🇵🇱 SIEĆ BADAWCZA ŁUKASIEWICZ - PL
Materials & polymersWater & wastewater
SIEĆ BADAWCZA ŁUKASIEWICZ - is a laboratory accredited by PCA under number AB 033 (Łódź, Poland). Its accreditation scope covers 84 test methods in the following areas: Materials & polymers, Water & wastewater. Test objects include: Casual, occupational, safety and protective footwear, Natural soft and hard leathers: - shoe upper and lining - shoe inso…, Occupational, safety and protective footwear, Sole and upper materials: - solid rubbers - microcellular rubbers -….
At a glance
- Accreditation number: PCA AB 033
- Methods in scope: 84
- Types of test objects: 22
- City: Łódź, Poland
- Accreditation number
- AB 033
- Accreditation body
- PCA
- Address
- ŁÓDZKI INSTYTUT TECHNOLOGICZNY, ul. Marii Skłodowskiej-Curie 19/27, 90-570 Łódź, LABORATORIUM BADAŃ SKÓRY I MATERIAŁÓW SKÓROPODOBNYCH
- City
- Łódź, Poland
What this laboratory tests (22)
- Casual, occupational, safety and protective footwear — 16 methods
- Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" — 9 methods
- Occupational, safety and protective footwear — 9 methods
- Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products — 7 methods
- Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles — 5 methods
- Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers — 5 methods
- Footwear components: - penetration resistant inserts — 4 methods
- Footwear components: - toe caps — 4 methods
- Soft natural leathers: - shoe upper and lining - clothing and glove - furniture Non-leather lining and insole materials — 4 methods
- Natural leathers: - insole and sock lining Reconstituted leathers: - insole and sock lining Artificial leathers: - insole and sock lining made of cellulose fibres Nonwovens: - insole and sock lining — 3 methods
- Soft natural leathers: - shoe upper and lining - clothing and glove - fancy goods, leathergoods and furniture - fur — 3 methods
- Footwear components: - zip fasteners — 2 methods
- Soft natural leathers, artificial leathers and textile materials: - shoe upper and lining - fancy goods, leather goods and furniture - clothing — 2 methods
- Soft natural leathers: - shoe upper - clothing — 2 methods
- Soft natural leathers: - shoe upper - clothing and glove - fancy goods, leather goods and furniture — 2 methods
- and 7 more
Accreditation scope — test methods (84)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Thickness Range: (0,02 − 10,00) mm Mechanical method | PN-EN ISO 2589:2016-05 | ||
| 2 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Tensile strength and maximum elongation Range: (0 – 5000) N Mechanical method | PN-EN ISO 3376:2020-10 | ||
| 3 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Tearing force Range: (0 – 5000) N Mechanical method | PN-EN ISO 3377-1:2012 | ||
| 4 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Tearing force Range: (0 – 5000) N Mechanical method | PN-EN ISO 3377-2:2016-06 | ||
| 5 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Chromium (VI) content Range: (1 – 600) mg/kg Colorimetric method | PN-EN ISO 17075-1:2017-05 | ||
| 6 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Content of dichloromethane-soluble substances Gravimetric method | PN-EN ISO 4048:2018-10 | ||
| 7 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | pH and difference figure of the aqueous leather extract Range: (2 – 9) Electrochemical method | PN-EN ISO 4045:2018-09 | ||
| 8 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Free or total formaldehyde content Range: (8 – 380) mg/kg Colorimetric method | PN-EN ISO 17226-2:2019-05 | ||
| 9 | Natural soft and hard leathers: - shoe upper and lining - shoe insole and outsole - clothing - glove - fur - fancy goods, leather goods and furniture - "crust" | Content of volatile substances Gravimetric method | PN-EN ISO 4684:2006 | ||
| 10 | Soft natural leathers: - shoe upper - clothing and glove - fancy goods, leather goods and furniture | Adhesion of opaque coatings Direct measurement method | PN-EN ISO 11644:2023-05 | ||
