首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Determination of precipitate strength in aluminium alloy 6056-T6 from transmission electron microscopy in situ straining data
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Determination of precipitate strength in aluminium alloy 6056-T6 from transmission electron microscopy in situ straining data

机译:利用透射电子显微镜原位应变数据确定6056-T6铝合金中的析出强度

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The transmission electron microscopy in-situ straining technique is employed to measure the breaking angles of strengthening precipitates in aluminium alloy 6056-T6 as they are sheared by dislocations. The experimental determination of the character of bowed dislocation segments when dislocations are pinned on precipitates allows us to calculate the corresponding line tensions. From this, the maximum forces F-m that precipitates can sustain before being sheared by dislocations are deduced. It is suggested that F-m may be regarded as a quantitative parameter which includes the effects of the various strengthening mechanisms operative in precipitation-hardened alloys. An attempt is made to relate the maximum force calculated from in-situ straining data to the macroscopic yield strength of the material.
机译:透射电子显微镜原位应变技术用于测量铝合金6056-T6中由于位错剪切而增强的析出物的断裂角。当将位错固定在沉淀物上时,通过实验确定弓形位错节段的特征,可以计算出相应的线张力。由此推断出在位错剪切之前沉淀物可以承受的最大力F-m。建议将F-m视为包括在沉淀硬化合金中起作用的各种强化机制的影响的定量参数。尝试将根据现场应变数据计算出的最大力与材料的宏观屈服强度相关联。

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