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Standard

ACCELERATED EXPOSURE OF AUTOMOTIVE INTERIOR TIRM COMPONENTS USING A CONTROLLED IRRADIANCE WATER COOLED XENON-ARC APPARATUS

1992-03-01
HISTORICAL
J1885_199203
This test method specifies the operating procedures for a controlled irradiance, water cooled xenon-arc apparatus used for the accelerated exposure of various automotive interior trim components. Test durations, as well as any exceptions to the sample preparation and performance evaluation procedures contained in this document, are covered in material specifications of the different automotive manufacturers.
Standard

Accelerated Exposure of Automotive Exterior Materials Using a Controlled Irradiance Water-Cooled Xenon Arc Apparatus

2004-10-25
HISTORICAL
J1960_200410
This test method specifies the operating procedures for a controlled irradiance, water-cooled xenon arc apparatus used for the accelerated exposure of various automotive exterior materials. This standard is limited to the models of xenon arc test apparatus specified in the Section on Apparatus. All other models of xenon arc test apparatus must use SAE J2527 to perform the test conditions specified in SAE J1960. SAE J2527 is the performance standard based on the test parameters of SAE J1960. Use of xenon arc test apparatus to perform SAE J2527 must be agreed upon by contractual parties.
Standard

Accelerated Exposure of Automotive Interior Trim Components Using a Controlled Irradiance Water Cooled Xenon-Arc Apparatus

2005-03-09
HISTORICAL
J1885_200503
This test method specifies the operating procedures for a controlled irradiance, water cooled xenon-arc apparatus used for the accelerated exposure of various automotive interior trim components. Test durations, as well as any exceptions to the sample preparation and performance evaluation procedures contained in this document, are covered in material specifications of the different automotive manufacturers. This standard is limited to the models of xenon arc test apparatus specified in the Section on Equipment. All other models of xenon arc test apparatus must use SAE J2412 to perform the test conditions specified in SAE J1885. SAE J2412 is the performance standard based on the test parameters of SAE J1885. Use of xenon arc test apparatus to perform SAE J2412 must be agreed upon by contractual parties.
Standard

TEST FOR CHIP RESISTANCE OF SURFACE COATINGS

1968-07-01
HISTORICAL
J400_196807
This SAE Recommended Practice covers a laboratory procedure for testing and evaluating the resistance of surface coatings to chipping by gravel impact. The test is designed to reproduce the effect of gravel striking exposed painted or coated surfaces of an automobile and has been correlated with actual field results. The specific intent of the test is to evaluate organic surface coatings or systems on flat test panels; however, it may be possible to extend this type of testing to finished parts or other types of materials such as anodized aluminum or plated plastics if the results are interpreted with respect to the limitations and intent implied by the original testing procedure and rating system.
Standard

TEST FOR CHIP RESISTANCE OF SURFACE COATINGS

1985-01-01
HISTORICAL
J400_198501
This SAE Recommended Practice covers a laboratory procedure for testing and evaluating the resistance of surface coatings to chipping by gravel impact. The test is designed to reproduce the effect of gravel striking exposed paint or coated surfaces of an automobile and has been correlated with actual field results. The specific intent of the test is to evaluate organic surface coatings or systems on flat test panels; however, it may be possible to extend this type of testing to finished parts or other types of materials such as anodized aluminum or plated plastics if the results are interpreted with respect to the limitations and intent implied by the original testing procedure and rating system.
Standard

TEST FOR CHIP RESISTANCE OF SURFACE COATINGS

1980-06-01
HISTORICAL
J400_198006
This SAE Recommended Practice covers a laboratory procedure for testing and evaluating the resistance of surface coatings to chipping by gravel impact. The test is designed to reproduce the effect of gravel striking exposed paint or coated surfaces of an automobile and has been correlated with actual field results. The specific intent of the test is to evaluate organic surface coatings or systems on flat test panels; however, it may be possible to extend this type of testing to finished parts or other types of materials such as anodized aluminum or plated plastics if the results are interpreted with respect to the limitations and intent implied by the original testing procedure and rating system.
Standard

TEST METHOD FOR DETERMINING COLD CRACKING OF FLEXIBLE PLASTIC MATERIALS

1996-01-01
HISTORICAL
J323_199601
This SAE Recommended Practice is applicable for determining the cold characteristics of vinyl-coated fabrics and other automotive plastic materials, as applicable. It consists of three different methods for determining low-temperature properties of materials depending on type of material and end use.
Standard

Test Method for Determining Cold Cracking of Flexible Plastic Materials

1998-07-01
HISTORICAL
J323_199807
This SAE Recommended Practice is applicable for determining the cold characteristics of vinyl-coated fabrics and other automotive plastic materials, as applicable. It consists of three different methods for determining low-temperature properties of materials depending on type of material and end use.
Standard

Test Method for Determining Cold Cracking of Flexible Plastic Materials

2021-09-15
CURRENT
J323_202109
This SAE Recommended Practice is applicable for determining the cold characteristics of flexible plastic materials, as applicable. It consists of three different methods for determining low-temperature properties of materials depending on type of material and end use. The method used shall be as specified by the contractual parties.
Standard

Test Method for Determining Cold Cracking of Flexible Plastic Materials

2004-01-28
HISTORICAL
J323_200401
This SAE Recommended Practice is applicable for determining the cold characteristics of flexible plastic materials, as applicable. It consists of three different methods for determining low-temperature properties of materials depending on type of material and end use.
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