great economic value.
Owner:广东祺盛农业科技有限公司

Covalent bonding PET based nanometer silver wire and graphene combined transparent flexible conductive film and preparation method thereof

The invention discloses a preparation method of a covalent bonding PET based nanometer silver wire and graphene combined transparent flexible conductive film. The method comprises the following stepsof (1) primary coating, in which a PET substrate is coated with a nanometer silver wire coating liquid, drying by hot air is carried out, and a conductive film with a nanometer silver wire conductinglayer is obtained; and (2) secondary coating, in which the conductive film with the nanometer silver wire conducting layer is coated with a modified graphene alcoholic solution, UV irradiation and drying by hot air are implemented, and the covalent bonding PET based nanometer silver wire and graphene combined transparent flexible conductive film is obtained. The invention also discloses the covalent bonding PET based nanometer silver wire and graphene combined transparent flexible conductive film. Excellent characteristic and chemical grafting modification of graphene are used innovatively, the PET-based transparent flexible conductive film is obtained after secondary coating, the clunging, conductivity and oxidation-resisting quality are high, and optical performances as the haze and light transmittance are not influenced.
Owner:广东格瑞纳思薄膜科技有限公司
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