Isomeric octanol ethoxylates Properties

This agent is good for cleaning and penetrating. It has high permeability and washing ability. Active matter value: >=99.5

What are Isomeric octanol Etoxylates?
Rich foam with high permeability is a great penetrant. It can be used in conjunction with anionic or cationic surfactants.
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Product Performance for Isomeric octanol Etoxylates
Rich foam with high permeability is a great penetrant. It can be used in conjunction with anionic or cationic surfactants.

Technical Parameters of Isomeric Octanol Etoxylates
Model JFC-2 JFC-3 JFC-E OE-35
Appearance(25) The liquid is a light yellow color that appears transparent.
Active matter >=99.5
Cloud point() 40-50[A] 40-55[A] 64-68[E] —-
pH(1%) 6-8 6-8 6.8-7.2 6.5-7.5


Applications Isomeric Octanol Ethoxylates
JFC-3 and JFC-2 are used in textile printing, dyeing, leather coating, paint, metal processing, cleaning agents, as well as foaming agents. Jfc-e and OE-35 are widely used as textile printing and dyeing, leather, paper, paint, metal processing, washing, and cleaning agents. Used in textile and leather industries as a cleaning agent, degreasing and refining agent.
Packing & shipping Isomeric octanol ethoxylates
There are different types of packaging that we offer depending on Isomeric Octanol Ethoxylates quantity.
Isomeric Octanol Ethoxylates packing: Isomeric Octanol Ethoxylates There are two barrel sizes: 25kg and 200kg.
Isomeric Octanol Ethoxylates shipping: Upon receipt of payment, goods can be shipped by sea, air or express as quickly as possible.

Properties of the Isomeric octanol Etoxylates

Alternative Names N/A
CAS Number N/A
Compound Formula N/A
Molecular Mass N/A
Appearance Liquid milky yellow to light yellow in color
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Exact Mass N/A

Health& Safety Information

Sign Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information
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Sn Steareth-n

Sn Steareth is a nonionic surfactant with stable performance. It can be used as a strong acid or strong base.

Sn Steareth: Sn Steareth is a non-ionic, non-metamorphic surfactant. It has excellent emulsifying qualities and can be used with strong acids or bases.
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Sn Steareth N:
It is suitable for use in strong acids, strong bases and long-term non-metamorphism.
Excellent emulsifying and compounding performance when combined with other surfactants.
The configuration of creams for skin care is ideal.

Technical Parameter Sn Steareth:
Product Code Physical State Melting point Density Color
S2 Waxy hard paste 42-46 0.97g/cm3 White to light-yellow

Applications Sn Steareth:
Sn Steareth N has a good emulsifying ability. It is used in the W/O and O/W systems as an emulsifier. It is also less irritating to skin and eyes, and has a good tonality. It is also used to make compound emulsifiers.
Packing & Shipping Sn Steareth n
There are different packing options depending on Sn Steareth quantity.
Sn Steareth packing 1kg per bottle, 25kg per barrel, or 200kg per barrel.
Sn Steareth shipping As soon as payment receipt is received, you can ship out your order by air, by sea, or by express.

Sn Stearethn Properties

Alternative Names N/A
CAS Number N/A
Compound Formula N/A
Molecular Mass N/A
Appearance White to light-yellow
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Exact Number N/A

Steareth-n Health & Safety Information

Sign Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information
N/A

What is Aluminum oxide and its application

What is Aluminum Oxide? Aluminum oxide Al2O3 is an organic substance. This is a hard compound that has a melting and boiling point of 2960degC. It is a crystalline ion that can be ionized under high temperatures.
Aluminum oxide, also known as aluminum oxide, is a white, hard solid. It is not soluble in any liquid, has no taste or odor, and does not absorb moisture. It is a white solid that absorbs water easily, but it doesn’t deliquescence. Aluminum oxide is amphoteric oxide, a type of oxide that is easy to absorb moisture but does not deliquescence (after burning, it will not absorb moisture).
Application of Nano Aluminum Oxide
Lithium separator coating material
The high-purity Nano-Aluminum dioxide is used to coat the positive and the negative electrode separators. This ceramic coating can be used to improve heat resistance, resistance to high-temperatures, and insulation. This will prevent the battery from overheating due to temperature. The battery is melted and short-circuited.
Lithium cathode additives for batteries:
High-purity Nano-Aluminum doped by lithium cobalt, lithium manganate etc. Improve thermal stability, cycle performance, overcharge resistance and inhibit oxygen generation. Reduce the electrochemical loss of specific capacity, increasing the specific capacity LiCoO2.
Catalyst Carrier:
High-purity g-type Nano- Aluminum oxide This porous material has a surface area per gram of hundreds of square metres, a high level of activity and a strong adsorption ability. It is widely used in the petroleum refinery and petrochemical industries as an adsorbent. Its drying capability is equal to that of pentoxide phosphorus. After usage, it can also be regenerated by heating to 175degC and using for 6-8h.

