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Aging behavior of polymeric solar absorber materials - Part 1:Engineering plastics

机译:聚合物太阳能吸收剂材料的老化性能-第1部分:工程塑料

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摘要

In this series of two papers, various polymeric materials are investigated as to their potential applicability as absorber materials for solar thermal collectors. The focus of the investigation is to study the aging behavior of these materials under maximum operating conditions (80 ℃ in water up to 16,000 h) and stagnation conditions (140 ℃ in air up to 500 h) typical for northern climate. The materials supplied or produced as polymer films were first characterized in the unaged state and then for different states of aging by differential scanning calorimetry (DSC), by size exclusion chromatography (SEC) and by mechanical tensile tests. Physical aging phenomena were studied by DSC, SEC analysis provided information on chemical degradation of the materials. In addition, physical and chemical aging were both analyzed via the small and large strain mechanical behavior. While the present Part 1 of this paper series deals with the aging behavior of engineering plastics, including two amorphous polymers (a polyphenylene ether polystyrene blend (PPE + PS) and polycarbonate (PC)) and two semi-crystalline polymers (two types of polyamide 12 (PA12)), the aging behavior of so-called "commodity" plastics (PE and PP) is the subject of Part 2. Comparing the two aging conditions, the amorphous materials (PPE + PS and PC) turned out to be more prone to physical and chemical aging at 140 ℃ in air. In contrast, the semi-crystalline PA 12 materials were more strongly affected by exposure to water at 80 ℃, although to different degrees, depending on the modification.
机译:在这两篇论文的系列文章中,研究了各种聚合物材料作为太阳能集热器的吸收材料的潜在适用性。研究的重点是研究这些材料在北方气候典型的最大工作条件(80℃,水中长达16,000 h)和停滞条件(140℃,空气中长达500 h)下的老化行为。首先,通过差示扫描量热法(DSC),尺寸排阻色谱法(SEC)和机械拉伸试验,以未老化状态表征提供或生产的聚合物膜材料,然后针对不同的老化状态进行表征。通过DSC研究了物理老化现象,SEC分析提供了有关材料化学降解的信息。此外,还通过小应变和大应变机械行为来分析物理和化学老化。本系列文章的第1部分介绍了工程塑料的老化行为,其中包括两种无定形聚合物(一种聚苯醚聚苯乙烯共混物(PPE + PS)和聚碳酸酯(PC))和两种半结晶聚合物(两种聚酰胺在图12(PA12)中,所谓的“商品”塑料(PE和PP)的老化行为是第2部分的主题。与这两个老化条件相比,非晶材料(PPE + PS和PC)的老化性能更高。空气中140℃容易发生物理和化学老化。相比之下,半结晶PA 12材料受80℃水的影响更大,尽管程度不同,但取决于改性。

著录项

  • 来源
    《Solar Energy》 |2010年第9期|p.1567-1576|共10页
  • 作者单位

    Polymer Competence Center Leoben GmbH, Roseggerstrasse 12, Leoben 8700, Austria;

    Institute for Polymeric Materials and Testing, University of Linz, Altenbergerstrasse 69, Linz 4040, Austria;

    rn Institute for Polymeric Materials and Testing, University of Linz, Altenbergerstrasse 69, Linz 4040, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    engineering polymers; solar thermal application; physical and chemical aging;

    机译:工程聚合物;太阳能热应用;理化老化;

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