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首页> 外文期刊>Macromolecular Research >Effects of Nucleating Agents on the Morphological, Mechanical and Thermal Insulating Properties of Rigid Polyurethane Foams
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Effects of Nucleating Agents on the Morphological, Mechanical and Thermal Insulating Properties of Rigid Polyurethane Foams

机译:成核剂对硬质聚氨酯泡沫的形态,机械和隔热性能的影响

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This study examined the effects of liquid and solid additives on the morphological, mechanical and thermal insulating properties of rigid polyurethane foams (PUFs). The PUFs synthesized with tetramethylsilane (TEMS) as a liquid-type additive showed a smaller average cell size and lower thermal conductivity than those with the aero-sil 200 and clay 30B as solid-type additives. When TEMS was added, the average cell size of the PUF became more uniform and finer due to the reduced surface tension of the polymer solution, which increased the nucleation rate and number of bubbles produced and reduced cell size. The PUFs with TEMS showed the highest closed cell contents among the PUFs prepared using TEMS, aerosil 200 and clay 3 0B. This suggests that the insulation properties of PUF can be determined by both the size of the cell structure and the amount of closed cell contents in the system. The compression and flexural strengths of the PUF increased slightly when the aerosil 200, clay 30B and TEMS were added compared those of the neat PUF. The reaction profiles of the PUFs showed a similar gel and tack free time with the reaction time among the PUFs synthesized with three different additives and neat PUF. This suggests that the nucleating additives used in this study do not affect the bubble growth of the chemical reaction, and the additives may act as nucleating agents during the formation of PUF. From the above results of the cell size, thermal conductivity, closed cell contents and reaction profile of the PUFs, liquid-type nucleating agent, such as TEMS, is more effective in decreasing the thermal conductivity of the PUF than solid-type nucleating agent, such as aerosil 200 and clay 30B.
机译:这项研究检查了液体和固体添加剂对硬质聚氨酯泡沫(PUFs)的形态,机械和隔热性能的影响。与使用aero-sil 200和粘土30B作为固态添加剂的情况相比,以四甲基硅烷(TEMS)作为液态添加剂合成的PUF的平均气泡尺寸较小,导热系数较低。当添加TEMS时,由于聚合物溶液的表面张力降低,PUF的平均孔尺寸变得更均匀,更细,这增加了成核速率和产生的气泡数并减小了孔尺寸。在使用TEMS,aerosil 200和粘土3 0B制备的PUF中,带有TEMS的PUF显示出最高的闭孔含量。这表明PUF的绝缘性能可以由泡孔结构的大小和系统中密闭泡孔的含量决定。当添加Aerosil 200,粘土30B和TEMS时,与纯PUF相比,PUF的压缩和弯曲强度略有增加。 PUF的反应曲线显示出相似的凝胶和不粘时间,其中三种不同添加剂和纯净PUF合成的PUF之间的反应时间相同。这表明本研究中使用的成核添加剂不会影响化学反应的气泡生长,并且这些添加剂可能在PUF的形成过程中充当成核剂。根据PUF的泡孔大小,导热率,闭孔含量和反应曲线的上述结果,液体型成核剂(例如TEMS)比固体型成核剂在降低PUF的导热性方面更为有效,例如aerosil 200和粘土30B。

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