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Examination of the fatigue properties of vibration-welded nylon compounds.

机译:检查振动焊接尼龙化合物的疲劳性能。

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摘要

This study examined the fatigue strength of non-welded and vibration welded nylon 6 and nylon 66 compounds. The effects of variables including weld pressure (0.8 MPa and 4.0 MPa) and glass fibre content (0% and 30%) on the fatigue behaviour were studied. In addition, temperature profiles were measured experimentally to ensure mechanical fatigue. The experimental results showed in general that non-welded specimens have longer fatigue lives and higher endurance limits than the welded specimens. This is believed to be caused by the notches inherent from the vibration welding process. For unreinforced and glass fibre reinforced nylon 6, the specimens welded at low pressure have better fatigue lives than the ones welded at high pressure, while for unreinforced and glass fibre reinforced nylon 66, the effect of weld pressure is not obvious. The longer fatigue life associated with low weld pressure is due to thicker weld. The material effect on fatigue life is complex and more research is needed. Specimens made of glass fibre reinforced nylons have better fatigue life and endurance limit than the unreinforced ones. This is consistent with the material's tensile strength and the "strength-life equal rank assumption". The temperature profiles obtained from selected specimens showed a slight increase at the beginning of the fatigue process and remained stable until prior to failure, the temperature increased again. However, no physical thermal damage was observed. The fatigue endurance (sigmae/sigma u) ratio for vibration welded unreinforced nylons is 0.27 and 0.33 for the reinforced nylons. This indicates that the fatigue performance of welded thermoplastics is relatively equal to or greater than that of metals. Vibration welding of these materials appears to be viable for structural applications requiring fatigue resistance.
机译:这项研究检查了非焊接和振动焊接的尼龙6和尼龙66化合物的疲劳强度。研究了包括焊接压力(0.8 MPa和4.0 MPa)和玻璃纤维含量(0%和30%)在内的变量对疲劳行为的影响。另外,通过实验测量温度分布以确保机械疲劳。实验结果总体上表明,非焊接试样比焊接试样具有更长的疲劳寿命和更高的耐久性极限。据信这是由振动焊接过程固有的缺口引起的。对于未增强和玻璃纤维增​​强的尼龙6,与在高压下焊接的样品相比,低压焊接的疲劳寿命更长;而对于不增强和玻璃纤维增​​强的尼龙66,焊接压力的影响并不明显。与较低的焊接压力相关的较长的疲劳寿命是由于较厚的焊接。疲劳寿命的物质影响是复杂的,需要更多的研究。由玻璃纤维增​​强的尼龙制成的标本比未增强的标本具有更好的疲劳寿命和耐久性极限。这与材料的抗拉强度和“强度寿命相等等级假设”一致。从选定样本获得的温度曲线在疲劳过程开始时略有升高,并且保持稳定,直到失效之前温度再次升高。但是,没有观察到物理热损伤。振动焊接非增强尼龙的疲劳耐久性比(sigmae / sigma u)为0.27,而增强尼龙为0.33。这表明焊接的热塑性塑料的疲劳性能相对等于或大于金属的疲劳性能。这些材料的振动焊接对于要求耐疲劳的结构应用看来是可行的。

著录项

  • 作者

    Tsang, K.;

  • 作者单位

    Royal Military College of Canada (Canada).;

  • 授予单位 Royal Military College of Canada (Canada).;
  • 学科 Engineering Mechanical.; Plastics Technology.
  • 学位 M.A.Sc.
  • 年度 2004
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;整形外科学(修复外科学);
  • 关键词

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