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API SPEC 7-1: Rotary Drill Stem Elements

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342

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API SPEC 7-1: Rotary Drill Stem Elements: Errata 2

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ISO 5267-2:2025 Pulps – Determination of drainability – Part 2: “Canadian Standard” freeness method

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182

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MSS SP-106-2025: Cast Copper Alloy Flanges and Flanged Fittings: Class 125, 150, and 300

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API 5L8: Field Inspection of New Line Pipe

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API RP 13B-2: Field Testing Oil-based Drilling Fluids

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388

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API RP 13B-2: Field Testing Oil-based Drilling Fluids: Errata 1

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API TR 2WSIM: Weathervaning System Integrity Management

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API 570: Piping Inspection Code: In service Inspection, Rating, Repair, and Alteration of Piping Systems

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ISO 15850:2014

ISO 15850:2014 Plastics – Determination of tension-tension fatigue crack propagation – Linear elastic fracture mechanics (LEFM) approach

CDN $233.00

SKU: fd65a1c76770 Category:

Description

ISO 15850:2014 specifies a method for measuring the propagation of a crack in a notched specimen subjected to a cyclic tensile load varying between a constant positive minimum and a constant positive maximum value. The test results include the crack length as a function of the number of load cycles and the crack length increase rate as a function of the stress intensity factor and energy release rate at the crack tip. The possible occurrence of discontinuities in crack propagation is detected and reported.

The test can be also used for the purpose of determining the resistance to crack propagation failure. In this case, the results can be presented in the form of number of cycles to failure or total time taken to cause crack propagation failure versus the stress intensity factor.

Edition

2

Published Date

2014-02-04

Status

PUBLISHED

Pages

23

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

ISO 15850:2014 specifies a method for measuring the propagation of a crack in a notched specimen subjected to a cyclic tensile load varying between a constant positive minimum and a constant positive maximum value. The test results include the crack length as a function of the number of load cycles and the crack length increase rate as a function of the stress intensity factor and energy release rate at the crack tip. The possible occurrence of discontinuities in crack propagation is detected and reported.

The test can be also used for the purpose of determining the resistance to crack propagation failure. In this case, the results can be presented in the form of number of cycles to failure or total time taken to cause crack propagation failure versus the stress intensity factor.

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