Toimialayhteisöt

Toimialayhteisö: Rakennustuoteteollisuus RTT
Komitea: CEN/TC 250/SC 5 (Eurocode 5: Design of timber structures)
Alkuperä: CEN
Määräpäivä: 2026-11-12
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1.1 Scope of EN 1995-3 (1) This document gives minimum requirements for execution of timber structures (buildings and bridges) designed in accordance with EN 1995 (all parts) to ensure that what is built meets the requirements for mechanical resistance, serviceability, durability, and fire performance. (2) This document gives guidance on moisture control during transport to the building site, storage on site, handling on site and erection. (3) This document gives guidance on workmanship and deviation limits during execution. (4) This document assumes that there is an execution specification which states all the specific requirements relevant for the execution of a particular structure. (5) For products covered by a European technical product specification, this document only covers those aspects of fabrication such as cutting, machining and drilling after placement of the product on the market. (6) This document does not cover: a) parts which are not designed according to EN 1995; b) temporary works (such as formwork, scaffolding, propping, shoring, etc.); c) specification, production and conformity of timber members in accordance with European technical product specifications; d) deviation limits for other properties than mechanical resistance, serviceability, durability and fire performance; e) contractual aspects, responsibilities of the various parties, competency requirements or the degree of independence of the personnel undertaking the inspection; f) health and safety requirements during execution. 1.2 Assumptions (1) It is assumed that all relevant provisions of EN 1995 are complied with. (2) It is recognized in this document that areas such as detailed requirements for competence of personnel, and details related to Quality Management are within the competence of the CEN Member States. (3) Before the execution begins on a part of the structure, it is assumed that the following are available on site: — the drawings and specification of that part; — the execution specification. (4) Before the start of the execution, it is assumed that the execution specification has been checked for completeness. (5) It is assumed that previous work (such as foundations) has been inspected and that any work which needs to be done due to deviations from the execution specification has been carried out.
Toimialayhteisö: Kemesta
Komitea: CEN/TC 249 (Plastics)
Alkuperä: CEN
Määräpäivä: 2026-11-12
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This document specifies test procedures for the acquisition and presentation of multipoint data which demonstrate the behaviour of plastics under the following environments: —    prolonged exposure to heat; —    liquid chemicals; —    environmental stress cracking under a constant tensile stress; —    artificial weathering. The tests are listed in order of increasing severity of the environment. By testing under the least severe environments first, it is possible to make informed judgements regarding whether tests under more severe conditions are worthwhile.
Toimialayhteisö: Kemesta
Komitea: ISO/TC 61/SC 2 (Mechanical behavior)
Alkuperä: ISO
Määräpäivä: 2026-11-12
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This document specifies test procedures for the acquisition and presentation of multipoint data which demonstrate the behaviour of plastics under the following environments: — prolonged exposure to heat; — liquid chemicals; — environmental stress cracking under a constant tensile stress; — artificial weathering. The tests are listed in order of increasing severity of the environment. By testing under the least severe environments first, it is possible to make informed judgements regarding whether tests under more severe conditions are worthwhile.
Toimialayhteisö: Kemesta
Komitea: CEN/TC 139 (Paints and varnishes)
Alkuperä: CEN
Määräpäivä: 2026-11-12
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This document specifies a method for determining the film hardness by pushing pencils of known hardness over the film. The test can be performed on a single coating of a paint, varnish or related product, or on the upper layer of a multi-coat system. This rapid test has not been found to be useful in comparing the pencil hardness of different coatings. It is more useful in providing relative ratings for a series of coated panels exhibiting significant differences in pencil hardness. The method is applicable only to smooth surfaces.
Toimialayhteisö: Kemesta
Komitea: CEN/TC 139 (Paints and varnishes)
Alkuperä: CEN
Määräpäivä: 2026-11-12
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ISO 15110:2017 specifies a so-called acid dew and fog test (ADF test) as an accelerated laboratory test method for simulating, by the use of artificial acidic precipitation, the damaging effects of acidic atmospheric precipitation in association with UV radiation, neutral condensed precipitation, and changing temperature and humidity. This test method is intended to be used in evaluating, on the basis of relative performance rankings, the suitability of painted materials for use in outdoor environments with acidic precipitation. It is not intended to generate the same extent of damage or the same damage pattern as in outdoor weathering, but rather to give a ranking which is similar to that which would be obtained in outdoor weathering. The method produces damage which is more homogeneous, allows fewer specimens to be exposed (and hence more rapid testing) and enables evaluation of the exposed specimens to be carried out using methods which are more objective than visual assessment.