Powder coatings that are resistant to caking
Powder coatings are made with nano aluminum oxide, which has an anti-caking and bulking effect. Nano-Aluminum can be used to prevent powder from agglomerating during summer. It also has excellent storage properties, especially for powders in environments with high temperature and humidity.
Wear-resistant Hardener for Coatings, Rubber, and Plastics
The wear resistance can be improved by up to five times with the addition of Nano-Aluminum. Nano-Aluminum dioxide can be added to paints in order to form a uniform, very hard, fine network structure on the paint surface. This protects the polymer paint below the layer from damage. Nano paint has better scratch resistance than original paint. Its hardness is increased three-fold and it is widely used for automobile paints. Adding nano aluminum oxide to the coating can increase its hardness by a significant amount. A 20% addition can bring the coating up to 6-7H. The coating’s transparency is not affected.
Thermal conductivity (thermal conductivity) of adhesives, coatings, rubbers and plastics
Nano-scale Aluminum Oxide has a high thermal conduction and has a large amount spherical filling. Surface treatment agents like coupling agents can be used to improve the compatibility between the matrix resin and the filler. They also improve the thermal conduction of the matrix without affecting its mechanical properties.
Ceramics:
Nano Aluminum oxide is high in purity, has uniform particle sizes, and is easily dispersed. Addition of VKL30 at a rate of 10% to sintered ceramics increases the molding pressure. It also reduces the number of pores. This results in a higher density ceramic green body.
Powder metals:
Nano Aluminum for metallurgy. Small particle size, high specific surface area. Add up to 3% Nano Aluminum to increase hardness and conductivity.
Polishing:
Aluminum oxide particles are uniform and have a high spherical form. It is also a great material for metallographic polishing. It is suitable for a variety of applications including stainless steel mirror, titanium polishing and cast iron polishing.

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The Main Synthesis Method of Titanium Carbide

What is titanium carbide?

TiC is a light gray cubic crystal, which is not soluble in water. It has high chemical stability and can be dissolved by aqua regia or nitric and hydrofluoric acids.

TiC has a metallic luster and is gray with an iron grey color. It belongs to a simple cubic NaCl structure. The lattice is 0.4329 nanometers. The space group Fm3m. TiC has strong covalent bonding between the carbon atoms, and the titanium atoms. These bonded atoms are similar in many ways to metals. For example, they have a high melting temperature, high boiling temperatures, high hardness and good electrical conductivity. They also show superconductivity and thermal conductivity at very low temperatures. TiC can be used to produce cermets as well as heat-resistant metals, cemented carbide, anti-wear material, high temperature radiation materials, and other high-temperature equipment.

Method of synthesis of titanium carbide

As raw materials, titanium dioxide and carbon black are used.

The dry powder mixture of high-purity Titanium dioxide and Carbon Black is mixed proportionally and pressed into a tube furnace in hydrogen using either a horizontal carbon furnace or vertical carbon furnace. At 19002300degC reduction to get block TiC and then pulverization for titanium carbide product. Alternatively, using carbon black and sponge titanium as raw materials. Carbon black (or titanium alloy or titanium waste recovered in carbide solid solutions) is fully mixed with sponge titanium and heated at 15001700degC. Titanium carbide.


Direct carbonization of Titanium Metal:

Titanium powder (either reduced by sodium, or decomposed titanium hydride; less than 325 mesh), mixed with black carbon, is molded and heated at 1500-17degC using a high-purity stream of hydrogen in order to infiltrate carbon. The reaction temperature, holding time and particle size are dependent on the raw material.


