Showing posts with label Jute Spinning. Show all posts
Showing posts with label Jute Spinning. Show all posts
10 October 2012
Chemical Comosition of Jute fibres
A bast fiber used for sacking, burlap,
and twine as a backing material for tufted carpets. Jute is one of the
most affordable natural fibres and is second only to cotton in amount
produced and variety of uses of vegetable fibres. Jute fibres
are composed primarily of the plant materials cellulose (major
component of plant fibre) and lignin (major components of wood fibre).
Chemical Composition of Jute Fiber
- Cellulose → 65.2%
- Hemi-cellulose → 22.2%
- Lignin → 12.5%
- Water Soluble matter → 1.5%
- Fat and Wax → 0.6%
Defects in Jute
Rooty Jute: in these jute the lower parts of jute fires contain barks.
Specky jute: this defects occur because of insufficient washing which causes the outer barks to adhere in some places
Croppy Jute: this is a defect where the top end of the fibre become rough and hard. It is usually caused by careless steeping.
Knotty jute: the jute fibres contain knots in places and it is caused by insect bite or punctures.
Dezed or Dead fibres: due to over retting in moist condition, the fibre becomes dull, lose strength and becomes inferior for spinning.
Runners: this is a defect where long and hard barky ribbon of fibres remains in jute fibre.
Hunka: defects caused by non-removal of dried up base and hard bark from the fibres.
Mossy jute: fibres from short plants that cannot be properly stripped and cleaned contain broken piece of jute sticks etc.
Flabby or Fluffy jute: due to careless stripping, fibre loses firmness and becomes flabby and hairy
Heart damage: These defects
occur when jute fibre contains excess moisture when baled. The centre of
the bale becomes badly tendered and in some cases fibres are reduced to
powder.
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3 October 2012
Chemical Modification of Jute Fiber
Jute
is a natural biodegradable fiber with advantages such as high tensile
strength, excellent thermal conductivity, coolness, ventilation function
et al.1-2. Recently, due to the improvement of people’s living
standards and need for environmental protection, the demand of natural
biodegradable and eco-friendly fibers is rising worldwide day by day.
Ramie, flax, hemp and some other vegetable fibers have been used as
textile materials, but jute fiber
is basically used for traditional purposes such as manufacture of
sackings, hessian, carpet backing and the like. Taking account of the
costliness of ramie and the shortage in sources of flax, and the
challenges from the synthetic fibers in the traditional jute products
market, if jute could be used to replace ramie and flax partially as
textile material, not only the cost could be reduced but also a new
market would be provided for jute products.
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| Jute fiber |
Jute
fiber is a bast fiber obtained from the bark of jute plant containing
three main categories of chemical compounds namely cellulose (58~63%),
hemicellulose (20~24%) and lignin (12~15%), and some other small
quantities of constituents like fats, pectin, aqueous extract, et al.
Jute fiber is composed of small units of cellulose surrounded and
cemented together by lignin and hemi-cellulose10-11. The low cellulose
content, coarseness, stiffness, low extensibility, low grip performance
and some other disadvantages seriously restrict the raw jute fiber from
spinning. So a series of wet chemical processing sequences are needed to
improve the spinnability of jute. The qualities of the fiber and yarn
mostly depend on the degumming effect. So degumming is one of the most
important sequences in the chemical processing of jute.
Generally, there are three methods for degumming, i.e., mechanical, chemical and biological methods. The mechanical methods such as steam explosion2,14, microwave and ultrasonic 15 have very limited effect on improving the spinnability of jute fiber. Biodegumming is an eco-friendly method has some advantages viz. mild conditions and high efficiency. However, the application of enzymes for degumming is hindered by some factors such as high substrate specificity, low activity stability, high cost, and low total gum decomposition16-18. The chemical method is the most commonly used method for degumming, but this traditional method has some major disadvantages like serious environmental pollution, lengthy time required and high cost 19. Taking account of these problems, it is urgent to improve the degumming method for natural fibers.
In our previous study, the pre-chlorite treatment of jute fiber before degumming has been reported to lighten the burden of degumming and enhance delignification20. In this paper, we report the chemical degumming of the pre-chlorite treated jute fiber. Both the gum decomposition and the spinnabilities viz. fineness, breaking strength and breaking extension were tested to optimize the conditions for degumming. Changes in the constituent content of the treated jute fiber were also analyzed.
Materials and Method:
Materials
Jute:
Lightly combed and dewaxed raw jute fiber.