Komitea: ISO/TC 44/SC 8 (Equipment for gas welding, cutting and allied processes)
Alkuperä: ISO
Määräpäivä: 2026-11-12
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This document applies to acetylene manifold systems extending from the cylinder valve or the bundle outlet connections to the outlet connection of the main shut-off valve. It specifies requirements for design, materials and testing of cylinder manifold systems for the supply of acetylene for use in welding, cutting and allied processes. This document applies to acetylene manifold systems in which one of the following acetylene sources is used or connected for collective gas withdrawal: — Single individual cylinder; — Multiple cylinders; — Single individual bundle; — Multiple bundles, When a single individual cylinder with cylinder regulator according to ISO 2503 is directly connected to the cylinder valve, this document does not apply. NOTE National regulations exist regarding limitation of the amount of single cylinders/bundles of acetylene on a single location (e.g. in warehouse or connected to a manifold system).
Komitea: ISO/TC 22/SC 33 (Vehicle dynamics, chassis components and driving automation systems testing)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This document specifies the test method and performance metrics to evaluate the behaviour of a vehicle equipped with door open warning system during several accidental scenarios. These potential accidents occur when a door is about to be opened and there is a risk of collision due to the vehicle door opening. This document applies to category M1 and N1 vehicles equipped with a door open warning system. NOTE Depending on accidentology, only a part of the scenarios can be used for an evaluation of performance.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 29 (Coding of audio, picture, multimedia and hypermedia information)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This document specifies carriage of coded media representations which comply with visual volumetric video content which is encoded using video-based coding and video-based point cloud compression (specified in ISO/IEC 23090-5) or its derived specification.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/TC 146/SC 2 (Workplace atmospheres)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This part of ISO 16200 gives general guidance for the sampling and analysis of volatile organic compounds (VOCs) in air by solvent desorption/gas chromatography using pumped sampling. This part of ISO 16200 is applicable to a wide range of VOCs, including hydrocarbons, halogenated hydrocarbons, esters, glycol ethers, ketones and alcohols. A number of sorbents are recommended for the sampling of these VOCs, each sorbent having a different range of applicability. However, activated coconut shell charcoal is frequently used. Very polar compounds may require derivatization; very low boiling compounds may only be partially retained by the sorbents and can only be estimated qualitatively. Semi-volatile compounds should be fully retained by the sorbents, but may only be partially recovered. The upper limit of the useful range is set by the sorptive capacity of the sorbent used and by the linear dynamic range of the analytical instrumentation used. The lower limit of the useful range depends on the type of detector used, on the noise level of the detector and on blank levels of analyte and/or interfering artefacts on the sorbent tubes or in the desorption solvent. Artefacts are typically sub-nanogram for activated charcoal, but higher levels of aromatic hydrocarbons have been noted in some batches. By applying this part of ISO 16200, the lower limits achieved are typically in the range of 1 µg to 100 µg of a given VOC per sample. The concentration range for which this part of ISO 16200 is valid for the measurement of airborne vapours of VOCs is dependent on the lower limit and on the volume sampled. For example, for a 10-litre sample of air, the range is approximately 0,1 mg/m3 to 100 mg/m3 individual organic compound. For a 1-litre sample of air, the range is approximately 1 mg/m3 to 1 000 mg/m3 individual organic compound, and pro rata.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/TC 146/SC 2 (Workplace atmospheres)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This part of ISO 16200 gives general guidance for the sampling and analysis of volatile organic compounds (VOCs) in workplace air by solvent desorption/gas chromatography using diffusive sampling. This part of ISO 16200 is applicable to a wide range of VOCs, including hydrocarbons, halogenated hydrocarbons, esters, glycol ethers, ketones and alcohols. A number of devices and sorbents are recommended for the sampling of these VOCs, each sorbent having a different range of applicability. Note 1 to entry Activated coconut shell charcoal is frequently used. Very polar compounds may require derivatization, very low boiling compounds may only be partially retained by the sorbents, polar or high boiling compounds may not be quantitatively extracted by the chosen solvent. In these cases, their concentration may be quantitatively determined, provided that reverse diffusion and analytical recovery studies are available. This part of ISO 16200 is valid for the measurement of airborne vapours of VOCs in a concentration range of approximately 0,1 mg/m3 to 1 000 mg/m3 individual organic for an exposure time of 8 h. The upper limit of the useful range is set by the sorptive capacity of the sorbent used and, subject to dilution of the analysed solution, by the linear dynamic range of the gas chromatograph, column and detector or by the sample splitting capability of the analytical instrumentation used. The lower limit of the useful range depends on the noise level of the detector and on blank levels of analyte and/or interfering artefacts on the sampling devices or in the desorption solvent. Artefacts are typically sub-nanogram for activated charcoal, but higher levels of aromatic hydrocarbons have been noted in some batches. By applying this part of ISO 16200, the lower limits of quantification achieved are typically in the range of 0,01 µg to 1 µg of a given VOC per sample. Determination of the blank value for target organic compounds is recommended for each lot of samplers.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 27 (Information security, cybersecurity and privacy protection)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This document establishes considerations for analysing, comparing or differentiating the characteristics of age assurance systems or components. The document includes metrics, elements and indicators of effectiveness for age assurance systems or components.
