Kunststoffpyramide
Kunststoff - Wärmebeständigkeit
| Kunststoff | Glasfaser- | HDT/A | Gebrauchstemperatur °C | ||
| gehalt | Wärmeformbeständigkeit | max. | max. | min. | |
| % | °C | kurzzeitig | dauernd | dauernd | |
| PE-LD | ca. 35 | 80 - 90 | 60 - 75 | -50 | |
| PE-HD | ca. 50 | 90 - 120 | 70 - 80 | -50 | |
| PE-UHMW | ca. 50 | 150 | 100 | -260 | |
| PE-X | 40 - 60 | 200 | 120 | ||
| PP | 55 - 70 | 140 | 100 | 0 – 30 | |
| PP | 30 | 120 | 155 | 100 | 0 – 30 | 
| PVC-U | 65 - 75 | 75 - 90 | 65 - 70 | -5 | |
| PVC-C | 100 | 85 | |||
| PVC-P | 55 - 65 | 50 - 55 | 0 - 20 | ||
| PS | 65 - 85 | 75 - 90 | 60 - 80 | -10 | |
| SAN | 95 - 100 | 95 | 85 | -20 | |
| ABS | 95 - 105 | 85 - 100 | 75 - 85 | -40 | |
| ASA | 95 - 105 | 85 - 90 | 70 - 75 | -40 | |
| PA 6 | 55 - 85 | ||||
| PA 6 | 30 | 190 - 215 | 140 - 180 | 80 - 110 | -30 | 
| PA 11 | 55 | 140 - 150 | 70 - 80 | -70 | |
| PA 610 | 90 | 140 - 180 | 80 - 110 | ||
| PA 212 | 130 - 150 | 80 - 100 | |||
| PMMA | 75 - 105 | 85 - 100 | 65 - 90 | -40 | |
| PET | 80 | 200 | 100 - 120 | -20 | |
| PET | 30 | 200 - 230 | 220 | 150 | |
| PBT | 65 | 165 | 100 | ||
| PBT | 30 | 200 - 210 | 220 | 150 | |
| PC | 125 - 135 | 115 - 150 | 115 - 130 | -150 | |
| PC | 30 | 135 - 150 | 115 - 150 | 115 - 130 | -150 | 
| PC-TMC | 150 | ||||
| PC+ABS | 105 | ||||
| PC+ASA | 109 | ||||
| POM-H | 100 - 115 | 150 | 110 | -40 | |
| POM-H | 30 | 160 | 150 | 110 | -60 | 
| POM-Cop. | 110 - 125 | 110 - 140 | 90 - 110 | ||
| POM-Cop. | 30 | 160 | 110 - 150 | 90 - 110 | |
| PPE mod. | 135 | 120 - 130 | 100 - 110 | ||
| PPE mod. | 30 | 160 | |||
| PPE+PA 66 | 210 | ||||
| PTFE | 50 - 60 | 300 | 260 | -270 | |
| PVDF | 95 - 110 | 150 | -60 | ||
| PES | 200 - 215 | 180 - 260 | 160 - 200 | ||
| PES | 30 | 210 - 225 | 180 - 260 | 160 - 200 | |
| PSU | 170 - 175 | 170 | 160 | -100 | |
| PSU | 30 | 185 | 180 | 160 | -100 | 
| PPE+PS | 115 - 130 | 120 | 100 | -30 | |
| PPE+PS | 30 | 137 - 144 | 130 | 110 | -30 | 
| PPS | 135 | 300 | 200 - 240 | ||
| PPS | 30 | 255 | 300 | 200 - 240 | |
| PAEK | 200 | ||||
| PAEK | 30 | 320 | 240 - 250 | ||
| PEK, PEKEKK | 170 | 300 | 260 | ||
| PEEK | 140 | 300 | 250 | ||
| PEEK | 30 | 315 | 300 | 250 | |
| PEEKK | 103 | 260 | 220 | ||
| PEEKK | 30 | 165 | 300 | 250 | |
| PEKK | 350 | 260 | |||
| PI | 280 - 360 | 400 | 260 | ||
| PI | 30 | 360 | 400 | 260 | |
| PAI | 280 | 300 | 260 | -260 | |
| PAI | 30 | 300 | 260 | -260 | |
| PEI | 190 - 200 | 170 | -170 | ||
| PEI | 30 | 195 - 215 | 170 | -170 | |
| LCP | 180 - 240 | 185 - 250 | |||
Kurzzeichen für Kunststoffe
| Kurzzeichen | Bezeichnung | 
