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Effect of Nano-Texturing on Adhesion of Thermoplastic Resin against Textured Steel Plate

机译:纳米织构对热塑性树脂在钢板上的附着力的影响

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Long Fiber Thermoplastic-Direct (LFT-D), a new stamping method, has been developed to achieve the short cycle-time manufacturing of Carbon-Fiber-Reinforced thermoplastics (thermoplastic CFRP). In LFT-D method, to shorten cooling time is one of the effective way for achieving more productive manufacturing. During ejection sequence in the LFT-D, thermoplastic resin parts adhere stronger than previous method. High adhesion affects smoothness of the component surface, cycle-time and requested specifications of equipment. So, it is required to reduce the adhesion between the metal mold and thermoplastic resin. This paper reports the effect of nano-texturing on adhesion of thermoplastic resin against the textured steel around glassy-transition temperature. Experimental results show that the adhesion strength increases proportionally with the ratio of contact area. The lowest adhesion strength on nano-textured surface is 0.18 MPa, which is 66% lower than that of flat surface. It is clarified that surface adhesion energy increases with the ratio of contact area A_(contact) to circumference of contact area L_(circumference) .
机译:开发了一种新的冲压方法长纤维热塑性直接成型(LFT-D),以实现短周期的碳纤维增强热塑性塑料(热塑性CFRP)制造。在LFT-D方法中,缩短冷却时间是实现更高生产率制造的有效方法之一。在LFT-D的喷射过程中,热塑性树脂部件的附着力比以前的方法强。高附着力会影响组件表面的光滑度,周期时间和设备要求的规格。因此,需要降低金属模具与热塑性树脂之间的粘附性。本文报道了在玻璃化转变温度下,纳米织构对热塑性树脂对织构钢的粘附性的影响。实验结果表明,粘合强度与接触面积的比例成比例地增加。纳米纹理表面的最低粘合强度为0.18 MPa,比平坦表面低66%。清楚的是,表面粘附能随着接触面积(接触)与接触面积(周长)的周长之比而增加。

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