Textile

JSC UNISPEKTRAS is working since 2007 in the business of polyester fiber, acrylic fiber, polyester technical yarn and nonwoven materials. In cooperation with Belarusian and Tukmenistan enterprises JSC UNISPEKTRAS can supply diverse range of products.

JSC UNISPEKTRAS, became the official many of factory dealer and can offer the whole palette of different thicknesses and lengths of polyester fibers and polyester technical yarn. In addition, the company can provide not just with polyester and acrylic fibersbut also with acrylic and polyester tow.

In the effort to meet our customers’ needs, the company is increasing its range of supplied products.

Polyester fiber is used in production of various textile products, which are made of polyester fiber base. It gives the material stability, keeps textiles forms strength and is also well suited for matching with natural fibers.

Variation of polyester fiber products include over twenty different species with a width ranging from 0.11 to 1.7 tex and a length from 6 to 102 mm.

Polyester fibers are widely used in the production of cotton, linen, wool yarns and fabrics, as well as non-woven materials, warmth-keeping fabrics, floor coverings, fur fabrics, artificial leather and paper industries.

Polyester fibers meet the highest requirements of dynamically and rapidly developing textile industry.

We offer these different polyester types:

Crimped polyester fiber and tow

Polyester fiber and tow

Nominal linear density, tex Description Application Unit breaking  load

mN/tex,not less than

Elongation at break,

%, not more than

Number  of crimps

per 1 cm

Linear shrinkage in boiling water,

%, not more than

0,11 dull manufacture of yarns and shirt fabrics 570 24 3,0-6,0 1,0
spun-dyed black 510 27 3,0-6,0 1,0
0,12 dull manufacture of artificial leather 420 40 3,0-6,0 1,5-8,0
spun-dyed black 420 48 3,0-6,0 2,0
0,13 dull manufacture of yarns and filter materials 570 24 3,0-6,0 1,0
spun-dyed black 510 27 3,0-6,0 1,0
0,15 Dull air covering (rewinding in cotton and silk industries) 540 25 3,0-6,0 1,0
0,17 dull processing in cotton and silk industries, manufacture of artificial fur 490 35 3,0-6,0 1,0
spun-dyed black 480 34 3,0-6,0 2,0
0,22

0,28

dull processing in wool and silk industries, manufacture of artificial fur and nonwoven materials 400 48 3,0-6,0 1,0
spun-dyed black 3,0-6,0 1,5
0,33 dull 392 50 4,0 2,0
spun-dyed black 373 50
0,33 dull with increased elongation 400 50-70 4,0 5,0
0,44 dull with increased elongation manufacture of substrates for flexible roofing materials 400 50-70 4,0 5,0
0,6

0,84 

1,0

dull manufacture of nonwoven materials, artificial fur 372 58 3,0-6,0 2,0
spun-dyed black 333 60 3,0
0,84 dull, with three radial cross section profile manufacture of filling and warmth- keeping materials 330 55 Not less than1,7 2,0
1,2

1,7

dull manufacture of nonwoven materials 294 70 2,0-5,0 3,0
spun-dyed black 284 70 3,0

Packing

Fiber nominal lengths, mm Tow nominal linear density, kTex Number of knots per bale Bale size, mm Bale weight, kg
length width height
25, 28, 32, 35, 38, 51, 55, 66, 76, 80, 90, 102 100 <5 1250 650 1150 260+/-40

Crimped fiber and tow with special properties

Crimped polyester fiber and tow

Nominal linear density, tex Description Application Unit breaking  load

mN/tex,not less than

Elongation at break,

%, not more than

Number  of crimps

per 1 cm

Linear shrinkage in boiling water,

%, not more than

0,11 dull manufacture of yarns and shirt fabrics 570 24 3,0-6,0 1,0
spun-dyed black 510 27 3,0-6,0 1,0
0,12 dull manufacture of artificial leather 420 40 3,0-6,0 1,5-8,0
spun-dyed black 420 48 3,0-6,0 2,0
0,13 dull manufacture of yarns and filter materials 570 24 3,0-6,0 1,0
spun-dyed black 510 27 3,0-6,0 1,0
0,15 Dull air covering (rewinding in cotton and silk industries) 540 25 3,0-6,0 1,0
0,17 dull processing in cotton and silk industries, manufacture of artificial fur 490 35 3,0-6,0 1,0
spun-dyed black 480 34 3,0-6,0 2,0
0,22

