Chemical resistance PFAPolyfluor
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 mainly determined by the chemical structure of the material and the strength of the weakest
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369 rows The information below concerns general polyethylene chemical resistance only Since other
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Chemical Resistance Table Chemical Resistance Table KEY E = Excellent G = Good C = Conditional X = Unsatisfactory Trade Name Description ASTM Codes Butyl Isobutylene Isoprene IIR CPE Chlorinated Polyethylene CM EPDM Ethylene Propylene Diene EPDM Hypalon Chlorosulfonated Polyethylene CSM Hytrel Thermoplastic Polyester TPC ET ACETIC ACID 10
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PlasticsChemical Resistance Chart Material Formula Acidsconcentrated Acidsdilute Alcohols Alkalis Aromatic hydrocarbons Greases and Oils Halogenated Hydrocarbons Halogens Ketones Cellulose Acetate Butyrate CABFair Poor Poor Fair Poor Poor Good Poor Poor Poor Poor Ethylene Chlorotrifluoroethylene copolymer
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PlasticsChemical Resistance Chart Material Formula Acidsconcentrated Acidsdilute Alcohols Alkalis Aromatic hydrocarbons Greases and Oils Halogenated Hydrocarbons Halogens Ketones Cellulose Acetate Butyrate CABFair Poor Poor Fair Poor Poor Good Poor Poor Poor Poor Ethylene Chlorotrifluoroethylene copolymer
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Polyethylene terephthalate PET or PETE is a general purpose thermoplastic polymer which belongs to the polyester family of polymers Polyester resins are known for their excellent combination of properties such as mechanical thermal chemical resistance as well as dimensional stability
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Acetic acid 1 10 S S Barium carbonate saturated S S Acetic acid 10 60 S O Barium hydroxide S S Note The proceeding information concerns general chemical resistance only Since other factors such as permeation ESCR and container design are involved full compatibility testing is
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PTFE Chemical Resistance Chart PTFE extruded tubing and PTFE shrink tubing are used by our customers in various industries and in different applications which may require resistance to specific chemicals While this chart is a useful reference please note that it is the end users responsibilities to evaluate and test the fitness of the product for their specific applications
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Additional Chemical Resistance Information This chemical resistance chart is to be used for all labware including containers up to 50L For NALGENE centrifugeware please refer to those charts in this catalog For chemical resistance of PETG polyethylene terephthalate copolyester see below
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Chemical Resistance Chart for HDPE High Density Polyethylene The chemical resistance chart below is a general guide only Please contact MENDA for specific applications AcetaldehydeGF Diethyl BenzeneFN Methyl Ethyl KetoneNN Citric Acid 10 EE Isopropyl EtherNN TrichloroethyleneFN
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Polyethylene PEX Pipes used in Treated Potable Water For specific information about the resistance of high density polyethylene HDPE to disinfectants please see PPI T echnical Note 44 Long Term Resistance of AWWA C906 Polyethylene PE Pipe to Potable Water Disinfectants and PPI Technical Note 49 Recommendations for AWWA
Get Pricepolyethylene Properties Structures Uses Facts
Polyethylene light versatile synthetic resin made from the polymerization of ethylene Polyethylene is a member of the important family of polyolefin resins It is the most widely used plastic in the world being made into products ranging from clear food wrap and shopping bags to detergent bottles and fuel tanks
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UHMWPE Chemical Resistance 1 No attack negligible effect 2 Slight attack reduction in prop 3 Moderate attack limited life 4 Material will decompose Side by Side Material Comparison Chemical Resistance Chart Note Large File
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Polyethylene is basically an inert plastic and is not subject to attack by most chemicals However those substances that do attack the polyethylene may still be packageable under certain conditions In general terms high density polyethylene is more chemical resistant than low density
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Benzoic Acid Boric Acid 10 Bromine Gas Dry Bromine Water Butyl Acetate Butyl Alcohol Butyric Acid Calium Hydroxide Saturated Carbon Disulphide Carbon Tetrachloride CHEMICAL RESISTANCE OF PLASTICS This chart gives general guidelines only on the chemical resistance of plastics There are many factors which influence chemical resistance
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Resistance E = Excellent G = Good F = Fair N = Not Recommended Material PTFE = Polytetrafluoroethylene including of Teflon SS = Stainless Steel 316 PE#1 = Convenional Polyethylene PE#2 = Rigid Polyethylene PP = Polypropylene PVC = Polyvinylchloride
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Acetic acid 1 10 S S Barium carbonate saturated S S Acetic acid 10 60 S O Barium hydroxide S S Note The proceeding information concerns general chemical resistance only Since other factors such as permeation ESCR and container design are involved full compatibility testing is
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CHEMICAL RESISTANCE CHART Classes of substances 20°C HDPE LDPE PC PP Acids weak or dilute E E E E Acetic Acid A A2 B1 B1 Acetic Acid 20 A A A1 A1 Acetic Acid 80 A D B1 A Acetic Acid GlacialD D B1 A1 D Low Density Polyethylene LDPE High Density Polyethylene HDPE Polycarbonate PC Polypropylene PP A = No effect
