Wurtzite Boron Nitride Hardness

wurtzite boron nitride hardness

Scientists have discovered that a rare mineral called wurtzite boron nitride (w-BN) is harder than diamond, making it the new title holder of the world’s hardest material. The discovery is a surprise because, while w-BN is hard enough to resist an indentation test under the force of 18% more stress than diamond, it only occurs naturally in volcanic eruptions.

This substance is so rare that scientists haven’t been able to study it in sufficient amounts or create samples that can be tested by experiment. Researchers have tried to synthesize a similar material, lonsdaleite, but this requires extremely high temperatures and pressures.

Wurtzite boron nitride is composed of atoms of boron and nitrogen, alongside carbon. It is chemically and thermally stable, and is used in a range of applications including resistance materials, antiwear additives, and heat shield materials.

Cubic boron nitride is another typical form of the metal, and shares the same crystalline structure as diamond. The boron and nitrogen atoms alternately bond. The resulting c-BN is much less stable than hexagonal boron nitride, but it is still quite strong at room temperature.

Boron nitride has several allotropes, and there are four main types: amorphous, hexagonal, cubic and wurtzite. Allotropes have a different crystal structure, and they have different properties.

Hexagonal boron nitride is the second-hardest of the allotropes, and it is made by treating hexagrams of b-BN under high pressure and temperature. It has a similar crystalline structure to diamond, but the boron and nitrogen atoms are covalently bonded in different planes, so it has very different properties than diamond.


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    wurtzite boron nitride hardnessScientists have discovered that a rare mineral called wurtzite boron nitride (w-BN) is harder than diamond, making it the new title holder […]

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    MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder

    About MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder:
    Ti2SnC ceramics is a new type of structural ceramics that can be machined and has a special layered structure.
    It combines the best properties of both metals and ceramics: like metals, it conducts electricity well.
    Thermal conductivity, mechanical processing, high damage tolerance and thermal shock resistance; Similar to ceramics,
    It has a high elastic modulus, high-temperature resistance, oxidation resistance and corrosion resistance. Tungstenmolybdenummetals is a trusted global MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder supplier. Feel free to send an inquiry about the latest price of Titanium Tin Carbide at any time.


    Product Performance of Titanium Tin Carbide Ti2SnC Powder :

    Titanium tin carbide Ti2SnC powder has high strength and elastic modulus, high thermal conductivity and electrical conductivity, and good workability.


    Technical Parameter of Titanium Tin Carbide Ti2SnC Powder :

    Product NameMFPurityParticle SizeMolecular WeightMelting PointColor
    Titanium Tin CarbideTi2SnC99%325 mesh1962000℃Gray Black

     

    How is MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder Produced?
    Ti3SnC2 ceramics containing FeSnY, Sn and TiC were obtained by using Fe as sintering aid and hot pressing sintering element mixture at 1150 °C and 50 MPa for 10h.Ti2SnC ceramics containing Sn and TiC impurities were obtained by sintering Ti, Sn and graphite in a tube furnace with argon atmosphere at 1600 °C for 4 h.
     
    Applications of MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder :
    Based on the above advantages, Ti2SnC ceramics may be widely used as a matrix or reinforcement.
    Used in aviation, aerospace, weapons and equipment, nuclear industry and electronic information and other high-tech fields.
    Although Ti2SnC ceramics have excellent comprehensive properties and a wide range of application prospects, the material.
    The preparation is difficult and the purity is difficult to control, so the application of Ti3SnC2 ceramics is limited.

     

    Storage Condition of Titanium Tin Carbide Ti2SnC Powder :
    The damp reunion will affect Ti2SnC powder dispersion performance and using effects, therefore, titanium tin carbide Ti2SnC powder should be sealed in vacuum packing and stored in cool and dry room, the titanium tin carbide can not be exposure to air. In addition, the Ti2SnC powder should be avoided under stress.

    Packing & Shipping of Titanium Tin Carbide Ti2SnC Powder :
    We have many different kinds of packing which depend on the titanium tin carbide Ti2SnC powder quantity.
    Titanium tin carbide Ti2SnC powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
    Titanium tin carbide Ti2SnC powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.


    MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder插图



     

    Titanium Tin Carbide Powder Properties

    Other NamesTiSnC, Ti/Sn/TiC, Ti2SnC powder
    CAS No.N/A
    Compound FormulaTi2SnC
    Molecular Weight226.45
    AppearanceDark Gray to Black Powder
    Melting PointN/A
    Boiling PointN/A
    Density6.24 g/cm3
    Solubility in H2ON/A
    Thermal ExpansionN/A
      
      

    Titanium Tin Carbide Powder Health & Safety Information

    Signal WordN/A
    Hazard StatementsN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    Transport InformationN/A
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    About MAX Special Ceramics Material Titanium Tin Carbide Ti2SnC Powder:Ti2SnC ceramics is a new type of structural ceramics that can be machined and has a special […]

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    Why Inconel 625 powder has extremely high corrosion resistance?

    What exactly is Inconel 625 Powder? Powder inonel 625 This material is high in strength and has a very high resistance to corrosion and oxidation. This makes it a good choice for the chemical and aerospace industries. This superalloy exhibits high mechanical strength and hardness even at very low temperatures, around 2000oF/1093oC. It is highly resistant to corrosion and cracking caused by chloride stress. It’s essentially nonmagnetic. Due to its toughness alloy 625 is capable of degrading chloride. Inconel 625’s excellent resistance against corrosion is due to molybdenum/niobium as well as the solid solution containing refractory elements. Inconel 625 has excellent resistance to oxidation thanks to its high levels of nickel and chrome. The non-oxidative corrosive effects of nickel and molybdenum are prevented by the addition of molybdenum or nickel. Similarly, niobium is able to stabilise the alloy during welding to avoid sensitization. Inconel 625 can also be approved for the manufacture of pressure vessels that have a temperature range between 196oC (450oC) or -321of (840of).


    Making Inconel 625 powder
    Inconel 625 is a good material for welding and forming. The temperature at which it can be heated is 2150oF. It should only be used for low temperature hot working to stop the growth of grains. Due to the 625’s high elasticity, it is easily hardened. For composite parts, you should use mild annealing techniques. Because of its incomparable welding properties, alloy 625 can be used to join other metals with different compositions. Inconel 625 is a versatile filler metal that can be used for welding different materials. You can weld the 625 alloy by using manual or automated techniques, like GTAW (gas-tungsten arc welding), resistance welding, and gas metal welding.

    Inconel 625 Powder Application
    Alloy 625 has been primarily designed for steam pipelines. It is also used widely in aero engines as well as pulp and paper machinery. Alloy 625’s main uses include thermal protection, furnace modules and aviation and land-gas turbine engines. Combustion liners, chemical processing plant, and offshore water applications like the jacket for underwater communication cables.

    Inconel 625 powder price
    Inconel powder particle sizes and purity can impact the price. The purchase volume may also have an effect on the price. Large quantities of powder will result in a lower price. On our website, you can see the cost of Inconel Powder 625.

    Powder from Inconel 625
    The Advanc3dmaterials Advanced Material Nano Technology Co. Ltd. Luoyang City (Henan Province), China. This is a trusted and reliable global supplier of chemical materials and manufacturer. This company is a trusted supplier and manufacturer of high quality chemical materials and nanotechnology products with more than 12 years experience, such as Inconel 625, nitride and graphite powders, and 3D printing and sulfide Powders. We are happy to help you find high-quality Inconel 625 powder at a reasonable price. Get in touch You can also inquire at any time.

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    What exactly is Inconel 625 Powder? Powder inonel 625 This material is high in strength and has a very high resistance to corrosion and oxidation. […]

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    Hafnium Nitride HfN Powder CAS 25817-87-2

    About Hafnium Nitride HfN Powder:
    Hafnium nitride is a gray powder with a cubic crystal structure. Melting point 3310℃, microhardness 16GPa.It is fairly stable but easily corroded by aqua regia, concentrated sulfuric acid and hydrofluoric acid. It is produced by direct reaction of hafnium with nitrogen at 900℃, or by reaction of hafnium halides with ammonia or mixed gases of nitrogen and hydrogen. It is an important component of hafnium alloy, an important refractory compound. Hafnium nitride is the most difficult of all known metal nitride compounds to melt, with a melting point of 3310°C. Feel free to send an inquiry to get the latest price if you would like to buy Hafnium Nitride HfN Powder in bulk.

    Product Performance of Hafnium Nitride HfN powder:
    Hafnium Nitride is powder, cubic structure, melting point 3310℃, it is quite stable, but easily by aqua regia,
    concentrated sulfuric acid and hydrogen fluoride acid corrosion. The reaction generated directly by the hafnium
    and nitrogen at 900℃, it is an important part of refractory compounds hafnium alloy.

