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WORKING TEMPERATURES GUIDE - E-Plas

MECHANICAL PROPERTIES THERMAL PROPERTIES ELECTRICAL PROPERTIES MISCELLANEOUS DATA. 1). 3). art nd /s ture ). part d C. 461 5, me rature tho re h RH..). m 3, p ). loa rou 3 C. dB. g dA. tu ss 00. k pera (23. erin ter, ene 0,6. L. s). 303. rea ield 75, mpera 456 ardne 50. &g rm 030. h w trength to U. 50). tic 50). r 10. 715 23 C to , VD ing rt 2 3, tho iou pe n (2. el, /mm 2 on wa od ). 53 e test ity eath , pa -24. ity at b hard v =. sta ar l te ity rt te tor at y tem 3 C. E0. n ak C-2. 480 track C-2. (DIN ISO-R n tem rev me ti d ce (DIN ibrium orptio t eth afte l ex of line (DIN tensil lastic E. , VD e g ctiv (DIN flexura lastic tion r ). VD 53 48 ength tan rd 9 acc, 53 45 tance on ,005 of fric fac g s to hot ture ice sio nga mit fo IN tion h 303 , IEC.

Melting point (DIN 53 736) 120 120 60 110 115 100 100 100 100 100 100 100 100 100 100 90 100 90 90 85 85 85 Filler % wt. Service temperature long term r g/cm3 s S MPa s R s B/1000 s 1/1000 m e

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Transcription of WORKING TEMPERATURES GUIDE - E-Plas

1 MECHANICAL PROPERTIES THERMAL PROPERTIES ELECTRICAL PROPERTIES MISCELLANEOUS DATA. 1). 3). art nd /s ture ). part d C. 461 5, me rature tho re h RH..). m 3, p ). loa rou 3 C. dB. g dA. tu ss 00. k pera (23. erin ter, ene 0,6. L. s). 303. rea ield 75, mpera 456 ardne 50. &g rm 030. h w trength to U. 50). tic 50). r 10. 715 23 C to , VD ing rt 2 3, tho iou pe n (2. el, /mm 2 on wa od ). 53 e test ity eath , pa -24. ity at b hard v =. sta ar l te ity rt te tor at y tem 3 C. E0. n ak C-2. 480 track C-2. (DIN ISO-R n tem rev me ti d ce (DIN ibrium orptio t eth afte l ex of line (DIN tensil lastic E. , VD e g ctiv (DIN flexura lastic tion r ). VD 53 48 ength tan rd 9 acc, 53 45 tance on ,005 of fric fac g s to hot ture ice sio nga mit fo IN tion h 303 , IEC.

2 53 at bre te c (DIN turatio tion kin ith 457 st 53 sistan sho to w 53 ength 53 sistan , IE. sp re s 53 ength , IE. 53 sition t (2. ,m ons ndu pera serv pan r IS rtion rea ss oda to rtio at 7. orp fe ). ). r. n 3). ). ). ). ity fe 53 int ). bs ). ). ). ). ). ). sa 457. 736. tr 483. 455. is 482. 53 n 4. 736. hea 479. 483. 452. 1. 455. 495. 461. 482. N. 53. afte p ruptu li (10 6 ctric lo (30 denta t t NYLONS. nce (DIN nce (DIN O-R. (10 6 ctric c wa tance l co the fficien (DIN tric s ob p = fficien sta mabil (DIN ct res afte lus o (DIN g po equ ture a (DIN ation (DIN ce re afte lus o (DINs tran afte disto (DIN ile str at s abs 00. afte disto 1% yield (DIN ile str (DIN e re tem um ion 53. 53. 53. (DIN z). cific 53. 53.)))

3 53. (DIN z). sista sista 53. 53. r 10. rma (DIN ity rma shin nda elo ndit xim s,D. E0. ste lec ltin m in H. du H. ter sis ng du a ( SUSTAMID ). m le ns 0. (co r -e a le -e dependant on concentration, time and temperature at s e is a il e r s at s r a r Volu Surf Spe Imp Ten The Ball Cre Die Gla Fla Tim Ten Die Mo Die Me We Elo Co Wa Mo Mo Ma Re Re He Re Co De He Service r s s e s s m l a r Filler temperature S R R Et E8 Hk an B/1000 1/1000 V Tm Tg HDT/A HDT/B c e r tan d D Ro Ed w(H2O) WS. DIN nomenclature C . % wt. long term g/cm3 MPa MPa % MPa MPa MPa kJ/m3 MPa MPa m m/km C C C C W/(K m) J/(g K) 10-5 1/k cm kV/mm class % %. PA 46 ( Stanyl ) 65* 30 1200*. 130 1,18 170-200 no br. 0,2-0,45 295 160 220 0,3 2,1 7,5 9,4-1,1 0,21-0,35 1013 >20 KC>425 3,7 14 (+) V2.))

