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家电行业

在家电行业,ELASTOSIL®品牌凭借有机硅的出色性能,成为了白色家电、小家电及厨房用具等高端应用的理想选择。然而,究竟是选择室温固化材料,还是热固化材料,必须根据具体应用做出决定。
Produktempfehlungen
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Produkte
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Technische Daten
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Produktmerkmale
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Härte Shore A | Hardness Shore A | Reißfestigkeit | Reißdehnung | Tear strength | Viscosity, dynamic | Druckverformungsrest | Beständigkeit | Regulatorisch | Rheologie | Spezifische Merkmale | Vernetzungseigenschaft | Vulkanisat | ||
- - | 20[10] 20[10] | 1.5 N/mm²[12] 1.5 N/mm²[12] | 300 %[17] 300 %[17] | 4.0 N/mm[1] 4.0 N/mm[1] | 8000 mPa·s[3] 8000 mPa·s[3] | - - | - | lösemittelhaltig | Fließfähig | - | - | - | ||
- - | 35[10] 35[10] | 2.5 N/mm²[12] 2.5 N/mm²[12] | 200 %[17] 200 %[17] | 3.5 N/mm[1] 3.5 N/mm[1] | 25000 mPa·s[4] 25000 mPa·s[4] | - - | hitzebeständig | - | - | - | - | - | ||
- - | 28[10] 28[10] | 2.5 N/mm²[12] 2.5 N/mm²[12] | 300 %[17] 300 %[17] | 7.8 N/mm[2] 7.8 N/mm[2] | 1000000 mPa·s[5] 1000000 mPa·s[5] | - - | ölbeständig | - | standfest | - | - | - | ||
- - | 20[10] 20[10] | 1.2 N/mm²[12] 1.2 N/mm²[12] | 300 %[17] 300 %[17] | 3.0 N/mm[1] 3.0 N/mm[1] | 40000 mPa·s[6] 40000 mPa·s[6] | - - | ölbeständig, hitzebeständig | - | Selbstnivellierend | - | - | - | ||
- - | 25[10] 25[10] | 2.5 N/mm²[13] 2.5 N/mm²[13] | 300 %[18] 300 %[18] | 8.0 N/mm[1] 8.0 N/mm[1] | - - | - - | hitzebeständig | lösemittelfrei | Fließfähig | - | - | - | ||
- - | 32[10] 32[10] | 2.5 N/mm²[12] 2.5 N/mm²[12] | 400 %[17] 400 %[17] | 7 N/mm[1] 7 N/mm[1] | - - | - - | hitzebeständig | MIL-A 46106 Type | standfest | - | - | - | ||
- - | 30[10] 30[10] | 5 N/mm²[14] 5 N/mm²[14] | 400 %[19] 400 %[19] | - - | - - | - - | - | lösemittelhaltig | - | - | - | - | ||
- - | 15[10] 15[10] | 2 N/mm²[15] 2 N/mm²[15] | 750 %[20] 750 %[20] | 7.3 N/mm[1] 7.3 N/mm[1] | - - | - - | - | - | standfest | - | - | - | ||
- - | 40[10] 40[10] | 6.0 N/mm²[15] 6.0 N/mm²[15] | 350 %[20] 350 %[20] | 11.5 N/mm[1] 11.5 N/mm[1] | 100000 mPa·s[7] 100000 mPa·s[7] | - - | - | - | Selbstnivellierend | - | - | - | ||
- - | 30[10] 30[10] | 6.5 N/mm²[16] 6.5 N/mm²[16] | 500 %[21] 500 %[21] | 11.5 N/mm[1] 11.5 N/mm[1] | 250000 mPa·s[4] 250000 mPa·s[4] | - - | - | lösemittelfrei | - | - | - | - | ||