Chemicals:
Sodium chlorite and sodium silicate, Acetic acid, sodium acetate, sodium hydroxide and sulphuric acid , Penetrating agent TF-107B and degumming agent TF-125A .
Methods
Pre-chlorite treatment
The samples were treated in a bath with sodium chlorite 1.5g/L, pH 3, liquor ratio 1:10, and kept at 30℃ for 30 min. and then thoroughly washed.
Scouring
The pre-chlorite treated jute fiber was treated with sodium hydroxide 5-30g/L, sodium silicate 1.0-5.0g/L, TF-107B 0.5-6.0g/L, TF-125A 1.0-8.0g/L, and kept at 60-100℃ for 60-240 min. with fiber to liquor ratio 1:10-1:40. At the end of the desired treatment, the fibers were neutralized with sulphuric acid, and then thoroughly washed with distilled water.
Testing
Breaking strength and breaking extension were tested using a XQ-1 fiber breaking strength machine in a constant 20℃ temperature and 65% relative humidity room (in accordance with ASTM Method D-5035). The fineness was tested according to GB/T12411.3. The constituent contents were tested according to GB/5889–86.
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Generally, there are three methods for degumming, i.e., mechanical, chemical and biological methods. The mechanical methods such as steam explosion2,14, microwave and ultrasonic 15 have very limited effect on improving the spinnability of jute fiber. Biodegumming is an eco-friendly method has some advantages viz. mild conditions and high efficiency. However, the application of enzymes for degumming is hindered by some factors such as high substrate specificity, low activity stability, high cost, and low total gum decomposition16-18. The chemical method is the most commonly used method for degumming, but this traditional method has some major disadvantages like serious environmental pollution, lengthy time required and high cost 19. Taking account of these problems, it is urgent to improve the degumming method for natural fibers.
In our previous study, the pre-chlorite treatment of jute fiber before degumming has been reported to lighten the burden of degumming and enhance delignification20. In this paper, we report the chemical degumming of the pre-chlorite treated jute fiber. Both the gum decomposition and the spinnabilities viz. fineness, breaking strength and breaking extension were tested to optimize the conditions for degumming. Changes in the constituent content of the treated jute fiber were also analyzed.
Materials and Method:
Materials
Jute:
Lightly combed and dewaxed raw jute fiber.
Chemicals:
Sodium chlorite and sodium silicate, Acetic acid, sodium acetate, sodium hydroxide and sulphuric acid , Penetrating agent TF-107B and degumming agent TF-125A .
Methods
Pre-chlorite treatment
The samples were treated in a bath with sodium chlorite 1.5g/L, pH 3, liquor ratio 1:10, and kept at 30℃ for 30 min. and then thoroughly washed.
Scouring
The pre-chlorite treated jute fiber was treated with sodium hydroxide 5-30g/L, sodium silicate 1.0-5.0g/L, TF-107B 0.5-6.0g/L, TF-125A 1.0-8.0g/L, and kept at 60-100℃ for 60-240 min. with fiber to liquor ratio 1:10-1:40. At the end of the desired treatment, the fibers were neutralized with sulphuric acid, and then thoroughly washed with distilled water.
Testing
Breaking strength and breaking extension were tested using a XQ-1 fiber breaking strength machine in a constant 20℃ temperature and 65% relative humidity room (in accordance with ASTM Method D-5035). The fineness was tested according to GB/T12411.3. The constituent contents were tested according to GB/5889–86.
http://textilelearner.blogspot.com/
22 September 2012
Types of Jute Yarns
Jute yarn is generally available in single and multiple twists.
Available in various specifications, these cater to needs of developing
market. Winding in cylindrical, conical and cone less spools or hanks
is done as per prerequisites of our customers. This excellent jute yarn
finds extensive application in carpet industry.
Now we will discuss about the types of jute yarn and batch selection technique of jute yarn.
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| Jute yarn |
1. Hassian Warp:
These
types of yarn are good, clean and free from specks with high lusture.
For manufacturing this type of yarn, clean and defect free jute is
required. To make this type of yarn clean and defect free jute is required.
Batch Selection:
Hard jute .......................................70%
Soft jute ........................................30%
Example: For 8 lbs/spyndle hassian warp
White C........................................40%
White X ...................................... 40%
Tossa ...........................................20%
2. Hassian Weft:
Soft jute ........................................30%
Example: For 8 lbs/spyndle hassian warp
White C........................................40%
White X ...................................... 40%
Tossa ...........................................20%
2. Hassian Weft:
Hassian
weft yarn is cleaner and softer than hassian warp yarn. So for hassian
weft clean fibre is required, but fibre of lower strength can be used to
hassian weft yarn.
