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[Datasheet Bayblend ET1100]

(PC+ABS) blend; 10 % mineral filled; extrusion grade; very high heat resistance; Vicat/B 120 = 142 °C; reduced coefficient of thermal dilatation; tensile modulus = 3300 MPa.

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campus imageThese property characteristics are taken from the CAMPUS plastics data bank and are based on the international catalogue of basic data for plastics according to ISO 10350.
Impact properties: N = non-break, P = partial break, C = complete break
ISO Shortname: 
PropertyTest ConditionUnitStandardValue
Rheological properties
campus imageMelt volume-flow rate260 °C; 5 kgcm³/10 minISO 113310
 Molding shrinkage, parallel150x105x3; 260 °C / MT 80 °C%b.o. ISO 25770.5 - 0.7
 Molding shrinkage, normal150x105x3; 260 °C / MT 80 °C%b.o. ISO 25770.5 - 0.7
 Melt viscosity1000 s-1; 260 °CPa·sb.o. ISO 11443-A600
Mechanical properties (23 °C/50 % r. h.)
campus imageTensile modulus1 mm/minMPaISO 527-1,-23300
campus imageYield stress50 mm/minMPaISO 527-1,-260
campus imageYield strain50 mm/min%ISO 527-1,-24.3
 Stress at break50 mm/minMPaISO 527-1,-258
 Strain at break50 mm/min%b.o. ISO 527-1,-2> 50
 Izod impact strength23 °CkJ/m²ISO 180-UN
 Izod impact strength-30 °CkJ/m²ISO 180-UN
 Izod notched impact strength23 °CkJ/m²ISO 180-A45
 Izod notched impact strength-30 °CkJ/m²ISO 180-A13
Thermal properties
campus imageTemperature of deflection under load1.80 MPa°CISO 75-1,-2125
campus imageTemperature of deflection under load0.45 MPa°CISO 75-1,-2135
campus imageVicat softening temperature50 N; 50 °C/h°CISO 306140
 Vicat softening temperature50 N; 120 °C/h°CISO 306142
campus imageCoefficient of linear thermal expansion, parallel23 to 55 °C10-4/KISO 11359-1,-20.55
campus imageCoefficient of linear thermal expansion, transverse23 to 55 °C10-4/KISO 11359-1,-20.7
campus imageBurning behavior UL 94 [UL recognition]0.85 mmClassUL 94HB
Electrical properties (23 °C/50 % r. h.)
campus imageElectrical strength1 mmkV/mmIEC 60243-135
Other properties (23 °C)
campus imageWater absorption (saturation value)Water at 23 °C%ISO 620.6
campus imageWater absorption (equilibrium value)23 °C; 50 % r. h.%ISO 620.2
campus imageDensity kg/m³ISO 1183-11247
Processing conditions for test specimens
campus imageInjection molding-Melt temperature °CISO 294260
campus imageInjection molding-Mold temperature °CISO 29480
campus imageInjection molding-Injection velocity mm/sISO 294240

Disclaimer

Disclaimer for Sales products

This information and our technical advice - whether verbal, in writing or by way of trials - are given in good faith but without warranty, and this also applies where proprietary rights of third parties are involved. Our advice does not release you from the obligation to check its validity and to test our products as to their suitability for the intended processes and uses. The application, use and processing of our products and the products manufactured by you on the basis of our technical advice are beyond our control and, therefore, entirely your own responsibility. Our products are sold in accordance with the current version of our General Conditions of Sale and Delivery.

Test values

Unless specified to the contrary, the values given have been established on standardized test specimens at room temperature. The figures should be regarded as guide values only and not as binding minimum values. Please note that, under certain conditions, the properties can be affected to a considerable extent by the design of the mold/die, the processing conditions and coloring.

Processing note

Under the recommended processing conditions small quantities of decomposition product may be given off during processing.To preclude any risk to the health and well-being of the machine operatives, tolerance limits for the work environment must be ensured by the provision of efficient exhaust ventilation and fresh air at the workplace in accordance with the Safety Data Sheet. In order to prevent the partial decomposition of the polymer and the generation of volatile decomposition products, the prescribed processing temperatures should not be substantially exceeded.

Information Impact properties

Impact properties: N = non-break, P = partial break, C = complete break