0,28

dull processing in wool and silk industries, manufacture of artificial fur and nonwoven materials 400 48 3,0-6,0 1,0
spun-dyed black 3,0-6,0 1,5
0,33 dull 392 50 4,0 2,0
spun-dyed black 373 50
0,33 dull with increased elongation 400 50-70 4,0 5,0
0,44 dull with increased elongation manufacture of substrates for flexible roofing materials 400 50-70 4,0 5,0
0,6

0,84 

1,0

dull manufacture of nonwoven materials, artificial fur 372 58 3,0-6,0 2,0
spun-dyed black 333 60 3,0
0,84 dull, with three radial cross section profile manufacture of filling and warmth- keeping materials 330 55 Not less than1,7 2,0
1,2

1,7

dull manufacture of nonwoven materials 294 70 2,0-5,0 3,0
spun-dyed black 284 70 3,0

Packing

Fiber nominal lengths, mm Tow nominal linear density, kTex Number of knots per bale Bale size, mm Bale weight, kg
length width height
25, 28, 32, 35, 38, 51, 55, 66, 76, 80, 90, 102 100 <5 1250 650 1150 260+/-40

Crimped fiber and tow with special properties

Crimped fiber and tow with special properties

Nominal linear density,

tex

Description Application Unit breaking load,

mN/tex, not less than

Elongation at break,

%, not more than

Number of crimps

per 1 cm

Linear shrinkage in boiling water,

%, not more than

0,11 “swan’s down” type, dull manufacture of fine nonwovens and filling material 420 40 2,0 3,0-6,0
0,64 round hollow cross section, with “slippery” handle, dull (fiber) to be used as filling material 370 56 2,0 3,0-6,0
0,55

0,64

bicomponent fibre type “core-sheath” undyed manufacture of fine nonwovens by means of thermal bonding 240 75 50 (in boiling water)) 1,5-6,0

Packing

Fiber nominal lengths, mm Tow nominal linear density, kTex Number of knots per bale Bale size, mm Bale weight, kg
length width height
25, 28, 32, 35, 38, 51, 55, 66, 76, 80, 90, 102 100 <5 1250 650 1150 260+/-40

Polyester tow, dull, non-crimped

Poliesterio pluoštas ir žgutas pasižymintis žemu degumu

Nominal linear

density, tex

Description Application Unit breaking load,

mN/tex, not less than

Elongation at break,

%, not more than

Linear shrinkage in boiling water,

%, not more than

0,17 Dull and spun-dyed black
non-crimped manufacture of synthetic paper 451 56 in boiling water 2,0
in hot air 5,0
0,33 manufacture of filter materials 392 50 2,0
0,6 372 58 2,0
1,7 294 70 3,0

Packing

Tow nominal linear density, kTex Number of knots per bale Bale size, mm Bale weight, kg
length width height
100 <5 1250 650 100 <5

Polyester fiber and tow with low flammability

Polyester matt fiber and tow with low flammability

Textile products on the basic of natural chemical fiber are applied in different areas of industries, in building industry, in daily round, in transport, together with numerous advantages it have the disadvantage as burning quality and high fire risk. They easy flame, burn speedily with the release of smoke and toxic gas products.

Considering that polyester products are widely applied in many sections and areas, it was a necessity to make it non-flammable. Chemical modification allowed expanding of the nomenclature of polyester products for application it as products with lower burning quality.

OAO “Mogilevkhimvolokno” in 2010 has mastered the manufacture of matt crinkled fiber (tow) with lower burning quality of different linear density 0,17 – 0,44 tex and different length of cut (tow weighing 50, 100 ktex).

The modification of chemical compound was used for manufacturing.

The area of application of polyester fabric/tow with lower burning quality is manufacture of nonwoven fabric with lower burning quality, textile fabric, table textiles and others.

Polyester fabric articles with low flammability have variety of preferences:

  • It keeps its characteristics during the process of multiple washing and cleaning; 
  • Polyester fabric is fire-resistant and it can not be an ignition source;
  • Using of textile products increases fire protetion of facilities, because in that case it meets the international standards of textile using in public places.
  • The presence of fire-resistance materials in interior helps to find understanding with Fire Control Department and insurance companies.
Name of figure Value
1.* Unit tenacity, mN / tex 380-450
2. * Disruption elongation,% 40-70
3. Linear shrinkage,% 2-3
4. Oxygen index,% 32

Note: * – the figures will be specified after the procedure of delivery to the manufacture.