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PET polyethylene terephthalate semicrystalline is a strong stiff engineering plastic with excellent machining characteristics chemical resistance and bearing and wear properties PET is often used for food processing machinery applications where low moisture absorption low thermal expansion resistance to staining or resistance to
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Chemical Resistance of Polyethylene = satisfactory no attack O = slight attack U = unsatisfactory 70°F = 21°C 140°F = 60°C Chemical Resistance of Polyethylene = satisfactory no attack O = slight attack U = unsatisfactory 70°F = 21°C 140°F = 60°C
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Chemical Resistance Table Chemical Resistance Table KEY E = Excellent G = Good C = Conditional X = Unsatisfactory Trade Name Description ASTM Codes Butyl Isobutylene Isoprene IIR CPE Chlorinated Polyethylene CM EPDM Ethylene Propylene Diene EPDM Hypalon Chlorosulfonated Polyethylene CSM Hytrel Thermoplastic Polyester TPC ET ACETIC ACID 10
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Chemical Resistance Reference Chart for HDPE High Density Polyethylene The following summary table is a guide to the compatibility of Liquids with High Density Polythylene The table does not imply compliance with the requirements found in 49CFR
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HDPE Chemical Compatibility Resistance Chart Explanation of Footnotes 1 Satisfactory to 72°F 22°C 2 Satisfactory to 120°F 48°C Acetic Acid 20 A Excellent Acetic Acid 80 A Excellent Acetic Acid Glacial A Excellent Acetic Anhydride C Fair Acetone D Severe Effect
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Chemical Resistance Classification 30 days of constant exposure to reagent causes no damageLittle or no damage after 30 days of constant exposure to the reagentSome effect after 7 days exposure to the reagent Solvents may cause swelling and permeation losses
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Chemical Resistance Chart E = EXCELLENT RESISTANCE No etching B = GOOD RESISTANCE Little etching after 30 days of constant exposure to the reagent S = FAIR RESISTANCE Etching after 7 days of constant exposure N = NOT RECOMMENDED HDPE = High density Polyethylene
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Chemical Resistance of Porous Plastics Porous plastics are made from commercially available grades of polyethylene or polypropylene These materials are resistant to a broad spectrum of Maleic acid 50 G G Phosphoric acid 95 G G Menthol G G Mercury G G Phosphorus
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Polyethylene and Very Good Chemical Resistance Acetatic acid Amonium hydroxide 30 Calcium hydroxide 30 Diethylene glycol Ethylene glycol Ethanol 100 Glycerin Glycol
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The table contains an evaluationof the chemical resistance of a number of fluidsjudged to be either aggressive or not towards low and high density polyethylene This evaluation is based on values obtained by immersion of low and high density polyethylene test specimen s in the
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Generally speaking the chemical resistance of polypropylene and polyethylene is considered superior to that of met als They are unaffected by most inorganic acids alkalis and aqueous solutions which rapidly corrode metals althoughsome concentrated acids and oxidizing agents can attack them especially at elevated temperatures IMPORTANT NOTICE This data refers to drainage systems usage only
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polyethylene is concerned as saturated solutions In general common chemical names are used in this document The table is made as a first guideline for user of polyethylene If a compound is not to be found or if there is an uncertainty on the chemical resistance in an application please contact Borealis for advise and proposal on testing
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RESISTANCE CHART RATINGS CHEMICAL EFFECT A No effect Excellent Acetic Acid Glacia1 BA A CD B D Acetic Acid 20 BA A CD C Acetic Acid 80 BA AC DB C Acetic Acid B AA CDB C Acetic Anhydride B AA CD D Acetone6 A BA D DCB Polyethylene POLYPROPYLENE POLYPHENYLENE SULFIDE RYTON
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This type of low density polyethylene can be processed into thinner films with better environmental stress crack resistance than HDPE and LDPE MDPE is used on a smaller scale than HDPE Like LLDPE it is produced by low pressure polymerization techniques
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HDPE and LDPE Resistance Chart by Chemical LDPE HDPE resistance listed by chemical 1 4 dioxane Boric acid LDPE and HDPE at 20C° 50C° show little or no damage after 30 days of constant exposure Bromine LDPE and HDPE at 50C°immediate damage may occur HDPE at 20C° shows some effect after 7 days of
Get PriceChemical Compatibility ChartLDPE HDPE PP Teflon
Polyethylene HDPE and LDPE has a very good compatibility rating with most chemicals and is resistant to strong acids and bases as well as gentle oxidants and reducing agents Polypropylene is almost as resistant as polyethylene but with a few specific chemicals it offers superior resistance
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CHEMICAL RESISTANCE GUIDE Chemical o PSolution Chloroacetic Acid A C B C C A Chloroform C C C C A C A Chlorosulfonic Acid B C C C C C B Chromic Acid
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Polyethylene Chemical Resistance Chart CDF Corporation uses only the highest quality raw materials available These raw materials have out standing resistance to both physical and chemical attack The following chart should be used as a guide for evaluating the suitability of our products with the chemical agent you plan to use Special considera
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