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Ratcheting of 304 Stainless Steel Alloys subjected to Stress-Controlled and mixed Stress- and Strain-Controlled Conditions evaluated by Kinematic Hardening Rules

机译:通过运动硬化规则评估在应力控制以及混合应力和应变控制条件下对304不锈钢合金的棘轮作用

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The present study predicts ratcheting response of SS304 tubular stainless steel samples using kinematic hardening rules of Ohno-Wang (O-W), Chen-Jiao-Kim (C-J-K) and a newly modified hardening rule under various stress-controlled, and combined stress- and strain-controlled histories. The O-W hardening rule was developed based on the critical state of dynamic recovery of backstress. The C-J-K hardening rule further developed the O-W rule to include the effect of non-proportionality in ratcheting assessment of materials. The modified rule involved terms〈dε_p·a/|a|〉, and〈n. a/|a|〉~(1/2) in the dynamic recovery of the Ahmadzadeh-Varvani (A-V) model to respectively track different directions under multiaxial loading, account for non-proportionality and prevent plastic shakedown of ratcheting data over multiaxial stress cycles. The O-W model persistendy overestimated ratcheting strain over the multiaxial loading paths. The C-J-K model further lowered this overprediction and improved the predicted ratcheting curves. The predicted ratcheting curves based on the modified model closely agreed with experimental data under various loading paths.
机译:本研究使用Ohno-Wang(OW),Chen-Jiao-Kim(CJK)的运动硬化规则和新修改的硬化规则在各种应力​​控制以及应力和应变组合下预测SS304管形不锈钢样品的棘轮响应控制的历史。 O-W硬化规则是根据动态恢复应力的临界状态制定的。 C-J-K硬化规则进一步发展了O-W规则,以在材料的棘轮评估中包括非比例性的影响。修改后的规则包含项

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