4 Type 46 80 280* 3500. PA 66 ( Zytel ) 70* 40 2000* 5* KA 3c 120 1,14 2830 100-170 no br. 55 8 0,35-0,42 0,9 255 100 >200 170 0,23 1,7 7 3,6-5 0,026-0,2 10 -10. 12 15. 10 13. 28-30 2,8 8,5 V2 . Type 66 90 150* 3300 50 KA 3b black, 30% 140* 3,5 7500* 5*. PA 66 GF 30 glass fibre 110 1,35 200-270 13-17 40 0,45-0,5 255 250 250 200 0,27 1,5 2-3 1,5 5,5 HB +. 200 5* 9700 50. black, 20% 150* 3 11000* 5*. PA 66 CF 20 110 1,23 200-240 35-55 0,16-0,2 0,7 255 245 250 200 0,43 1,8 2,5 2 6,5 HB +. carbon fibre 220 6* 16000 50. *= wet, after storage in standard atmosphere 23 C 50 RH (DIN 50 014) to equilibrium. black, 20% 83* 5,2 3100* 50 5* 2x1012- PA 66 SF 20 100 1,19 0,39 255 225 254 170 6-10 3,8-9,4 108-1012 12-16 350 2 6-7 HB +.

5 Aramide fibre 110 7,5* 4800 70* 50 3x1015. Remark: For polyamides the values strongly depend on the moisture content. PA 6 G ( Sustamid ) 60* 5 3300* 5* KA 3c 115 1,15 170 220 180 8 3,7 5x1014 50 2,5 7 HB . Monomer Cast 85 50* 4000 40 KA 3b 20 5*. PA 6 GOL ( Sustamid ) oil lubricated 100 1,15 70 2500 125 220 180 9 6 HB . 40* 40. 5*. PA 6 MO ( Sustamid ) black, MOS2 100 1,14 85 40 3300 85-170 no br. 5 0,32-0,37 0,16 220. 40. 100 195 165 0,23 1,7 7 2,5-3 8-9 HB +. = not resistant PA 6 E 60* 70 1800* 5* KA 3c 100 1,14 70-160 no br. 45 4,5 0,38-0,45 0,23 220 75 190 160 0,23 1,7 7 3,7-7 0,031-0,3 1012-1015 1013 20-50 3 9,5 HB . Type 6 Extruded 85 200* 3200 40 KA 3b black, 30% 110* 3 6000* 5* KA 3a PA 6 GF 30 100 1,35 150-220 55-80 21-35 0,46-0,52 220 210 220 180 0,28 1,5 2,5 4-6 0,02-0,2 10 -10.

6 11 15. 40 2,1 6,6 HB +. glass fibre 180 5* 8500 40 KB 400. PA 11 ( Rilsan A ) 42* 230. 80 1,04 1800 90 no br. 23 3,5 0,32-0,38 0,8 183 49 55 150 150 0,23 2,1 10 3,6 0,04 2x1015 1014 40 KA 3c 0,9 1,9 + V2 . Type 11 47 280*. 30% 95* 4 KB 600. PA 11 GF 30 80 1,26 3200 18,3 183 150 0,3 7x10 13. 10 14. 45 0,45 1,3 + HB . + = resistant glass fibre 100 6* KC 600. PA 12 ( Rilsan B ) 1,02. KA 3b 80 35 46-52 240 1800 95 no br. 23 3,5 0,32-0,38 0,8 175 49 50 140 140 0,23 2,1 10 3,6 0,04 2x1015 1014 33 0,7 1,6 + V2 . Type 12 KC 600. 30% KB 400. PA 12 GF 30 80 1,23 65 5 3500 50 28 180 120 165 150 3-7 0,04 0,04 8,5x1014 90 0,6 1 + HB . glass fibre KC 600. LOWEST WORKING TEMPERATURES HIGHEST WORKING TEMPERATURES . -30C PVC Poly Vinyl Chloride 140C PVDF Poly Vinylidene Fluoride ( Kynar ).