    Technical Parameter of Hafnium Nitride HfN powder:

    Product Name     MF      Purity   Particle SizeMelting PointDensityColor
    hafnium nitrideHfN99%5-10um3310℃13.2 g/ml  yellow-brown


    Chemical Composition of Hafnium Nitride HfN powder:

    Mg3N2NHfSiOCFeZr
    99%5.1%balance0.01%0.4%0.01%0.25%1.8%


    How is Hafnium Nitride HfN Powder produced?
    Hafnium nitride is produced by direct reaction of hafnium with nitrogen at 900℃, or by reaction of hafnium halides with ammonia or mixed gases of nitrogen and hydrogen.
     
    Applications of Hafnium Nitride HfN Powder:
    Hafnium nitride powder is mainly used in high temperature, oxidation resistance, aviation, aerospace and other fields. The hafnium nitride powder has high purity, small particle size, large specific surface area and high surface activity. It is a kind of refractory hard compound, high decomposition temperature, good chemical stability, so it has good high-temperature resistance, corrosion resistance, wear resistance, is a good high-temperature structural material, super hard tool material and surface protection material. It has been widely used in aerospace, automobile, machinery manufacturing, shipbuilding and chemical industry.
    With the rapid development of the industrial economy, the demand for aluminum alloy welded structural parts is increasing day by day so that the study of aluminum alloy weldability is also in-depth. At present, aluminum alloy is the most used alloy, which contains hafnium nitride, but hafnium nitride in the purification of the purity of inert gas is less than 96%, which can not meet the standard, and failed to shorten the refining time, reduce production costs.


    Packing & Shipping of Hafnium Nitride HfN powder :
    We have many different kinds of packing which depend on the hafnium nitride HfN powder quantity.
    Hafnium nitride HfN powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
    Hafnium nitride HfN powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.
    Hafnium Nitride HfN Powder CAS 25817-87-2插图
     

    Hafnium Nitride Properties

    Other Nameshafnium nitride powder, HfN powder
    CAS No.25817-87-2
    Compound FormulaHfN
    Molecular Weight164.367
    AppearanceYellow-brown Powder
    Melting PointN/A
    Boiling PointN/A
    Density13.8 g/cm3
    Solubility in H2ON/A
    Exact Mass299.092436
      
      

    Hafnium Nitride Health & Safety Information

    Signal WordN/A
    Hazard StatementsN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    Transport InformationN/A
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    About Hafnium Nitride HfN Powder:Hafnium nitride is a gray powder with a cubic crystal structure. Melting point 3310℃, microhardness 16GPa.It is fairly stable but easily […]

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    Why is amorphous boron powder so strong in oxidation resistance?

    What’s Amorphous Boron Powder? Boron Powder Amorphous Is relatively active, tastes and odorless and stable at room and air temperatures. It can be heated up to 300 degrees, then oxidized and finally burned once it reaches 700. While the flame becomes red from burning, trace gasification’s boron flame will turn green. Hydrochloric acid (water, ethanol), ether, sulfuric, nitric, and molten iron are insoluble. Boron can be dissolved in the cold concentrated acid solution, where it becomes hydrogen. Boric acid is then oxidized by concentrated nitric and concentrated sulfuric acids. The elements boron and oxygen interact at high temperatures with each other. To form metal compounds, boron can be combined directly with several metals. You can combine it with organic compounds to make compounds that combine Boron with carbon, or compound with oxygen between boron-carbon. The position where boron divides elements in metal and nonmetal boundaries colors is called Monomer. It is nonmetallic with vital negative electric, small atomic radius and total nuclear charges. Its density is 2.35g/cm3. It is hardness 9.3. The melting point of 2300 is it and the boiling point 2550 are its points.

    Amorphous Boron Powder
    The chemical activity of amorphous simple boren is greater than that of simple crystalline boren. However, crystalline Boron is much harder. Boron is commonly used in the replacement of diamonds when making cutting tools or drill bit. A tiny amount of boron can be added to the process of melting metals. The boron acts twofold: it is a deoxidizer that prevents the metal from oxidizing at high temperatures and it also forms alloys which improve the metal’s properties.

    Amorphous Boron powder properties
    An important energy source is amorphousboron powder. It is a solid fuel used in composite solid propellants and has a calorific value that exceeds that of carbon. It has the highest volumetric calories, a density slightly higher than aluminum, and a volumetric calorific factor of almost three-folds that of any hydrocarbon fuel. In terms of its energy, boron is the best nonmetallic gasoline. Due to its unusual shape, its large specific area reduces the ignition temp by up to 80%.

