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TEXTURECEL™ 4000 PA 07
TEXTURECEL™ 4000 PA 07 is a powder form grade with similar properties as TEXTURECEL™ 4000 GA 07. It is based on sodium carboxymethyl cellulose and provides viscosity of 4,000 cP with a substitution degree of 0.7.
TEXTURECEL™ 4000 PA 07 is featured with a low substitution level, which provides improved stability and tolerance to salts and other chemicals. It can be used in many industrial applications such as adhesives, batteries, printing inks, and extrusion processes.
Adhesives: TEXTURECEL™ 4000 PA 07 provides control over viscosity and rheology of formulations. It also improves the binders' migration and stability of adhesives.
Electronics and Batteries: TEXTURECEL™ 4000 PA 07 provides optimal viscosity, suspension, and binding of the conducting additives in lithium-ion batteries. It also offers fast drying speed and low drying temperature, which increases productivity and saves energy.
Coatings and Inks: TEXTURECEL™ 4000 PA 07 is an economical natural thickener for water-based formulations. It provides superior thickening and rheology to coatings and inks formulations.
Specifications
Appearance: Powder or Granules Physical state: Solid Colour: White to off-white Odour: Odourless Odour: threshold No information available PH (1%): 6.5 - 8.5 SULFATED ASH: 20.0 - 33.3 % MOISTURE (LOSS ON DRYING): <= 8.0 % VISCOSITY, BROOKFIELD, 1%: 400 - 700 mPa.s Primary Chemistry:
Sodium Carboxymethylcellulose
Features & Benefits
Low substitution level
Powder form
Water soluble
No odor or taste anionic polymer
Exceptional binding properties
Excellent thickener
Superior rheology control
Excellent viscosity modifier
Shear-thinning polymer
Improved lubricity
Advanced film formation properties
Approved food additives
An economical option for basic thickening
High surface tension, less foam formation
Compatible with most hydrocolloids
Forming fat, oil and organic solvent resistant films
Problems Solved
Damage caused to extruded electrodes due to friction and poor green strength Short battery life of lithium ion batteries caused by poor mechanical integrity, dispersion of conductive material, and adhesion to current collectors