Technical polyester yarns are used in various fields in the production of ropes, conveyor fabrics,  cloths, belts, conveyor belts, fire hoses, geotextiles, roofing’s and technical fabrics. 

We can offer a variety of linear density and thickness of technical polyester yarns. The main categories are: 

Low-shrinkage high-adhesive polyester yarns

Low-shrinkage high-adhesive polyester yarns

Nominal Linear Density, dtex Number of Filaments Specific Breaking Load, mN/tex, not less than Elongation at Break % Linear Shrinkage (150 ° 30 min ), % Twist Direction Twists per Meter Adhesion to Rubber, Н , not less than (Yarn Structure 111 х 3 х 3)
1110 200 706 12,0+/-2,0 2,6+/- 0,5 – 0 175
1110 200 697 12,0+/-2,5 S/Z 100+/-10
2250 400 697 12,0+/-2,5 S/Z 100+/-10
3380 600 687 12,0+/-2,5 S/Z 85+/-10
4540 800 680 12,0

-1,0/+3,0

S/Z 85+/-10
5630 1000 677 S/Z 50+/-10
6750 1200 666 12,0

-1,0/+3,5

S/Z 50+/-10
6840 1200 650 S/Z 100+/-10

 

Packing

Nominal Linear Density , dtex Bobbin diameter, mm Tube Length and Inside Diameter, mm Number of Bobbins per Block-Package Block-Package Gross Weight, kg Block-Package Height, mm
1110 265 299/93 48 550 1150
2250-6840 275 39 455

Type of winding: cylindrical bobbins with cross winding
Bobbin weight 10,0±0,4 kg

Polyester industrial yarns type M 940

Polyester industrial yarns type M 940

M 940 type yarns are used in production of technical coated fabrics for tents and other technical fabrics.

Nominal Linear Density, dtex Number of Filaments Specific Breaking Load, mN/tex, not less than Elongation at Break, % Linear Shrinkage (180º С 15 min), %, not more than Twist Direction Twists per Mete Finishing Agent, %
1130 200 640 19,5+/-2,0 2,2+/-0,6 – 0      0,5-1,4
1140 200 635 19,5+/-3,0 S/Z 100+/-10
2280 400 610 20,5+/-3,0 S/Z 100+/-10
3420 600 600 20,5+/-3,0 2,5+/- 0,6 S/Z 85+/-10

 High twisted polyester industrial yarns

High twisted polyester industrial yarns

Yarn Composition Total Nominal Linear Density, dtex Number of Filaments Braking Load, N, not less than Elongation at Break, % not more than Linear Shrinkage in Hot Air (150°С 30 min), %, not more than Twists per Meter Finishing Agent, %
1110 dtex x2 x3 6800 1200 420 16 2,6+/-0,6 50-200 0,7-1,2
1110 dtex x3 x3 10200 1800 620 18
1110 dtex x2 x6 13500 2400 640 18
1110 dtex x6 x2
1110 dtex x3 x4
1110 dtex x4 x3

Packing

Yarn Composition Yarn Weight in a Bobbin, kg Tube Length and Inside Diameter, mm Number of Bobbins per Block-Package Block-Package Gross Weight, kg Block-Package Height, mm
1110 dtex x2 x3 2,0-9,7 299/93 39/48 400/300 1150
1110 dtex x3 x3 2,0-3,5 Depends on the weight of packages 325
1110 dtex x2 x6 2,0-9,7 39
1110 dtex x6 x2
1110 dtex x3 x4
1110 dtex x4 x3

New types of polyester industrial yarns

New types of polyester industrial yarns

Polyester industrial HMLS yarns dtex 1100, 1440, 1670 and HM yarns dtex 1100 are applied mostly in the production of polyester tire fabrics. The yarns are adhesive to rubber. HM yarns have high breaking strength, i.e. not less than 82 cN/tex. They are applied for rigging, ropes and slings production. These yarns have higher specific breaking load and lower elongation.

Production of HT yarns with high adhesion to rubber and LS non-adhesive yarns with low shrinkage came on stream. HT yarns have high breaking strength, i.e. not less than 82 cN/tex. Due to their low shrinkage and adhesion to rubber HT yarns can be applied in the production of rubber goods (conveyer belts, hoses, belts, etc.). LS yarn is applied mostly in the production of technical fabrics with polymer coating (awnings, tents, overhangs, etc.).

