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59results about How to "Prevent oxidative combustion" patented technology

Anticorrosive, anti-fading and environmentally-friendly water-based magnesium alloy cutting fluid

The invention discloses anticorrosive, anti-fading and environmentally-friendly water-based magnesium alloy cutting fluid. The anticorrosive, anti-fading and environmentally-friendly water-based magnesium alloy cutting fluid is prepared from the following components in percentage by mass: 5 to 10 parts of base oil, 5 to 15 parts of an oiliness agent, 10 to 25 parts of organic amine, 5 to 15 parts of a synthetic rust inhibitor, 15 to 25 parts of a functional polyether surfactant, 0.2 to 3 parts of an extreme pressure additive, 3 to 8 parts of a solubilizer, 0.1 to 2 parts of a metal corrosion inhibitor, 0.1 to 2 parts of a magnesium alloy anti-fading agent, 0.1 to 2 parts of a bactericide, 0.1 to 1 part of an antifoaming agent, 0.1 to 10 parts of a pH regulator and 15 to 30 parts of water. The nticorrosive, anti-fading and environmentally-friendly water-based magnesium alloy cutting fluid is outstanding in ticorrosive and lubricating and has water resisting performances, and is high in cleaning and cooling effects, and effectively reduces the major technical problems such as corrosion, oxidative combustion, fading of magnesium alloy, demulsification and layering of the cutting fluid in the magnesium alloy processing process; the pH ranges from 9 to 11, and therefore, the demand of magnesium alloy cutting process can be met well.
Owner:苏州禾川化学技术服务有限公司

Preparation of nontoxic magnesium alloy material for biological implantation

InactiveCN101503764AUniform ignition pointHigh ignition pointProsthesisChemical compositionIngot
The invention relates to a method for preparing a magnesium alloy material suitable for biological implantation, which comprises the following steps: preparing raw materials by the following chemical compositions in percentage by weight: 2.0 to 6.0 percent of Zn, 0.5 to 1.9 percent of Mn, 0.6 to 5.0 percent of Ca, less than or equal to 0.1 percent of total impurities, and the balance of Mg; or preparing the raw materials by the following chemical compositions in percentage by weight: 2.0 to 6.0 percent of Zn, 0.3 to 0.9 percent of Zr, 0.5 to 5.0 percent of Ca, less than or equal to 0.1 percent of total impurities, and the balance of Mg; preheating smelting equipment and adding the Mg into the raw materials; heating the mixture under the protection of argon gas with the flow rate of between 5 and 6 L/min and the pressure of 14 MPa; adding a fire retardant into the molten liquid when the temperature of the molten liquid reaches between 650 and 660 DEG C, raising the temperature of the molten liquid to between 700 and 720 DEG C, adding other alloy elements into the molten liquid respectively, and performing melting reaction; and stirring the mixture until the mixture is uniformly mixed after alloy is completely molten, keeping the mixture stand for 30 to 40 minutes, pressing a deslagging agent into the solution for deslagging, casting the alloy solution into a cast die after keeping the alloy solution for 10 to 20 minutes at the temperature of between 690 and 710 DEG C, and preparing a Mg-Mn series or Mg-Zr series biomedical magnesium alloy material ingot.
Owner:NORTHEASTERN UNIV

Dual-roller thin-belt casting rolling analog equipment as well as usage and control method thereof

The invention provides a simulation equipment of twin-roll strip roll casting, which comprises a medium-frequency induction furnace, an online gas supplying apparatus, a temperature field measuring device near the surface of an online crystallization surface and an online molten pool temperature measuring device. The structure of the simulator of the equipment is that a bottom support, a track of the medium-frequency induction furnace and a limiting stop are disposed on the base plate, two vertical sliding bars are arranged between the bottom support and an upper horizontal channel steel stage, each sliding bar is provided with a big sliding barrel capable of sliding along the bar, an upper cross beam and a lower cross beam are connected between two big sliding barrels, the channel steel stage is equipped with a hydraulic equipment, the hydraulic equipment and the lower cross beam are connected by screws, a casting mold is fixed on a small sliding block by a rapid expansion link, the small sliding block can slide on the lower cross beam, roller on the small sliding block can roll along a curved guide rail to drive the casting mold to move, the curved guide rail is fixed on a supporting board which is fixed in a groove on the inner side of the bottom support. By simulation experiments, matching relationship of each processing parameter in roll casting process can be obtained. The invention is used to direct actual commercial manufacture.
Owner:NORTHEASTERN UNIV