| ABS | Acrylnitril-Butadien-Styrol | 
| APE | Aromatische Polyester | 
| ASA | Acrylester-Styrol-Acrylnitril | 
| BR | Butadien-Kautschuk | 
| CA | Celluloseacetat | 
| CN | Cellulosenitrat | 
| COC | Cyclo-Olefin-Copolymere | 
| CR | Chloropren-Kautschuk | 
| CSM | chlorsulfoniertes Polyethylen | 
| ECB | Ethylen-Copolymer-Bitumen | 
| EP | Epoxidharz | 
| EPDM | Ethylen-Propylen-Dien-Kautschuk | 
| EPM | Ethylen-Propylen-Copolymer (Kautschuk) | 
| ETFE | Ethylen-Tetrafluorethylen | 
| EVA, EVM | Ethylenvinylacetat | 
| FEP | Perfluor (Ethylen-Propylen-) Kunststoff | 
| FKM, FPM | Fluor-Polymer-Kautschuk | 
| FFKM, FFPM | Perfluorierter Kautschuk | 
| FVMQ | Fluor-Silikon-Kautschuk | 
| IIR | Butylkautschuk | 
| IR | Isopren-Kautschuk | 
| LCP | Liquid Crystal Polymer | 
| MF | Melamin-Formaldehyd-Harz | 
| MPF | Melamin-Phenol-Formaldehyd-Harz | 
| NBR | Acrylnitril-Butadien-Kautschuk | 
| NR | Naturkautschuk | 
| PA | Polyamid | 
| PAEK | Polyaryletherketon | 
| PAI | Polyamidimid | 
| PAN | Polyacrylnitril | 
| PBT | Polybutylenterephthalat | 
| PC | Polycarbonat | 
| PCT | Polycyclohexylendimethylenterephthalat | 
| PCTFE | Polychlortrifluorethylen | 
| PE | Polyethylen | 
| PEC | chloriertes Polyethylen | 
| PE-HD | Polyethylen, hohe Dichte | 
| PE-HMW | Polyethylen, hochmolekular, hohe Molmasse | 
| PE-LD | Polyethylen, niedrige Dichte | 
| PE-LLD | Polyethylen, linear, niedrige Dichte | 
| PE-MD | Polyethylen, mittlere Dichte | 
| PE-UHMW | Polyethylen, ultrahochmolekular, sehr hohe Molmasse | 
| PEEK | Polyetheretherketon | 
| PEI | Polyetherimid | 
| PEK | Polyetherketon | 
| PEN | Polyethylennaphthalat | 
| PES | Polyethersulfon | 
| PET | Polyethylenterephthalat | 
| PF | Phenol-Formaldehyd-Harz | 
| PFA | Perfluoralkoxylalkan | 
| PFPE | Perfluorpolyether | 
| PI | Polyimid | 
| PIB | Polyisobuten | 
| PMI | Polymethacrylimid | 
| PMMA | Polymethylmethacrylat | 
| PMP | Polymethylpenten | 
| POM | Polyoxymethylen (Polyacetal) | 
| PP | Polypropylen | 
| PP-C | Polypropylen, Copolymer | 
| PP-H | Polypropylen; Homopolymer | 
| PPA | Polyphthalamid | 
| PPE | Polyphenylenether | 
| PPS | Polyphenylensulfid | 
| PPY | Polypyrrol | 
| PS | Polystyrol | 
| PS-E | Polystyrol, expandiert | 
| PSU | Polysulfon | 
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		      	        EMDRA Kunststoffe  Inhaber Eileen Junker Gewerbepark Asenbach 9 58579 Schalksmühle Deutschland  | 
                          
		      	        Tel. +49 (0) 23 55/50 84 84-0  Fax +49 (0) 23 55/50 84 84-1 eMail info@emdra.de www.emdra.de  |