Batch Selection:
Batch Selection:
For Heavy Yarn
Hard jute..................................30%
Soft jute ...................................70%
For Light Yarn
Hard jute .................................50%
Soft jute ...................................50%
Example: For 8.5 lbs/spyndle hassian weft
White C ...................................40%
White X ...................................40%
Tossa ........................................20%
3. Sacking Warp:
Hard jute..................................30%
Soft jute ...................................70%
For Light Yarn
Hard jute .................................50%
Soft jute ...................................50%
Example: For 8.5 lbs/spyndle hassian weft
White C ...................................40%
White X ...................................40%
Tossa ........................................20%
3. Sacking Warp:
Sacking warp jute
yarn is good and strong. Specks and colour is not important when
manufacturing this type of yarn. So, 70 to 80% Tossa jute can be used.
Batch Selection:
Batch Selection:
Hard jute ................................... 60%
Soft jute .....................................40%
Example: For 8 lbs/spyndle sacking warp
X bottom ..................................67%
S M R ......................................33%
4. Sacking Weft:
Soft jute .....................................40%
Example: For 8 lbs/spyndle sacking warp
X bottom ..................................67%
S M R ......................................33%
4. Sacking Weft:
Sacking weft yarns are low quality yarn. It is coarse and is made from low grade jute fibre. It may contain line cuttings, bale cuttings, soft and hard waste, rope waste, jute dust, habijabi and entangled jute.
Example: For sacking weft
NC .......................................................70%
S M R ..................................................15%
Caddis ..................................................5%
Thread waste and gunny cuttings............10%
5. C.B.C (carpet breaking cloth):
Batch Selection:
Example: For sacking weft
NC .......................................................70%
S M R ..................................................15%
Caddis ..................................................5%
Thread waste and gunny cuttings............10%
5. C.B.C (carpet breaking cloth):
Batch Selection:
Hard jute ................................... 100%
Example: For 8 lbs/spyndle C.B.C warp
B.W.B ....................................... 40%
B.W.C ...................................... 60%
Example: For 8 lbs/spyndle C.B.C weft
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Example: For 8 lbs/spyndle C.B.C warp
B.W.B ....................................... 40%
B.W.C ...................................... 60%
Example: For 8 lbs/spyndle C.B.C weft
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4 September 2012
Jute Products
Jute Products:
Jute has versatile use in our day to day life. Some products of jutes are highlighted in below:
Jute Bags : Jute Hand Bags , Jute Beach Bags, Jute Shopping Bags, Jute Sling Bags, Jute Christmas Bags, Jute Sacking Bag, Jute Promotional Bags, Jute Bottle Bags, Jute Hessian Cloth Bags, Jute Hydro-Carbon Free Bags, Jute Food Grade Bags
Jute has versatile use in our day to day life. Some products of jutes are highlighted in below:
Jute Bags : Jute Hand Bags , Jute Beach Bags, Jute Shopping Bags, Jute Sling Bags, Jute Christmas Bags, Jute Sacking Bag, Jute Promotional Bags, Jute Bottle Bags, Jute Hessian Cloth Bags, Jute Hydro-Carbon Free Bags, Jute Food Grade Bags
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| Jute bag |
Jute Handicrafts:
Notebook, Pen holder, Greeting cards, Photo frame, file folder, Gift
Box, Memo Box, Tissue Box, Slip Pad Holder, Jute Wall Hangings, Jute
Coasters, Jute Table Mats, Jute Hammocks, Jute Lamp Shades, Jute
Stationery
![]() |
| Jute Gift box |
Jute Textile: Jute Hessian Cloth or Burlap, Jute Geo Textiles, Jute Yarn, Jute Hydro-Carbon Free Cloth, Jute Carpet Backing Cloth (CBC), Jute Canvas,
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| Jute fashion bag |
Jute Furnishings: Jute Mats & Durries, Jute Cushion Covers, Jute Fabrics, Jute Blinds, Jute Rugs, Jute Carpets
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| Jute furnishing |
15 August 2012
Classification of Jute
Classification of Jute:
Classification of jute according to the quality (Geographical distribution according to Bangladesh):
District:
District jute is close to jat in quality.