    Amorphous Boron Powder in Harm for the Human Body
    Boron is extremely toxic. Many countries prohibit the use of Boron as food additives. Borax is a common ingredient in American food. Borax is used in food to protect from corrosion, expand elasticity and improve human health. Numerous toxic substances are easily expelled by the body. Borax will eventually be converted to acid in the body through gastric acid. Boric acid can then accumulate in the body. It is not possible to consume Borax every time, but it can build up. An ongoing intake can cause anorexia and vomiting and inhibit digestion. Boron in Borax is known to inhibit the DNA synthesis and cause damage to the DNA of the body.

    Amorphous Boron powder price
    Price will depend on the purity and size of Amorphous Boron Powder particles. The purchase volume may also have an impact on the price. Large quantities of smaller amounts will result in a lower price. On our official website, you can see the cost of amorphousboron powder.

    Boron powder supplier
    The Advanc3dmaterials Advanced Material Nano Technology Co. Ltd. Luoyang City is located in China’s Henan Province. (Advanc3dmaterials). This company supplies and manufactures high-quality chemical materials worldwide. This company is a trusted supplier and manufacturer of high quality chemical materials and nanotechnology products with more than 12 years experience, such as amorphous Born Powder, Nitride powder, graphite Powder, and Sulfide Powder. Amorphous boron powder is high quality and affordable. Get in touch Ask any question.

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    What’s Amorphous Boron Powder? Boron Powder Amorphous Is relatively active, tastes and odorless and stable at room and air temperatures. It can be heated up […]

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    Polyoxyethylene(20)sorbitan monopalmitate CAS 9005-66-7

    About Polyoxyethylene(20)sorbitan monopalmitate:
    Yellow to orange viscous liquid or paste, slightly bitter, soluble in water, ethanol, isopropyl alcohol, and other solvents, insoluble in mineral and vegetable oils. It is an O/W emulsifier with an HLB value of 15.5.With wetting, foaming, diffusion, and other properties.
    Tungstenmolybdenummetals is a trusted global Polyoxyethylene(20)sorbitan monopalmitate. Feel free to send an inquiry to get the latest price of Polyoxyethylene(20)sorbitan monopalmitate if you would like to buy Polyoxyethylene(20)sorbitan monopalmitate in bulk.

    Product Performance of Polyoxyethylene(20)sorbitan monopalmitate:
    Yellow to orange viscous liquid or paste, slightly bitter, soluble in water, ethanol, isopropyl alcohol, and other solvents, insoluble in mineral and vegetable oils.It is an O/W emulsifier with an HLB value of 15.5.With wetting, foaming, diffusion, and other properties.

    Technical Parameter of Polyoxyethylene(20)sorbitan monopalmitate:

    Product NameShort nameHLBAppearance
    Polyoxyethylene(20)sorbitan monopalmitateS2N/A15.5Yellow to orange viscous liquid or jelly


    Applications of Polyoxyethylene(20)sorbitan monopalmitate:

    Food grade Tween 40 is used as an emulsifier in various O/W food emulsions in accordance with GB 29222 standard. Often used in combination with the division plate. Refer to GB 2760 for limited use.
    Industrial field: used as O/W emulsifier in cosmetics and other daily chemicals; Used as an antistatic agent and fiber lubricant in the textile industry; Oil and other industrial fields used as an emulsifier, solvent, stabilizer, diffusion agent, antistatic agent, lubricant, etc.

    Packing & Shipping of Polyoxyethylene(20)sorbitan monopalmitate:
    We have many different kinds of packing which depend on Polyoxyethylene(20)sorbitan monopalmitate quantity.
    Polyoxyethylene(20)sorbitan monopalmitate packing: 1kg/bottle, 25kg/barrel, or 200kg/ barrel.
    Polyoxyethylene(20)sorbitan monopalmitate shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

    Polyoxyethylene(20)sorbitan monopalmitate CAS 9005-66-7插图

    Polyoxyethylene(20)sorbitan monopalmitate Properties

    Other NamesTwain 40;
    T – 40;
    Polyoxyethylene (20) sorbitol monopalmitate;
    Polyoxyethylene (20) sorbitan monopalmitate;
    Sorbitol monopalmitate polyoxyethylene ether
    CAS No.9005-66-7
    Compound FormulaC22H42O6(C2H4O)20
    Molecular WeightN/A
    AppearanceYellow to orange viscous liquid or jelly
    Melting PointN/A
    Boiling PointN/A
    DensityN/A
    Solubility in H2ON/A
    Exact MassN/A

