...
首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Diffusion Driven Accelerated Stress Corrosion Cracking in an Acrylic Polymer
【24h】

Diffusion Driven Accelerated Stress Corrosion Cracking in an Acrylic Polymer

机译:扩散驱动的加速应力腐蚀开裂的丙烯酸聚合物

获取原文
获取原文并翻译 | 示例
           

摘要

The dynamic evolution and mechanism of accelerated stress corrosion cracking (aSCC) in an acrylic (PMMA-poly methyl 2-methylpropenoate) polymer sample have been exploited quantitatively, in absence of external mechanical load. Unusually fast propagation of solvent induced cracks in micro-machined sections of the material has been monitored by microscopic video imaging of a test device. Crack emanation from milled micro-channels was precisely triggered by brief surface wetting with acetone solvent. The crack propagation period persists over a time span of approximately 1 min, comprises a final crack length of 0.2-0.3 mm, and an associated crack growth rate that decreases from 2 × 10~(-5) to 10~(-6) m/s. The temporal crack evolution scales in accord with 1-dim solvent diffusion along the flaw, superimposed with the residual stress field. Optically recorded birefringence, as well as finite element structure mechanic simulation, identified residual tensile stress in the crack zone as the driving force. The residual stress intensity factor ΔK was determined to 1-2 MPa m~(1/2). The aSCC (accelerated stress corrosion cracking) in the material originates from a detrimental combination of residual stress, induced by surface milling; stress induced fast diffusion of the acetone solvent into the material and an associated degradation of structure-mechanic parameters.
机译:动态演化和加速机制应力腐蚀开裂(为)丙烯酸(PMMA-poly甲基2-methylpropenoate)聚合物样本已经利用定量缺乏外部机械负荷。溶剂诱导裂缝的快速传播微机械部分的材料显微视频图像监控的一个测试设备。有着正是引发的短暂用丙酮溶剂表面润湿。传播周期持续的时间跨度大约1分钟,由最后一个裂缝0.2 - -0.3毫米的长度,和一个相关的裂缝增长速度,减少2×10 ~ (5)10 ~ (6) m / s。符合1-dim溶剂扩散的缺陷,与残余应力的叠加字段。有限元结构力学模拟,确定残余拉应力裂纹区作为驱动力。强度因子ΔK决心1 - 2 MPam ~(1/2)。材料来源于开裂)残余应力的不利组合,引起表面铣削;扩散的丙酮溶剂中材料和一个关联的退化structure-mechanic参数。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号