The hard district jute is better than the soft district.It mainly grows in the district of Faridpur
Soft district:
This type of jute grows in district of Noakhali,Pabna,Barisal,Jessor,Khulna,Sylhet,Lower Comilla,Chittagong and some part of Dhaka.
Northern:
Classification of jute according to the quality (Geographical distribution according to Bangladesh):
- Jat
- District
- Northern
- Jat is the finest quality jute with firm
- It has good color and length
- It has good luster
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| Jute plant |
District jute is close to jat in quality.
- The fiber is not uniform in textures and strands
- Its color varies from light ream to dull grey
- Its length is shorter.
- Hard district
- Soft district
The hard district jute is better than the soft district.It mainly grows in the district of Faridpur
Soft district:
This type of jute grows in district of Noakhali,Pabna,Barisal,Jessor,Khulna,Sylhet,Lower Comilla,Chittagong and some part of Dhaka.
Northern:
- Northern jute is of somewhat inferior quality.
- The fiber is dull-colored fluffy hairy and barky
- Generally medium length and weak.
5 July 2012
Jute Grading
Jute Grading:
Grading System of Jute Fiber:
Jute is a natural vegetable fiber under the category of bast fibers like flax,
hemp, kenaf and ramie. Since ancient times, it has been traditionally
grown in the eastern part of the Indian subcontinent, which make up of
the present day West Bengal of India and plains of Bangladesh. Grading
is done after the barky ends are cut off. There are six grades both for
White and Tossa jute. The characteristics specified for various grades
are given below.
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Jute fibers are graded according to three qualities of fibers. They are-
On a basis of fiber properties:
I.Length
II.Strength
III.Fineness
IV.Color
V.Lusture
VI.Roots and cleanliness and uniformity in color.
On the basis of color:
There are two colors-
On a basis of fiber properties:
I.Length
II.Strength
III.Fineness
IV.Color
V.Lusture
VI.Roots and cleanliness and uniformity in color.
On the basis of color:
There are two colors-
- White and golden
- Brown to red Corresponding to the main varieties capsularies and olitorius.
- A bottom
- B bottom
- C bottom
- X bottom
- Pucca grading
- Kutcha grading
Raw jute from which roots have been cut.
White Jute:
Bangla white special (BWS): White or creamy Finest texture Very good luster, clean, well hackled Completely free from any defects of jute Entirely free from red ends
Bangla White-A (BW-A): White to light cream Fine texture Strong and very good luster, clean Completely free from red ends and any blemish
Bangla White-B (BW-B): Light cream to straw color Good texture Strong and good luster, well hackled Free from blemish and red ends excluded .
Bangla White-C (BW-C): Light grey or light reddish to straw color Sound strength Average luster Clean but free from croppy or hard gummy Tops and roots and red soft ends are permissible.
Bangla White-D (BE-D): Any color Average strength Occasional bark and specks permissible Slightly croppy and gummy tops permissible Red ends also permissible.
Bangla White-E(BW-E): Any color Any strength but free from perished fibers Unretted jute.
Tossa Jute:
Bangla Tossa Special (BTS):
1 .Uniform sliver grey to golden color
1.Light to medium grey color
White Jute:
Bangla white special (BWS): White or creamy Finest texture Very good luster, clean, well hackled Completely free from any defects of jute Entirely free from red ends
Bangla White-A (BW-A): White to light cream Fine texture Strong and very good luster, clean Completely free from red ends and any blemish
Bangla White-B (BW-B): Light cream to straw color Good texture Strong and good luster, well hackled Free from blemish and red ends excluded .
Bangla White-C (BW-C): Light grey or light reddish to straw color Sound strength Average luster Clean but free from croppy or hard gummy Tops and roots and red soft ends are permissible.
Bangla White-D (BE-D): Any color Average strength Occasional bark and specks permissible Slightly croppy and gummy tops permissible Red ends also permissible.
Bangla White-E(BW-E): Any color Any strength but free from perished fibers Unretted jute.
Tossa Jute:
Bangla Tossa Special (BTS):
- Uniform golden or reddish color
- Finest texture
- Very strong
- Very good luster
- Clean cut and well hackled
- Completely free from any defects.
1 .Uniform sliver grey to golden color
- Fine texture
- Strong and good luster
- Clean cut and well hackled
- Completely free from any blemish.
- Fine texture
- Strong and good luster
- Clean cut and well hackled
- Completely free from any blemish.