    Polyoxyethylene(20)sorbitan monopalmitate Health & Safety Information

    Signal WordN/A
    Hazard StatementsN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    Transport InformationN/A
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    About Polyoxyethylene(20)sorbitan monopalmitate:Yellow to orange viscous liquid or paste, slightly bitter, soluble in water, ethanol, isopropyl alcohol, and other solvents, insoluble in mineral and vegetable […]

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    Titanium Oxide TiO2 powder CAS 13464-67-7

    About Titanium Oxide TiO2 powder:
    Titanium Oxide TiO2 powder, also known as Titanium dioxide, is an important inorganic chemical pigment, mainly composed of Titanium dioxide. The titanium dioxide production process has a sulfuric acid method and chloride method of two process routes. It is widely used in coating, printing ink, paper making, plastic and rubber, chemical fiber, ceramics and other industries.
     
    Among the commonly used white pigments, the relative density of titanium dioxide is the smallest, and the same mass of white pigments, titanium dioxide has the largest surface area and the highest pigment volume. The chemical properties of titanium dioxide are very stable, are a kind of acidic amphoteric oxide. Almost no reaction with other elements and compounds at room temperature, on oxygen, ammonia, nitrogen, hydrogen sulfide, carbon dioxide, sulfur dioxide are not effective, insoluble in water, fat, dilute acid and inorganic acid, alkali, only soluble in hydrofluoric acid. But under the action of light, titanium dioxide can take place a continuous REDOX reaction, has the photochemical activity. This kind of photochemical activity, under ultraviolet radiation anatase type titanium dioxide, is particularly obvious, this property makes titanium dioxide is some inorganic compounds of the photosensitive oxidation catalyst and some organic compounds of photosensitive reduction catalyst.
     
    Titanium dioxide has Rutile type (Rutile R type) and Anatase type (A-type) two kinds of structure, Rutile crystal structure is dense, relatively stable, small optical activity, so good weather resistance, at the same time has A higher hiding power, color extinction. Titanium dioxide has semiconductor properties, its electrical conductivity increases rapidly with temperature, and it is also very sensitive to hypoxia. The dielectric constant and semiconductor properties of rutile TiO 2 are very important to the electronic industry, which can be used to produce electronic components such as ceramic capacitors.
     
    According to Mos hardness scale of 10 points, rutile TiO2 is 6 ~ 6.5, anatase TiO2 is 5.5 ~ 6.0, so in chemical fiber extinction in order to avoid wear spinneret hole and use anatase. Although titanium dioxide has hydrophilic, its hygroscopicity is not too strong, rutile type is smaller than the anatase type. The hygroscopicity of titanium dioxide has a certain relationship with the size of its surface area, large surface area, high hygroscopicity, but also related to the surface treatment and properties. Feel free to send an inquiry to get the latest price if you would like to buy Titanium Oxide TiO2 powder in bulk.

    Performance of Titanium Oxide TiO2 powder:

    Titanium dioxide, also known as titanium(IV) oxide or titania, is the naturally occurring oxide of titanium, chemical formula TiO2
    Titanium dioxide is a white inorganic compound, which has been used for around 100 years in a vast number of diverse products.
    Titanium dioxide is non-toxic, non-reactive and luminous properties, which safely heighten the whiteness and brightness of many materials.
    It is the whitest and brightest of known pigments, with reflective qualities; it can also both scatter and absorb UV rays.

    Technical Parameter of Titanium Oxide TiO2 powder:

     

    Titanium Oxide Nanopowder (TiO2) COA — %

    TiO2

    Al

    Ca

    Co

    Cr

    Fe

    K+Na

    Mo

    Mg

    P

    S

    Si

    W

    ≥99.9

    ≤0.003

    ≤0.005

    ≤0.01

    ≤0.005

    ≤0.005

    ≤0.005

    ≤0.005

    ≤0.01

    ≤0.01

    ≤0.005

    ≤0.003

    ≤0.01


    How is Titanium Oxide TiO2 powder produced?
    Titanium dioxide was manufactured in two different ways: Sulphate Process and Chloride Process.
    1.Sulphate Process

