ComWin commercially produces DCHP with an annual capacity of 600 tons per year
Dicyclohexyl Phthalate (DCHP)
Chemical Name | Dicyclohexyl Phthalate |
CAS No. | 86-41-7 |
Molecular Formula | C20H26O4 |
Molecular Weight | 330.42 |
Molecular Structure | |
Package | 25kg/bag |
Storage | Keep in well-closed package, protected from light |
Usage | plasticizer |
SPECIFICATION
ITEMS | SPECIFICATION |
Appearance | White crystal powder |
Acid Value | ≤0.1mgKOH/g |
Melting Point | 62-65℃ |
Moisture | ≤0.1% |
Iron | ≤5ppm |
Purity | ≥99.5% |
Standard | In-House |
Dicyclohexyl phthalate (DCHP) is a versatile plasticizer widely used across various industries due to its unique properties and advantages. Here’s a detailed overview of its applications and benefits:
Applications of DCHP
Plasticizer in Polymers
Flexible PVC Products: DCHP is primarily used to enhance the flexibility and durability of polyvinyl chloride (PVC) materials. It is commonly found in flexible PVC products like pipes, flooring, and electrical cables, where resilience and environmental resistance are essential.
Sealants and Adhesives
DCHP is incorporated into sealants and adhesives to improve their elasticity and adhesion properties. This makes it ideal for construction applications, automotive bonding, and other areas where strong, flexible connections are required.
Coatings
In coatings such as paints and varnishes, DCHP enhances flexibility and resistance to cracking. It is particularly beneficial in automotive finishes and industrial coatings, contributing to a longer-lasting and more durable surface.
Textile Applications
DCHP is used in the textile industry for coating synthetic fibers. This application improves the softness and flexibility of fabrics, enhancing their drape and comfort in finished products.
Rubber Products
The compound is employed in rubber formulations, where it enhances elasticity and flexibility. This makes DCHP suitable for use in products like tires, belts, and hoses.
Flexibility and Durability: DCHP significantly enhances the flexibility of materials, making them more durable and resistant to environmental factors.
Low Toxicity Profile: Compared to other phthalates, DCHP is considered to have a lower toxicity profile, making it a more favorable choice for applications requiring safety considerations, such as children's toys and medical devices.
Compatibility with Various Polymers: DCHP is compatible with a range of polymer systems, allowing for its use in diverse applications across different industries.
Enhanced Performance: The addition of DCHP improves the performance characteristics of materials, including better processability and reduced brittleness, which is particularly important in applications requiring longevity and resilience.
Conclusion
DCHP is a critical component in enhancing the performance of various materials across multiple industries. Its use as a plasticizer not only improves flexibility and durability but also offers a relatively safer alternative to traditional phthalates, making it a valuable asset in consumer and industrial applications.