| 11 | Soft natural leathers: - shoe upper - clothing and glove - fancy goods, leather goods and furniture | Colour fastness to water drop Visual assessment method | PN-EN ISO 15700:2001 | ||
| 12 | Soft natural leathers: - shoe upper and lining - clothing and glove - fancy goods, leathergoods and furniture - fur | Colour fastness to cyclic reciprocating rubbing Visual assessment method | PN-EN ISO 11640:2018-12 | ||
| 13 | Soft natural leathers: - shoe upper and lining - clothing and glove - fancy goods, leathergoods and furniture - fur | Colour fastness to rotary rubbing Visual assessment method | PN-EN ISO 17700:2019-12 Metoda B | ||
| 14 | Soft natural leathers: - shoe upper and lining - clothing and glove - fancy goods, leathergoods and furniture - fur | Colour fastness to artificial perspiration Visual assessment method | PN-EN ISO 11641:2013-05 | ||
| 15 | Soft natural leathers, artificial leathers and textile materials: - shoe upper and lining - fancy goods, leather goods and furniture - clothing | Resistance to repeated flexing under dry, wet and sub-zero temperature conditions Flexometric method | PN-EN ISO 17694:2016-08 | ||
| 16 | Soft natural leathers, artificial leathers and textile materials: - shoe upper and lining - fancy goods, leather goods and furniture - clothing | Resistance to repeated flexing under dry and wet conditions Flexometric method | PN-EN ISO 5402-1:2022-10 | ||
| 17 | Soft natural leathers: - shoe upper - clothing | Water absorption and penetration under dynamic conditions Gravimetric method Penetration time – Direct measurement method | PN-EN ISO 5403-1:2012 | ||
| 18 | Soft natural leathers: - shoe upper - clothing | Water absorption and penetration under dynamic conditions Gravimetric method | PN-EN ISO 20344:2012 p. 6.13 PN-EN ISO 20344:2022-04 p. 6.13 | ||
| 19 | Shoe upper leathers: - natural - synthetic | Bursting and surface strength (ball burst method) Direct measurement method | PN-EN ISO 3379:2015-11 | ||
| 20 | Soft natural leathers: - shoe upper and lining - clothing and glove - furniture Non-leather lining and insole materials | Water vapour permeability Gravimetric method | PN-EN ISO 20344:2012 p. 6.6 PN-EN ISO 20344:2022-04 p. 6.6 PN-EN ISO 14268:2023-08 | ||
| 21 | Soft natural leathers: - shoe upper and lining - clothing and glove - furniture Non-leather lining and insole materials | Water vapour absorption Gravimetric method | PN-EN ISO 20344:2012 p. 6.7 PN-EN ISO 20344:2022-04 p. 6.7 PN-EN ISO 17229:2016-06 | ||
| 22 | Soft natural leathers: - shoe upper and lining - clothing and glove - furniture Non-leather lining and insole materials | Water vapour coefficient Calculated | PN-EN ISO 20344:2012 p. 6.8 PN-EN ISO 20344:2022-04 p. 6.8 PN-EN ISO 17229:2016-06 | ||
| 23 | Soft natural leathers: - shoe upper and lining - clothing and glove - furniture Non-leather lining and insole materials | Abrasion resistance Visual assessment method | PN-EN ISO 20344:2012 p. 6.12 PN-EN ISO 20344:2022-04 p. 6.12 | ||
| 24 | Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles | Tensile strength and elongation at break Range: (0 – 5000) N Mechanical method | PN-EN ISO 1421:2017-02 | ||
| 25 | Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles | Tensile properties Maximum force and percentage elongation Range: (0 – 5000) N Mechanical method | PN-EN ISO 13934-1:2013-07 | ||
| 26 | Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles | Tear resistance Range: (0 – 5000) N Mechanical method | PN-EN ISO 4674-1:2017-02 Metoda B PN-EN ISO 13937-2:2002 PN-EN ISO 9073-4:2021-07 | ||
| 27 | Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles | Adhesion force Range: (0 – 5000) N Mechanical method | PN-EN ISO 2411:2025-02E | ||
| 28 | Artificial leathers and fabrics: - shoe upper and lining - fancy goods and leather goods - nonwovens - textiles - coated textiles | Abrasion resistance Visual assessment method | PN-EN ISO 5470-2:2005 Metoda 1 PN-EN ISO 5470-2:2022-03 Metoda 1 | ||