- - | 30[10] 30[10] | 7.5 N/mm²[12] 7.5 N/mm²[12] | 500 %[17] 500 %[17] | - - | - - | - - | - | - | thixotropierend | - | - | - | ||
- - | 30[10] 30[10] | 7.8 N/mm²[12] 7.8 N/mm²[12] | 450 %[17] 450 %[17] | - - | - - | - - | - | - | thixotropierend | - | - | - | ||
- - | 30[10] 30[10] | 6.50 N/mm²[15] 6.50 N/mm²[15] | 500 %[20] 500 %[20] | 11.5 N/mm[1] 11.5 N/mm[1] | 250000 mPa·s[8] 250000 mPa·s[8] | - - | - | lösemittelfrei | - | - | - | - | ||
- - | 37[10] 37[10] | 4.5 N/mm²[16] 4.5 N/mm²[16] | 450 %[21] 450 %[21] | 10 N/mm[1] 10 N/mm[1] | 600000 mPa·s[8] 600000 mPa·s[8] | - - | - | MIL-A 46106 Type | standfest, thixotropierend | - | - | - | ||
- - | 35[10] 35[10] | 2.6 N/mm²[12] 2.6 N/mm²[12] | 200 %[17] 200 %[17] | - - | - - | - - | - | MIL-A 46106 Type | - | - | - | - | ||
- - | 35[10] 35[10] | 1.5 N/mm²[12] 1.5 N/mm²[12] | 150 %[17] 150 %[17] | 5.0 N/mm[1] 5.0 N/mm[1] | 50000 mPa·s[9] 50000 mPa·s[9] | - - | - | MIL-A 46106 Type | Selbstnivellierend | - | - | - | ||
- - | 30[10] 30[10] | 2.1 N/mm²[12] 2.1 N/mm²[12] | 200 %[17] 200 %[17] | - - | - - | - - | - | - | - | - | - | - | ||
- - | 32[10] 32[10] | 3.0 N/mm²[12] 3.0 N/mm²[12] | 250 %[17] 250 %[17] | - - | - - | - - | - | - | - | - | - | - | ||
- - | 32[10] 32[10] | 3.2 N/mm²[12] 3.2 N/mm²[12] | 250 %[17] 250 %[17] | - - | - - | - - | - | - | - | - | - | - | ||
- - | 30[10] 30[10] | 7.5 N/mm²[12] 7.5 N/mm²[12] | 600 %[17] 600 %[17] | 20 N/mm[1] 20 N/mm[1] | - - | 10 %[22] 10 %[22] | - | - | - | Lebensmittelkontakt, Reduzierter Flüchtigengehalt | - | - | ||
- - | 25[10] 25[10] | 1 N/mm²[13] 1 N/mm²[13] | 200 %[19] 200 %[19] | - - | - - | - - | - | - | Scherverdünnend, Selbstnivellierend | - | - | - | ||
- - | 35[10] 35[10] | 2 N/mm²[13] 2 N/mm²[13] | 200 %[19] 200 %[19] | - - | - - | - - | - | schwer entflammbar | - | - | - | - | ||
36[11] 36[11] | - - | 1.6 N/mm²[12] 1.6 N/mm²[12] | 150 %[17] 150 %[17] | - - | - - | - - | - | schwer entflammbar | Fließfähig | - | - | - | ||
45[11] 45[11] | - - | 1.5 N/mm²[13] 1.5 N/mm²[13] | 200 %[19] 200 %[19] | 5.0 N/mm[1] 5.0 N/mm[1] | - - | - - | ölbeständig, hitzebeständig | schwer entflammbar | standfest | - | - | - | ||
30[11] 30[11] | - - | 2.5 N/mm²[13] 2.5 N/mm²[13] | 400 %[19] 400 %[19] | 6.5 N/mm[1] 6.5 N/mm[1] | - - | - - | - | - | standfest | - | - | - | ||
30[11] 30[11] | - - | 2.0 N/mm²[13] 2.0 N/mm²[13] | 450 %[18] 450 %[18] | 8.5 N/mm[2] 8.5 N/mm[2] | - - | - - | - | schwer entflammbar | standfest, thixotropierend | - | - | - | ||
