BH GSO ISO 3019-1:2016

ISO 3019-1:2001
Bahraini Standard   Current Edition · Approved on 08 February 2016

Hydraulic fluid power -- Dimensions and identification code for mounting flanges and shaft ends of displacement pumps and motors -- Part 1: Inch series shown in metric units

BH GSO ISO 3019-1:2016 Files

English 12 Pages
Current Edition Reference Language
29.66 BHD

BH GSO ISO 3019-1:2016 Scope

This part of ISO 3019 specifies sizes and dimensions and establishes an identification code for the two- and four-bolt mounting flanges and the shaft ends of positive-displacement, rotary hydraulic fluid power pumps and motors. It is applicable to cylindrical keyed shaft ends with an external thread, as well as to those without a thread, to conical keyed shaft ends with an external thread and to 30° involute spline shaft ends. NOTE Involute spline is in accordance with SAE J744 [1].

Best Sellers From Mechanical Sector

GSO 42:2015
 
Gulf Technical Regulation
MOTOR VEHICLES - GENERAL REQUIREMENTS
BH GSO 42:2015
GSO 42:2015 
Bahraini Technical Regulation
MOTOR VEHICLES - GENERAL REQUIREMENTS
GSO 159:1993
 
Gulf Technical Regulation
MOTOR VEHICLES – DIMENSIONS AND WEIGHTS
BH GSO 159:2015
GSO 159:1993 
Bahraini Technical Regulation
MOTOR VEHICLES – DIMENSIONS AND WEIGHTS

Recently Published from Mechanical Sector

GSO ISO/TR 5262:2025
ISO/TR 5262:2023 
Gulf Standard
Motorcycles — Guideline for verification of total running resistance force during mode running on a chassis dynamometer
GSO ISO/IEC 80079-20-1:2025
ISO/IEC 80079-20-1:2017 
Gulf Standard
Explosive atmospheres — Part 20-1: Material characteristics for gas and vapour classification — Test methods and data
GSO ISO 22915-10:2025
ISO 22915-10:2023 
Gulf Standard
Industrial trucks — Verification of stability — Part 10: Additional stability test for trucks operating in the special condition of stacking with load laterally displaced by powered devices
GSO ISO 19438:2025
ISO 19438:2023 
Gulf Standard
Diesel fuel and petrol filters for internal combustion engines — Filtration efficiency using particle counting and contaminant retention capacity