聚二甲基硅氧烷-聚四氟乙烯基增强耐化学性质复合材料研制的控制方法:结构-性能关系研究。

ty10086 提交于 周三, 08/25/2021 - 16:58
文章英文标题
Controlled Methodology for Development of a Polydimethylsiloxane-Polytetrafluoroethylene-Based Composite for Enhanced Chemical Resistance: A Structure-Property Relationship Study.
正文
聚二甲基硅氧烷( PDMS )聚合物是高度评价的材料,广泛应用于多个行业,从婴儿奶瓶乳头到火箭。动感研究人员正在不断地努力了解和扩大PDMS基材料的研究范围。氟功能PDMS帮助世界各国应用于专业应用。努力研制出具有良好热、溶剂、耐化学性质的硅氧烷-氟聚合物复合材料。我们利用天然柔性的PDMS作为模型基质,而聚四氟乙烯( PTFE )作为添加剂来实现功能效益,与单独的聚合物相比具有很大的价值。分别在0 ~ 35℃3种不同的混合温度下制备复合材料,选取0.5 ~ 8 % ( w / w )的PTFE不同负载量作为模型条件。注意到混合温度对所开发复合材料的性能属性有很强的依赖性。评价了复合材料的力学性能和热稳定性以及光学性能。X射线衍射表明,PTFE颗粒的晶粒尺寸随加工温度的变化而变化。与PTFE的Ⅱ相微晶结构相比,Ⅳ相形成的纤维对PDMS基体具有更好的增强能力。采用短链可固化PDMS对配方进行掺杂,可实现较高填料负载量与复合材料力学性能之间的协同平衡,在8 wt % PTFE负载量下,复合材料的拉伸强度较对照试样提高了238 %。该学习扩展到检查掺杂这类PTFE粉末在商用液体硅橡胶( LSR )中的适用性。在研究窗口中,所制定的LSR表现出了力学性能的改善,具有对机油和其他化学溶剂的抗力等额外的功能效益。
文章内容(英文)
Polydimethylsiloxane (PDMS) polymers are highly appreciated materials that are broadly applied in several industries, from baby bottle nipples to rockets. Momentive researchers are continuously working to understand and expand the scope of PDMS-based materials. Fluorofunctional PDMS has helped the world to apply in specialty applications. Efforts are taken to develop such siloxane-fluoropolymer composite materials with good thermal, solvent, and chemical resistance performances. We leveraged inherently flexible PDMS as the model matrix, whereas polytetrafluoroethylene (PTFE) was used as the additive to impart the functional benefits, offering great value in comparison to the individual polymers. The composites were made at three different mixing temperatures, that is, 0-35 °C, and different loadings of PTFE, that is, 0.5-8% (w/w), were selected as the model condition. A strong dependency of the mixing temperature against the performance attributes of the developed composites was noted. Mechanical and thermal stability of the composites were evaluated along with optical properties. X-ray diffraction demonstrated the change in the crystallite size of the PTFE particles as a function of processing temperature. Compared to the phase II crystallite structure of the PTFE, the fibrils formed in phase IV imparted a better reinforcing capability toward the PDMS matrix. A synergistic balance between higher filler loading and mechanical properties of the composite can be achieved by doping the formulation with short-chain curable PDMS, with 238% increment of tensile strength at 8 wt % PTFE loading when compared to the control sample. The learning was extended to check the applicability of doping such PTFE powder in commercial liquid silicone rubber (LSR). In the window of study, the formulated LSR demonstrated improved mechanical properties with additional functional benefits like resistance toward engine oil and other chemical solvents.
来源出处
Journal|[J]ACS OmegaVolume 5, Issue 35. 2020. PP 22482-22493
DOI
https://doi.org/10.1021/acsomega.0c02585

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产品说明书PDF自助在线看:http://www.pdmshub.com/sih

信息更新:

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此链接为PDMS-微流控芯片/PDMS/道康宁SYLGARD184/小桶0.5KG装的链接。

一般性的产品性能参数表参考以下小桶装的参数:

微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;微流控芯片/PDMS/道康宁SYLGARD184;

品牌型号:道康宁SYLGARD184

包装规格:0.5KG/罐[含有45.4g固化剂,总重量为0.5KG]

产品颜色:保质期限:36个月

存放环境说明:室温,阴凉处保存

备注说明:

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