30[11] 30[11] | - - | 2.2 N/mm²[13] 2.2 N/mm²[13] | 500 %[18] 500 %[18] | 10 N/mm[2] 10 N/mm[2] | - - | - - | - | - | standfest, thixotropierend | - | - | - | ||
30[11] 30[11] | - - | 2.20 N/mm²[13] 2.20 N/mm²[13] | 500 %[18] 500 %[18] | 10 N/mm[2] 10 N/mm[2] | - - | - - | - | schwer entflammbar | standfest, thixotropierend | - | - | - | ||
45[11] 45[11] | - - | 2.8 N/mm²[12] 2.8 N/mm²[12] | 330 %[17] 330 %[17] | - - | - - | - - | hitzebeständig | - | Scherverdünnend, standfest | - | - | - | ||
40[11] 40[11] | - - | 6.1 N/mm²[12] 6.1 N/mm²[12] | 500 %[17] 500 %[17] | 10.1[1] 10.1[1] | - - | - - | hitzebeständig | - | thixotropierend | - | einkomponentig | selbsthaftend | ||
42[11] 42[11] | - - | 3.0 N/mm²[12] 3.0 N/mm²[12] | 180 %[17] 180 %[17] | 4.6 N/mm[1] 4.6 N/mm[1] | - - | - - | dampfbeständig, hitzebeständig | - | thixotropierend | - | einkomponentig | selbsthaftend | ||
32[11] 32[11] | - - | 1.9 N/mm²[12] 1.9 N/mm²[12] | 180 %[17] 180 %[17] | 3.2 N/mm[1] 3.2 N/mm[1] | - - | - - | dampfbeständig, hitzebeständig | - | - | - | einkomponentig | selbsthaftend | ||
45[11] 45[11] | - - | 3.5 N/mm²[12] 3.5 N/mm²[12] | 200 %[17] 200 %[17] | - - | - - | - - | dampfbeständig, hitzebeständig | - | - | - | einkomponentig | selbsthaftend | ||
42[11] 42[11] | - - | 4.0 N/mm²[12] 4.0 N/mm²[12] | 250 %[17] 250 %[17] | 6.3 N/mm[1] 6.3 N/mm[1] | - - | - - | dampfbeständig, hitzebeständig | - | thixotropierend | - | einkomponentig | selbsthaftend | ||
45[11] 45[11] | - - | 1 N/mm²[12] 1 N/mm²[12] | 180 %[17] 180 %[17] | - - | - - | - - | medienbeständig | - | Scherverdünnend, thixotropierend | - | kondensationsvernetzend, zweikomponentig | selbsthaftend, elektrisch isolierend | ||
32[11] 32[11] | - - | 2.0 N/mm²[12] 2.0 N/mm²[12] | 130 %[17] 130 %[17] | 3.8 N/mm[1] 3.8 N/mm[1] | - - | - - | hitzebeständig, dampfbeständig | - | - | - | kondensationsvernetzend, zweikomponentig | selbsthaftend, elektrisch isolierend | ||
35[11] 35[11] | - - | 1.2 N/mm²[12] 1.2 N/mm²[12] | 75 %[17] 75 %[17] | 4.7 N/mm[1] 4.7 N/mm[1] | - - | - - | medienbeständig | - | Scherverdünnend, thixotropierend, standfest | - | kondensationsvernetzend, zweikomponentig | selbsthaftend, komprimierbar, niedrige Dichte, elektrisch isolierend | ||
50[11] 50[11] | - - | 3.5 N/mm²[12] 3.5 N/mm²[12] | 120 %[17] 120 %[17] | 7.0[1] 7.0[1] | - - | - - | hitzebeständig | - | Scherverdünnend, standfest | - | kondensationsvernetzend, zweikomponentig, Schnelle Aushärtung bei Raumtemperatur | selbsthaftend, elektrisch isolierend |
