SlideShare uma empresa Scribd logo
1 de 31
 It can be described as a localized form of dyeing, applying
colorant to selected areas of the fabric to build up the
design.
 Textile printing, like textile dyeing, is a process for
applying color to a substrate.
 However, instead of coloring the whole substrate (cloth,
carpet or yarn) as in dyeing, print color is applied only to
defined areas to obtain the desired pattern.
 Dyeing can hold single color where as printing can handle
12 to 20 colors in single go.
“A fabric that has been printed with a paste made of an
insoluble pigment mixed with a binder and a
thickener.”
 In pigment printing, insoluble pigments, which have
no affinity for the fiber, are fixed on to the textile
with binding agents in the pattern required.
 Pigment printing is most economical printing process
and allows maximum output of goods because of the
elimination of washing off, quick sampling and high
printing speeds.
 It is not possible to apply it directly on the fabric.
Binder must be used to apply the pigment dye on the
fabric.
 As, Chart Describes major portion of textile printing
is covered by Pigment Printing so it becomes an
important topic to discuss.
 To print on different substrates different chemistry is
required for example printing on natural cellulose is
majorly done with reactive dyes.
 Polyester is printed with disperse dyes.
 Cotton is printed with sulfur dyes.
 But, Pigment printing can be applied to various type
of fibers like Cotton, Polyester, Blend PC, Polyamide
and many more.
 Pigment printing has gained much importance today
and for some fibers (e.g. cellulose fibers) is by far the
most commonly applied technique. Pigments can be used
on almost all types of textile substrates and, thanks to
increased performance of modern auxiliaries, it is now
possible to obtain high-quality printing using this
technique.
 Pigment printing pastes contain a thickening agent, a
binder and, if necessary, other auxiliaries such as fixing
agents, plasticizers, defoamers, etc.
 White spirit-based emulsions, used in the past as
thickening systems, are used only occasionally today
(mainly half-emulsion thickeners).
 After applying the printing paste, the fabric is dried and
then the pigment is normally fixed with hot air (depending
on the type of binder in the formulation, fixation can also
be achieved by storage at 20°C for a few days).
 The advantage of pigment printing is that the process can
be done without subsequent washing (which, in turn, is
needed for most of the other printing techniques).
Pre-treatment
↓
Printing (with binder and fixer)
(roller/rotary printing)
↓
Drying ( Drying the printed fabric)
(90-100%/110-120°C)
(dryer)
↓
Curing (Fixation of the printed dye or pigment)
(cotton 140-160°C/110-120°C 3-5 min)
(polyester 160-220°C , 30-60s)
(stenter)
A Typical Printing Process Involves the Following
Steps:
 Color paste preparation
when printing textiles, the dye or pigment is not in an
aqueous liquor, instead, it is usually finely dispersed
in a printing paste, in high concentration.
 Textile Printing
The dye or pigment paste is applied to the substrate
using different techniques, which are discussed below.
 Fixation
Immediately after printing, the fabric is dried and
then the prints are fixed mainly with steam or hot air
(for pigments). (Conversion of binder monomer into
polymer).
 After-treatment
this final operation consists in washing and drying
the fabric (it is not necessary when printing with
pigments or with other particular techniques such as
transfer printing).
 According to origin
 Natural/Mineral: Iron ores, clays, chalk etc
 Synthetic/chemical: white lead, ZnO, TiO2 and large number
of inorganic and organic color
 According to Reactivity
 Reactive pigment: some pigments on account of the
chemical character react with oil, fatty acids and soaps.
These are called reactive pigments e.g. ZnO, red lead
 Inert pigment: TiO2
 According to Chemical Nature
 Organic pigment:
 Azo pigment
 Diarylide orange and yellows
 Phthalocyanine
 Hasna yellow
 Inorganic pigment
 Printing process may be further divided into two steps:
1. Preparation of the print paste.
2. Printing the fabric.
Soft Water 700 g/Kg
Anti Foamer 1g/Kg
Binder 200g/Kg
Fixative 10g/Kg
Softener 10g/Kg
Urea 50g/Kg
Thickener 15g/Kg
Total 1 Kg
A pigment printing system consists of three essential components:
 Pigment dispersion: Specific pigments are treated in a grinding
mill in the presence of suitable non-ionic surfactants. A particle
size of 0.1-3 μm is typical. Generally, the pigment pastes are
aqueous based and contain the dispersing agent, humectants (to
prevent evaporation and drying out).
 Binders and cross-linking agents (polymers): The binders used
in pigment printing systems are film-forming substances made
up of long-chain macro molecules which, when heated with a
suitable acid-donating catalyst, form a three-dimensional
structure in the pigment.
 Thickeners and auxiliary agents: These give the required print
thickening power (rheology).
 Binders plays key role in pigment printing. Binder are
monomers which on heating get converted into
polymers. Just by simple heating, no pressure , no
steaming , no electricity.
Binders{Monomer}----Heat--->
Plasticizer/Plastic{Polymer}
 Binders form plastic but, its too soft and transparent
that its difficult to see it but we can feel its harshness
on the fabric. That’s why pigment printed fabric have
more harshness when compared to other printing
techniques.
 Binder actually hold the pigment color and sandwich
it between fabric surface and plastic coating and this
coating help color to stick there and stand with high