Gas phase reaction method:

The steam from the titanium tetrachloride mixture is then mixed with hydrocarbons containing hydrogen (benzene, methane etc.). After induction heating (or other methods), the steam is sent to deposit titanium carbide on the substrate. The reaction precipitates titania carbide on substrate. The precipitation of titanium carbide differs depending on the conditions of the reaction, including the ratio of reaction gas to gas flow, the temperature of the reaction, and gas flow rates.

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Titanium Nitride and Diamond-Like Carbon Coatings on Tribo-Corrosion Processes

Titanium nitride (TiN) is widely used in machine engineering for its excellent anti-friction and chemical inertness properties. The material is routinely applied to metallic substrate materials through various surface modification methods, such as physical vapor deposition or chemical vapor deposition. In this paper, we investigate the impact of TiN and diamond-like carbon (DLC) coatings on selected frictional phenomena of model tribological pairs. We found that under certain conditions, TiN and DLC coatings significantly enhance the frictional heating of the tribological pair by altering the tribofilm formation. This effect is stronger for 316L and 440B stainless steels than for two-phase titanium alloy (Ti6Al4V) in the same test conditions.

We also found that the thermal expansion coefficient of TiN depends on its microstructure and the growth conditions. The results show that the higher the concentration of titanium nanocrystals, the lower the TiN thermal expansion coefficient. This is attributed to the formation of twin boundaries in the amorphous matrix. These findings are important in understanding the mechanism of tribo-corrosion processes and the performance of TiN.

The 80 nm thick epitaxial TiN film structure grown on single-crystalline Al2O3 is well defined by high resolution transmission electron microscopy (HRTEM) and selected area electron diffraction (SAED). No pinholes, pores or voids are observed in the as-fabricated TiN.

The tribological performance of a sputtered TiN barrier layer was evaluated in dry sliding tests with model tribological pairs made from the 316L, 440B and Ti6Al4V stainless steels, as well as from two-phase titanium alloy (Ti6Al4V). The results show that the uncoated samples exhibit a long running-in phase before stabilization. The TiN coating is not able to effectively protect the model metallic substrates from corrosion or wear phenomena. Moreover, under some frictional conditions, the TiN coating contributes to excessive frictional heating of the tribological pairs by altering the tribofilms.

Sodium n-Octanol sulfate CAS 142-31-4, 30

Sodium n – Octanol Sulfate is easily dispersible in water. It has good compatibility with water that’s hard and high stability for electrolytes.Solid Content: 30 %

About Sodium N-Octanolsulfate
Sodium n – Octanol Sulfate is readily soluble, compatible with hardwater, and has high electrolyte resistance.
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Product Performance: Sodium n – Octanol sulfate
It has excellent alkali and temperature resistance. It is good at decontamination. It also has excellent emulsification and foaming properties.

Technical Parameters of Sodium n Octanol Sulfate
Product Code Shortname Purity PH Odor Appearance
Sodium n-Octanol sulfate N/A 30% 9.0-10.0 Aroma characteristic Light yellow transparent liquid

Applications Sodium n-Octanol sulfate:
Sodium n – Octanol sulfate, a powerful emulsifier is suitable for neutral or alkaline media.
Other fields that use Sodium n Octanol Sulfate include papermaking, electroplating and metal processing.
Shipping & packing of Sodium n – Octanol sulfate
The packaging is based on the Sodium n Octanol sulfate content.
Sodium n-Octanol sulfate packing: 1kg/bottle. 25kg/barrel. 200kg/barrel.
Sodium n-Octanol sulfate shipping: Upon receipt of payment, goods can be sent by sea or air as soon as possible.

Sodium n-Octanol Sulfate Properties

Alternative Names N/A
CAS Number 142-31-4
Compound Formula C8H17NaO4S
Molecular Mass N/A
Appearance Light yellow transparent liquid
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Exact Volume N/A

Sodium n octanol Sulfate Health & Safety Fact Sheet

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Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information
N/A

Nano Silver Solution

nano silver solution is a highly effective antibacterial agent, with very low toxicity. It can be applied to many types of healthcare products such as burns and scald dressings; skin donor and recipient sites, acne and cavity wounds; and feminine hygiene products (tampons and panty liners). Silver will combine with the cell walls of pathogenic bacteria and fungi, directly get inside and combined with sulphydryl group of oxygenic metabolic enzymes to deactivate them. It will also inhibit bacterial multiplication and growth. Silver will not oxidize under normal condition. It will not irritate the skin and is safe to use, even for long time exposure.