| 29 | Reconstituted leathers: - counter - insole Artificial leathers: - insole made of cellulose fibres Nonwovens: - insole | Abrasion resistance Visual assessment method | PN-EN ISO 20344:2012 p. 7.3 PN-EN ISO 20344:2022-04 p. 7.3 | ||
| 30 | Natural leathers: - insole and sock lining Reconstituted leathers: - insole and sock lining Artificial leathers: - insole and sock lining made of cellulose fibres Nonwovens: - insole and sock lining | Water absorption under dynamic conditions and water desorption Gravimetric method | PN-EN ISO 20344:2012 p. 7.2 PN-EN ISO 20344:2022-04 p. 7.2 | ||
| 31 | Natural leathers: - insole and sock lining Reconstituted leathers: - insole and sock lining Artificial leathers: - insole and sock lining made of cellulose fibres Nonwovens: - insole and sock lining | Thickness Range: (0,5 – 15,0) mm Mechanical method | PN-EN ISO 20344:2012 p. 7.1 PN-EN ISO 20344:2022-04 p. 7.1 | ||
| 32 | Natural leathers: - insole and sock lining Reconstituted leathers: - insole and sock lining Artificial leathers: - insole and sock lining made of cellulose fibres Nonwovens: - insole and sock lining | Liquid (distilled water) absorption time Direct measurement method | PB-37/NA wyd. IV z 15.10.2021 r. | ||
| 33 | Natural leathers intended for protective articles | Heat resistance of leather Thermal method | PN-EN ISO 17227:2005 | ||
| 34 | Materials for protective gloves | Tear resistance Range: (0 – 5000) N Mechanical method | PN-EN 388+A1:2019-01 p.6.4 | ||
| 35 | Textiles - knitted fabrics and fibre webs - nonwovens - flat textile products | Mass per unit area Gravimetric method Mass per unit area Small sample method | PN-P-04613:1997 p. 3.4 PN-EN ISO 9073-1:2023-11 PN-EN 12127:2000 | ||
| 36 | Textiles (coated and uncoated): - knitted fabrics and fibre webs - nonwovens - woven fabrics | Watertightness Range: (0 – 900) cm H2O Direct measurement method | PN-EN ISO 811:2018-07 | ||
| 37 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Tensile strength properties Range: (10 – 1000) N Mechanical method | PN-ISO 37:2007+AC1:2008 próbki wg p. 6.1 | ||
| 38 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Tear strength Range: (10 – 1000) N Mechanical method | PN-ISO 34-1:2007 Metoda A | ||
| 39 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Density Gravimetric method | PN-ISO 2781:1996 Metoda A | ||
| 40 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Shore hardness: − for rubber Range: (0 – 100) Sh A (0 – 100) Sh D − for plastics and ebonite Range: (0 – 100) Sh A (0 – 100) Sh D IRHD hardness, method N Range: (10 – 100) IRHD Mechanical method | PN-C-04238:1980 PN-EN ISO 868:2005 PN-ISO 48:1998 | ||
| 41 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Resistance to liquids Gravimetric method | PN-ISO 1817:2001+Ap1:2002 | ||
| 42 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Resistance to diesel fuel Gravimetric method | PN-EN ISO 20344:2012 p. 8.6 PN-EN ISO 20344:2022-04 p. 8.8 | ||
| 43 | Sole and upper materials: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers Finished products | Dimensions of test specimens and products Method A Range: (0 – 30) mm Method B Range: (30 – 100) mm Method C Range: (100 – 500) mm Direct measurement method Method D Range: (0 – 15) mm Optical method | PN-ISO 23529:2006 p. 7 | ||
| 44 | Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers | Abrasion resistance Mechanical method | PN-ISO 4649:2007 Metoda A | ||
| 45 | Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers | Stiffness of soles Mechanical method | PN-EN ISO 20344:2012 p. 8.4.1 PN-EN ISO 20344:2022-04 p. 8.5 | ||
| 46 | Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers | Bending resistance of complete soles Flexometric method | PN-EN ISO 20344:2012 p. 8.4.2 PN-EN ISO 20344:2022-04 p. 8.6 | ||
| 47 | Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers | Resistance of the sole material to contact with a hot surface at 300 °C Thermal method | PN-EN ISO 20344:2012 p. 8.7 PN-EN ISO 20344:2022-04 p. 8.9 | ||