and severe conditions.
 In addition to binder an other component is also
added to the textile pigment printing paste and that is
called fixer. Fixers are mostly formaldehyde based,
which helps in strengthening of binder to hold on
pigment.
The working of binder that how binder sandwiches
pigment in between itself and substrate. As, nearly 90
to 95% of pigment is successfully entrapped in
between so no need of washing as it was required in
case of reactive printing to wash off unfixed dye. This
is big advantage of pigment over other techniques
which make it economical.
A decorative pattern or design is usually applied to
constructed fabric by:
1. Screen printing method
a. Rotary screen methods
b. Flat screen methods
2. Roller printing method
 Screen printing is by far the most popular technology in use today.
 Screen printing consists of three elements:
 The screen which is the image carrier;
 The squeegee;
 Ink.
 The screen printing process uses a porous mesh stretched tightly over a
frame made of wood or metal.
 Proper tension is essential for accurate color registration.
 The mesh is made of porous fabric or stainless steel.
 A stencil is produced on the screen either manually or photochemically.
 The stencil defines the image to be printed in other printing technologies
this would be referred to as the image plate.
 For each color in the print design, a separate screen must be
constructed or engraved.
 The modern flat-bed screen-printing machine consists of an in-
feed device, a glue trough, a rotating continuous flat rubber
blanket, flat-bed print table harnesses to lift and lower the flat
screens, and a double-blade squeegee trough.
 The in-feed device allows for precise straight feeding of the
textile fabric onto the rubber blanket.
 As the cloth is fed to the machine, it is lightly glued to the
blanket to prevent any shifting of fabric or distortion during
the printing process.
 The blanket carries the fabric under the screens,
which are in the raised position. Once under the
screens, the fabric stops, the screens are lowered, and
an automatic squeegee trough moves across each
screen, pushing print paste through the design or open
areas of the screens.
 Remember, there is one screen for each color in the pattern.
 The screens are raised, the blanket precisely moves the
fabric to the next color, and the process is repeated.
 Once each color has been applied, the fabric is removed
from the blanket and then processed through the required
fixation process.
 The rubber blanket is continuously washed, dried, and
rotated back to the fabric in-feed area.
 The flat-bed screen process is a semi-continuous, start-stop
operation. Flat screen machines are used today mostly in
printing terry towels.
 Can produce as many as 25,000 impressions without
significant degradation of the image.
 The process is slow with production speeds in the range of
15-25 yards per minute.
 Rotary screen printing is so named because it uses a cylindrical
screen that rotates in a fixed position rather than a flat screen
that is raised and lowered over the same print location.
 Rotary presses place the squeegee within the screen. These
machines are designed for roll-to-roll printing on fabric
ranging from narrow to wide-format textiles.
 In rotary printing, the fabric travels at a consistent speed
between the screen and a steel or rubber impression roller
immediately below the screen. (The impression roller serves the
same function as the press bed on a flatbed press.)
 As the fabric passes through the rotary unit, the screen spins at
a rate that identically matches the speed of substrate
movement.
 The squeegee on a rotary press is in a fixed position with its edge making
contact with the inside surface of the screen precisely at the point where
the screen, substrate, and impression roller come together .
 Ink is automatically fed into the center of the screen and collects in a
wedge-shaped “well” formed by the leading side of the squeegee and the
screen’s interior surface.
 The motion of the screen causes this bead of ink to roll, which forces ink
into stencil openings, essentially flooding the screen without requiring a
floodbar.
 The squeegee then shears the ink as the stencil and substrate come into
contact, allowing the ink to transfer cleanly to the material.
 By converting the screen-printing process from semi-continuous to
continuous, higher production speeds are obtained than in flat bed
printing. Typical speeds are from 50-120 yards per minute
 Applicable to natural and synthetic fiber.
 Pigment printing is most economical printing process and
allows maximum output of goods because of the
elimination of washing off, quick sampling and high
printing speeds.
 The advantage of pigment printing is that the process can
be done without subsequent washing.
 Simple technical process without wet after treatment.
 Pigment printing allows maximum output of goods.
 Fastness properties are good to average.
 Well defined design can be produced by pigment printing.
 Pigment printed textile wears are not comfortable to
wear.
 Handling properties of the pigment printing is rough
because of having excessive cross linking agents.
 It is not possible to apply it directly on the fabric.
Binder must be used to apply the pigment dye on the
fabric. Thus, a coat is created on the surface of the
fabric.
 Pigments are sensitible to crushing during roller
printing.
 Rubbing fastness is medium.
 Pigments are completely fast to dry cleaning.
 http://www.swastiktextile.com/rotary_printi
ng_machine.html
 http://textilelearner.blogspot.com/2012/01/
rotary-screen-printing-machine-working.html

