• LCF life could be well expressed by plastic strain energy.

    低周被寿命塑性应变能表达

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  • Big error occurs when such plastic strain is simplified as the linear function of displacement.

    其应变简化位移线性表达式,则存在着很大误差

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  • A modified associated flow rule of plastic strain for kinematic hardening materials is presented.

    提出一种修正随动硬化材料塑性应变关联流动

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  • The modern signal analysis is used to measure the plastic strain in low cycle fatigue in this paper.

    材料疲劳过程中,由检测应变信号利用现代分析技术处理,得到材料疲劳过程的塑性变形并进行实时跟踪。

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  • Thirdly, plastic strain ratio and strain hardening index are the two key parameters of material's formability.

    塑性应变应变硬化指数评价板料成形性能两个重要参数

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  • Cauchy stress, plastic strain and slipping-off distribution in the workpiece during drawing process are given.

    模拟得出了变形过程中的应力应变状态动量分布

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  • The grid experimental method to determine principal plastic strain distribution of auto-panel stamped parts is discussed.

    研究了网格试验方法冲压成形后覆盖塑性应变分布进行测量的方法。

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  • Plastic strain mechanism of magnesium alloy is reviewed, such as plastic strain mechanism of ZK60 at various temperature.

    综述镁合金几种塑性变形机制,并介绍了ZK 60合金不同温度下的变形机制。

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  • The values of plastic strain energy density are affected by the plastic strain amplitude and change with the cycle numbers.

    合金塑性应变密度应变影响具有循环相关性

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  • The accumulated damage model is viewed as the function of equivalent plastic strain, plastic volumetric strain and pressure.

    积累损伤作为等效塑性应变、塑性体积应变压力函数

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  • A hybrid grid method was used to determine the principal plastic strain distribution in a deformed area of a sheet metal piece.

    进一步研究大型覆盖冲压成形质量分析技术,采用混合网格法进行变形区域塑性应变分布测量。

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  • Discuss the gas flow characteristics, temperature distribution and plastic strain distribution of this catalytic converter part.

    论述型催化转换器气体流动特性温度分布塑性应变分布。

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  • The reason for axial snap-back is that the recovery of axial elastic strain is faster than the increase of axial plastic strain.

    向回原因轴向弹性应变恢复轴向塑性应变的增加

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  • Using an empirical cumulative plastic strain formula, a method for calculating the traffic load induced deformation was proposed.

    针对交通荷载作用下软土地基的变形问题,采用累积应变经验公式计算其累积沉降。

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  • A modification to the existing hardening function is proposed to reduce the mesh sensitivity of the plastic strain at peak stress.

    为了克服峰值塑性应变网格敏感性,对现有强化函数进行修正

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  • A new exponential dissipation model is presented to describe this bilinear material's plastic strain amplitude-fatigue life relation.

    利用本文建立的指数衰减模型能够较好地描述材料非线性塑性应变幅与寿命之间的关系。

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  • Based on the test results, an empirical accumulative plastic strain model is proposed by introducing a comprehensive impact parameter.

    试验基础通过引入综合影响参数对试验数据进行化,建立饱和软黏土累积塑性应变模型

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  • The powerful stress is big enough to cause plastic strain and plastic flow on the interface which can provide good conditions for bonding.

    强大的应力使材料发生塑性变形,产生塑性流动界面生成键合强度提供良好条件

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  • The higher the pouring temperature and initial mold temperature are, the larger the plastic strain while the smaller the thermal stress is.

    浇注温度砂型初始温度越高节处粘塑性应变越大应力越小

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  • The result of magnetic measurement shows that the amount of deformation-induced martensite increases with the increasing of plastic strain.

    小变形条件下,变形速率对形变马氏生成量影响较小;

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  • Secondly, the FLAC 3D was used to simulate planar multiple shear bands and friction angle and cohesion force were dependent on plastic strain.

    之后采用FLAC3D平面剪切带网络进行了数值模拟其中摩擦内聚力为应变软化

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  • Similarly, the reason for lateral snap-back is that the recovery of lateral elastic strain is faster than the increase of lateral plastic strain.

    侧向原因侧向弹性应变恢复侧向塑性应变的增加

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  • Distribution of temperature, equivalent plastic strain and radial and axial rolling force have been quantitatively analyzed in the whole process.

    定量分析了整个轧制过程环件内温度等效应变、双向轧制分布演化情况。

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  • The theoretical result shows that the direction of plastic strain increment is determined by the direction of principal stress and stress increment.

    理论上说明塑性应变增量方向不仅应力方向有关,还与应力增量的方向有关。

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  • The elastic strain, plastic strain and fracturing are integrated and coupled with fluid and chemistry using an incremental stress rheological approach.

    采用递增应力流变学方法弹性塑性断裂变形结合流体化学耦合起来

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  • As a general one, the presented solution can represent not only the Linear-elastic response but also the plastic strain hardening of an actual material.

    本文作为一般解,反映材料弹性变形,计入材料塑性应变强化

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  • The experimental results showed that weld metal had enough plastic deformation capacity, and its damage value was linear with the cumulative plastic strain.

    试验结果表明焊缝金属具有比较好的塑性变形能力,焊缝的损伤材料累积塑性应变线性关系。

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  • On the basis of the experimental results and theoretical analysis, a damage formula about the difference of plastic strain and elastic strain is put forward.

    基于实验结果理论分析提出考虑塑性应变幅比重不同损伤公式与其它五种损伤公式寿命预测的结果做了比较。

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  • The distributions of equivalent plastic strain, dissipated, kinetic and elastic strain energies are all dependent on the gradient distribution of the composition.

    等效塑性应变幅值、动能弹性应变能及耗散时间的变化规律与功能梯度材料组份成分沿厚度的变化密切相关。

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  • The cumulative plastic strain energy increases with the increase of the loading frequency and stress level, which is linear with fatigue life on semilog coordinate.

    累积塑性应变随着加载频率应力水平增加而增加疲劳寿命对数坐标下呈线性关系。

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