ASTM D495-22 PDF

ASTM D495-22 PDF

Name:
ASTM D495-22 PDF

Published Date:
01/15/2022

Status:
Active

Description:

Standard Test Method for High-Voltage, Low-Current, Dry Arc Resistance of Solid Electrical Insulation

Publisher:
ASTM International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

SKU:

Choose Document Language:
$18
Need Help?

1.1''This test method covers, in a preliminary fashion, the differentiation of similar materials''' resistance to the action of a high-voltage, low-current arc close to the surface of insulation, when a conducting path is formed causing the material to become conducting due to the localized thermal and chemical decomposition and erosion.

1.2''The usefulness of this test method is very severely limited by many restrictions and qualifications, some of which are described in the following paragraphs and in Section 5. Generally, this test method shall not be used in material specifications. Whenever possible, alternative test methods shall be used, and their development is encouraged.

1.3''This test method will not, in general, permit conclusions to be drawn concerning the relative arc resistance rankings of materials that are potentially subjected to other types of arcs: for example, high voltage at high currents, and low voltage at low or high currents (promoted by surges or by conducting contaminants).

1.4''The test method is intended, because of its convenience and the short time required for testing, for preliminary screening of material, for detecting the effects of changes in formulation, and for quality control testing after correlation has been established with other types of simulated service arc tests and field experience. Because this test method is usually conducted under clean and dry laboratory conditions rarely encountered in practice, it is possible that the prediction of a material's relative performance in typical applications and in varying '''clean to dirty''' environments will be substantially altered (Note 1). Caution is urged against drawing strong conclusions without corroborating support of simulated service tests and field testing. Rather, this test method is useful for preliminary evaluation of changes in structure and composition without the complicating influence of environmental conditions, especially dirt and moisture.

Note 1:''By changing some of the circuit conditions described herein it has been found possible to rearrange markedly the order of arc resistance of a group of organic insulating materials consisting of vulcanized fiber and of molded phenolic and amino plastics, some containing organic, and some inorganic, filler.

1.5''While this test method uses dry, uncontaminated specimen surfaces, Test Method D2132, Test Methods D2303, and Test Method D3638 employ wet, contaminated specimen surfaces. Their use is recommended for engineering purposes and to assist in establishing some degree of significance to this test method for quality control purposes.2

1.6''This test method is not applicable to materials that do not produce conductive paths under the action of an electric arc, or that melt or form fluid residues that float conductive residues out of the active test area thereby preventing formation of a conductive path.

1.7''The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

1.8''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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. For specific precautionary statements, see 6.1.14, 6.1.19, Section 7, and 10.1.1.

Note 2:''Due to the deficiencies covered in Section 1, Committee D09 has proposed that without significant proposed improvements this standard be withdrawn in 2027 during its next 5 year review. This notice is provided so that referencing standards can transition.

1.9''This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.


File Size : 1 file , 370 KB
Note : This product is unavailable in Russia, Ukraine, Belarus
Number of Pages : 11
Published : 01/15/2022
Redline File Size : 2 files , 990 KB

History

ASTM D495-22
Published Date: 01/15/2022
Standard Test Method for High-Voltage, Low-Current, Dry Arc Resistance of Solid Electrical Insulation
$18
ASTM D495-14
Published Date: 04/01/2014
Standard Test Method for High-Voltage, Low-Current, Dry Arc Resistance of Solid Electrical Insulation
$19.2
ASTM D495-99(2004)
Published Date: 03/10/1999
Standard Test Method for High-Voltage, Low-Current, Dry Arc Resistance of Solid Electrical Insulation (Withdrawn 2013)
$18
ASTM D495-99
Published Date: 03/10/1999
Standard Test Method for High-Voltage, Low-Current, Dry Arc Resistance of Solid Electrical Insulation
$18.6

Related products

ASTM D2308-07(2020)e1
Published Date: 08/01/2020
Standard Specification for Thermoplastic Polyethylene Jacket for Electrical Wire and Cable
$13.8
ASTM D748-18
Published Date: 03/15/2018
Standard Specification for Natural Block Mica and Mica Films Suitable for Use in Fixed Mica-Dielectric Capacitors
$14.4
ASTM D2304-23
Published Date: 05/01/2023
Standard Test Method for Thermal Endurance of Rigid Electrical Insulating Materials
$17.1
ASTM D2220-21
Published Date: 12/31/2020
Standard Specification for Poly(Vinyl Chloride) Insulation for Wire and Cable, 75 oC Operation
$13.8

Best-Selling Products

BS ISO/IEC 10021-1:1990
Published Date: 03/29/1991
Information technology. Text communication. Message-oriented text interchange systems (MOTIS). System and service overview
$119.634
BS ISO/IEC 10021-2:1990
Published Date: 03/29/1991
Information technology. Message handling systems (MHS)-Information technology. Text communication. Message-oriented text interchange systems (MOTIS). Overall architecture
$119.634
BS ISO/IEC 10021-2:1996
Published Date: 01/15/1998
Information technology. Message handling systems (MHS)-Overall architecture
$119.634
BS ISO/IEC 10021-3:1990
Published Date: 03/29/1991
Information technology. Text communication. Message-oriented text interchange systems (MOTIS). Abstract service definition conventions
$92.964
BS ISO/IEC 10021-4:1990
Published Date: 03/29/1991
Information technology. Text communication. Message-oriented text interchange systems (MOTIS). Message transfer system: abstract service definition and procedures
$119.634
BS ISO/IEC 10021-4:1997
Published Date: 01/15/1998
Information technology. Message handling systems (MHS)-Message transfer system. Abstract service definition and procedures
$119.634