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Technique for Exterior Expansion Measurement During Autofrettaging for Constant Fatigue Life

机译:自动装弹过程中外部膨胀测量的技术,以实现恒定疲劳寿命

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In an autofrettage process a given thick cylinder is subjected to such a pressure which gives a specified depth of elasto-plastic boundary. The outside diameter expansion during autofrettage process is a function of depth of autofrettage. To obtain a specified depth of elastic-plastic interface, the applied autofrettage pressure increases in direct proportion to the proof stress of the pressure vessel material. Although this increases the load bearing capacity of the barrel, resulting in enhanced factor of safety, this increases the maintenance cost of a hydraulic autofrettage plant. To assure quality, product safety and manufacturing economy, an optimal autofrettage pressure is defined. The paper proposes that the minimum autoftrettage pressure is the pressure at which the pressure exterior expansion curve intersects line of constant factor of safety. At higher values of 0.2 per cent proof stress of tube material autofrettaging based on line of constant factor of safety will result in a reduction in fatigue life. The point of intersection of exterior expansion curve with line of constant fatigue life has been defined as the optimal pressure because the specifications of factor of safety and fatigue life are simultaneously achieved. The proposed process design based on above concept has been validated using finite element simulation and empirical post-autofrettage measurements. The verification of the shakedown condition for reverse yielding due to the Bauschinger effect (Huanga€?s model) and fatigue life has also been satisfied. ?? Defence Science Journal, Vol. 64, No. 4, July 2014, pp. 385-392, DOI:http://dx.doi.org/10.14429/dsj.64.3886 ?? ??
机译:在自动强化过程中​​,给定的厚圆柱体要承受这样的压力,即会产生指定深度的弹塑性边界。自紧力过程中的外径膨胀是自紧力深度的函数。为了获得指定的弹塑性界面深度,所施加的自增强压力与压力容器材料的屈服应力成正比增加。尽管这增加了枪管的承重能力,从而提高了安全系数,但是这增加了液压自动加强装置的维护成本。为了确保质量,产品安全和制造经济性,定义了最佳的自动玻璃压力。本文提出最小的自动补偿压力是压力外部膨胀曲线与安全系数恒定的线相交的压力。在较高的0.2%弹性极限强度下,基于恒定安全系数线的管材自动填充应力将导致疲劳寿命降低。外部膨胀曲线与恒定疲劳寿命线的交点被定义为最佳压力,因为同时达到了安全系数和疲劳寿命的规格。基于上述概念的拟议工艺设计已通过有限元模拟和经验式后自增强测量得到了验证。还已经验证了由于鲍辛格效应(Huanga模型)和疲劳寿命而产生的反向屈服的振动条件。 ??国防科学学报,第64,2014年7月,第pp.385-392页,DOI:http://dx.doi.org/10.14429/dsj.64.3886 ?? ??

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