• 良好屈服强度抗拉强度

    Good yield strength and tensile 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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  • 给出了屈服强度温度之间统计关系

    The statistic relation between yield strength and temperature is obtained.

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  • 屈服强度伸长对应材料屈服强度应变。

    Yield strength elongation-strain corresponding to yield strength of material.

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  • 疲劳强度低于弹性极限屈服强度应力强度

    Fatigue strength is less than static stress strength such as elasticity limit, yield strength.

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  • 目的获得屈服强度弹性极限较高韧性

    The aim is to obtain a high yield strength, elastic limit and high toughness.

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  • Q—“屈”汉语拼音首位字母。245—屈服强度

    Q - the first letter of Chinese phonetic alphabet. 245 yield strength value.

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  • 应变超过0.95%时,反向屈服强度达到恒量

    When the pre-strain surpasses 0.95%, the reverse yield strength reaches to a constant.

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  • 温度升高,原子热运动加强,屈服强度弹性降低

    The yield strength and elastic modulus will decrease with the temperature increased.

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  • 表面屈服强度一新指标可以材料表面进行研究

    Accept defeat this new index of strength with the surface, we can research the material surface.

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  • 所以100%屈服强度增加意味着零件重量能够减少三分之一

    So a 100% increase means that a component could be redesigned to lose about a third of its weight.

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  • 对于泡沫,孔径屈服强度塑性硬化模量基本没有影响

    As for pure aluminum foam, there is neglected effect of cell size on the strength and plastic modulus.

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  • 由于很高温度下材料屈服强度因此只需较低压力挤压

    By pressing at very much higher temperatures lower pressures are required as the yield strength of the material is lower.

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  • 在讨论应变变化时,获得屈服强度随应变率增大而增高的结果。

    It was obtained that the yield strength was increased as the strain rates were raised.

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  • 试验包括取自不同锻造零件试块的屈服强度抗拉强度硬度测量

    The experiments consisted of the measurement of yield stress, tensile strength and hardness for samples cut from various parts of the forging.

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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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  • 结果表明:适当的弛豫时间下,能进一步提高材料屈服强度强度

    It is showed from the result that the yielding strength and the tensile strength of HSLA were improved in appropriate relaxation time.

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  • 研究结果表明:经过适当的驰豫时间,能进一步提高材料屈服强度强度

    The result shows that the yielding strength and the tensile strength of HSLA steel can be improved in appropriate relaxation time.

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  • 这种方法用于热影响软化焊接接头屈服强度预测高匹配接头的强度设计。

    This approach is suitable for prediction of yielding strength in HAZ-softened welded joint as well as for strength design of well-matched welded joint.

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  • 研究了变形速度试验温度以及预先塑性变形程度表观屈服强度下降影响

    The effect of loading rate, test temperature and pre-plastic deformation on hydrogen induced apparent yield stress reduction have been investigated.

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  • 沥青弹性模量(粘度)、屈服强度韧性直接决定沥青路面的各种力学与使用性能

    Various mechanic performances of asphalt pavements directly depend on modulus of asphalt(or viscosity), yield strength and toughness.

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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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  • 方法引入了框架结构屈服强度系数概念适宜于框架结构震后的整体损伤评估

    In this method, the concept of frame structural yield strength coefficient is introduced, so it is more applicable for assessing structural injury.

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  • 破坏结构变形主要集中节点上,节点钢板达到屈服强度木构件处于弹性工作状态;

    The deformation of the structure will mainly concentrates at the joints when structural damage occurs. The timber members remain elastic while the joint steel plates yield.

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  • 就是说设计人员通常只能利用那些公开发表屈服强度极限强度延伸率等数据资料。

    This means that the design will usually have only published values of yield strength, ultimate strength, and percentage elongation.

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  • 形状不良板料厚度增加、压边的增加、屈服强度降低凸模曲率半径减小而减小。

    The shape defect is decreased with increasing sheet thickness, increasing binder force, decreasing yield strength, and decreasing curvature radius.

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  • 由于辛格效应加工硬化影响JCOE后相对所采用钢板管体屈服强度会发生变化。

    The yield strength of JCOE welded pipe was different from the mother steel plate because of the influence of Bauschinger effect and work hardening.

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  • 受非马氏体组织的影响及可动位错密度降低的作用,屈服强度屈强比随退火温度升高而升高

    The yield strength, yield ratio increase with the increase of annealing temperature, due to the impact of non-martensite and the decrease of movable dislocation density.

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  • 受非马氏体组织的影响及可动位错密度降低的作用,屈服强度屈强比随退火温度升高而升高

    The yield strength, yield ratio increase with the increase of annealing temperature, due to the impact of non-martensite and the decrease of movable dislocation density.

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