| 48 | Sole materials, soles: - solid rubbers - microcellular rubbers - plasticized polyvinyl chloride - thermoplastic rubbers - solid and foamed polyurethanes - EVA copolymers | Dimensions of soles Methods: direct measurement and optical | PN-EN ISO 20344:2012 p. 8.1.2 PN-EN ISO 20344:2022-04 p. 8.2 | ||
| 49 | Footwear components: - toe caps | Internal length of the toecap Direct measurement method | PN-EN ISO 20344:2012 p. 5.3 PN-EN ISO 20344:2022-04 p. 5.3 PN-EN 12568:2011 p. 5.2.1 PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05 | ||
| 50 | Footwear components: - toe caps | Compression resistance Direct measurement method | PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05 PN-EN 12568:2011 p. 5.2.3 | ||
| 51 | Footwear components: - toe caps | Impact resistance Direct measurement method | PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05 PN-EN 12568:2011 p. 5.2.2 | ||
| 52 | Footwear components: - toe caps | Corrosion resistance of metal toecaps Methods: visual and direct measurement | PN-EN ISO 22568-1:2019-05 PN-EN 12568:2011 p. 5.3 | ||
| 53 | Footwear components: - penetration resistant inserts | Penetration resistance Range: (500 – 15000) N Mechanical method | PN-EN ISO 22568-3:2019-05 PN-EN ISO 22568-4:2019-05 PN-EN 12568:2011 p. 7.2.1 | PN-EN ISO 22568-4:2022-06 | ||
| 54 | Footwear components: - penetration resistant inserts | Bending resistance Flexometric method | PN-EN ISO 22568-3:2019-05 PN-EN ISO 22568-4:2019-05 PN-EN 12568:2011 p. 7.2.2 PN-EN ISO 22568-4:2022-06 | ||
| 55 | Footwear components: - penetration resistant inserts | Corrosion resistance of metal inserts Methods: visual and direct measurement | PN-EN ISO 22568-3:2019-05 PN-EN 12568:2011 p. 7.3 | ||
| 56 | Footwear components: - penetration resistant inserts | Volume electrical resistance | PN-EN ISO 22568-4:2019-05 p. 5.4 PN-EN ISO 22568-4:2022-06 | ||
| 57 | Footwear components: - zip fasteners | Strength of the slider in a slide fastener Range: (10 – 10000) N Mechanical method | PN-EN 15090:2012 p. 7.5.1 | ||
| 58 | Footwear components: - zip fasteners | Transverse breaking strength of the fastening elements of a slide fastener Range: (10 – 10000) N Mechanical method | PN-EN 15090:2012 p. 7.5.2 | ||
| 59 | Footwear components: - steel footwear components (e.g.: eyelets, hooks, zips, stiffeners) | Corrosion resistance of steel components of footwear Visual assessment method | PB17/NO:2023 wyd. III z 12.09.2023 r. Metoda A Metoda B Metoda C | ||
| 60 | Casual, occupational, safety and protective footwear | Strength of the bond between the sole and the upper Range: (10 – 10000) N Mechanical method | PN-O-91121:1973 PN-EN ISO 20344:2012 p. 5.2 PN-EN ISO 20344:2022-04 p. 5.2 | ||
| 61 | Casual, occupational, safety and protective footwear | Water penetration of footwear Dynamic method | PN-O-91123:1990 | ||
| 62 | Casual, occupational, safety and protective footwear | Footwear watertightness | PN-EN ISO 20344:2022-04 p. 5.7 PN-EN ISO 20344:2012 p. 5.7 | ||
| 63 | Casual, occupational, safety and protective footwear | Water resistance of footwear (water penetration of footwear) Dynamic method | PN-EN ISO 20344:2012 p. 5.15.2 PN-EN ISO 20344:2022-04 p.5.19 | ||
| 64 | Casual, occupational, safety and protective footwear | Strength of the seams joining the upper components Range: (10 – 10000) N Mechanical method | PN-EN ISO 17697:2016-08 Metoda B | ||
| 65 | Casual, occupational, safety and protective footwear | Cold insulation Thermal method | PN-EN ISO 20344:2012 p. 5.13 PN-EN ISO 20344:2022-04 p. 5.16 | ||
| 66 | Casual, occupational, safety and protective footwear | Ergonomic features Sensometric method | PN-EN ISO 20344:2012 p. 5.1 PN-EN ISO 20344:2022-04 p. 5.1 | ||
| 67 | Casual, occupational, safety and protective footwear | Energy absorption in the heel area Range: (10 – 10000) N Mechanical method | PN-EN ISO 20344:2012 p. 5.14 PN-EN ISO 20344:2022-04 p. 5.17 | ||
| 68 | Casual, occupational, safety and protective footwear | Resistance of footwear to repeated flexing | PB 9/NO:2021 Wyd. III z 08.09.2021 | ||