Mais conteúdo relacionado

Mais procurados

Resin finishing
Resin finishingResin finishing
Resin finishing
Mohan Pegu
 

Mais procurados (20)

Desizing
DesizingDesizing
Desizing
 
Reactive & pigment printing
Reactive  & pigment printingReactive  & pigment printing
Reactive & pigment printing
 
Textile finishing
Textile finishingTextile finishing
Textile finishing
 
Printing Ingredients
Printing IngredientsPrinting Ingredients
Printing Ingredients
 
Screen Printing
Screen PrintingScreen Printing
Screen Printing
 
KNITTING - Rib structure
KNITTING - Rib structureKNITTING - Rib structure
KNITTING - Rib structure
 
Singeing
SingeingSingeing
Singeing
 
Anti shrink finish
Anti shrink finishAnti shrink finish
Anti shrink finish
 
Durable press finish
Durable press finishDurable press finish
Durable press finish
 
Comparing rolar and rotary printing
Comparing rolar and rotary printingComparing rolar and rotary printing
Comparing rolar and rotary printing
 
Scouring and bleaching in textiles
Scouring and bleaching in textilesScouring and bleaching in textiles
Scouring and bleaching in textiles
 
Resin finishing
Resin finishingResin finishing
Resin finishing
 
textile printing
 textile printing textile printing
textile printing
 
Disperse dyeing
Disperse dyeing Disperse dyeing
Disperse dyeing
 
Jigger dyeing machine
Jigger dyeing machineJigger dyeing machine
Jigger dyeing machine
 
Steps of Wet Processing Technology
Steps of Wet Processing TechnologySteps of Wet Processing Technology
Steps of Wet Processing Technology
 
Desizing in textile
Desizing in textileDesizing in textile
Desizing in textile
 
Mercerization
MercerizationMercerization
Mercerization
 
Mercerization
MercerizationMercerization
Mercerization
 
Scouring
ScouringScouring
Scouring
 

Destaque (6)

Printing
PrintingPrinting
Printing
 
Advances in pigment printing
Advances in pigment printingAdvances in pigment printing
Advances in pigment printing
 
Pigment printing of textiles, a lecture given at ICT Mumbai for Kabur Memoria...
Pigment printing of textiles, a lecture given at ICT Mumbai for Kabur Memoria...Pigment printing of textiles, a lecture given at ICT Mumbai for Kabur Memoria...
Pigment printing of textiles, a lecture given at ICT Mumbai for Kabur Memoria...
 
