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CMCHECHPMCKontrola lepkościZawiesina pigmentówPattern DefinitionScreen PassabilityPrint Paste

Eteryceluloza do
Druk na tekstyliach CMC, HEC, and HPMC cellulose ether solutions for viscosity control, pigment suspension, pattern definition, screen passability, and paste stability in selected water-based textile printing formulations.

Viscosity control, pigment suspension, pattern definition, screen passability, and paste stability for textile printing formulators.

LANDERCOLL cellulose ether — including CMC, HEC, and HPMC — helps textile printing formulators improve print paste rheology, pigment distribution, application stability, pattern sharpness, and production consistency in selected water-based textile printing formulations.

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CMC
HEC · HPMC
Print Paste Grades
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01Paste Body
02Pigment Hold
03Clean Edges

CMCHECHPMCLepkośćZawiesina pigmentówPattern DefinitionScreen Passability

At a Glance

CMC, HEC & HPMC for Druk na tekstyliach

Viscosity control, pigment suspension, pattern definition, screen passability, and paste stability for pigment, screen, roller, dye, coating, non-woven, specialty effect, and industrial textile printing applications.

CMC
HEC
HPMC
3 Product Types Kierunek klasy Viscosity / suspension / pattern support
0.2
2.5%
0.2-2.5% Dawkowanie referencyjne Confirm through formulation testing
8+
8+ Applications Printing Types Pigment / screen / roller / dye / coating
KEY
Viscosity / Suspension Podstawowe funkcje Pattern / screen passability / stability
Pigment / ScreenCMC / HEC for pattern definition
Roller / DyeCMC for flow control
Coating / Non-WovenHEC / HPMC for uniformity
Specialty / IndustrialCMC / HPMC for rheology

Need a starting grade or dosage reference for your textile printing paste formulation?

Poproś o rekomendację Poproś o wycenę
Textile Printing Solutions

Cellulose Ether Solutions for
Druk na tekstyliach
Formułowań

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  1. CMC cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
  2. HEC cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
  3. HPMC cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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Korzyści wydajnościowe

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Eter celulozy

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Screen printing consistencySmooth paste flow through mesh
Stabilność zawiesinyMaintained pigment distribution during storage
Paste storage stabilityReduced viscosity drift and phase separation
Coating uniformityEven film weight and appearance on fabric
Batch-to-batch reliabilityConsistent performance across production runs
Zalecane produkty

Recommended Cellulose Ether Products for
Druk na tekstyliach

LANDERCOLL offers CMC, HEC, and HPMC cellulose ether grades for selected textile printing applications. Product selection depends on printing method, pigment or dye system, binder chemistry, fabric type, viscosity target, and paste stability needs.

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Primary · Thickening

CMC for Textile Printing

Print paste thickening, pigment suspension, and pattern definition

CMC is commonly used in selected textile printing formulations where viscosity control, paste stability, and pigment suspension are required. It helps create a stable print paste structure and supports uniform distribution of pigments, dyes, and functional additives. In textile printing systems, CMC helps improve paste body, reduce settling, support clean pattern edges, and maintain stable processing performance.

Key Benefits of CMC in Textile Printing
  • Supports print paste thickening
  • Helps improve pigment suspension
  • Supports pattern definition in selected systems
  • Improves formulation consistency
  • Helps reduce bleeding in selected systems
  • Supports stable paste body
  • Useful in selected pigment and dye printing applications
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Rheology · Flow

HEC for Textile Printing

Smooth viscosity control, flow adjustment, and paste stability

HEC may be used in selected textile printing and coating systems where smooth thickening, stable rheology, and good water-based compatibility are required. As a non-ionic cellulose ether, HEC can support viscosity and flow control in selected pigment or binder systems after testing. HEC helps improve print paste smoothness, application consistency, and storage stability.

Key Benefits of HEC in Textile Printing
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  • Helps adjust print paste rheology
  • Improves application consistency
  • Supports suspension in selected systems
  • Non-ionic thickening option — broad formulation compatibility
  • Useful for customized water-based textile systems
HPMC for specialty textile printing
Specialty · Coating

HPMC for Specialty Textile Printing

Specialty rheology, water retention, and controlled application

HPMC may be considered in specialty textile printing or coating systems where selected thickening, water retention, film support, or controlled rheology is required. Its use should be validated through formulation testing because textile printing performance depends on pigment type, dye chemistry, binder system, fabric type, pH, electrolytes, drying, curing, and washing conditions.

Key Benefits of HPMC in Specialty Textile Applications
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Formulation Reference

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KomponentcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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Crosslinking AgentsImprove durability in selected pigment printing systems
OdpieniaczeReduce foam during mixing and printing
pH AdjustersMaintain formulation stability and dye performance
Inne dodatkiAdjust penetration, washing fastness, print feel, or special effects
Note: This is a general formulation reference only. Final textile printing formulation should be developed and tested according to fabric type, printing method, pigment or dye system, binder chemistry, drying and curing conditions, washing requirements, and final performance targets.
Przewodnik wyboru

Textile Printing Product
Odniesienie do wyboru

Different textile printing applications require different cellulose ether performance profiles. The table below provides a practical selection reference for print paste formulators and textile printing engineers.

