ISO 22867:2021 PDF
Forestry and gardening machinery — Vibration test code for portable hand-held machines with internal combustion engine — Vibration at the handles
Forestry and gardening machinery — Vibration test code for portable hand-held machines with internal combustion engine — Vibration at the handles
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 29
- Дата публикации:
- 12 ноября 2021 г.
- Издание:
- ISO IS 22867 edition 3 version 1
- ICS:
- 13.160
This document specifies a vibration test code for determining, efficiently and under standardized conditions, the magnitude of vibration at the handles of portable hand-held, internal-combustion-engine-powered forest and garden machinery, including chain-saws, brush-cutters, grass-trimmers, edgers, pole-mounted powered pruners, hedge-trimmers and garden-blowers. Although the magnitudes measured are obtained in an artificial operation, they nevertheless give an indication of the values to be found in a real work situation. Vibration test codes, as described in this document, enable the manufacturer to verify the effort regarding low vibration design.
Abstract
Overview
ISO 22867:2021 - "Forestry and gardening machinery - Vibration test code for portable hand‑held machines with internal combustion engine - Vibration at the handles" defines a standardized test code to measure the vibration exposure at the handles of handheld, engine‑powered forest and garden tools. Covered equipment includes chain‑saws, brush‑cutters, grass‑trimmers, edgers, pole‑mounted pruners, hedge‑trimmers and garden‑blowers. Although tests use artificial operating conditions, the results provide representative values for real work situations and support low‑vibration design and manufacturer declarations.
Key Topics and Technical Requirements
- Measured quantities: Frequency‑weighted accelerations in three perpendicular directions (a_hwx, a_hwy, a_hwz) and derived vibration totals (a_hv and equivalent a_hv,eq). The total is the root‑sum‑of‑squares of the three r.m.s. weighted axis values.
- Instrumentation: Measurement systems must comply with ISO 8041‑1. Tri‑axial accelerometers are used; total mass (including mounting, excluding cable) shall not exceed 25 g.
- Accelerometer mounting and calibration: Fastenings follow ISO 5349‑2 guidance; special procedures apply for resilient handle covers (remove or fully compress resilient material under the transducer). Calibration shall follow ISO 16063‑1.
- Measurement location and direction: Transducers are positioned close to the hand (area between thumb and index finger) to minimize operator disturbance; direction and location are defined per machine type in the normative annexes.
- Test modes and operating conditions: Defined operating modes (idling, racing, full load where applicable) and engine speed tolerances are specified per machine class; some modes are representative rather than fully loaded due to practical repeatability limits.
- Reporting and verification: Clause 9 details required information to report (instrumentation checks, test conditions, measured values), while Clause 10 covers declaration and verification of vibration values.
Applications and Who Uses It
- Manufacturers use ISO 22867:2021 to verify low‑vibration design, produce harmonized vibration declarations, and compare machine variants.
- Safety and regulatory bodies and market surveillance rely on standardized measurement methods to assess compliance and occupational risk.
- R&D and design engineers use the code for development, benchmarking and reducing hand‑arm vibration exposure.
- Occupational health professionals and employers can use the measured values to estimate worker vibration exposure and plan risk reduction.
Related Standards
Key referenced standards include:
- ISO 20643 (hand‑held machinery vibration principles)
- ISO 5349‑2 (measurement guidance)
- ISO 8041‑1 (vibration measuring instrumentation)
- ISO 16063‑1 (transducer calibration)
- ISO 12100, ISO 6531, ISO 7112, ISO 7293, ISO 8893
Keywords: ISO 22867:2021, vibration test code, forestry and gardening machinery, hand‑held machines, internal combustion engine, vibration at the handles, accelerometer, vibration measurement.
Технические детали
- Технический комитет
- ISO/TC 23/SC 17 - Manually portable (hand-held) powered lawn and garden equipment and forest machinery
- SKU
- ISO 22867:2021
Похожие стандарты
Стандарты, упомянутые в описании
SIST EN ISO 8041-1:2017
ДействующийHuman response to vibration - Measuring instrumentation - Part 1: General purpose vibration meters (ISO 8041-…
Overview EN ISO 8041-1:2017 - "Human response to vibration - Measuring instrumentation - Part 1: General purpose vibration meters" specifies performance requirements, tolerance limits and verificatio…
ISO 5349-2:2001/Amd 1:2015
ДействующийMechanical vibration — Measurement and evaluation of human exposure to hand-transmitted vibration — Part 2: P…
Overview ISO 5349-2:2001/Amd 1:2015 is an amendment to the international standard focused on mechanical vibration, specifically the measurement and evaluation of human exposure to hand-transmitted vi…
ISO 16063-1:1998/Amd 1:2016
ДействующийMethods for the calibration of vibration and shock transducers — Part 1: Basic concepts — Amendment 1
Overview ISO 16063-1:1998/Amd 1:2016 is an international standard published by the International Organization for Standardization (ISO). It specifies basic concepts for the calibration of vibration a…
ISO 20643:2005/Amd 1:2012
ДействующийMechanical vibration — Hand-held and hand-guided machinery — Principles for evaluation of vibration emission…
Overview ISO 20643:2005/Amd 1:2012 is an amendment to the international standard governing the evaluation of mechanical vibration emitted by hand-held and hand-guided machinery. This amendment specif…
SIST-TP CEN ISO/TR 22100-5:2022
ДействующийSafety of machinery - Relationship with ISO 12100 - Part 5: Implications of artificial intelligence machine l…
Overview CEN ISO/TR 22100-5:2022 (identical to ISO/TR 22100-5:2021) gives guidance on how artificial intelligence (AI) - specifically machine learning (ML) - can affect the safety of machinery and ho…