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MECHANICAL PROPERTIES AND CHAIN ORIENTATION IN SINGLE POINT INCREMENTAL FORMING OF SEMI-CRYSTALLINE POLYAMIDE

机译:半结晶聚酰胺单点增量形成的机械性能和链取向

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Incremental forming is an emerging technique for reducing the cost of tooling, increasing the flexibility and reducing the thermal energy usage in forming of thermoplastic polymer surfaces. This paper examines the effect of Single Point Incremental Forming (SPIF) on the mechanical properties of a semi-crystalline Polyamide (Nylon 66) material. The effects of incremental depth and tool rotation speed on these properties, and on the sheet temperature during forming are quantified. Differential Scanning Calorimetry and X-ray Diffraction are performed to understand changes in crystallinity and chain orientation of the polymer due to SPIF. It is found that the formed material has a substantial higher toughness and ductility, but reduced yield stress and Young's modulus, as compared to the formed material. Stress relaxation tests show similar relaxation behavior for the formed and unformed polymer. The effect of SPIF on the chain orientation and its link to the mechanical properties are discussed.
机译:增量成形是一种用于降低工具成本的新兴技术,提高了形成热塑性聚合物表面的柔韧性和降低热能使用。本文研究了单点增量成型(SPIF)对半结晶聚酰胺(尼龙66)材料的机械性能的影响。量化了增量深度和刀具旋转速度对这些性质的影响,以及成形过程中的纸张温度。进行差分扫描量热法和X射线衍射,以了解由于SPIF引起的聚合物的结晶度和链取向的变化。结果发现,与所形成的材料相比,所形成的材料具有显着的韧性和延展性,而是降低屈服应力和杨氏模量。应力松弛测试显示所形成的和不可形形的聚合物的类似松弛行为。讨论了Spif对链取向的影响及其与机械性能的链接。

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