Toimialayhteisö: Suomen ympäristökeskus
Komitea: ISO/TC 190/SC 3 (Chemical and physical characterization)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This document specifies two methods for the determination of total organic carbon (TOC) in sludge, treated biowaste, soil and waste samples containing more than 0,1 % carbon in relation to the dry matter (dm). This document is validated for sludge, biowaste, soil, and waste (see also Annex A for the results of the validation).
Toimialayhteisö: Suomen ympäristökeskus
Komitea: CEN/TC 444 (Environmental characterization of solid matrices)
Alkuperä: CEN
Määräpäivä: 2026-11-13
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Specifies a method for the determination of the total carbon content in soil after dry combustion. The organic carbon content is calculated from this content after correcting for carbonates present in the sample. If carbonates are removed beforehand, the organic carbon content is measured directly. Applicable to all types of air-dried soil samples.
Toimialayhteisö: Suomen ympäristökeskus
Komitea: ISO/TC 190/SC 3 (Chemical and physical characterization)
Alkuperä: ISO
Määräpäivä: 2026-11-13
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This document specifies a basic method of determining the particle size distribution applicable to a wide range of mineral soil materials, including the mineral fraction of organic soils. It also offers procedures to deal with the less common soils mentioned in the introduction. This document has been developed largely for use in the field of environmental science, and its use in geotechnical investigations is something for which professional advice might be required. A major objective of this document is the determination of enough size fractions to enable the construction of a reliable particle-size-distribution curve. This document does not apply to the determination of the particle size distribution of the organic components of soil, i.e. the more or less fragile, partially decomposed, remains of plants and animals. It is also realized that the chemical pre-treatments and mechanical handling stages in this document could cause disintegration of weakly cohesive particles that, from field inspection, might be regarded as primary particles, even though such primary particles could be better described as aggregates. If such disintegration is undesirable, then this document is not used for the determination of the particle size distribution of such weakly cohesive materials.
Toimialayhteisö: Muoviteollisuus
Komitea: ISO/TC 138/SC 5 (General properties of pipes, fittings and valves of plastic materials and their accessories -- Test methods and basic specifications)
Alkuperä: ISO
Määräpäivä: 2026-11-15
LaajennaSupista
 
This document specifies a method used to determine the resistance to slow crack growth (SCG) of thermoplastic materials, pipes and fittings. The test is applicable to samples taken from compression moulded sheets, extruded rods, sheets or pipes and injection moulded fittings of suitable thickness. The method is suitable for an accelerated slow crack growth characterization at ambient temperatures of 23 °C. This document specifies test parameters for polyethylene (PE), polypropylene (PP) and unplasticized polyamide (PA-U). Furthermore, this test can be applied to characterise the slow crack growth resistance of virgin, as well as non-virgin (reused, recycled) thermoplastic materials[5]. This test method can be adapted for other thermoplastics materials by developing the procedure using different test parameters.
Toimialayhteisö: Rakennustuoteteollisuus RTT
Komitea: SFS (SFS Suomen Standardit)
Alkuperä: SFS
Määräpäivä: 2026-11-15
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Tämä standardi on laadittu eurooppalaisia yhdenmukaistettuja tuotestandardeja SFS-EN 1338, SFS-EN 1339,SFS-EN 1340, SFS-EN 1341, SFS-EN 1342 ja SFS-EN 1343 täydentäväksi kansalliseksi soveltamisstandardiksi. Tässä soveltamisstandardissa esitetään suositus, mitkä ominaisuudet on ilmoitettava ko. tuotestandardien mukaan CE-merkityille päällystekivituotteille (betoniset päällystekivet, -laatat ja -reunakivet sekä luonnonkivestä tehdyt päällystelaatat, noppa ja nupukivet ja reunakivet) eri käyttökohteissa sekä niille ominaisuuksille asetetut vähimmäisvaatimustasot tai luokat.
Toimialayhteisö: Muoviteollisuus
Komitea: ISO/TC 219 (Floor coverings)
Alkuperä: ISO
Määräpäivä: 2026-11-15
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This document specifies a method for determination of tuft withdrawal force and is applicable to all textile floor coverings with a cut and/or loop pile yarn structure.