The silver nanoparticles in Mesosilver(tm) remain colloidal by virtue of particle zeta potential. The particle size is regulated by the voltage, current, and dielectric fluid during ESD discharge process to ensure stability of the nanosilver colloid. The process is free of surfactants and other toxic chemical agents that may influence its effectiveness as an antimicrobial.

Some research suggests that the silver ions released by the particles can kill microbes by making their cells leaky. But it’s not clear how much of this is happening in real life — or how to measure it. The problem is that studies have used Petri dishes to study how the silver particles damage cells, but a cell inside a living creature works differently than one in a lab. So it’s not yet known how much of the silver is actually getting into people’s bodies and causing harm, says Ramune Reliene, a cancer researcher at the State University of New York in Albany.

PGFE Polyglyceryl fatty ester

A new and efficient nonionic polyhydroxyl esters surfactant, Polyglyceryl Fatty Ester, is known by its general name.

About PGFE polyglyceryl fat ester Its hydrophilicity is increased with an increase in glycerol ester polymerization, and its lipophilicity changes depending on the alkyl of the fatty acids. Its hydrophilicity increased with the increase of the glycerol fatty acid ester degree. Lipophilicity varied with fatty alkyl.
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Performance of the PGFE polyglyceryl fat ester
In alkaline, acidic and neutral environments, polyglyceryl fat ester remains relatively stable. Comparing it to similar products, this product has better high temperature resistance and good performance in emulsification even when the content of salt is high.
The cosmetics are not affected in any way by this.
It has a strong emulsifying ability, a good synergistic impact and requires less dosage. It is a high-performance surfactant.

Technical Parameter PGFE Polyglyceryl Fatty Ester
Product Name Polyglyceryl fatty esters
Appearance (25) Powdery yellow solid
Short name PGFE & PGE
HLB 7 (oil-wet), 9~10(oil-wet)


Applications PGFE polyglyceryl ester:
1. Iactic acid in soy milk
Polyglycerol Ester’s emulsification is comparable to that of sucrose esters in neutral pH. But as the acidity increases, the aqueous sucrose solution coagulates, while polyglycerol is able to emulsify even at very low pH values.
2. Ice cream
China’s Ice Cream Industry has developed quickly, with the introduction of glycerol, monostearate, polyglycerin ester, Twain80, lecithin and other ingredients.
3. Bread, cakes, pastries, biscuits
Polyglycerol not only increases the viscosity but also helps to prevent starch from aging. It can be used as a flour improver, emulsifier, or starch food.
4. Coffee, chocolate, and grease
The appearance of polyglyceryl esters can promote or inhibit crystallization. This has a major impact on the technology used to produce oil and fat-based products like candy and chocolate.
5. Meat Products
Polyglycerin is added to make meat products fat more stable and dispersible. It also makes it easier to process. It can also significantly reduce water expansion, shrinkage and product hardening.
Packaging & Shipping PGFE Polyglyceryl fatty Ester
Depending on the PGFE (Polyglyceryl fatty ester) quantity, we offer a variety of different packing options.
PGFE Polyglyceryl fat ester packaging 1kg/bottle or 25kg/barrel.
Shipping of PGFE Polyglyceryl fat ester After payment, you can ship your order by air, sea or express.

PGFE Properties of polyglyceryl fat ester

Alternative Names N/A
CAS Number 67784-82-1
Compound Formula C27H54O8
Molecular Mass N/A
Appearance Powdery yellow solid
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Exact Mass N/A

PGFE Health & Safety Information

Sign Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information
N/A

Boride for rocket construction

What products can boride be used in? Boride Boride is more resistant to oxidation at high temperatures than the Group IVB Metal Boride. Boride dissolves in Molten Alkali. Boride from rare earth and alkaline metals does not corrode by wet oxygen or diluted hydrochloric acids, but it is soluble when exposed to nitric.
Almost all boride compounds have metallic appearance and properties, with high conductivity and positive resistance-temperature coefficient. The Ti, Zr and HF borides have a better conductivity than their metal counterparts. Boride’s creep resistance is excellent, and this is crucial for materials like gas turbines and rockets that need to endure high temperatures, maintain strength, resist corrosion, and resist heat. The various alloys, cermets, or borides based on carbide or nitride can be used for the manufacturing of rocket structural parts, aeronautical device component, turbine components.

