Excellent Solid Lubricant-Molybdenum Disulfide Powder

Molybdenum disulfide Molybdenite’s main component is an inorganic compound with the chemical moS2 as its chemical formula. Molybdenum dioxide powder is a black solid with metallic shine.

Molybdenum Diulfide Powder Properties

Molybdenum disulfide can not be dissolved in water, dilute or concentrated sulfuric, and is usually insoluble in alkalis, organic solvents, and acids. However, it can dissolve in aqua regia, boiled concentrated sulfuric, and other acids.
MoS2 can be obtained by a natural process, the molybdenum concentration purification method. This is to remove acid-insoluble matter SiO2, Fe Cu, and Impurities such Ca and B.

Molybdenum-disulfide grease, also known as molybdenum-disulfide ultra pressure grease, is made from molybdenum-dioxide disulfide with various additives. It offers excellent waterproofing and anti-rust performance.



Molybdenum Sulfide Powder Application

Molybdenum disulfide can be used as a solid lubricant. It is particularly well-suited to high temperature and high pressure. It is diamagnetic, so it can be used to produce a line photoconductor or a semiconductor of P-type and N-type conductivity. Additionally, it has the functions rectification as well as energy conversion. Molybdenum dioxide can also be used to catalyze the dehydrogenation complex hydrocarbons.

Molybdenum dioxide is a solid molybdenum powder, which is made from molybdenum concentrate. It has been chemically purified and modified the molecular structures. This product is black with a metallic luster and insoluble in liquids. This product is non-adhesive and dispersible. It can be mixed with various greases to form a colloidal condition without adhesion. This can increase the lubricity as well as the extreme pressure of the grease. It is suitable for high temperature, high pressure and high loads in order to extend the equipment’s lifetime.

The main function molybdenum dioxidide serves in friction materials is reduce friction at low temperatures, increase friction at high temperatures, and minimize ignition loss.

Friction reduction

Friction increases: Molybdenum disulfide (non-conductive) is available in copolymers with molybdenum triglyceride, molybdenum trisulfide or molybdenum dioxide. The temperature of the friction material rises rapidly due to friction. The molybdenum-trioxide particles in copolymers expand as the temperature goes up and can play a part in increasing friction.

Molybdenum diulfide can be used to prevent oxidation. This chemical purification process and comprehensive reaction gives it a pH value of 7-8. This is slightly alkaline. It is used to protect and enhance adhesion by covering the friction material.

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