Type of Yarn Yarn Characteristics Linear Density, dtex Number of Filaments Specific Braking Load, mN/tex, not less than Elongation at Break, % not more than Elongation at Load 45N, % not more than Liner Shrinkage (177°С 2 min), %, not more than Bobbin Weight, kg
M 880 High Modulus High Adhesive Yarn (HM) 935

1850

192

288

820

820

12,0

12,0

6,5

5,0

9,0

9,0

12,0+/-0,1
M

950

High Modulus Non-Adhesive Yarn (HM) 1100 192 820 12,5 5,0 9,0 12,0+/-0,1
2200 (1100 dtex x2 Z100) 384 750 13,5 4,0 (150º 30 min),

8,5

10,0+/- 0,4
4450 (1100 dtex x4 Z85) 768 740 14,0 4,0

90N load

9,0
M 870 High Tenacity High Adhesive Yarn (НТ) 1100 200 820 13,5 – (180º 15 min),

5,5

16,0+/-0,1
M 960 Low Shrinkage Non-Adhesive Yarn (LS) 1130

1670

200

200

675

675

23,0

24,0

– (180º 15 min),

2,2

2,2

 

Packing

Type of Yarn Nominal Linear Density, dtex Twist Direction Turns per Meter Tube Length and Inside Diameter, mm Number of Bobbins per Block-Package Block-Package Gross Weight, kg Block-Package Height, mm
M 880 935 – – 300/110 33 467 1150
1870
M 950 1100
2200 Z/S 100+/-10 299/93 39 455
4450 Z/S 85+/-10
M 870 1100 – – 300/94 27 500
M 960 1130
1670

After the agreement with a consumer the delivery of next experimental range is allowed:

Type of Yarn Yarn Characteristics Linear Density, dtex Number of Filaments Specific Braking Load, mN/tex, not less than Elongation at Break, % not more than Liner Shrinkage in hot air, %, not more than Bobbin Weight, kg
77ºС

2 min

200ºС 15 min
M 950 HM High Shrinkage 1100 192 835 11,0 – 21,0 12+/-0,1
M 950 HM 1670 288 830 12,0 9,0 – 12+/-0,1
M 950 HM 2200 288 820 12,5 9,5 – 12+/-0,1
M 950 НМ yarn structure 220х2 4450 576 750 14,0 9,0 – 12+/-0,4

There is a wide spectrum of the use of acrylic fiber and tow. The high quality and performance characteristics of the fiber allow to process it by any light industry process.

Acrylic fibers can be used as produced, as well as blended with synthetic, man-made and natural fibers.

Applications:

  • yarn
  • fabrics, curtaining, upholstery
  • knitwear
  • synthetic fur
  • carpets
  • technical products, carbon fibers

 A wide range of fibers made by the enterprise can meet different customers demands:

  • the colour is mostly white: bright or semi-dull, but can be made cation-dyed into a wide spectre of colours differing in colour intensity
  • tow and cut fibers can be produced
  • cotton and wool-type fibers can be produced
  • different nominal linear density fibers ranging from 0.17 to 2.5 tex (1.5-22.5 denier)

We offer  different production of acrylic fiber and tow:

Nitron -C (Courtaulds process)

NITRON-C

Grades:

Н-1– bright surface — dyed

Н-2– bright spun — dyed

Н-3– bright bleached

Н-4– bright bleached surface — dyed

Н-7– dull bleached

Н-8– dull bleached surface — dyed

 

Technical Characteristics

Indices Grades
Nominal linear density of elementary tow and fibre, tex 0.33; 0.44; 0.56; 0.8; 1.1; 1.7
Nominal cut length, mm 32, 38, 51, 64, 72, 102, 114, 128, 152
Nominal linear density of tow, ktex

0.33; 0.44 tex

0.56; 0.68 tex

0.8; 1.1; 1.7 tex

 

53

55

66

Relative strength of filament, mN/tex, not less than,forlinar densities:

0.33 tex

0.44 tex

0.56 tex

0.68; 0.8 tex

1.1; 1.7 tex

225210

190

170

160

Breaking Elongation, % 30-50
Relative strength of filament in knot,mN/tex, not less than,for

0.33 tex

0.44 tex

0.56 tex

0.68; 0.8 tex

1.1; 1.7 tex

 

