Ceramics

Cellulose ether for Ceramics

Ceramics Application

Seed’s ceramic-grade cellulose derivatives provide essential binding, plasticizing, water retention, and rheology control in ceramic body preparation and glaze formulations, enabling production of high-quality ceramic products with superior green strength, excellent forming characteristics, reduced defects, and enhanced processing efficiency.
All ceramic-grade cellulose derivatives meet industry standards for ceramic processing including specifications for viscosity, pH, moisture content, ash composition, and organic burnout characteristics. Products are tested for compatibility with common ceramic raw materials and firing behavior. They comply with relevant ceramic industry standards and are suitable for products ranging from traditional pottery to advanced technical ceramics.

Key Performance Benefits

SEED’s HPMC (Hydroxypropyl Methylcellulose) serves as a multifunctional additive in ceramic body formulations and glaze suspensions, providing unique combinations of water retention, binding, plasticizing HPMC’s excellent water-binding capacity controls moisture distribution and retention in ceramic masses during forming operations, ensuring uniform plasticity and preventing premature drying that could cause cracking, warping, or uneven shrinkage. In plastic forming processes including throwing, jiggering, and hand-building, HPMC enhances workability by increasing clay plasticity and reducing stickiness. HPMC ensures uniform moisture loss throughout the ceramic body thickness, producing defect-free greenware ready for firing.
SEED’s CMC (Carboxymethyl Cellulose) offers complementary functionality in ceramic applications. CMC provides excellent deflocculation and dispersion of ceramic particles in water-based slips and slurries, reducing viscosity and enabling higher solids content with maintained fluidity. In slip casting operations, CMC controls slip viscosity and cast body density, ensuring uniform casting thickness and preventing defects like differential settling or air entrapment. CMC facilitates clean mold release and reduces casting cycle times by controlling moisture migration during casting. CMC demonstrates excellent compatibility with ceramic raw materials including various clays (kaolin, ball clay, fire clay), feldspars, quartz, alumina, zirconia, and other minerals used in traditional and advanced ceramics.

Technical Specifications

HPMC is used at 0.05-0.5% based on dry ceramic material weight, with 0.1-0.2% typical for glaze suspensions, 0.2-0.4% for extrusion plasticizing, and 0.3-0.5% for maximum water retention and binding in demanding applications. CMC is used at 0.1-0.6% with 0.2-0.3% typical for slip casting formulations and 0.3-0.5% for ceramic body modification and binding enhancement.

Product models for Ceramics applications

In the ceramics industry, SEED cellulose ether is primarily used as an excellent thickener, water retention agent, and plasticizer, significantly enhancing the stability of ceramic slurries, improving green strength, and optimizing formability. Adding cellulose ether to ceramic bodies increases the binding capacity of the raw materials, facilitating easier shaping, increasing flexural strength by 2–3 times, and enhancing the overall stability of the body.

Specific applicationsSEED product models
CeramicsHP10K
CeramicsHP20K
CeramicsCM1020
CeramicsCM3050
Note: Please contact our sales staff for specific TDS details.
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Ceramics application related products

HPMC

Hydroxypropyl Methylcellulose

CMC

Carboxymethyl Cellulose

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