Oleum (0) is not compatible with Sulfuric acid (2) and 1,l ,I -Trichloroethane (36). Phthalate based polyester polyol(0) is not compatible with group 2,3,5, 7 and 12. Pentene, Miscellaneous hydrocarbon mixtures (30) are not compatible with strong acids or
Another useful polyester is produced from benzene-1,4-dicarboxylic acid and propane-1,3-diol (which replaces ethane-1,2-diol). It is known by its trivial name, polytrimethylene terephthalate . The different uses of polyesters depend on their structure.
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Tensile Strength & Chemical Exposure Chemical Conditions Effect on Tensile Concentration Strength (%) Temperature ( C) Exposure time (hr) Inorganic acids Hydrochloric acid 10 20 5000 None Nitric acid 10 20 5000 None Sulfuric acid 0.24 60 168 None
Abstract This research deals with the durability of micropolymer concrete (MPC) obtained by mixing an epoxy resin with fine and coarse sand particles. In particular the resistance of the micropolymer concrete to chemical solutions (citric acid C 6 H 8 O 7, sulfuric acid H 2 SO 4, and hydrochloric acid HCl) is investigated and compared to this of Portland cement microconcrete.
The table of chemical resistance is a guide to the initial selection of fitting and coupling material suitable for given operating conditions. Please contact Sales or Technical Department of TUBES INTERNATIONAL® to match the fitting material correctly with the appliion. TABLE OF FITTING MATERIAL CHEMICAL RESISTANCE A B C X – excellent resistance, suitable for […]
Bromobenzene Chlorosulfonic Acid Ethyl Butyrate Sulfur Dioxide (40 Psi) Butadiene Cinnamon Oil Ethyl Chloride Sulfuric Acid (96%) Butyric Acid Cresol Etylene Chloride Sulfuric Acid, Fuming Chemical Resistance Characteristics of Polyethylene | Milky
Chemical resistance PFA PFA has the advantage to withstand a higher continuous working temperature compared to FEP. Due to melt processability, PFA can be extruded in longer continuous lengths than PTFE. Note: The chemical resistance of each polymer is
Chemical Resin Type Specific Gravity Rating Fitting Material Gasket Material Bolt Material Sulfuric Acid ≥ 93% XLPE with OR-1000 2.2 PVC Viton® 316SS Sulfuric Acid 80%-92% XLPE with OR-1000 2.2 PVC Viton® C-276 Sulfuric Acid < 80% XLPE with OR
Sulfuric acid is a colorless oily liquid. It is soluble in water with release of heat. It is corrosive to metals and tissue. It will char wood and most other organic matter on contact, but is unlikely to cause a fire. Density 15 lb / gal. Long term exposure to low
Chemical & Physical Resistance Data for Fibres The chemical & physical resistance data for fibres is divided into these two tables: Tabla 1. Polyester, Acrylic, Polyamide & Aramyd Tabla 2. Polypropylene, Polyvinyl, Politetrafluoro-Etilenica, Glass & Cotton
Physical Properties of Polyester: The moisture regain of polyester is 0.2 to 0.8 and specific gravity is 1.38 or 1.22 depending on the type of polyester fibres is moderate. The melting point of polyester is 250-300 C. A wide of polyester fibres properties is possible
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Chemical Resistance Guide for Silicone Hose Chemical * Acetic acid, dilute, 10% B Acetic acid glacial C Acetic acid anhydride I Acetone X Acetylene C Air 68 F (20 C) A Air 150 F (65 C) A Aluminum chloride 150 F (65 C) A Aluminum fluoride 150
TR-60C (100-61-3) Rev. Ø; / 05-28-99 Page 3 of 28 Use or disclosure of data contained on this sheet is subject to the restrictions contained in the disclaimer loed in the Table of Contents of this report Bal Seal Engineering Co, Inc. • Foothill Ranch, CA USA 92610-2610 • Tel 949- 460-2100 • Fax 949-460-2300 • Email: [email protected] • /p>
WHITE ACID attacks glass and materials containing silica. Reacts exothermically to neutralize bases. Mixtures with concentrated sulfuric acid can evolve toxic hydrogen fluoride gas. Incompatible with acetic anhydride, 2-aminoethanol, chlorosulfonic acid, aqueous
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There are many factors that influence chemical resistance, we therefore recommend that you Sulfuric Acid (20%) ln Q Sulfuric Acid (60%) ln s Q Sulfuric Acid (98%) n l sQ Tetrahydrofuran (THF) ns lQ Toluene n slQ Trichloroacetic Acid n sl Q Trichloroethylene
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Chemical Product Vinyl Ester 60 o F (15 o C) 160 o F (71 o C) Acetic Acid 0-25% (vinegar) R R Acetic Acid 25-50% R R Acetone R NR Acrylic Acid - 25% R NR Adipic acid R R Air R R Alcohol - Butyl R NR Alcohol - Ethyl 10% R max 150 Alcohol - Ethyl 100% R
Polyurea Elastomer Chemical Resistance Chart Test Procedure: ASTM D1308 at 720 F R: Recommended (little or no visible damage) Battery Acid (Sulfuric Acid) C Phosphoric Acid 10% R Benzene C Phosphoric Acid 50% N Brine ‑ saturated (>I
Chemical Resistance Guide 777 97 2%.7".-42."., 1A 1B 69 c hemical r e S i S tance g uide The data in the following tables was obtained from numerous sources in the industry. The information is based primarily on the immersion of unstressed strips in the
Oilfield chemical transfer hose Temerature at F F AcetaldehydeA A B X TS Acetic Acid, Conc. A A B X T Acetic Acid, Dilute 10* A A I X TVN Acetic Acid, Glacial A A B X TS Acetic Aldehyde A A B X T Acetic Anhydride Acetic Ether A
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ARYL SULFONIC ACIDS, SOLID, WITH MORE THAN 5% FREE SULFURIC ACID react exothermically with chemical bases (examples: amines, amides, inorganic hydroxides). The reactions can generate dangerously large amounts of heat in small spaces.