70

65

60

55

50

Deviation of actual fibre (tow) linear density from nominal
value, %, not more than for elementary fibre ±7
Deviation of actual fibre length from nominal value, %, not more than ±7
No. Of crimps per 10 mm 3.0 – 4.5
Shrinkage, %, max 6.0
Finishing oil content. % 0.3 – 0.80
Whiteness, tow and fibre, % , not less than for:
0.33; 0.44 tex0.56-1.7 tex  

75

73

Actual moisture content, %, 1.0 – 4.0
Packing of fibre – PP bales, kg 200±30
Bale dimensions, mm 1000х600х880
Packing of tow-cartons, kg 100±20
Bale dimensions, mm 670х600х880

Nitron -D (SNIA BNP process)

Nitron -D (SNIA BNP process)

Grades:

ND-1 — bright, undyed

ND-4 — bright surface — dyed

ND-5 — semi — dull, undyed

ND-6 — semi — dull, surface — dyed, super bleached

Technical characteristics

Indices Grades
Nominal linear density of fibre, tex 0.13; 0.17; 0.22; 0.33; 0.56; 0.78; 1.1; 1.7; 2.5
Nominal cutting length, mm 32, 38, 51, 64, 75, 102 ,128, 152
Nominal linear density of tow, ktex
Tex 0.13Tex 0.17Tex 0.28

Tex 0.22; 0.33; 0.56; 0.78; 1.1; 1.7; 2.5

 

106

102

117-119

110-138

Relative strength of filament, mN/tex, not less than,for:

Tex 0.13; 0.17; 0.28; 0.33

Tex 0.22

Tex 0.78

Tex 1.1; 1.7; 2.5

225-245

215-235

190-200

Breaking Elongation, %

Tex 0.13; 0.17; 0.22

Tex 0.28; 0.33

Tex 0.67-2.5

 

24-50

34-55

34-67

Relative strength of filament in knot,mN/dtex, not less than,for :
Tex 0.13Tex 0.17; 0.22Tex 0.28; 0.33

Tex 0.56; 0.67; 0.78

Tex 1.1; 1.7; 2.5

 

105-108

102-108

92-98

80-88

72-78

Deviation of actual fibre /tow linear density from nominal value, %, not more than

Tex 0.13; 0.17; 0.22;0.28

Tex 0.33-2.5

±8±6
Deviation of actual cut length of fibre from
 nominal value, %, not more than -5/+6
No. Of crimps per 10 mm

Tex 0.13; 0.17

Tex 0.22-2.5

2-52-4,5
Linear Shrinkage, %, not more than

Tex 0.13; 0.17; 0.22; 0.28; 0.33

Tex 0.56-2.5

 

5.0

4.5

Weight share of finisher and antistatic,   % 0.30-0.70
Whiteness of fibre and tow, % , not less than for:
super blichedTex 0.13-0.78Tex 1.1-2.5  

100.0

70.0

63.0

Moisture content, %, not more than 4.0
Packing – bales, kg 150-230
Bale dimensions, mm 1200х800х550

Nonwoven fabrics are made ​​of interconnected threads. Nonwoven fabrics are widely used in webs and sheets, which are mechanically, thermally and chemically bound. These webs are made directly from separate fibres, molten plastic or plastic film. 

Nonwoven fabrics have specific characteristics such as: resistance coating, liquid repellence, tenderness, strength, halting the spread of flames, as well as the creation of a barrier and sterility. 

Along with other materials, they provide a different range of products and features that are used separately or as part of clothing, furniture, health care, engineering, industrial and consumer goods production. 

We offer a variety of non-woven products, such as: 

Spunbonded polyester geotextiles 

Spunbonded polyester geotextiles

Non-woven geotextiles are used as separation layers to prevent soils from mixing and also as filters for drainage structures. Thus, non-woven geotextiles protect geomembranes when used in impervious screens of disposal sites. Geotextile webs should be used in conformity with the requirements of normative technical documents in force related to provision of draining, separating, reinforcing, etc. interlinings in road structures, sub foundations, land and reclamation constructions, and also when installing water drains, running pipelines, building airdromes and constructing subsurface structures and landfills.

