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This is the free Material Data Center Datasheet of CELANEX® 2500 - PBT - Celanese

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商品の説明文
Chemical abbreviation according to ISO 1043-1: PBT Moulding compound ISO 7792- PBT, MGHR, 08-030N Polybutylene terephthalate, easy flow, nucleated grade Flammability UL 94 HB Minimum thickness 1.0 mm. Recognition by Underwriters Laboratories, USA (UL)

Flammability @1.6mm nom. thickn.HB-
Flammability at thickness h (1 mm)HBUL recognition (h)
Processing/Physical Characteristics単位テスト基準
ISO データ
メルトボリュームレイト, MVR 40 cm³/10min ISO 1133
温度 250 °C -
荷重 2.16 kg -
成形収縮率, 平行 2.0 % ISO 294-4, 2577
成形収縮率, 直角 1.9 % ISO 294-4, 2577
溶融時の密度 1110 kg/m³ -
溶融時の熱伝導率 0.133 W/(m K) -
溶融時の比熱 1920 J/(kg K) -
突き出し時の時の温度 219 °C -
機械的特性単位テスト基準
ISO データ
引張弾性率 2700 MPa ISO 527
降伏応力 62 MPa ISO 527
降伏ひずみ 4 % ISO 527
破壊呼びひずみ 15 % ISO 527
シャルピー衝撃強さ, +23°C 135 kJ/m² ISO 179/1eU
シャルピー衝撃強さ, -30°C 130 kJ/m² ISO 179/1eU
ノッチ付きシャルピー衝撃強さ, +23°C 5 kJ/m² ISO 179/1eA
ノッチ付きシャルピー衝撃強さ, -30°C 4.5 kJ/m² ISO 179/1eA
熱的特性単位テスト基準
ISO データ
溶融温度, 10°C/min 225 °C ISO 11357-1/-3
荷重たわみ温度, 1.80 MPa 60 °C ISO 75-1/-2
荷重たわみ温度, 0.45 MPa 160 °C ISO 75-1/-2
ビカット軟化温度, B 190 °C ISO 306
線膨張係数, 平行 110 E-6/K ISO 11359-1/-2
1.5mm厚さでの燃焼性 HB class IEC 60695-11-10
試験片の厚さ 1.5 mm -
厚さhでの燃焼性 HB class IEC 60695-11-10
試験片の厚さ 1.0 mm -
Yellow Card 可用 はい - -
酸素指数 22 % ISO 4589-1/-2
電気的特性.単位テスト基準
ISO データ
比誘電率, 100Hz 3.9 - IEC 62631-2-1
比誘電率, 1MHz 3.8 - IEC 62631-2-1
誘電正接, 100Hz 13 E-4 IEC 62631-2-1
誘電正接, 1MHz 200 E-4 IEC 62631-2-1
体積抵抗率 >1E13 Ohm*m IEC 62631-3-1
表面抵抗率 >1E15 Ohm IEC 62631-3-2
耐電圧 23 kV/mm IEC 60243-1
その他の特性.単位テスト基準
吸水率 0.45 % Sim. to ISO 62
吸湿率 0.2 % Sim. to ISO 62
密度 1310 kg/m³ ISO 1183
Processing Recommendation Injection Molding単位テスト基準
Pre-drying - Temperature 120 - 140 °C -
Pre-drying - Time 2 - 4 h -
Processing humidity ≤0.02 % -
樹脂温度 250 - 260 °C -
金型温度 75 - 85 °C -
機能
 粘度せん断速度. , CELANEX® 2500, PBT, Celanese
 せん断応力-せん断速度. , CELANEX® 2500, PBT, Celanese
 せん断弾性率-温度. , CELANEX® 2500, PBT, Celanese
 応力-ひずみ. , CELANEX® 2500, PBT, Celanese
 割線弾性率−ひずみ. , CELANEX® 2500, PBT, Celanese
 応力-ひずみ (等時的). 100°C, CELANEX® 2500, PBT, Celanese
 クリープ弾性率−時間. 100°C, CELANEX® 2500, PBT, Celanese
クリープ曲線 100°C, CELANEX® 2500, PBT, Celanese
 応力-ひずみ (等時的). 23°C, CELANEX® 2500, PBT, Celanese
 クリープ弾性率−時間. 23°C, CELANEX® 2500, PBT, Celanese
クリープ曲線 23°C, CELANEX® 2500, PBT, Celanese
 応力-ひずみ (等時的). 60°C, CELANEX® 2500, PBT, Celanese
 クリープ弾性率−時間. 60°C, CELANEX® 2500, PBT, Celanese
クリープ曲線 60°C, CELANEX® 2500, PBT, Celanese
特殊な特性
成形加工法.
射出成形.
納入形状.
ペレット.
添加剤.
離型剤.
特殊な特性.
熱安定化.
な特性
Nucleated
領域別の利用可能性
ヨーロッパ.
その他の情報
村遜速揃
To avoid hydrolytic degradation during processing, CELANEX resins have to be dried to a moisture level equal to or less than 0,02%. The drying should be done in a dry-air dryer (dew point < -30°C) with a temperature of 120 to 140 °C and a drying time of 2 to 4 hours. In case of longer residence times in the dry-air dryer, the temperature should be reduced to 100°C.
The time between drying and processing should be kept as short as possible. The processing machine feed hopper should be closed during the processing operation.
Melt Temperature 250-260 °C
Mold Temperature 75-85 °C
Maximum Barrel Residence Time *) 5-10 min
Injection Speed fast
Peripheral screw speed max.0,3 m/sec
Back Pressure 10-30 bar
Injection Pressure 600-1000 bar
Holding Pressure 400-800 bar
Nozzle Design open design preferred

Injection speed, injection pressure and holding pressure have to be optimized to the individual article geometry. To avoid material degradation during processing low back pressure and minimum screw speed have to be used. Overheating of the material has to be avoided. For grades containing flame retardants, a maximum temperature of 265 °C should not be exceeded.

Celanese recommends only externally heated hot runner systems.

*) If the cylinder temperatures are higher than the recommended maximum temperatures, the max. residence time in the barrel has to be reduced.
Disclaimer
Copyright Altair Engineering GmbH. Altair Engineering GmbH assumes no liability for the system to be free of errors. The user takes sole responsibility for the use of this data under the exclusion of every liability from Altair Engineering GmbH; this is especially valid for claims of compensation resulting from consequential damages. Altair explicitly points out that any decision about the application of materials must be double checked with the producer of this material. This includes all contents of this system. Copyright laws are applicable for the content of this system.
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