1、

stability analysis of longtan rcc dam by unequal proportional reduction material strength parameters method

基于不等比例降强度参数的龙滩碾压混凝土坝稳定分析

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2、

The computation method of probability of fatigue failure was made according to the fact of reduction in strength and its law.

并根据疲劳过程中材料强度退化的事实及其规律,提出了随机载荷下路面的疲劳失效概率计算思路。

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3、

The effects of rolling temperature, pass reduction on the interfacial bonding strength were researched; and the effect of the subsequent annealing process on the interfacial bonding strength and the joint interface structure were investigated.

研究了轧制温度、压下率对复合板的结合强度的影响,以及轧后退火工艺对复合板的结合强度及界面结构的影响;探讨界面结合机理,确定出最佳工艺方案。

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4、

The shear strength parameters are reduced than those were not under the cyclic load. And under the same cyclic load, the reduction factor of cohesion is larger than the reduction factor of the angle of internal friction.

经过循环荷载作用的抗剪强度参数均比未受循环荷载作用的指标有所折减,而且在相同循环荷载的作用下,粘聚力折减系数比内摩擦角折减系数大。

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5、

Meanwhile, the modulus of elasticity, yield strength, ultimate tension strength and reduction in area at rupture after superplastic deformation have also been measured.

同时,研究了未经预处理LY12CZ铝合金在强电场中超塑性变形后材料的弹性模型、屈服强度、强度极限和断裂时的断面缩减率的变化。

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6、

As a result, the satisfactory weight reduction is obtained with enough stiffness and strength of the metal structure.

结果表明,金属结构在满足规范的刚度和强度要求下取得比较理想的轻量化结果。

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7、

The bonding strength decreased with the reduction ratio and the rolling temperature.

叠层复合材料的结合强度随压下率和轧制温度的增大而降低。

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8、

This process can decrease power consumption of 55 3kWh/ t, reduce reduction period time of 4 min/ heat, decrease row material consumption and labour strength and enhance furnace life from 53 heats to 70 heats compared with old process method.

与原工艺相比,吨钢电耗降低55.3kW·h,还原期时间缩短4min/炉,炉龄由过去的53炉次提高到70炉次,并可降低材料消耗和工人劳动强度。

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9、

Change of High Temperature Strength of Pellets During Roasting and Reduction

球团矿氧化焙烧及还原过程中的强度变化

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10、

the change of hot strength of iron ore pellets during oxidizing roasting and reduction was researched.

摘要研究了球团矿在氧化焙烧和还原过程中抗压强度的变化规律.

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11、

Analysis of Stress Reduction Coefficient of High Strength Reinforced Concrete Member Under Axial Load

高强钢筋混凝土轴心受压构件稳定系数分析方法

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12、

The structural influencing coefficient includes ductility reduction factor and over strength factor.

结构影响系数主要包括延性折减系数和超强系数.

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