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              JUTAIPEEK?NA is a type of Polymeric Profiles made from pure Polyetherether Ketone (PEEK), including sheets and rods, and the color is generally rice-yellow.(JUTAIPEEK?NAV is an extruded profile using British VICTREX PEEK Polymers 450G raw materials, and JUTAIPEEK?NAG is an extruded profile using domestic raw materials) Pure PEEK is a kind of polymeric materials with outstanding heat-resistance (long term service temperature=240 -260℃), outstanding resistance to chemicals (almost only concentrated H2SO4, HNO3 can destroy it), excellent flame retardancy and low smoke toxicity when combustion.
              Product Features
              JUTAIPEEK?NA type pure PEEK profiles:
              ● Outstanding stiffness and mechanical strength.
              ● Excellent resistance to creep and fatigue.
              ● Maintaining higher tensile strength and flexure strength、 above 200℃.
              ● Outstanding heat-resistance with long term service temperature is 240-260℃.
              ● Outstanding electrical insulation, low dielectric constant and dielectric loss.
              ● Outstanding resistance to chemicals.
              ● Excellent resistance to hot water and steam, which can be serviced long term in steam with temperature above 200℃.
              ● Excellent flame retardancy, which reach UL94 V-0 class for 1.6mm thickness sample.
              ● Low smoke generation.
              ● Outstanding resistance to nuclear radiation, which has the best radiation-resistance in Polymeric materials.
              ● Good sliding frictional property, which has better friction factor and wear rate than most of other kinds of polymeric polymers.
              Application Fields
              JUTAIPEEK?NA type PEEK profiles can be applied:
              —— Mechanical Engineering Industry;
              —— Pump and Vale Industry;
              —— Electronic Industry;
              —— Chemical Industry;
              —— New Energy Industry;
              —— Food and Medical Device Industry;
              —— Automobile Industry;
              —— Aviation and Aerospace industry.
              Instructions for Use
              Machined by Lathes or Milling Machine. Remove surface.
              heat-treatment aged layers and the thickness of removal layer is 0.5-1mm.
              Product Storage Instructions
              Placed away from light, avoiding humid, and away from oily substance.
              Packed with polymeric film when not use.
              Product Technical Data
              The performance of JUTAIPEEK?NA series products is as follows:

              Performance Test Method Unit NAG NAV
              Color Eye / Rice-Yellow Rice-Yellow
              Density ISO 1183-1 g/cm3 1.30 1.30
              Tensile Strength ISO 527-2 MPa ≥105 ≥105
              Tensile Modulus ISO 527-2 GPa ≥4.0 ≥4.0
              Elongation At Break ISO 527-2 % ≥15 ≥25
              Notched Charpy Impact Strength ISO 179 KJ/m2 ≥5.6 ≥4.5
              Flexural Strength ISO 178 MPa ≥160 ≥165
              Flexural Modulus ISO 178 GPa ≥4.0 ≥4.0
              Rockwell Hardness ISO 2039-2 HRM ≥100 ≥100
              Thermal Conductivity ISO 8302 W/ (m?K) ≤0.5 ≤0.5
              Coefficient of Linear Thermal
              Expansion 20-100℃
              ISO 11359-2 10-6/K ≤65 ≤65
              Long Service Temperature UL 746B 240 240
              Heat Deflection Temperature ISO 75-2 ≥150 ≥150
              Water Absorption
              ISO 62 % ≤0.05 ≤0.05
              Flame Retardancy UL 94 / V-0 V-0
              Volume Resistivity IEC 62631-3-1 Ω?cm 1011-1013 1011-1013
              Dielectric Strength IEC 60243-1 kV/mm ≥15 ≥15
              Dielectric Constant IEC 60243-1 1 3.66 3.3
              Dielectric Loss IEC 60243-1 1 2.5*10-3 2.7*10-3
              Chemical Corrosion Resistance
              JUTAIPEEK?NA can maintain excellent chemical tolerance and mechanical property under considerably wide temperature range, with generally seldom expansion or color fade. The chemical corrosion resistance of JUTAIPEEK?NA is demonstrated in Table 5.

              50%Acetamide, Formamide and Other Amide +
              40% HF -
              Acetone, Cyclohexanone, MEK and Other Ketones
              Liquid Freon
              10%Ammonia, Cyclohexamine and Other Amines. +
              Urea Solution
              Gasoline, Diesel, Fuel, Asphalt
              Benzene, Toluene and Other Aromatic hydrocarbons
              Potassium hydroxide solution
              Acids such as 10% Acetic acid, 10% Formic acid,Concentrated phosphoric acid, 10% Nitric acid, 10% Hydrochloric acid, 10% Sulfuric acid, etc.
              1% potassium permanganate
              10% Calcium chloride, 10% Calcium carbonate, 10%Sodium nitrate, 10% Sodium thiosulfate and Other Salts 10% Hydrochloric acid, 10% Sulfuric acid, etc.
              Phenol solution
              96% Ethanol, Ethylene glycol, Glycerol, 40% Ethylene glycol solution, Methanol, Propanol and Other Alcohols
              Pyridine +
              Salicylic acid
              Hexane, Heptane, Octane, Isopropane and Other Alkanes
              30% Formaldehyde solution and other Aldehydes +
              98% carbonate solution
              10% Boric acid aqueous solution +
              Saturated hydrogen sulfide solution
              Chlorobenzene 0 Silicone oil
              Chloroform +
              Dichloro heterocyclic hexane +
              Concentrated acetic acid 0 THF
              Diethyl ether +

              Smoke, Toxicity, Corrosion
              Plastic combustion generates a series of toxic gases, such as hydrogen cyanide (HCN), sulfur gases (SO2, H2S), nitrogen gases (NO, NO2) and carbon monoxide (CO). These gases are more lethal than fire because they can render people incapable of escaping from the fire scene. Corrosive gases such as hydrogen fluoride (HF) and hydrogen chloride (HCl) can cause permanent damage to sensitive electronic devices.
              The combustion products of JUTAIPEEK are mainly carbon dioxide (CO2) and carbon monoxide (CO). The amount of carbon monoxide produced is even less than 5% of the limit value specified in the Aviation Toxicity Standards (e.g. Boeing BSS 7238 and Airbus ATS-1000).

              The toxicity of gases is usually measured based on the amount of gases that cause fatal damage to the human body. Table 2 is the test results of the National Bureau of Standards (NBS) Smoke Laboratory, which confirms that the only toxic gas produced considerably is carbon monoxide(CO).

              Table below: The National Bureau of Standards (NBS) smoke laboratory tests the toxicity of combustion gases

                Flameless test [ppm] Flame test [ppm] Max allowable
              concentration [ppm]
                After 90s After 4Mins After 90s After 4Mins After 90s After 4Mins
              CO Smallest 1 30 100 3000 3500
              HCI 0 0 0 0 50 500
              HCN 0 0 0 0 100 150
              H2S,SO2 0 0 0 0 50 100
              NOx 0 0 0 0 50 100
              HF 0 0 0 0 50 50
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