| 69 | Casual, occupational, safety and protective footwear | Resistance of the upper material (PVC) to flexing Flexometric method | PN-ISO 4643:1994 Załącznik B | ||
| 70 | Casual, occupational, safety and protective footwear | Resistance of the upper material (PU) to flexing Flexometric method | PN-ISO 5423:1994 Załącznik B | ||
| 71 | Casual, occupational, safety and protective footwear | Resistance to repeated flexing of all-rubber footwear uppers Flexometric method | PN-EN ISO 20344:2012 p. 6.5.2 PN-EN ISO 20344:2022-04 p. 6.5.2.2 | ||
| 72 | Casual, occupational, safety and protective footwear | Resistance of the bottom material to repeated flexing Flexometric method | PN-ISO 4643:1994 Załącznik C PN-ISO 5423:1994 Załącznik C (przygotowanie próbek wg Załącznika E) | ||
| 73 | Casual, occupational, safety and protective footwear | Breaking force of the upper of all-rubber footwear Range (10 – 10000) N Mechanical method | PN-EN ISO 20344:2012 p. 6.4.2 PN-EN ISO 20344:2022-04 p. 6.4.2.2 | ||
| 74 | Casual, occupational, safety and protective footwear | Slip resistance of footwear (walking test) Sensometric method | PB 11/NO Wyd. IV z 15.07.2024 | ||
| 75 | Casual, occupational, safety and protective footwear | Height of the upper Direct measurement method | PN-EN ISO 20344:2012 p. 6.2 PN-EN ISO 20344:2022-04 p. 6.2.2 | ||
| 76 | Occupational, safety and protective footwear | Volume electrical resistance of finished footwear Range: (1∙103 – 160∙109) Electrical method | PN-EN ISO 20344:2012 p. 5.10 PN-EN ISO 20344:2022-04 p. 5.13 | ||
| 77 | Occupational, safety and protective footwear | Heat insulation Thermal method | PN-EN ISO 20344:2012 p. 5.12 PN-EN ISO 20344:2022-04 p. 5.15 | ||
| 78 | Occupational, safety and protective footwear | Corrosion resistance of metal toecaps and/or penetration-resistant metal inserts (in all-rubber or all-polymeric footwear) Methods: visual and direct measurement | PN-EN ISO 20344:2012 p. 5.6.1 PN-EN ISO 20344:2022-04 p. 5.6 PN-EN ISO 20344:2022-04 p. 5.11 | ||
| 79 | Occupational, safety and protective footwear | Penetration resistance Range: (500 ÷ 15000) N Mechanical method | PN-EN ISO 20344:2012 p. 5.8.2 | PN-EN ISO 20344:2022-04 p. 5.9 | ||
| 80 | Occupational, safety and protective footwear | Dimensional conformity of penetration-resistant inserts Methods: direct measurement and optical | PN-EN ISO 20344:2012 p. 5.8.1 PN-EN ISO 20344:2022-04 p. 5.8 | ||
| 81 | Occupational, safety and protective footwear | Impact resistance of footwear toecaps with toe protection Direct measurement method | PN-EN ISO 20344:2012 p. 5.4 PN-EN ISO 20344:2022-04 p. 5.4 | ||
| 82 | Occupational, safety and protective footwear | Compression resistance of footwear toecaps with toe protection Direct measurement method | PN-EN ISO 20344:2012 p. 5.5 PN-EN ISO 20344:2022-04 p. 5.5 | ||
| 83 | Occupational, safety and protective footwear | Slip resistance of footwear Mechanical method - forward flat slip on steel floor covered with glycerol - forward flat slip on ceramic tile covered with sodium lauryl sulphate (SLS) solution - forward heel slip at an angle of 7o on steel floor covered with glycerol - forward heel slip at an angle of 7o on ceramic tile covered with sodium lauryl sulphate (SLS) solution | PN-EN ISO 13287:2013-04 | ||
| 84 | Occupational, safety and protective footwear | Slip resistance of footwear Mechanical method - forward flat slip on ceramic tile covered with glycerol - forward flat slip on ceramic tile covered with sodium lauryl sulphate (SLS) solution - forward heel slip at an angle of 7o on ceramic tile covered with glycerol - forward heel slip at an angle of 7o on ceramic tile covered with sodium lauryl sulphate (SLS) solution - backward forepart slip on ceramic tile covered with glycerol - backward forepart slip on ceramic tile covered with sodium lauryl sulphate (SLS) solution | PN-EN ISO 13287:2020-03 | ||
Reference standards (86)
PB 11/NO Wyd. IV z 15.07.2024
PB 9/NO:2021 Wyd. III z 08.09.2021
PB-37/NA wyd. IV z 15.10.2021 r.