Downdraft carbon-gas co-production gasifier

The invention discloses a downdraft carbon-gas co-production gasifier. The main structure of the gasifier comprises a feed hopper, a stock bin, a gasification reaction chamber, a double-section bucket-shaped water cooling sleeve, a turnover grate and a settling chamber from top to bottom; a carbon discharging auger is arranged at the bottom of the settling chamber; a bucket-shaped conical materialdrawing disc is arranged inside the lower part of the stock bin; and a bucket-shaped conical disc is stacked inside the upper part of the double-section bucket-shaped water cooling sleeve. Biomass fuel is firstly subjected to a high-temperature cracking gasification reaction in the gasification reaction chamber to generate fuel gas, and the fuel gas is discharged downwards from a fuel gas outletin the side wall of a settling chamber; and biomass fuel which is not completely reacted in the gasification reaction chamber is carbonized, then falls into the settling chamber and is cooled to formbiomass carbon, so that simultaneous co-production of carbon and gas of the biomass fuel is realized. The gasifier has the following characteristics: the structure is scientific and ingenious and thefeeding hopper with a double-layer structure can prevent gas from escaping during feeding; the bucket-shaped conical material drawing disc prevents the material bin from material bridging and arching;a gas supply pipe is used as a middle air inlet channel, so that gas feeding is more uniform without dead angles; and the turnover grate has a function of spraying water mist at the same time.
Owner:周勇

Fusion agent for smelting of magnesium alloy containing rare earth yttrium and preparation method thereof

The invention relates to a fusion agent for the smelting of magnesium alloy containing rare earth yttrium and a preparation method thereof, belongs to the technical field of metal material metallurgy and aims to solve the technical problems of large ignition loss and poor purification effect of the rare earth yttrium when the fusion agent is used for smelting the magnesium alloy containing the rare earth yttrium. The invention provides the fusion agent for the smelting of the magnesium alloy containing the rare earth yttrium. The fusion agent contains the following components in percentage byweight: 25-35 percent of magnesium chloride, 30-40 percent of potassium chloride, 8-16 percent of sodium chloride, 10-15 percent of magnesium fluoride, 0.1-0.3 percent of beryllium oxide and 4-10 percent of carbonate. The invention also provides a preparation method of the fusion agent, which comprises the following steps of: mixing and drying the magnesium chloride, the potassium chloride, the sodium chloride, the magnesium fluoride and the beryllium oxide and adding the carbonate to prepare the fusion agent. The fusion agent has the advantages of reasonable composition, high rare earth yttrium yield and good refining effect. The method has the advantages of simple and convenient production process and low cost.
Owner:TAIZHOU VOCATIONAL & TECHN COLLEGE

Composite modified graphite negative electrode material and preparation method thereof

The invention discloses a composite modified graphite negative electrode material and a preparation method thereof. The preparation method comprises the following steps: 1) mixing graphite, an oxidantand an intercalator according to a certain mass ratio to obtain a mixed solution; 2) carrying out stirring reaction on the mixed solution under a constant temperature condition to obtain an intercalation product; and 3) repeatedly washing the intercalation product with deionized water until the pH value of the filtrate is 57, drying the washed intercalation product, heating to a target temperature in an inert atmosphere, and keeping the temperature for a specific time to obtain the target object. The composite modified graphite negative electrode material prepared by the method disclosed by the invention is manganese oxide loaded sulfur-free micro-expanded graphite, and has nanopores and properly enlarged graphite lamellar spacing. The method has the advantages of being high in operability, easy to produce, low in equipment requirement and good in repeatability, and the prepared composite modified graphite negative electrode material has high specific capacity, excellent rate capability and long cycling stability and is easier to use in the field of commercial lithium ion batteries.
Owner:昆明云大新能源有限公司

Hopper device used for material cooling, transferring and storing and material transferring method

The embodiment of the invention relates to a hopper device used for material cooling, transferring and storing and a material transferring method. The hopper device comprises a hopper body. The hopper body comprises a containing part used for storing materials, a jacket and multiple supports. The upper portion of the containing part is in a cylinder shape, and the lower portion of the containing part is in an inverted cone shape. A feeding port is formed in the top of the containing part, and a discharging port is formed in the bottom of the containing part. The discharging port is provided with an outlet sealing switch. The containing part further comprises a feeding cover which is buckled on the feeding port, and the feeding port and the feeding cover are sealed through rubber and are used for isolating air. Materials enter the containing part from the feeding port and are discharged out of the containing part through the discharging port. The jacket is arranged at the outer portion of the containing part, surrounds the containing part and is used for cooling the materials in the containing part. A cooling water outlet is formed in the top of the jacket, and a cooling water inlet is formed in the bottom of the jacket, wherein cooling water flows into the jacket from the cooling water inlet and flows out of the jacket from the cooling water outlet. The multiple supports are arranged on the peripheral edge of the hopper body. The upper portion of the support is connected with the hopper body and is used for supporting the hopper body.
Owner:江西紫宸科技有限公司 +1
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