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Standard Test Method for Pressure Testing Vapor Protective Suits
STANDARD published on 1.5.2014
Designation standards: ASTM F1052-14
Note: WITHDRAWN
Publication date standards: 1.5.2014
SKU: NS-48948
The number of pages: 5
Approximate weight : 15 g (0.03 lbs)
Country: American technical standard
Category: Technical standards ASTM
Keywords:
integrity, pressure testing, protective clothing, ICS Number Code 13.340.10 (Protective clothing)
Significance and Use | ||||||||||||||||||||||||
5.1 Workers involved in the production, use, and transportation of liquid and gaseous chemicals can be exposed to numerous compounds capable of causing harm upon contact with the human body. The deleterious effects of these chemicals can range from acute trauma such as skin irritation and burn to chronic degenerative disease such as cancer. Since engineering controls may not eliminate all possible exposures, attention is often placed on reducing the potential for direct skin contact through the use of protective clothing that resists permeation, penetration, and degradation. 5.2 This test method is only appropriate for evaluating the integrity of totally encapsulating protective suits, that are designed and manufactured to prevent the inward leakage of gases and vapors. The vapor protection should be tested in accordance with Test Method F2588. Garments designed to protect from liquid chemicals should be tested in accordance with Test Method F1359. 5.3 This non-destructive test method is useful as a quality control tool for manufactures and as a field method for end users to determine changes in garment integrity following use. 5.4 This test method is useful to end users for determining the integrity of vapor protective suits upon receipt from the manufacturer, prior to use, following use and decontamination, following repairs, and as a periodic maintenance test. |
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1. Scope | ||||||||||||||||||||||||
1.1 This test method measures the ability of a vapor protective suits, including seams, and closures to maintain a fixed, positive pressure. 1.2 This test method does not measure vapor protection of suits. This test method measures the integrity of the suit, glove, foot protection, and visor materials, as well as the seams, and closures of a vapor protective suit. Exhaust valves fitted in the vapor protective suit must be sealed or blocked for this test and therefore are not functionally tested. 1.3 The values as stated in
in.-H1.4 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 and health practices and determine
the applicability of regulatory limitations prior to use.
Standard Test Method for Permeation of
Liquids and Gases Through Protective Clothing Materials Under
Conditions of Intermittent Contact Standard Test Method for Man-In-Simulant
Test (MIST) for Protective Ensembles Standard Test Method for Resistance of
Chemical Protective Clothing Materials to Liquid
Permeation´Permeation Cup Method Standard Test Method for Effects of Flame
Impingement on Materials Used in Protective Clothing Not Designated
Primarily for Flame Resistance Standard Practices for Evaluating the
Comfort, Fit, Function, and Durability of Protective Ensembles,
Ensemble Elements, and Other Components Standard Test Method for Liquid
Penetration Resistance of Protective Clothing or Protective
Ensembles Under a Shower Spray While on a Mannequin Standard Test Methods for Coated
Fabrics Standard Test Method for Permeation of
Liquids and Gases Through Protective Clothing Materials Under
Conditions of Continuous Contact Standard Test Method for Flex Durability
of Flexible Barrier Materials Standard Test Method for Resistance of
Materials Used in Protective Clothing to Penetration by Liquids Standard Test Method for
Puncture-Propagation Tear Resistance of Plastic Film and Thin
Sheeting Standard Test Method for Abrasion
Resistance of Textile Fabrics (Oscillatory Cylinder Method) |
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