PB17/NO:2023 wyd. III z 12.09.2023 r. Metoda A Metoda B Metoda C
PN-C-04238:1980 PN-EN ISO 868:2005 PN-ISO 48:1998
PN-EN 15090:2012 p. 7.5.1
PN-EN 15090:2012 p. 7.5.2
PN-EN 388+A1:2019-01 p.6.4
PN-EN ISO 11640:2018-12
PN-EN ISO 11641:2013-05
PN-EN ISO 11644:2023-05
PN-EN ISO 13287:2013-04
PN-EN ISO 13287:2020-03
PN-EN ISO 13934-1:2013-07
PN-EN ISO 1421:2017-02
PN-EN ISO 15700:2001
PN-EN ISO 17075-1:2017-05
PN-EN ISO 17226-2:2019-05
PN-EN ISO 17227:2005
PN-EN ISO 17694:2016-08
PN-EN ISO 17697:2016-08 Metoda B
PN-EN ISO 17700:2019-12 Metoda B
PN-EN ISO 20344:2012 p. 5.1 PN-EN ISO 20344:2022-04 p. 5.1
PN-EN ISO 20344:2012 p. 5.10 PN-EN ISO 20344:2022-04 p. 5.13
PN-EN ISO 20344:2012 p. 5.12 PN-EN ISO 20344:2022-04 p. 5.15
PN-EN ISO 20344:2012 p. 5.13 PN-EN ISO 20344:2022-04 p. 5.16
PN-EN ISO 20344:2012 p. 5.14 PN-EN ISO 20344:2022-04 p. 5.17
PN-EN ISO 20344:2012 p. 5.15.2 PN-EN ISO 20344:2022-04 p.5.19
PN-EN ISO 20344:2012 p. 5.3 PN-EN ISO 20344:2022-04 p. 5.3 PN-EN 12568:2011 p. 5.2.1 PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05
PN-EN ISO 20344:2012 p. 5.4 PN-EN ISO 20344:2022-04 p. 5.4
PN-EN ISO 20344:2012 p. 5.5 PN-EN ISO 20344:2022-04 p. 5.5
PN-EN ISO 20344:2012 p. 5.6.1 PN-EN ISO 20344:2022-04 p. 5.6 PN-EN ISO 20344:2022-04 p. 5.11
PN-EN ISO 20344:2012 p. 5.8.1 PN-EN ISO 20344:2022-04 p. 5.8
PN-EN ISO 20344:2012 p. 5.8.2
PN-EN ISO 20344:2012 p. 6.12 PN-EN ISO 20344:2022-04 p. 6.12
PN-EN ISO 20344:2012 p. 6.13 PN-EN ISO 20344:2022-04 p. 6.13
PN-EN ISO 20344:2012 p. 6.2 PN-EN ISO 20344:2022-04 p. 6.2.2
PN-EN ISO 20344:2012 p. 6.4.2 PN-EN ISO 20344:2022-04 p. 6.4.2.2
PN-EN ISO 20344:2012 p. 6.5.2 PN-EN ISO 20344:2022-04 p. 6.5.2.2
PN-EN ISO 20344:2012 p. 6.6 PN-EN ISO 20344:2022-04 p. 6.6 PN-EN ISO 14268:2023-08
PN-EN ISO 20344:2012 p. 6.7 PN-EN ISO 20344:2022-04 p. 6.7 PN-EN ISO 17229:2016-06
PN-EN ISO 20344:2012 p. 6.8 PN-EN ISO 20344:2022-04 p. 6.8 PN-EN ISO 17229:2016-06
PN-EN ISO 20344:2012 p. 7.1 PN-EN ISO 20344:2022-04 p. 7.1