Description of parameter Value for type
PFG-100 PFG-150 PFG-200 PFG-250 PFG-300 PFG-350 PFG-400
A B A B A B A B A B A B A B
Nominal surface density,g/m2 100 150 200 250 300 250 400
Deviation of actual surface density from nominal, % +/-10 +/-12 +/-10 +/-12 +/-10 +/-12 +/-10 +/-12 +/-10 +/-12 +/-10 +/-12 +/-10 +/-12
Nominal thickness, mm 1,2 1,3 1,6 2,0 2,4 2,9 3,0
Deviation of actual thickness from nominal, % +/-15 +/-17 +/-15 +/-17 +/-15 +/-17 +/-15 +/-17 +/-15 +/-17 +/-15 +/-17 +/-15 +/-17
Breaking load, N/100 mm, min:
by length 420 350 800 650 1050 900 1200 1050 1500 1350 1700 1550 2050 1850
by width 320 280 620 550 820 750 900 830 1100 950 1300 1150 1450 1200
Elongation at break, %, min:
by length 40 38 40 38 40 38 40 38 40 38 40 38 40 38
by width 40 38 40 38 40 38 40 38 40 38 40 38 40 38

Geotextile Polyester Webs (Geotextiles) are spunbonded non-woven materials, which undergo further needling thereby acquiring higher physical-and-mechanical properties as compared to fibre-based non-woven materials. Geotextiles are characterized by high elastic modulus, high resistance to local mechanical damages, qualities very important for the process of laying the material. Geotextiles are chemically indifferent to acids and aggressive biological media, they are not subject to putrefaction or exposure to fungi and mold.

The web, after being laid down on and fastened to the ground surface, must be protected from sunlight (ultraviolet radiation).
Geotextiles can be installed practically in any weather conditions. The material precisely follows the base surface geometry and does not require any special fastenings.
If needed, the webs can be joined together using ultrasonic devices or by mechanically stitching them up (thermal splicing is not allowed).

Polyester substrate for roofing materials 

Polyester substrate for roofing materials

OAO “Mogilevkhimvolokno” (Mogilev, Belarus) in December 2005 started production of Polyester Nonwovens by direct spinning (Spunbond) for further use as Substrate for Soft Roofing and Waterproof Bitumen/Polymer Materials, Linoleum, Tuft Covering and Geotextiles. The polyester-based roofing materials have the following properties:

  • Total decay-proof
  • High elongation at break
  • High breaking load
  • Good ability for elongation and contraction on tensile load removal
  • Good pliancy
  • Good ability to stand point loads and keep the size

Polyester substrate for roofing materials

Description of parameter Value for type
PFK-100 PFK-110 PFK-120 PFK-130 PFK-140
A B A B A B A B A B
Surface density, g/m2 100+/-10 100+/-15 110+/-11 110+/-16 120+/-12 120+/-18 130+/-13 130+/-19 140+/-14 140+/-21
Width, cm 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2
Thickness, mm 0,7+/-0,2 0,7+/-0,3 0,7+/-0,2 0,7+/-0,3 0,8+/-0,3 0,8+/-0,4 0,8+/-0,3 0,8+/-0,4 1,0+/-0,3 1,0+/-0,4
Breaking load, N/50 mm, min:
by length 250 200 270 230 290 250 330 280 380 340
by width 150 100 170 130 190 160 230 200 270 230
Elongation at break, %, min:
by length 22 20 22 20 23 21 23 21 22 24
by width 24 22 24 22 21 20 24 22 25 23
Tear Strength , N, min:
by length 75 60 80 60 80 60 90 60 95 80
by width 80 75 85 75 85 80 95 85 100 90
Change of linear sizes after thermal processing %, max:
by length 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0
by width 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2

Polyester substrate for roofing materials (continuation)

Description of parameter Value for type
PFK-150 PFK-160 PFK-170 PFK-180 PFK-200
A B A B A B A B A B
Surface density, g/m2 150+/-15 150+/-22 160+/-16 160+/-24 170+/-17 170+/-25 180+/-18 180+/-27 200+/-20 200+/-30
Width, cm 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2 102+/-2
Thickness, mm 1,0+/-0,3 1,0+/-0,4 1,1+/-0,3 1,1+/-0,4 1,1+/-0,3 1,1+/-0,4 1,2+/-0,3 1,2+/-0,4 1,2+/-0,3 1,2+/-0,4
Elongation at break, %, min:
by length 25 23 25 23 26 24 28 26 27 28
by width 25 23 26 24 27 25 29 27 25 26
Change of linear sizes after thermal processing %, max:
by length 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0 2,0
by width 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2 0,2
Tear Strength , N, min:
by length 100 85 110 90 115 95 120 100 140 120
by width 110 90 120 100 125 115 140 120 150 130

