GSO ASTM F1923:2010
ASTM F1923:98(2005)
Gulf Standard
Current Edition
·
Approved on
31 October 2010
Standard Test Method for Tires, Pneumatic, Low Speed, Off Highway
GSO ASTM F1923:2010 Files
English
3 Pages
Current Edition
Reference Language
GSO ASTM F1923:2010 Scope
1.1 This test method covers measurements for comparative
tire strength and dimensional characteristics. This test method
covers new and retreaded pneumatic tires, both tube and
tubeless types, and flaps when applicable, for mounting on
construction, earthmoving, mining and logging equipment,
graders, mobile cranes, and similar vehicles operated at low
speeds off the road.
1.2 The values stated in SI units are to be regarded as the
standard. The values given in parentheses are for information
only.
1.3 This standard does not purport to address all of the
safety concerns, if any, associated with its use. It is the
responsibility of the user of this standard to establish appropriate
safety and health practices and determine the applicability
of regulatory limitations prior to use.
Best Sellers From Mechanical Sector
GSO 42:2015
Gulf Technical Regulation
MOTOR VEHICLES - GENERAL REQUIREMENTS
GSO 159:1993
Gulf Technical Regulation
MOTOR VEHICLES –
DIMENSIONS AND WEIGHTS
GSO 98:1988
Gulf Technical Regulation
MOTOR VEHICLES- FLAMMABILITY OF
INTERIOR MATERIALS AND THEIR
TESTING METHODS
GSO 1780:2010
Gulf Technical Regulation
Motor vehicle-vehicle identification number (vin) - requirements
Recently Published from Mechanical Sector
GSO EN 13445-6:2024
EN 13445-6:2021
Gulf Standard
Unfired pressure vessels - Part 6: Requirements for the design and fabrication of pressure vessels and pressure parts constructed from spheroidal graphite cast iron
GSO ISO 11154:2024
ISO 11154:2023
Gulf Standard
Road vehicles — Roof load carriers
GSO ISO 10468:2024
ISO 10468:2023
Gulf Standard
Glass-reinforced thermosetting plastics (GRP) pipes
— Determination of the ring creep properties under wet or dry conditions
GSO ISO 10300-1:2024
ISO 10300-1:2023
Gulf Standard
Calculation of load capacity of bevel gears — Part 1: Introduction and general influence factors