Legend
[1] Tear strength | ASTM D 624 B, [2] Tear strength | ASTM D 624 B | 23°C / 2mm, [3] Viscosity, dynamic | 23 °C | DIN EN ISO 2555 | Brookfield: spindle 3, 5 rpm, [4] Viscosity, dynamic D = 0,5 1/s | 25 °C | DIN EN ISO 3219, [5] Viscosity, dynamic | 25 °C | 0.5 1/s | DIN EN ISO 3219, [6] Viscosity, dynamic | 25 °C | DIN EN ISO 3219, [7] Viscosity, dynamic D = 1 1/s | 25 °C | DIN EN ISO 3219, [8] Viscosity, dynamic D = 0.5 1/s | 25 °C | DIN EN ISO 3219, [9] Viscosity, dynamic (2.5 rpm) | 23 °C | Brookfield, [10] Hardness Shore A | DIN ISO 48-4, [11] Härte Shore A | DIN ISO 48-4, [12] Reißfestigkeit | ISO 37 Type 1, [13] Reißfestigkeit | ISO 37 | Type 3 / 23°C / 2mm, [14] Reißfestigkeit | ISO 37 | Type 3 / 23 °C / d = 2 mm, [15] Reißfestigkeit | ISO 37 Type 1 | Type 3 / 23°C / 2mm, [16] Reißfestigkeit | ISO 37 Type 1 | Type 3 /23°C / 2mm, [17] Reißdehnung | ISO 37 Type 1, [18] Reißdehnung | ISO 37 | Type 3 / 23°C / 2mm, [19] Reißdehnung | ISO 37, [20] Reißdehnung | ISO 37 Type 1 | Type 3 / 23°C / 2mm, [21] Reißdehnung | ISO 37 Type 1 | Type 3 /23°C / 2mm, [22] Druckverformungsrest | 22 h | 175 °C | DIN ISO 815-1 Typ B Methode A | post-cured 6 h / 200 °C, [] Geeignet, [] Gut geeignet, [] Ideal geeignet
[1] Tear strength | ASTM D 624 B, [2] Tear strength | ASTM D 624 B | 23°C / 2mm, [3] Viscosity, dynamic | 23 °C | DIN EN ISO 2555 | Brookfield: spindle 3, 5 rpm, [4] Viscosity, dynamic D = 0,5 1/s | 25 °C | DIN EN ISO 3219, [5] Viscosity, dynamic | 25 °C | 0.5 1/s | DIN EN ISO 3219, [6] Viscosity, dynamic | 25 °C | DIN EN ISO 3219, [7] Viscosity, dynamic D = 1 1/s | 25 °C | DIN EN ISO 3219, [8] Viscosity, dynamic D = 0.5 1/s | 25 °C | DIN EN ISO 3219, [9] Viscosity, dynamic (2.5 rpm) | 23 °C | Brookfield, [10] Hardness Shore A | DIN ISO 48-4, [11] Härte Shore A | DIN ISO 48-4, [12] Reißfestigkeit | ISO 37 Type 1, [13] Reißfestigkeit | ISO 37 | Type 3 / 23°C / 2mm, [14] Reißfestigkeit | ISO 37 | Type 3 / 23 °C / d = 2 mm, [15] Reißfestigkeit | ISO 37 Type 1 | Type 3 / 23°C / 2mm, [16] Reißfestigkeit | ISO 37 Type 1 | Type 3 /23°C / 2mm, [17] Reißdehnung | ISO 37 Type 1, [18] Reißdehnung | ISO 37 | Type 3 / 23°C / 2mm, [19] Reißdehnung | ISO 37, [20] Reißdehnung | ISO 37 Type 1 | Type 3 / 23°C / 2mm, [21] Reißdehnung | ISO 37 Type 1 | Type 3 /23°C / 2mm, [22] Druckverformungsrest | 22 h | 175 °C | DIN ISO 815-1 Typ B Methode A | post-cured 6 h / 200 °C, [] Geeignet, [] Gut geeignet, [] Ideal geeignet