    Titanium sulfate is produced by acidolysis of iron titanium powder and concentrated sulfuric acid. The concentrated sulfuric acid is decomposed into metantitanic acid, which is then calcined and crushed to obtain titanium dioxide products. This method can produce anatase type and rutile type titanium dioxide. The sulfuric acid method has the advantages of low price and easy to get ilmenite and sulfuric acid as raw materials, more mature technology, simple equipment, easy to solve anti-corrosion materials. Its disadvantage is that the process is long, can only be based on intermittent operation, wet method operation, high consumption of sulfuric acid, water, waste and by-products, large pollution to the environment.
    2.Chloride Process
    The chlorination method is to use titanium-containing raw materials, high titanium chloride slag, or artificial rutile, or natural rutile and chlorine gas reaction to produce titanium tetrachloride, distillation, and then gas-phase oxidation; After rapid cooling, TiO2 was obtained by gas-solid separation. The TiO2 adsorption due to a certain amount of chlorine needs to be heated or steam treatment to remove it. The process is simple, but at 1000℃ or higher conditions of chlorination, there are many chemical engineering problems such as chlorine, chlorine oxide, titanium tetrachloride high corrosion need to be solved, coupled with the special raw materials used, compared with the sulfuric acid method cost. Chlorination process production is continuous production, the production equipment operation flexibility is not large, but its continuous process production, the process is simple, fewer process control points, product quality is easy to achieve the optimal control. The advantages of the chlorination method are short process, easy expansion of production capacity, a high degree of continuous automation, relatively low energy consumption, and high-quality products can be obtained. Its disadvantages are a large investment, complex equipment structure, high material requirements, high-temperature resistance, corrosion resistance, device maintenance is difficult, research and development is difficult.

    Application of Titanium Oxide TiO2 powder:
    The most important applications of titanium dioxide are paints, varnishes and paper and plastics, which account for about 80 percent of world consumption of titanium dioxide. Other pigment applications, such as printing inks, fibers, rubber, cosmetics and food, account for another 8%. The rest is used for other applications, such as industrial pure titanium, glass and glass-ceramics, electroceramics, metallic copper, catalysts, electrical conductors and chemical intermediates.
    1. Titanium dioxide is the most widely used white pigment because of its brightness and high refractive index.
    2. Titanium dioxide is also an effective sunscreen in powder form, where it is used as a pigment to provide whiteness and opacity to products such as paints, coatings, plastics, paper, inks, food products, pharmaceuticals (such as tablets and tablets) and most toothpaste. In painting, it is often abbreviated as “vivid white”, “perfectly white”, “whitest white” or other similar terms.
    3. Titanium dioxide in the rubber industry as a colorant, but also with reinforcing, anti-aging, filling the role.
    4. In white and color rubber products to add titanium dioxide, under sunlight, sun resistance, no cracking, no discoloration, stretching rate and acid and alkali resistance.
    5. Titanium dioxide for rubber, mainly used for automobile tires, rubber shoes, rubber floor, gloves, sports equipment, etc., generally anatase type.
    6. For automobile tire production, often add a certain amount of rutile titanium dioxide products, to enhance the ability to resist ozone and ultraviolet.
    7. Titanium dioxide is also widely used in cosmetics. Because titanium dioxide is non-toxic, far superior to lead white, almost all kinds of powdered titanium dioxide replace lead and zinc white.
    8. Only 5%-8% of titanium dioxide powder can be added to the permanent white so that the spice is more slippery, adhesion, absorption and hiding power.
    9. Titanium dioxide in gouache and cold cream can reduce the greasy and transparent feeling.
    10. Titanium dioxide can also be used in a variety of other spices, sunscreen, soap, white soap and toothpaste.
    11. When deposited as a thin film, the refractive index and color of titanium dioxide make it an excellent reflective optical coating for dielectric mirrors.
    12. Some grades of modified titanium-based pigments used in sparkling paints, plastics, topcoats and cosmetics – these are artificial pigments whose particles have two or more layers of various oxides (usually titanium dioxide, iron oxide or alumina) to produce a shimmer, iridoid and/or pearlescent effect.
    13. Titanium dioxide is used as a pigment, sunscreen and thickener in cosmetics and skincare products in sunscreen and UV protection pigments.
    14. As a sunscreen, ultrafine TiO 2 is used, which is notable for its combination with ultrafine zinc oxide and is considered to be an effective sunscreen that reduces the incidence of sunburn and minimizes premature photoaging, photocarcinogenesis and immunosuppressive sun exposure associated with long-term excess. Sometimes these UV-blockers are used in combination with iron oxide pigments in sunscreens to increase protection against visible light.

    Storage Condition of Titanium Oxide TiO2 powder:
    Titanium Oxide TiO2 powder should be stored in dry, cool and sealing of the environment, can not be exposure to air, in addition, should avoid the heavy pressure, according to ordinary goods transportation.

