• Oxygen Material Compatibility Chart, e. Gas Safety and Material Compatibility Data Chart This data has been compiled from the best information available and is offered as a guide to proper material selection. U: Unsatisfactory for use with the intended gas. It is a critical issue in space, aircraft, medical, underwater diving and industrial applications. oxygen or nitrous oxide) must be cleaned for oxidizer service. To reduce potentially dangerous situations, always check for compatibility of materials before using any gases in your gas control equipment. l: Insufficient data available to determine compatibility with the intended gas. It is extremely important that all gas control equipment be compatible with the gas being used. Requests for oxygen compatibility testing of materials should be addressed to NASA/MC: NE-L2-T, Kennedy Space Center, FL 32899. The assessment is limited to the fire hazards of the item being evaluated. Our technical staff What are the Material Compatibility Charts? Gas Compatibility The compatibility data that follows has been compiled to assist in evaluating appropriate materials for use in handling various gases. NOTE: *These temperature ranges will apply to the majority of media for which the material is potentially recommended. Systems and equipment used in oxidizer gas service (i. With nearly 40 years of oxygen compatibility research and oxygen system testing, our engineers have completed countless Oxygen Compatibility Assessments (OCA), hazards analysis, and data analysis Oxygen compatibility is the issue of compatibility of materials for service in high concentrations of oxygen. Oct 29, 2024 · AN-0-6 Anderol, L-774 (Di-Ester) Anderol, L-826 (Di-Ester) Anderol, L-829 (Di-Ester) ANG-25 (Di-Ester Base) (TG7449) ANG-25 (Glyceral Ester) Anhydrous Hydrazine Anhydrous Hydrogen Fluoride Aniline Aniline Dyes Aniline Hydrochloride Aniline Sulfite Animal Fats & Oils Anisole (Methylphenyl Ether) Ansul Ether Anthaquinone Anti-Freeze (Alcohol Base) Anti-Freeze (Glycol Base) Antimonty Trichloride Forms explosive compounds with aluminum Attacks copper and copper alloys rapidly Attacks copper and copper alloys rapidly Readily reacts with Oxygen to form Nitrogen Dioxide Very corrosive, attacks most metals except nickel Strong oxidant, ignites combustible matter spontaneously Very toxic Highly toxic, high concentrations are pyrophoric How do you know if a material is safe for oxygen service? What are safe-use criteria? Read more about the science of oxygen compatibility. WARNING: These products can expose you to chemicals including carbon black (airborne and extracts), antimony trioxide, titanium dioxide, silica Key to Materials Compatibility S: Satisfactory for use with the intended gas. Materials Compatibility Guide The following data should serve as a guide in the selection of components for particular gas services. It enables users to determine areas of concern and or the risk of fire hazards with respect to oxygen compatibility and, ultimately, prevent damage to a Oxygen Compatibility Materials Database WHA offers free public access to a detailed database of different materials' oxygen compatibility. Since combinations of gases are virtually unlimited, mixtures (except for Oxyfume® and Medifume® steril-izing gas mixtures) are not listed in the Compatibility Chart. ALWAYS TEST UNDER ACTUAL SERVICE CONDITIONS. Information is determined through research and oxygen compatibility testing. The use of a device that is not compatible may damage the unit and cause a leak that could result in property damage or The oxygen compatibility assessment process provides a systematic approach for identifying and addressing the fire hazards in an oxygen system. Welcome WHA is pleased to offer free access to the Oxygen-Compatibility Materials Database contained herein. GAS SAFETY AND MATERIAL COMPATIBILITY DATA CHART This data has been compiled from the best information available and is offered as a guide to proper material selection. With some media however, the service temperature range may be significantly different. The primary goal of the oxygen compatibility assessment process is to reduce the likelihood of a fire occurring in an oxygen system or component. The data presented are generalized for average conditions of temperature and pressure. The user should always investigate the characteristics of the gas being handled and take all the proper precautions. Metals Materials of Construction Plastics Elastomers Common Name Isopentane Methane Methyl Chloride Methyl Mercaptan Neon Nitric Oxide Nitrogen Nitrogen Dioxide Nitrous Oxide Oxygen Lubricants, metals, and non-metals can all initiate fires in oxygen systems. The OCA is used to determine whether the material may be used, or whether there is a need to perform supplemental material, configuration, or component testing. Scope This guide provides a procedure to systematically assess the suitability of a material, component, or system for use in or with an oxygen-enriched environment. The compatibility data that follows has been compiled to assist in evaluating appropriate materials for use in handling various gases. For non-metallic materials data is provided for Autogenous Ignition Temperature (AIT), Heat of Combustion (HC To reduce potentially harmful situations, always check for the compatibility of equipment and materials before using any gases in your gas control equipment. Specialty Gas Equipment Material Compatibility Chart 1. The data provided relates to common testing performed according to both standard and non-standard test methodologies utilized by oxygen system designers and practitioners. Jun 15, 2016 · The compatibility of materials and components used in oxygen service or oxygen–enriched environments is a critical issue in space, aircraft, medical, underwater diving and industrial applications. . WHA can evaluate your materials for oxygen compatibility. jgudi1, ikd1v, wewwfj, dc6zeh, r55w, lhea, lg, o3ive, ti5v, 39drb,

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