Toimialayhteisö: Muoviteollisuus
Komitea: ISO/TC 219 (Floor coverings)
Alkuperä: ISO
Määräpäivä: 2026-11-15
LaajennaSupista
 
This document establishes a classification system for resilient, textile, laminate and modular mechanical locked floor coverings. The classification is based on practical requirements for areas of use and intensity of use and is linked to the requirements specified in the relevant documents for each type of floor covering. This document is also intended to provide guidance for manufacturers, specifiers and consumers, to enable them to choose the appropriate class of floor covering for any given area of use or specific room. NOTE The wear and appearance of floor coverings are influenced by standards of installation and maintenance, the condition of the subfloor and the kind of use (type of footwear, high concentrations of localized traffic, etc.). These factors are intended to be taken into account when using this classification system.
Toimialayhteisö: Muoviteollisuus
Komitea: ISO/TC 138/SC 2 (Plastics pipes and fittings for water supplies)
Alkuperä: ISO
Määräpäivä: 2026-11-15
LaajennaSupista
 
This document specifies the requirements of fitness for purpose of assembled polyethylene (PE) piping systems intended for the conveyance of water intended for human consumption, raw water prior to treatment, drains and sewers under pressure, vacuum sewer systems, and water for other purposes, with the exception of industrial application. It specifies the requirements for the following types of joint assemblies with pipes or spigot ends: (A) electrofusion socket fitting ; — (B) electrofusion saddle fitting ; — (C) butt fusion joint (“pipe to pipe” and “pipe to spigot end fittings”); — (D) mechanical joint; — (E) socket fusion joint. It specifies the method of preparation of test piece joints and the tests to be carried out on these joints for assessing the fitness for purpose of the system under normal and extreme conditions. It specifies the test parameters for the test methods referred to in this document. This document is intended to be used only by the product manufacturer and test laboratories to assess the performance of components in accordance with ISO 4427-2 and ISO 4427-3 when joined together under normal and extreme conditions in accordance with this document. It is not intended for on-site testing of pipe systems. In conjunction with ISO 4427-1, ISO 4427-2 and ISO 4427-3, this document is applicable to PE pipes, fittings and valves, their joints, and joints with components of PE and other materials intended to be used under the following conditions: a) allowable operating pressure, PFA, up to 25 bar111 bar = 0,1 MPa. = 105 Pa; 1 MPa = 1 N/mm2; b) an operating temperature of 20 °C as a reference temperature for design purposes. For applications operating at constant temperatures greater than 20 °C up to and including 50 °C, see ISO 4427-1, XXXX - Annex A. The ISO 4427 series covers a range of allowable operating pressures and gives requirements concerning colours.
Toimialayhteisö: Muoviteollisuus
Komitea: ISO/TC 138/SC 2 (Plastics pipes and fittings for water supplies)
Alkuperä: ISO
Määräpäivä: 2026-11-15
LaajennaSupista
 
This document specifies the characteristics of fusion fittings made from polyethylene (PE) as well as of mechanical fittings for buried or above ground applications, intended for the conveyance of: water for human consumption; — raw water prior to treatment; — drains and sewers under pressure; — vacuum sewer systems; — water for irrigation — water for other purposes, with the exception of industrial applications. The intended uses include sea outfalls, laid in water and suspended below bridges. NOTE 1 Attention is drawn to Clause 6 of this document for PE components for the conveyance of water intended for human consumption and raw water prior to treatment. Components manufactured for water for other purposes, drains and sewers, and vacuum sewer systems are possibly not suitable for water supply for human consumption. PE pipe systems for industrial applications and irrigation with limited pressure exposure are not covered by this document. NOTE 2 Industrial application is covered by ISO 15494 [3], irrigation with limited pressure exposure is covered by ISO 8779:2020 [4] . This document also specifies the test parameters for the test methods referred to in this document. In conjunction with iso:proj:72183ISO 4427-1, iso:proj:72184ISO 4427-2, and iso:proj:72186ISO 4427-5, this document is applicable to PE pipes, fittings and valves, their joints and to joints with components made of PE and other materials, intended to be used under the following conditions: a) a maximum allowable operating pressure (PFA) up to and including 25 bar1; b) an operating temperature of 20 °C as the reference design temperature. For applications operating at constant temperatures greater than 20 °C and up to and including 50 °C, derating coefficients are specified in ISO/DIS 4427-1, Annex A. The ISO 4427 series cover a range of maximum allowable operating pressures and gives requirements concerning colours. These fittings can be of the following types: — electrofusion socket fittings; — electrofusion saddle fittings; — spigot end fittings (for butt fusion using heated tools and electrofusion); — socket fusion fittings (see Annex A); — mechanical fittings; — fabricated fittings (see Annex B). NOTE 3 The fittings can be, for example, in the form of couplers, saddles, equal and reduced tees, reducers, elbows, bends or end caps. It is the responsibility of the purchaser or specifier to make the appropriate selections from these aspects, taking into account their particular requirements and any relevant national guidance or regulations and installation practices or codes. 1 1 bar = 0,1 MPa = 105 Pa; 1 MPa = 1 N/mm2.