首页> 外文期刊>Journal of Materials Science >INFLUENCE OF WATER ON CRACK PROPAGATION IN POLY METHYL METHACRYLATE - CRAZE STRESS AND CRAZE FIBRIL LIFETIME
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INFLUENCE OF WATER ON CRACK PROPAGATION IN POLY METHYL METHACRYLATE - CRAZE STRESS AND CRAZE FIBRIL LIFETIME

机译:水对甲基丙烯酸甲酯裂纹扩展的影响-裂纹应力和裂纹寿命。

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摘要

Polymethyl meth acrylate (PMMA) is often used as a material in submarine applications. Therefore, the fracture properties of dry and wet PMMA in water and/or under hydrostatic pressure are of great importance. Previous work has shown that water strongly increases fracture toughness, and leads to a complicated figure of K-1 versus crack speed, and stable-unstable crack and craze propagation, depending on external loading rate. In this study, compact tension specimens immersed in water have been tested on a tensile machine and crack tips have been observed during propagation by means of optical interferometry. Fracture stress intensity factors, and craze-zone shapes and sizes have been measured as a function of loading time and crack speed in water. The results have been rationalized in terms of craze fibril stress versus fibril extraction velocity and craze fibril lifetime versus fibril stress. Both may be expressed in terms of a stress-activated process governing fracture. It is found that, when expressed in these terms, the complicated influence of the external loading rate becomes irrelevant for describing local intrinsic material properties and K-1 values. It is shown that there is no contradiction between the fact that water increases the fracture toughness, and the fact that the microscopic craze stress and craze fibril lifetime decrease at the crack tip. [References: 15]
机译:聚甲基丙烯酸甲酯(PMMA)通常在海底应用中用作材料。因此,干和湿PMMA在水中和/或在静水压力下的断裂性能非常重要。先前的工作表明,水会极大地增加断裂韧性,并导致K-1与裂纹速度的关系变得复杂,并且取决于外部加载速率,裂纹和裂纹的稳定性会不稳定。在这项研究中,浸入水中的致密拉伸试样已经在拉伸机上进行了测试,并且在传播过程中通过光学干涉法观察到了裂纹尖端。已经测量了断裂应力强度因子以及裂纹区域的形状和尺寸与水中加载时间和裂纹速度的关系。结果已经根据开裂原纤维应力相对于原纤维提取速度和开裂原纤维寿命相对于原纤维应力进行了合理化。两者都可以用控制断裂的应力激活过程来表示。发现以这些术语表示时,外部负载率的复杂影响对于描述局部固有材料特性和K-1值变得无关紧要。结果表明,在水增加断裂韧性的事实与微观裂纹裂纹尖端处的裂纹应力和裂纹原纤维寿命降低的事实之间没有矛盾。 [参考:15]

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