Porphyrins
PorphyrinsPorphyrins
Porphyrins
 
Garment dyeing with pigments
Garment dyeing with pigments Garment dyeing with pigments
Garment dyeing with pigments
 
Pigment printing
Pigment printingPigment printing
Pigment printing
 

Semelhante a Pigment printing

Printing on-textiles
Printing on-textilesPrinting on-textiles
Printing on-textiles
Rajeev Sharan
 

Semelhante a Pigment printing (20)

Printing
PrintingPrinting
Printing
 
Printing
Printing  Printing
Printing
 
Overview of Piece Printing Process in Textile Industry
Overview of Piece Printing Process in Textile IndustryOverview of Piece Printing Process in Textile Industry
Overview of Piece Printing Process in Textile Industry
 
Printing
PrintingPrinting
Printing
 
Screen printing in textile printing sector
Screen printing in textile printing sectorScreen printing in textile printing sector
Screen printing in textile printing sector
 
Screen Printing.pptx
Screen Printing.pptxScreen Printing.pptx
Screen Printing.pptx
 
Printing on-textiles
Printing on-textilesPrinting on-textiles
Printing on-textiles
 
Printing Methods & Styles
Printing Methods & Styles Printing Methods & Styles
Printing Methods & Styles
 
Transfer Printing
Transfer PrintingTransfer Printing
Transfer Printing
 
Advanced garments printing exam preparation
Advanced garments printing exam preparationAdvanced garments printing exam preparation
Advanced garments printing exam preparation
 
Advanced garments printing
Advanced garments printing Advanced garments printing
Advanced garments printing
 
Digital Textile printing
Digital Textile printing Digital Textile printing
Digital Textile printing
 
Screen printing
Screen printingScreen printing
Screen printing
 
Advanced Garment Printing
Advanced Garment Printing Advanced Garment Printing
Advanced Garment Printing
 
Garment Printing Solutions
Garment Printing SolutionsGarment Printing Solutions
Garment Printing Solutions
 
Devanu n ishan
Devanu n ishanDevanu n ishan
Devanu n ishan
 
Styles of printing
Styles of printingStyles of printing
Styles of printing
 
Advanced garment printing
Advanced garment printing Advanced garment printing
Advanced garment printing
 
Application of Finishes
Application of Finishes Application of Finishes
Application of Finishes
 
YARN AND CARPET PRINTING
YARN AND CARPET PRINTINGYARN AND CARPET PRINTING
YARN AND CARPET PRINTING
 

Mais de Karcahi university (10)

Solid waste management
Solid waste managementSolid waste management
Solid waste management
 
REMEDIAL MEASURES OF HEALTH AND SAFETY IN TEXTILE INDUSTRY
REMEDIAL MEASURES OF HEALTH AND SAFETY IN TEXTILE INDUSTRYREMEDIAL MEASURES OF HEALTH AND SAFETY IN TEXTILE INDUSTRY
REMEDIAL MEASURES OF HEALTH AND SAFETY IN TEXTILE INDUSTRY
 
Quality control
Quality controlQuality control
Quality control
 
Boiler, utility
Boiler, utilityBoiler, utility
Boiler, utility
 
Bleaching, textile treatment
Bleaching, textile treatmentBleaching, textile treatment
Bleaching, textile treatment
 
Compress air, TEXTILE UTILITY
Compress air, TEXTILE UTILITYCompress air, TEXTILE UTILITY
Compress air, TEXTILE UTILITY
 
Water presentation, Advantages of drinking water,
Water presentation, Advantages of drinking water, Water presentation, Advantages of drinking water,
Water presentation, Advantages of drinking water,
 
Utilities used in textile industry (1)
Utilities used in textile industry (1)Utilities used in textile industry (1)
Utilities used in textile industry (1)
 
Fibre to yarn
Fibre to yarnFibre to yarn
Fibre to yarn
 
Textile effulent treatment, Waste water treatment
Textile effulent treatment, Waste water treatmentTextile effulent treatment, Waste water treatment
Textile effulent treatment, Waste water treatment
 

Último

VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
dharasingh5698
 
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
dollysharma2066
 
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Christo Ananth
 

Último (20)

Thermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - VThermal Engineering-R & A / C - unit - V
Thermal Engineering-R & A / C - unit - V
 
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...Booking open Available Pune Call Girls Koregaon Park  6297143586 Call Hot Ind...
Booking open Available Pune Call Girls Koregaon Park 6297143586 Call Hot Ind...
 