7 PA 66T Polyamide Nylon 66 Transparent -40C ABS. PMMA. Acrylonitrile Butadiene Styrene Poly Methyl Methacrylate ( Perspex / Plexiglas ). WORKING TEMPERATURES GUIDE PA 46. PA 66K. Polyamide Nylon 46. Polyamide Nylon Kevlar Filled ( Stanyl ). POM Poly Oxy Methylene ( Delrin / Celcon PA 66 Polyamide Nylon 66 ( Zytel ). / Hostaform ). PA 6 Polyamide Nylon 6 130C PBTP Poly Butylene Terephthlate ( Crastin ). PA 46 Polyamide Nylon 46 ( Stanyl ) PC Polycarbonate ( Lexan ). PA 66T Polyamide Nylon 66 Transparent 700C PBI Poly Benz Imidazole ( Celazole ). -160C PP PolyPropylene 120C PETP Poly Ethylene Terephthlate ( Arnite ). -50C PA 66 Polyamide Nylon 66 ( Zytel ) 400C PI Poly Imide ( Aurum / Vespel ) PA 11/12 Polyamide Nylon 11/12( Rilsan ).

8 -170C PPS Poly Phenylene Sulphide ( Ryton / Fortron ). PA 11/12 Polyamide Nylon 11/12( Rilsan ) PAI Polyamide Imide ( Torlon ) PA 6 Polyamide Nylon 6. PETP Poly Ethylene Terephthlate ( Arnite ) PEK Poly Ether Ketone ( Ultrapek ). -190C PCTFE Poly Chloro Tri Fluoro Ethylene ( Kel-F ). PBTP Poly Butylene Terephthlate ( Crastin ) PEEK GF Poly Ether Ether Ketone Glass Filled 110C PPO/PPE Poly Phenylene Oxide/Ether ( Noryl ). ETFE Ethylene Tetra Fluoro Ethylene ( Tefzel ). PPO/PPE Poly Phenylene Oxide/Ether ( Noryl ) POM Poly Oxy Methylene ( Delrin / Celcon PAI Polyamide Imide ( Torlon ). PU Polyurethane ( Adiprene ) 300C PEEK Poly Ether Ether Ketone ( Victrex ) / Hostaform ). PP PolyPropylene -240C PI Poly Imide ( Aurum / Vespel ).

9 -65C PEK Poly Ether Ketone ( Ultrapek ) 200C PPS Poly Phenylene Sulphide ( Ryton / Fortron ). PEEK Poly Ether Ether Ketone ( Victrex ) PEI Poly Ether Imide ( Ultem ) 100C PMMA Poly Methyl Methacrylate ( Perspex / Plexiglas ). -269C UHMWPE Ultra High Molecular UHMWPE Ultra High Molecular ( Tivar ). Weight Polyethylene ( Tivar ). -100C FEP Fluoro Ethylene Hexa Propylene PFA Per Fluoro Alkoxy 150C PES Poly Ether Sulphone ( Ultrason E / Radel ). PTFE Poly Tetra Fluoro Ethylene ( Teflon ) PSU Poly Sulphone ( Ultrason S / Udel ) 90C HDPE High Density Polyethylene PSU Poly Sulphone ( Ultrason S / Udel ) ECTFE Ethylene Chloro Trifluoro ABS Acrylonitrile Butadiene Styrene PES Poly Ether Sulphone ( Ultrason E / Radel ) Ethylene Copolymer ( Halar ) PU Polyurethane ( Adiprene ).

10 PEI Poly Ether Imide ( Ultem ) PTFE Poly Tetra Fluoro Ethylene ( Teflon ) CPVC Chlorinated Polyvinyl Chloride ( Corzan ). PFA Per Fluoro Alkoxy -130C PBI Poly Benz Imidazole ( Celazole ) ETFE Ethylene Tetra Fluoro Ethylene ( Tefzel ) 60C PVC Polyvinyl Chloride ( Simona - Grey CAW ). PCTFE Poly Chloro Tri Fluoro Ethylene ( Kel-F ). -150C PVDF Poly Vinylidene Fluoride ( Kynar ) FEP Fluoro Ethylene Hexa Propylene ECTFE Ethylene Chloro Trifluoro Ethylene ( Halar ). MECHANICAL PROPERTIES THERMAL PROPERTIES ELECTRICAL PROPERTIES MISCELLANEOUS DATA. 1). 3). art nd /s ture ). part d C. 461 5, me rature tho re h RH..). m 3, p ). loa rou 3 C. dB. g dA. tu ss 00. k pera (23. erin ter, ene 0,6. L. s). 303. rea ield 75, mpera 456 ardne 50.


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