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Methyltris(methylethylketoxime)silane, with the CAS number 22984-54-9, is a significant silane product commonly provided by factories at a low price. This product has a unique chemical structure where one methyl group is attached to the silicon atom, and three methylethylketoxime groups are bonded to the silicon as well.
Physically, it is a clear to slightly yellowish liquid. It has a characteristic odor, which is an important aspect to note during handling. In terms of its chemical properties, it is relatively stable under normal storage and usage conditions. However, it should be kept away from strong oxidizing agents and acids to prevent unwanted chemical reactions. The boiling point and melting point of this product are key parameters for its industrial application. It has a specific boiling range that allows for controlled evaporation and reaction processes in various manufacturing operations.
This methyltris(methylethylketoxime)silane has a wide range of applications. In the field of adhesives, it serves as a crucial cross - linking agent. It can improve the adhesion strength between different substrates, such as metals, plastics, and glass. When added to adhesive formulations, it enhances the durability and weather - resistance of the bonded joints.
In the rubber industry, it acts as a coupling agent. It helps to improve the interaction between the rubber matrix and the filler materials, such as carbon black or silica. This results in better mechanical properties of the rubber products, including increased tensile strength, tear resistance, and abrasion resistance. In the coatings industry, it can be used to modify the surface properties of the coatings. It can enhance the adhesion of the coating to the substrate and improve the chemical resistance and water - repellency of the coating film.
When using Methyltris(methylethylketoxime)silane, it is essential to follow proper safety procedures. First, ensure that the working environment is well - ventilated to avoid inhalation of the product's vapor. Wear appropriate personal protective equipment, such as gloves and goggles.
For adhesive applications, it should be added to the adhesive formulation in the correct proportion. Usually, a small percentage (e.g., 1 - 5%) is sufficient to achieve the desired cross - linking effect. The product should be mixed thoroughly with the other components of the adhesive to ensure uniform distribution. In the rubber industry, it can be added during the mixing process of the rubber compound. It should be added at a suitable stage to allow for proper interaction with the filler materials. When used in coatings, it can be added to the coating formulation before application. Care should be taken to ensure that it is well - dispersed in the coating system.
Case 1: Adhesive for Electronic Components
A company manufacturing electronic components needed an adhesive with high adhesion strength and good heat - resistance. They added Methyltris(methylethylketoxime)silane to their existing adhesive formulation. After testing, they found that the new adhesive had significantly improved adhesion to the metal and plastic substrates used in the electronic components. The joints also showed better resistance to thermal cycling, reducing the risk of component failure due to temperature changes.
Case 2: Rubber for Automotive Tires
An automotive tire manufacturer was looking to improve the performance of their tires. They incorporated Methyltris(methylethylketoxime)silane into the rubber compound during the mixing process. The resulting tires had better wet - grip performance, which increased the safety of the vehicles. The tires also showed improved wear resistance, extending their service life.
Case 3: Protective Coating for Metal Structures
A construction company applied a coating containing Methyltris(methylethylketoxime)silane to metal structures exposed to harsh environmental conditions. The coating provided excellent corrosion protection and had good adhesion to the metal surface. Even after long - term exposure to moisture and salt spray, the metal structures showed minimal signs of corrosion.
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