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An Electrical Resistance Joining Technology for Carbon Fiber-Reinforced Polyphenylene Sulfide Composites

机译:用于碳纤维增强多聚亚苯基硫化物复合材料的电阻连接技术

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This paper proposes a fusion bonding technology with electrical resistance heating for carbon fiber-reinforced plastic using polyphenylene sulfide thermoplastic resin with 60% carbon fiber (CFRTP), and suitable bonding conditions are investigated experimentally. The concept of the fusion bonding system is that the thermoplastic resin in the CFRTP sheet is heated to near its melting point of 280 degrees C via electric charging after clamping two CFRTP sheets at high pressures, 310 kPa, using electrodes made from aluminum rods. The heating temperature was controlled using the electrical resistances (5-20 O) between the two CFRTP sheets which were controlled using the exposed carbon fiber (CF) on the CFRTP surface: a lower exposure rate gives a higher electrical resistance, e.g., 15 O for CF20% and 5 O for CF80%. In addition, the sample temperature was dependent on the electric current and the electric charging time. Two CFRTP sheets were successfully bonded using the fusion bonding system with the maximum strength of more than 30 MPa, where an electric current of 4.0 A was applied for 10 s. The bonding strength was attributed to changes in the material properties, especially the bonding resin. The hardened bonding resin was created from heat processing at 250 degrees C, which led to a high bonding strength.
机译:本文提出了一种融合粘合技术,具有使用具有60%碳纤维(CFRTP)的多聚硫化亚芳热塑性树脂的碳纤维增强塑料电阻加热的熔接加热,并在实验上研究了合适的粘合条件。熔融键合系统的概念是CFRTP片材中的热塑性树脂在夹持在高压,310kPa的高压,310kPa下的电极之后通过电荷加热到其熔点280℃的熔点。使用在CFRTP表面上的暴露的碳纤维(CF)控制的两个CFRTP片之间的电阻(5-20​​ o)控制加热温度:较低的曝光率为电阻较高,例如15°O对于CF80%的CF20%和5℃。另外,采样温度取决于电流和电荷时间。使用熔融粘合系统成功粘合两个CFRTP片材,其最大强度大于30MPa,其中4.0a的电流施加10秒。粘合强度归因于材料性质的变化,尤其是粘合树脂。将硬化的粘合树脂从250℃的热处理产生,该热处理导致高粘合强度。

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