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...Bhosari ( Call Girls ) Pune  6297143586  Hot Model With Sexy Bhabi Ready For ...
Bhosari ( Call Girls ) Pune 6297143586 Hot Model With Sexy Bhabi Ready For ...
 
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
(INDIRA) Call Girl Bhosari Call Now 8617697112 Bhosari Escorts 24x7
 
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
FULL ENJOY Call Girls In Mahipalpur Delhi Contact Us 8377877756
 
PVC VS. FIBERGLASS (FRP) GRAVITY SEWER - UNI BELL
PVC VS. FIBERGLASS (FRP) GRAVITY SEWER - UNI BELLPVC VS. FIBERGLASS (FRP) GRAVITY SEWER - UNI BELL
PVC VS. FIBERGLASS (FRP) GRAVITY SEWER - UNI BELL
 
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
(INDIRA) Call Girl Aurangabad Call Now 8617697112 Aurangabad Escorts 24x7
 
Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024Water Industry Process Automation & Control Monthly - April 2024
Water Industry Process Automation & Control Monthly - April 2024
 
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank  Design by Working Stress - IS Method.pdfIntze Overhead Water Tank  Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
 
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
The Most Attractive Pune Call Girls Manchar 8250192130 Will You Miss This Cha...
 
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...Booking open Available Pune Call Girls Pargaon  6297143586 Call Hot Indian Gi...
Booking open Available Pune Call Girls Pargaon 6297143586 Call Hot Indian Gi...
 
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar  ≼🔝 Delhi door step de...
Call Now ≽ 9953056974 ≼🔝 Call Girls In New Ashok Nagar ≼🔝 Delhi door step de...
 
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
Call for Papers - African Journal of Biological Sciences, E-ISSN: 2663-2187, ...
 
NFPA 5000 2024 standard .
NFPA 5000 2024 standard                                  .NFPA 5000 2024 standard                                  .
NFPA 5000 2024 standard .
 
Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)Java Programming :Event Handling(Types of Events)
Java Programming :Event Handling(Types of Events)
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
 

