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在纳米填充剂增强弹性体中的裂纹尖端周围机械调节的应变诱导结晶
Thanh-Tam Mai1, Tomohiro Yasui2, Ruito Tanaka2
1Graduate School of Engineering, Department of Material Chemistry, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
ACS applied materials & interfaces
|July 18, 2025
概括
纳米填充剂显著扩大了弹性体中的应变诱导结晶 (SIC) 区域,减少了开始应变并提高了损伤耐受性. 这些发现为设计坚固软材料提供了原则.
科学领域:
- 材料科学 材料科学 材料科学
- 聚合物科学 聚合物科学
- 材料机械学 材料机械学
背景情况:
- 了解材料对极端变形的反应是软材料设计的关键.
- 带有纳米填充剂和应变诱导结晶 (SIC) 的弹性体在裂纹尖端附近表现出复杂的行为.
研究的目的:
- 为了研究纳米填充剂强化和在弹性体中裂纹尖端附近的应变诱导结晶 (SIC) 之间的相互作用.
- 绘制局部应变和结晶性场的地图,并了解它们与变形和填充效应的关系.
主要方法:
- 微尺度数字图像相关性与扫描广角X射线衍射的整合.
- 分析了超过15,000个衍射图案,绘制了应变和结晶性场的地图.
- 在极端局部变形下,研究裂纹尖端附近的材料行为.
主要成果:
- 纳米填充剂将SIC活性区扩大近一个数量级,并将结晶开始的压力从130%降低到65%.
- 填充剂的应变放大在裂纹尖端附近减小,表明有机械补偿效应.
- 确定了与结晶度梯度相关的双斜坡菌株奇点,结晶体作为现场增强物.
结论:
- 由应变诱导结晶 (SIC) 生成的结晶体减轻了应变度,并提高了填充弹性体中的损伤耐受性.
- 该研究提供了SIC驱动的弹性体硬化机制的见解.
- 这些发现为设计具有卓越机械强度的软材料提供了指导原则.
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