Typ aplikacjiZalecany kierunek produktuGłówne wymagania dotyczące wydajności
Pigment Textile PrintingCMC / HECPaste viscosity, pigment suspension, pattern definition
Screen Printing PasteCMC / HECScreen passability, sharp edges, stable viscosity
Roller Printing PasteCMC / selected gradeFlow control, transfer consistency, paste stability
Dye Printing PasteCMC / selected cellulose etherDye distribution, viscosity, penetration control
Textile Coating PastecURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsRheology, coating uniformity, stability
Non-Woven PrintingHEC / CMCSmooth flow, fabric compatibility, print consistency
Specialty Effect PrintingCMC / HPMCParticle suspension, texture, application control
Industrial Textile PrintingCMC / HEC / selected gradeCustomized rheology and production stability
Note: This table is for general guidance only. Final product selection should be confirmed through viscosity testing, print trials, screen passability testing, pigment stability testing, fabric compatibility testing, drying and curing evaluation, and washing performance review.
Odwołanie do dawki

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Druk na tekstyliach

Reference dosage ranges for cellulose ether in textile printing applications. Actual dosage should be determined through laboratory and print trials.

Ważne

These dosage ranges are starting references only. Final dosage should be confirmed through print paste viscosity testing, pigment suspension testing, printing trials, fabric penetration evaluation, drying and curing tests, hand-feel evaluation, and washing performance testing.

ZastosowanieTypowe odwołanie do dawki
Pigment Textile Printing0.5% – 2.5%
Screen Printing Paste0.5% – 2.5%
Roller Printing Paste0.3% – 2.0%
Dye Printing Paste0.3% – 2.0%
Textile Coating Paste0.3% – 1.5%
Non-Woven Printing0.2% – 1.5%
Specialty Effect Printing0.5% – 2.5%
Industrial Textile Printing0.3% – 2.5%
Podstawowe funkcje

Key Performance Functions of Cellulose Ether in
Druk na tekstyliach

01

Print Paste Thickening

Cellulose ether helps build the required viscosity and body for textile printing paste, supporting stable application and controlled print transfer. Adequate paste body is essential for consistent color yield and pattern quality.

02

Kontrola reologii

A suitable cellulose ether grade helps balance flow and structure, allowing the paste to pass through screens or rollers while maintaining enough body to reduce excessive spreading. This shear-thinning behavior is particularly important for screen printing applications.

03

Zawiesina pigmentów

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04

Pattern Definition

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05

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06

Stabilność podczas przechowywania

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and How Cellulose Ether Helps

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01
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02
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03
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04
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05
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Optimize grade and viscosity profile.

06
Uneven Print
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Poor pigment distribution or unstable paste.

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Support formulation consistency.

07
Poor Hand Feel
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Excessive binder, thickener, or coating weight.

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Optimize dosage and full formulation.

08
Viscosity Drift
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pH, electrolyte, preservative, binder, or temperature interaction.

cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits

Test compatible cellulose ether grade.

Note: Cellulose ether can help improve textile printing viscosity, suspension, and pattern consistency, but final printing performance depends on pigment or dye system, binder chemistry, fabric type, printing method, drying and curing conditions, washing process, and production control.
Formulation Variables

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in Textile Printing?

Understanding the factors that influence cellulose ether behavior in textile printing systems helps formulators select the right grade and dosage for their specific application.

Pigment or Dye System

Pigment type, dye chemistry, particle size, dispersion quality, and color concentration influence suspension stability and print quality. Reactive dyes, disperse dyes, and pigments each interact differently with cellulose ether.

Binder Chemistry

Acrylic, polyurethane, styrene-acrylic, natural polymer, and other binder systems can influence cellulose ether compatibility and final print properties. Compatibility testing is recommended before finalizing the formulation.

Fabric Type

Cotton, polyester, blends, viscose, nylon, wool, and non-woven materials absorb printing paste differently and require different rheology profiles. Fabric absorbency and surface structure directly affect penetration, bleeding, and pattern definition.

Printing Method

Screen printing, roller printing, coating, transfer printing, and specialty printing methods require different viscosity, flow, and penetration behavior. The printing method should guide cellulose ether grade selection and target viscosity range.

pH and Electrolytes

pH value, salts, dye auxiliaries, preservatives, and ionic additives may affect cellulose ether hydration and viscosity stability. CMC is particularly sensitive to pH and ionic conditions.

Drying and Curing Conditions

Temperature, airflow, humidity, curing time, and fabric thickness influence print fixation, surface quality, and hand feel. Drying speed affects how the paste sets on the fabric surface.

Washing and Fastness Requirements

Final wash resistance, rubbing fastness, and color performance depend on pigment, binder, fixation, curing, and full formulation balance. Cellulose ether selection should be compatible with the washing process.