    Packing & Shipping of Titanium Oxide TiO2 powder:
    It is packed in double plastic bags inside, which can be filled with argon in a vacuum; it can be vacuumed and filled with argon for protection.
    Titanium Oxide TiO2 powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
    Titanium Oxide TiO2 powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.Titanium Oxide TiO2 powder CAS 13464-67-7插图

     

    Titanium Oxide TiO2 powder Properties

    Other NamesDioxotitanium, Titanium dioxide, Titania, Titanium(IV) dioxide, Titanic oxide, Titanium peroxide, Titanium oxide powder
    CAS No.13464-67-7
    Compound FormulaTiO2
    Molecular Weight79.9378 g/mol
    AppearanceWhite crystalline powder
    Melting Point1,843° C (3,349° F)
    Solubility in waterN/A
    Density4.23 g/cm3
    Purity99.50%
    Particle Size 5nm-50nm
    Boling point2,972° C (5,382° F)
    Specific HeatN/A
    Thermal ConductivityN/A
    Thermal ExpansionN/A
    Young’s ModulusN/A
    Exact Mass79.9378 g/mol
    Monoisotopic Mass79.937776 Da
      
      

    Titanium Oxide TiO2 powder Health & Safety Information

    Safety WarningN/A
    Hazard StatementsN/A
    Flashing pointN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    RTECS NumberXR2275000
    Transport InformationNONH for all modes of transport
    WGK Germanynwg
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    About Titanium Oxide TiO2 powder:Titanium Oxide TiO2 powder, also known as Titanium dioxide, is an important inorganic chemical pigment, mainly composed of Titanium dioxide. The […]

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    What is Nano Silver and What are the Properties of Nano Silver

    What exactly is Nano Silver A nano-silver substance is a metallic silver substance that has a diameter below 100 nanometers. This usually ranges between 20 to 50 nanometers. These silver nanoparticles contain atoms made up of silver particles and not silverions. The solid silver nanoparticles are free of charge. The metallic-silver is made by chemical and physical methods into metallic silver particles with a diameter of less than 100nm. Silver nanoparticles, also known as black powders, are formed by mixing silver nanoparticles with media and substrates. The suspension of nanometers of silver in solution, or Nanometer Silver Solution, varies in color depending on the concentration. As the concentration increases, the color gradually darkens from yellow to deep-red. This liquid is composed of particles with a rough texture.

    Nano Silver

    Characterization Because its size lies between the atomic clusters and microscopic particles, it has many unique properties not found in ordinary silver powder. 1. Surface effect Nano-silver powder refers to the effect on the surface of the particles that have been reduced in size and made into fine powder. It has a different surface than that of silver powder. 2. Volume effect Volume effect in nano-silver powder refers to the decrease of volume and number of atoms. As the number and size of nano silver particles decreases, so will the energy gap. Some electrical, magnetic, and thermal energies may be affected. You can intuitively see that the nano silver powder is darker than the silver-white particles with larger silver particles. It is due to significant changes in the non-absorption of emission, scattering and scattering caused by proton vibration characteristics and energy level discontinuity. This happens with smaller silver particles. Tungstenmolybdenummetals (aka. Tungstenmolybdenummetals is an advanced material. With over 12 years’ experience, Tungstenmolybdenummetals is an established global supplier of chemical material. High quality Silver powder manufactured by our company is available. We can help you if the price is lower.
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    What exactly is Nano Silver A nano-silver substance is a metallic silver substance that has a diameter below 100 nanometers. This usually ranges between 20 […]

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    SLES Sodium Lauryl Ether Sulphate CAS 68585-34-2

    About SLES Sodium Lauryl Ether Sulphate:
    Sodium Lauryl Ether Sulphate is easily soluble in water and has excellent decontamination, emulsification, foaming properties and hard water resistance.
    Tungstenmolybdenummetals is a trusted global SLES Sodium Lauryl Ether Sulphate. Feel free to send an inquiry to get the latest price of SLES Sodium Lauryl Ether Sulphate if you would like to buy Sodium Lauryl Ether Sulphate in bulk.

    Product Performance of SLES Sodium Lauryl Ether Sulphate:
    Sodium Lauryl Ether Sulphate has excellent decontamination, emulsification, foaming properties and resistance to hard water.

    Technical Parameter of SLES Sodium Lauryl Ether Sulphate:

    Product Name    Short Name   Purity       PH    OdorAppearance  
    Sodium Lauryl Ether SulphateSLES68%-72%6.5-11Slight characteristic odorWhite to light yellow translucent gel


    Applications of SLES Sodium Lauryl Ether Sulphate:
    SLES Sodium Lauryl Ether Sulphate is widely used in detergents, foaming agents, additives and other products.


