金属学报
金屬學報
금속학보
ACTA METALLURGICA SINICA
2009年
7期
826-829
,共4页
董亚伟%康国政%刘宇杰%王弘%程晓娟
董亞偉%康國政%劉宇傑%王弘%程曉娟
동아위%강국정%류우걸%왕홍%정효연
20钢%棘轮行为%屈服平台%室温%单轴加载
20鋼%棘輪行為%屈服平檯%室溫%單軸加載
20강%극륜행위%굴복평태%실온%단축가재
20 steel%ratcheting behavior%yielding plateau%room temperature%uniaxial loading
通过对20钢的单轴应变控制循环和应力控制循环实验研究,揭示了20钢在室温下的循环变形特性,讨论了材料的循环软/硬化特性和材料的屈服平台以及平均应力、应力幅值和应力比对材料高周次棘轮行为的影响.研究表明:20钢表现出弱的、与应变幅值相关的循环硬化特性;其棘轮行为依赖于平均应力、应力幅值和应力比的大小,在高应力水平时的高周次循环后期,棘轮变形会出现再次增长的现象;材料的屈服平台对棘轮行为有明显的影响,在对20钢的棘轮行为进行本构描述时需要加以合理考虑.
通過對20鋼的單軸應變控製循環和應力控製循環實驗研究,揭示瞭20鋼在室溫下的循環變形特性,討論瞭材料的循環軟/硬化特性和材料的屈服平檯以及平均應力、應力幅值和應力比對材料高週次棘輪行為的影響.研究錶明:20鋼錶現齣弱的、與應變幅值相關的循環硬化特性;其棘輪行為依賴于平均應力、應力幅值和應力比的大小,在高應力水平時的高週次循環後期,棘輪變形會齣現再次增長的現象;材料的屈服平檯對棘輪行為有明顯的影響,在對20鋼的棘輪行為進行本構描述時需要加以閤理攷慮.
통과대20강적단축응변공제순배화응력공제순배실험연구,게시료20강재실온하적순배변형특성,토론료재료적순배연/경화특성화재료적굴복평태이급평균응력、응력폭치화응력비대재료고주차극륜행위적영향.연구표명:20강표현출약적、여응변폭치상관적순배경화특성;기극륜행위의뢰우평균응력、응력폭치화응력비적대소,재고응력수평시적고주차순배후기,극륜변형회출현재차증장적현상;재료적굴복평태대극륜행위유명현적영향,재대20강적극륜행위진행본구묘술시수요가이합리고필.
Ratcheting is a cyclic accumulation of inelastic strain occurred under the stressControlled cyclic loading with non-zero mean stress,it iS very important in assessing the fatigue life and safety of the structure subjected to cyclic loading.The existed results showed that diirerent materials presented difierent ratcheting features,and the results were obtained from the cyclic tests with a small number ofcycles(1ess than 200 cyc).Therefore,based on the uIliaxial strain-controlled and stress controlled cyclic tests with high number of cycles(more than 2000 cyc),the cyclic deformation features of 20 steel were observed at room temperature.The effects of the cyclic softening/hardening feature and yielding plateau of the steel and the applied mean stress,stress amplitude and stress ratio on the ratcheting of the steel with high number of cycles were studied.The results show that the 20 steel presents a weak and stain-amplitude_dependent cyclic hardening,and the ratcheting of the steel depends greatly on the applied mean stress,stress amplitude and stress ratio.The ratcheting strain increases monotonically with the increase of applied mean stress and stress amplitude.but decreases with the increase of stress ratio.A re-speeded ratcheting will occur at the end of cycling with high number of cycles when the applied stress leveis are high enough.More importantly.the yielding plateau of the steel greatly influences the evolution of the ratcheting.It is concluded that the effect of yielding plateau on the ratcheting should be reasonably considered in constructing the cyclic constitutive model of the ratcheting for the 20 steel.