Leave Your Message
Products Categories
Featured Products

China Toothpaste Grade CMC Suppliers - High-Quality Sodium Carboxymethyl Cellulose from Reliable Factory

Introducing our premium quality Toothpaste Grade CMC (Sodium Carboxymethyl Cellulose), a crucial ingredient sourced from reliable China suppliers and produced in our advanced factory. This versatile base glue is specifically designed for toothpaste formulations, offering exceptional bonding, shaping, and stability to prevent the separation of abrasive agents. With excellent light transmittance and enhanced rheological and thixotropic properties, our CMC ensures a smooth and consistent paste texture for superior user experience.


Our Sodium Carboxymethyl Cellulose solution boasts notable pseudoplasticity and thixotropy. Typically, solutions with medium to high viscosity exhibit remarkable thixotropic behavior. During storage, the apparent viscosity of our CMC solution, known for its thixotropic characteristics, increases significantly after shear force is halted. When applied in toothpaste, it enhances gel strength, allowing the product to flow easily under pressure, making it easy to dispense.


As living standards rise, consumers are increasingly demanding multifunctional and health-focused toothpaste options. Our Toothpaste Grade CMC meets these evolving needs, supporting the formulation of advanced products such as medicated, anti-acid, hemostatic, and comprehensive protective toothpastes. This evolution in consumer expectations highlights the vital role of high-quality CMC derived from trusted China suppliers in the toothpaste manufacturing process.

    Typical Properties

    ? Frequently Asked Questions

    What does "typical properties" mean?

    Typical properties represent the average values obtained from testing multiple production runs of a material. They are intended as a general guide and should not be treated as minimum or maximum specifications.

    Are typical properties guaranteed specifications?

    No, typical properties are provided for informational and design assistance purposes only. They do not constitute a guarantee of product performance or a warranty for specific applications.

    How are these typical properties measured?

    They are measured using standardized industry testing methods (such as ASTM or ISO standards) under controlled laboratory conditions to ensure accuracy and repeatability.

    Why might actual properties differ from typical values?

    Variations can occur due to differences in processing conditions, environmental factors (like temperature and humidity), testing equipment, or variations in product thickness and geometry.

    Can typical properties be used for engineering design calculations?

    While they provide a useful starting point, critical structural or safety designs should rely on minimum design values and safety factors rather than typical values.

    How often are typical properties updated?

    They are periodically reviewed and updated to reflect improvements in manufacturing processes, changes in raw materials, or updates to testing standards.