1.Light to medium grey color
- Sound clean
- Good texture
- Average luster
- Clean cut and well hackled
- Free from any defects
- Sound clean
- Good texture
- Average luster
- Clean cut and well hackled
- Free from any defects
- Mixed colors
- Average strength
- Occasional bark and soft specks allowable
- free from runners
- Slightly croppy and gummy tops permissible
- Well cut and hackled but free from black root ends.
- Mixed colors
- Average strength
- Occasional bark and specks allowable
- Free from runners
- croppy and gummy tops permissible
- Rough cut and hackled
- Free from black root ends
- Any color
- Any strength but free from unretted jute
- Stick and perished fibers
- Rough cut and hackled bark and hard Centre permissible
Raw jute from which roots have not been cut.
Kutcha bales are graded as follows-
Kutcha bales are graded as follows-
- Tops
- Middle
- Bottoms
- B-bottoms
- C-bottoms
- X-bottoms
- Very strong fiber
- Excellent color and luster
- Free from all defects
- Cutting not more than (White 15% Tossa 10%)
- Strong sound fibers
- Average color and luster
- Free from all specks runners and harsh crop end (White 25% Tossa 15%)
- Sound fibers
- Medium strength
- Free from all hard centered jute (White 30% Tossa 20%)
- Sound fiber
- Medium strength
- Not suitable for higher grade(White 35% Tossa 25%)
- Medium strength
- Any color
- Free from runners and choppiness.
- Weak, harsh jute
- Free from tagled jute and stick
- Tangled jute
- Free from any dust and cuttings
15 June 2012
Properties of Jute Fiber
Jute
is a bast fiber used for sacking, burlap, and twine as a backing
material for tufted carpets. It is a long, soft, shiny fiber that can
be spun into coarse, strong threads. It is one of the cheapest natural
fibers, and is second only to cotton in amount produced and variety of
uses. Jute fibers
are composed primarily of the plant materials cellulose, lignin, and
pectin. Both the fiber and the plant from which it comes are commonly
called jute. It belongs to the genus Corchorus in the basswood family,
Tiliaceae.
Properties of Jute Fiber:
- Jute fibre is 100% bio-degradable and recyclable and thus environmentally friendly.
- Jute is a natural fibre with golden and silky shine and hence called The Golden Fibre.
- Jute is the cheapest vegetable fibre procured from the bast or skin of the plant's stem.
- It is the second most important vegetable fibre after cotton, in terms of usage, global consumption, production, and availability.
- It has high tensile strength, low extensibility, and ensures better breathability of fabrics. Therefore, jute is very suitable in agricultural commodity bulk packaging.
- It helps to make best quality industrial yarn, fabric, net, and sacks. It is one of the most versatile natural fibres that has been used in raw materials for packaging, textiles, non-textile, construction, and agricultural sectors. Bulking of yarn results in a reduced breaking tenacity and an increased breaking extensibility when blended as a ternary blend.
- Unlike the fiber known as hemp, jute is not a form of (Cannabis). Therefore it can be much more easily distinguished from forms of Cannabis that produce a narcotic
- Jute is one of the most versatile natural fibres that has been used in raw materials for packaging, textiles, non-textile, and agricultural sectors.
- Jute stem has very high volume of cellulose that can be procured within 4-6 months, and hence it also can save the forest and meet cellulose and wood requirement of the world.
- The best varieties of Jute are Bangla Tosha - Corchorus olitorius (Golden shine) and Bangla White - Corchorus capsularis (Whitish Shine), and Mesta or Kenaf (Hibiscus cannabinus) is another species with fibre similar to Jute with medium quality.
- Raw Jute and Jute goods are interpreted as Burlap, Industrial Hemp, and Kenaf in some parts of the world.
Uses of Jute Fiber
Jute is the second most important vegetable fibre after cotton; not only for cultivation, but also for various uses.
- Jute is used chiefly to make cloth for wrapping bales of raw cotton, and to make sacks and coarse cloth.
- The fibres are also woven into curtains, chair coverings, carpets, area rugs, hessian cloth, and backing for linoleum.
- While jute is being replaced by synthetic materials in many of these uses, some uses take advantage of jute's biodegradable nature, where synthetics would be unsuitable.
- Jute butts, the coarse ends of the plants, are used to make inexpensive cloth.
- Traditionally jute was used in traditional textile machineries as textile fibres having cellulose (vegetable fibre content) and lignin (wood fibre content). But, the major breakthrough came when the automobile, pulp and paper, and the furniture and bedding industries started to use jute and its allied fibres with their non-woven and composite technology to manufacture nonwovens, technical textiles, and composites.