    Packing & Shipping of SLES Sodium Lauryl Ether Sulphate:
    We have many different kinds of packing which depend on SLES Sodium Lauryl Ether Sulphate quantity.
    SLES Sodium Lauryl Ether Sulphate packing: 1kg/bottle, 25kg/barrel, or 200kg/ barrel.
    SLES Sodium Lauryl Ether Sulphate shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.

    SLES Sodium Lauryl Ether Sulphate CAS 68585-34-2插图

    Sodium Lauryl Ether Sulphate Properties

    Other NamesN/A
    CAS No.68585-34-2
    Compound FormulaRO(CH2CH2O)nSO3Na 
    Molecular WeightN/A
    AppearanceWhite to light yellow translucent gel
    Melting PointN/A
    Boiling PointN/A
    DensityN/A
    Solubility in H2ON/A
    Exact MassN/A

    Sodium Lauryl Ether Sulphate Health & Safety Information

    Signal WordN/A
    Hazard StatementsN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    Transport InformationN/A
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    About SLES Sodium Lauryl Ether Sulphate:Sodium Lauryl Ether Sulphate is easily soluble in water and has excellent decontamination, emulsification, foaming properties and hard water resistance.Tungstenmolybdenummetals […]

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    TROX-500 High Efficiency Oxygen Molecular Sieve

    About TROX-500 High Efficiency Oxygen Molecular Sieve:

    TROX-500 series high efficiency oxygen molecular sieve is a new TYPE X molecular sieve, mainly used in pressure adsorption atmospheric pressure analysis of pressure swing adsorption oxygen production process. It has a higher nitrogen adsorption capacity and excellent nitrogen and oxygen separation coefficient.


    Tungstenmolybdenummetals is a trusted global supplier of TROX-500 High Efficiency Oxygen Molecular Sieve. Our company can supply zeolite molecular sieve, molecular sieve 3a, molecular sieve 13x, molecular sieve 4a, molecular sieve 5a, lithium molecular sieve, oxygen molecular sieve. Feel free to send an inquiry to get the latest priceif you would like to buy in bulk.

    Technical Parameter of TROX-500 High Efficiency Oxygen Molecular Sieve:

    Item TypeUnitSphericalNote
    TROX-500TROX-501A
    Diametermm1.6-2.50.4-0.8
    Static H2O Adsorption%wt≥29.5≥30RH75%, 25℃
    Static C2O Adsorption%wt≥19.825℃, 250mmHg
    Static N2 Adsorptionml/g≥8≥825℃, 760mmHg
    N2/O2 Selectivity≥3≥31bar, 25℃
    Bulk Densityg/ml0.62-0.660.62-0.66Tapped
    Crush StrengthN25±3Average 25 beads
    Loss on Attrition%wt≤0.3≤0.3
    Particle Ratio%≥97≥95
    Package Moisture%wt≤1.0≤1.0575℃, 1hr


    Applications of TROX-500 High Efficiency Oxygen Molecular Sieve:

    TROX-500 series high efficiency oxygen molecular sieve is mainly used in pressure swing adsorption (PSA) oxygen production device.
    It has the advantages of high purity of oxygen production, high oxygen production rate, fast adsorption rate and long service life, and is the best alternative product for 5A (CaA) oxygen molecular sieve. 
    TROX-500 product is mainly used in PSA industrial oxygen production and medical center oxygen supply system. TROX-501 product is special oxygen molecular sieve for PSA medical (household) oxygen generator and micro oxygen generator.

    Packing & Shipping of TROX-500 High Efficiency Oxygen Molecular Sieve:

    55 gallon / sealed steel drum;

    10 gallon / sealed steel drum.

    新包装.jpg

    TROX-500 High Efficiency Oxygen Molecular Sieve Properties

    Other NamesN/A
    CAS No.N/A
    Compound FormulaN/A
    Molecular WeightN/A
    AppearanceNA
    Melting PointN/A
    Boiling PointN/A
    DensityN/A
    Solubility in H2ON/A
    Exact MassN/A

    TROX-500 High Efficiency Oxygen Molecular Sieve Health & Safety Information

    Signal WordN/A
    Hazard StatementsN/A
    Hazard CodesN/A
    Risk CodesN/A
    Safety StatementsN/A
    Transport InformationN/A
    Inquiry us

    About TROX-500 High Efficiency Oxygen Molecular Sieve:TROX-500 series high efficiency oxygen molecular sieve is a new TYPE X molecular sieve, mainly used in pressure adsorption […]

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