Note:
1 The width is ensured by process
2 Parameter values specified in this Table can be changed by agreement with the consumer

Roll dimensions:
length – 102,0±2,0 cm
dia. – up to 120,0 cm
weight – 200±20 kg

Packing:
Substrate is made in roll by 700-1700 rm and packed in PE film

Polyester web Lavsan TECH-LK 

Polyester web Lavsan TECH-LK

Polyester web LavsanTECH-LK is used as based material under floor covering, carpeting and tafting. Made in rolls with length 15-30 m for polyester web, nominal linear density (260-360) g/m2.

Description of parameter Values for polyester fiber (grade)
Lavsan TECH-LK-100 Lavsan TECH-LK-110 Lavsan TECH-LK-120 Lavsan TECH-LK-160 Lavsan TECH-LK-180 Lavsan TECH-LK-260 Lavsan TECH-LK-360
Surface density g/m2 100+/-8 110+/-9 120+/-10 160+/-13 180+/-14 260+/-21 360+/-29
Breaking force, Н/5cm, (kН/m), not less:

-length

-width

110(2,2)

130(2,6)

120(2,4)

140(2,8)

140(2,8)

150(3,0)

180(3,6)

190(3,8)

240(4,8)

260(5,2)

300(6,0)

400(8,0)

400(8,0)

600(12,0)

width, cm 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5

Polyester web Lavsan TECH-FT

Polyester web is appropriate for industrial filtering of airborne, gas and liquid vehicles from mechanical contaminations in different industrial branches as filtering elements in household appliances.
It is made in rolls with length 15 – 30 m.

Description of parameter Values for polyester fiber (grade)
Lavsan
TECH- FT –350
Lavsan
TECH- FT -450
Lavsan
TECH- FT -500
Lavsan
TECH- FT -500
Surface density g/m2 350+/-28 450+/-36 500+/-40 500+/-40
Breaking force, Н/5cm, (kН/m), not less:
– length
– width
550(11,0)

600(12,0)

650(13,0)

720(14,4)

750(15,0)

980(19,6)

850(17,0)

1050(21,0)

depth, mm 2,3+/-04 2,9+/-0,4 3,2+/-0,4 2,4+/-0,4
width, cm 200+/-4 200+/-4 200+/-4 200+/-4

Polyester Geotextile Web LavsanGeo

Polyester geotextile web Lavsan Geo is used as a separation layer between sand, gravel and other particles to prevent their mixing, as a filtering layer in drainage systems, as a layer against weeds; it is also used as a waterproofing layer to avoid mechanical damages.

Application of polyester geotextile web Lavsan Geo:

  • road constructions (highways, railways, tunnels, bridges, airdromes);
  • hydrotechnical constructions (pools, water bodies);
  • drainage constructions;
  • erosional-preventive constructions;
  • for roofing material;
  • foundation constructions;
  • landscape design (grass, ponds etc);
  • by construction of lines to transfer liquids and gases (isolation, ballasting etc.)

Made in rolls.

Description of parameter Values for polyester fiber (grade)
Lavsan Geo-100 Lavsan Geo-150 Lavsan Geo-160 Lavsan Geo-200 Lavsan Geo-250 Lavsan Geo-300 Lavsan Geo-360 Lavsan Geo-400
Surface density g/m2 100+/-8 150+/-12 160+/-13 200+/-16 250+/-20 300+/-24 360+/-29 400+/-32
Breaking force, Н/5cm, (kН/m), not less:


– length
– width

110(2,2)

130(2,6)

150(3,0)

170(3,4)

160(3,2)

180(3,6)

250(5,0)

300(6,0)

300(6,0)

350(7,0)

340(6,8)

390(7,8)

360(7,2)

430(8,6)

380(7,6)

460(9,2)

breaking elongation , %, not more:


– length

 

– width

130

130

130

130

130

130

130

130

 

125

125

115

115

110

110

110

110

depth, mm 1,3+/-0,4 2,0+/-0,4 2,1+/-0,5 2,3+/-0,5 2,5+/-0,5 2,7+/-0,5 3,1+/-0,5 3,5+/-0,5
width, cm 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5 600+/-5