- Jute can be used to create a number of fabrics such as Hessian cloth, sacking, scrim, carpet backing cloth (CBC), and canvas.
- Hessian, lighter than sacking, is used for bags, wrappers, wall-coverings, upholstery, and home furnishings.
- Sacking, a fabric made of heavy jute fibres, has its use in the name.
- Diversified jute products are becoming more and more valuable to the consumer today. Among these are espadrilles, floor coverings, home textiles, high performance technical textiles, Geotextiles, composites, and more.
- Jute is also used in the making of ghillie suits which are used as camouflage and resemble grasses or brush
Another diversified jute product is Geotextiles, which made this agricultural commodity more popular in the agricultural sector. It is a lightly woven fabric made from natural fibres that is used for soil erosion control, seed protection, weed control, and many other agricultural and landscaping uses. The Geotextiles can be used more than a year and the bio-degradable jute Geotextile left to rot on the ground keeps the ground cool and is able to make the land more fertile.
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7 June 2012
Bleaching Process of Jute Fiber/Fabric
Jute:
Jute is extracted from the bark of the
white jute plant, Corchorus capsularis and to a lesser extent from C.
olitorius (tossa jute). Jute fibre
also called as the ―”golden fibre” is one of nature‘s strongest
vegetable fibres and has high insulating and anti-static properties,
moderate moisture regain and low thermal conductivity. Jute ranks second
in terms of production. Bangladesh and India (West Bengal) are the main
producers of jute in the world, with Myanmar and Nepal producing
smaller quantities of jute. Of the various jute products
manufactured, sacking contributes for the bulk. In addition, jute yarn
and twines are also used for household textiles. It is also being
blended with other fibres and used in cushion covers, toys, wall
hangings, lamp shades and shoes. Use of jute in rigid packaging and
reinforced plastic is increasing and is replacing wood pulp and paper. Geotextiles are also made from jute.
Bleaching of Jute:
Although jute fibres contain considerable amount of impurities, jute materials are generally bleached without prior scouring due to its alkali sensitivity. Jute differs from linen in its high lignin content (about 11-12% dry weight). The lignin, together with hemicelluloses, provides inter-cellular binding material known as lamella, holding the fibre together. In contrast to linen, it is neither desirable nor necessary to delignify jute. Jute is effectively bleached by hydrogen peroxide while most of the lignin remains.
A consequence of the presence of lignin in bleached jute is that its whiteness is not fast to light.
Bleaching Process:
Jute may be successfully bleached with sodium hypochlorite solution having 3-7 g/l available chlorine, using sodium carbonate to maintain pH of 10 to 10.5 at room temperature for 1 to 2 hours. It is advisable to add 1 to 2 g/l wetting agent, when the material is directly bleached without scouring. It is then washed and antichlored with 0.2% sodium sulphate for 20 minutes at 50 ̊C.
Sodium chlorite is suitable for bleaching of jute. It removes more lignin than hydrogen peroxide. Treatment of jute fabric with acidified 4% (o.w.m.) sodium chlorite solution, pH 4 to 4.5 at 90 ̊C for 90 minutes improves the whiteness of the materials.
The bleaching with hydrogen peroxide causes a markedly lower loss of weight (10% as against 17.9% in chlorite bleaching) and slightly lower loss in strength.
In jigger machine, the recipe (% o.w.m.) of jute bleaching as follows:
The conventional hydrogen peroxide bleaching requires high temperature which may damage jute material. So cold bleaching may be carried out by treating the jute materials with a solution containing 6% hydrogen peroxide, 4% caustic soda, 4% sodium silicate, 2% soda ash and 1% soap followed by 24 hours storing at room temperature. The whiteness achieved may not be very high.
http://textilelearner.blogspot.com/
![]() |
| Jute fiber |
Although jute fibres contain considerable amount of impurities, jute materials are generally bleached without prior scouring due to its alkali sensitivity. Jute differs from linen in its high lignin content (about 11-12% dry weight). The lignin, together with hemicelluloses, provides inter-cellular binding material known as lamella, holding the fibre together. In contrast to linen, it is neither desirable nor necessary to delignify jute. Jute is effectively bleached by hydrogen peroxide while most of the lignin remains.
A consequence of the presence of lignin in bleached jute is that its whiteness is not fast to light.
