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侧槽的拘束作用及对断裂韧性参量的影响
引用本文:张新平 史耀武. 侧槽的拘束作用及对断裂韧性参量的影响[J]. 应用力学学报, 1994, 11(1): 54-59
作者姓名:张新平 史耀武
作者单位:西安交通大学
摘    要:本文研究了侧槽对预制疲劳裂纹Charpy尺寸试样的拘束效应以及其对断裂韧性参量的影响。当侧槽深度大于临界值时,峰值载荷韧性Jm值与起裂韧性J1值基本相等。侧槽对试样的加厚作用可用试样的附加厚度表示,对于同样的侧槽深度,不同材料具有不等的附加厚度,试样取得最大附加厚度的侧槽深度为33%。文中提出用拘束系数定量地估计侧槽对裂纹尖端的塑性拘束作用,能较好地解解放本试验结果。

关 键 词:侧槽 断裂韧性 拘束系数 材料力学

Constraint of Side-groove and Its Influenceon Fracture Toughness Parameterin Charpy-size Specimens
Zhang Xinping, Shi Yaowu. Constraint of Side-groove and Its Influenceon Fracture Toughness Parameterin Charpy-size Specimens[J]. Chinese Journal of Applied Mechanics, 1994, 11(1): 54-59
Authors:Zhang Xinping   Shi Yaowu
Abstract:This paper has studied the effect of side-groove constraint on pre-cracked Charpy-size specimen,and the influence of side-groove on fracture toughness parameters. The results indicate that when the-groove depth approach a critical value, the maximum load toughness J_m values are nearly coincidentwith the initiation toughness J_i values. Thickening action of side-groove may be expressed by calculat-ing the extra thickness of specimen. For different materials the additional thickness due to side-grooveis distinct. When the depth of side-grooves is 33% of specimen thickness the specimen obtains themaximum additional thickness. The side-groove constraint coefficient(C) presented by this paper canquantitatively evaluate the level of plastic constraint at crack tip, and explain the experimentul resultswell.
Keywords:side-groove   Charpy-size specimen   fracture toughness   constraint coefficient.
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