Pigment printing

  • 1.
  • 2.  It can be described as a localized form of dyeing, applying colorant to selected areas of the fabric to build up the design.  Textile printing, like textile dyeing, is a process for applying color to a substrate.  However, instead of coloring the whole substrate (cloth, carpet or yarn) as in dyeing, print color is applied only to defined areas to obtain the desired pattern.  Dyeing can hold single color where as printing can handle 12 to 20 colors in single go.
  • 3. “A fabric that has been printed with a paste made of an insoluble pigment mixed with a binder and a thickener.”  In pigment printing, insoluble pigments, which have no affinity for the fiber, are fixed on to the textile with binding agents in the pattern required.  Pigment printing is most economical printing process and allows maximum output of goods because of the elimination of washing off, quick sampling and high printing speeds.  It is not possible to apply it directly on the fabric. Binder must be used to apply the pigment dye on the fabric.
  • 4.
  • 5.  As, Chart Describes major portion of textile printing is covered by Pigment Printing so it becomes an important topic to discuss.  To print on different substrates different chemistry is required for example printing on natural cellulose is majorly done with reactive dyes.  Polyester is printed with disperse dyes.  Cotton is printed with sulfur dyes.  But, Pigment printing can be applied to various type of fibers like Cotton, Polyester, Blend PC, Polyamide and many more.
  • 6.  Pigment printing has gained much importance today and for some fibers (e.g. cellulose fibers) is by far the most commonly applied technique. Pigments can be used on almost all types of textile substrates and, thanks to increased performance of modern auxiliaries, it is now possible to obtain high-quality printing using this technique.  Pigment printing pastes contain a thickening agent, a binder and, if necessary, other auxiliaries such as fixing agents, plasticizers, defoamers, etc.
  • 7.  White spirit-based emulsions, used in the past as thickening systems, are used only occasionally today (mainly half-emulsion thickeners).  After applying the printing paste, the fabric is dried and then the pigment is normally fixed with hot air (depending on the type of binder in the formulation, fixation can also be achieved by storage at 20°C for a few days).  The advantage of pigment printing is that the process can be done without subsequent washing (which, in turn, is needed for most of the other printing techniques).
  • 8. Pre-treatment ↓ Printing (with binder and fixer) (roller/rotary printing) ↓ Drying ( Drying the printed fabric) (90-100%/110-120°C) (dryer) ↓ Curing (Fixation of the printed dye or pigment) (cotton 140-160°C/110-120°C 3-5 min) (polyester 160-220°C , 30-60s) (stenter)
  • 9. A Typical Printing Process Involves the Following Steps:  Color paste preparation when printing textiles, the dye or pigment is not in an aqueous liquor, instead, it is usually finely dispersed in a printing paste, in high concentration.  Textile Printing The dye or pigment paste is applied to the substrate using different techniques, which are discussed below.
  • 10.  Fixation Immediately after printing, the fabric is dried and then the prints are fixed mainly with steam or hot air (for pigments). (Conversion of binder monomer into polymer).  After-treatment this final operation consists in washing and drying the fabric (it is not necessary when printing with pigments or with other particular techniques such as transfer printing).
  • 11.  According to origin  Natural/Mineral: Iron ores, clays, chalk etc  Synthetic/chemical: white lead, ZnO, TiO2 and large number of inorganic and organic color  According to Reactivity  Reactive pigment: some pigments on account of the chemical character react with oil, fatty acids and soaps. These are called reactive pigments e.g. ZnO, red lead  Inert pigment: TiO2  According to Chemical Nature  Organic pigment:  Azo pigment  Diarylide orange and yellows  Phthalocyanine  Hasna yellow  Inorganic pigment
  • 12.  Printing process may be further divided into two steps: 1. Preparation of the print paste. 2. Printing the fabric.
  • 13. Soft Water 700 g/Kg Anti Foamer 1g/Kg Binder 200g/Kg Fixative 10g/Kg Softener 10g/Kg Urea 50g/Kg Thickener 15g/Kg Total 1 Kg
  • 14. A pigment printing system consists of three essential components:  Pigment dispersion: Specific pigments are treated in a grinding mill in the presence of suitable non-ionic surfactants. A particle size of 0.1-3 μm is typical. Generally, the pigment pastes are aqueous based and contain the dispersing agent, humectants (to prevent evaporation and drying out).  Binders and cross-linking agents (polymers): The binders used in pigment printing systems are film-forming substances made up of long-chain macro molecules which, when heated with a suitable acid-donating catalyst, form a three-dimensional structure in the pigment.  Thickeners and auxiliary agents: These give the required print thickening power (rheology).
  • 15.  Binders plays key role in pigment printing. Binder are monomers which on heating get converted into polymers. Just by simple heating, no pressure , no steaming , no electricity. Binders{Monomer}----Heat---> Plasticizer/Plastic{Polymer}  Binders form plastic but, its too soft and transparent that its difficult to see it but we can feel its harshness on the fabric. That’s why pigment printed fabric have more harshness when compared to other printing techniques.