Bleaching Process:
Jute may be successfully bleached with sodium hypochlorite solution having 3-7 g/l available chlorine, using sodium carbonate to maintain pH of 10 to 10.5 at room temperature for 1 to 2 hours. It is advisable to add 1 to 2 g/l wetting agent, when the material is directly bleached without scouring. It is then washed and antichlored with 0.2% sodium sulphate for 20 minutes at 50 ̊C.
Sodium chlorite is suitable for bleaching of jute. It removes more lignin than hydrogen peroxide. Treatment of jute fabric with acidified 4% (o.w.m.) sodium chlorite solution, pH 4 to 4.5 at 90 ̊C for 90 minutes improves the whiteness of the materials.
The bleaching with hydrogen peroxide causes a markedly lower loss of weight (10% as against 17.9% in chlorite bleaching) and slightly lower loss in strength.
In jigger machine, the recipe (% o.w.m.) of jute bleaching as follows:
- Hydrogen peroxide (50%):3 to 6%
- Sodium silicate : 6to 8%
- Caustic soda : 0.5 to 0.7%
- Nonionic detergent : 0.2 to 0.5 %
- Chelating agent : 0.05%
- pH : 11
- Temperature : 80 to 85 ̊C
- Time : 120 minutes
The conventional hydrogen peroxide bleaching requires high temperature which may damage jute material. So cold bleaching may be carried out by treating the jute materials with a solution containing 6% hydrogen peroxide, 4% caustic soda, 4% sodium silicate, 2% soda ash and 1% soap followed by 24 hours storing at room temperature. The whiteness achieved may not be very high.
http://textilelearner.blogspot.com/
5 June 2012
Manufacturing Process of Jute Yarn
Manufacturing Process of Jute Yarn:
Spinning:
Raw Jute:
Raw jute in the form of bales are processed in jute mills to produce hessian, sacking, jute yarn,
bags, and other useful products. Raw jute bales from jute fields or
suppliers, carried by trucks are unloaded are stacked in the jute mills
gowdown.
In
the selection process, raw jute bales are opened to find out any defect
and to remove the defective portion from the mora by experienced
workers. Raw jute bales are of two types i.e. 150 kg weight and 180 kg
weight with or without top portion cutting. The bales are assorted
according to end use like Hessiean weft, Sacking wrap, Sacking weft etc.
After selection, jute bales are carried to softning section by workers
called Gariwala and Bajawala.
Softning Process Jute:
In
softning process jute morahs are made soft and pileable. Two methods
are used for softning; use of softening machine and use of jute good
spreader. Generally an emulsion plant with jute softner machine is used
to lubricate and soften the bark and gummy raw jute. The emulsion plant
consists of gear pump, motor, vat, jet sprayer, nozzles, emulsion tank
and the jacket. In this softning process jute becomes soft and pileable
and suitable for carding.
Carding:
Carding:
Carding
is a combining operation where jute reeds are splitted and extraneous
matters are removed. Jute fibres are formed into ribbon called "sliver".
There are three different carding sections:
(i)Breaker carding
(ii)Inner carding
(iii)Finisher carding
In the Breaker carding machine soften jute after piling is feed by hand in suitable weight. The machine by action with different rollers turns out raw jute in the form of jute sliver for finisher carding. In this process root cutting is necessary before feeding the material to the hand feed breaker carding machine.
Finisher carding machine make the sliver more uniform and regular in length and weight obtained from the Breaker carding machine.
Finisher carding machine is identical to the Breaker carding machine, having more pair of rollers, staves, pinning arrangement and speed.
Nearly 4 to 12 slivers obtained from Breaker carding machine is fed on this machine.
The material thus obtained is send to drawing section.
Drawing:
(i)Breaker carding
(ii)Inner carding
(iii)Finisher carding
In the Breaker carding machine soften jute after piling is feed by hand in suitable weight. The machine by action with different rollers turns out raw jute in the form of jute sliver for finisher carding. In this process root cutting is necessary before feeding the material to the hand feed breaker carding machine.
Finisher carding machine make the sliver more uniform and regular in length and weight obtained from the Breaker carding machine.
Finisher carding machine is identical to the Breaker carding machine, having more pair of rollers, staves, pinning arrangement and speed.
Nearly 4 to 12 slivers obtained from Breaker carding machine is fed on this machine.
The material thus obtained is send to drawing section.
Drawing:
Drawing
is a process for reducing sliver width and thickness by simultaneously
mixing 4 to 6 sliver together. There are three types of Drawing Frame
machine. In most mills 3 Drawing passages are used in Hessian and 2
Drawing passages are used in Sacking.
