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1)  flexural creep
挠曲蠕变
2)  bending creep
弯曲蠕变
1.
The bending creep properties of bauxite-based β-sialon bonded corundum/SiC composites with 15%—25% β-sialon con-tent(in mass)were studied at 1 250—1 400 ℃ and under bending stress of 2—3.
5MPa应力下弯曲蠕变性能。
2.
The three-point bending and bending creep tests are conducted to investigate the low-temperature properties of porous asphalt mixture using the TAFPACK Super(TPS)high viscosity additive.
对掺TAFPACK Super(TPS)高粘度沥青添加剂排水性沥青混合料进行了低温条件下的三点弯曲和弯曲蠕变性能测试,采用低温脆化温度点、弯拉强度-应变包络图和三点弯曲蠕变速率来评价它们的低温抗裂性能;同时将SBS改性沥青排水混合料的低温性能用以对比分析。
3)  creep buckling
蠕变屈曲
1.
A creep buckling analysis of braid composite cylindrical shell is given in this papre by means of theoretical analysis, the instantaneous critical load and durable crititcal load of viscoelastic braid composite cylindrical shell are calculated.
研究了编织复合材料圆柱壳的蠕变屈曲问题,通过理论分析,计算了粘弹性编织复合材料圆柱壳的瞬时弹性临界载荷和持久临界载荷。
2.
The creep buckling of viscoelastic columns with initial imperfection is studied.
研究有初始缺陷粘弹性压杆的蠕变屈曲,讨论分析了瞬时临界载荷和长期临界载荷对粘弹性压杆蠕变屈曲的影响。
3.
The creep buckling of viscoelastic plates with initial deflections,subjected to axial compressive force is analyzed in the following cases:first,transverse shearing deformation is ignored,second,transverse shearing deformation is considered.
研究了有初始小挠度单向受压粘弹性板在两种情况下的蠕变屈曲问题。
4)  creep curve
蠕变曲线
1.
Based on the micro-mechanism of the creep,a θ creep curve equation was proposed to predict creep curves for the single crystal nickel-based superalloy.
根据单晶镍基高温合金蠕变过程的微观机制,提出采用θ蠕变曲线方程对其进行蠕变曲线的预测。
2.
The creep curve of rock and soil mass is an important way to describe slope deformation.
岩土体蠕变曲线是描述边坡变形的重要方式,其位移–时间曲线三阶段过程被视为是滑坡滑动时间预报的基本标准,据此提出了许多滑坡预报方法。
3.
A non-Newton damp component which can reflect the acceleration creep of rocks through analyzing the creep curves of rocks.
通过对岩石的蠕变曲线分析 ,提出了一种反映岩石加速蠕变的非牛顿流体粘滞阻尼元件 ,并根据不同压力情况下的蠕变曲线特性 ,介绍了一种新的岩石流变模型———三阀值流变模型。
5)  creeping bending
蠕变弯曲
6)  torsional creep
扭曲蠕变
补充资料:古德里奇挠曲仪
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性质:一种在压缩静负荷下试验的疲劳试验机。这种仪器用来测量橡胶类高分子材料的压缩疲劳试验。众所周知一个弹性体做成密封垫圈,使用一定时间后其密封性会发生变化,原因在静压缩情况下发生了疲劳而形变并丧失其弹性。测量该性能就是给出静压缩负荷下的材料疲劳状况。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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