Storage Conditions

Paste storage stability depends on pigment suspension, microbial protection, viscosity retention, and additive compatibility. Testing storage stability at expected temperature and time conditions is recommended.

Metoda wyboru

Jak wybrać odpowiedni
Eteryceluloza do
Druk na tekstyliach

Choosing the right cellulose ether for textile printing requires balancing paste viscosity, screen passability, pigment suspension, pattern definition, penetration control, fabric compatibility, storage stability, and final hand feel.

LANDERCOLL can help review your textile printing paste formulation and recommend suitable CMC, HEC, HPMC, or selected cellulose ether grades for testing.

Key Questions to Consider Before Selection
i.
Printing Method

What textile printing method is being used: screen, roller, coating, or specialty?

ii.
Pigment or Dye

Is the system pigment-based or dye-based?

iii.
Fabric Type

What fabric type will be printed: cotton, polyester, blend, or non-woven?

iv.
Binder System

What binder or resin system is used?

v.
Target Viscosity

What target viscosity and flow profile are required?

w.
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vii.
Screen Passability

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viii.
Additives

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ix.
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x.
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Pakowanie i magazynowanie

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i.
Typowa referencja opakowania
  • 25 kg na worek
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  • Opakowania paletowe dostępne na życzenie
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ii.
Zalecenia dotyczące przechowywania
  • cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
  • Trzymać z dala od wilgoci i bezpośredniego światła słonecznego
  • Trzymać opakowanie zamknięte, gdy nie jest używane
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  • Używać w ramach zalecanego okresu trwałości podanego w dokumentacji produktu
Industrial cellulose ether for textile printing Textile printing paste formulation materials Higroskopijny · Uszczelnij, gdy nie jest używany
Dokumentacja

Documents Available
on Request

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TDS

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SDS

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Detailed grade parameters and acceptance criteria.

PDF

Broszura produktu

Overview of product range and textile printing applications.

APP

Przewodnik po zastosowaniu

Formulation and processing reference for textile printing paste.

REC

Product Recommendation

Selection support tailored to your textile printing formulation system.

PKG

Pakowanie i magazynowanie

Handling, shelf life, and storage condition reference.

EXP

Export Documents

Customs and import compliance documentation where applicable.

Wsparcie techniczne

Need Help Improving Textile Printing Paste Stability or
Pattern Definition?

If your textile printing paste is too thin, too thick, settling, bleeding, difficult to pass through screens, showing uneven print, poor hand feel, or viscosity drift, the cellulose ether grade may need to be reviewed.

LANDERCOLL can help evaluate suitable CMC, HEC, HPMC, or selected cellulose ether options based on your pigment or dye system, binder chemistry, fabric type, printing method, viscosity target, curing condition, and storage requirement.

— Możemy pomóc —

CMC selection for print paste thickening and pigment suspension

HEC selection for smooth viscosity and rheology

HPMC selection for specialty textile coating behavior

Pattern definition and anti-bleeding support

Screen passability and print transfer discussion

Compatibility testing direction

Dosage reference

Komunikacja w sprawie próbek i wycen

FAQ

Najczęściej zadawane pytania dotyczące
Eteryceluloza do Druk na tekstyliach

What cellulose ether is used in textile printing?

CMC, HEC, and selected HPMC grades may be used in textile printing systems. CMC supports print paste thickening and pigment suspension, HEC supports smooth viscosity and rheology, and HPMC may support selected specialty coating and water retention applications.

What does CMC do in textile printing paste?

CMC helps thicken printing paste, support pigment suspension, improve formulation consistency, and support pattern definition in selected textile printing systems. It is one of the most commonly used cellulose ether types in textile printing.

What does HEC do in textile printing?

HEC helps provide smooth viscosity control, rheology adjustment, application stability, and suspension support in selected water-based textile printing or coating systems. As a non-ionic cellulose ether, it offers broad compatibility with many printing paste components.

Can cellulose ether improve pattern sharpness?

Cellulose ether can help control viscosity and paste penetration, which may support cleaner pattern edges. Final sharpness depends on fabric type, printing method, paste formulation, and production conditions.

Can cellulose ether reduce pigment settling?

Yes. Suitable cellulose ether grades can support pigment suspension and reduce settling in selected textile printing paste systems. Final suspension stability depends on pigment type, particle size, dispersant system, and storage conditions.

What is the typical dosage of cellulose ether in textile printing?

A common reference dosage is around 0.2%–2.5%, depending on printing method, pigment content, viscosity target, fabric type, and cellulose ether grade. Final dosage should always be confirmed through testing.

Why does textile printing paste viscosity change during storage?

Viscosity drift may be caused by pH changes, electrolyte content, preservative interaction, binder compatibility, pigment settling, microbial activity, temperature changes, or incomplete cellulose ether hydration during preparation.

How do I choose the right cellulose ether for textile printing?

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