The slivers obtained from finisher carding machine is fed with four slivers on to the first drawing frame machine. The first drawing frame machines makes blending, equalizing the sliver and doubling two or more slivers, level and provide quality and color. This machines includes delivery roller, pressing roller, retaining roller, faller screw sliders, check spring, back spring, crimpling box etc..
In second drawing, the Second Drawing Frame machine obtain the sliver from the First drawing machine and use six slivers and deliveries per head. The Second Drawing machine makes more uniform sliver and reduce the jute into a suitable size for third drawing.
In the third drawing, the Third Drawing frame machine uses the sliver from second drawing. The Third Drawing machine is of high speed makes the sliver more crimpled and suitable for spinning. The comparison of the three drawing process:
The slivers obtained from finisher carding machine is fed with four slivers on to the first drawing frame machine. The first drawing frame machines makes blending, equalizing the sliver and doubling two or more slivers, level and provide quality and color. This machines includes delivery roller, pressing roller, retaining roller, faller screw sliders, check spring, back spring, crimpling box etc..
In second drawing, the Second Drawing Frame machine obtain the sliver from the First drawing machine and use six slivers and deliveries per head. The Second Drawing machine makes more uniform sliver and reduce the jute into a suitable size for third drawing.
In the third drawing, the Third Drawing frame machine uses the sliver from second drawing. The Third Drawing machine is of high speed makes the sliver more crimpled and suitable for spinning. The comparison of the three drawing process:
Drawing Process
|
Efficiency Range(%)
|
Productivity Mt/mc/shift
|
1st Drawing
|
55 - 73
|
1.75 – 2.2
|
2nd Drawing
|
64 - 74
|
1.62 – 1.9
|
3rd Drawing
|
67 - 70
|
1.31 – 1.4
|
Spinning:
Spinning is the process for producing yarn from sliver obtained from Third drawing. The jute spinning frame machine is fitted with slip draft zone and capable of producing quality
yarns at high efficiency with auto-dofting arrangements also.
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2 May 2012
Chemical Composition of Natural Fiber
Chemical Composition of Natural Fiber:
Every fiber consists of some chemical elements. Such as cotton contains cellulose, protein, pectin etc. Wool contains keratin, dirt, suint etc. Chemical composition of natural fibers are given below:
Chemical Composition of Cotton Fiber:
Chemical Composition of Jute Fiber:
Chemical Composition of Linen/Flax Fiber:
Chemical Composition of Hemp Fiber:
Chemical Composition of Sisal Fiber:
Chemical Composition of Coir Fiber:
Chemical Composition of Wool Fiber:
Chemical Composition of Keratin:
Every fiber consists of some chemical elements. Such as cotton contains cellulose, protein, pectin etc. Wool contains keratin, dirt, suint etc. Chemical composition of natural fibers are given below:
Chemical Composition of Cotton Fiber:
- Cellulose 94%
- Protein 1.3%
- Ash 1.2%
- Pectin 1.2%
- Oil, Fat and Wax 0.6%
- Sugar 0.3%
- Pigment trace
- Others 1.4%
Chemical Composition of Jute Fiber:
- Cellulose 65.2%
- Hemicellulose 22.2%
- Lignin 10.8%
- Water soluble 1.5%
- Fats and wax 0.3%
Chemical Composition of Linen/Flax Fiber:
- Cellulose 92%
- Hemicellulose 2%
- Lignin 4%
- Others 2%
Chemical Composition of Hemp Fiber:
- Cellulose 77.77%
- Hemicellulose 10%
- Lignin 6.8%
- Pectin 2.9%
- Fat & wax 0.90%
- Water soluble 1.73%
Chemical Composition of Sisal Fiber:
- Cellulose 71.5%
- Hemicellulose 18%
- Lignin 6%
- Pectin 2.3%
- Fat & wax 0.5%
- Water soluble 1.7%
Chemical Composition of Coir Fiber:
- Husk 14%
- Fiber 22%
- Pith 16%
- Kernel 30%
- Water 18%
Chemical Composition of Wool Fiber:
- Keratin 33%
- Dirt 26%
- Suint 28%
- Fat 12%
- Mineral matter 1%
Chemical Composition of Keratin:
- Carbon 50%
- Hydrogen 12%
- Oxygen 10%
- Nitrogen 25%
- Sulfher 3%
Chemical Composition of Silk Fiber:
- Fibroin 76%
- Sericin 22%
- Fat & wax 1.5%
- Mineral salt 0.5
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