Ceramic band 200*592 grain 80
Ceramic belt abrasives are frequently composed of ceramic materials that are combined with other substances to make them more resistant and durable. This combination is achieved by using agglomerants or binders, which help to form a solid structure. Different types of bonding agents are commonly used in the manufacturing process of ceramic abrasives, such as synthetic resins, metal oxides, vitrifiers and metals.
Synthetic resins are one of the most commonly used bonding agents. They are made from specific chemical compounds that give them adhesive and binding properties. The addition of synthetic resins improves the cohesion and mechanical strength of ceramic abrasives, making them more effective when used for grinding, polishing or cutting applications.
Metal oxides, such as alumina and zirconium, are also used as bonding agents in the manufacture of ceramic abrasives. These metal oxides have high hardness and wear resistance properties, making them ideal for applications that require powerful, long-lasting abrasion.
Vitrifiers are binders made from molten glass. When heated to high temperatures, these vitrifiers liquefy and then solidify, forming a solid matrix that binds the ceramic particles together. Ceramic abrasives made with vitrifiers have excellent wear resistance and durability, making them suitable for a wide range of industrial applications.
Metals, such as bronze or aluminium alloy, can also be used as bonding agents in the manufacture of ceramic abrasives. These metals are often used for applications requiring high resistance to heat and wear, such as grinding hard metals or grinding specific surfaces.
The relative proportions of the different materials and binders used in the manufacture of ceramic abrasives can vary depending on the specific application of the abrasive. Tests and adjustments are often necessary to obtain the desired properties, such as hardness, wear resistance and cohesion of the abrasive.
In conclusion, ceramic abrasives are composite materials that combine ceramic materials with bonding agents such as synthetic resins, metal oxides, vitrifiers and metals. These binders improve the performance of the abrasives by giving them greater strength and durability, making them suitable for a wide range of industrial applications. The proportion of different materials and binders used can be adjusted according to the specific needs of each application.
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