• 这个关系重要性在于提供屈服拉伸强度

    The significance of this relationship is providing for high yield and tensile strengths.

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  • 研究进一步表明,材料变形难易程度又变温循环过程疲劳试样拉伸应力增加材料屈服强度的降低有关。

    Moreover, it is revealed that the deformation resistance in the thermal cycle process is related to the increase of its tensile stress and the decrease of yield strength.

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  • 通过室温仪器冲击试验静态拉伸试验,研究一种屈服强度钢板在冲击载荷下的力学性能断裂机理

    Mechanical properties and fracture mechanism of high strength steel sheet with low yield ratio under impact loading have been studied through instrumented impact and quasi-static tensile tests.

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  • 结果表明PVC拉伸屈服强度外力作用速度提高而提高断裂伸长率却随之下降

    The results showed that with the the increase of outside force velocity, the tension yield strength of PVC increased, but its breaking elongation decreased.

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  • 针对螺旋弧焊钢管横向板状试样在拉伸试验时存在屈服强度误差较大问题分析误差较大的原因,并提出了相应的解决办法

    To the problem of more yield strength error in SSAW pipe transverse strip specimen tensile tests, analyze the reason of the error, put forward corresponding solving method.

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  • 列举钛合金弹性屈服拉伸强度断裂疲劳等各种性能影响;讨论有关钛合金织构强化实际应用的一些问题

    The effects of textures on the elastic modulus, yield and tensile strength, fracture and fatigue properties as well as some problems on the application of texture strengthening were discussed.

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  • 采用拉伸屈服强度定量表征界面相互作用强弱,研究了界面相互作用元复合体系拉伸断裂形态影响

    Tensile yield strength was used to quantitatively evaluate the interfacial interactions, which have significant influence on the tensile fracture morphology of the composites.

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  • 总结剪切屈服强度拉伸屈服强度最大剪切强度和抗拉强度之间关系

    Draw the conclusion that the relationship between the shear yield strength and yield strength, between the ultimate shear strength and the ultimate strength.

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  • 纵向屈服强度模量随拉伸增加而提高

    The longitudinal yield strength and the Young′s modulus increase with the draw ratio.

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  • 结果表明,随筛板增加,其拉伸强度拉伸屈服应力拉伸断裂应力提高;

    The results showed that tensile strength, tensile yield stress and tensile breaking stress were increased with the increase of bore distance;

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  • 提出修正后金属体积分数理论准确预测了材料的弹性模量屈服应力拉伸强度

    A modified theory of metal volume fraction is put forward to precisely predict tensile properties including elastic modulus, yield stress and tensile strength.

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  • 其次用试验找出符合力学模型胶接固化工艺条件并用试验验证用被粘材料的屈服强度估算接头能承受的最大拉伸力的合理性。

    Thirdly, the optimum curing process parameters suitable with the mechanics model are found out and rationality of the estimated value is also validated by test.

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  • 合金K 500屈服强度大约与400合金相比拉伸强度增加一

    Alloy K500 Mesh has approximately three times the yield strength and double the tensile strength when compared with alloy 400.

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  • 挤压均匀热处理使挤压态合金晶粒尺寸化,拉伸强度屈服强度降低

    Homogenization treatment before the extrusion coarsened the grain size and reduced the tensile strength and yield strength.

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  • 挤压均匀热处理使挤压态合金晶粒尺寸化,拉伸强度屈服强度降低

    Homogenization treatment before the extrusion coarsened the grain size and reduced the tensile strength and yield strength.

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