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API TR 5C3: Calculating Performance Properties of Pipe Used as Casing or Tubing

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422

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API STD 671: Special Purpose Couplings for Petroleum, Chemical and Gas Industry Services

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502

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Technical Report API TBD-10: Chapter 10 Surface and Interfacial Tension

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176

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API STD 671: Special Purpose Couplings for Petroleum, Chemical and Gas Industry Services: Errata 2

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0

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MSS SP-44-2026: Steel Pipeline Flanges

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450

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API RP 576: Inspection of Pressure-relieving Devices

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460

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API RP 591: Process Valve Qualification Procedure

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API RP 576: Inspection of Pressure-relieving Devices: Addendum 1

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ISO 15091:2019

ISO 15091:2019 Paints and varnishes – Determination of electrical conductivity and resistance

CDN $115.00

Description

This document specifies a method for determining the electrical conductivity and the electrical resistance of coating materials. The conductivity is usually measured for water-borne paints and varnishes, including electrodeposition coating materials, and the resistance is usually measured for solvent-borne paints and varnishes. If required, the resistivity of the coating material is calculated from either of these measurements. The method is applicable to products having a conductivity less than 5 µS/cm, corresponding to a resistivity greater than 200 kΩ⋅cm.

The conductivity of coating materials influences their processibility in the presence of an electric field. This is particularly important for electrodeposition paints and coating materials which are processed electrostatically.

Edition

2

Published Date

2019-11-27

Status

PUBLISHED

Pages

11

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

This document specifies a method for determining the electrical conductivity and the electrical resistance of coating materials. The conductivity is usually measured for water-borne paints and varnishes, including electrodeposition coating materials, and the resistance is usually measured for solvent-borne paints and varnishes. If required, the resistivity of the coating material is calculated from either of these measurements. The method is applicable to products having a conductivity less than 5 µS/cm, corresponding to a resistivity greater than 200 kΩ⋅cm.

The conductivity of coating materials influences their processibility in the presence of an electric field. This is particularly important for electrodeposition paints and coating materials which are processed electrostatically.

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