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首页> 外文期刊>Journal of Applied Polymer Science >Hot compaction of polyoxymethylene, part 1: Processing and mechanical evaluation
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Hot compaction of polyoxymethylene, part 1: Processing and mechanical evaluation

机译:聚甲醛的热压成型,第1部分:加工和机械评估

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摘要

The hot-compaction of polyoxymethylene powders in the solid state, otherwise pressure-assisted sintering, is studied as an alternative way to the melt-compression or, injection molding processes. A native, powder issued from suspension polymerization has been used, together with powders obtained from grinding of melt-extruded pellets. The experimental conditions were optimized with regard to temperatures pressure, and time. Temperature is the most sensitive parameter of the process. Sintering at temperature close to the onset of the melting range turned out to be necessary for an efficient welding of the powder particles, as judged from mechanical properties. Despite a strong loss, of ductility, the sintered samples have been easily machined out into strips for mechanical testing. A significant increase in crystallinity is, observed for the sintered samples, as compared with the compression-molded ones, accompanied with a nearly twofold increase of the Young's modulus. Scanning electron microscopy revealed that rupture of the sintered samples involves both inter- and intra-granular fracture. Welding of the crystallites via molecular diffusion at, the particle interface is suggested to be the mechanism of sintering. (c) 2006 Wiley Periodicals, Inc.
机译:研究了固态聚甲醛粉末的热压制,否则采用压力辅助烧结法,作为熔体压缩或注塑工艺的替代方法。已经使用了由悬浮聚合法产生的天然粉末,以及通过研磨熔融挤出的粒料获得的粉末。在温度压力和时间方面优化了实验条件。温度是该过程中最敏感的参数。根据机械性能判断,对于有效焊接粉末颗粒,必须在接近熔化范围开始的温度下进行烧结。尽管损失很大,但延展性却很强,但烧结后的样品很容易加工成条状进行机械测试。与压缩成型的样品相比,观察到烧结样品的结晶度显着增加,同时杨氏模量几乎增加了两倍。扫描电子显微镜显示,烧结样品的破裂涉及晶间和晶内断裂。通过分子扩散的微晶焊接,颗粒界面被认为是烧结的机理。 (c)2006年Wiley Periodicals,Inc.

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