ISO 3655:1986
International Standard
Current Edition
·
Approved on
01 May 1986
Acceptance conditions for vertical turning and boring lathes with one or two columns and a single fixed or movable table — General introduction and testing of the accuracy
ISO 3655:1986 Files
English
17 Pages
Current Edition
USD
123.58
ISO 3655:1986 Scope
Defines the machining processes that can be carried out on these turning and boring lathes. Describes the different types of machines. Gives the nomenclature for these machines in English, French and Russian as well as in German, Italian and Swedish. ISO 3655 specifies both geometrical and practical tests on these general purpose and normal accuracy machines, and gives the corresponding permissible deviations which apply. It deals only with the verification of the accuracy of the machine. Does not apply to the testing of the running of the machine, or to characteristics.
Best Sellers
GSO 150-2:2013
Gulf Standard
Expiration dates for food products - Part 2 :
Voluntary expiration dates
YSMO GSO 150-2:2020
GSO 150-2:2013
Yemeni Technical Regulation
Expiration dates for food products - Part 2 :
Voluntary expiration dates
GSO 9:2022
Gulf Technical Regulation
Labeling of prepackaged food stuffs
YSMO GSO 2055-1:2020
GSO 2055-1:2015
Yemeni Standard
HALAL FOOD - Part 1 : General Requirements
Recently Published
ISO 11124-1:2026
International Standard
Preparation of steel substrates before application of paints and related products — Specifications for metallic blast-cleaning abrasives — Part 1: General introduction and classification
ISO/TS 18671:2026
International Standard
Test methodologies for assessing the compatibility of wet wipes and moist toilet tissue with the wastewater collection and treatment systems, and appropriate labelling
ISO 28902-4:2026
International Standard
Air quality — Environmental meteorology — Part 4: Ground-based remote sensing of meteorological parameters by particle backscatter lidar
ISO 6868:2026
International Standard
Workplace air — Quantitative determination of quartz and cristobalite in bulk materials by X-ray powder diffraction methods