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Shape stabilised phase change materials based on a high melt viscosity HDPE and paraffin waxes

机译:基于高熔体粘度HDPE和石蜡的形状稳定的相变材料

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摘要

Shape stabilised phase change materials (SSPCMs) based on a high density poly(ethylene)(hv-HDPE) with high (H-PW, Tm = 56–58 °C) and low (L-PW, Tm = 18–23 °C) melting point paraffin waxes were readily prepared using twin-screw extrusion. The thermo-physical properties of these materials were assessed using a combination of techniques and their suitability for latent heat thermal energy storage (LHTES) assessed. The melt processing temperature (160 °C) of the HDPE used was well below the onset of thermal decomposition of H-PW (220 °C), but above that for L-PW (130 °C), although the decomposition process extended over a range of 120 °C and the residence time of L-PW in the extruder was <30 s. The SSPCMs prepared had latent heats up to 89 J/g and the enthalpy values for H-PW in the respective blends decreased with increasing H-PW loading, as a consequence of co-crystallisation of H-PW and hv-HDPE. Static and dynamic mechanical analysis confirmed both waxes have a plasticisation effect on this HDPE. Irrespective of the mode of deformation (tension, flexural, compression) modulus and stress decreased with increased wax loading in the blend, but the H-PW blends were mechanically superior to those with L-PW.
机译:基于高密度聚乙烯(hv-HDPE),高(H-PW,Tm = 56–58°C)和低(L-PW,Tm = 18–23°)的形状稳定的相变材料(SSPCM) C)使用双螺杆挤出容易地制备熔点石蜡。使用多种技术评估了这些材料的热物理性质,并评估了它们对潜热热能存储(LHTES)的适用性。 HDPE的熔体加工温度(160°C)远低于H-PW的热分解开始温度(220°C),但高于L-PW的热分解开始温度(130°C),尽管分解过程扩展到温度范围为120°C,L-PW在挤出机中的停留时间<30 s。所制备的SSPCM具有高达89J / g的潜热,并且由于H-PW和hv-HDPE的共结晶的结果,随着H-PW载荷的增加,各个共混物中H-PW的焓值降低。静态和动态力学分析证实,两种蜡均对该HDPE具有增塑作用。随变形量(拉伸,挠曲,压缩)而变化的模量和应力均随掺入蜡量的增加而降低,但H-PW掺混物的机械性能优于L-PW。

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