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Improved Mechanical and Sound Absorption Properties of Open Cell Silicone Rubber Foam with NaCl as the Pore-Forming Agent

机译:用NaCl作为孔隙成型剂改进开放式电池硅橡胶泡沫的机械和吸音性能

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摘要

Porous materials hold great potential in the field of sound absorption, but the most abundantly used materials, such as Polyurethane (PU) foam and polyvinyl chloride (PVC) foam, would inevitably bring environmental harms during fabrication. In this study, the nontoxic addition-molded room temperature vulcanized silicone rubber is chosen as the matrix, and NaCl particles are chosen as the pore forming agent to prepare open cell foams via the dissolve-separating foaming method. The effect of different amounts of NaCl (0–100 phr) on the cell structure, mechanical and sound absorption properties is investigated and analyzed. The results indicate that the cell structure could be tailored via changing the addition amount of NaCl, and open cell silicon rubber foams could be achieved with more than 20 phr NaCl addition. Open cell silicon foams show the most effective sound absorption for sound waves in middle frequency (1000–2000 Hz), which should be attributed to the improved impedance matching caused by the open cell structures. Additionally, the mechanical properties, including hardness, tensile strength and corresponding elastic properties, gradually decay to a steady value with the increasing addition amount of NaCl. Therefore, open cell silicone rubber foams are capable of sound absorption in middle frequency.
机译:多孔材料在吸音领域具有极大的潜力,但是最丰富的材料,例如聚氨酯(PU)泡沫和聚氯乙烯(PVC)泡沫,在制造期间将不可避免地带来环境危害。在该研究中,选择无毒添加模塑室温硫化硅橡胶作为基质,选择NaCl颗粒作为孔形成剂,通过溶解分离发泡方法制备开孔泡沫。研究并分析了不同量的NaCl(0-100phr)对细胞结构,机械和吸声性能的影响。结果表明,通过改变NaCl的添加量可以根据细胞结构来定制细胞结构,并且可以通过大于20phr NaCl加成来实现开放的细胞硅橡胶泡沫。开放式电池硅泡沫显示中频中声波(1000-2000Hz)的最有效的吸声,这应归因于由开放电池结构引起的改进的阻抗匹配。另外,机械性能,包括硬度,拉伸强度和相应的弹性性质,随着NaCl的增加量逐渐衰减至稳定值。因此,开放式电池硅橡胶泡沫能够吸收中频。

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