  • 16.  Binder actually hold the pigment color and sandwich it between fabric surface and plastic coating and this coating help color to stick there and stand with high and severe conditions.  In addition to binder an other component is also added to the textile pigment printing paste and that is called fixer. Fixers are mostly formaldehyde based, which helps in strengthening of binder to hold on pigment.
  • 17. The working of binder that how binder sandwiches pigment in between itself and substrate. As, nearly 90 to 95% of pigment is successfully entrapped in between so no need of washing as it was required in case of reactive printing to wash off unfixed dye. This is big advantage of pigment over other techniques which make it economical.
  • 18. A decorative pattern or design is usually applied to constructed fabric by: 1. Screen printing method a. Rotary screen methods b. Flat screen methods 2. Roller printing method
  • 19.  Screen printing is by far the most popular technology in use today.  Screen printing consists of three elements:  The screen which is the image carrier;  The squeegee;  Ink.  The screen printing process uses a porous mesh stretched tightly over a frame made of wood or metal.  Proper tension is essential for accurate color registration.  The mesh is made of porous fabric or stainless steel.  A stencil is produced on the screen either manually or photochemically.  The stencil defines the image to be printed in other printing technologies this would be referred to as the image plate.
  • 20.  For each color in the print design, a separate screen must be constructed or engraved.  The modern flat-bed screen-printing machine consists of an in- feed device, a glue trough, a rotating continuous flat rubber blanket, flat-bed print table harnesses to lift and lower the flat screens, and a double-blade squeegee trough.  The in-feed device allows for precise straight feeding of the textile fabric onto the rubber blanket.  As the cloth is fed to the machine, it is lightly glued to the blanket to prevent any shifting of fabric or distortion during the printing process.
  • 21.  The blanket carries the fabric under the screens, which are in the raised position. Once under the screens, the fabric stops, the screens are lowered, and an automatic squeegee trough moves across each screen, pushing print paste through the design or open areas of the screens.  Remember, there is one screen for each color in the pattern.  The screens are raised, the blanket precisely moves the fabric to the next color, and the process is repeated.  Once each color has been applied, the fabric is removed from the blanket and then processed through the required fixation process.
  • 22.  The rubber blanket is continuously washed, dried, and rotated back to the fabric in-feed area.  The flat-bed screen process is a semi-continuous, start-stop operation. Flat screen machines are used today mostly in printing terry towels.  Can produce as many as 25,000 impressions without significant degradation of the image.  The process is slow with production speeds in the range of 15-25 yards per minute.
  • 23.
  • 24.  Rotary screen printing is so named because it uses a cylindrical screen that rotates in a fixed position rather than a flat screen that is raised and lowered over the same print location.  Rotary presses place the squeegee within the screen. These machines are designed for roll-to-roll printing on fabric ranging from narrow to wide-format textiles.  In rotary printing, the fabric travels at a consistent speed between the screen and a steel or rubber impression roller immediately below the screen. (The impression roller serves the same function as the press bed on a flatbed press.)  As the fabric passes through the rotary unit, the screen spins at a rate that identically matches the speed of substrate movement.
  • 25.  The squeegee on a rotary press is in a fixed position with its edge making contact with the inside surface of the screen precisely at the point where the screen, substrate, and impression roller come together .  Ink is automatically fed into the center of the screen and collects in a wedge-shaped “well” formed by the leading side of the squeegee and the screen’s interior surface.  The motion of the screen causes this bead of ink to roll, which forces ink into stencil openings, essentially flooding the screen without requiring a floodbar.  The squeegee then shears the ink as the stencil and substrate come into contact, allowing the ink to transfer cleanly to the material.  By converting the screen-printing process from semi-continuous to continuous, higher production speeds are obtained than in flat bed printing. Typical speeds are from 50-120 yards per minute
  • 26.
  • 27.
  • 28.  Applicable to natural and synthetic fiber.  Pigment printing is most economical printing process and allows maximum output of goods because of the elimination of washing off, quick sampling and high printing speeds.  The advantage of pigment printing is that the process can be done without subsequent washing.  Simple technical process without wet after treatment.  Pigment printing allows maximum output of goods.  Fastness properties are good to average.  Well defined design can be produced by pigment printing.
  • 29.  Pigment printed textile wears are not comfortable to wear.  Handling properties of the pigment printing is rough because of having excessive cross linking agents.  It is not possible to apply it directly on the fabric. Binder must be used to apply the pigment dye on the fabric. Thus, a coat is created on the surface of the fabric.  Pigments are sensitible to crushing during roller printing.  Rubbing fastness is medium.  Pigments are completely fast to dry cleaning.
  • 30.