PN-EN ISO 20344:2012 p. 7.2 PN-EN ISO 20344:2022-04 p. 7.2
PN-EN ISO 20344:2012 p. 7.3 PN-EN ISO 20344:2022-04 p. 7.3
PN-EN ISO 20344:2012 p. 8.1.2 PN-EN ISO 20344:2022-04 p. 8.2
PN-EN ISO 20344:2012 p. 8.4.1 PN-EN ISO 20344:2022-04 p. 8.5
PN-EN ISO 20344:2012 p. 8.4.2 PN-EN ISO 20344:2022-04 p. 8.6
PN-EN ISO 20344:2012 p. 8.6 PN-EN ISO 20344:2022-04 p. 8.8
PN-EN ISO 20344:2012 p. 8.7 PN-EN ISO 20344:2022-04 p. 8.9
PN-EN ISO 20344:2022-04 p. 5.7 PN-EN ISO 20344:2012 p. 5.7
PN-EN ISO 20344:2022-04 p. 5.9
PN-EN ISO 22568-1:2019-05 PN-EN 12568:2011 p. 5.3
PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05 PN-EN 12568:2011 p. 5.2.2
PN-EN ISO 22568-1:2019-05 PN-EN ISO 22568-2:2019-05 PN-EN 12568:2011 p. 5.2.3
PN-EN ISO 22568-3:2019-05 PN-EN 12568:2011 p. 7.3
PN-EN ISO 22568-3:2019-05 PN-EN ISO 22568-4:2019-05 PN-EN 12568:2011 p. 7.2.1
PN-EN ISO 22568-3:2019-05 PN-EN ISO 22568-4:2019-05 PN-EN 12568:2011 p. 7.2.2 PN-EN ISO 22568-4:2022-06
PN-EN ISO 22568-4:2019-05 p. 5.4 PN-EN ISO 22568-4:2022-06
PN-EN ISO 22568-4:2022-06
PN-EN ISO 2411:2025-02E
PN-EN ISO 2589:2016-05
PN-EN ISO 3376:2020-10
PN-EN ISO 3377-1:2012
PN-EN ISO 3377-2:2016-06
PN-EN ISO 3379:2015-11
PN-EN ISO 4045:2018-09
PN-EN ISO 4048:2018-10
PN-EN ISO 4674-1:2017-02 Metoda B PN-EN ISO 13937-2:2002 PN-EN ISO 9073-4:2021-07
PN-EN ISO 4684:2006
PN-EN ISO 5402-1:2022-10
PN-EN ISO 5403-1:2012
PN-EN ISO 5470-2:2005 Metoda 1 PN-EN ISO 5470-2:2022-03 Metoda 1
PN-EN ISO 811:2018-07
PN-ISO 1817:2001+Ap1:2002
PN-ISO 23529:2006 p. 7
PN-ISO 2781:1996 Metoda A
PN-ISO 34-1:2007 Metoda A
PN-ISO 37:2007+AC1:2008 próbki wg p. 6.1
PN-ISO 4643:1994 Załącznik B
PN-ISO 4643:1994 Załącznik C PN-ISO 5423:1994 Załącznik C (przygotowanie próbek wg Załącznika E)
PN-ISO 4649:2007 Metoda A
PN-ISO 5423:1994 Załącznik B
PN-O-91121:1973 PN-EN ISO 20344:2012 p. 5.2 PN-EN ISO 20344:2022-04 p. 5.2
PN-O-91123:1990
PN-P-04613:1997 p. 3.4 PN-EN ISO 9073-1:2023-11 PN-EN 12127:2000