Boride ceramics: Are they fragile?
Boride Ceramics have a high conductivity and thermal stability, as well as a high melting point. Boride can be produced by normal pressurized sintering, ISOSTATIC pressing or hot pressing after injection or conventional molding.

What are boride compound?
A binary compound of Boron and metals, as well as certain nonmetals like carbon. MMBN may be expressed using a generic formula. It is an interfilling and does not obey the valence rules. Boride can be formed by other metals as well as zinc (Zn), cadmium(CD). Mercury (Hg). Gallium (Ga). Indium (In). Thallium (Tl), Germanium (GE), tin(Sn). Lead (PB). Bismuth (Bi). The crystals have high melting points and hardness. They are also stable chemically and insoluble in hot concentrated acid.

Boride: A micronutrient with a vital role ?
B is added to nearly all commercial superalloys in order to improve their high temperature serviceability. It is believed that B tends towards segregation at grain borders, which can help to prevent grain boundary migration when temperatures are high. Superalloys contain B in two forms: as solid solution or as boride precipitates. B’s solid solubility in superalloys is low. Therefore, a number of borides, including M2b and M3B2, will precipitate during high-temperature service. Although these boride materials are widely used in superalloys and other alloys, they are only known at a relative macro-scale. The further understanding of the fine structure of precipitates is helpful to optimize the material design and elaborate the structure-performance relationship reasonably.

Boride powder is available at a reasonable price
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Isodecanol ethoxylates

Isodecanol Ethoxylates are a powerful dispersant, wetting and emulsifier. They can be used as a substitute for alkylphenol polyoxyethylene in detergents and textile additives.Content (%): 95

Isodecanol Etoxylates – What you need to know
Isodecanol isomers are alcohol ethers that are effective dispersants and emulsifiers. Isodecanol isothoxylates have a benzene-ring structure and are a good substitute for alkylphenol in detergents and textile additives.
It is a global trusted brand Isodecanol ethoxylates . Send an inquiry for the latest. Prices of Isodecanol ethoxylates If you want to buy Isodecanol Etoxylates in large quantities.

Isodecanol Etoxylates Product Performance:
It is soluble in water, and does not form gel. It can also be used in conjunction with various cationic, non-ionic and anionic surfactants. It is also a good wettability and permeability.

Technical Parameter Isodecanol Ethoxylates
Product Code (%) Cloud point HLB pH Appearance
Isodecanol ethoxylatesS2 99 70-74 [E] 12.5 6.5-7.5 A colorless liquid that is transparent to milky-white.

Applications Isodecanol ethoxylates:
Isodecanol Ethoxylates can be used in many different fields, including penetrants, cleaning agents with solvents, cleaning agents for hard surfaces, detergents based on neutral water, detergents based on neutral metal, detergents based on alkaline or acidic water, detergents based upon neutral metal, detergents based upon neutral water, detergents based on alkaline or acidic water, detergents based upon solvents, detergents based by solvents and other
In industry it is also used as a leather degreasing agents, wool degreasing agents, textile scouring agents.
Packing & Shipping of Isodecanol ethoxylates
There are different packing options depending on Isodecanol Etoxylates quantities.
Isodecanol ethoxylates packing: 1kg/bottle or 25kg/barrel.
Isodecanol ethoxylates shipping: Upon receipt of payment, goods can be shipped by air, sea, or express as quickly as possible.

Isodecanol ethoxylates Properties

Alternative Names N/A
CAS Number N/A
Compound Formula RO(CH2CH2O)nH
Molecular Mass N/A
Appearance A colorless liquid that is transparent to milky-white.
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility In H2O N/A
Exact Count N/A

Isodecanol ethoxylates Health & Safety Information

Sign Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Declarations N/A
Transport Information
N/A